Mon, 04/11/2011 - 14:47

SEMA News—April 2011

The Future of Performance and Customization

By Steve Campbell

Vehicle electrification, electronics integration and connected-vehicle technologies are leading the way toward the development of cars that don’t crash, devices that don’t distract and powertrains that don’t pollute.

Courtesy Regis Lefebure
As part of our annual look at where automotive technology stands, we recently engaged in a wide-ranging conversation with John Waraniak, SEMA vice president of vehicle technology, delving further into the four advanced vehicle technology megatrends: driving green, driving connected, driving safe and driving cool.

SEMA News: What are the latest advances in electronics, including entertainment, navigation and interactive car-to-car and car-to-infrastructure systems?

John Waraniak: Vehicle electrification, electronics integration and connected-vehicle technologies are leading the way toward the development of cars that don’t crash, devices that don’t distract and powertrains that don’t pollute. Automotive technology has extended far beyond the vehicle itself. Onboard vehicle technologies combined with vehicle-to-vehicle and vehicle-to-roadside technologies are creating many new and exciting product and service opportunities for specialty-equipment and performance aftermarket manufacturers, installers, retailers and distributors. The challenges, opportunities and solutions for SEMA members lie in how effectively these features, devices and accessories can be integrated into today’s vehicles.

Technology is integral to both the relevance and the future of SEMA and the performance aftermarket. To ignore its impact is a fundamental mistake. More than half of the new vehicles offered in five years will support applications through car-radio platforms. By 2017, more than 13 million vehicles will be sold globally with connected-vehicle platforms. Aftermarket suppliers currently provide more than 35 radios supporting apps via smartphone integration and new operating systems, such as the Android that was featured on the Clemson Deep Orange vehicle displayed at the 2010 SEMA Show.

SEMA recently met with Peter Appel, administrator of the U.S. Department of Transportation’s Research and Innovative Technology Administration (RITA) to discuss vehicle-to-vehicle (V2V) technology and other advanced automotive electronics opportunities for SEMA members. SEMA is working with RITA leadership to promote the aftermarket industry’s contributions to deploying V2V and onboard technologies.

Connected vehicles have the potential to avoid crashes and make the transportation grid more efficient. Green performance and connected-vehicle technologies are quickly merging to create new business and product-development opportunities in integrating automotive and consumer electronics apps and solutions. Appel will participate again as a speaker in the Driving Connected session in the Vehicle Technology Center at the 2011 SEMA Show. He also briefed us on a new competition program launched by U.S. Transportation Secretary Ray LaHood on accelerating the development of connected vehicles and technologies.

The program announced by RITA is a nationwide competition seeking ideas for using wireless connectivity between vehicles to make transportation safer, greener and easier to use. During the Connected Vehicle Technology Challenge competition, RITA will accept ideas for products and applications that use dedicated short-range communications, which is a fast, secure wireless technology created specifically for connected vehicles and the evolving infrastructure. The challenge is a great opportunity for SEMA members to showcase their use of innovative new products and cutting-edge technologies.

SN: Several of the automakers are now selling battery electric vehicles (BEVs). How will electric cars and advanced vehicle technologies affect the performance and enthusiast marketplace?

JW: President Obama said in his State of the Union speech that technology innovation will be the nation’s “Sputnik moment,” and that the economy’s priorities will be focused on industries such as clean energy and advanced technology. His plan is to have one million advanced-technology electric vehicles on the road by 2015. This is a tough challenge because only 20,000 electric vehicles are expected to be sold this year. It took Toyota 10 years to sell one million Prius hybrids, and hybrid sales peaked at 353,000 in 2007.


Today’s vehicles are not just a collection of 5,000 loosely integrated parts. They are an interdependent “system of systems,” connecting body, chassis, interior and powertrain systems through more than 150 controllers and 10 million lines of code and embedded software.
Margin times market share times market size is the new metric for competitiveness, and the market for electric vehicles is just not there yet. Incentivizing the market to jumpstart it is a good strategy, but it is not sustainable in the hyper-competitive automotive industry of today and tomorrow. Total industry sales in 2011 will be somewhere between 11 and 12 million vehicles, which means less than 0.2% of all vehicles sold in the United States will be BEVs. So what’s all the hype about electric vehicles? Industry statistics indicate that only 7% of new-car shoppers are considering electric vehicles. The United States has more than $25 billion invested in advanced-technology vehicle development and only two BEVs in production—the Chevy Volt and Nissan Leaf. The Ford Focus Electric will become available in late 2011. The high cost of batteries, the small market segment for short-range compact cars and the multitude of consumer choices for alternative powertrain vehicles make this challenge noble but unreal.

Forcing electric vehicles on the market will not make them sell. President Obama is also working to realign the U.S. government’s vehicle-technology priorities. The White House’s proposed budget for 2012 would end federal government programs that fund hydrogen fuel cell research and efforts to develop clean diesel engines and retrofit older diesels. The budget proposes diverting funds from a dozen energy company tax breaks to help pay for putting the one million electric vehicles on the road by 2015 and help grow the market for electric cars. The budget proposal would transform a $7,500 tax credit for buyers of plug-in electric cars into a rebate at the dealership so that purchasers would not have to wait to claim the credit on their tax returns.

“The Challenge is a great
opportunity for SEMA members
to showcase their use of
innovative new products and
cutting-edge technologies.”

Consumers are generally loss averse. Uncertainty about future fuel savings makes paying more for alternative vehicle technologies a risky bet that most consumers are unwilling to make. Electric vehicles must solve customer problems without creating new ones. Consumers will not adopt new technologies unless they are better in every way than existing solutions, and the internal-combustion engine is far from dead. The Ford F-150 is still the top-selling vehicle in the United States. This may change in the coming years due to gas prices and consumer behaviors, but SEMA businesses also have to seize the day in order to create the future.

Advanced vehicle technologies go beyond battery-driven electric motors. The kinetic energy recovery hybrid system featured in the Porsche 918 RSR stores and releases energy without batteries. The kinetic hybrid system uses a flywheel to capture energy during braking from front-wheel motor hubs. Regenerative braking charges the flywheel, and the driver presses a button to access the energy, generating up to 75 kilowatts and adding more than 200 hp to the 918’s 560 hp. Power electronics is the new horsepower and represents an emerging technology in the performance aftermarket and new opportunities for the next generation of hot rodders and enthusiasts.

Automotive OEMs are also working with lightweight materials and advanced technologies to reduce the mass of each new generation of vehicles, optimize system integration and refine aerodynamics. Experts estimate that every additional 100 lbs. of weight a vehicle has to carry reduces fuel efficiency by 1%–2%. The new eco-version of the Chevy Cruze has lower fasciae and an aerodynamic shutter that closes to increase fuel efficiency.

SN: How is the industry addressing increasing vehicle complexity and cross-industry product development?

JW: Open innovation, collaboration, systems engineering and lean customization are quickly becoming best practices and competitive advantages in the new automotive normal. Today’s vehicles are not just a collection of 5,000 loosely integrated parts. They are an interdependent “system of systems,” connecting body, chassis, interior and powertrain systems through more than 150 controllers and 10 million lines of code and embedded software. Automotive vehicle systems engineering is, in some cases, very close to rocket science. Both the NHTSA and NASA played a critical role in the electronics systems and electromagnetic interference analysis of the unintended acceleration of vehicles produced by Toyota. These studies reinforced confidence in the safety and reliability of the advanced technologies of Toyota vehicles.

Products, processes and profits are inextricably linked. Lean customization, like lean production, is a paradox. On one hand, every activity, task and flow of work is rigidly scripted. Yet at the same time, lean operations are very flexible and responsive to customer demand. Designing for customization is the intersection of design, technology and the customer experience. Designing for customization and lean-customization principles cast the biggest shadow on profitable personalization. Commoditization, standardization and commonization actually drive customization.

Lean-customization principles can make the difference between built-in profits and reverse-engineered costs. The OEMs are being driven to reduce vehicle complexity while simultaneously increasing the flexibility to build more models and variants off of fewer platforms. Aftermarket companies and dealers can also help take the complexity out of assembly plants by collaborating with OEMs to develop product plans and vehicle architectures with cost-effective, simplified bills of material that can be profitably customized with factory and aftermarket-branded parts and accessories at dealers, customization centers and independent installers.

Ford F-150 supplied by Superlift Suspension Systems was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.
A virtual test method was demonstrated at the SEMA Show last year. In the demonstration, a virtual model of a modified Ford F-150 supplied by Superlift Suspension Systems was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.
If you are truly committed to competing and growing in the new automotive normal, designing for lean customization is a five-star product-development process. It’s a two-star process if you are simply involved. And it’s a waste of time if you are just going through the motions.

Enlightened automakers, consumer-electronics manufacturers, aftermarket companies, dealers and installers recognize that they need to work together to ensure that they can personalize vehicles and add future capabilities profitably. Open innovation and collaboration are essential for growth. Ford’s signature technologies—SYNC and EcoBoost—are great examples of Ford’s collaboration and personalization strategy for driving connected and driving green. Automakers and aftermarket companies that do not know how to apply collaborative value-chain practices and technologies will be beaten by those who do.

Collaboration is not a hobby. It’s not easy to collaborate. It’s an unnatural act. Mazda, for example, will launch a hybrid using Toyota technology in 2013. Successful OEMs will rely more on the aftermarket to reach new markets and segments with increased personalization and lower costs. The old approach of proprietary architectures and closed systems hasn’t died yet, and the new approach to open innovation and collaboration is
just beginning.

SEMA’s innovative partnership with the Clemson University International Center for Automotive Research (CU-ICAR) is an excellent example of open innovation and generative thinking in action. SEMA and CU-ICAR have teamed up to offer SEMA members access to world-class resources, including a 580hp engine dynamometer test cell, a dual-column full-vehicle coordinate measuring machine, a seven-post road simulator in an environmental chamber, an electromagnetic compatibility chamber and a 500hp four-wheel chassis dynamometer in an anechoic chamber.

SN: What is the state of modern musclecar technology—high-performance vehicles, such as the new Camaro, Mustang and Charger—and how will it affect SEMA-member companies?

JW: While many SEMA companies feared that advanced technologies signaled the demise of the specialty-equipment market and believed tighter federal emissions and fuel-efficiency standards would eliminate performance vehicles from America’s roadways, something quite different is happening. Green muscle is alive and well and took center stage at many of this year’s auto shows. Leading automakers are focusing on matching horsepower with the fastest computing power.

“Open innovation, collaboration,
systems engineering and lean
customization are quickly
becoming best practices and
competitive advantages in the
new automotive normal.”

Only 20% of the fuel’s energy is used to power vehicles equipped with traditional internal-combustion engines. Despite the hype and increased attention being focused on alternative fuels, the gasoline internal-combustion engine will continue to be a major element in the growth of the performance aftermarket for years to come due to significant innovations and improvements in gasoline direct injection, turbocharging, supercharging and electronic
fuel management.

Horsepower still moves product. Nearly every major automaker now offers a performance car for street use that is as powerful as many of the race cars on the track. The Cadillac CTS-VR is equipped with a supercharged V8 that pumps out 556 hp. The new supercharged V8 Camaro ZL1 offers 550 hp and 550 lb.-ft. of torque. Chevy will introduce a new limited-edition Camaro every six months. The ’11 Mustang with an aluminum V6 makes 305 hp and gets 31 miles per gallon. The ’12 Dodge Charger SRT8 delivers an exceptionally mean version of its flagship sedan to the tune of 465 hp from an even larger Hemi V8. The engine grows from 6.1L to 6.4L with 465 lb.-ft. of torque.

Advanced engine and transmission technologies, such as cam phasing, variable valve timing, port deactivation, direct injection, turbo boosting, dry dual clutches and wide-ratio six-speed-plus gearing, combined with reduced mass, decreased parasitic losses and integrated engine and transmission control software have improved the internal-combustion engine in these vehicles to efficiencies that would have been unbelievable just five years ago.

It’s not just new vehicles that are repowering the American Dream. Neil Young demonstrated the entrepreneurial spirit of SEMA members and performance enthusiasts everywhere with his keynote remarks and the introduction of his ’59 Lincvolt at the Green Performance session during last year’s SEMA Show. Lincvolt is the world’s first microturbine-powered bio-electro-cruiser and proves that a plug-in electroturbine series hybrid can deliver the performance of a fullsize long-range highway cruiser and achieve ultralow emissions. Lincvolt weighs nearly 2.5 times what a typical hybrid electric car weighs, yet it has a 400-mile extended range and a 50-mile range on electric power only. 

SN: General Motors released information recently about an OnStar mirror that will be retailed for non-GM vehicles. How will those types of innovations impact SEMA companies?

JW: Telematics and connected-vehicle technologies may not seem that pervasive in the automotive aftermarket yet, but that is changing quickly, as evidenced by the new vehicles on display at this year’s auto shows. Ford’s voice-activated SYNC platform continues to evolve with new features and capabilities and has been installed in more than 3 million vehicles. More than 80% of Ford buyers take the SYNC option, and Hyundai is launching its own system called Blue Link.

The recently introduced aftermarket version of OnStar is embedded in a replacement rearview mirror and sells for $299 plus a $100 installation. Expect more automakers, aftermarket suppliers, app developers and installers to form collaborative partnerships to leverage infotainment innovations and capitalize on this growing market. Ford CEO Alan Mulally summed up vehicle connectivity very well when he said: “It’s cool to connect. But it’s past cool. It’s a reason to buy!” I would add that if you think it’s too connected, you are too old. GenGreeners, the next generation of car buyers and enthusiasts, are under 16 years old today and will be the first generation to grow up with the choice of an electric, a hybrid or an internal-combustion engine as one of their buying options.

Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, shown here with the newly introduced Dodge Charger SRT8
Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, shown here with the newly introduced Dodge Charger SRT8, summed up the future of performance and customization very well. “Everyone is a car person,” he said. “Some just don’t know it.”
SN: What are some of the other significant automotive applications that have been introduced this year?

JW: Millions of people have powerful smart phones that are loaded with a variety of capabilities, such as Pandora’s Internet radio app, that consumers can use in their vehicles. BMW’s MINI and aftermarket companies are taking advantage of Apple’s iPhone capabilities and offering an automotive-grade iPod interface that supports Apple’s iPod Out through the MINI connected system. The iPod screen appears in the vehicle’s display screen. Drivers are familiar with the screen, so it is less distracting than adding
another interface.

Distracted driving is certainly a concern for both OEMs and aftermarket companies that are providing connected-vehicle products, apps and solutions. An estimated 20% of injury crashes were reported to have involved driver distraction. Glances away from the road for more than two seconds for any purpose double the risk of a crash or near crash. Many drivers—particularly GenY’ers, which is the largest generation ever—understand the risk and will find ways to stay connected and be on the grid while driving. Forcing them to go off the grid and not be connected with their friends and networks while driving is not a feasible solution.

The app is just as important as the content. I asked a panel of six experts at a recent Society of Automotive Engineers (SAE) discussion on automotive and consumer electronics what feature, function, system or app would be most significant in the next five years and if it would come from inside or outside the auto industry. Five of the six said it would come from outside the auto industry.

“Eco-friendly vehicles will remain
a niche segment for the next
decade despite all the hype
and headlines. Performance
vehicles will also continue
as a niche segment.”

SN:
What is SEMA doing in the area of vehicle dynamics of aftermarket-modified vehicles and the new Federal Motor Vehicle Safety Standards (FMVSS) 126 regulation that goes into effect for all U.S. cars and trucks in model-year ’12, requiring all vehicles 10,000 lbs. or less to include an electronic stability control (ESC) system as
standard equipment?

JW: ESC monitors vehicle motion. When loss of control is imminent, ESC strategically applies the brakes to help stabilize the vehicle. Similar requirements for the rest of the global community are contained in the United Nations Economic Commission for Europe 13H regulations.

Compliance with FMVSS is normally the responsibility of vehicle manufacturers; however, SEMA has taken a proactive approach and developed a methodology and program to evaluate the ESC performance of aftermarket-modified vehicles. To actually test every vehicle configuration is cost prohibitive for OEMs and the aftermarket, so SEMA sought outside help from leading industry experts and companies in the area of vehicle dynamics simulation and testing to develop a “best practices” solution to offer member companies. It’s important to note that any modification to the engine, steering, brakes, suspension, wheels or tires may have an impact on
ESC performance.

A virtual test method was demonstrated at the SEMA Show last year, drawing on the controls-development experience of Advanced Controls Engineering Consultants LLC, the CarSim vehicle dynamics simulation produced by Mechanical Simulation Corporation and the hardware-in-the-loop (HIL) technologies of dSPACE GmbH. A modified Ford F-150 supplied by Superlift Suspension Systems was used as the test vehicle. In the demonstration, a virtual model of the vehicle was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.

The CarSim software provides not only a dynamic model of the pickup, but also a virtual proving ground on which to conduct the tests. It also includes steering and throttle inputs that are required to execute the sine with dwell (SWD) test maneuver. CarSim connects to the ESC controller on the vehicle through the dSPACE hardware.


Neil Young demonstrated the entrepreneurial spirit of SEMA members and performance enthusiasts everywhere with his keynote remarks and the introduction of his ’59 Lincvolt at the Green Performance session during last year’s SEMA Show. Courtesy Steve Cross, Courtesy of Shakey Pictures
Throughout the test, CarSim sends vehicle dynamics information about wheel speeds, steering-wheel angle, yaw rates and lateral acceleration to the ESC controller. The ESC controller performs as if it is experiencing the maneuver in an actual vehicle and controls the application of the individual brakes on the vehicle. Pressure transducers installed at each of the truck’s brakes report the application pressure back to CarSim, which determines the brake forces applied at each wheel of the simulated vehicle and the subsequent dynamic response. Displays and readouts of the vehicle’s dynamic response on CarSim plots allow engineers to determine whether the vehicle meets the required performance. The ESC-HIL simulation does this at a fraction of the cost of an actual physical test.

An ESC-HIL demonstration with expanded vehicle simulation capabilities will be set-up in the SEMA Vehicle Technology Center (VTC) at this year’s SEMA Show, where attendees can see the latest advanced vehicle technologies impacting the specialty-equipment and performance aftermarket industry today and in the immediate future.

SN:The aftermarket is being bombarded with green technologies and advanced electronics. Other industries are dedicated to technologies that are peripheral to automobiles but don’t address the vehicles themselves. SEMA members do. How is SEMA increasing its relevance as technological innovation expands?

JW: One very exciting element of our vehicle technology strategy is to create the SEMA Vehicle Technology Center at the SEMA Show. The VTC will showcase SEMA’s vehicle technology programs and partners and the benefits to members. The VTC and its Tech Zones are being designed to reinforce our efforts to appeal to emerging-technology enthusiasts and bring greater focus, urgency and performance aftermarket relevance to our advanced-technology offerings. We also want to put vehicle technology on the front lines, similar to what GM and Ford have done recently with the creation of new chief technology officer positions.

The purpose of the VTC is to inform and educate SEMA members. We also want to increase member participation in and understanding of the programs, partnerships, services and systems as well as product and vehicle development tools, methodologies and resources that are available at affordable costs to SEMA-member companies.

The Vehicle Technology Center consists of both a virtual platform and a physical platform. The virtual platform will include a VTC theater with seven education seminars focused on identifying and integrating key industry trends, technologies and SEMA initiatives. They will help members understand the challenges of advanced vehicle technologies and leverage new business opportunities as well as provide networking opportunities for collaborative product-development relationships. The seminars will open with a vehicle technology keynote featuring Paul Mascarenas, chief technical officer and vice president for research and advanced engineering at Ford Motor Company. They will also include more than 20 experts from leading automakers, powersports, aftermarket, technology and marketing companies throughout the week. 

The seminars will focus on the future of performance and customization, branding performance, marketing to enthusiasts, designing for customization, vehicle dynamics of aftermarket-modified vehicles, green performance and connected-vehicle technologies. The physical platform and exhibit space in the VTC will showcase SEMA-developed solutions with technology simulations, demonstrations and workshops to introduce members to the benefits of SEMA vehicle technology programs and partners.

SEMA is continually working to develop vehicle technology solutions and build relationships that foster collaboration between the automakers, the original-equipment suppliers, dealers, research organizations, industry associations and member companies. SEMA’s Vehicle Technology Center will provide members with in-depth information and hands-on understanding from leading industry experts about advanced vehicle technologies and emerging systems to help them understand the impact on their business today, as well as prepare for and leverage tomorrow’s technologies and business opportunities.

SN: What should SEMA members understand in a general sense about the role of technology in the future of the automobile?

JW: Advanced vehicle technologies are driving the future of performance and customization. Both the automobile and the industry are being reinvented. Systems are moving from mechanical to electrical. Vehicles are moving from standalone to connected, and markets are moving from mass production to niche segments and personalization.

Innovation is the engine of growth. Growth in the new auto normal doesn’t lie in disrupting large, over-served markets but in disrupting small under-served markets and emerging segments focused on product differentiation, performance and customization.

Eco-friendly vehicles will remain a niche segment for the next decade despite all the hype and headlines. Performance vehicles will also continue as a niche segment. Both will coexist as advanced vehicle technologies are developed and deployed. Hybrids and electric vehicles will make up less than 10% of the vehicle market by 2020, and while many consumers consider themselves performance enthusiasts, that market segment will be about 10% as well.

My good friend, Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, and a longtime SEMA advocate, recently launched his “Never Neutral” campaign and summed up the future of performance and customization very well. “Everyone is a car person,” he said. “Some just don’t know it.”

Mon, 04/11/2011 - 14:47

SEMA News—April 2011

The Future of Performance and Customization

By Steve Campbell

Vehicle electrification, electronics integration and connected-vehicle technologies are leading the way toward the development of cars that don’t crash, devices that don’t distract and powertrains that don’t pollute.

Courtesy Regis Lefebure
As part of our annual look at where automotive technology stands, we recently engaged in a wide-ranging conversation with John Waraniak, SEMA vice president of vehicle technology, delving further into the four advanced vehicle technology megatrends: driving green, driving connected, driving safe and driving cool.

SEMA News: What are the latest advances in electronics, including entertainment, navigation and interactive car-to-car and car-to-infrastructure systems?

John Waraniak: Vehicle electrification, electronics integration and connected-vehicle technologies are leading the way toward the development of cars that don’t crash, devices that don’t distract and powertrains that don’t pollute. Automotive technology has extended far beyond the vehicle itself. Onboard vehicle technologies combined with vehicle-to-vehicle and vehicle-to-roadside technologies are creating many new and exciting product and service opportunities for specialty-equipment and performance aftermarket manufacturers, installers, retailers and distributors. The challenges, opportunities and solutions for SEMA members lie in how effectively these features, devices and accessories can be integrated into today’s vehicles.

Technology is integral to both the relevance and the future of SEMA and the performance aftermarket. To ignore its impact is a fundamental mistake. More than half of the new vehicles offered in five years will support applications through car-radio platforms. By 2017, more than 13 million vehicles will be sold globally with connected-vehicle platforms. Aftermarket suppliers currently provide more than 35 radios supporting apps via smartphone integration and new operating systems, such as the Android that was featured on the Clemson Deep Orange vehicle displayed at the 2010 SEMA Show.

SEMA recently met with Peter Appel, administrator of the U.S. Department of Transportation’s Research and Innovative Technology Administration (RITA) to discuss vehicle-to-vehicle (V2V) technology and other advanced automotive electronics opportunities for SEMA members. SEMA is working with RITA leadership to promote the aftermarket industry’s contributions to deploying V2V and onboard technologies.

Connected vehicles have the potential to avoid crashes and make the transportation grid more efficient. Green performance and connected-vehicle technologies are quickly merging to create new business and product-development opportunities in integrating automotive and consumer electronics apps and solutions. Appel will participate again as a speaker in the Driving Connected session in the Vehicle Technology Center at the 2011 SEMA Show. He also briefed us on a new competition program launched by U.S. Transportation Secretary Ray LaHood on accelerating the development of connected vehicles and technologies.

The program announced by RITA is a nationwide competition seeking ideas for using wireless connectivity between vehicles to make transportation safer, greener and easier to use. During the Connected Vehicle Technology Challenge competition, RITA will accept ideas for products and applications that use dedicated short-range communications, which is a fast, secure wireless technology created specifically for connected vehicles and the evolving infrastructure. The challenge is a great opportunity for SEMA members to showcase their use of innovative new products and cutting-edge technologies.

SN: Several of the automakers are now selling battery electric vehicles (BEVs). How will electric cars and advanced vehicle technologies affect the performance and enthusiast marketplace?

JW: President Obama said in his State of the Union speech that technology innovation will be the nation’s “Sputnik moment,” and that the economy’s priorities will be focused on industries such as clean energy and advanced technology. His plan is to have one million advanced-technology electric vehicles on the road by 2015. This is a tough challenge because only 20,000 electric vehicles are expected to be sold this year. It took Toyota 10 years to sell one million Prius hybrids, and hybrid sales peaked at 353,000 in 2007.


Today’s vehicles are not just a collection of 5,000 loosely integrated parts. They are an interdependent “system of systems,” connecting body, chassis, interior and powertrain systems through more than 150 controllers and 10 million lines of code and embedded software.
Margin times market share times market size is the new metric for competitiveness, and the market for electric vehicles is just not there yet. Incentivizing the market to jumpstart it is a good strategy, but it is not sustainable in the hyper-competitive automotive industry of today and tomorrow. Total industry sales in 2011 will be somewhere between 11 and 12 million vehicles, which means less than 0.2% of all vehicles sold in the United States will be BEVs. So what’s all the hype about electric vehicles? Industry statistics indicate that only 7% of new-car shoppers are considering electric vehicles. The United States has more than $25 billion invested in advanced-technology vehicle development and only two BEVs in production—the Chevy Volt and Nissan Leaf. The Ford Focus Electric will become available in late 2011. The high cost of batteries, the small market segment for short-range compact cars and the multitude of consumer choices for alternative powertrain vehicles make this challenge noble but unreal.

Forcing electric vehicles on the market will not make them sell. President Obama is also working to realign the U.S. government’s vehicle-technology priorities. The White House’s proposed budget for 2012 would end federal government programs that fund hydrogen fuel cell research and efforts to develop clean diesel engines and retrofit older diesels. The budget proposes diverting funds from a dozen energy company tax breaks to help pay for putting the one million electric vehicles on the road by 2015 and help grow the market for electric cars. The budget proposal would transform a $7,500 tax credit for buyers of plug-in electric cars into a rebate at the dealership so that purchasers would not have to wait to claim the credit on their tax returns.

“The Challenge is a great
opportunity for SEMA members
to showcase their use of
innovative new products and
cutting-edge technologies.”

Consumers are generally loss averse. Uncertainty about future fuel savings makes paying more for alternative vehicle technologies a risky bet that most consumers are unwilling to make. Electric vehicles must solve customer problems without creating new ones. Consumers will not adopt new technologies unless they are better in every way than existing solutions, and the internal-combustion engine is far from dead. The Ford F-150 is still the top-selling vehicle in the United States. This may change in the coming years due to gas prices and consumer behaviors, but SEMA businesses also have to seize the day in order to create the future.

Advanced vehicle technologies go beyond battery-driven electric motors. The kinetic energy recovery hybrid system featured in the Porsche 918 RSR stores and releases energy without batteries. The kinetic hybrid system uses a flywheel to capture energy during braking from front-wheel motor hubs. Regenerative braking charges the flywheel, and the driver presses a button to access the energy, generating up to 75 kilowatts and adding more than 200 hp to the 918’s 560 hp. Power electronics is the new horsepower and represents an emerging technology in the performance aftermarket and new opportunities for the next generation of hot rodders and enthusiasts.

Automotive OEMs are also working with lightweight materials and advanced technologies to reduce the mass of each new generation of vehicles, optimize system integration and refine aerodynamics. Experts estimate that every additional 100 lbs. of weight a vehicle has to carry reduces fuel efficiency by 1%–2%. The new eco-version of the Chevy Cruze has lower fasciae and an aerodynamic shutter that closes to increase fuel efficiency.

SN: How is the industry addressing increasing vehicle complexity and cross-industry product development?

JW: Open innovation, collaboration, systems engineering and lean customization are quickly becoming best practices and competitive advantages in the new automotive normal. Today’s vehicles are not just a collection of 5,000 loosely integrated parts. They are an interdependent “system of systems,” connecting body, chassis, interior and powertrain systems through more than 150 controllers and 10 million lines of code and embedded software. Automotive vehicle systems engineering is, in some cases, very close to rocket science. Both the NHTSA and NASA played a critical role in the electronics systems and electromagnetic interference analysis of the unintended acceleration of vehicles produced by Toyota. These studies reinforced confidence in the safety and reliability of the advanced technologies of Toyota vehicles.

Products, processes and profits are inextricably linked. Lean customization, like lean production, is a paradox. On one hand, every activity, task and flow of work is rigidly scripted. Yet at the same time, lean operations are very flexible and responsive to customer demand. Designing for customization is the intersection of design, technology and the customer experience. Designing for customization and lean-customization principles cast the biggest shadow on profitable personalization. Commoditization, standardization and commonization actually drive customization.

Lean-customization principles can make the difference between built-in profits and reverse-engineered costs. The OEMs are being driven to reduce vehicle complexity while simultaneously increasing the flexibility to build more models and variants off of fewer platforms. Aftermarket companies and dealers can also help take the complexity out of assembly plants by collaborating with OEMs to develop product plans and vehicle architectures with cost-effective, simplified bills of material that can be profitably customized with factory and aftermarket-branded parts and accessories at dealers, customization centers and independent installers.

Ford F-150 supplied by Superlift Suspension Systems was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.
A virtual test method was demonstrated at the SEMA Show last year. In the demonstration, a virtual model of a modified Ford F-150 supplied by Superlift Suspension Systems was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.
If you are truly committed to competing and growing in the new automotive normal, designing for lean customization is a five-star product-development process. It’s a two-star process if you are simply involved. And it’s a waste of time if you are just going through the motions.

Enlightened automakers, consumer-electronics manufacturers, aftermarket companies, dealers and installers recognize that they need to work together to ensure that they can personalize vehicles and add future capabilities profitably. Open innovation and collaboration are essential for growth. Ford’s signature technologies—SYNC and EcoBoost—are great examples of Ford’s collaboration and personalization strategy for driving connected and driving green. Automakers and aftermarket companies that do not know how to apply collaborative value-chain practices and technologies will be beaten by those who do.

Collaboration is not a hobby. It’s not easy to collaborate. It’s an unnatural act. Mazda, for example, will launch a hybrid using Toyota technology in 2013. Successful OEMs will rely more on the aftermarket to reach new markets and segments with increased personalization and lower costs. The old approach of proprietary architectures and closed systems hasn’t died yet, and the new approach to open innovation and collaboration is
just beginning.

SEMA’s innovative partnership with the Clemson University International Center for Automotive Research (CU-ICAR) is an excellent example of open innovation and generative thinking in action. SEMA and CU-ICAR have teamed up to offer SEMA members access to world-class resources, including a 580hp engine dynamometer test cell, a dual-column full-vehicle coordinate measuring machine, a seven-post road simulator in an environmental chamber, an electromagnetic compatibility chamber and a 500hp four-wheel chassis dynamometer in an anechoic chamber.

SN: What is the state of modern musclecar technology—high-performance vehicles, such as the new Camaro, Mustang and Charger—and how will it affect SEMA-member companies?

JW: While many SEMA companies feared that advanced technologies signaled the demise of the specialty-equipment market and believed tighter federal emissions and fuel-efficiency standards would eliminate performance vehicles from America’s roadways, something quite different is happening. Green muscle is alive and well and took center stage at many of this year’s auto shows. Leading automakers are focusing on matching horsepower with the fastest computing power.

“Open innovation, collaboration,
systems engineering and lean
customization are quickly
becoming best practices and
competitive advantages in the
new automotive normal.”

Only 20% of the fuel’s energy is used to power vehicles equipped with traditional internal-combustion engines. Despite the hype and increased attention being focused on alternative fuels, the gasoline internal-combustion engine will continue to be a major element in the growth of the performance aftermarket for years to come due to significant innovations and improvements in gasoline direct injection, turbocharging, supercharging and electronic
fuel management.

Horsepower still moves product. Nearly every major automaker now offers a performance car for street use that is as powerful as many of the race cars on the track. The Cadillac CTS-VR is equipped with a supercharged V8 that pumps out 556 hp. The new supercharged V8 Camaro ZL1 offers 550 hp and 550 lb.-ft. of torque. Chevy will introduce a new limited-edition Camaro every six months. The ’11 Mustang with an aluminum V6 makes 305 hp and gets 31 miles per gallon. The ’12 Dodge Charger SRT8 delivers an exceptionally mean version of its flagship sedan to the tune of 465 hp from an even larger Hemi V8. The engine grows from 6.1L to 6.4L with 465 lb.-ft. of torque.

Advanced engine and transmission technologies, such as cam phasing, variable valve timing, port deactivation, direct injection, turbo boosting, dry dual clutches and wide-ratio six-speed-plus gearing, combined with reduced mass, decreased parasitic losses and integrated engine and transmission control software have improved the internal-combustion engine in these vehicles to efficiencies that would have been unbelievable just five years ago.

It’s not just new vehicles that are repowering the American Dream. Neil Young demonstrated the entrepreneurial spirit of SEMA members and performance enthusiasts everywhere with his keynote remarks and the introduction of his ’59 Lincvolt at the Green Performance session during last year’s SEMA Show. Lincvolt is the world’s first microturbine-powered bio-electro-cruiser and proves that a plug-in electroturbine series hybrid can deliver the performance of a fullsize long-range highway cruiser and achieve ultralow emissions. Lincvolt weighs nearly 2.5 times what a typical hybrid electric car weighs, yet it has a 400-mile extended range and a 50-mile range on electric power only. 

SN: General Motors released information recently about an OnStar mirror that will be retailed for non-GM vehicles. How will those types of innovations impact SEMA companies?

JW: Telematics and connected-vehicle technologies may not seem that pervasive in the automotive aftermarket yet, but that is changing quickly, as evidenced by the new vehicles on display at this year’s auto shows. Ford’s voice-activated SYNC platform continues to evolve with new features and capabilities and has been installed in more than 3 million vehicles. More than 80% of Ford buyers take the SYNC option, and Hyundai is launching its own system called Blue Link.

The recently introduced aftermarket version of OnStar is embedded in a replacement rearview mirror and sells for $299 plus a $100 installation. Expect more automakers, aftermarket suppliers, app developers and installers to form collaborative partnerships to leverage infotainment innovations and capitalize on this growing market. Ford CEO Alan Mulally summed up vehicle connectivity very well when he said: “It’s cool to connect. But it’s past cool. It’s a reason to buy!” I would add that if you think it’s too connected, you are too old. GenGreeners, the next generation of car buyers and enthusiasts, are under 16 years old today and will be the first generation to grow up with the choice of an electric, a hybrid or an internal-combustion engine as one of their buying options.

Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, shown here with the newly introduced Dodge Charger SRT8
Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, shown here with the newly introduced Dodge Charger SRT8, summed up the future of performance and customization very well. “Everyone is a car person,” he said. “Some just don’t know it.”
SN: What are some of the other significant automotive applications that have been introduced this year?

JW: Millions of people have powerful smart phones that are loaded with a variety of capabilities, such as Pandora’s Internet radio app, that consumers can use in their vehicles. BMW’s MINI and aftermarket companies are taking advantage of Apple’s iPhone capabilities and offering an automotive-grade iPod interface that supports Apple’s iPod Out through the MINI connected system. The iPod screen appears in the vehicle’s display screen. Drivers are familiar with the screen, so it is less distracting than adding
another interface.

Distracted driving is certainly a concern for both OEMs and aftermarket companies that are providing connected-vehicle products, apps and solutions. An estimated 20% of injury crashes were reported to have involved driver distraction. Glances away from the road for more than two seconds for any purpose double the risk of a crash or near crash. Many drivers—particularly GenY’ers, which is the largest generation ever—understand the risk and will find ways to stay connected and be on the grid while driving. Forcing them to go off the grid and not be connected with their friends and networks while driving is not a feasible solution.

The app is just as important as the content. I asked a panel of six experts at a recent Society of Automotive Engineers (SAE) discussion on automotive and consumer electronics what feature, function, system or app would be most significant in the next five years and if it would come from inside or outside the auto industry. Five of the six said it would come from outside the auto industry.

“Eco-friendly vehicles will remain
a niche segment for the next
decade despite all the hype
and headlines. Performance
vehicles will also continue
as a niche segment.”

SN:
What is SEMA doing in the area of vehicle dynamics of aftermarket-modified vehicles and the new Federal Motor Vehicle Safety Standards (FMVSS) 126 regulation that goes into effect for all U.S. cars and trucks in model-year ’12, requiring all vehicles 10,000 lbs. or less to include an electronic stability control (ESC) system as
standard equipment?

JW: ESC monitors vehicle motion. When loss of control is imminent, ESC strategically applies the brakes to help stabilize the vehicle. Similar requirements for the rest of the global community are contained in the United Nations Economic Commission for Europe 13H regulations.

Compliance with FMVSS is normally the responsibility of vehicle manufacturers; however, SEMA has taken a proactive approach and developed a methodology and program to evaluate the ESC performance of aftermarket-modified vehicles. To actually test every vehicle configuration is cost prohibitive for OEMs and the aftermarket, so SEMA sought outside help from leading industry experts and companies in the area of vehicle dynamics simulation and testing to develop a “best practices” solution to offer member companies. It’s important to note that any modification to the engine, steering, brakes, suspension, wheels or tires may have an impact on
ESC performance.

A virtual test method was demonstrated at the SEMA Show last year, drawing on the controls-development experience of Advanced Controls Engineering Consultants LLC, the CarSim vehicle dynamics simulation produced by Mechanical Simulation Corporation and the hardware-in-the-loop (HIL) technologies of dSPACE GmbH. A modified Ford F-150 supplied by Superlift Suspension Systems was used as the test vehicle. In the demonstration, a virtual model of the vehicle was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.

The CarSim software provides not only a dynamic model of the pickup, but also a virtual proving ground on which to conduct the tests. It also includes steering and throttle inputs that are required to execute the sine with dwell (SWD) test maneuver. CarSim connects to the ESC controller on the vehicle through the dSPACE hardware.


Neil Young demonstrated the entrepreneurial spirit of SEMA members and performance enthusiasts everywhere with his keynote remarks and the introduction of his ’59 Lincvolt at the Green Performance session during last year’s SEMA Show. Courtesy Steve Cross, Courtesy of Shakey Pictures
Throughout the test, CarSim sends vehicle dynamics information about wheel speeds, steering-wheel angle, yaw rates and lateral acceleration to the ESC controller. The ESC controller performs as if it is experiencing the maneuver in an actual vehicle and controls the application of the individual brakes on the vehicle. Pressure transducers installed at each of the truck’s brakes report the application pressure back to CarSim, which determines the brake forces applied at each wheel of the simulated vehicle and the subsequent dynamic response. Displays and readouts of the vehicle’s dynamic response on CarSim plots allow engineers to determine whether the vehicle meets the required performance. The ESC-HIL simulation does this at a fraction of the cost of an actual physical test.

An ESC-HIL demonstration with expanded vehicle simulation capabilities will be set-up in the SEMA Vehicle Technology Center (VTC) at this year’s SEMA Show, where attendees can see the latest advanced vehicle technologies impacting the specialty-equipment and performance aftermarket industry today and in the immediate future.

SN:The aftermarket is being bombarded with green technologies and advanced electronics. Other industries are dedicated to technologies that are peripheral to automobiles but don’t address the vehicles themselves. SEMA members do. How is SEMA increasing its relevance as technological innovation expands?

JW: One very exciting element of our vehicle technology strategy is to create the SEMA Vehicle Technology Center at the SEMA Show. The VTC will showcase SEMA’s vehicle technology programs and partners and the benefits to members. The VTC and its Tech Zones are being designed to reinforce our efforts to appeal to emerging-technology enthusiasts and bring greater focus, urgency and performance aftermarket relevance to our advanced-technology offerings. We also want to put vehicle technology on the front lines, similar to what GM and Ford have done recently with the creation of new chief technology officer positions.

The purpose of the VTC is to inform and educate SEMA members. We also want to increase member participation in and understanding of the programs, partnerships, services and systems as well as product and vehicle development tools, methodologies and resources that are available at affordable costs to SEMA-member companies.

The Vehicle Technology Center consists of both a virtual platform and a physical platform. The virtual platform will include a VTC theater with seven education seminars focused on identifying and integrating key industry trends, technologies and SEMA initiatives. They will help members understand the challenges of advanced vehicle technologies and leverage new business opportunities as well as provide networking opportunities for collaborative product-development relationships. The seminars will open with a vehicle technology keynote featuring Paul Mascarenas, chief technical officer and vice president for research and advanced engineering at Ford Motor Company. They will also include more than 20 experts from leading automakers, powersports, aftermarket, technology and marketing companies throughout the week. 

The seminars will focus on the future of performance and customization, branding performance, marketing to enthusiasts, designing for customization, vehicle dynamics of aftermarket-modified vehicles, green performance and connected-vehicle technologies. The physical platform and exhibit space in the VTC will showcase SEMA-developed solutions with technology simulations, demonstrations and workshops to introduce members to the benefits of SEMA vehicle technology programs and partners.

SEMA is continually working to develop vehicle technology solutions and build relationships that foster collaboration between the automakers, the original-equipment suppliers, dealers, research organizations, industry associations and member companies. SEMA’s Vehicle Technology Center will provide members with in-depth information and hands-on understanding from leading industry experts about advanced vehicle technologies and emerging systems to help them understand the impact on their business today, as well as prepare for and leverage tomorrow’s technologies and business opportunities.

SN: What should SEMA members understand in a general sense about the role of technology in the future of the automobile?

JW: Advanced vehicle technologies are driving the future of performance and customization. Both the automobile and the industry are being reinvented. Systems are moving from mechanical to electrical. Vehicles are moving from standalone to connected, and markets are moving from mass production to niche segments and personalization.

Innovation is the engine of growth. Growth in the new auto normal doesn’t lie in disrupting large, over-served markets but in disrupting small under-served markets and emerging segments focused on product differentiation, performance and customization.

Eco-friendly vehicles will remain a niche segment for the next decade despite all the hype and headlines. Performance vehicles will also continue as a niche segment. Both will coexist as advanced vehicle technologies are developed and deployed. Hybrids and electric vehicles will make up less than 10% of the vehicle market by 2020, and while many consumers consider themselves performance enthusiasts, that market segment will be about 10% as well.

My good friend, Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, and a longtime SEMA advocate, recently launched his “Never Neutral” campaign and summed up the future of performance and customization very well. “Everyone is a car person,” he said. “Some just don’t know it.”

Mon, 04/11/2011 - 14:47

SEMA News—April 2011

The Future of Performance and Customization

By Steve Campbell

Vehicle electrification, electronics integration and connected-vehicle technologies are leading the way toward the development of cars that don’t crash, devices that don’t distract and powertrains that don’t pollute.

Courtesy Regis Lefebure
As part of our annual look at where automotive technology stands, we recently engaged in a wide-ranging conversation with John Waraniak, SEMA vice president of vehicle technology, delving further into the four advanced vehicle technology megatrends: driving green, driving connected, driving safe and driving cool.

SEMA News: What are the latest advances in electronics, including entertainment, navigation and interactive car-to-car and car-to-infrastructure systems?

John Waraniak: Vehicle electrification, electronics integration and connected-vehicle technologies are leading the way toward the development of cars that don’t crash, devices that don’t distract and powertrains that don’t pollute. Automotive technology has extended far beyond the vehicle itself. Onboard vehicle technologies combined with vehicle-to-vehicle and vehicle-to-roadside technologies are creating many new and exciting product and service opportunities for specialty-equipment and performance aftermarket manufacturers, installers, retailers and distributors. The challenges, opportunities and solutions for SEMA members lie in how effectively these features, devices and accessories can be integrated into today’s vehicles.

Technology is integral to both the relevance and the future of SEMA and the performance aftermarket. To ignore its impact is a fundamental mistake. More than half of the new vehicles offered in five years will support applications through car-radio platforms. By 2017, more than 13 million vehicles will be sold globally with connected-vehicle platforms. Aftermarket suppliers currently provide more than 35 radios supporting apps via smartphone integration and new operating systems, such as the Android that was featured on the Clemson Deep Orange vehicle displayed at the 2010 SEMA Show.

SEMA recently met with Peter Appel, administrator of the U.S. Department of Transportation’s Research and Innovative Technology Administration (RITA) to discuss vehicle-to-vehicle (V2V) technology and other advanced automotive electronics opportunities for SEMA members. SEMA is working with RITA leadership to promote the aftermarket industry’s contributions to deploying V2V and onboard technologies.

Connected vehicles have the potential to avoid crashes and make the transportation grid more efficient. Green performance and connected-vehicle technologies are quickly merging to create new business and product-development opportunities in integrating automotive and consumer electronics apps and solutions. Appel will participate again as a speaker in the Driving Connected session in the Vehicle Technology Center at the 2011 SEMA Show. He also briefed us on a new competition program launched by U.S. Transportation Secretary Ray LaHood on accelerating the development of connected vehicles and technologies.

The program announced by RITA is a nationwide competition seeking ideas for using wireless connectivity between vehicles to make transportation safer, greener and easier to use. During the Connected Vehicle Technology Challenge competition, RITA will accept ideas for products and applications that use dedicated short-range communications, which is a fast, secure wireless technology created specifically for connected vehicles and the evolving infrastructure. The challenge is a great opportunity for SEMA members to showcase their use of innovative new products and cutting-edge technologies.

SN: Several of the automakers are now selling battery electric vehicles (BEVs). How will electric cars and advanced vehicle technologies affect the performance and enthusiast marketplace?

JW: President Obama said in his State of the Union speech that technology innovation will be the nation’s “Sputnik moment,” and that the economy’s priorities will be focused on industries such as clean energy and advanced technology. His plan is to have one million advanced-technology electric vehicles on the road by 2015. This is a tough challenge because only 20,000 electric vehicles are expected to be sold this year. It took Toyota 10 years to sell one million Prius hybrids, and hybrid sales peaked at 353,000 in 2007.


Today’s vehicles are not just a collection of 5,000 loosely integrated parts. They are an interdependent “system of systems,” connecting body, chassis, interior and powertrain systems through more than 150 controllers and 10 million lines of code and embedded software.
Margin times market share times market size is the new metric for competitiveness, and the market for electric vehicles is just not there yet. Incentivizing the market to jumpstart it is a good strategy, but it is not sustainable in the hyper-competitive automotive industry of today and tomorrow. Total industry sales in 2011 will be somewhere between 11 and 12 million vehicles, which means less than 0.2% of all vehicles sold in the United States will be BEVs. So what’s all the hype about electric vehicles? Industry statistics indicate that only 7% of new-car shoppers are considering electric vehicles. The United States has more than $25 billion invested in advanced-technology vehicle development and only two BEVs in production—the Chevy Volt and Nissan Leaf. The Ford Focus Electric will become available in late 2011. The high cost of batteries, the small market segment for short-range compact cars and the multitude of consumer choices for alternative powertrain vehicles make this challenge noble but unreal.

Forcing electric vehicles on the market will not make them sell. President Obama is also working to realign the U.S. government’s vehicle-technology priorities. The White House’s proposed budget for 2012 would end federal government programs that fund hydrogen fuel cell research and efforts to develop clean diesel engines and retrofit older diesels. The budget proposes diverting funds from a dozen energy company tax breaks to help pay for putting the one million electric vehicles on the road by 2015 and help grow the market for electric cars. The budget proposal would transform a $7,500 tax credit for buyers of plug-in electric cars into a rebate at the dealership so that purchasers would not have to wait to claim the credit on their tax returns.

“The Challenge is a great
opportunity for SEMA members
to showcase their use of
innovative new products and
cutting-edge technologies.”

Consumers are generally loss averse. Uncertainty about future fuel savings makes paying more for alternative vehicle technologies a risky bet that most consumers are unwilling to make. Electric vehicles must solve customer problems without creating new ones. Consumers will not adopt new technologies unless they are better in every way than existing solutions, and the internal-combustion engine is far from dead. The Ford F-150 is still the top-selling vehicle in the United States. This may change in the coming years due to gas prices and consumer behaviors, but SEMA businesses also have to seize the day in order to create the future.

Advanced vehicle technologies go beyond battery-driven electric motors. The kinetic energy recovery hybrid system featured in the Porsche 918 RSR stores and releases energy without batteries. The kinetic hybrid system uses a flywheel to capture energy during braking from front-wheel motor hubs. Regenerative braking charges the flywheel, and the driver presses a button to access the energy, generating up to 75 kilowatts and adding more than 200 hp to the 918’s 560 hp. Power electronics is the new horsepower and represents an emerging technology in the performance aftermarket and new opportunities for the next generation of hot rodders and enthusiasts.

Automotive OEMs are also working with lightweight materials and advanced technologies to reduce the mass of each new generation of vehicles, optimize system integration and refine aerodynamics. Experts estimate that every additional 100 lbs. of weight a vehicle has to carry reduces fuel efficiency by 1%–2%. The new eco-version of the Chevy Cruze has lower fasciae and an aerodynamic shutter that closes to increase fuel efficiency.

SN: How is the industry addressing increasing vehicle complexity and cross-industry product development?

JW: Open innovation, collaboration, systems engineering and lean customization are quickly becoming best practices and competitive advantages in the new automotive normal. Today’s vehicles are not just a collection of 5,000 loosely integrated parts. They are an interdependent “system of systems,” connecting body, chassis, interior and powertrain systems through more than 150 controllers and 10 million lines of code and embedded software. Automotive vehicle systems engineering is, in some cases, very close to rocket science. Both the NHTSA and NASA played a critical role in the electronics systems and electromagnetic interference analysis of the unintended acceleration of vehicles produced by Toyota. These studies reinforced confidence in the safety and reliability of the advanced technologies of Toyota vehicles.

Products, processes and profits are inextricably linked. Lean customization, like lean production, is a paradox. On one hand, every activity, task and flow of work is rigidly scripted. Yet at the same time, lean operations are very flexible and responsive to customer demand. Designing for customization is the intersection of design, technology and the customer experience. Designing for customization and lean-customization principles cast the biggest shadow on profitable personalization. Commoditization, standardization and commonization actually drive customization.

Lean-customization principles can make the difference between built-in profits and reverse-engineered costs. The OEMs are being driven to reduce vehicle complexity while simultaneously increasing the flexibility to build more models and variants off of fewer platforms. Aftermarket companies and dealers can also help take the complexity out of assembly plants by collaborating with OEMs to develop product plans and vehicle architectures with cost-effective, simplified bills of material that can be profitably customized with factory and aftermarket-branded parts and accessories at dealers, customization centers and independent installers.

Ford F-150 supplied by Superlift Suspension Systems was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.
A virtual test method was demonstrated at the SEMA Show last year. In the demonstration, a virtual model of a modified Ford F-150 supplied by Superlift Suspension Systems was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.
If you are truly committed to competing and growing in the new automotive normal, designing for lean customization is a five-star product-development process. It’s a two-star process if you are simply involved. And it’s a waste of time if you are just going through the motions.

Enlightened automakers, consumer-electronics manufacturers, aftermarket companies, dealers and installers recognize that they need to work together to ensure that they can personalize vehicles and add future capabilities profitably. Open innovation and collaboration are essential for growth. Ford’s signature technologies—SYNC and EcoBoost—are great examples of Ford’s collaboration and personalization strategy for driving connected and driving green. Automakers and aftermarket companies that do not know how to apply collaborative value-chain practices and technologies will be beaten by those who do.

Collaboration is not a hobby. It’s not easy to collaborate. It’s an unnatural act. Mazda, for example, will launch a hybrid using Toyota technology in 2013. Successful OEMs will rely more on the aftermarket to reach new markets and segments with increased personalization and lower costs. The old approach of proprietary architectures and closed systems hasn’t died yet, and the new approach to open innovation and collaboration is
just beginning.

SEMA’s innovative partnership with the Clemson University International Center for Automotive Research (CU-ICAR) is an excellent example of open innovation and generative thinking in action. SEMA and CU-ICAR have teamed up to offer SEMA members access to world-class resources, including a 580hp engine dynamometer test cell, a dual-column full-vehicle coordinate measuring machine, a seven-post road simulator in an environmental chamber, an electromagnetic compatibility chamber and a 500hp four-wheel chassis dynamometer in an anechoic chamber.

SN: What is the state of modern musclecar technology—high-performance vehicles, such as the new Camaro, Mustang and Charger—and how will it affect SEMA-member companies?

JW: While many SEMA companies feared that advanced technologies signaled the demise of the specialty-equipment market and believed tighter federal emissions and fuel-efficiency standards would eliminate performance vehicles from America’s roadways, something quite different is happening. Green muscle is alive and well and took center stage at many of this year’s auto shows. Leading automakers are focusing on matching horsepower with the fastest computing power.

“Open innovation, collaboration,
systems engineering and lean
customization are quickly
becoming best practices and
competitive advantages in the
new automotive normal.”

Only 20% of the fuel’s energy is used to power vehicles equipped with traditional internal-combustion engines. Despite the hype and increased attention being focused on alternative fuels, the gasoline internal-combustion engine will continue to be a major element in the growth of the performance aftermarket for years to come due to significant innovations and improvements in gasoline direct injection, turbocharging, supercharging and electronic
fuel management.

Horsepower still moves product. Nearly every major automaker now offers a performance car for street use that is as powerful as many of the race cars on the track. The Cadillac CTS-VR is equipped with a supercharged V8 that pumps out 556 hp. The new supercharged V8 Camaro ZL1 offers 550 hp and 550 lb.-ft. of torque. Chevy will introduce a new limited-edition Camaro every six months. The ’11 Mustang with an aluminum V6 makes 305 hp and gets 31 miles per gallon. The ’12 Dodge Charger SRT8 delivers an exceptionally mean version of its flagship sedan to the tune of 465 hp from an even larger Hemi V8. The engine grows from 6.1L to 6.4L with 465 lb.-ft. of torque.

Advanced engine and transmission technologies, such as cam phasing, variable valve timing, port deactivation, direct injection, turbo boosting, dry dual clutches and wide-ratio six-speed-plus gearing, combined with reduced mass, decreased parasitic losses and integrated engine and transmission control software have improved the internal-combustion engine in these vehicles to efficiencies that would have been unbelievable just five years ago.

It’s not just new vehicles that are repowering the American Dream. Neil Young demonstrated the entrepreneurial spirit of SEMA members and performance enthusiasts everywhere with his keynote remarks and the introduction of his ’59 Lincvolt at the Green Performance session during last year’s SEMA Show. Lincvolt is the world’s first microturbine-powered bio-electro-cruiser and proves that a plug-in electroturbine series hybrid can deliver the performance of a fullsize long-range highway cruiser and achieve ultralow emissions. Lincvolt weighs nearly 2.5 times what a typical hybrid electric car weighs, yet it has a 400-mile extended range and a 50-mile range on electric power only. 

SN: General Motors released information recently about an OnStar mirror that will be retailed for non-GM vehicles. How will those types of innovations impact SEMA companies?

JW: Telematics and connected-vehicle technologies may not seem that pervasive in the automotive aftermarket yet, but that is changing quickly, as evidenced by the new vehicles on display at this year’s auto shows. Ford’s voice-activated SYNC platform continues to evolve with new features and capabilities and has been installed in more than 3 million vehicles. More than 80% of Ford buyers take the SYNC option, and Hyundai is launching its own system called Blue Link.

The recently introduced aftermarket version of OnStar is embedded in a replacement rearview mirror and sells for $299 plus a $100 installation. Expect more automakers, aftermarket suppliers, app developers and installers to form collaborative partnerships to leverage infotainment innovations and capitalize on this growing market. Ford CEO Alan Mulally summed up vehicle connectivity very well when he said: “It’s cool to connect. But it’s past cool. It’s a reason to buy!” I would add that if you think it’s too connected, you are too old. GenGreeners, the next generation of car buyers and enthusiasts, are under 16 years old today and will be the first generation to grow up with the choice of an electric, a hybrid or an internal-combustion engine as one of their buying options.

Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, shown here with the newly introduced Dodge Charger SRT8
Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, shown here with the newly introduced Dodge Charger SRT8, summed up the future of performance and customization very well. “Everyone is a car person,” he said. “Some just don’t know it.”
SN: What are some of the other significant automotive applications that have been introduced this year?

JW: Millions of people have powerful smart phones that are loaded with a variety of capabilities, such as Pandora’s Internet radio app, that consumers can use in their vehicles. BMW’s MINI and aftermarket companies are taking advantage of Apple’s iPhone capabilities and offering an automotive-grade iPod interface that supports Apple’s iPod Out through the MINI connected system. The iPod screen appears in the vehicle’s display screen. Drivers are familiar with the screen, so it is less distracting than adding
another interface.

Distracted driving is certainly a concern for both OEMs and aftermarket companies that are providing connected-vehicle products, apps and solutions. An estimated 20% of injury crashes were reported to have involved driver distraction. Glances away from the road for more than two seconds for any purpose double the risk of a crash or near crash. Many drivers—particularly GenY’ers, which is the largest generation ever—understand the risk and will find ways to stay connected and be on the grid while driving. Forcing them to go off the grid and not be connected with their friends and networks while driving is not a feasible solution.

The app is just as important as the content. I asked a panel of six experts at a recent Society of Automotive Engineers (SAE) discussion on automotive and consumer electronics what feature, function, system or app would be most significant in the next five years and if it would come from inside or outside the auto industry. Five of the six said it would come from outside the auto industry.

“Eco-friendly vehicles will remain
a niche segment for the next
decade despite all the hype
and headlines. Performance
vehicles will also continue
as a niche segment.”

SN:
What is SEMA doing in the area of vehicle dynamics of aftermarket-modified vehicles and the new Federal Motor Vehicle Safety Standards (FMVSS) 126 regulation that goes into effect for all U.S. cars and trucks in model-year ’12, requiring all vehicles 10,000 lbs. or less to include an electronic stability control (ESC) system as
standard equipment?

JW: ESC monitors vehicle motion. When loss of control is imminent, ESC strategically applies the brakes to help stabilize the vehicle. Similar requirements for the rest of the global community are contained in the United Nations Economic Commission for Europe 13H regulations.

Compliance with FMVSS is normally the responsibility of vehicle manufacturers; however, SEMA has taken a proactive approach and developed a methodology and program to evaluate the ESC performance of aftermarket-modified vehicles. To actually test every vehicle configuration is cost prohibitive for OEMs and the aftermarket, so SEMA sought outside help from leading industry experts and companies in the area of vehicle dynamics simulation and testing to develop a “best practices” solution to offer member companies. It’s important to note that any modification to the engine, steering, brakes, suspension, wheels or tires may have an impact on
ESC performance.

A virtual test method was demonstrated at the SEMA Show last year, drawing on the controls-development experience of Advanced Controls Engineering Consultants LLC, the CarSim vehicle dynamics simulation produced by Mechanical Simulation Corporation and the hardware-in-the-loop (HIL) technologies of dSPACE GmbH. A modified Ford F-150 supplied by Superlift Suspension Systems was used as the test vehicle. In the demonstration, a virtual model of the vehicle was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.

The CarSim software provides not only a dynamic model of the pickup, but also a virtual proving ground on which to conduct the tests. It also includes steering and throttle inputs that are required to execute the sine with dwell (SWD) test maneuver. CarSim connects to the ESC controller on the vehicle through the dSPACE hardware.


Neil Young demonstrated the entrepreneurial spirit of SEMA members and performance enthusiasts everywhere with his keynote remarks and the introduction of his ’59 Lincvolt at the Green Performance session during last year’s SEMA Show. Courtesy Steve Cross, Courtesy of Shakey Pictures
Throughout the test, CarSim sends vehicle dynamics information about wheel speeds, steering-wheel angle, yaw rates and lateral acceleration to the ESC controller. The ESC controller performs as if it is experiencing the maneuver in an actual vehicle and controls the application of the individual brakes on the vehicle. Pressure transducers installed at each of the truck’s brakes report the application pressure back to CarSim, which determines the brake forces applied at each wheel of the simulated vehicle and the subsequent dynamic response. Displays and readouts of the vehicle’s dynamic response on CarSim plots allow engineers to determine whether the vehicle meets the required performance. The ESC-HIL simulation does this at a fraction of the cost of an actual physical test.

An ESC-HIL demonstration with expanded vehicle simulation capabilities will be set-up in the SEMA Vehicle Technology Center (VTC) at this year’s SEMA Show, where attendees can see the latest advanced vehicle technologies impacting the specialty-equipment and performance aftermarket industry today and in the immediate future.

SN:The aftermarket is being bombarded with green technologies and advanced electronics. Other industries are dedicated to technologies that are peripheral to automobiles but don’t address the vehicles themselves. SEMA members do. How is SEMA increasing its relevance as technological innovation expands?

JW: One very exciting element of our vehicle technology strategy is to create the SEMA Vehicle Technology Center at the SEMA Show. The VTC will showcase SEMA’s vehicle technology programs and partners and the benefits to members. The VTC and its Tech Zones are being designed to reinforce our efforts to appeal to emerging-technology enthusiasts and bring greater focus, urgency and performance aftermarket relevance to our advanced-technology offerings. We also want to put vehicle technology on the front lines, similar to what GM and Ford have done recently with the creation of new chief technology officer positions.

The purpose of the VTC is to inform and educate SEMA members. We also want to increase member participation in and understanding of the programs, partnerships, services and systems as well as product and vehicle development tools, methodologies and resources that are available at affordable costs to SEMA-member companies.

The Vehicle Technology Center consists of both a virtual platform and a physical platform. The virtual platform will include a VTC theater with seven education seminars focused on identifying and integrating key industry trends, technologies and SEMA initiatives. They will help members understand the challenges of advanced vehicle technologies and leverage new business opportunities as well as provide networking opportunities for collaborative product-development relationships. The seminars will open with a vehicle technology keynote featuring Paul Mascarenas, chief technical officer and vice president for research and advanced engineering at Ford Motor Company. They will also include more than 20 experts from leading automakers, powersports, aftermarket, technology and marketing companies throughout the week. 

The seminars will focus on the future of performance and customization, branding performance, marketing to enthusiasts, designing for customization, vehicle dynamics of aftermarket-modified vehicles, green performance and connected-vehicle technologies. The physical platform and exhibit space in the VTC will showcase SEMA-developed solutions with technology simulations, demonstrations and workshops to introduce members to the benefits of SEMA vehicle technology programs and partners.

SEMA is continually working to develop vehicle technology solutions and build relationships that foster collaboration between the automakers, the original-equipment suppliers, dealers, research organizations, industry associations and member companies. SEMA’s Vehicle Technology Center will provide members with in-depth information and hands-on understanding from leading industry experts about advanced vehicle technologies and emerging systems to help them understand the impact on their business today, as well as prepare for and leverage tomorrow’s technologies and business opportunities.

SN: What should SEMA members understand in a general sense about the role of technology in the future of the automobile?

JW: Advanced vehicle technologies are driving the future of performance and customization. Both the automobile and the industry are being reinvented. Systems are moving from mechanical to electrical. Vehicles are moving from standalone to connected, and markets are moving from mass production to niche segments and personalization.

Innovation is the engine of growth. Growth in the new auto normal doesn’t lie in disrupting large, over-served markets but in disrupting small under-served markets and emerging segments focused on product differentiation, performance and customization.

Eco-friendly vehicles will remain a niche segment for the next decade despite all the hype and headlines. Performance vehicles will also continue as a niche segment. Both will coexist as advanced vehicle technologies are developed and deployed. Hybrids and electric vehicles will make up less than 10% of the vehicle market by 2020, and while many consumers consider themselves performance enthusiasts, that market segment will be about 10% as well.

My good friend, Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, and a longtime SEMA advocate, recently launched his “Never Neutral” campaign and summed up the future of performance and customization very well. “Everyone is a car person,” he said. “Some just don’t know it.”

Mon, 04/11/2011 - 14:47

SEMA News—April 2011

The Future of Performance and Customization

By Steve Campbell

Vehicle electrification, electronics integration and connected-vehicle technologies are leading the way toward the development of cars that don’t crash, devices that don’t distract and powertrains that don’t pollute.

Courtesy Regis Lefebure
As part of our annual look at where automotive technology stands, we recently engaged in a wide-ranging conversation with John Waraniak, SEMA vice president of vehicle technology, delving further into the four advanced vehicle technology megatrends: driving green, driving connected, driving safe and driving cool.

SEMA News: What are the latest advances in electronics, including entertainment, navigation and interactive car-to-car and car-to-infrastructure systems?

John Waraniak: Vehicle electrification, electronics integration and connected-vehicle technologies are leading the way toward the development of cars that don’t crash, devices that don’t distract and powertrains that don’t pollute. Automotive technology has extended far beyond the vehicle itself. Onboard vehicle technologies combined with vehicle-to-vehicle and vehicle-to-roadside technologies are creating many new and exciting product and service opportunities for specialty-equipment and performance aftermarket manufacturers, installers, retailers and distributors. The challenges, opportunities and solutions for SEMA members lie in how effectively these features, devices and accessories can be integrated into today’s vehicles.

Technology is integral to both the relevance and the future of SEMA and the performance aftermarket. To ignore its impact is a fundamental mistake. More than half of the new vehicles offered in five years will support applications through car-radio platforms. By 2017, more than 13 million vehicles will be sold globally with connected-vehicle platforms. Aftermarket suppliers currently provide more than 35 radios supporting apps via smartphone integration and new operating systems, such as the Android that was featured on the Clemson Deep Orange vehicle displayed at the 2010 SEMA Show.

SEMA recently met with Peter Appel, administrator of the U.S. Department of Transportation’s Research and Innovative Technology Administration (RITA) to discuss vehicle-to-vehicle (V2V) technology and other advanced automotive electronics opportunities for SEMA members. SEMA is working with RITA leadership to promote the aftermarket industry’s contributions to deploying V2V and onboard technologies.

Connected vehicles have the potential to avoid crashes and make the transportation grid more efficient. Green performance and connected-vehicle technologies are quickly merging to create new business and product-development opportunities in integrating automotive and consumer electronics apps and solutions. Appel will participate again as a speaker in the Driving Connected session in the Vehicle Technology Center at the 2011 SEMA Show. He also briefed us on a new competition program launched by U.S. Transportation Secretary Ray LaHood on accelerating the development of connected vehicles and technologies.

The program announced by RITA is a nationwide competition seeking ideas for using wireless connectivity between vehicles to make transportation safer, greener and easier to use. During the Connected Vehicle Technology Challenge competition, RITA will accept ideas for products and applications that use dedicated short-range communications, which is a fast, secure wireless technology created specifically for connected vehicles and the evolving infrastructure. The challenge is a great opportunity for SEMA members to showcase their use of innovative new products and cutting-edge technologies.

SN: Several of the automakers are now selling battery electric vehicles (BEVs). How will electric cars and advanced vehicle technologies affect the performance and enthusiast marketplace?

JW: President Obama said in his State of the Union speech that technology innovation will be the nation’s “Sputnik moment,” and that the economy’s priorities will be focused on industries such as clean energy and advanced technology. His plan is to have one million advanced-technology electric vehicles on the road by 2015. This is a tough challenge because only 20,000 electric vehicles are expected to be sold this year. It took Toyota 10 years to sell one million Prius hybrids, and hybrid sales peaked at 353,000 in 2007.


Today’s vehicles are not just a collection of 5,000 loosely integrated parts. They are an interdependent “system of systems,” connecting body, chassis, interior and powertrain systems through more than 150 controllers and 10 million lines of code and embedded software.
Margin times market share times market size is the new metric for competitiveness, and the market for electric vehicles is just not there yet. Incentivizing the market to jumpstart it is a good strategy, but it is not sustainable in the hyper-competitive automotive industry of today and tomorrow. Total industry sales in 2011 will be somewhere between 11 and 12 million vehicles, which means less than 0.2% of all vehicles sold in the United States will be BEVs. So what’s all the hype about electric vehicles? Industry statistics indicate that only 7% of new-car shoppers are considering electric vehicles. The United States has more than $25 billion invested in advanced-technology vehicle development and only two BEVs in production—the Chevy Volt and Nissan Leaf. The Ford Focus Electric will become available in late 2011. The high cost of batteries, the small market segment for short-range compact cars and the multitude of consumer choices for alternative powertrain vehicles make this challenge noble but unreal.

Forcing electric vehicles on the market will not make them sell. President Obama is also working to realign the U.S. government’s vehicle-technology priorities. The White House’s proposed budget for 2012 would end federal government programs that fund hydrogen fuel cell research and efforts to develop clean diesel engines and retrofit older diesels. The budget proposes diverting funds from a dozen energy company tax breaks to help pay for putting the one million electric vehicles on the road by 2015 and help grow the market for electric cars. The budget proposal would transform a $7,500 tax credit for buyers of plug-in electric cars into a rebate at the dealership so that purchasers would not have to wait to claim the credit on their tax returns.

“The Challenge is a great
opportunity for SEMA members
to showcase their use of
innovative new products and
cutting-edge technologies.”

Consumers are generally loss averse. Uncertainty about future fuel savings makes paying more for alternative vehicle technologies a risky bet that most consumers are unwilling to make. Electric vehicles must solve customer problems without creating new ones. Consumers will not adopt new technologies unless they are better in every way than existing solutions, and the internal-combustion engine is far from dead. The Ford F-150 is still the top-selling vehicle in the United States. This may change in the coming years due to gas prices and consumer behaviors, but SEMA businesses also have to seize the day in order to create the future.

Advanced vehicle technologies go beyond battery-driven electric motors. The kinetic energy recovery hybrid system featured in the Porsche 918 RSR stores and releases energy without batteries. The kinetic hybrid system uses a flywheel to capture energy during braking from front-wheel motor hubs. Regenerative braking charges the flywheel, and the driver presses a button to access the energy, generating up to 75 kilowatts and adding more than 200 hp to the 918’s 560 hp. Power electronics is the new horsepower and represents an emerging technology in the performance aftermarket and new opportunities for the next generation of hot rodders and enthusiasts.

Automotive OEMs are also working with lightweight materials and advanced technologies to reduce the mass of each new generation of vehicles, optimize system integration and refine aerodynamics. Experts estimate that every additional 100 lbs. of weight a vehicle has to carry reduces fuel efficiency by 1%–2%. The new eco-version of the Chevy Cruze has lower fasciae and an aerodynamic shutter that closes to increase fuel efficiency.

SN: How is the industry addressing increasing vehicle complexity and cross-industry product development?

JW: Open innovation, collaboration, systems engineering and lean customization are quickly becoming best practices and competitive advantages in the new automotive normal. Today’s vehicles are not just a collection of 5,000 loosely integrated parts. They are an interdependent “system of systems,” connecting body, chassis, interior and powertrain systems through more than 150 controllers and 10 million lines of code and embedded software. Automotive vehicle systems engineering is, in some cases, very close to rocket science. Both the NHTSA and NASA played a critical role in the electronics systems and electromagnetic interference analysis of the unintended acceleration of vehicles produced by Toyota. These studies reinforced confidence in the safety and reliability of the advanced technologies of Toyota vehicles.

Products, processes and profits are inextricably linked. Lean customization, like lean production, is a paradox. On one hand, every activity, task and flow of work is rigidly scripted. Yet at the same time, lean operations are very flexible and responsive to customer demand. Designing for customization is the intersection of design, technology and the customer experience. Designing for customization and lean-customization principles cast the biggest shadow on profitable personalization. Commoditization, standardization and commonization actually drive customization.

Lean-customization principles can make the difference between built-in profits and reverse-engineered costs. The OEMs are being driven to reduce vehicle complexity while simultaneously increasing the flexibility to build more models and variants off of fewer platforms. Aftermarket companies and dealers can also help take the complexity out of assembly plants by collaborating with OEMs to develop product plans and vehicle architectures with cost-effective, simplified bills of material that can be profitably customized with factory and aftermarket-branded parts and accessories at dealers, customization centers and independent installers.

Ford F-150 supplied by Superlift Suspension Systems was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.
A virtual test method was demonstrated at the SEMA Show last year. In the demonstration, a virtual model of a modified Ford F-150 supplied by Superlift Suspension Systems was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.
If you are truly committed to competing and growing in the new automotive normal, designing for lean customization is a five-star product-development process. It’s a two-star process if you are simply involved. And it’s a waste of time if you are just going through the motions.

Enlightened automakers, consumer-electronics manufacturers, aftermarket companies, dealers and installers recognize that they need to work together to ensure that they can personalize vehicles and add future capabilities profitably. Open innovation and collaboration are essential for growth. Ford’s signature technologies—SYNC and EcoBoost—are great examples of Ford’s collaboration and personalization strategy for driving connected and driving green. Automakers and aftermarket companies that do not know how to apply collaborative value-chain practices and technologies will be beaten by those who do.

Collaboration is not a hobby. It’s not easy to collaborate. It’s an unnatural act. Mazda, for example, will launch a hybrid using Toyota technology in 2013. Successful OEMs will rely more on the aftermarket to reach new markets and segments with increased personalization and lower costs. The old approach of proprietary architectures and closed systems hasn’t died yet, and the new approach to open innovation and collaboration is
just beginning.

SEMA’s innovative partnership with the Clemson University International Center for Automotive Research (CU-ICAR) is an excellent example of open innovation and generative thinking in action. SEMA and CU-ICAR have teamed up to offer SEMA members access to world-class resources, including a 580hp engine dynamometer test cell, a dual-column full-vehicle coordinate measuring machine, a seven-post road simulator in an environmental chamber, an electromagnetic compatibility chamber and a 500hp four-wheel chassis dynamometer in an anechoic chamber.

SN: What is the state of modern musclecar technology—high-performance vehicles, such as the new Camaro, Mustang and Charger—and how will it affect SEMA-member companies?

JW: While many SEMA companies feared that advanced technologies signaled the demise of the specialty-equipment market and believed tighter federal emissions and fuel-efficiency standards would eliminate performance vehicles from America’s roadways, something quite different is happening. Green muscle is alive and well and took center stage at many of this year’s auto shows. Leading automakers are focusing on matching horsepower with the fastest computing power.

“Open innovation, collaboration,
systems engineering and lean
customization are quickly
becoming best practices and
competitive advantages in the
new automotive normal.”

Only 20% of the fuel’s energy is used to power vehicles equipped with traditional internal-combustion engines. Despite the hype and increased attention being focused on alternative fuels, the gasoline internal-combustion engine will continue to be a major element in the growth of the performance aftermarket for years to come due to significant innovations and improvements in gasoline direct injection, turbocharging, supercharging and electronic
fuel management.

Horsepower still moves product. Nearly every major automaker now offers a performance car for street use that is as powerful as many of the race cars on the track. The Cadillac CTS-VR is equipped with a supercharged V8 that pumps out 556 hp. The new supercharged V8 Camaro ZL1 offers 550 hp and 550 lb.-ft. of torque. Chevy will introduce a new limited-edition Camaro every six months. The ’11 Mustang with an aluminum V6 makes 305 hp and gets 31 miles per gallon. The ’12 Dodge Charger SRT8 delivers an exceptionally mean version of its flagship sedan to the tune of 465 hp from an even larger Hemi V8. The engine grows from 6.1L to 6.4L with 465 lb.-ft. of torque.

Advanced engine and transmission technologies, such as cam phasing, variable valve timing, port deactivation, direct injection, turbo boosting, dry dual clutches and wide-ratio six-speed-plus gearing, combined with reduced mass, decreased parasitic losses and integrated engine and transmission control software have improved the internal-combustion engine in these vehicles to efficiencies that would have been unbelievable just five years ago.

It’s not just new vehicles that are repowering the American Dream. Neil Young demonstrated the entrepreneurial spirit of SEMA members and performance enthusiasts everywhere with his keynote remarks and the introduction of his ’59 Lincvolt at the Green Performance session during last year’s SEMA Show. Lincvolt is the world’s first microturbine-powered bio-electro-cruiser and proves that a plug-in electroturbine series hybrid can deliver the performance of a fullsize long-range highway cruiser and achieve ultralow emissions. Lincvolt weighs nearly 2.5 times what a typical hybrid electric car weighs, yet it has a 400-mile extended range and a 50-mile range on electric power only. 

SN: General Motors released information recently about an OnStar mirror that will be retailed for non-GM vehicles. How will those types of innovations impact SEMA companies?

JW: Telematics and connected-vehicle technologies may not seem that pervasive in the automotive aftermarket yet, but that is changing quickly, as evidenced by the new vehicles on display at this year’s auto shows. Ford’s voice-activated SYNC platform continues to evolve with new features and capabilities and has been installed in more than 3 million vehicles. More than 80% of Ford buyers take the SYNC option, and Hyundai is launching its own system called Blue Link.

The recently introduced aftermarket version of OnStar is embedded in a replacement rearview mirror and sells for $299 plus a $100 installation. Expect more automakers, aftermarket suppliers, app developers and installers to form collaborative partnerships to leverage infotainment innovations and capitalize on this growing market. Ford CEO Alan Mulally summed up vehicle connectivity very well when he said: “It’s cool to connect. But it’s past cool. It’s a reason to buy!” I would add that if you think it’s too connected, you are too old. GenGreeners, the next generation of car buyers and enthusiasts, are under 16 years old today and will be the first generation to grow up with the choice of an electric, a hybrid or an internal-combustion engine as one of their buying options.

Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, shown here with the newly introduced Dodge Charger SRT8
Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, shown here with the newly introduced Dodge Charger SRT8, summed up the future of performance and customization very well. “Everyone is a car person,” he said. “Some just don’t know it.”
SN: What are some of the other significant automotive applications that have been introduced this year?

JW: Millions of people have powerful smart phones that are loaded with a variety of capabilities, such as Pandora’s Internet radio app, that consumers can use in their vehicles. BMW’s MINI and aftermarket companies are taking advantage of Apple’s iPhone capabilities and offering an automotive-grade iPod interface that supports Apple’s iPod Out through the MINI connected system. The iPod screen appears in the vehicle’s display screen. Drivers are familiar with the screen, so it is less distracting than adding
another interface.

Distracted driving is certainly a concern for both OEMs and aftermarket companies that are providing connected-vehicle products, apps and solutions. An estimated 20% of injury crashes were reported to have involved driver distraction. Glances away from the road for more than two seconds for any purpose double the risk of a crash or near crash. Many drivers—particularly GenY’ers, which is the largest generation ever—understand the risk and will find ways to stay connected and be on the grid while driving. Forcing them to go off the grid and not be connected with their friends and networks while driving is not a feasible solution.

The app is just as important as the content. I asked a panel of six experts at a recent Society of Automotive Engineers (SAE) discussion on automotive and consumer electronics what feature, function, system or app would be most significant in the next five years and if it would come from inside or outside the auto industry. Five of the six said it would come from outside the auto industry.

“Eco-friendly vehicles will remain
a niche segment for the next
decade despite all the hype
and headlines. Performance
vehicles will also continue
as a niche segment.”

SN:
What is SEMA doing in the area of vehicle dynamics of aftermarket-modified vehicles and the new Federal Motor Vehicle Safety Standards (FMVSS) 126 regulation that goes into effect for all U.S. cars and trucks in model-year ’12, requiring all vehicles 10,000 lbs. or less to include an electronic stability control (ESC) system as
standard equipment?

JW: ESC monitors vehicle motion. When loss of control is imminent, ESC strategically applies the brakes to help stabilize the vehicle. Similar requirements for the rest of the global community are contained in the United Nations Economic Commission for Europe 13H regulations.

Compliance with FMVSS is normally the responsibility of vehicle manufacturers; however, SEMA has taken a proactive approach and developed a methodology and program to evaluate the ESC performance of aftermarket-modified vehicles. To actually test every vehicle configuration is cost prohibitive for OEMs and the aftermarket, so SEMA sought outside help from leading industry experts and companies in the area of vehicle dynamics simulation and testing to develop a “best practices” solution to offer member companies. It’s important to note that any modification to the engine, steering, brakes, suspension, wheels or tires may have an impact on
ESC performance.

A virtual test method was demonstrated at the SEMA Show last year, drawing on the controls-development experience of Advanced Controls Engineering Consultants LLC, the CarSim vehicle dynamics simulation produced by Mechanical Simulation Corporation and the hardware-in-the-loop (HIL) technologies of dSPACE GmbH. A modified Ford F-150 supplied by Superlift Suspension Systems was used as the test vehicle. In the demonstration, a virtual model of the vehicle was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.

The CarSim software provides not only a dynamic model of the pickup, but also a virtual proving ground on which to conduct the tests. It also includes steering and throttle inputs that are required to execute the sine with dwell (SWD) test maneuver. CarSim connects to the ESC controller on the vehicle through the dSPACE hardware.


Neil Young demonstrated the entrepreneurial spirit of SEMA members and performance enthusiasts everywhere with his keynote remarks and the introduction of his ’59 Lincvolt at the Green Performance session during last year’s SEMA Show. Courtesy Steve Cross, Courtesy of Shakey Pictures
Throughout the test, CarSim sends vehicle dynamics information about wheel speeds, steering-wheel angle, yaw rates and lateral acceleration to the ESC controller. The ESC controller performs as if it is experiencing the maneuver in an actual vehicle and controls the application of the individual brakes on the vehicle. Pressure transducers installed at each of the truck’s brakes report the application pressure back to CarSim, which determines the brake forces applied at each wheel of the simulated vehicle and the subsequent dynamic response. Displays and readouts of the vehicle’s dynamic response on CarSim plots allow engineers to determine whether the vehicle meets the required performance. The ESC-HIL simulation does this at a fraction of the cost of an actual physical test.

An ESC-HIL demonstration with expanded vehicle simulation capabilities will be set-up in the SEMA Vehicle Technology Center (VTC) at this year’s SEMA Show, where attendees can see the latest advanced vehicle technologies impacting the specialty-equipment and performance aftermarket industry today and in the immediate future.

SN:The aftermarket is being bombarded with green technologies and advanced electronics. Other industries are dedicated to technologies that are peripheral to automobiles but don’t address the vehicles themselves. SEMA members do. How is SEMA increasing its relevance as technological innovation expands?

JW: One very exciting element of our vehicle technology strategy is to create the SEMA Vehicle Technology Center at the SEMA Show. The VTC will showcase SEMA’s vehicle technology programs and partners and the benefits to members. The VTC and its Tech Zones are being designed to reinforce our efforts to appeal to emerging-technology enthusiasts and bring greater focus, urgency and performance aftermarket relevance to our advanced-technology offerings. We also want to put vehicle technology on the front lines, similar to what GM and Ford have done recently with the creation of new chief technology officer positions.

The purpose of the VTC is to inform and educate SEMA members. We also want to increase member participation in and understanding of the programs, partnerships, services and systems as well as product and vehicle development tools, methodologies and resources that are available at affordable costs to SEMA-member companies.

The Vehicle Technology Center consists of both a virtual platform and a physical platform. The virtual platform will include a VTC theater with seven education seminars focused on identifying and integrating key industry trends, technologies and SEMA initiatives. They will help members understand the challenges of advanced vehicle technologies and leverage new business opportunities as well as provide networking opportunities for collaborative product-development relationships. The seminars will open with a vehicle technology keynote featuring Paul Mascarenas, chief technical officer and vice president for research and advanced engineering at Ford Motor Company. They will also include more than 20 experts from leading automakers, powersports, aftermarket, technology and marketing companies throughout the week. 

The seminars will focus on the future of performance and customization, branding performance, marketing to enthusiasts, designing for customization, vehicle dynamics of aftermarket-modified vehicles, green performance and connected-vehicle technologies. The physical platform and exhibit space in the VTC will showcase SEMA-developed solutions with technology simulations, demonstrations and workshops to introduce members to the benefits of SEMA vehicle technology programs and partners.

SEMA is continually working to develop vehicle technology solutions and build relationships that foster collaboration between the automakers, the original-equipment suppliers, dealers, research organizations, industry associations and member companies. SEMA’s Vehicle Technology Center will provide members with in-depth information and hands-on understanding from leading industry experts about advanced vehicle technologies and emerging systems to help them understand the impact on their business today, as well as prepare for and leverage tomorrow’s technologies and business opportunities.

SN: What should SEMA members understand in a general sense about the role of technology in the future of the automobile?

JW: Advanced vehicle technologies are driving the future of performance and customization. Both the automobile and the industry are being reinvented. Systems are moving from mechanical to electrical. Vehicles are moving from standalone to connected, and markets are moving from mass production to niche segments and personalization.

Innovation is the engine of growth. Growth in the new auto normal doesn’t lie in disrupting large, over-served markets but in disrupting small under-served markets and emerging segments focused on product differentiation, performance and customization.

Eco-friendly vehicles will remain a niche segment for the next decade despite all the hype and headlines. Performance vehicles will also continue as a niche segment. Both will coexist as advanced vehicle technologies are developed and deployed. Hybrids and electric vehicles will make up less than 10% of the vehicle market by 2020, and while many consumers consider themselves performance enthusiasts, that market segment will be about 10% as well.

My good friend, Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, and a longtime SEMA advocate, recently launched his “Never Neutral” campaign and summed up the future of performance and customization very well. “Everyone is a car person,” he said. “Some just don’t know it.”

Mon, 04/11/2011 - 14:47

SEMA News—April 2011

The Future of Performance and Customization

By Steve Campbell

Vehicle electrification, electronics integration and connected-vehicle technologies are leading the way toward the development of cars that don’t crash, devices that don’t distract and powertrains that don’t pollute.

Courtesy Regis Lefebure
As part of our annual look at where automotive technology stands, we recently engaged in a wide-ranging conversation with John Waraniak, SEMA vice president of vehicle technology, delving further into the four advanced vehicle technology megatrends: driving green, driving connected, driving safe and driving cool.

SEMA News: What are the latest advances in electronics, including entertainment, navigation and interactive car-to-car and car-to-infrastructure systems?

John Waraniak: Vehicle electrification, electronics integration and connected-vehicle technologies are leading the way toward the development of cars that don’t crash, devices that don’t distract and powertrains that don’t pollute. Automotive technology has extended far beyond the vehicle itself. Onboard vehicle technologies combined with vehicle-to-vehicle and vehicle-to-roadside technologies are creating many new and exciting product and service opportunities for specialty-equipment and performance aftermarket manufacturers, installers, retailers and distributors. The challenges, opportunities and solutions for SEMA members lie in how effectively these features, devices and accessories can be integrated into today’s vehicles.

Technology is integral to both the relevance and the future of SEMA and the performance aftermarket. To ignore its impact is a fundamental mistake. More than half of the new vehicles offered in five years will support applications through car-radio platforms. By 2017, more than 13 million vehicles will be sold globally with connected-vehicle platforms. Aftermarket suppliers currently provide more than 35 radios supporting apps via smartphone integration and new operating systems, such as the Android that was featured on the Clemson Deep Orange vehicle displayed at the 2010 SEMA Show.

SEMA recently met with Peter Appel, administrator of the U.S. Department of Transportation’s Research and Innovative Technology Administration (RITA) to discuss vehicle-to-vehicle (V2V) technology and other advanced automotive electronics opportunities for SEMA members. SEMA is working with RITA leadership to promote the aftermarket industry’s contributions to deploying V2V and onboard technologies.

Connected vehicles have the potential to avoid crashes and make the transportation grid more efficient. Green performance and connected-vehicle technologies are quickly merging to create new business and product-development opportunities in integrating automotive and consumer electronics apps and solutions. Appel will participate again as a speaker in the Driving Connected session in the Vehicle Technology Center at the 2011 SEMA Show. He also briefed us on a new competition program launched by U.S. Transportation Secretary Ray LaHood on accelerating the development of connected vehicles and technologies.

The program announced by RITA is a nationwide competition seeking ideas for using wireless connectivity between vehicles to make transportation safer, greener and easier to use. During the Connected Vehicle Technology Challenge competition, RITA will accept ideas for products and applications that use dedicated short-range communications, which is a fast, secure wireless technology created specifically for connected vehicles and the evolving infrastructure. The challenge is a great opportunity for SEMA members to showcase their use of innovative new products and cutting-edge technologies.

SN: Several of the automakers are now selling battery electric vehicles (BEVs). How will electric cars and advanced vehicle technologies affect the performance and enthusiast marketplace?

JW: President Obama said in his State of the Union speech that technology innovation will be the nation’s “Sputnik moment,” and that the economy’s priorities will be focused on industries such as clean energy and advanced technology. His plan is to have one million advanced-technology electric vehicles on the road by 2015. This is a tough challenge because only 20,000 electric vehicles are expected to be sold this year. It took Toyota 10 years to sell one million Prius hybrids, and hybrid sales peaked at 353,000 in 2007.


Today’s vehicles are not just a collection of 5,000 loosely integrated parts. They are an interdependent “system of systems,” connecting body, chassis, interior and powertrain systems through more than 150 controllers and 10 million lines of code and embedded software.
Margin times market share times market size is the new metric for competitiveness, and the market for electric vehicles is just not there yet. Incentivizing the market to jumpstart it is a good strategy, but it is not sustainable in the hyper-competitive automotive industry of today and tomorrow. Total industry sales in 2011 will be somewhere between 11 and 12 million vehicles, which means less than 0.2% of all vehicles sold in the United States will be BEVs. So what’s all the hype about electric vehicles? Industry statistics indicate that only 7% of new-car shoppers are considering electric vehicles. The United States has more than $25 billion invested in advanced-technology vehicle development and only two BEVs in production—the Chevy Volt and Nissan Leaf. The Ford Focus Electric will become available in late 2011. The high cost of batteries, the small market segment for short-range compact cars and the multitude of consumer choices for alternative powertrain vehicles make this challenge noble but unreal.

Forcing electric vehicles on the market will not make them sell. President Obama is also working to realign the U.S. government’s vehicle-technology priorities. The White House’s proposed budget for 2012 would end federal government programs that fund hydrogen fuel cell research and efforts to develop clean diesel engines and retrofit older diesels. The budget proposes diverting funds from a dozen energy company tax breaks to help pay for putting the one million electric vehicles on the road by 2015 and help grow the market for electric cars. The budget proposal would transform a $7,500 tax credit for buyers of plug-in electric cars into a rebate at the dealership so that purchasers would not have to wait to claim the credit on their tax returns.

“The Challenge is a great
opportunity for SEMA members
to showcase their use of
innovative new products and
cutting-edge technologies.”

Consumers are generally loss averse. Uncertainty about future fuel savings makes paying more for alternative vehicle technologies a risky bet that most consumers are unwilling to make. Electric vehicles must solve customer problems without creating new ones. Consumers will not adopt new technologies unless they are better in every way than existing solutions, and the internal-combustion engine is far from dead. The Ford F-150 is still the top-selling vehicle in the United States. This may change in the coming years due to gas prices and consumer behaviors, but SEMA businesses also have to seize the day in order to create the future.

Advanced vehicle technologies go beyond battery-driven electric motors. The kinetic energy recovery hybrid system featured in the Porsche 918 RSR stores and releases energy without batteries. The kinetic hybrid system uses a flywheel to capture energy during braking from front-wheel motor hubs. Regenerative braking charges the flywheel, and the driver presses a button to access the energy, generating up to 75 kilowatts and adding more than 200 hp to the 918’s 560 hp. Power electronics is the new horsepower and represents an emerging technology in the performance aftermarket and new opportunities for the next generation of hot rodders and enthusiasts.

Automotive OEMs are also working with lightweight materials and advanced technologies to reduce the mass of each new generation of vehicles, optimize system integration and refine aerodynamics. Experts estimate that every additional 100 lbs. of weight a vehicle has to carry reduces fuel efficiency by 1%–2%. The new eco-version of the Chevy Cruze has lower fasciae and an aerodynamic shutter that closes to increase fuel efficiency.

SN: How is the industry addressing increasing vehicle complexity and cross-industry product development?

JW: Open innovation, collaboration, systems engineering and lean customization are quickly becoming best practices and competitive advantages in the new automotive normal. Today’s vehicles are not just a collection of 5,000 loosely integrated parts. They are an interdependent “system of systems,” connecting body, chassis, interior and powertrain systems through more than 150 controllers and 10 million lines of code and embedded software. Automotive vehicle systems engineering is, in some cases, very close to rocket science. Both the NHTSA and NASA played a critical role in the electronics systems and electromagnetic interference analysis of the unintended acceleration of vehicles produced by Toyota. These studies reinforced confidence in the safety and reliability of the advanced technologies of Toyota vehicles.

Products, processes and profits are inextricably linked. Lean customization, like lean production, is a paradox. On one hand, every activity, task and flow of work is rigidly scripted. Yet at the same time, lean operations are very flexible and responsive to customer demand. Designing for customization is the intersection of design, technology and the customer experience. Designing for customization and lean-customization principles cast the biggest shadow on profitable personalization. Commoditization, standardization and commonization actually drive customization.

Lean-customization principles can make the difference between built-in profits and reverse-engineered costs. The OEMs are being driven to reduce vehicle complexity while simultaneously increasing the flexibility to build more models and variants off of fewer platforms. Aftermarket companies and dealers can also help take the complexity out of assembly plants by collaborating with OEMs to develop product plans and vehicle architectures with cost-effective, simplified bills of material that can be profitably customized with factory and aftermarket-branded parts and accessories at dealers, customization centers and independent installers.

Ford F-150 supplied by Superlift Suspension Systems was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.
A virtual test method was demonstrated at the SEMA Show last year. In the demonstration, a virtual model of a modified Ford F-150 supplied by Superlift Suspension Systems was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.
If you are truly committed to competing and growing in the new automotive normal, designing for lean customization is a five-star product-development process. It’s a two-star process if you are simply involved. And it’s a waste of time if you are just going through the motions.

Enlightened automakers, consumer-electronics manufacturers, aftermarket companies, dealers and installers recognize that they need to work together to ensure that they can personalize vehicles and add future capabilities profitably. Open innovation and collaboration are essential for growth. Ford’s signature technologies—SYNC and EcoBoost—are great examples of Ford’s collaboration and personalization strategy for driving connected and driving green. Automakers and aftermarket companies that do not know how to apply collaborative value-chain practices and technologies will be beaten by those who do.

Collaboration is not a hobby. It’s not easy to collaborate. It’s an unnatural act. Mazda, for example, will launch a hybrid using Toyota technology in 2013. Successful OEMs will rely more on the aftermarket to reach new markets and segments with increased personalization and lower costs. The old approach of proprietary architectures and closed systems hasn’t died yet, and the new approach to open innovation and collaboration is
just beginning.

SEMA’s innovative partnership with the Clemson University International Center for Automotive Research (CU-ICAR) is an excellent example of open innovation and generative thinking in action. SEMA and CU-ICAR have teamed up to offer SEMA members access to world-class resources, including a 580hp engine dynamometer test cell, a dual-column full-vehicle coordinate measuring machine, a seven-post road simulator in an environmental chamber, an electromagnetic compatibility chamber and a 500hp four-wheel chassis dynamometer in an anechoic chamber.

SN: What is the state of modern musclecar technology—high-performance vehicles, such as the new Camaro, Mustang and Charger—and how will it affect SEMA-member companies?

JW: While many SEMA companies feared that advanced technologies signaled the demise of the specialty-equipment market and believed tighter federal emissions and fuel-efficiency standards would eliminate performance vehicles from America’s roadways, something quite different is happening. Green muscle is alive and well and took center stage at many of this year’s auto shows. Leading automakers are focusing on matching horsepower with the fastest computing power.

“Open innovation, collaboration,
systems engineering and lean
customization are quickly
becoming best practices and
competitive advantages in the
new automotive normal.”

Only 20% of the fuel’s energy is used to power vehicles equipped with traditional internal-combustion engines. Despite the hype and increased attention being focused on alternative fuels, the gasoline internal-combustion engine will continue to be a major element in the growth of the performance aftermarket for years to come due to significant innovations and improvements in gasoline direct injection, turbocharging, supercharging and electronic
fuel management.

Horsepower still moves product. Nearly every major automaker now offers a performance car for street use that is as powerful as many of the race cars on the track. The Cadillac CTS-VR is equipped with a supercharged V8 that pumps out 556 hp. The new supercharged V8 Camaro ZL1 offers 550 hp and 550 lb.-ft. of torque. Chevy will introduce a new limited-edition Camaro every six months. The ’11 Mustang with an aluminum V6 makes 305 hp and gets 31 miles per gallon. The ’12 Dodge Charger SRT8 delivers an exceptionally mean version of its flagship sedan to the tune of 465 hp from an even larger Hemi V8. The engine grows from 6.1L to 6.4L with 465 lb.-ft. of torque.

Advanced engine and transmission technologies, such as cam phasing, variable valve timing, port deactivation, direct injection, turbo boosting, dry dual clutches and wide-ratio six-speed-plus gearing, combined with reduced mass, decreased parasitic losses and integrated engine and transmission control software have improved the internal-combustion engine in these vehicles to efficiencies that would have been unbelievable just five years ago.

It’s not just new vehicles that are repowering the American Dream. Neil Young demonstrated the entrepreneurial spirit of SEMA members and performance enthusiasts everywhere with his keynote remarks and the introduction of his ’59 Lincvolt at the Green Performance session during last year’s SEMA Show. Lincvolt is the world’s first microturbine-powered bio-electro-cruiser and proves that a plug-in electroturbine series hybrid can deliver the performance of a fullsize long-range highway cruiser and achieve ultralow emissions. Lincvolt weighs nearly 2.5 times what a typical hybrid electric car weighs, yet it has a 400-mile extended range and a 50-mile range on electric power only. 

SN: General Motors released information recently about an OnStar mirror that will be retailed for non-GM vehicles. How will those types of innovations impact SEMA companies?

JW: Telematics and connected-vehicle technologies may not seem that pervasive in the automotive aftermarket yet, but that is changing quickly, as evidenced by the new vehicles on display at this year’s auto shows. Ford’s voice-activated SYNC platform continues to evolve with new features and capabilities and has been installed in more than 3 million vehicles. More than 80% of Ford buyers take the SYNC option, and Hyundai is launching its own system called Blue Link.

The recently introduced aftermarket version of OnStar is embedded in a replacement rearview mirror and sells for $299 plus a $100 installation. Expect more automakers, aftermarket suppliers, app developers and installers to form collaborative partnerships to leverage infotainment innovations and capitalize on this growing market. Ford CEO Alan Mulally summed up vehicle connectivity very well when he said: “It’s cool to connect. But it’s past cool. It’s a reason to buy!” I would add that if you think it’s too connected, you are too old. GenGreeners, the next generation of car buyers and enthusiasts, are under 16 years old today and will be the first generation to grow up with the choice of an electric, a hybrid or an internal-combustion engine as one of their buying options.

Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, shown here with the newly introduced Dodge Charger SRT8
Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, shown here with the newly introduced Dodge Charger SRT8, summed up the future of performance and customization very well. “Everyone is a car person,” he said. “Some just don’t know it.”
SN: What are some of the other significant automotive applications that have been introduced this year?

JW: Millions of people have powerful smart phones that are loaded with a variety of capabilities, such as Pandora’s Internet radio app, that consumers can use in their vehicles. BMW’s MINI and aftermarket companies are taking advantage of Apple’s iPhone capabilities and offering an automotive-grade iPod interface that supports Apple’s iPod Out through the MINI connected system. The iPod screen appears in the vehicle’s display screen. Drivers are familiar with the screen, so it is less distracting than adding
another interface.

Distracted driving is certainly a concern for both OEMs and aftermarket companies that are providing connected-vehicle products, apps and solutions. An estimated 20% of injury crashes were reported to have involved driver distraction. Glances away from the road for more than two seconds for any purpose double the risk of a crash or near crash. Many drivers—particularly GenY’ers, which is the largest generation ever—understand the risk and will find ways to stay connected and be on the grid while driving. Forcing them to go off the grid and not be connected with their friends and networks while driving is not a feasible solution.

The app is just as important as the content. I asked a panel of six experts at a recent Society of Automotive Engineers (SAE) discussion on automotive and consumer electronics what feature, function, system or app would be most significant in the next five years and if it would come from inside or outside the auto industry. Five of the six said it would come from outside the auto industry.

“Eco-friendly vehicles will remain
a niche segment for the next
decade despite all the hype
and headlines. Performance
vehicles will also continue
as a niche segment.”

SN:
What is SEMA doing in the area of vehicle dynamics of aftermarket-modified vehicles and the new Federal Motor Vehicle Safety Standards (FMVSS) 126 regulation that goes into effect for all U.S. cars and trucks in model-year ’12, requiring all vehicles 10,000 lbs. or less to include an electronic stability control (ESC) system as
standard equipment?

JW: ESC monitors vehicle motion. When loss of control is imminent, ESC strategically applies the brakes to help stabilize the vehicle. Similar requirements for the rest of the global community are contained in the United Nations Economic Commission for Europe 13H regulations.

Compliance with FMVSS is normally the responsibility of vehicle manufacturers; however, SEMA has taken a proactive approach and developed a methodology and program to evaluate the ESC performance of aftermarket-modified vehicles. To actually test every vehicle configuration is cost prohibitive for OEMs and the aftermarket, so SEMA sought outside help from leading industry experts and companies in the area of vehicle dynamics simulation and testing to develop a “best practices” solution to offer member companies. It’s important to note that any modification to the engine, steering, brakes, suspension, wheels or tires may have an impact on
ESC performance.

A virtual test method was demonstrated at the SEMA Show last year, drawing on the controls-development experience of Advanced Controls Engineering Consultants LLC, the CarSim vehicle dynamics simulation produced by Mechanical Simulation Corporation and the hardware-in-the-loop (HIL) technologies of dSPACE GmbH. A modified Ford F-150 supplied by Superlift Suspension Systems was used as the test vehicle. In the demonstration, a virtual model of the vehicle was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.

The CarSim software provides not only a dynamic model of the pickup, but also a virtual proving ground on which to conduct the tests. It also includes steering and throttle inputs that are required to execute the sine with dwell (SWD) test maneuver. CarSim connects to the ESC controller on the vehicle through the dSPACE hardware.


Neil Young demonstrated the entrepreneurial spirit of SEMA members and performance enthusiasts everywhere with his keynote remarks and the introduction of his ’59 Lincvolt at the Green Performance session during last year’s SEMA Show. Courtesy Steve Cross, Courtesy of Shakey Pictures
Throughout the test, CarSim sends vehicle dynamics information about wheel speeds, steering-wheel angle, yaw rates and lateral acceleration to the ESC controller. The ESC controller performs as if it is experiencing the maneuver in an actual vehicle and controls the application of the individual brakes on the vehicle. Pressure transducers installed at each of the truck’s brakes report the application pressure back to CarSim, which determines the brake forces applied at each wheel of the simulated vehicle and the subsequent dynamic response. Displays and readouts of the vehicle’s dynamic response on CarSim plots allow engineers to determine whether the vehicle meets the required performance. The ESC-HIL simulation does this at a fraction of the cost of an actual physical test.

An ESC-HIL demonstration with expanded vehicle simulation capabilities will be set-up in the SEMA Vehicle Technology Center (VTC) at this year’s SEMA Show, where attendees can see the latest advanced vehicle technologies impacting the specialty-equipment and performance aftermarket industry today and in the immediate future.

SN:The aftermarket is being bombarded with green technologies and advanced electronics. Other industries are dedicated to technologies that are peripheral to automobiles but don’t address the vehicles themselves. SEMA members do. How is SEMA increasing its relevance as technological innovation expands?

JW: One very exciting element of our vehicle technology strategy is to create the SEMA Vehicle Technology Center at the SEMA Show. The VTC will showcase SEMA’s vehicle technology programs and partners and the benefits to members. The VTC and its Tech Zones are being designed to reinforce our efforts to appeal to emerging-technology enthusiasts and bring greater focus, urgency and performance aftermarket relevance to our advanced-technology offerings. We also want to put vehicle technology on the front lines, similar to what GM and Ford have done recently with the creation of new chief technology officer positions.

The purpose of the VTC is to inform and educate SEMA members. We also want to increase member participation in and understanding of the programs, partnerships, services and systems as well as product and vehicle development tools, methodologies and resources that are available at affordable costs to SEMA-member companies.

The Vehicle Technology Center consists of both a virtual platform and a physical platform. The virtual platform will include a VTC theater with seven education seminars focused on identifying and integrating key industry trends, technologies and SEMA initiatives. They will help members understand the challenges of advanced vehicle technologies and leverage new business opportunities as well as provide networking opportunities for collaborative product-development relationships. The seminars will open with a vehicle technology keynote featuring Paul Mascarenas, chief technical officer and vice president for research and advanced engineering at Ford Motor Company. They will also include more than 20 experts from leading automakers, powersports, aftermarket, technology and marketing companies throughout the week. 

The seminars will focus on the future of performance and customization, branding performance, marketing to enthusiasts, designing for customization, vehicle dynamics of aftermarket-modified vehicles, green performance and connected-vehicle technologies. The physical platform and exhibit space in the VTC will showcase SEMA-developed solutions with technology simulations, demonstrations and workshops to introduce members to the benefits of SEMA vehicle technology programs and partners.

SEMA is continually working to develop vehicle technology solutions and build relationships that foster collaboration between the automakers, the original-equipment suppliers, dealers, research organizations, industry associations and member companies. SEMA’s Vehicle Technology Center will provide members with in-depth information and hands-on understanding from leading industry experts about advanced vehicle technologies and emerging systems to help them understand the impact on their business today, as well as prepare for and leverage tomorrow’s technologies and business opportunities.

SN: What should SEMA members understand in a general sense about the role of technology in the future of the automobile?

JW: Advanced vehicle technologies are driving the future of performance and customization. Both the automobile and the industry are being reinvented. Systems are moving from mechanical to electrical. Vehicles are moving from standalone to connected, and markets are moving from mass production to niche segments and personalization.

Innovation is the engine of growth. Growth in the new auto normal doesn’t lie in disrupting large, over-served markets but in disrupting small under-served markets and emerging segments focused on product differentiation, performance and customization.

Eco-friendly vehicles will remain a niche segment for the next decade despite all the hype and headlines. Performance vehicles will also continue as a niche segment. Both will coexist as advanced vehicle technologies are developed and deployed. Hybrids and electric vehicles will make up less than 10% of the vehicle market by 2020, and while many consumers consider themselves performance enthusiasts, that market segment will be about 10% as well.

My good friend, Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, and a longtime SEMA advocate, recently launched his “Never Neutral” campaign and summed up the future of performance and customization very well. “Everyone is a car person,” he said. “Some just don’t know it.”

Mon, 04/11/2011 - 14:47

SEMA News—April 2011

The Future of Performance and Customization

By Steve Campbell

Vehicle electrification, electronics integration and connected-vehicle technologies are leading the way toward the development of cars that don’t crash, devices that don’t distract and powertrains that don’t pollute.

Courtesy Regis Lefebure
As part of our annual look at where automotive technology stands, we recently engaged in a wide-ranging conversation with John Waraniak, SEMA vice president of vehicle technology, delving further into the four advanced vehicle technology megatrends: driving green, driving connected, driving safe and driving cool.

SEMA News: What are the latest advances in electronics, including entertainment, navigation and interactive car-to-car and car-to-infrastructure systems?

John Waraniak: Vehicle electrification, electronics integration and connected-vehicle technologies are leading the way toward the development of cars that don’t crash, devices that don’t distract and powertrains that don’t pollute. Automotive technology has extended far beyond the vehicle itself. Onboard vehicle technologies combined with vehicle-to-vehicle and vehicle-to-roadside technologies are creating many new and exciting product and service opportunities for specialty-equipment and performance aftermarket manufacturers, installers, retailers and distributors. The challenges, opportunities and solutions for SEMA members lie in how effectively these features, devices and accessories can be integrated into today’s vehicles.

Technology is integral to both the relevance and the future of SEMA and the performance aftermarket. To ignore its impact is a fundamental mistake. More than half of the new vehicles offered in five years will support applications through car-radio platforms. By 2017, more than 13 million vehicles will be sold globally with connected-vehicle platforms. Aftermarket suppliers currently provide more than 35 radios supporting apps via smartphone integration and new operating systems, such as the Android that was featured on the Clemson Deep Orange vehicle displayed at the 2010 SEMA Show.

SEMA recently met with Peter Appel, administrator of the U.S. Department of Transportation’s Research and Innovative Technology Administration (RITA) to discuss vehicle-to-vehicle (V2V) technology and other advanced automotive electronics opportunities for SEMA members. SEMA is working with RITA leadership to promote the aftermarket industry’s contributions to deploying V2V and onboard technologies.

Connected vehicles have the potential to avoid crashes and make the transportation grid more efficient. Green performance and connected-vehicle technologies are quickly merging to create new business and product-development opportunities in integrating automotive and consumer electronics apps and solutions. Appel will participate again as a speaker in the Driving Connected session in the Vehicle Technology Center at the 2011 SEMA Show. He also briefed us on a new competition program launched by U.S. Transportation Secretary Ray LaHood on accelerating the development of connected vehicles and technologies.

The program announced by RITA is a nationwide competition seeking ideas for using wireless connectivity between vehicles to make transportation safer, greener and easier to use. During the Connected Vehicle Technology Challenge competition, RITA will accept ideas for products and applications that use dedicated short-range communications, which is a fast, secure wireless technology created specifically for connected vehicles and the evolving infrastructure. The challenge is a great opportunity for SEMA members to showcase their use of innovative new products and cutting-edge technologies.

SN: Several of the automakers are now selling battery electric vehicles (BEVs). How will electric cars and advanced vehicle technologies affect the performance and enthusiast marketplace?

JW: President Obama said in his State of the Union speech that technology innovation will be the nation’s “Sputnik moment,” and that the economy’s priorities will be focused on industries such as clean energy and advanced technology. His plan is to have one million advanced-technology electric vehicles on the road by 2015. This is a tough challenge because only 20,000 electric vehicles are expected to be sold this year. It took Toyota 10 years to sell one million Prius hybrids, and hybrid sales peaked at 353,000 in 2007.


Today’s vehicles are not just a collection of 5,000 loosely integrated parts. They are an interdependent “system of systems,” connecting body, chassis, interior and powertrain systems through more than 150 controllers and 10 million lines of code and embedded software.
Margin times market share times market size is the new metric for competitiveness, and the market for electric vehicles is just not there yet. Incentivizing the market to jumpstart it is a good strategy, but it is not sustainable in the hyper-competitive automotive industry of today and tomorrow. Total industry sales in 2011 will be somewhere between 11 and 12 million vehicles, which means less than 0.2% of all vehicles sold in the United States will be BEVs. So what’s all the hype about electric vehicles? Industry statistics indicate that only 7% of new-car shoppers are considering electric vehicles. The United States has more than $25 billion invested in advanced-technology vehicle development and only two BEVs in production—the Chevy Volt and Nissan Leaf. The Ford Focus Electric will become available in late 2011. The high cost of batteries, the small market segment for short-range compact cars and the multitude of consumer choices for alternative powertrain vehicles make this challenge noble but unreal.

Forcing electric vehicles on the market will not make them sell. President Obama is also working to realign the U.S. government’s vehicle-technology priorities. The White House’s proposed budget for 2012 would end federal government programs that fund hydrogen fuel cell research and efforts to develop clean diesel engines and retrofit older diesels. The budget proposes diverting funds from a dozen energy company tax breaks to help pay for putting the one million electric vehicles on the road by 2015 and help grow the market for electric cars. The budget proposal would transform a $7,500 tax credit for buyers of plug-in electric cars into a rebate at the dealership so that purchasers would not have to wait to claim the credit on their tax returns.

“The Challenge is a great
opportunity for SEMA members
to showcase their use of
innovative new products and
cutting-edge technologies.”

Consumers are generally loss averse. Uncertainty about future fuel savings makes paying more for alternative vehicle technologies a risky bet that most consumers are unwilling to make. Electric vehicles must solve customer problems without creating new ones. Consumers will not adopt new technologies unless they are better in every way than existing solutions, and the internal-combustion engine is far from dead. The Ford F-150 is still the top-selling vehicle in the United States. This may change in the coming years due to gas prices and consumer behaviors, but SEMA businesses also have to seize the day in order to create the future.

Advanced vehicle technologies go beyond battery-driven electric motors. The kinetic energy recovery hybrid system featured in the Porsche 918 RSR stores and releases energy without batteries. The kinetic hybrid system uses a flywheel to capture energy during braking from front-wheel motor hubs. Regenerative braking charges the flywheel, and the driver presses a button to access the energy, generating up to 75 kilowatts and adding more than 200 hp to the 918’s 560 hp. Power electronics is the new horsepower and represents an emerging technology in the performance aftermarket and new opportunities for the next generation of hot rodders and enthusiasts.

Automotive OEMs are also working with lightweight materials and advanced technologies to reduce the mass of each new generation of vehicles, optimize system integration and refine aerodynamics. Experts estimate that every additional 100 lbs. of weight a vehicle has to carry reduces fuel efficiency by 1%–2%. The new eco-version of the Chevy Cruze has lower fasciae and an aerodynamic shutter that closes to increase fuel efficiency.

SN: How is the industry addressing increasing vehicle complexity and cross-industry product development?

JW: Open innovation, collaboration, systems engineering and lean customization are quickly becoming best practices and competitive advantages in the new automotive normal. Today’s vehicles are not just a collection of 5,000 loosely integrated parts. They are an interdependent “system of systems,” connecting body, chassis, interior and powertrain systems through more than 150 controllers and 10 million lines of code and embedded software. Automotive vehicle systems engineering is, in some cases, very close to rocket science. Both the NHTSA and NASA played a critical role in the electronics systems and electromagnetic interference analysis of the unintended acceleration of vehicles produced by Toyota. These studies reinforced confidence in the safety and reliability of the advanced technologies of Toyota vehicles.

Products, processes and profits are inextricably linked. Lean customization, like lean production, is a paradox. On one hand, every activity, task and flow of work is rigidly scripted. Yet at the same time, lean operations are very flexible and responsive to customer demand. Designing for customization is the intersection of design, technology and the customer experience. Designing for customization and lean-customization principles cast the biggest shadow on profitable personalization. Commoditization, standardization and commonization actually drive customization.

Lean-customization principles can make the difference between built-in profits and reverse-engineered costs. The OEMs are being driven to reduce vehicle complexity while simultaneously increasing the flexibility to build more models and variants off of fewer platforms. Aftermarket companies and dealers can also help take the complexity out of assembly plants by collaborating with OEMs to develop product plans and vehicle architectures with cost-effective, simplified bills of material that can be profitably customized with factory and aftermarket-branded parts and accessories at dealers, customization centers and independent installers.

Ford F-150 supplied by Superlift Suspension Systems was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.
A virtual test method was demonstrated at the SEMA Show last year. In the demonstration, a virtual model of a modified Ford F-150 supplied by Superlift Suspension Systems was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.
If you are truly committed to competing and growing in the new automotive normal, designing for lean customization is a five-star product-development process. It’s a two-star process if you are simply involved. And it’s a waste of time if you are just going through the motions.

Enlightened automakers, consumer-electronics manufacturers, aftermarket companies, dealers and installers recognize that they need to work together to ensure that they can personalize vehicles and add future capabilities profitably. Open innovation and collaboration are essential for growth. Ford’s signature technologies—SYNC and EcoBoost—are great examples of Ford’s collaboration and personalization strategy for driving connected and driving green. Automakers and aftermarket companies that do not know how to apply collaborative value-chain practices and technologies will be beaten by those who do.

Collaboration is not a hobby. It’s not easy to collaborate. It’s an unnatural act. Mazda, for example, will launch a hybrid using Toyota technology in 2013. Successful OEMs will rely more on the aftermarket to reach new markets and segments with increased personalization and lower costs. The old approach of proprietary architectures and closed systems hasn’t died yet, and the new approach to open innovation and collaboration is
just beginning.

SEMA’s innovative partnership with the Clemson University International Center for Automotive Research (CU-ICAR) is an excellent example of open innovation and generative thinking in action. SEMA and CU-ICAR have teamed up to offer SEMA members access to world-class resources, including a 580hp engine dynamometer test cell, a dual-column full-vehicle coordinate measuring machine, a seven-post road simulator in an environmental chamber, an electromagnetic compatibility chamber and a 500hp four-wheel chassis dynamometer in an anechoic chamber.

SN: What is the state of modern musclecar technology—high-performance vehicles, such as the new Camaro, Mustang and Charger—and how will it affect SEMA-member companies?

JW: While many SEMA companies feared that advanced technologies signaled the demise of the specialty-equipment market and believed tighter federal emissions and fuel-efficiency standards would eliminate performance vehicles from America’s roadways, something quite different is happening. Green muscle is alive and well and took center stage at many of this year’s auto shows. Leading automakers are focusing on matching horsepower with the fastest computing power.

“Open innovation, collaboration,
systems engineering and lean
customization are quickly
becoming best practices and
competitive advantages in the
new automotive normal.”

Only 20% of the fuel’s energy is used to power vehicles equipped with traditional internal-combustion engines. Despite the hype and increased attention being focused on alternative fuels, the gasoline internal-combustion engine will continue to be a major element in the growth of the performance aftermarket for years to come due to significant innovations and improvements in gasoline direct injection, turbocharging, supercharging and electronic
fuel management.

Horsepower still moves product. Nearly every major automaker now offers a performance car for street use that is as powerful as many of the race cars on the track. The Cadillac CTS-VR is equipped with a supercharged V8 that pumps out 556 hp. The new supercharged V8 Camaro ZL1 offers 550 hp and 550 lb.-ft. of torque. Chevy will introduce a new limited-edition Camaro every six months. The ’11 Mustang with an aluminum V6 makes 305 hp and gets 31 miles per gallon. The ’12 Dodge Charger SRT8 delivers an exceptionally mean version of its flagship sedan to the tune of 465 hp from an even larger Hemi V8. The engine grows from 6.1L to 6.4L with 465 lb.-ft. of torque.

Advanced engine and transmission technologies, such as cam phasing, variable valve timing, port deactivation, direct injection, turbo boosting, dry dual clutches and wide-ratio six-speed-plus gearing, combined with reduced mass, decreased parasitic losses and integrated engine and transmission control software have improved the internal-combustion engine in these vehicles to efficiencies that would have been unbelievable just five years ago.

It’s not just new vehicles that are repowering the American Dream. Neil Young demonstrated the entrepreneurial spirit of SEMA members and performance enthusiasts everywhere with his keynote remarks and the introduction of his ’59 Lincvolt at the Green Performance session during last year’s SEMA Show. Lincvolt is the world’s first microturbine-powered bio-electro-cruiser and proves that a plug-in electroturbine series hybrid can deliver the performance of a fullsize long-range highway cruiser and achieve ultralow emissions. Lincvolt weighs nearly 2.5 times what a typical hybrid electric car weighs, yet it has a 400-mile extended range and a 50-mile range on electric power only. 

SN: General Motors released information recently about an OnStar mirror that will be retailed for non-GM vehicles. How will those types of innovations impact SEMA companies?

JW: Telematics and connected-vehicle technologies may not seem that pervasive in the automotive aftermarket yet, but that is changing quickly, as evidenced by the new vehicles on display at this year’s auto shows. Ford’s voice-activated SYNC platform continues to evolve with new features and capabilities and has been installed in more than 3 million vehicles. More than 80% of Ford buyers take the SYNC option, and Hyundai is launching its own system called Blue Link.

The recently introduced aftermarket version of OnStar is embedded in a replacement rearview mirror and sells for $299 plus a $100 installation. Expect more automakers, aftermarket suppliers, app developers and installers to form collaborative partnerships to leverage infotainment innovations and capitalize on this growing market. Ford CEO Alan Mulally summed up vehicle connectivity very well when he said: “It’s cool to connect. But it’s past cool. It’s a reason to buy!” I would add that if you think it’s too connected, you are too old. GenGreeners, the next generation of car buyers and enthusiasts, are under 16 years old today and will be the first generation to grow up with the choice of an electric, a hybrid or an internal-combustion engine as one of their buying options.

Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, shown here with the newly introduced Dodge Charger SRT8
Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, shown here with the newly introduced Dodge Charger SRT8, summed up the future of performance and customization very well. “Everyone is a car person,” he said. “Some just don’t know it.”
SN: What are some of the other significant automotive applications that have been introduced this year?

JW: Millions of people have powerful smart phones that are loaded with a variety of capabilities, such as Pandora’s Internet radio app, that consumers can use in their vehicles. BMW’s MINI and aftermarket companies are taking advantage of Apple’s iPhone capabilities and offering an automotive-grade iPod interface that supports Apple’s iPod Out through the MINI connected system. The iPod screen appears in the vehicle’s display screen. Drivers are familiar with the screen, so it is less distracting than adding
another interface.

Distracted driving is certainly a concern for both OEMs and aftermarket companies that are providing connected-vehicle products, apps and solutions. An estimated 20% of injury crashes were reported to have involved driver distraction. Glances away from the road for more than two seconds for any purpose double the risk of a crash or near crash. Many drivers—particularly GenY’ers, which is the largest generation ever—understand the risk and will find ways to stay connected and be on the grid while driving. Forcing them to go off the grid and not be connected with their friends and networks while driving is not a feasible solution.

The app is just as important as the content. I asked a panel of six experts at a recent Society of Automotive Engineers (SAE) discussion on automotive and consumer electronics what feature, function, system or app would be most significant in the next five years and if it would come from inside or outside the auto industry. Five of the six said it would come from outside the auto industry.

“Eco-friendly vehicles will remain
a niche segment for the next
decade despite all the hype
and headlines. Performance
vehicles will also continue
as a niche segment.”

SN:
What is SEMA doing in the area of vehicle dynamics of aftermarket-modified vehicles and the new Federal Motor Vehicle Safety Standards (FMVSS) 126 regulation that goes into effect for all U.S. cars and trucks in model-year ’12, requiring all vehicles 10,000 lbs. or less to include an electronic stability control (ESC) system as
standard equipment?

JW: ESC monitors vehicle motion. When loss of control is imminent, ESC strategically applies the brakes to help stabilize the vehicle. Similar requirements for the rest of the global community are contained in the United Nations Economic Commission for Europe 13H regulations.

Compliance with FMVSS is normally the responsibility of vehicle manufacturers; however, SEMA has taken a proactive approach and developed a methodology and program to evaluate the ESC performance of aftermarket-modified vehicles. To actually test every vehicle configuration is cost prohibitive for OEMs and the aftermarket, so SEMA sought outside help from leading industry experts and companies in the area of vehicle dynamics simulation and testing to develop a “best practices” solution to offer member companies. It’s important to note that any modification to the engine, steering, brakes, suspension, wheels or tires may have an impact on
ESC performance.

A virtual test method was demonstrated at the SEMA Show last year, drawing on the controls-development experience of Advanced Controls Engineering Consultants LLC, the CarSim vehicle dynamics simulation produced by Mechanical Simulation Corporation and the hardware-in-the-loop (HIL) technologies of dSPACE GmbH. A modified Ford F-150 supplied by Superlift Suspension Systems was used as the test vehicle. In the demonstration, a virtual model of the vehicle was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.

The CarSim software provides not only a dynamic model of the pickup, but also a virtual proving ground on which to conduct the tests. It also includes steering and throttle inputs that are required to execute the sine with dwell (SWD) test maneuver. CarSim connects to the ESC controller on the vehicle through the dSPACE hardware.


Neil Young demonstrated the entrepreneurial spirit of SEMA members and performance enthusiasts everywhere with his keynote remarks and the introduction of his ’59 Lincvolt at the Green Performance session during last year’s SEMA Show. Courtesy Steve Cross, Courtesy of Shakey Pictures
Throughout the test, CarSim sends vehicle dynamics information about wheel speeds, steering-wheel angle, yaw rates and lateral acceleration to the ESC controller. The ESC controller performs as if it is experiencing the maneuver in an actual vehicle and controls the application of the individual brakes on the vehicle. Pressure transducers installed at each of the truck’s brakes report the application pressure back to CarSim, which determines the brake forces applied at each wheel of the simulated vehicle and the subsequent dynamic response. Displays and readouts of the vehicle’s dynamic response on CarSim plots allow engineers to determine whether the vehicle meets the required performance. The ESC-HIL simulation does this at a fraction of the cost of an actual physical test.

An ESC-HIL demonstration with expanded vehicle simulation capabilities will be set-up in the SEMA Vehicle Technology Center (VTC) at this year’s SEMA Show, where attendees can see the latest advanced vehicle technologies impacting the specialty-equipment and performance aftermarket industry today and in the immediate future.

SN:The aftermarket is being bombarded with green technologies and advanced electronics. Other industries are dedicated to technologies that are peripheral to automobiles but don’t address the vehicles themselves. SEMA members do. How is SEMA increasing its relevance as technological innovation expands?

JW: One very exciting element of our vehicle technology strategy is to create the SEMA Vehicle Technology Center at the SEMA Show. The VTC will showcase SEMA’s vehicle technology programs and partners and the benefits to members. The VTC and its Tech Zones are being designed to reinforce our efforts to appeal to emerging-technology enthusiasts and bring greater focus, urgency and performance aftermarket relevance to our advanced-technology offerings. We also want to put vehicle technology on the front lines, similar to what GM and Ford have done recently with the creation of new chief technology officer positions.

The purpose of the VTC is to inform and educate SEMA members. We also want to increase member participation in and understanding of the programs, partnerships, services and systems as well as product and vehicle development tools, methodologies and resources that are available at affordable costs to SEMA-member companies.

The Vehicle Technology Center consists of both a virtual platform and a physical platform. The virtual platform will include a VTC theater with seven education seminars focused on identifying and integrating key industry trends, technologies and SEMA initiatives. They will help members understand the challenges of advanced vehicle technologies and leverage new business opportunities as well as provide networking opportunities for collaborative product-development relationships. The seminars will open with a vehicle technology keynote featuring Paul Mascarenas, chief technical officer and vice president for research and advanced engineering at Ford Motor Company. They will also include more than 20 experts from leading automakers, powersports, aftermarket, technology and marketing companies throughout the week. 

The seminars will focus on the future of performance and customization, branding performance, marketing to enthusiasts, designing for customization, vehicle dynamics of aftermarket-modified vehicles, green performance and connected-vehicle technologies. The physical platform and exhibit space in the VTC will showcase SEMA-developed solutions with technology simulations, demonstrations and workshops to introduce members to the benefits of SEMA vehicle technology programs and partners.

SEMA is continually working to develop vehicle technology solutions and build relationships that foster collaboration between the automakers, the original-equipment suppliers, dealers, research organizations, industry associations and member companies. SEMA’s Vehicle Technology Center will provide members with in-depth information and hands-on understanding from leading industry experts about advanced vehicle technologies and emerging systems to help them understand the impact on their business today, as well as prepare for and leverage tomorrow’s technologies and business opportunities.

SN: What should SEMA members understand in a general sense about the role of technology in the future of the automobile?

JW: Advanced vehicle technologies are driving the future of performance and customization. Both the automobile and the industry are being reinvented. Systems are moving from mechanical to electrical. Vehicles are moving from standalone to connected, and markets are moving from mass production to niche segments and personalization.

Innovation is the engine of growth. Growth in the new auto normal doesn’t lie in disrupting large, over-served markets but in disrupting small under-served markets and emerging segments focused on product differentiation, performance and customization.

Eco-friendly vehicles will remain a niche segment for the next decade despite all the hype and headlines. Performance vehicles will also continue as a niche segment. Both will coexist as advanced vehicle technologies are developed and deployed. Hybrids and electric vehicles will make up less than 10% of the vehicle market by 2020, and while many consumers consider themselves performance enthusiasts, that market segment will be about 10% as well.

My good friend, Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, and a longtime SEMA advocate, recently launched his “Never Neutral” campaign and summed up the future of performance and customization very well. “Everyone is a car person,” he said. “Some just don’t know it.”

Mon, 04/11/2011 - 14:47

SEMA News—April 2011

The Future of Performance and Customization

By Steve Campbell

Vehicle electrification, electronics integration and connected-vehicle technologies are leading the way toward the development of cars that don’t crash, devices that don’t distract and powertrains that don’t pollute.

Courtesy Regis Lefebure
As part of our annual look at where automotive technology stands, we recently engaged in a wide-ranging conversation with John Waraniak, SEMA vice president of vehicle technology, delving further into the four advanced vehicle technology megatrends: driving green, driving connected, driving safe and driving cool.

SEMA News: What are the latest advances in electronics, including entertainment, navigation and interactive car-to-car and car-to-infrastructure systems?

John Waraniak: Vehicle electrification, electronics integration and connected-vehicle technologies are leading the way toward the development of cars that don’t crash, devices that don’t distract and powertrains that don’t pollute. Automotive technology has extended far beyond the vehicle itself. Onboard vehicle technologies combined with vehicle-to-vehicle and vehicle-to-roadside technologies are creating many new and exciting product and service opportunities for specialty-equipment and performance aftermarket manufacturers, installers, retailers and distributors. The challenges, opportunities and solutions for SEMA members lie in how effectively these features, devices and accessories can be integrated into today’s vehicles.

Technology is integral to both the relevance and the future of SEMA and the performance aftermarket. To ignore its impact is a fundamental mistake. More than half of the new vehicles offered in five years will support applications through car-radio platforms. By 2017, more than 13 million vehicles will be sold globally with connected-vehicle platforms. Aftermarket suppliers currently provide more than 35 radios supporting apps via smartphone integration and new operating systems, such as the Android that was featured on the Clemson Deep Orange vehicle displayed at the 2010 SEMA Show.

SEMA recently met with Peter Appel, administrator of the U.S. Department of Transportation’s Research and Innovative Technology Administration (RITA) to discuss vehicle-to-vehicle (V2V) technology and other advanced automotive electronics opportunities for SEMA members. SEMA is working with RITA leadership to promote the aftermarket industry’s contributions to deploying V2V and onboard technologies.

Connected vehicles have the potential to avoid crashes and make the transportation grid more efficient. Green performance and connected-vehicle technologies are quickly merging to create new business and product-development opportunities in integrating automotive and consumer electronics apps and solutions. Appel will participate again as a speaker in the Driving Connected session in the Vehicle Technology Center at the 2011 SEMA Show. He also briefed us on a new competition program launched by U.S. Transportation Secretary Ray LaHood on accelerating the development of connected vehicles and technologies.

The program announced by RITA is a nationwide competition seeking ideas for using wireless connectivity between vehicles to make transportation safer, greener and easier to use. During the Connected Vehicle Technology Challenge competition, RITA will accept ideas for products and applications that use dedicated short-range communications, which is a fast, secure wireless technology created specifically for connected vehicles and the evolving infrastructure. The challenge is a great opportunity for SEMA members to showcase their use of innovative new products and cutting-edge technologies.

SN: Several of the automakers are now selling battery electric vehicles (BEVs). How will electric cars and advanced vehicle technologies affect the performance and enthusiast marketplace?

JW: President Obama said in his State of the Union speech that technology innovation will be the nation’s “Sputnik moment,” and that the economy’s priorities will be focused on industries such as clean energy and advanced technology. His plan is to have one million advanced-technology electric vehicles on the road by 2015. This is a tough challenge because only 20,000 electric vehicles are expected to be sold this year. It took Toyota 10 years to sell one million Prius hybrids, and hybrid sales peaked at 353,000 in 2007.


Today’s vehicles are not just a collection of 5,000 loosely integrated parts. They are an interdependent “system of systems,” connecting body, chassis, interior and powertrain systems through more than 150 controllers and 10 million lines of code and embedded software.
Margin times market share times market size is the new metric for competitiveness, and the market for electric vehicles is just not there yet. Incentivizing the market to jumpstart it is a good strategy, but it is not sustainable in the hyper-competitive automotive industry of today and tomorrow. Total industry sales in 2011 will be somewhere between 11 and 12 million vehicles, which means less than 0.2% of all vehicles sold in the United States will be BEVs. So what’s all the hype about electric vehicles? Industry statistics indicate that only 7% of new-car shoppers are considering electric vehicles. The United States has more than $25 billion invested in advanced-technology vehicle development and only two BEVs in production—the Chevy Volt and Nissan Leaf. The Ford Focus Electric will become available in late 2011. The high cost of batteries, the small market segment for short-range compact cars and the multitude of consumer choices for alternative powertrain vehicles make this challenge noble but unreal.

Forcing electric vehicles on the market will not make them sell. President Obama is also working to realign the U.S. government’s vehicle-technology priorities. The White House’s proposed budget for 2012 would end federal government programs that fund hydrogen fuel cell research and efforts to develop clean diesel engines and retrofit older diesels. The budget proposes diverting funds from a dozen energy company tax breaks to help pay for putting the one million electric vehicles on the road by 2015 and help grow the market for electric cars. The budget proposal would transform a $7,500 tax credit for buyers of plug-in electric cars into a rebate at the dealership so that purchasers would not have to wait to claim the credit on their tax returns.

“The Challenge is a great
opportunity for SEMA members
to showcase their use of
innovative new products and
cutting-edge technologies.”

Consumers are generally loss averse. Uncertainty about future fuel savings makes paying more for alternative vehicle technologies a risky bet that most consumers are unwilling to make. Electric vehicles must solve customer problems without creating new ones. Consumers will not adopt new technologies unless they are better in every way than existing solutions, and the internal-combustion engine is far from dead. The Ford F-150 is still the top-selling vehicle in the United States. This may change in the coming years due to gas prices and consumer behaviors, but SEMA businesses also have to seize the day in order to create the future.

Advanced vehicle technologies go beyond battery-driven electric motors. The kinetic energy recovery hybrid system featured in the Porsche 918 RSR stores and releases energy without batteries. The kinetic hybrid system uses a flywheel to capture energy during braking from front-wheel motor hubs. Regenerative braking charges the flywheel, and the driver presses a button to access the energy, generating up to 75 kilowatts and adding more than 200 hp to the 918’s 560 hp. Power electronics is the new horsepower and represents an emerging technology in the performance aftermarket and new opportunities for the next generation of hot rodders and enthusiasts.

Automotive OEMs are also working with lightweight materials and advanced technologies to reduce the mass of each new generation of vehicles, optimize system integration and refine aerodynamics. Experts estimate that every additional 100 lbs. of weight a vehicle has to carry reduces fuel efficiency by 1%–2%. The new eco-version of the Chevy Cruze has lower fasciae and an aerodynamic shutter that closes to increase fuel efficiency.

SN: How is the industry addressing increasing vehicle complexity and cross-industry product development?

JW: Open innovation, collaboration, systems engineering and lean customization are quickly becoming best practices and competitive advantages in the new automotive normal. Today’s vehicles are not just a collection of 5,000 loosely integrated parts. They are an interdependent “system of systems,” connecting body, chassis, interior and powertrain systems through more than 150 controllers and 10 million lines of code and embedded software. Automotive vehicle systems engineering is, in some cases, very close to rocket science. Both the NHTSA and NASA played a critical role in the electronics systems and electromagnetic interference analysis of the unintended acceleration of vehicles produced by Toyota. These studies reinforced confidence in the safety and reliability of the advanced technologies of Toyota vehicles.

Products, processes and profits are inextricably linked. Lean customization, like lean production, is a paradox. On one hand, every activity, task and flow of work is rigidly scripted. Yet at the same time, lean operations are very flexible and responsive to customer demand. Designing for customization is the intersection of design, technology and the customer experience. Designing for customization and lean-customization principles cast the biggest shadow on profitable personalization. Commoditization, standardization and commonization actually drive customization.

Lean-customization principles can make the difference between built-in profits and reverse-engineered costs. The OEMs are being driven to reduce vehicle complexity while simultaneously increasing the flexibility to build more models and variants off of fewer platforms. Aftermarket companies and dealers can also help take the complexity out of assembly plants by collaborating with OEMs to develop product plans and vehicle architectures with cost-effective, simplified bills of material that can be profitably customized with factory and aftermarket-branded parts and accessories at dealers, customization centers and independent installers.

Ford F-150 supplied by Superlift Suspension Systems was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.
A virtual test method was demonstrated at the SEMA Show last year. In the demonstration, a virtual model of a modified Ford F-150 supplied by Superlift Suspension Systems was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.
If you are truly committed to competing and growing in the new automotive normal, designing for lean customization is a five-star product-development process. It’s a two-star process if you are simply involved. And it’s a waste of time if you are just going through the motions.

Enlightened automakers, consumer-electronics manufacturers, aftermarket companies, dealers and installers recognize that they need to work together to ensure that they can personalize vehicles and add future capabilities profitably. Open innovation and collaboration are essential for growth. Ford’s signature technologies—SYNC and EcoBoost—are great examples of Ford’s collaboration and personalization strategy for driving connected and driving green. Automakers and aftermarket companies that do not know how to apply collaborative value-chain practices and technologies will be beaten by those who do.

Collaboration is not a hobby. It’s not easy to collaborate. It’s an unnatural act. Mazda, for example, will launch a hybrid using Toyota technology in 2013. Successful OEMs will rely more on the aftermarket to reach new markets and segments with increased personalization and lower costs. The old approach of proprietary architectures and closed systems hasn’t died yet, and the new approach to open innovation and collaboration is
just beginning.

SEMA’s innovative partnership with the Clemson University International Center for Automotive Research (CU-ICAR) is an excellent example of open innovation and generative thinking in action. SEMA and CU-ICAR have teamed up to offer SEMA members access to world-class resources, including a 580hp engine dynamometer test cell, a dual-column full-vehicle coordinate measuring machine, a seven-post road simulator in an environmental chamber, an electromagnetic compatibility chamber and a 500hp four-wheel chassis dynamometer in an anechoic chamber.

SN: What is the state of modern musclecar technology—high-performance vehicles, such as the new Camaro, Mustang and Charger—and how will it affect SEMA-member companies?

JW: While many SEMA companies feared that advanced technologies signaled the demise of the specialty-equipment market and believed tighter federal emissions and fuel-efficiency standards would eliminate performance vehicles from America’s roadways, something quite different is happening. Green muscle is alive and well and took center stage at many of this year’s auto shows. Leading automakers are focusing on matching horsepower with the fastest computing power.

“Open innovation, collaboration,
systems engineering and lean
customization are quickly
becoming best practices and
competitive advantages in the
new automotive normal.”

Only 20% of the fuel’s energy is used to power vehicles equipped with traditional internal-combustion engines. Despite the hype and increased attention being focused on alternative fuels, the gasoline internal-combustion engine will continue to be a major element in the growth of the performance aftermarket for years to come due to significant innovations and improvements in gasoline direct injection, turbocharging, supercharging and electronic
fuel management.

Horsepower still moves product. Nearly every major automaker now offers a performance car for street use that is as powerful as many of the race cars on the track. The Cadillac CTS-VR is equipped with a supercharged V8 that pumps out 556 hp. The new supercharged V8 Camaro ZL1 offers 550 hp and 550 lb.-ft. of torque. Chevy will introduce a new limited-edition Camaro every six months. The ’11 Mustang with an aluminum V6 makes 305 hp and gets 31 miles per gallon. The ’12 Dodge Charger SRT8 delivers an exceptionally mean version of its flagship sedan to the tune of 465 hp from an even larger Hemi V8. The engine grows from 6.1L to 6.4L with 465 lb.-ft. of torque.

Advanced engine and transmission technologies, such as cam phasing, variable valve timing, port deactivation, direct injection, turbo boosting, dry dual clutches and wide-ratio six-speed-plus gearing, combined with reduced mass, decreased parasitic losses and integrated engine and transmission control software have improved the internal-combustion engine in these vehicles to efficiencies that would have been unbelievable just five years ago.

It’s not just new vehicles that are repowering the American Dream. Neil Young demonstrated the entrepreneurial spirit of SEMA members and performance enthusiasts everywhere with his keynote remarks and the introduction of his ’59 Lincvolt at the Green Performance session during last year’s SEMA Show. Lincvolt is the world’s first microturbine-powered bio-electro-cruiser and proves that a plug-in electroturbine series hybrid can deliver the performance of a fullsize long-range highway cruiser and achieve ultralow emissions. Lincvolt weighs nearly 2.5 times what a typical hybrid electric car weighs, yet it has a 400-mile extended range and a 50-mile range on electric power only. 

SN: General Motors released information recently about an OnStar mirror that will be retailed for non-GM vehicles. How will those types of innovations impact SEMA companies?

JW: Telematics and connected-vehicle technologies may not seem that pervasive in the automotive aftermarket yet, but that is changing quickly, as evidenced by the new vehicles on display at this year’s auto shows. Ford’s voice-activated SYNC platform continues to evolve with new features and capabilities and has been installed in more than 3 million vehicles. More than 80% of Ford buyers take the SYNC option, and Hyundai is launching its own system called Blue Link.

The recently introduced aftermarket version of OnStar is embedded in a replacement rearview mirror and sells for $299 plus a $100 installation. Expect more automakers, aftermarket suppliers, app developers and installers to form collaborative partnerships to leverage infotainment innovations and capitalize on this growing market. Ford CEO Alan Mulally summed up vehicle connectivity very well when he said: “It’s cool to connect. But it’s past cool. It’s a reason to buy!” I would add that if you think it’s too connected, you are too old. GenGreeners, the next generation of car buyers and enthusiasts, are under 16 years old today and will be the first generation to grow up with the choice of an electric, a hybrid or an internal-combustion engine as one of their buying options.

Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, shown here with the newly introduced Dodge Charger SRT8
Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, shown here with the newly introduced Dodge Charger SRT8, summed up the future of performance and customization very well. “Everyone is a car person,” he said. “Some just don’t know it.”
SN: What are some of the other significant automotive applications that have been introduced this year?

JW: Millions of people have powerful smart phones that are loaded with a variety of capabilities, such as Pandora’s Internet radio app, that consumers can use in their vehicles. BMW’s MINI and aftermarket companies are taking advantage of Apple’s iPhone capabilities and offering an automotive-grade iPod interface that supports Apple’s iPod Out through the MINI connected system. The iPod screen appears in the vehicle’s display screen. Drivers are familiar with the screen, so it is less distracting than adding
another interface.

Distracted driving is certainly a concern for both OEMs and aftermarket companies that are providing connected-vehicle products, apps and solutions. An estimated 20% of injury crashes were reported to have involved driver distraction. Glances away from the road for more than two seconds for any purpose double the risk of a crash or near crash. Many drivers—particularly GenY’ers, which is the largest generation ever—understand the risk and will find ways to stay connected and be on the grid while driving. Forcing them to go off the grid and not be connected with their friends and networks while driving is not a feasible solution.

The app is just as important as the content. I asked a panel of six experts at a recent Society of Automotive Engineers (SAE) discussion on automotive and consumer electronics what feature, function, system or app would be most significant in the next five years and if it would come from inside or outside the auto industry. Five of the six said it would come from outside the auto industry.

“Eco-friendly vehicles will remain
a niche segment for the next
decade despite all the hype
and headlines. Performance
vehicles will also continue
as a niche segment.”

SN:
What is SEMA doing in the area of vehicle dynamics of aftermarket-modified vehicles and the new Federal Motor Vehicle Safety Standards (FMVSS) 126 regulation that goes into effect for all U.S. cars and trucks in model-year ’12, requiring all vehicles 10,000 lbs. or less to include an electronic stability control (ESC) system as
standard equipment?

JW: ESC monitors vehicle motion. When loss of control is imminent, ESC strategically applies the brakes to help stabilize the vehicle. Similar requirements for the rest of the global community are contained in the United Nations Economic Commission for Europe 13H regulations.

Compliance with FMVSS is normally the responsibility of vehicle manufacturers; however, SEMA has taken a proactive approach and developed a methodology and program to evaluate the ESC performance of aftermarket-modified vehicles. To actually test every vehicle configuration is cost prohibitive for OEMs and the aftermarket, so SEMA sought outside help from leading industry experts and companies in the area of vehicle dynamics simulation and testing to develop a “best practices” solution to offer member companies. It’s important to note that any modification to the engine, steering, brakes, suspension, wheels or tires may have an impact on
ESC performance.

A virtual test method was demonstrated at the SEMA Show last year, drawing on the controls-development experience of Advanced Controls Engineering Consultants LLC, the CarSim vehicle dynamics simulation produced by Mechanical Simulation Corporation and the hardware-in-the-loop (HIL) technologies of dSPACE GmbH. A modified Ford F-150 supplied by Superlift Suspension Systems was used as the test vehicle. In the demonstration, a virtual model of the vehicle was created in CarSim and was connected to the ESC controller and brake system of the actual vehicle.

The CarSim software provides not only a dynamic model of the pickup, but also a virtual proving ground on which to conduct the tests. It also includes steering and throttle inputs that are required to execute the sine with dwell (SWD) test maneuver. CarSim connects to the ESC controller on the vehicle through the dSPACE hardware.


Neil Young demonstrated the entrepreneurial spirit of SEMA members and performance enthusiasts everywhere with his keynote remarks and the introduction of his ’59 Lincvolt at the Green Performance session during last year’s SEMA Show. Courtesy Steve Cross, Courtesy of Shakey Pictures
Throughout the test, CarSim sends vehicle dynamics information about wheel speeds, steering-wheel angle, yaw rates and lateral acceleration to the ESC controller. The ESC controller performs as if it is experiencing the maneuver in an actual vehicle and controls the application of the individual brakes on the vehicle. Pressure transducers installed at each of the truck’s brakes report the application pressure back to CarSim, which determines the brake forces applied at each wheel of the simulated vehicle and the subsequent dynamic response. Displays and readouts of the vehicle’s dynamic response on CarSim plots allow engineers to determine whether the vehicle meets the required performance. The ESC-HIL simulation does this at a fraction of the cost of an actual physical test.

An ESC-HIL demonstration with expanded vehicle simulation capabilities will be set-up in the SEMA Vehicle Technology Center (VTC) at this year’s SEMA Show, where attendees can see the latest advanced vehicle technologies impacting the specialty-equipment and performance aftermarket industry today and in the immediate future.

SN:The aftermarket is being bombarded with green technologies and advanced electronics. Other industries are dedicated to technologies that are peripheral to automobiles but don’t address the vehicles themselves. SEMA members do. How is SEMA increasing its relevance as technological innovation expands?

JW: One very exciting element of our vehicle technology strategy is to create the SEMA Vehicle Technology Center at the SEMA Show. The VTC will showcase SEMA’s vehicle technology programs and partners and the benefits to members. The VTC and its Tech Zones are being designed to reinforce our efforts to appeal to emerging-technology enthusiasts and bring greater focus, urgency and performance aftermarket relevance to our advanced-technology offerings. We also want to put vehicle technology on the front lines, similar to what GM and Ford have done recently with the creation of new chief technology officer positions.

The purpose of the VTC is to inform and educate SEMA members. We also want to increase member participation in and understanding of the programs, partnerships, services and systems as well as product and vehicle development tools, methodologies and resources that are available at affordable costs to SEMA-member companies.

The Vehicle Technology Center consists of both a virtual platform and a physical platform. The virtual platform will include a VTC theater with seven education seminars focused on identifying and integrating key industry trends, technologies and SEMA initiatives. They will help members understand the challenges of advanced vehicle technologies and leverage new business opportunities as well as provide networking opportunities for collaborative product-development relationships. The seminars will open with a vehicle technology keynote featuring Paul Mascarenas, chief technical officer and vice president for research and advanced engineering at Ford Motor Company. They will also include more than 20 experts from leading automakers, powersports, aftermarket, technology and marketing companies throughout the week. 

The seminars will focus on the future of performance and customization, branding performance, marketing to enthusiasts, designing for customization, vehicle dynamics of aftermarket-modified vehicles, green performance and connected-vehicle technologies. The physical platform and exhibit space in the VTC will showcase SEMA-developed solutions with technology simulations, demonstrations and workshops to introduce members to the benefits of SEMA vehicle technology programs and partners.

SEMA is continually working to develop vehicle technology solutions and build relationships that foster collaboration between the automakers, the original-equipment suppliers, dealers, research organizations, industry associations and member companies. SEMA’s Vehicle Technology Center will provide members with in-depth information and hands-on understanding from leading industry experts about advanced vehicle technologies and emerging systems to help them understand the impact on their business today, as well as prepare for and leverage tomorrow’s technologies and business opportunities.

SN: What should SEMA members understand in a general sense about the role of technology in the future of the automobile?

JW: Advanced vehicle technologies are driving the future of performance and customization. Both the automobile and the industry are being reinvented. Systems are moving from mechanical to electrical. Vehicles are moving from standalone to connected, and markets are moving from mass production to niche segments and personalization.

Innovation is the engine of growth. Growth in the new auto normal doesn’t lie in disrupting large, over-served markets but in disrupting small under-served markets and emerging segments focused on product differentiation, performance and customization.

Eco-friendly vehicles will remain a niche segment for the next decade despite all the hype and headlines. Performance vehicles will also continue as a niche segment. Both will coexist as advanced vehicle technologies are developed and deployed. Hybrids and electric vehicles will make up less than 10% of the vehicle market by 2020, and while many consumers consider themselves performance enthusiasts, that market segment will be about 10% as well.

My good friend, Ralph Gilles, senior vice president of product design and president and CEO of the Dodge Car Brand, Chrysler Group LLC, and a longtime SEMA advocate, recently launched his “Never Neutral” campaign and summed up the future of performance and customization very well. “Everyone is a car person,” he said. “Some just don’t know it.”

Mon, 04/11/2011 - 10:01

Are you hunting for a new job? The “Positions Available” section in the SEMA Member Classifieds lists more than 50 job openings around the country. Here are some of the latest classifieds posted to the website.

  • Viking Performance Inc., located in Apple Valley, Minnesota, is hiring a mechanical engineer with 5+ years of experience in design, prototyping, evaluation and validation. The successful candidate must have a degree in mechanical engineering, strong technical problem-solving skills and experience with ANSI Y14.5 geometric dimensioning and SolidWorks modeling.
  • Alea Leather Specialist Inc., located in Detroit, is hiring a seasoned dealership sales professional with experience selling to new-car dealers. The ideal applicant will have previous experience working with new-car dealerships, have a proven record in closing sales and be willing to travel extensively in the local metro-Detroit area. This is a salary-plus-commission sales position that offers high earning potential for a person with the right mentality and sales skill.
  • Superchips Inc., located in Sanford, Florida, is hiring a marketing manager who will manage strategic planning, product development and marketing execution for the Superchips brand from concept through the entire product lifecycle. The successful candidate will be capable of effectively managing all aspects of the Superchips marketing mix and be responsible for building and organizing a strong marketing team that can successfully manage the brand and product families while making strategic decisions on how to deploy the brand into new markets.
  • Racing Beat LLC, located in Anaheim Hills, California, is hiring an inside sales representative–technical advisor. The successful candidate will have verifiable computer/keyboard competency, the ability to multi-task, professional telephone communication skills, basic automotive systems knowledge and varied administrative skills. The candidate will also demonstrable bilingual speaking skills (English and Spanish) and a working knowledge of SAGE "MAS 90" business software will be given additional consideration.
Mon, 04/11/2011 - 09:52
Mon, 04/11/2011 - 09:42
TORA Logo
 
Visit TORA's website.  

Network With Industry Leaders at TORA LRP

Tom Brooks and Kelly Kneifl have both been involved with TORA for many years, and both credit the TORA Long-Range Planning meeting (LRP) as one of the most important dates on their annual calendar. Read their comments below, then book your room online at the Marriott Detroit Metro Airport Hotel. The reservation page will already have the “SEMA” rate code imbedded. The LRP is Tuesday, May 10, and includes a tour of an F-150 truck plant in the morning and lunch at the hotel followed by an afternoon of discussion, interaction and goal setting.

What: TORA Long-Range Planning Session
When: Tuesday May 10, 2011
Where: Marriott Detroit Metro Airport Hotel, 30559 Flynn Dr., Romulus, MI 48174, 734/729-7555

“I have participated in quite a few Long-Range Planning sessions, and I always find them inspiring and informative. There's a cliché that says "You get out of it what you put into it." The LRP sessions give me a way to invest in our TORA and share ideas with some of the smartest and most creative people in our industry. The SEMA staff listens to our input and acts on it. Besides, it's an opportunity to get together with my friends in a unique setting. I'm looking forward to this next one.”
Tom Brooks, Truckin Thunder Inc.

“My first Long-Range Planning meeting nine years ago was where I met many of my most valued industry contacts that I have today. I spent an entire day learning about the industry and the issues the industry faced, having a chance to chime in my two cents' worth and getting to know influential and intelligent people on a first-name basis that I can still call a friend today. That's a great way to spend one day, especially if you're new to the industry as I was.”
Kelly Kneifl, vice president and COO, THI, TORA Chairman

Shape the Future, Attend the TORA Long Range Planning Session

The TORA Select Committee holds an annual Long-Range Planning meeting to determine the focus of the committee’s work for the coming year. The meeting is open to business owners and managers in our industry so they can voice their opinions regarding the issues TORA leadership should be working on. The LRP is a member's best chance to have the issues that concern their business brought into the spotlight so the Select Committee can work on what’s important to you—our members.

Mark your calendar, book your flights and make your reservations to attend this year’s TORA Long-Range Planning meeting on Tuesday, May 10, 2011. A complimentary tour of the Rouge F-150 Truck Plant is scheduled for 9:00 a.m.–11:00 a.m., while the formal planning session runs from 12:00 p.m.–5:00 p.m. at the Marriott Detroit Metro Airport hotel. The plant tour will not only get attendees focused on truck accessories prior to the meeting, but will also provide a great networking opportunity before the meeting begins.

A low, low rate of $109 per night is offered to TORA attendees. Hotel reservations may be made online at the Marriott Detroit Metro Airport Hotel. This link takes you directly to the hotel reservation page, with the “SEMA” rate code already in place. You may also call the Marriott directly at 800/228-9290. Be sure to mention you are part of the “SEMA/TORA” meeting group to be included in the blocked group rate.

Located at the Detroit Metro airport (DTW), the Marriott offers complimentary airport shuttle and complimentary parking. The F-150 truck plant tour is complimentary from SEMA and the Henry Ford Museum, and TORA will provide lunch at the hotel after the tour. The entire day is available to any TORA member. Please R.S.V.P. to Gina Ledesma at ginal@sema.org, and indicate if you will attend the entire day or just the afternoon planning session (for shuttle and lunch head count). If you have any questions, contact Jim Skelly at SEMA at 909/978-6690 or jimsk@sema.org.

What's the Value of Being an TORA Member?

New Products Showcase – Put your product in front of one of the largest gathering of truck enthusiasts in the country at the Carlisle Truck Nationals.

Networking – TORA mixer at the Carlisle All Truck Nationals, Annual Long-Range Planning meeting and access to TORA members and light-truck industry professionals around the world.

Tools and resources for the retailer and installer – "Pickup Bed Dimensions Sheet," "Keyless Entry Wiring Pickup Points Reference Sheet," "Why Paints Don’t Match" DVD and more.

Education – and TORA-specific learning track on the new SEI from SEMA, coming soon!

Are you on Facebook, LinkedIn or Twitter? TORA Is!

Be sure to follow TORA on all of your favorite social networking sites.

To find these sites, go to www.sema.org/TORA and use the links in the top right-hand corner.

TORA Column in SEMA Member News

Read TORA's column featured in the March/April issue of SEMA Member News.

For more information about TORA, contact Jim Skelly.


ARMO Logo

Visit ARMO's website.

Last Chance ARMO Registration

Have you registered a product for the ARMO New Products Showcase? The April deadline is almost here. Don’t miss this opportunity for free product exposure, available only to ARMO-member companies and beginning at the largest gathering of restoration enthusiasts at Spring Carlisle, April 27–May 1.

But this ARMO-member benefit doesn’t end there. While at Carlisle, each product is professionally photographed. The photograph and description is then:

  • Posted in a gallery on the ARMO website on sema.org, available for viewing until the 2012 New Products Showcase.
  • Shown in a looping video display in the ARMO booth at the 2011 SEMA Show in Las Vegas.
  • Shown again in a looping display during the ARMO Industry Awards reception at the 2011 SEMA Show in Las Vegas.
  • Additionally, selected ARMO New Products photos and descriptions may run in the SEMA eNews and SEMA Member News section of SEMA News as time and space permit.

For only the cost of shipping, your new product effectively gets a full year’s worth of exposure!

Product registration is online
and easier than ever. Just click “register now.” You can enter as many as four products on one form; no need to fill out a complete form for each product as in years past.

Don’t delay, use the link above to register your products now!

ARMO Seminars Receive Rave Reviews, Soon Available on Video

ARMO hosted two educational seminars at the 2011 Hot Rod & Restoration Show in Indianapolis on Saturday, March 19. Both sessions were videotaped and will be available to ARMO members very shortly.

Longtime enthusiast and ARMO member Dick Dixon presented session one, “The Art of Selling.” Dr. Dixon always finds a way to provide a new approach to things, no matter the subject. In spite of a very early 8:00 a.m. start time, audience participation and feedback indicated “The Art of Selling” was another winner.

Session two was a panel discussion on “Internet Marketing on a Budget.” Three panelists included Robert Basha of Auction 123, Eric Saltrick of Steele Rubber Products and Tyler Tanaka of PostRelease. ARMO Chairperson Laura Bergan of American Collectors Insurance moderated the discussion. Audience participation and feedback for the panel presentation were also very positive.

Congratulations and thank you to Dr. Dick Dixon, our three panelists and to panel moderator Laura Bergan! Look for the videos to be available on the ARMO website very soon!

Are you on Facebook, LinkedIn or Twitter? ARMO Is!

Be sure to follow ARMO on all of your favorite social networking sites. To find these sites, go to www.sema.org/armo and use the links in the top right-hand corner.

ARMO Column in SEMA Member News

Read ARMO's column featured in the March/April issue of SEMA Member News.

For more information about ARMO, contact Jim Skelly.


HRIA Logo
 
Visit HRIA's website

Join the SEMA Council Family

SEMA hosts 10 distinct councils and committees that serve to represent focused niches within the specialty-equipment industry. These groups are comprised of elected volunteers (Select Committee) who guide and direct council activities while representing the membership at large. Although each council acts independently and represents a different segment, they are all focused on the betterment of the industry as a whole.

The value councils provide SEMA and the industry is beyond refute. It is inspiring to witness a diverse collection of company representatives, many of which are direct competitors, come together and develop educational, training, youth awareness and networking events that are, at the core, designed to give back and promote business. An equally important council function is to ensure that SEMA—the association—sustains a pulse on the industry and maintains a presence with its members.

The question is often asked, “Why should my company join a council?” The answer is simple. SEMA councils open the door and provide you exposure to industry leaders, decision makers, trendsetters and a community of like-minded individuals who share your passion and desire to see business succeed and prosper. Once the door is open, it is your responsibility to take advantage of the benefits by becoming actively involved.

Learn more today
.

Councils in Action

education day

There were many reasons to celebrate March 17. Saint Patrick’s Day and the NCAA Tournament to name a few, but just as important was the Hot Rod Industry Alliance's (HRIA) annual Education and Training Day that took place during the Hotrod and Restoration Show in Indianapolis.

Picture the scene: 40 companies, five classrooms, 500 or more attendees and one goal—education. Education Day is offered at no charge to attendees and made possible through the efforts of HRIA and participating manufacturers. The event runs from 8:00 a.m. and concludes after 6:30 p.m. With five sessions running every hour, this truly unique experience allows attendees to select the seminars that are of most interest and relevant to their business. Each session lasts an hour and covers subjects, such as air conditioning, suspension, brakes, rapid prototyping, instrumentation, performance, insurance and steering.

In addition to the premier education and training that take place, there exists a real community for individuals to share ideas and network with one another. The interaction between manufacturer and attendee and between peers serves to heighten the experience and develop a genuine camaraderie that embodies what SEMA is all about.

Learn more here.

Have You Registered a Patent or Trademark? Your Competition Has.

Protecting the intellectual property rights (IPR) of its members is a top SEMA priority. The process begins when companies register their patents, trademarks and copyrights with government agencies in the United States (and other countries). Registration is a key to establishing legal rights.

To assist its members, SEMA has created a webpage called Introduction to Intellectual Property Rights, explaining the different types of IP, including protecting new products (utility patents) and product designs (design patent), identifying the source of the product (trademarks) and protecting product brochures or website designs (copyright). It also contains information on how to register IP along with links to seminars, webinars and SEMA News articles.

With respect to enforcing IP rights at the SEMA Show, the association has developed an effective policy for pursuing infringement allegations. SEMA’s IP enforcement policy is posted on the IPR webpage and is also published as part of the Exhibitor Services Manual. Questions may be directed to Stuart Gosswein (stuartg@sema.org).

Are you on Facebook, LinkedIn or Twitter? HRIA is!

Be sure to follow HRIA on all of your favorite social networking sites. To find these sites, go to www.sema.org/hria and use the links in the top right-hand corner.

HRIA Column in SEMA Member News

Read HRIA's column featured in the March/April issue of SEMA Member News.

For more information about HRIA and how to join, contact Zane Clark or call 909/978-6696.


MPMC Logo
 
Visit MPMC's website.  
Are you on Facebook, LinkedIn or Twitter? MPMC Is!

 

Be sure to follow MPMC on all of your favorite social networking sites. To find these sites, go to www.sema.org/mpmc and use the links in the top right-hand corner.

Take a Friend to a Race Fan Page

The MPMC Motorsports Awareness campaign, highlighted by the Take a Friend to a Race program, now has its very own Fanpage on Facebook. If you’re not a fan yet, you should be!



MPMC Column in SEMA Member News

Read MPMC's column featured in the March/April issue of SEMA Member News.



For information about MPMC, contact Jim Skelly.


MRC Logo
 
Visit MRC's website.  

A Message From MRC Chair Wade Cobb

The MRC council has been chipping away at what our Long-Range Planning session of 2010 indentified as a need—benefits for our membership! MRC recently put a program together with TeleNotes, offering our members a business tool to elevate their company’s ability to capture data and reporting. We are also continuing to work on travel programs, possibly offering an “MRC” rate at our industry events, such as PWA and the SEMA Show, with select lodging. We also recognized the need to reach out to our general members and non-members to determine what it is they need from MRC.

In February, we conducted an online survey to 3,500 rep agencies associated with SEMA to find out more about reps and how MRC can maximize its efforts as a council to provide you with benefits. Thanks to all who took the time to respond; it’s the only way we can build a better MRC. Just as any council or association, it’s imperative to get the feedback from its members on what works or needs to be fixed. As we move on reviewing the data MRC has been able to obtain through the survey and the information from our LRP, the council will continue to put action plans in place to address the concerns.

In our most recent tele-conference, MRC has established the date and time for the MRC event to be held at the 2011 SEMA Show on Sunday, October 30, from 4:00 p.m.–6:00 p.m. The MRC Rep Conference task force headed by our own Thomas Jordan is in the midst of debating the topic and format to ensure we have the best possible event for you.

Looking to continue the efforts put forth by our members, MRC attended the MPMC Media Trade Conference held in Los Angeles this past January with the purpose of representing MRC to the manufacturers present. MRC Chair-Elect Chris Fairless and I had a MRC room all three days of the event, conducting meetings with members interested in utilizing reps and showing them the value of using rep agencies. We provided each exhibiting company with a MRC brochure and offered the MRC DVD for additional information. Both Chris and I were very pleased with the event, realizing this was a first for MRC and a great opportunity given to MRC by MPMC to explore the venue and take away ideas to build even better programs for coming events. We truly wish to thank Kyle Fickler and Vic Wood of MPMC for working with us during the MPMC Media Trade Conference.

We look forward to working with other industry segments to continue educating our fellow industry members on the benefits of utilizing a rep agency as their sales force. Your thoughts and comments are welcome any time. We need to hear your voice, so please speak out!

Are you on Facebook, LinkedIn or Twitter? MRC is!

Be sure to follow MRC on all of your favorite social networking sites. To find these sites, go to www.sema.org/mrc and use the links in the top right-hand corner.

MRC Column in SEMA Member News

Read MRC's column featured in the March/April issue of SEMA Member News.

For information about MRC, contact Zane Clark.


PRO Logo
 
Visit PRO's website.  
Have you ever wondered how to get more involved in the SEMA Professional Restylers Organization (PRO) Council?

What exactly do the council leaders do throughout their term? Very simply, the Select Committee is elected by members of the council to serve a two-year term. They participate in monthly conference calls and meetings that are held at various trade events throughout the year. Each Select Committee member volunteers for at least 20 hours throughout the year, and some volunteer even more. Some share their experience and vision, others provide creative solutions to challenges our member companies are facing and others get their hands dirty and get it done. Each Select Committee member is supported by their company in their PRO efforts, and for that we say, “thank you,” to those companies!

The leaders of the PRO gathered earlier this year in Lima, Ohio, for its annual Long-Range Planning meeting. This meeting focused on bringing value to the PRO-member companies. The past 18 months have been extremely challenging for all of our companies, and the council is dedicated to utilizing SEMA’s resources to further benefit each PRO member.

Guiding the group’s effort was the council’s mission statement to “address the challenges facing the restyling segment of the automotive aftermarket and to develop effective strategies for dealing with industry-specific issues.” A handful of exciting objectives are being developed for the council over this year and next. If you are passionate and have an interest in being involved, there are plenty of opportunities to volunteer for a task force with a limited investment of time that provides a great way to network and share your ideas. Please reach out to the task force chair if you want to participate or have comments.

Education Task Force
Brian Champa (Check Corporation) and Bill North (Webasto Product North America) co-chair this task force and can be reached at bchampa@checkcorp.com or bill.north@webasto-us.com. The education task force is charged with developing successful programs for members to enhance their businesses. The Technical Skills & Training Conference (TSTC) recently launched, and the group is tasked with expanding the number of events each year to ensure that training and education become primary drivers for our industry.

NovemberFest Task Force
Mike Stanifer (Innovative Creations Inc.) chairs this group and can be reached at mike@icionline.com. The SEMA Show in Las Vegas provides the backdrop for critical networking functions. This group focuses on making PRO’s awards reception the place to be and offering a fun forum to bring passionate members with common interests together.

Membership Task Force
Joey Johnston (Tops & Trends) chairs this group and can be reached at joey@topsandtrends.com. The success of any council or initiative is dependent upon its members. This task force focuses on growth, promotion and retention. It is important that we mentor new members on council activities, events, meetings and benefits.

Are you on Facebook, LinkedIn or Twitter? PRO Is!

Be sure to follow PRO on all of your favorite social networking sites. To find these sites, go to www.sema.org/pro and use the links in the top right-hand corner.

PRO Column in SEMA Member News

Read PRO's column featured in the March/April issue of SEMA Member News.

For information about PRO, contact Zane Clark or call 909/978-6696.


SBN Logo
 
Visit SBN's website.
 

SEMA Businesswomen’s Network Debuts Speed Networking Event Video

The SEMA Businesswomen’s Network (SBN) has released its 2010 Speed Networking Breakfast, Powered by SBN event video. If you attended this sold-out event—or even if you missed it—you must check out the video so you can plan ahead to attend this year’s event.

While the SBN Speed Networking Breakfast is not exclusively for women, it clearly focuses on recognizing women who significantly contribute to the aftermarket and performance industries.

With special thanks to James and Melissa Lawrence of PowerTV, who covered this event, we are able to share the highlights with our members. Captured on video are glimpses of the event, which includes an exclusive interview with SBN's 2010 Woman of the Year Award recipient Kellie Colf of Aftermarketer Club Inc., and Zan Martin of Martin & Company Advertising. Both discuss the significance of each award.

Also accepting an SBN Award was Wade Kawasaki of Exports International, who was awarded the 2010 Athena Award for his support of women in the automotive aftermarket industry. And presenting the Mentor of the Year Award to a deserving John Menzler of Comp Performance Group was Joe St. Lawrence of RTM Productions Inc.—Titanium Sponsor of the event.

SBN’s annual breakfast event held during SEMA Show week is a great opportunity to network, learn and forge new relationships with others who share the same goals and interests of growing the automotive aftermarket industry and promoting the success of all.

Check out the following links to view video and photos from the 2010 SBN Annual Speed Networking Breakfast:

www.sema.org/sbn
www.sema.org/sbn/gallery/2010-breakfast
www.facebook.com/semasbn

You Ought to Be in Pictures!

The SEMA Businesswomen’s Network committee is a great resource of minds. All ladies in the specialty-equipment industry can join the SBN, so pass the word around to your colleagues and friends! We are encouraging all new and existing SBN members to log-in to the MySEMA portal to update their profile with a photo so we get to know each other's faces before the SEMA Show.

And don’t forget to turn your notifications settings “ON” so you can stay in “the loop.” Want to know more about the SBN? Interested in becoming a member?

Want to get involved in the industry but don't know how? We have an app for that! Go to www.SEMA.org, click on the Leadership tab, click on Council/Committee, click on SBN and join! Don't delay—get involved and join now. You are just a few clicks away! We look forward to "seeing" everyone!

Don’t Be Out of the Loop—Stay in Touch

The very best way to stay in touch and to read the latest news, discussions and topics posted from SEMA and the SEMA Businesswomen’s Network (SBN) is to make sure that your notification settings are turned on in your MySEMA account. Next to your photo on your MySEMA page, at the top right, is a link to the "Edit My Settings" page.

On the “settings” page, look for the “notifications” tab, where it will ask how you would like to receive your news. Check whichever method is most convenient, but either way, make sure you're in the loop by turning “on” your notifications. Visit http://my.sema.org to make sure you don’t miss a thing!

Discover the SEMA Mentoring Program—Powered by the SBN

“I’ll get by with a little help from my friends…” - Joe Cocker

Everyone needs help or expert advice from time to time, and SEMA’s Mentoring Program is an excellent resource to get answers to all your questions. Whether you need to know more about SEMA, market information for a start-up company or advice on how to approach your boss about a new position, the SEMA Mentoring Program can help.

“Ask A Mentor” is perfect for one-time questions. You can expect multiple SEMA mentors to provide online guidance and answers to your industry-related questions.

Short-term Assistance/Guidance is for help with a specific project or task. A SEMA council/committee mentor with the expertise you seek will be paired up with you to provide guidance with your project.

Long-term Relationship is helpful for developing your professional career. In this program segment you will be paired with a SEMA council/committee mentor who will provide guidance and assistance for ongoing career development or a long-term project.

So whether you just need an answer to a question or you want to cultivate a mentoring friendship, the SEMA Mentoring Program—Powered by the SBN is available to help. After all, we can all use a little help from our friends.

Visit the SEMA Mentoring Program now.

Are you on Facebook, LinkedIn or Twitter? SBN is!

Be sure to follow SBN on all of your favorite social networking sites. To find these sites, go to www.sema.org/sbn and use the links in the top right-hand corner.

SBN Column in SEMA Member News

Read SBN's column featured in the March/April issue of SEMA Member News.

For information about SBN, contact Angela Lee.



SPC Logo
 
Visit SPC's website.  
Find the Business Possibilities Through the SPC

Participate in the automotive aftermarket at a whole new level by joining the SPC.

The purpose of SEMA councils is to help our member companies succeed and prosper. In the SPC, our mission is to provide market information, education and support to our members concerning new and emerging trends. Whether it’s the latest business technology, forecasting sales, future marketing solutions or up and coming vehicle platforms, we give you and your company the chance to see what’s on the horizon.

Then we’ll help you understand and acquire the skills, tools and technologies to lead the way. The SPC has the most diverse membership of any SEMA council, and that will allow you to network with other professionals from every facet of our industry and gain insights into areas you may not have previously considered. Find out about the parts, people, technologies, strategies, trends and, most important, possibilities.

This is your chance to give something back to the industry, your profession and to grow personally along the way. Join the SPC today and become an active member of the specialty equipment and automotive market — Tracie Nuñez, Advanced Clutch Technology, SPC Chairman

Are you on Facebook, LinkedIn or Twitter? SPC is!

Be sure to follow SPC on all of your favorite social networking sites. To find these sites, go to www.sema.org/spc and use the links in the top right-hand corner.

SPC Column in SEMA Member News

Read SPC's column featured in the March/April issue of SEMA Member News.

For information about SPC, contact Angela Lee.


WTC Logo
 
Visit WTC's website

Have you ever wondered how to get more involved in the SEMA Wheel and Tire (WTC) Council?

What exactly do the council leaders do throughout their term? Very simply, the Select Committee is elected by members of the council to serve a two-year term. They participate in monthly conference calls and meetings that are held at various trade events throughout the year. Each Select Committee member volunteers for at least 20 hours throughout the year, and some volunteer even more. Some share their experience and vision, others provide creative solutions to challenges our member companies are facing and others get their hands dirty and get it done. Each Select Committee member is supported by their company in their WTC efforts, and for that we say “thank you” to those companies!

The leaders of the WTC gathered earlier this year at SEMA headquarters in Diamond Bar, California, for its annual Long-Range Planning meeting. This meeting focused on bringing value to the WTC-member companies. The past 18 months have been extremely challenging for all of our companies and the council is dedicated to utilizing SEMA’s resources to further benefit each WTC member.

Guiding the group’s effort was the council’s mission statement to “identify common problems and opportunities relating to the wheel and tire industries that the council, as an interested body of companies, can address for the common good.” A handful of exciting objectives are being developed for the council over this year and next. If you are passionate and have an interest in being involved, there are plenty of opportunities to volunteer for a task force with a limited investment of time that provides a great way to network and share your ideas. Please reach out to the task force chair if you want to participate or have comments.

Science and Technology Task Force

Tim Dietz (Standards Testing Laboratories Inc.) and can be reached at tdietz@stllabs.com. This group focuses on aftermarket and OEM advances that affect our industry. From creating wheel standards to improved processes for tire-pressure monitoring systems and electronic stability control, the Science and Technology Task Force plays a pivotal role in the industry’s advancement.

Education Task Force
Kelly Austin (Ultra Wheel Company) chairs this group and can be reached at kelly@mail.ultrawheel.com. The education task force is charged with developing successful programs for members to enhance their businesses. The WTC Task Force is responsible for partnering with the SEMA Educational Institute to create and promote online learning resources.

Communication and Marketing Task Force

Doug Frymer (Law Offices of Douglas A. Frymer) chairs this group and can be reached at legal@starshieldarmor.com. This group focuses on membership outreach, growth and retention. It is imperative that councils effectively communicate services provided by WTC and SEMA to our members. Communication and services ensure that there is proper dialogue between leadership and membership.

SEMA Show Task Force

David Insull (American Tire Distributors) chairs this group and can be reached at dinsull@atd-us.com. The SEMA Show in Las Vegas provides the backdrop for critical networking functions. This group focuses on making WTC’s awards reception an ideal place to get together, honor one another and network with all those who share a common passion.

There are so many other things the council leadership does throughout the year. You are the expert at what your business needs and this council wants to deliver. Feel free to get in touch with us or come to one of our WTC events. Our hope is that, if you haven’t been a part of WTC yet, you will be in 2010 and beyond.

Are you on Facebook, LinkedIn or Twitter? WTC is!

Be sure to follow WTC on all of your favorite social networking sites. To find these sites, go to www.sema.org/wtc and use the links in the top right-hand corner.

WTC Column in SEMA Member News

Read WTC's column featured in the March/April issue of SEMA Member News.

For information about WTC and how to join, contact Zane Clark or call or 909/978-6696.


YEN Logo

Visit YEN's website

SEMA Loan Forgiveness Program

Since 2004, SEMA's Young Executives Network has been dedicated to aiding recent graduates in getting off to a successful start in their automotive specialty-equipment career.

“SEMA and YEN are believers in higher education,” said Gregory Parker, chairman of the Young Executives Network. “However, with today's higher costs of getting an education, more and more students have to turn to student loans. The new YEN Loan Forgiveness Scholarship Award will now be able to help a previous or current student who has loans they are trying to pay off while working within our industry. Our inaugural scholarship winner, Jaclyn Kilani, worked hard to put herself through school and is now working for a SEMA-member company. We are just glad we are able to recognize and reward her for her hard work, and we look forward to doing the same for other industry peers as we move into the future.”

Kilani, who recently graduated from California State University with a degree in graphic design, is the marketing director at Dannmar Equipment, a manufacturer of automotive repair products. Of the specialty-equipment industry, Kilani says, “I couldn’t see myself anywhere else. It’s an eclectic marketplace with a very unique audience, and I love the challenge of marketing a company in a non-traditional way. This award came at the perfect time, and it's a tremendous step toward my goal of becoming debt-free. I truly appreciate the privilege.”

The SEMA Loan Forgiveness Program is dedicated to aiding recent graduates in getting off to a successful start in their specialty-equipment career. SEMA offers a minimum of $1,000 toward outstanding student loans for individuals who are employed by SEMA-member companies. Applications for the next program open in December 2010 at www.sema.org/scholarships.

Join YEN

Did you know that the SEMA Young Executives Network has more than 500 members networking in the industry and is the largest SEMA committee? If you are employed by a SEMA-member company and are under the age of 39, then you can join the SEMA Young Executives Network for FREE. If you are interested in becoming part of the team, please visit our website at www.sema.org/yen.

YEN Member of the Month Spotlight


Did you know that YEN has a Member of the Month Spotlight on the SEMA website and that anyone can be nominated? To view previous selections or to make a nomination, visit www.sema.org/yen.

Are you on Facebook, LinkedIn or Twitter? YEN is!

Be sure to follow YEN on all of your favorite social networking sites. To find these sites, go to www.sema.org/yen and use the links in the top right-hand corner.

YEN Column in SEMA Member News

Read YEN's column featured in the March/April issue of SEMA Member News.

For information about YEN, contact Angela Lee.