Skip to main content

Denso to invest in truck platooning technology

Denso International America has entered into an investment agreement with Peloton Technology, which will help accelerate Peloton's development and deployment of platooning technology. The technology aims to increase fuel economy and improve safety for the global trucking industry. Platooning technology uses vehicle-to-vehicle and vehicle-to-infrastructure (V2X) wireless communication and radar to pair trucks to travel closely together and thus create an aerodynamic system that is similar to drafting in r
June 1, 2015 Read time: 2 mins
Denso International America (4306 Denso Corporation) has entered into an investment agreement with Peloton Technology, which will help accelerate Peloton's development and deployment of platooning technology. The technology aims to increase fuel economy and improve safety for the global trucking industry.

Platooning technology uses vehicle-to-vehicle and vehicle-to-infrastructure (V2X) wireless communication and radar to pair trucks to travel closely together and thus create an aerodynamic system that is similar to drafting in race cars. The direct communication system provides a way for trucks to 'talk' with each other and safely follow another truck with the same features to improve braking and acceleration time, increase safety and reduce fuel costs.

"Denso is excited to build a strong relationship with Peloton," says Tony Cannestra, Director of Corporate Ventures for Denso International America, Inc. "As a leader in vehicle-to-vehicle (V2V) technologies, we are eager to work closely with Peloton to implement the first large-scale deployment of a V2V system. Denso believes that Peloton's system has the potential to help increase safety and fuel savings in the transportation industry."

For more than a decade, Denso has been researching and developing V2X technology systems to allow cars to communicate with surrounding vehicles and traffic signals. It claims the application of this technology to the trucking industry could potentially help large fleet vehicles reduce fuel consumption by 10 per cent for the rear truck and 4.5 percent for the front truck (based on industry-standard SAE J1321 Type II fuel economy testing conducted by the North American Council for Freight Efficiency and trucking fleet C.R. England).

For more information on companies in this article

Related Content

  • ITS investment on upward curve
    August 17, 2022
    More money is coming into the ITS sector – but where is it likely to go next? And what are the pros and cons of all this cash? Adam Hill talks to ITS veteran and corporate investment adviser Greg McKhann
  • Open communication platform to support cooperative infrastructure
    July 23, 2012
    Within the European Commission's CVIS project, work is going on to shrink the open vehicle communication platform to make it more market-ready and to remove barriers to the creation of appropriate applications by those external to the project. Here, ERTICO's Zeljko Jeftic and Paul Kompfner and Q-Free's Knut Evensen discuss progress. Development of the open communication platform which will support the various applications developed by the European Commission's (EC's) Cooperative Vehicle-Infrastructure Syste
  • Jaguar Land Rover to begin real-world tests of CAV technologies
    July 18, 2016
    Jaguar Land Rover plans to create a fleet of more than 100 research vehicles over the next four years, to develop and test a wide range of connected and autonomous vehicle (CAV) technologies. The first of these research cars will be driven on a new 41 mile test route on UK motorways and urban roads around Coventry and Solihull later this year. The initial tests will involve vehicle-to-vehicle and vehicle-to-infrastructure communications technologies that will allow cars to talk to each other and roadsid
  • Bringing V2I and V2V communications to workzone safety
    January 26, 2012
    Imran Hayee of the University of Minnesota Duluth's Department of Electrical and Computer Engineering talks about efforts to bring V2I and V2V communications into work zones. With USDOT backing and under the auspices of the ITS Joint Program Office Connected Vehicle Research (formerly IntelliDrive) research programme, M. Imran Hayee of the University of Minnesota Duluth's Department of Electrical and Computer Engineering along with team of his students, have been conducting research into the application of