Skip to main content

Bosch develops motorcycle to car communications to reduce crashes

Bosch, in partnership with Autotalks, Cohda Wireless and Ducati, has developed a prototype solution which connects cars and motorcycles, allowing them to communicate with each other in a bid to reduce the number of crashes involving motorcyclists. According to estimates by Bosch accident research, motorcycle-to-car communication could prevent nearly one-third of motorcycle accidents. The system enables vehicles within a radius of several hundred metres to exchange information about ten times a second about
May 26, 2017 Read time: 2 mins
311 Bosch, in partnership with 6765 Autotalks, 6667 Cohda Wireless and Ducati, has developed a prototype solution which connects cars and motorcycles, allowing them to communicate with each other in a bid to reduce the number of crashes involving motorcyclists.


According to estimates by Bosch accident research, motorcycle-to-car communication could prevent nearly one-third of motorcycle accidents.

The system enables vehicles within a radius of several hundred metres to exchange information about ten times a second about vehicle types, speed, position, and direction of travel. Well before drivers or their vehicle sensors see an approaching motorcycle, this technology informs them that a motorcycle is approaching, allowing them to adopt a more defensive driving strategy. If the system identifies a potentially dangerous situation, it can warn the rider or driver by sounding an alarm and flashing a warning notice on the dashboard. In this way, all road users receive essential information that actively helps avoid accidents.

The public WLAN standard (ITS G5) is used as the basis for the exchange of data between motorcycles and cars. Transmission times of just a few milliseconds between transmitter and receiver mean that participating road users can generate and transmit important information relating to the traffic situation. Parked or idling vehicles also transmit data to any surrounding receivers. To allow riders and drivers who are farther away to reliably receive the necessary information, the technology makes use of multi-hopping, which forwards the information automatically from vehicle to vehicle. In critical situations, therefore, all road users know what is happening and are able to take appropriate action in advance.

For more information on companies in this article

Related Content

  • New approach to real time travel information - free of charge
    February 3, 2012
    Austria's national road operator, ASFINAG, has launched the TMCplus traveller information service which is unusual in that it offers encrypted-level services to all users free of charge. Martin Müllner writes
  • Preventing connected vehicles creating disconnected drivers
    November 12, 2015
    Advanced driver assistance systems (ADAS) are evolving at a rapid pace – but drivers’ ability to cope with them is not and at some point the mismatch must be addressed. Probably the biggest challenge the transportation industry has ever faced.” That is how Dr Bryan Reimer of Massachusetts Institute of Technology AgeLab describes the challenges posed by semi-autonomous vehicles.
  • Advanced in-vehicle user interface - future developments
    February 1, 2012
    Dave McNamara and Craig Simonds, Autotechinsider LLC, look at human-machine interface development out to 2015. The US auto industry is going through the worst crisis it has faced since the Great Depression. But it has embraced technologies that will produce the best-possible driving experience for the public. Ford was the first OEM to announce in-car internet radio and SYNC, its signature-branded User Interface (UI), is held up as the shining example of change embracement.
  • ITS America seeks stable and secure platform for connected vehicles
    May 30, 2013
    The Intelligent Transportation Society of America (ITS America) has issued a statement following the submission of comments regarding the Federal Communications Commission’s (FCC) Notice of Proposed Rulemaking (NPRM) seeking to amend the Commission’s rules to allow for the operation of Unlicensed National Infrastructure (U-NII) Devices in the 5850-5925 MHz Band (“5.9 GHz Band”) which was set aside by the FCC for the development of connected vehicle technology.