Skip to main content

TRW pedestrian protection system

TRW Automotive Holdings has developed an advanced pedestrian protection system that uses up to three remote acceleration sensors (RAS) located in the front bumper area.
January 26, 2012 Read time: 2 mins
RSS601 TRW Automotive Holdings has developed an advanced pedestrian protection system that uses up to three remote acceleration sensors (RAS) located in the front bumper area. These sensors continuously transmit acceleration signals to an electronic control unit (ECU) which analyses the sensor data. In the event of a collision, the system will determine if the vehicle has struck a human body (of various sizes) or another object. If a pedestrian collision is detected, the system triggers hood lifter mechanisms – located on either underside of the hood – to activate and create more space between the hood and the hard engine components to help reduce potential injury.

"Our goal is a reliable system based on proven technology for the hardware, software and control algorithms," said Martin Thoone, vice president, TRW global electronics engineering. "In the pedestrian protection system, the RAS can be mated to a stand-alone ECU, but the more cost effective solution is to have the software integrated into an existing TRW airbag control unit."

TRW says the preferred integrated option also offers better interactions between the frontal impact sensing and pedestrian impact sensing algorithms; resulting in enhanced overall sensing performance. System advantages also include: sensor packaging flexibility across a wide range of vehicle applications; an electronic communication interface that works within established industry protocols, helping ensure high compatibility and reliability; and the use of TRW's proprietary X-RISA_8 pedestrian impact sensing algorithm.

Related Content

  • June 26, 2012
    euroFOT study demonstrates benefits of driver assistance systems
    Today, the euroFOT consortium published the findings of a four-year study focused on the impact of driver assistance systems in the Europe. The €22 million (US$27.5 million) European Field Operational Test (euroFOT) project which began in June 2008 and involved 28 companies and organisations, was led by Aria Etemad from Ford’s European Research Centre in Aachen, Germany. The study looked at existing technologies and their potential to both enhance safety and reduce environmental impact. euroFOT also reveale
  • October 5, 2015
    New York’s MTA tests new safety technology on buses
    As part of the MTA’s ongoing commitment to improving safety across all agencies and in coordination with New York City’s Vision Zero plan, MTA New York City Transit has begun to test new technologies aimed at improving safety for drivers, bus customers and pedestrians. The 60-day tests of pedestrian turn warning and collision avoidance systems will determine if a full pilot of one or both systems can proceed in 2016. NYC Transit’s Department of Buses is testing two systems on six buses: a pedestrian turn
  • July 24, 2012
    Driving forward cooperative intersection safety applications
    Gregory Davis, FHWA, John Harding, NHTSA, and Mike Schagrin, ITS Joint Program Office (RITA) chart the course for cooperative intersection safety applications being pursued as part of the IntelliDrive programme. Crashes at intersections accounted for 8,703 highway fatalities in the US in 2008. Research and development is moving forward on IntelliDriveSM safety applications designed to help drivers avoid intersection accidents. These new safety systems could substantially drive down the highway death and inj
  • May 4, 2021
    Ansys and Velodyne team up on AV safety
    Lidar sensors will improved hazard identification for highly advanced autonomous vehicles