• DocumentCode
    991013
  • Title

    Experimental Assessment of the RESCUE Collision-Mitigation System

  • Author

    Labayrade, Raphael ; Royere, Cyril ; Aubert, Didier

  • Author_Institution
    LIVIC-INRETS/LCPC, Versailles
  • Volume
    56
  • Issue
    1
  • fYear
    2007
  • Firstpage
    89
  • Lastpage
    102
  • Abstract
    Road-traffic-incident analysis has shown that 52% of incidents are caused by a collision between two vehicles or between a vehicle and an obstacle. In this paper, the REduce Speed of Collision Under Emergency (RESCUE) collision-mitigation system (version 1.0) is presented and evaluated toward various typical road situations. The aim of the RESCUE system is to decrease the kinetic energy dissipated during a collision through automatic emergency braking that occurs 1 s before the collision. This emergency braking is triggered by an alarm coming from a decision unit taking into consideration the results of a generic obstacle-detection system-based on fusion between stereovision and laser scanner-and a warning area in front of the vehicle. The different subsystems are presented. Then, the behavior of the RESCUE collision-mitigation system toward various typical dangerous road situations is assessed through systematic tests. These quantitative tests are completed by qualitative ones carried out on 737 km of open roads (freeways, highways, rural roads, downtown) to provide a more precise idea about the false-alarm rate. The experiments show the system is promising in terms of reliability, genericity, and efficiency
  • Keywords
    braking; collision avoidance; object detection; optical scanners; road accidents; stereo image processing; traffic engineering computing; RESCUE collision-mitigation system; automatic emergency braking; kinetic energy reduction; laser scanner; obstacle-detection system; reduce speed of collision under emergency collision-mitigation system; road-traffic-incident analysis; stereovision; Kinetic energy; Laser fusion; Road accidents; Road safety; Road transportation; Road vehicles; Traffic control; Urban areas; Vehicle driving; Vehicle safety; Collision mitigation; experimental assessment; sensors fusion;
  • fLanguage
    English
  • Journal_Title
    Vehicular Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9545
  • Type

    jour

  • DOI
    10.1109/TVT.2006.883780
  • Filename
    4067130