• DocumentCode
    645921
  • Title

    Controller design and evaluation for vehicle run-off-the-road and recovery

  • Author

    Jensen, Michael ; Freeman, Peter ; Wagner, Jens ; Alexander, Karpachev

  • Author_Institution
    Sch. of Eng., Univ. of North Florida, Jacksonville, FL, USA
  • fYear
    2013
  • fDate
    17-19 July 2013
  • Firstpage
    962
  • Lastpage
    967
  • Abstract
    Run-off-the-road (ROR) and unsuccessful recovery events account for a significant percentage of fatal vehicle crashes. Changes to roadway infrastructure have reduced the severity of automotive crashes; however, it is driver performance which remains a primary contributing factor to these incidents. An on-board vehicle control system, using combined steering and differential braking, provides enhanced safety by removing driver error from the recovery process once the ROR event has been identified. In this study, two control algorithms, based on sliding mode and state flow theories, have been designed to automatically recover a vehicle from this dangerous scenario. A driver model was also developed based on experimental data gathered at a tire manufacturer´s test track. The controllers were numerically evaluated for a common road departure and return situation with comparison to the empirical driver model. The results show that both controllers safely recovered the vehicle and outperformed the driver steering model. Specifically, the state flow controller reduced recovery time by 40% compared to the sliding mode controller, while the driver model resulted in vehicle spin out.
  • Keywords
    braking; control system synthesis; road safety; road traffic control; road vehicles; steering systems; variable structure systems; automotive crashes; control algorithms; controller design; differential braking; driver performance; driver steering model; empirical driver model; on-board vehicle control system; road departure; road return; roadway infrastructure; sliding mode control; state flow controller; state flow theories; steering; vehicle recovery; vehicle run-off-the-road; vehicle spin out; Numerical models; Roads; Tires; Torque; Vehicle crash testing; Vehicles; Wheels;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Control Conference (ECC), 2013 European
  • Conference_Location
    Zurich
  • Type

    conf

  • Filename
    6669117