• DocumentCode
    1453599
  • Title

    Autonomous Pedestrian Collision Avoidance Using a Fuzzy Steering Controller

  • Author

    Llorca, David Fernández ; Milanés, Vicente ; Alonso, Ignacio Parra ; Gavilán, Miguel ; Daza, Iván García ; Pérez, Joshué ; Sotelo, Miguel Ángel

  • Author_Institution
    Dept. de Autom., Univ. de Alcala, Alcalá de Henares, Spain
  • Volume
    12
  • Issue
    2
  • fYear
    2011
  • fDate
    6/1/2011 12:00:00 AM
  • Firstpage
    390
  • Lastpage
    401
  • Abstract
    Collision avoidance is one of the most difficult and challenging automatic driving operations in the domain of intelligent vehicles. In emergency situations, human drivers are more likely to brake than to steer, although the optimal maneuver would, more frequently, be steering alone. This statement suggests the use of automatic steering as a promising solution to avoid accidents in the future. The objective of this paper is to provide a collision avoidance system (CAS) for autonomous vehicles, focusing on pedestrian collision avoidance. The detection component involves a stereo-vision-based pedestrian detection system that provides suitable measurements of the time to collision. The collision avoidance maneuver is performed using fuzzy controllers for the actuators that mimic human behavior and reactions, along with a high-precision Global Positioning System (GPS), which provides the information needed for the autonomous navigation. The proposed system is evaluated in two steps. First, drivers´ behavior and sensor accuracy are studied in experiments carried out by manual driving. This study will be used to define the parameters of the second step, in which automatic pedestrian collision avoidance is carried out at speeds of up to 30 km/h. The performed field tests provided encouraging results and proved the viability of the proposed approach.
  • Keywords
    Global Positioning System; collision avoidance; fuzzy control; mobile robots; road vehicles; self-adjusting systems; steering systems; stereo image processing; automatic driving operations; autonomous navigation; autonomous pedestrian collision avoidance; autonomous vehicles; collision avoidance maneuver; fuzzy steering controller; high-precision Global Positioning System; intelligent vehicles; stereo-vision-based pedestrian detection system; Collision avoidance; Driver circuits; Global Positioning System; Humans; Vehicles; Wheels; Collision avoidance; fuzzy control; pedestrian protection; steering control; stereo vision;
  • fLanguage
    English
  • Journal_Title
    Intelligent Transportation Systems, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1524-9050
  • Type

    jour

  • DOI
    10.1109/TITS.2010.2091272
  • Filename
    5715879