• DocumentCode
    3234468
  • Title

    Motion planning in dynamic environments: obstacles moving along arbitrary trajectories

  • Author

    Shiller, Zvi ; Large, Frederic ; Sekhavat, Sepanta

  • Author_Institution
    Dept. of Mech. & Aerosp. Eng., California Univ., Los Angeles, CA, USA
  • Volume
    4
  • fYear
    2001
  • fDate
    2001
  • Firstpage
    3716
  • Abstract
    This paper generalizes the concept of velocity obstacles given by Fiorini et al. (1998) to obstacles moving along arbitrary trajectories. We introduce the nonlinear velocity obstacle, which takes into account the shape, velocity and path curvature of the moving obstacle. The nonlinear v-obstacle allows selecting a single avoidance maneuver (if one exists) that avoids any number of obstacles moving on any known trajectories. For unknown trajectories, the nonlinear v-obstacles can be used to generate local avoidance maneuvers based on the current velocity and path curvature of the moving obstacle. This elevates the planning strategy to a second order method, compared to the first order avoidance using the linear v-obstacle, and zero order avoidance using only position information. Analytic expressions for the nonlinear v-obstacle are derived for general trajectories in the plane. The nonlinear v-obstacles are demonstrated in a complex traffic example.
  • Keywords
    collision avoidance; mobile robots; nonlinear systems; path planning; dynamic environments; mobile robots; motion planning; moving obstacle; nonlinear velocity obstacle; obstacle avoidance; Aerodynamics; Aerospace engineering; Orbital robotics; Road accidents; Road vehicles; Robots; Shape; Strategic planning; Trajectory; Vehicle dynamics;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Robotics and Automation, 2001. Proceedings 2001 ICRA. IEEE International Conference on
  • ISSN
    1050-4729
  • Print_ISBN
    0-7803-6576-3
  • Type

    conf

  • DOI
    10.1109/ROBOT.2001.933196
  • Filename
    933196