• DocumentCode
    2091283
  • Title

    Virtual model control of a bipedal walking robot

  • Author

    Pratt, Jerry ; Dilworth, Peter ; Pratt, Gill

  • Author_Institution
    Leg Lab., MIT, Cambridge, MA, USA
  • Volume
    1
  • fYear
    1997
  • fDate
    20-25 Apr 1997
  • Firstpage
    193
  • Abstract
    The transformation from high level task specification to low level motion control is a fundamental issue in sensorimotor control in animals and robots. This paper describes a control scheme called virtual model control that addresses this issue. Virtual model control is a motion control language that uses simulations of imagined mechanical components to create forces, which are applied through real joint torques, thereby creating the illusion that the virtual components are connected to the robot. Due to the intuitive nature of this technique, designing a virtual model controller requires the same skills as designing the mechanism itself. A high level control system can be cascaded with the low level virtual model controller to modulate the parameters of the virtual mechanisms. Discrete commands from the high level controller would then result in fluid motion. Virtual model control has been applied to a physical bipedal walking robot. A simple algorithm utilizing a simple set of virtual components has successfully compelled the robot to walk continuously over level terrain
  • Keywords
    Jacobian matrices; legged locomotion; mobile robots; motion control; robot dynamics; robot kinematics; bipedal walking robot; high level task specification; imagined mechanical components; low level motion control; motion control language; sensorimotor control; virtual mechanisms; virtual model control; Fluid dynamics; Force control; Leg; Legged locomotion; Mathematical model; Motion control; Orbital robotics; Robot sensing systems; Springs; Torque control;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Robotics and Automation, 1997. Proceedings., 1997 IEEE International Conference on
  • Conference_Location
    Albuquerque, NM
  • Print_ISBN
    0-7803-3612-7
  • Type

    conf

  • DOI
    10.1109/ROBOT.1997.620037
  • Filename
    620037