• DocumentCode
    2791916
  • Title

    Globally stable closed loops imply autonomous behavior

  • Author

    Koditschek, Daniel E.

  • Author_Institution
    Dept. of Electr. Eng., Yale Univ., New Haven, CT, USA
  • fYear
    1990
  • fDate
    5-7 Sep 1990
  • Firstpage
    651
  • Abstract
    A program of research in robotics that seeks to encode abstract tasks in a form that simultaneously affords a control scheme for the torque-actuated dynamical systems, as well as a proof that the resulting closed-loop behavior will correctly achieve the desired goals, is reviewed. Two different behaviors that require dexterity and might plausibly connote `intelligence´-navigating in a cluttered environment and juggling a number of otherwise freely falling objects-are examined with regard to similarities in problem representation, method of solution, and causes of success. The central theme concerns the virtue of global stability mechanisms. At the planning level they lend autonomy, that is, freedom from dependence upon some `higher´ intelligence. They encourage the design of canonical procedures for model problems, which may then be instantiated in particular settings by a change of coordinates. The procedures developed result in provably autonomous behavior. Simulation results and physical experimental studies suggest the practicability of these methods
  • Keywords
    closed loop systems; planning (artificial intelligence); robots; abstract tasks; autonomous behavior; canonical procedures; control scheme; dexterity; globally stable closed loops; method of solution; problem representation; robotics; torque-actuated dynamical systems; Computational geometry; Control systems; Force control; Force feedback; Humans; Navigation; Orbital robotics; Robot kinematics; Stability; Torque control;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Intelligent Control, 1990. Proceedings., 5th IEEE International Symposium on
  • Conference_Location
    Philadelphia, PA
  • ISSN
    2158-9860
  • Print_ISBN
    0-8186-2108-7
  • Type

    conf

  • DOI
    10.1109/ISIC.1990.128526
  • Filename
    128526