• DocumentCode
    1083170
  • Title

    Adaptive control of manipulators using uncalibrated joint-torque sensing

  • Author

    Aghili, Farhad ; Namvar, Mehrzad

  • Author_Institution
    Div. of Spacecraft Eng., Canadian Space Agency, Saint-Hubert, Que.
  • Volume
    22
  • Issue
    4
  • fYear
    2006
  • Firstpage
    854
  • Lastpage
    860
  • Abstract
    The application of joint-torque sensory feedback (JTF) in robot control has been proposed in the past that, unlike the model-based controllers, does not require the dynamic model of the robot links. JTF, however, assumes precise measurement of joint torque and accurate friction model of the joints. This paper presents an adaptive JTF control algorithm that does not rely on these assumptions. First, the robot dynamics with JTF is presented in a standard form with a minimum number of parameters, where the inertia matrix appears symmetric and positive definite. Second, an adaptive JTF control law is developed that requires only incorporation of uncalibrated joint-torque signals, i.e., the gains and offsets of multiple sensors are unknown. Also, all physical parameters of the joints including inertia of the rotors, link twist angles, and friction parameters are assumed to be unknown to the controller. The stability analysis of the control system is presented. Experimental results demonstrating the tracking performance of the proposed adaptive JTF controller are presented
  • Keywords
    adaptive control; friction; manipulator dynamics; motion control; stability; torque control; adaptive control; dynamic motion control; friction model; inertia matrix; manipulators; robot dynamics; stability analysis; uncalibrated joint-torque sensing; Adaptive control; Feedback; Friction; Manipulator dynamics; Programmable control; Robot control; Robot sensing systems; Stability analysis; Symmetric matrices; Torque measurement; Adaptive control of manipulators; friction compensation; joint-torque feedback; joint-torque sensory feedback (JTF); motion control;
  • fLanguage
    English
  • Journal_Title
    Robotics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1552-3098
  • Type

    jour

  • DOI
    10.1109/TRO.2006.875489
  • Filename
    1668267