• DocumentCode
    3160640
  • Title

    Internal force computation of grasped object using joint torques

  • Author

    Xue, Zhixing ; Schmidt, Michael ; Zoellner, J.M. ; Dillmann, Ruediger

  • Author_Institution
    Forschungszentrum Inf., Karlsruhe
  • fYear
    2008
  • fDate
    20-22 Aug. 2008
  • Firstpage
    2795
  • Lastpage
    2800
  • Abstract
    Grasping and manipulation are the most important key functions for service robots to help people to handle the everyday tasks in household. After the object is grasped, the internal force between the hand and object is very important for fine manipulation. In this paper, we present the computation of internal force of grasped objects using joint torques. An automatic grasp planning system is used to generate grasps with high grasp quality for Schunk Anthropomorphic Hand with 13 degrees of freedom. Optimal grasp forces are computed as a linear matrix inequalities problem, and are exerted using embedded joint torque based finger impedance control. Computation of force at the fingertip, the internal force for grasps with multiple contact points and the external forces exerted onto the object after grasping are introduced. In case of multiple contact points, it is assumed that the external force is distributed equally among all contact points on one finger. Experimental results show the feasibility of our methods.
  • Keywords
    dexterous manipulators; grippers; linear matrix inequalities; path planning; service robots; automatic grasp planning system; fine manipulation; finger impedance control; grasped object; grasping; internal force computation; joint torques; linear matrix inequalities problem; manipulation; service robots; Anthropomorphism; Automatic control; Embedded computing; Fingers; Force control; Grasping; Impedance; Linear matrix inequalities; Optimal control; Service robots; dexterous manipulators; force measurement;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    SICE Annual Conference, 2008
  • Conference_Location
    Tokyo
  • Print_ISBN
    978-4-907764-30-2
  • Electronic_ISBN
    978-4-907764-29-6
  • Type

    conf

  • DOI
    10.1109/SICE.2008.4655140
  • Filename
    4655140