• DocumentCode
    2641143
  • Title

    Using force control for fidelity in low-force medical haptic simulators

  • Author

    Vlachos, Kostas ; Papadopoulos, Evangelos

  • Author_Institution
    Dept. of Mech. Eng., National Tech. Univ. of Athens
  • fYear
    2006
  • fDate
    4-6 Oct. 2006
  • Firstpage
    181
  • Lastpage
    186
  • Abstract
    In this paper the effect of force control in the fidelity of a low-force five degree-of-freedom (dof) haptic mechanism is investigated. Strict conditions that guarantee stability are presented. Our effort focuses on haptic devices, able to reproduce accurate low forces in a soft virtual environment, rather than large forces in stiff virtual environments. Open and closed loop controllers are applied to a haptic mechanism, which is a part of a training medical simulator for urological operations, and consists of a two-dof, five bar linkage and a three-dof spherical joint. The force control algorithm is described and discussed. Open and closed loop schemes are compared. Simulation and experimental results of the force control law applied to the five-dof mechanism are presented and discussed. It is shown that the use of closed loop force control law increases the haptic device fidelity and the realism of the simulation. It is also shown that in case of haptic devices used in soft virtual environments, issues like signal noise and device stiffness are more critical than maintaining system stability
  • Keywords
    biomedical education; closed loop systems; computer aided instruction; control engineering computing; force control; haptic interfaces; medical computing; medical control systems; open loop systems; stability; surgery; virtual reality; closed loop controllers; force control; haptic device fidelity; low-force medical haptic simulators; open loop controllers; spherical joint; system stability; urological operations; virtual environment; Circuit stability; Control systems; Coupling circuits; Endoscopes; Force control; Haptic interfaces; Medical simulation; Open loop systems; Stability criteria; Virtual environment;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Computer Aided Control System Design, 2006 IEEE International Conference on Control Applications, 2006 IEEE International Symposium on Intelligent Control, 2006 IEEE
  • Conference_Location
    Munich
  • Print_ISBN
    0-7803-9797-5
  • Electronic_ISBN
    0-7803-9797-5
  • Type

    conf

  • DOI
    10.1109/CACSD-CCA-ISIC.2006.4776644
  • Filename
    4776644