• DocumentCode
    2546636
  • Title

    Configuration-based optimization for six degree-of-freedom haptic rendering using sphere-trees

  • Author

    Zhang, Xin ; Wang, Dangxiao ; Zhang, Yuru ; Xiao, Jing

  • Author_Institution
    State Key Lab. of Virtual Reality Technol. & Syst., Beihang Univ., Beijing, China
  • fYear
    2011
  • fDate
    25-30 Sept. 2011
  • Firstpage
    2602
  • Lastpage
    2607
  • Abstract
    This paper presents a novel constraint-based six degree-of-freedom (6-DoF) haptic rendering algorithm for simulating both contact forces and torques between interacting rigid bodies. We represent an object using a hierarchy of spheres, i.e., a sphere-tree. Such a representation allows fast detection of multiple contacts/collisions among objects and facilitates contact constraint formulation. Given a moving graphic tool as the avatar of the haptic tool in the virtual environment, we constrain its position and orientation, i.e., its six dimensional configuration, by solving a constrained optimization problem. The constraints in the 6-D configuration space (C-space) of the graphic tool is obtained and updated through on-line mapping of the non-penetration constraint between the spheres of the graphic tool and those of the other objects in the three dimensional physical space, based on the result of collision detection. The problem is further modeled as a quadratic programming problem and solved by classic active-set methods. Our algorithm has been implemented and interfaced with a 6-DoF Phantom Premium 3.0. We demonstrate its performance in dental surgery simulations involving complex, multi-contact virtual environments. Our method enables stable operations and realistic feel of haptic sensation.
  • Keywords
    haptic interfaces; quadratic programming; rendering (computer graphics); virtual reality; 6-DoF Phantom Premium 3.0; 6D configuration space; active-set method; collision detection; configuration-based optimization; constrained optimization problem; constraint-based six degree-of-freedom haptic rendering; contact constraint formulation; dental surgery simulations; moving graphic tool; multicontact virtual environment; nonpenetration constraint; quadratic programming problem; rigid bodies; sphere-trees; Dentistry; Force; Haptic interfaces; Optimization; Rendering (computer graphics); Teeth;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Intelligent Robots and Systems (IROS), 2011 IEEE/RSJ International Conference on
  • Conference_Location
    San Francisco, CA
  • ISSN
    2153-0858
  • Print_ISBN
    978-1-61284-454-1
  • Type

    conf

  • DOI
    10.1109/IROS.2011.6094713
  • Filename
    6094713