• DocumentCode
    1206497
  • Title

    A switching command-based whole-body operation method for humanoid robots

  • Author

    Neo, Ee Sian ; YOKOI, Kazuhito ; Kajita, Shuuji ; Kanehiro, Fumio ; Tanie, Kazuo

  • Author_Institution
    Nat. Inst. of Adv. Ind. Sci. & Technol., Intelligent Syst. Res. Inst., Ibaraki, Japan
  • Volume
    10
  • Issue
    5
  • fYear
    2005
  • Firstpage
    546
  • Lastpage
    559
  • Abstract
    This paper introduces a switching command-based whole-body operation method for humanoid robots. Humanoid robots are biped machines possessing multiple degrees of freedom (DOF). Due to the complexity of their multi-DOF structure, and the difficulty in maintaining postural stability, whole-body operation of humanoid robots is fundamentally different from traditional fixed-base manipulators or stable-base mobile manipulators. By studying the shifts in locus of attention between human body joints during task execution, we developed a switching command-based operation method that allows the operator to select only the necessary points of the humanoid robot´s body for manipulation. Whole-body motion satisfying the desired movements of the selected points is generated using an inverse-kinematics motion generation scheme. This switching operation method enables flexible whole-body operation of humanoid robots using simple input devices. The proposed whole-body operation method is implemented as a teleoperation system using two 3-DOF joysticks to operate a 30-DOF humanoid robot (HRP-1S) developed in the Humanoid Robotics Project (HRP) of the Ministry of Economy, Trade, and Industry of Japan. Experiments teleoperating HRP-1S confirmed the effectiveness of our method.
  • Keywords
    humanoid robots; motion control; robot kinematics; telerobotics; time-varying systems; flexible whole-body teleoperation; humanoid robots; inverse-kinematics motion generation; switching command-based whole-body operation; teleoperation system; Artificial intelligence; Humanoid robots; Humans; Intelligent robots; Intelligent systems; Joints; Manipulators; Mobile robots; Service robots; Stability; Humanoid robot; joysticks; whole-body teleoperation;
  • fLanguage
    English
  • Journal_Title
    Mechatronics, IEEE/ASME Transactions on
  • Publisher
    ieee
  • ISSN
    1083-4435
  • Type

    jour

  • DOI
    10.1109/TMECH.2005.856112
  • Filename
    1525021