• DocumentCode
    2701321
  • Title

    Kinematic analysis of periodic continuous gaits for a bio-mimetic walking robot

  • Author

    Asif, Umar ; Iqbal, Javaid ; Khan, M. Ajmal

  • Author_Institution
    Nat. Univ. of Sci. & Technol. (NUST), Islamabad, Pakistan
  • fYear
    2011
  • fDate
    1-5 Nov. 2011
  • Firstpage
    80
  • Lastpage
    85
  • Abstract
    This paper delivers a study on the motion analysis of a walking robot through dynamic simulation of biologically inspired walking gaits. We described a simple method of gait generation which enabled the robot to configure its pose at different orientations with adaptive leg stroke and stride lengths in our earlier work [12]. After having described a suitable gait generation method in [12], we now aim to simulate and review three different biologically inspired gaits namely, tripod gait, ripple gait and wave gait in terms of their unique leg sequential motions and kinematic characteristics. The simulation model is executed on an actual prototype robot with onboard sensors to draw a comparative analysis between the simulation and the actual system results. Finally, the paper concludes the significance of the proposed simulation setup for developing novel methods of gait generation in legged mobile robots.
  • Keywords
    legged locomotion; robot kinematics; sensors; adaptive leg stroke; bio-mimetic walking robot; biologically inspired walking gaits; dynamic simulation; gait generation method; kinematic analysis; kinematic characteristics; leg sequential motions; legged mobile robots; motion analysis; periodic continuous gaits; ripple gait; sensors; stride lengths; tripod gait; wave gait; Biological system modeling; Joints; Kinematics; Legged locomotion; Robot kinematics; Sensors; Hexapod Walking Gaits; Legged Locomotion; Modeling and Simulation; Motion Planning; SimMechanics;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Safety, Security, and Rescue Robotics (SSRR), 2011 IEEE International Symposium on
  • Conference_Location
    Kyoto
  • Print_ISBN
    978-1-61284-770-2
  • Type

    conf

  • DOI
    10.1109/SSRR.2011.6106784
  • Filename
    6106784