• DocumentCode
    1318816
  • Title

    Image Recognition and Force Measurement Application in the Humanoid Robot Imitation

  • Author

    Liu, Hsin-Yu ; Wang, Wen-June ; Wang, Rong-Jyue ; Tung, Cheng-Wei ; Wang, Pei-Jui ; Chang, I-Ping

  • Author_Institution
    Dept. of Electr. Eng., Nat. Central Univ., Jhongli, Taiwan
  • Volume
    61
  • Issue
    1
  • fYear
    2012
  • Firstpage
    149
  • Lastpage
    161
  • Abstract
    This paper studies and implements motion imitation interaction between a humanoid robot and a human. To achieve the implementation, three main processes are required. The first is the human motion data acquisition; the second is the motion data modification; and the last is the ankle angle adjustment on the supporting foot (or feet) of the humanoid robot. In the human motion data acquisition, we use a webcam to recognize the 13 marks that are pasted on the human´s body and then calculate and record the relative positions of the marks for each motion into the motion database. In the motion data modification, the recorded motion data are modified by computer simulation to guarantee that the zero moment point of the robot is inside the stable region. Finally, based on the force sensor measurement on the soles of the robot, the ankle angles of the supporting foot (or feet) are adjusted such that the humanoid robot is capable of imitating the human motion with a balance status in real time. The experimental results demonstrate that the humanoid robot successfully imitates a series of human gymnastic motions.
  • Keywords
    force measurement; force sensors; fuzzy control; human-robot interaction; humanoid robots; image motion analysis; image recognition; mobile robots; Webcam; ankle angle adjustment; computer simulation; force sensor measurement; fuzzy control; human gymnastic motions; human motion data acquisition; humanoid robot imitation; image recognition; motion data modification; motion database; motion imitation interaction; Humanoid robots; Humans; Image color analysis; Robot kinematics; Robot sensing systems; Three dimensional displays; Force sensor; fuzzy control; humanoid robot; image processing; stability; zero moment point (ZMP);
  • fLanguage
    English
  • Journal_Title
    Instrumentation and Measurement, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    0018-9456
  • Type

    jour

  • DOI
    10.1109/TIM.2011.2161025
  • Filename
    6017116