• DocumentCode
    759427
  • Title

    Control Architecture for Human–Robot Integration: Application to a Robotic Wheelchair

  • Author

    Galindo, Cipriano ; Gonzalez, Javier ; Fernández-Madrigal, Juan-Antonio

  • Author_Institution
    Syst. Eng. & Autom. Dept., Malaga Univ.
  • Volume
    36
  • Issue
    5
  • fYear
    2006
  • Firstpage
    1053
  • Lastpage
    1067
  • Abstract
    Completely autonomous performance of a mobile robot within noncontrolled and dynamic environments is not possible yet due to different reasons including environment uncertainty, sensor/software robustness, limited robotic abilities, etc. But in assistant applications in which a human is always present, she/he can make up for the lack of robot autonomy by helping it when needed. In this paper, the authors propose human-robot integration as a mechanism to augment/improve the robot autonomy in daily scenarios. Through the human-robot-integration concept, the authors take a further step in the typical human-robot relation, since they consider her/him as a constituent part of the human-robot system, which takes full advantage of the sum of their abilities. In order to materialize this human integration into the system, they present a control architecture, called architecture for human-robot integration, which enables her/him from a high decisional level, i.e., deliberating a plan, to a physical low level, i.e., opening a door. The presented control architecture has been implemented to test the human-robot integration on a real robotic application. In particular, several real experiences have been conducted on a robotic wheelchair aimed to provide mobility to elderly people
  • Keywords
    geriatrics; handicapped aids; man-machine systems; mobile robots; service robots; elderly people mobility support; human-robot integration application; human-robot relation; human-robot system; mobile robot; robot autonomy; robotic control architecture; robotic wheelchair; Application software; Computer architecture; Control systems; Humans; Mobile robots; Robot sensing systems; Robustness; Software performance; Uncertainty; Wheelchairs; Human–robot integration; mobile robotics; robotic architecture;
  • fLanguage
    English
  • Journal_Title
    Systems, Man, and Cybernetics, Part B: Cybernetics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1083-4419
  • Type

    jour

  • DOI
    10.1109/TSMCB.2006.874131
  • Filename
    1703648