• DocumentCode
    716693
  • Title

    Intuitive visual teleoperation for UGVs using free-look augmented reality displays

  • Author

    Kruckel, Kai ; Nolden, Florian ; Ferrein, Alexander ; Scholl, Ingrid

  • Author_Institution
    Mobile Autonomous Syst. & Cognitive Robot. Inst., FH Aachen Univ. of Appl. Sci., Aachen, Germany
  • fYear
    2015
  • fDate
    26-30 May 2015
  • Firstpage
    4412
  • Lastpage
    4417
  • Abstract
    For numerous real-world applications teleoperated unmanned guided vehicles (UGVs) can quite successfully assist a human in fulfilling her mission objectives. It is important for the specialists to get an overview of the site quickly and with as intuitive means as possible. Our approach to an intuitive human-machine interface for visually teleoperating UGVs makes use of a spherical camera in combination with the Virtual Reality Head-Mounted Display (HMD) Oculus Rift. The Oculus Rift is equipped with an inertial measurement unit to track the teleoperator´s head orientation. With this orientation information, the current field of view is synthesized from the panoramic image coming from the spherical camera allowing a free look for the operator. In this paper, we present the hardware setup and the software system of our free-look HMD approach on our UGV. Our approach allows for multi-view, i.e, several operators can collaborate on a given task. What is more, we augment the spherical image with heading and orientation information of the robot as well as of other viewers. Our preliminary evaluation with a number of untrained user suggests that our free-look HMD offers an intuitive multi-view human-machine interface for teleoperating UGVs.
  • Keywords
    augmented reality; control engineering computing; man-machine systems; remotely operated vehicles; UGV; free-look HMD approach; free-look augmented reality displays; hardware setup; head orientation; inertial measurement; intuitive visual teleoperation; mission objectives; multiview human-machine interface; oculus rift; orientation information; panoramic image; software system; spherical camera; unmanned guided vehicles; virtual reality head-mounted display; Cameras; Robot vision systems; Teleoperators; Three-dimensional displays;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Robotics and Automation (ICRA), 2015 IEEE International Conference on
  • Conference_Location
    Seattle, WA
  • Type

    conf

  • DOI
    10.1109/ICRA.2015.7139809
  • Filename
    7139809