• DocumentCode
    1517605
  • Title

    Velocity-Dependent Dynamic Curvature Gain for Redirected Walking

  • Author

    Neth, Christian T. ; Souman, Jan L. ; Engel, David ; Kloos, Uwe ; Bülthoff, Heinrich H. ; Mohler, Betty J.

  • Author_Institution
    Max Planck Inst. for Biol. Cybern., Tubingen, Germany
  • Volume
    18
  • Issue
    7
  • fYear
    2012
  • fDate
    7/1/2012 12:00:00 AM
  • Firstpage
    1041
  • Lastpage
    1052
  • Abstract
    Redirected walking techniques allow people to walk in a larger virtual space than the physical extents of the laboratory. We describe two experiments conducted to investigate human sensitivity to walking on a curved path and to validate a new redirected walking technique. In a psychophysical experiment, we found that sensitivity to walking on a curved path was significantly lower for slower walking speeds (radius of 10 m versus 22 m). In an applied study, we investigated the influence of a velocity-dependent dynamic gain controller and an avatar controller on the average distance that participants were able to freely walk before needing to be reoriented. The mean walked distance was significantly greater in the dynamic gain controller condition, as compared to the static controller (22 m versus 15 m). Our results demonstrate that perceptually motivated dynamic redirected walking techniques, in combination with reorientation techniques, allow for unaided exploration of a large virtual city model.
  • Keywords
    avatars; gain control; gait analysis; psychology; avatar controller; curved path; dynamic gain controller condition; human walking sensitivity; psychophysical experiment; redirected walking techniques; reorientation techniques; static controller; velocity-dependent dynamic curvature gain; velocity-dependent dynamic gain controller; virtual city model; virtual space; Atmospheric measurements; Games; Legged locomotion; Particle measurements; Sensitivity; Trajectory; Virtual environments; Virtual reality; avatars.; curvature sensitivity; redirected walking; virtual locomotion; Adult; Algorithms; Analysis of Variance; Computer Graphics; Female; Humans; Male; Middle Aged; Orientation; User-Computer Interface; Walking;
  • fLanguage
    English
  • Journal_Title
    Visualization and Computer Graphics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1077-2626
  • Type

    jour

  • DOI
    10.1109/TVCG.2011.275
  • Filename
    6200791