• DocumentCode
    77643
  • Title

    Optimizing Constrained-Environment Redirected Walking Instructions Using Search Techniques

  • Author

    Zmuda, Michael A. ; Wonser, J.L. ; Bachmann, Eric R. ; Hodgson, Eric

  • Author_Institution
    Dept. of Comput. Sci. & Software Eng., Miami Univ., Oxford, OH, USA
  • Volume
    19
  • Issue
    11
  • fYear
    2013
  • fDate
    Nov. 2013
  • Firstpage
    1872
  • Lastpage
    1884
  • Abstract
    A goal of redirected walking (RDW) is to allow large virtual worlds to be explored within small tracking areas. Generalized steering algorithms, such as steer-to-center, simply move the user toward locations that are considered to be collision free in most cases. The algorithm developed here, FORCE, identifies collision-free paths by using a map of the tracking area´s shape and obstacles, in addition to a multistep, probabilistic prediction of the user´s virtual path through a known virtual environment. In the present implementation, the path predictions describe a user´s possible movements through a virtual store with aisles. Based on both the user´s physical and virtual location / orientation, a search-based optimization technique identifies the optimal steering instruction given the possible user paths. Path prediction uses the map of the virtual world; consequently, the search may propose steering instructions that put the user close to walls if the user´s future actions eventually lead away from the wall. Results from both simulated and real users are presented. FORCE identifies collision-free paths in 55.0 percent of the starting conditions compared to 46.1 percent for generalized methods. When considering only the conditions that result in different outcomes, redirection based on FORCE produces collision-free path 94.5 percent of the time.
  • Keywords
    collision avoidance; gait analysis; search problems; virtual reality; FORCE algorithm; RDW; aisles; collision-free paths; constrained-environment redirected walking instruction optimization; fully optimized redirected walking for constrained environments; generalized steering algorithms; optimal steering instruction; probabilistic prediction; search-based optimization technique; steer-to-center; tracking area obstacles; tracking area shape; tracking areas; user physical orientation; user virtual location; virtual environment; virtual store; Cameras; Force; Legged locomotion; Optimization; Probabilistic logic; Tracking; Virtual environments; Backtracking; motion compression; redirected walking; virtual reality; Adult; Algorithms; Computer Graphics; Computer Simulation; Environment; Humans; Imaging, Three-Dimensional; Male; 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.2013.88
  • Filename
    6520845