• DocumentCode
    172881
  • Title

    An architecture for visual motion perception of a surveillance-based autonomous robot

  • Author

    Maykol Pinto, Andry ; Costa, Paulo G. ; Moreira, A. Paulo

  • Author_Institution
    Fac. of Eng., Univ. of Porto, Porto, Portugal
  • fYear
    2014
  • fDate
    14-15 May 2014
  • Firstpage
    205
  • Lastpage
    211
  • Abstract
    This research presents an innovative mobile robotic system designed for active surveillance operations. This mobile robot moves along a rail and is equipped with a monocular camera. Thus, it enhances the surveillance capability when compared to conventional systems (mainly composed by multiple static cameras). In addition, the paper proposes a technique for multi-object tracking called MTMP (Multi-Tracking of Motion Profiles). The MTMP resorts to a formulation based on the Kalman filter and tracks several moving objects using motion profiles. A motion profile is characterized by the dominant flow vector and is computed using the optical flow signature with removal of outliers. A similarity measure based on the Mahalanobis distance is used by the MTMP for associating the moving objects over frames. The experiments conducted in realistic environments have proved that the static perception mode of the proposed robot is able to detect and track multiple moving objects in a short period of time and without using specialized computers. In addition, the MTMP exhibits a good computational performance since it takes less than 5 milliseconds to compute. Therefore, results show that the estimation of motion profiles is suitable for analyzing motion on image sequences.
  • Keywords
    Kalman filters; image sequences; mobile robots; motion estimation; object tracking; surveillance; vectors; Kalman filter; MTMP; Mahalanobis distance; active surveillance operations; dominant flow vector; image motion analysis; image sequences; mobile robotic system; monocular camera; motion profile estimation; moving object tracking; multiobject tracking; multitracking of motion profiles; optical flow signature; surveillance-based autonomous robot; visual motion perception; Cameras; Dynamics; Rails; Robot vision systems; Tracking;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Autonomous Robot Systems and Competitions (ICARSC), 2014 IEEE International Conference on
  • Conference_Location
    Espinho
  • Type

    conf

  • DOI
    10.1109/ICARSC.2014.6849787
  • Filename
    6849787