• DocumentCode
    142510
  • Title

    A fast egomotion estimation method based on visual feature tracking and Iterative Closest Point

  • Author

    Soonhac Hong ; Cang Ye

  • Author_Institution
    Dept. of Syst. Eng., Univ. of Arkansas at Little Rock, Little Rock, AR, USA
  • fYear
    2014
  • fDate
    7-9 April 2014
  • Firstpage
    114
  • Lastpage
    119
  • Abstract
    This paper presents a method to speed up ICP (Iterative Closest Point) refinement of the egomotion estimation of a visual tracker using a 3D time-of-flight camera-SwissRanger SR 4000. The ICP algorithm may be used to reduce the egomotion estimation error of a visual tracker in a feature-sparse environment. However, the ICP refinement is a computationally expensive. To address this problem, we propose a new ICP refinement method that uses 3D convex hull to reduce the number of data points for ICP computation and thus its computational time. The 3D convex hull is generated using the visual feature correspondences between two camera views. It represents an approximate overlap between the two views. Using the data points within this region for ICP refinement does not affect the ICP refinement results but its ICP computational time. The efficacy of the proposed method is validated with multiple datasets collected in feature-sparse environments and from real-world navigation scenarios.
  • Keywords
    cameras; feature extraction; image motion analysis; iterative methods; object tracking; pose estimation; 3D convex hull; 3D time-of-flight camera; ICP algorithm; ICP computation; ICP refinement method; SwissRanger SR 4000; camera views; data points; egomotion estimation error reduction; fast egomotion estimation method; feature-sparse environment; iterative closest point; visual feature correspondences; visual feature tracking; Iterative closest point algorithm; Motion estimation; Navigation; Three-dimensional displays; Visualization; Iterative Closest Point; egomotion estimation; visual tracker;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Networking, Sensing and Control (ICNSC), 2014 IEEE 11th International Conference on
  • Conference_Location
    Miami, FL
  • Type

    conf

  • DOI
    10.1109/ICNSC.2014.6819610
  • Filename
    6819610