• DocumentCode
    594984
  • Title

    3-D recovery of a non-rigid object from a single camera view by piecewise recovery and synthesis

  • Author

    Ishikawa, Seiichiro ; Joo Kooi Tan ; Hyoungseop Kim ; Ishikawa, Seiichiro

  • Author_Institution
    Kyushu Inst. of Technol., Iizuka, Japan
  • fYear
    2012
  • fDate
    11-15 Nov. 2012
  • Firstpage
    1443
  • Lastpage
    1446
  • Abstract
    This paper proposes a novel technique for 3-D recovery of a non-rigid object, such as a human in motion, from a single camera view. To achieve the 3-D recovery, the proposed technique performs segmentation of an object under deformation into respective parts which are regarded as rigid. For high accuracy segmentation, multi-stage learning and local subspace affinity are employed in this stage. Each part recovers its 3-D shape by applying the factorization method to it. This is the initial solution. The shape of each part is then refined by applying a quadratic model to the initial solution. The entire 3-D recovery of the object is finally performed using the common points among the segmented parts. The experiments employing a synthetic non-rigid object and real human motion data show effectiveness of the proposed technique.
  • Keywords
    cameras; image motion analysis; image segmentation; learning (artificial intelligence); object recognition; 3D nonrigid object recovery; 3D shape; factorization method; high accuracy segmentation; human motion; local subspace affinity; multistage learning; object segmentation technique; piecewise recovery; piecewise synthesis; quadratic model; real human motion data; single camera view; synthetic nonrigid object; Cameras; Computer vision; Deformable models; Humans; Motion segmentation; Optimization; Shape;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Pattern Recognition (ICPR), 2012 21st International Conference on
  • Conference_Location
    Tsukuba
  • ISSN
    1051-4651
  • Print_ISBN
    978-1-4673-2216-4
  • Type

    conf

  • Filename
    6460413