• DocumentCode
    1755406
  • Title

    Depth-Based Texture Coding in AVC-Compatible 3D Video Coding

  • Author

    Jin Young Lee ; Jian-Liang Lin ; Yi-Wen Chen ; Yu-Lin Chang ; Kovliga, Igor ; Fartukov, Alexey ; Mishurovskiy, Mikhail ; Ho-Cheon Wey ; Yu-Wen Huang ; Shaw-Min Lei

  • Author_Institution
    Samsung Electron., Suwon, South Korea
  • Volume
    25
  • Issue
    8
  • fYear
    2015
  • fDate
    Aug. 2015
  • Firstpage
    1347
  • Lastpage
    1361
  • Abstract
    The target of 3D video coding is to compress Multiview Video plus Depth (MVD) format data, which consist of a texture image and its corresponding depth map. In the MVD format, the depth map plays an important role for successful services in 3D video applications, because it enables the user to experience 3D by generating arbitrary intermediate views. The depth map has a strong correlation with its associated texture data, so it can be utilized to improve texture coding efficiency. This paper introduces a novel and efficient depth-based texture coding scheme. It includes depth-based motion vector prediction, block-based view synthesis prediction, and adaptive luminance compensation, which were adopted in an AVC-compatible 3D video coding standard. Simulation results demonstrate that the proposed scheme reduces the total coding bitrates of texture and depth by 19.06% for the coded PSNR and 17.01% for the synthesized PSNR in a P-I-P view prediction structure, respectively.
  • Keywords
    brightness; data compression; image motion analysis; image texture; video coding; AVC-compatible 3D video coding; MVD format data; P-I-P view prediction; PSNR; adaptive luminance compensation; block-based view synthesis prediction; depth based texture coding; depth-based motion vector prediction; image texture; multiview video plus depth format data; Cameras; Decoding; Encoding; Image coding; Three-dimensional displays; Vectors; Video coding; AVC-compatible 3D video coding (3D-AVC); Adaptive luminance compensation (ALC); adaptive luminance compensation (ALC); block-based view synthesis prediction (BVSP); depth-based motion vector prediction (DMVP);
  • fLanguage
    English
  • Journal_Title
    Circuits and Systems for Video Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1051-8215
  • Type

    jour

  • DOI
    10.1109/TCSVT.2014.2380191
  • Filename
    6983609