• DocumentCode
    999216
  • Title

    Accurate Distortion Estimation and Optimal Bandwidth Allocation for Scalable H.264 Video Transmission Over MIMO Systems

  • Author

    Jubran, Mohammad K. ; Bansal, Manu ; Kondi, Lisimachos P. ; Grover, Rohan

  • Author_Institution
    Dept. of Electr. Eng., Birzeit Univ., Birzeit
  • Volume
    18
  • Issue
    1
  • fYear
    2009
  • Firstpage
    106
  • Lastpage
    116
  • Abstract
    In this paper, we propose an optimal strategy for the transmission of scalable video over packet-based multiple-input multiple-output (MIMO) systems. The scalable extension of H.264/AVC that provides a combined temporal, quality and spatial scalability is used. For given channel conditions, we develop a method for the estimation of the distortion of the received video and propose different error concealment schemes. We show the accuracy of our distortion estimation algorithm in comparison with simulated wireless video transmission with packet errors. In the proposed MIMO system, we employ orthogonal space-time block codes (O-STBC) that guarantee independent transmission of different symbols within the block code. In the proposed constrained bandwidth allocation framework, we use the estimated end-to-end decoder distortion to optimally select the application layer parameters, i.e., quantization parameter (QP) and group of pictures (GOP) size, and physical layer parameters, i.e., rate-compatible turbo (RCPT) code rate and symbol constellation. Results show the substantial performance gain by using different symbol constellations across the scalable layers as compared to a fixed constellation.
  • Keywords
    bandwidth allocation; block codes; channel coding; video coding; video communication; H.264 video transmission; MIMO systems; distortion estimation; end-to-end decoder distortion estimation; error concealment schemes; group of pictures; optimal bandwidth allocation; orthogonal space-time block codes; quantization parameter; wireless video transmission; Distortion estimation; MIMO systems; Scalable H.264; optimal bandwidth allocation; wireless video; Algorithms; Artifacts; Computer Communication Networks; Data Compression; Image Enhancement; Image Interpretation, Computer-Assisted; Reproducibility of Results; Sensitivity and Specificity; Signal Processing, Computer-Assisted; Video Recording;
  • fLanguage
    English
  • Journal_Title
    Image Processing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1057-7149
  • Type

    jour

  • DOI
    10.1109/TIP.2008.2006600
  • Filename
    4682626