• DocumentCode
    788283
  • Title

    Error-Resilient Video Encoding and Transmission in Multirate Wireless LANs

  • Author

    Argyriou, Antonios

  • Author_Institution
    Philips Res., Eindhoven
  • Volume
    10
  • Issue
    5
  • fYear
    2008
  • Firstpage
    691
  • Lastpage
    700
  • Abstract
    In this paper, we present a cross-layer approach for video transmission in wireless LANs that employs joint source and application-layer channel coding, together with rate adaptation at the wireless physical layer (PHY). While the purpose of adopting PHY rate adaptation in modern wireless LANs like the IEEE 802.11a/b is to maximize the throughput, in this paper we exploit this feature to increase the robustness of wireless video. More specifically, we investigate the impact of adapting the PHY transmission rate, thus changing the throughput and packet loss channel characteristics, on the rate-distortion performance of a transmitted video sequence. To evaluate the video quality at the decoder, we develop a cross-layer modeling framework that considers jointly the effect of application-layer joint source-channel coding (JSCC), error concealment, and the PHY transmission rate. The resulting models are used by an optimization algorithm that calculates the optimal JSCC allocation for each video frame, and PHY transmission rate for each outgoing transport packet. The comprehensive simulation results obtained with the H.264/AVC codec demonstrate considerable increase in the PSNR of the decoded video when compared with a system that employs separately JSCC and PHY rate adaptation. Furthermore, our performance analysis indicates that the optimal PHY transmission rate calculated by the proposed algorithm, can be significantly different when compared with rate adaptation algorithms that target throughput improvement.
  • Keywords
    channel coding; video coding; wireless LAN; H.264/AVC codec; PHY rate adaptation; PHY transmission rate; application-layer channel coding; application-layer joint source-channel coding; cross-layer modeling framework; error concealment; error-resilient transmission; error-resilient video encoding; multirate wireless LAN; optimization algorithm; packet loss channel characteristics; rate-distortion performance; source-layer channel coding; video quality; video sequences; wireless physical layer; Channel coding; Decoding; Encoding; Performance loss; Physical layer; Propagation losses; Rate-distortion; Robustness; Throughput; Wireless LAN; Cross-layer design; joint source-channel coding; rate-adaptive PHY; real-time video encoding; video streaming; wireless LAN;
  • fLanguage
    English
  • Journal_Title
    Multimedia, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1520-9210
  • Type

    jour

  • DOI
    10.1109/TMM.2008.922776
  • Filename
    4563440