• DocumentCode
    3488406
  • Title

    Power-aware, bandwidth-aware and video-quality-aware cooperative routing algorithm for 3D video transmission in wireless networks

  • Author

    Yen, Hong-Hsu

  • Author_Institution
    Dept. of Inf. Manage., Shih-Hsin Univ., Taipei, Taiwan
  • fYear
    2011
  • fDate
    23-26 Aug. 2011
  • Firstpage
    470
  • Lastpage
    475
  • Abstract
    3D video transport methods have been the most intriguing and interesting research topic due to the recent popular 3D movie and 3DTV. Basically, 3D video stream is different from the 2D video stream that requires additional video streams to create 3D viewing experience. These additional video streams require significant transmission bandwidth so that it requires large bandwidth requirement for the whole 3D video stream. Due to the limited frequency spectrum in wireless networks, it is difficult to transmit the full 3D video stream in one wireless channel. Besides limited frequency spectrum, power efficient transmission is also another important goal in wireless networks. How to successfully meeting the bandwidth demands and in the same time to minimize the total transmission power is an interesting and challenging problem. One possible way is to bifurcate the 3D video stream into multiple 2D video streams and transmit them in separate routing path and then combined at the destination node. Via this cooperative routing strategy, there would be smaller bandwidth requirement at each stream so that it is possible to reduce the transmission radius of the transmitter node and in the same time to have good signal quality to decode the received video. This problem is a challenging cross-layer design problem to simultaneously consider the video quality in the application layer, cooperative routing in the network layer and the SNR aware power control in the physical layer. In this paper, by leveraging on of the multi-view nature of the 3D video, I propose a novel power-aware, bandwidth aware and video quality aware cooperative scheme, named IBAIP algorithm, to bifurcate and route the 3D video stream to the destination node. According to the computational experiments, the proposed IBAIP algorithm outperforms other heuristics under all tested cases.
  • Keywords
    bandwidth allocation; decoding; power control; telecommunication network routing; video streaming; wireless channels; 2D video stream; 3D movie; 3D video stream; 3D video transmission; 3D video transport method; 3DTV; IBAIP algorithm; SNR aware power control; bandwidth-aware cooperative routing algorithm; cross-layer design problem; frequency spectrum; power efficient transmission; power-aware cooperative routing algorithm; transmitter node; video decoding; video-quality-aware cooperative routing algorithm; wireless channel; wireless network; Bandwidth; Receivers; Routing; Signal to noise ratio; Streaming media; Three dimensional displays; Wireless networks; 3D video transmission; Bandwidth QoS; SNR-aware power control; Wireless networks; video-quality-aware transmission;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Communications, Computers and Signal Processing (PacRim), 2011 IEEE Pacific Rim Conference on
  • Conference_Location
    Victoria, BC
  • ISSN
    1555-5798
  • Print_ISBN
    978-1-4577-0252-5
  • Electronic_ISBN
    1555-5798
  • Type

    conf

  • DOI
    10.1109/PACRIM.2011.6032939
  • Filename
    6032939