• DocumentCode
    1801849
  • Title

    Adaptive video streaming over whitespace: SVC for 3-Tiered spectrum sharing

  • Author

    Xiaoli Wang ; Jiasi Chen ; Dutta, Aveek ; Mung Chiang

  • Author_Institution
    Princeton Univ., Princeton, NJ, USA
  • fYear
    2015
  • fDate
    April 26 2015-May 1 2015
  • Firstpage
    28
  • Lastpage
    36
  • Abstract
    The recently proposed 3-Tier access model for Whitespace by the Federal Communications Commission (FCC) mandates certain classes of devices to share frequency bands in space and time. These devices are envisioned to be a heterogeneous mixture of licensed (Tier-1 and Tier-2) and unlicensed, opportunistic devices (Tier-3). The hierarchy in accessing the channel calls for superior adaptation of Tier-3 devices with varying spectral opportunity. While policies are being ratified for efficient sharing, it also calls for redesigning many common applications to adapt to this novel paradigm. In this paper, we focus on the ever-increasing demand for video streaming and present a methodology suitable for Tier-3 devices in the shared access model. Our analysis begins with a stress test of commonly adopted video streaming methods under the new sharing model. This is followed by the design of a robust MDP-based solution that proactively adapts to fast-varying channel conditions, providing better user quality of experience when compared to existing solutions, such as MPEG-DASH. We evaluate our solution on an experimental testbed and find that our MDP-based algorithm outperforms DASH, and partial information of Tier-2 dynamics improves video quality.
  • Keywords
    quality of experience; radio spectrum management; video coding; video streaming; 3-tier access model; 3-tiered spectrum sharing; SVC; adaptive video streaming method; frequency band sharing; robust MDP design; scalable video coding; tier-3 device; user quality of experience; video quality improvement; whitespace; Adaptation models; Heuristic algorithms; Quality assessment; Static VAr compensators; Streaming media; Throughput; Video recording;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Computer Communications (INFOCOM), 2015 IEEE Conference on
  • Conference_Location
    Kowloon
  • Type

    conf

  • DOI
    10.1109/INFOCOM.2015.7218364
  • Filename
    7218364