• DocumentCode
    3602796
  • Title

    Enabling Adaptive High-Frame-Rate Video Streaming in Mobile Cloud Gaming Applications

  • Author

    Jiyan Wu ; Chau Yuen ; Ngai-Man Cheung ; Junliang Chen ; Chang Wen Chen

  • Author_Institution
    Eng. Product Dev. Pillar, Singapore Univ. of Technol. & Design, Singapore, Singapore
  • Volume
    25
  • Issue
    12
  • fYear
    2015
  • Firstpage
    1988
  • Lastpage
    2001
  • Abstract
    High-frame-rate (HFR) video is emerging in popular gaming applications to enhance the smooth experience perceived by end users. However, it is challenging to guarantee the delivery quality of HFR video in mobile cloud gaming scenarios because of the high transmission rate and limited wireless resources. To address this critical problem, we develop a novel transmission scheduling framework dubbed AdaPtive HFR vIdeo Streaming (APHIS). The term adaptive indicates this scheme´s capability in dynamically adjusting the video traffic load and forward error correction (FEC) coding. First, we propose an online video frame selection algorithm to minimize the total distortion based on the network status, input video data, and delay constraint. Second, we introduce an unequal FEC coding scheme to provide differentiated protection for Intra (I) and Predicted (P) frames with low-latency cost. The proposed APHIS framework is able to appropriately filter video frames and adjust data protection levels to optimize the quality of HFR video streaming. We conduct extensive emulations in Exata involving HFR video encoded with H.264 codec. Experimental results show that APHIS outperforms the reference transmission schemes in terms of video peak signal-to-noise ratio, end-to-end delay, and goodput. Therefore, we recommend APHIS for delivering HFR video streaming in mobile cloud gaming systems.
  • Keywords
    cloud computing; computer games; data protection; video coding; video streaming; APHIS; APHIS framework; Exata; FEC coding scheme; H.264 codec; HFR video encoding; HFR video quality; HFR video streaming; adaptive HFR vIdeo streaming; adaptive high-frame-rate video streaming; data protection; delay constraint; differentiated protection; end-to-end delay; forward error correction coding; goodput; intra frames; low-latency cost; mobile cloud gaming applications; online video frame selection algorithm; predicted frames; transmission rate; transmission scheduling framework; video frames; video peak signal-to-noise ratio; video traffic load; wireless resources; Bandwidth; Cloud computing; Distortion; Forward error correction; Packet loss; Streaming media; Video coding; Forward error correction (FEC); High frame rate video; forward error correction; high-frame-rate (HFR) video; mobile cloud gaming; unequal error protection; video frame selection;
  • fLanguage
    English
  • Journal_Title
    Circuits and Systems for Video Technology, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1051-8215
  • Type

    jour

  • DOI
    10.1109/TCSVT.2015.2441412
  • Filename
    7118144