• DocumentCode
    3570570
  • Title

    Communication-efficient multi-view keyframe extraction in distributed video sensors

  • Author

    Shun-Hsing Ou ; Yu-Chen Lu ; Jui-Pin Wang ; Shao-Yi Chien ; Shou-De Lin ; Mi-Yen Yeti ; Chia-Han Lee ; Gibbons, Phillip B. ; Somayazulu, V. Srinivasa ; Yen-Kuang Chen

  • Author_Institution
    Dept. of Electr. Eng., Nat. Taiwan Univ., Taipei, Taiwan
  • fYear
    2014
  • Firstpage
    13
  • Lastpage
    16
  • Abstract
    Video sensors are widely used in many applications such as security monitoring and home care. However, the growth of the number of sensors makes it impractical to stream all videos back to a central server for further processing, due to communication bandwidth and server storage constraints. Multi-view video summarization allows us to discard redundant data in the video streams taken by a group of sensors. All prior multi-view summarization methods, however, process video data in an off-line and centralized manner, which means that all videos are still required to be streamed back to the server before conducting the summarization. This paper proposes an on-line, distributed multi-view summarization system, which integrates the ideas of Maximal Marginal Relevance (MMR) and MS-Wave, a bandwidth-efficient distributed algorithm for finding k-nearest-neighbors and k-farthest-neighbors. Empirical studies show that our proposed system can discard redundant videos and keep important keyframes as effectively as centralized approaches, while transmitting only 1/6 to 1/3 as much data.
  • Keywords
    distributed algorithms; feature extraction; image sensors; video signal processing; video streaming; MS-Wave; bandwidth-efficient distributed algorithm; communication bandwidth constraint; communication-efficient multiview keyframe extraction; distributed multiview summarization system; distributed video sensors; home care; k-farthest-neighbors; k-nearest-neighbors; maximal marginal relevance; multiview video summarization; security monitoring; server storage constraint; video data process; video streams; Bandwidth; Cameras; Educational institutions; Sensors; Servers; Streaming media; Visualization;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Visual Communications and Image Processing Conference, 2014 IEEE
  • Type

    conf

  • DOI
    10.1109/VCIP.2014.7051492
  • Filename
    7051492