• DocumentCode
    3588674
  • Title

    Achieving cost effective cloud video services via fine grained multicore scheduling

  • Author

    Hao-Che Kao ; Hao-Ping Kang ; Che-Rung Lee ; Kun-Hsien Lu ; Shu-Hsin Chang

  • Author_Institution
    Dept. of Comput. Sci., Nat. Tsing Hua Univ., Hsinchu, Taiwan
  • fYear
    2014
  • Firstpage
    471
  • Lastpage
    477
  • Abstract
    Cloud computing that possesses highly accessible and elastic computing resources perfectly matches the demands of video services, which employ massive storage and intensive computational power to store, transmit, compress, enhance, and analyze the videos, uploaded from commodity devices and surveillance cameras. However, most existing video processing programs are neither designed to run on parallel environments nor able to efficiently utilize the computational power of cloud platforms, which not only wastes the computing resources but also increases the cost of using cloud platforms. In this paper, we present three strategies to enhance the multicore utilization for video processing, namely producer-consumer model, intra-process overlapping, and inter-process overlapping. We experimented our strategies on a video enhancement program, which performs decoding, dehazing, and encoding, and the results showed the CPU utilization can be improved up to 31% for an 8 core instance, which can significantly reduce the cost in a long run.
  • Keywords
    cloud computing; data compression; decoding; image enhancement; processor scheduling; video cameras; video coding; CPU utilization; cloud computing; cloud platforms; commodity devices; cost effective cloud video services; cost reduction; elastic computing resources; fine grained multicore scheduling; inter-process overlapping; intra-process overlapping; massive storage; parallel environments; producer-consumer model; surveillance cameras; video decoding; video dehazing; video encoding; video enhancement program; video processing programs; Central Processing Unit; Cloud computing; Decoding; Encoding; Job shop scheduling; Multicore processing; Streaming media;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Parallel and Distributed Systems (ICPADS), 2014 20th IEEE International Conference on
  • Type

    conf

  • DOI
    10.1109/PADSW.2014.7097843
  • Filename
    7097843