• DocumentCode
    3743815
  • Title

    Utility-optimal dynamic rate allocation under average end-to-end delay requirements

  • Author

    Mohammad H. Hajiesmaili;Mohammad Sadegh Talebi;Ahmad Khonsari

  • Author_Institution
    Institute of Network Coding, The Chinese University of Hong Kong (CUHK), Sha Tin, N.T., Hong Kong
  • fYear
    2015
  • Firstpage
    4842
  • Lastpage
    4847
  • Abstract
    QoS-aware networking applications such as real-time streaming and video surveillance systems require nearly fixed average end-to-end delay over long periods to communicate efficiently, although may tolerate some delay variations in short periods. This variability exhibits complex dynamics that makes rate control of such applications a formidable task. This paper addresses rate allocation for heterogeneous QoS-aware applications that preserves the long-term average end-to-end delay constraint while, similar to Dynamic Network Utility Maximization (DNUM), strives to achieve the maximum network utility aggregated over a fixed time interval. Since capturing temporal dynamics in QoS requirements of sources is allowed in our system model, we incorporate a novel time-coupling constraint in which delay-sensitivity of sources is considered such that a certain end-to-end average delay for each source over a pre-specified time interval is satisfied. We propose DA-DNUM algorithm, as a dual-based solution, which allocates source rates for the next time interval in a distributed fashion, given the knowledge of network parameters in advance. Through numerical experiments, we show that DA-DNUM gains higher average link utilization and a wider range of feasible scenarios in comparison with the best, to our knowledge, rate control schemes that may guarantee such constraints on delay.
  • Keywords
    "Delays","Resource management","Quality of service","Streaming media","Face","Routing","Linear programming"
  • Publisher
    ieee
  • Conference_Titel
    Decision and Control (CDC), 2015 IEEE 54th Annual Conference on
  • Type

    conf

  • DOI
    10.1109/CDC.2015.7402975
  • Filename
    7402975