• DocumentCode
    941075
  • Title

    Downlink Wireless Packet Scheduling with Deadlines

  • Author

    Dua, Aditya ; Bambos, Nicholas

  • Author_Institution
    Qualcomm Inc., Campbell
  • Volume
    6
  • Issue
    12
  • fYear
    2007
  • Firstpage
    1410
  • Lastpage
    1425
  • Abstract
    Next-generation cellular wireless communication networks aim to provide a variety of quality-of-service (QoS)-sensitive packet-based services to downlink users. Included among these are real-time multimedia services, which have stringent delay requirements. Downlink packet scheduling at the base station plays a key role in efficiently allocating system resources to meet the desired level of QoS for various users. In this paper, we employ dynamic programming (DP) to study the design of a downlink packet scheduler capable of supporting real-time multimedia applications. Under well-justified modeling reductions, we extensively characterize structural properties of the optimal control associated with the DP problem. We leverage intuition gained from these properties to propose a heuristic scheduling policy, namely, Channel-Aware Earliest Due Date (CA-EDD), which is based on a "quasi- static" approach to scheduling. The per-time-slot implementation complexity of CA-EDD is only O(K) for a system with K downlink users. Experimental results show that CA-EDD delivers up to 50 percent of performance gains over benchmark schedulers. CA-EDD achieves these performance gains by using channel and deadline information in conjunction with application layer information (relative importance of packets) in a systematic and unified way for scheduling.
  • Keywords
    cellular radio; dynamic programming; multimedia communication; optimal control; packet switching; quality of service; resource allocation; scheduling; CA-EDD; base station; channel-aware earliest due date; deadline information; downlink wireless packet scheduling; dynamic programming; heuristic scheduling policy; next-generation cellular wireless communication; optimal control; per-time-slot implementation complexity; quality-of-service; real-time multimedia services; resource allotation; Base stations; Cellular networks; Delay; Downlink; Next generation networking; Performance gain; Quality of service; Resource management; Scheduling algorithm; Wireless communication; Wireless systems; cross-layer design; dynamic programming (DP); multimedia communication; packet scheduling; quality of service (QoS);
  • fLanguage
    English
  • Journal_Title
    Mobile Computing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1536-1233
  • Type

    jour

  • DOI
    10.1109/TMC.2007.1055
  • Filename
    4358273