• DocumentCode
    3118303
  • Title

    A fast-CSMA based distributed scheduling algorithm under SINR model

  • Author

    Lakshminarayana, Subhash ; Li, Bin ; Assaad, Mohamad ; Eryilmaz, Atilla ; Debbah, Mérouane

  • fYear
    2012
  • fDate
    1-6 July 2012
  • Firstpage
    1598
  • Lastpage
    1602
  • Abstract
    There has been substantial interest over the last decade in developing low complexity decentralized scheduling algorithms in wireless networks. In this context, the queue-length based Carrier Sense Multiple Access (CSMA) scheduling algorithms have attracted significant attention because of their attractive throughput guarantees. However, the CSMA results rely on the mixing of the underlying Markov chain and their performance under fading channel states is unknown. In this work, we formulate a partially decentralized randomized scheduling algorithm for a two transmitter receiver pair set up and investigate its stability properties. Our work is based on the Fast-CSMA (FCSMA) algorithm first developed in [1] and we extend its results to a signal to interference noise ratio (SINR) based interference model in which one or more transmitters can transmit simultaneously while causing interference to the other. In order to improve the performance of the system, we split the traffic arriving at the transmitter into schedule based queues and combine it with the FCSMA based scheduling algorithm. We theoretically examine the performance of our algorithm in both non-fading and fading environment and characterize the set of arrival rates which can be stabilized by our proposed algorithm.
  • Keywords
    Markov processes; carrier sense multiple access; fading channels; interference (signal); radio receivers; radio transmitters; scheduling; CSMA based distributed scheduling algorithm; Markov chain; SINR model; decentralized scheduling algorithm; fading channel states; fast CSMA; partially decentralized randomized scheduling; queue length based carrier sense multiple access; signal to interference noise ratio based interference model; throughput guarantees; transmitter receiver pair; wireless networks; Fading; Heuristic algorithms; Interference; Scheduling algorithms; Signal to noise ratio; Stability analysis; Transmitters;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Information Theory Proceedings (ISIT), 2012 IEEE International Symposium on
  • Conference_Location
    Cambridge, MA
  • ISSN
    2157-8095
  • Print_ISBN
    978-1-4673-2580-6
  • Electronic_ISBN
    2157-8095
  • Type

    conf

  • DOI
    10.1109/ISIT.2012.6283544
  • Filename
    6283544