• DocumentCode
    1165863
  • Title

    A Distributed Channel Access Protocol for Ad Hoc Networks with Feedback Power Control

  • Author

    Naqvi, S. Hasan Raza ; Patnaik, L.M.

  • Author_Institution
    SiNett Semicond., Bangalore
  • Volume
    5
  • Issue
    10
  • fYear
    2006
  • Firstpage
    1448
  • Lastpage
    1459
  • Abstract
    Distributed power control schemes are extensively employed in the cellular networks and are capable of improving the capacity of the network. However, the power control schemes from the cellular networks suffer from performance degradation due to self and direct-interference and hidden-terminal problems when directly employed in ad hoc networks. Most of the existing channel reservation-based power control protocols for ad hoc networks employ incremental power allocation rather than global allocation of the power to the incoming links; thus, they may not effectively utilize the spatial frequency reuse in the network. This paper presents a distributed channel access protocol that couples the channel reservation and the iterative/global transmission power control schemes in ad hoc networks. The designed protocol considers the convergence problem of the global power control in ad hoc networks. The designed access criteria employ the local admission control based on the sufficient criteria for admissibility and global power control for balancing the SIR (signal to interference ratio) of the links. In the performance evaluation study of the designed protocol, an almost two-fold increase in the throughput and capacity is observed compared to the existing power-controlled protocol for ad hoc networks
  • Keywords
    access protocols; ad hoc networks; cellular radio; interference (signal); telecommunication channels; telecommunication congestion control; SIR; access criteria; ad hoc networks; cellular networks; channel reservation-based power control protocols; direct interference; distributed channel access protocol; distributed power control schemes; feedback power control; hidden-terminal problems; incremental power allocation; iterative-global transmission power control schemes; local admission control; performance degradation; signal-to-interference ratio; spatial frequency reuse; Access protocols; Ad hoc networks; Convergence; Couplings; Degradation; Feedback; Land mobile radio cellular systems; Power control; Radio spectrum management; Signal design; Wireless ad hoc networks; media access protocol design and analysis; power control; simulation.;
  • fLanguage
    English
  • Journal_Title
    Mobile Computing, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1536-1233
  • Type

    jour

  • DOI
    10.1109/TMC.2006.143
  • Filename
    1683792