• DocumentCode
    62084
  • Title

    Efficient In-Band Spectrum Sensing Using Swarm Intelligence for Cognitive Radio Network

  • Author

    Rashid, Rozeha A. ; Bin Abdul Hamid, Abdul Hadi Fikri ; Fisal, Norsheila ; Syed-Yusof, Sharifah Kamilah ; Hosseini, Haleh ; Lo, Anthony ; Farzamnia, Ali

  • Author_Institution
    Centre of Excellence for Telecommun. Technol., Univ. Teknol. Malaysia, Johor Bahru, Malaysia
  • Volume
    38
  • Issue
    2
  • fYear
    2015
  • fDate
    Spring 2015
  • Firstpage
    106
  • Lastpage
    115
  • Abstract
    Spectrum sensing mechanisms enable cognitive radio networks to detect primary users (Upsi) and utilize spectrum holes for secondary user (SU) transmission. However, precise PU detection leads to longer sensing time and lower achievable throughput. In this paper, we propose a particle swarm optimization (PSO)-based scheme for an in-band local spectrum sensing to address the tradeoff between sensing time and throughput. Using methodological analysis, a fast convergence PSO (FC-PSO) scheme is derived by implementing a distribution-based stopping criterion subject to detection performance, optimization time, and SU gain. At the target probability of detection of at least 90%, the results show significant improvements of ~45% for sensing time, 70% for the probability of false alarm, and 12% for achievable throughput compared with nonoptimal sensing scheme at signal-to-noise ratio of 0 dB. FC-PSO also outperforms other optimization schemes in terms of convergence speed. The proposed scheme is proved to be an energy-efficient solution for practical implementation as it outperforms the other algorithms in terms of lower computational complexity as well as providing the best tradeoff values in meeting the objective function of sufficient opportunistic access for an SU under optimized sensing time for maximized throughput, while providing high protection to the PU.
  • Keywords
    cognitive radio; convergence; object detection; particle swarm optimisation; radio spectrum management; swarm intelligence; FC-PSO scheme; PU detection; SU gain; cognitive radio network; computational complexity; detection performance; distribution-based stopping criterion; efficient in-band spectrum sensing; false alarm; fast convergence PSO; methodological analysis; optimization time; particle swarm optimization; primary user; secondary user transmission; spectrum holes; sufficient opportunistic access; swarm intelligence; target detection probability; throughput maximisation; Computers; Convergence; Optimization; Particle swarm optimization; Sensors; Signal to noise ratio; Throughput; Cognitive radio (CR); particle swarm optimization (PSO); probability of detection; probability of false alarm; sensing time; throughput;
  • fLanguage
    English
  • Journal_Title
    Electrical and Computer Engineering, Canadian Journal of
  • Publisher
    ieee
  • ISSN
    0840-8688
  • Type

    jour

  • DOI
    10.1109/CJECE.2014.2378258
  • Filename
    7106032