• DocumentCode
    3526364
  • Title

    Closed-form evaluation of area under the ROC of cooperative relay-based energy detection in cognitive radio networks

  • Author

    Olabiyi, O. ; Annamalai, A.

  • Author_Institution
    Dept. of Electr. & Comput. Eng., Prairie View A&M Univ., Prairie View, TX, USA
  • fYear
    2012
  • fDate
    Jan. 30 2012-Feb. 2 2012
  • Firstpage
    1103
  • Lastpage
    1107
  • Abstract
    In this article, we develop a closed form evaluation of the area under receiver operating characteristics (ROC) curve (AUC) when employed in the analysis of cooperative amplify-and-forward (CAF) relay-based energy detection. The developed analytical expression for AUC results into finite kth order derivative of the moment generating function of the end-to-end signal-to-noise ratio. The resulting closed-form expressions can be easily generalized across different fading channels and multi-relay system. We first consider a single amplify-and-forward (AF) relay based sensing and later extend the framework to multi-relay system. Both options of maximum ration combining (MRC) and square-law combining are analysed. We found out that direct sensing performs better than single relay sensing under certain scenario. However, the sensing performance is greatly enhanced when both direct and relay based sensing are combined to form a CAF relay detection system. Also, we show that MRC CAF relay sensing outperforms their corresponding SLC CAF relay sensing.
  • Keywords
    amplify and forward communication; cognitive radio; cooperative communication; fading channels; sensors; closed-form evaluation; cognitive radio networks; cooperative amplify-and-forward relay-based energy detection; direct sensing; end-to-end signal-to-noise ratio; fading channels; finite kth order derivative; maximum ration combining; moment generating function; multirelay system; receiver operating characteristics curve; single relay sensing; square-law combining; Conferences; Wireless communication; Cognitive radio; Cooperative amplify-and-forward; Energy detection; Fading channels; Maximum selection combining; Sensing; Square-law selection;
  • fLanguage
    English
  • Publisher
    ieee
  • Conference_Titel
    Computing, Networking and Communications (ICNC), 2012 International Conference on
  • Conference_Location
    Maui, HI
  • Print_ISBN
    978-1-4673-0008-7
  • Electronic_ISBN
    978-1-4673-0723-9
  • Type

    conf

  • DOI
    10.1109/ICCNC.2012.6167378
  • Filename
    6167378