DocumentCode
1764605
Title
Performance Analysis of a Cognitive Radio Contention-Aware Channel Selection Algorithm
Author
Mesodiakaki, Agapi ; Adelantado, Ferran ; Alonso, Luis ; Verikoukis, Christos
Author_Institution
Signal Theor. & Commun. Dept., Tech. Univ. of Catalonia, Barcelona, Spain
Volume
64
Issue
5
fYear
2015
fDate
42125
Firstpage
1958
Lastpage
1972
Abstract
In cognitive radio (CR) networks, due to the ever increasing traffic demands and the limited spectrum resources, it is very likely for several secondary networks (SNs) to coexist and opportunistically use the same primary user (PU) resources. In such scenarios, the ability to distinguish whether a licensed channel is occupied by a PU or by other SNs can significantly improve the spectrum efficiency of the network, while the contention among the SNs already operating on licensed channels with no PU activity may further affect its throughput and energy efficiency. Therefore, the proper selection of licensed channels could result in notable performance gains. In this paper, we propose a novel contention-aware channel selection algorithm, where the SN under study 1) detects the licensed channels with no PU activity by exploiting cooperative spectrum sensing, 2) estimates the probability of collision in each one, and 3) selects the less contended to access. We provide a detailed analytical model for the throughput and the energy efficiency of the SN, and we validate it by means of simulation. We also show the significant performance gains of our proposal in comparison with other relevant state-of-the-art algorithms.
Keywords
carrier sense multiple access; cognitive radio; multiuser channels; radio spectrum management; telecommunication traffic; cognitive radio contention-aware channel selection algorithm; cooperative spectrum sensing; licensed channel; primary user; secondary networks; Channel estimation; Clustering algorithms; Feature extraction; Multiaccess communication; Sensors; Throughput; Tin; Carrier-sense multiple access (CSMA)/CA; cognitive radio (CR); cooperative spectrum sensing; feature detection; green communications; opportunistic spectrum access; spectrum overlay;
fLanguage
English
Journal_Title
Vehicular Technology, IEEE Transactions on
Publisher
ieee
ISSN
0018-9545
Type
jour
DOI
10.1109/TVT.2014.2341115
Filename
6860261
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