DocumentCode
1754748
Title
Optimisation of multi-channel cooperative sensing in cognitive radio networks
Author
Nan Zhao ; Fangling Pu ; Xin Xu ; Nengcheng Chen
Author_Institution
Sch. of Electron. Inf., Wuhan Univ., Wuhan, China
Volume
7
Issue
12
fYear
2013
fDate
Aug. 13 2013
Firstpage
1177
Lastpage
1190
Abstract
Cooperative spectrum sensing (CSS) is a promising technique in cognitive radio networks (CRNs) that utilises multi-user diversity to mitigate channel instability and noise uncertainty. In this study, the relationship between `cooperation mechanisms´ and `spatial-spectral diversity´ over multiple channels jointly sensing is investigated in the presence of an imperfect reporting channel. The multiple channels are sensed at the receiver built on the filter bank-based multi-carrier system. The multi-channel CSS strategies are modelled by the introduced `cooperative ratio´ to balance the requirements on `sensing accuracy´, `efficiency´ and `overhead´, which is quantitatively characterised by the energy consumption. The target of CSS is to maximise the aggregate opportunistic throughput of secondary users (SUs) by jointly considering constraints on sensing overhead and the aggregate interference to primary users (PUs). The optimisation is divided into two sequential sub-optimisation processes, `multi-user diversity optimisation´ and `multi-channel diversity optimisation´. An approach is developed from generic algorithms to solve the two sub-problems. Numerical results show that the optimal CSS scheme is effective in improving channel utilisation for SUs with low interference to PUs. This study establishes a valuable cooperative model for the design of multi-channel spectrum sensing algorithms in CRNs.
Keywords
cognitive radio; cooperative communication; diversity reception; optimisation; radio spectrum management; signal detection; wireless channels; aggregate interference; aggregate opportunistic throughput; channel instability; channel utilisation; cognitive radio networks; cooperation mechanisms; cooperative model; cooperative ratio; cooperative spectrum sensing; energy consumption; filter bank-based multicarrier system; generic algorithms; imperfect reporting channel; multichannel CSS strategies; multichannel cooperative sensing; multichannel diversity optimisation; multichannel spectrum sensing algorithms; multiuser diversity; noise uncertainty; primary users; secondary users; sensing accuracy; sensing overhead; spatial-spectral diversity;
fLanguage
English
Journal_Title
Communications, IET
Publisher
iet
ISSN
1751-8628
Type
jour
DOI
10.1049/iet-com.2012.0748
Filename
6583136
Link To Document