DocumentCode :
3162348
Title :
Consensus algorithms for distributed spectrum sensing based on goodness of fit test in cognitive radio networks
Author :
Teguig, Djamel ; Scheers, Bart ; Le Nir, Vincent ; Horlin, Franois
Author_Institution :
Dept. CISS, R. Mil. Acad., Brussels, Belgium
fYear :
2015
fDate :
18-19 May 2015
Firstpage :
1
Lastpage :
5
Abstract :
In this paper, we study a consensus algorithm for distributed spectrum sensing (DSS) in cognitive radio networks (CRN) integrating a Goodness of Fit based spectrum sensing scheme. Existing work in this area often applies energy detector as a local spectrum sensing method for DSS, however in this case one needs to make the assumption that the noise level is the same at every node in the network, otherwise the threshold can not be set properly. In GoF based spectrum sensing, the threshold for the binary test depends only on the desired false alarm probability and not on the local noise powers. Motivated by this nice feature of GoF based spectrum sensing, we consider the goodness of fit (GoF) test statistic to be exchanged among cognitive radio (CR) users (consensus variable) instead of the energy. Moreover, a weighted consensus based DSS scheme is proposed and compared to the conventional consensus based on DSS. Simulations are conducted to show the effectiveness of the consensus algorithm based on GoF test.
Keywords :
cognitive radio; radio spectrum management; signal detection; statistical distributions; statistical testing; CRN; DSS scheme; cognitive radio network user; consensus algorithm; distributed spectrum sensing; energy detector; false alarm probability; goodness of fit test statistic; Cognitive radio; Convergence; Decision support systems; Noise; Sensors; Uncertainty; Cognitive Radio; Consensus Algorithms; Goodness of Fit test; Spectrum Sensing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Military Communications and Information Systems (ICMCIS), 2015 International Conference on
Conference_Location :
Cracow
Print_ISBN :
978-8-3934-8485-0
Type :
conf
DOI :
10.1109/ICMCIS.2015.7158681
Filename :
7158681
Link To Document :
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