DocumentCode :
1872830
Title :
Performance of centralized data-fusion cooperative eigenvalue-based spectrum sensing under correlated shadowed fading
Author :
Dias Vilela Bomfin, Roberto Cesarr ; Amaral de Souza, Rausley Adriano
Author_Institution :
Nat. Inst. of Telecommun., Inatel, Santa Rita do Sapucaí, Brazil
fYear :
2015
fDate :
14-17 June 2015
Firstpage :
1
Lastpage :
6
Abstract :
Electromagnetic spectrum scarcity is undoubtedly an issue nowadays given the demand for quality of service of wireless communication systems and its development. It makes necessary to use this resource efficiently. One possible solution is the spectrum sensing task in cognitive radio networks. This paper aims to analyze some cooperative eigenvalue-based spectrum sensing techniques under correlated shadowed fading, once in practice the correlation of the shadowing effect is present depending on the distance of the cognitive radios. To generate such channel it was used the three-dimensional model based on grid points, in which it is possible to create shadowing correlation among the cognitive radios. The spectrum sensing techniques analyzed are the energy detection (ED), the maximum-eigenvalue to geometric-mean (ME-GM); and the arithmetic-to-geometric-mean (A-GM). The results show that the ED technique outperforms the remaining techniques, however it requires the knowledge of the thermal noise power, whereas the ME-GM and the A-GM techniques are noise power estimation independent, and the ME-GM outperforms the A-GM. Additionally, all techniques presents approximately the same performance variation for a given variation in the correlation parameter.
Keywords :
cognitive radio; cooperative communication; eigenvalues and eigenfunctions; fading channels; quality of service; radio networks; radio spectrum management; sensor fusion; signal detection; arithmetic-to-geometric-mean; centralized data-fusion cooperative eigenvalue; cognitive radio networks; correlated shadowed fading; electromagnetic spectrum scarcity; energy detection; grid points; maximum-eigenvalue; noise power estimation; quality of service; spectrum sensing; thermal noise power; three-dimensional model; wireless communication; Cognitive radio; Correlation; Fading; Noise; Receivers; Sensors; Shadow mapping; Eigenvalue-based spectrum sensing; arithmetic-to-geometric-mean; correlated shadowed fading; energy detection; maximum-eigenvalue to geometric-mean;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Telecommunications (IWT), 2015 International Workshop on
Conference_Location :
Santa Rita do Sapucai
Type :
conf
DOI :
10.1109/IWT.2015.7224557
Filename :
7224557
Link To Document :
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