DocumentCode
1636676
Title
Optimal entropy-based spectrum sensing for cognitive radio networks under severe path loss conditions
Author
Ejaz, Waleed ; Atiq, Mahin K. ; Hyung Seok Kim ; Shah, Ghalib A.
Author_Institution
Dept. of Inf. & Commun. Eng., Sejong Univ., Seoul, South Korea
fYear
2013
Firstpage
93
Lastpage
98
Abstract
Recently maritime cognitive radio network is proposed to provide high bandwidth and low communication cost for maritime users. Spectrum sensing is one of the key issues to develop cognitive radio networks. Radio propagation is one of the main differences between maritime and land environment. Traditional detectors such as matched filter, energy detector and cyclostationary detector are not robust under low signal-to-noise ratio and at high sea state conditions. To deal with maritime environmental challenges, an entropy-based spectrum sensing scheme with the optimal number of samples is presented in this paper. Since spectrum sensing is sensitive to the number of samples, the optimal number of samples has been introduced in the proposed scheme to get minimum sensing time and maximum detection probability. Results reveal that existing scheme works well for the lower sea states but failed to perform at higher sea states. Moreover, simulation results show that the entropy-based scheme is robust at higher sea states in comparison with the traditional energy detector.
Keywords
cognitive radio; entropy; marine communication; probability; radio spectrum management; radiowave propagation; communication cost; energy detector; entropy-based scheme; entropy-based spectrum sensing scheme; high sea state conditions; land environment; maritime cognitive radio network; maritime environment; maximum detection probability; minimum sensing time; optimal entropy-based spectrum sensing; radio propagation; severe path loss conditions; signal-to-noise ratio; Bandwidth; Cognitive radio; Detectors; Entropy; Sea state; Signal to noise ratio; Cognitive radio network; Maritime communication; cooperative detection; spectrum sensing;
fLanguage
English
Publisher
ieee
Conference_Titel
Cognitive Radio Oriented Wireless Networks (CROWNCOM), 2013 8th International Conference on
Conference_Location
Washington, DC
Type
conf
DOI
10.1109/CROWNCom.2013.6636800
Filename
6636800
Link To Document