DocumentCode
1699601
Title
iDetection: Intelligent Primary User Detection for Cognitive Radio Networks
Author
Ejaz, Waleed ; Hasan, Najam Ul ; Kim, Hyung Seok
Author_Institution
Dept. of Inf. & Commun. Eng., Sejong Univ., Seoul, South Korea
fYear
2012
Firstpage
153
Lastpage
157
Abstract
In dynamic spectrum access paradigm, reliable spectrum sensing is essential for the efficient utilization of the underutilized spectrum as well as the protection of legacy spectrum users. To achieve reliability, it is important for sensing techniques to meet detection requirements, such as the maximum allowed detection time, the probability of misdetection and the probability of false alarm. In this paper, a spectrum sensing scheme named iDetection is proposed that minimizes the probability of misdetection, false alarm and the mean detection time. Based on the power and the band of interest, the iDetection scheme selects either the combined energy detector and cyclostationary detector or the matched filter detection. The band of interest notifies whether the primary user waveform is known or not, whereas, power indicates the noise uncertainty in the received waveform. To evaluate the proposed scheme a comparison is conducted on the basis of the probability of detection, the probability of false alarm and the mean detection time. The results manifest that iDetection scheme outperforms all other existing local spectrum sensing techniques including energy detection, matched filter detection and cyclostationary detection.
Keywords
cognitive radio; matched filters; probability; telecommunication network reliability; cognitive radio networks; combined energy detector; cyclostationary detection; cyclostationary detector; detection probability; dynamic spectrum access paradigm; energy detection; false alarm probability; iDetection scheme; intelligent primary user detection; legacy spectrum user protection; local spectrum sensing techniques; matched filter detection; mean detection time; misdetection probability; noise uncertainty; primary user waveform; reliable spectrum sensing; Cognitive radio; Detectors; Matched filters; Reliability; Signal to noise ratio; Cognitive radio networks; cyclostationary detection; energy detection; matched filter; spectrum sensing;
fLanguage
English
Publisher
ieee
Conference_Titel
Next Generation Mobile Applications, Services and Technologies (NGMAST), 2012 6th International Conference on
Conference_Location
Paris
ISSN
2161-2889
Print_ISBN
978-1-4673-2598-1
Type
conf
DOI
10.1109/NGMAST.2012.38
Filename
6327948
Link To Document