DocumentCode
2575231
Title
Measurement studies of a spectrum sensing algorithm based on double thresholding
Author
Lehtomäki, Janne ; Salmenkaita, Suvi ; Vartiainen, Johanna ; Mäkelä, Juha-Pekka ; Vuohtoniemi, Risto ; Juntti, Markku
Author_Institution
Centre for Wireless Commun. (CWC), Univ. of Oulu, Oulu, Finland
fYear
2009
fDate
18-20 May 2009
Firstpage
69
Lastpage
73
Abstract
Welch spectrum estimator may be used for spectrum monitoring and sensing. Conventionally, the detection threshold is set assuming that the noise power is estimated from noise-only samples. The forward consecutive mean excision (FCME) algorithm is a method for automatically making decisions based on the decision variables, without estimation of the noise power a priori. In this paper, we propose the utilization of the FCME algorithm with the Welch spectrum estimator. Additionally, theoretical analysis about asymptotic threshold setting for the FCME algorithm with the Welch spectrum estimator is presented. The localization algorithm based on double-thresholding (LAD) with adjacent cluster combining (ACC) utilizes the FCME algorithm and is very suitable for signal detection. Laboratory and field measurement results with the LAD ACC method are included to study the detectability of different signal types, including a real wireless microphone signal.
Keywords
cognitive radio; signal detection; Welch spectrum estimator; adjacent cluster combining; asymptotic threshold; detection threshold; double thresholding; forward consecutive mean excision; localization algorithm; noise power; signal detection; spectrum sensing algorithm; wireless microphone signal; Clustering algorithms; Detectors; Energy measurement; Iterative algorithms; Laboratories; Microphones; Narrowband; Performance evaluation; Signal detection; Wireless sensor networks;
fLanguage
English
Publisher
ieee
Conference_Titel
Cognitive Radio and Advanced Spectrum Management, 2009. CogART 2009. Second International Workshop on
Conference_Location
Aalborg
Print_ISBN
978-1-4244-4582-0
Type
conf
DOI
10.1109/COGART.2009.5167236
Filename
5167236
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