DocumentCode
2460540
Title
Cyclostationary Detection of Undefined Secondary Users
Author
Al-Dulaimi, Anwer ; Radhi, Nazar ; Al-Raweshidy, H.S.
Author_Institution
Wireless Networks & Commun. Centre, Brunel Univ., London, UK
fYear
2009
fDate
15-18 Sept. 2009
Firstpage
230
Lastpage
233
Abstract
Spectrum sensing has continued to emerge as an essential topic for the cognitive networks where two kinds of users primary and secondary will share the band. This paper proposes a method for real-time detection of secondary users at the base stations. Cognitive radios may hide themselves in between the primary users to avoid being charged for using spectrum. To deal with such scenario, a cyclostationary fast Fourier transform FFT Accumulation Method (FAM) has been used to develop a new strategy for channel users recognition. Channel users are tracked according to the changes in their signal parameters for instance modulation techniques. The Matlab simulation runs two signals transmitted on 805 MHz channel. Obtained spectral correlation density functions show successful recognition between different signals.
Keywords
cognitive radio; correlation methods; fast Fourier transforms; frequency allocation; modulation; spectral analysis; wireless channels; FAM; FFT accumulation method; Matlab simulation; base station; channel user recognition; cognitive radio network; cyclostationary detection; fast Fourier transform; frequency 805 MHz; modulation technique; spectral correlation density function; spectrum sensing; undefined secondary user; Autocorrelation; Base stations; Cognitive radio; Computer vision; Design engineering; Fast Fourier transforms; Narrowband; Signal processing; Wireless communication; Wireless networks; Cognitive Radio; Cyclic Spectrum; Cyclostationary; Sensing; Undefined;
fLanguage
English
Publisher
ieee
Conference_Titel
Next Generation Mobile Applications, Services and Technologies, 2009. NGMAST '09. Third International Conference on
Conference_Location
Cardiff, Wales
Print_ISBN
978-0-7695-3786-3
Type
conf
DOI
10.1109/NGMAST.2009.101
Filename
5337279
Link To Document