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Blind spectrum sensing using symmetry property of cyclic autocorrelation function: From theory to practice

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dc.contributor.author Safatly L.
dc.contributor.author Aziz B.
dc.contributor.author Nafkha A.
dc.contributor.author Louet Y.
dc.contributor.author Nasser Y.
dc.contributor.author El-Hajj A.
dc.contributor.author Kabalan K.Y.
dc.contributor.editor
dc.date 2014
dc.date.accessioned 2017-10-04T11:07:28Z
dc.date.available 2017-10-04T11:07:28Z
dc.date.issued 2014
dc.identifier 10.1186/1687-1499-2014-26
dc.identifier.isbn
dc.identifier.issn 16871472
dc.identifier.uri http://hdl.handle.net/10938/14622
dc.description.abstract Spectrum sensing has been identified as the key step of the cognition cycle and the most important function for the establishment of cognitive radio. In this paper, a blind cyclostationary feature detector, which is based on the symmetry property of cyclic autocorrelation function (SP-CAF), is implemented and tested using universal software radio peripheral platform and GNU Radio open-source software development toolkit. Performance of the SP-CAF is compared to the classical energy detector via various tests conducted in real scenarios where both detection algorithms are employed to blindly sense the spectrum for opportunistic access. This study shows that the blind cyclostationary feature detector outperforms the classical energy detector while guaranteeing acceptable complexity and low sensing time. Moreover, different experimental results indicate that the blind sensing detector can achieve high detection probability at a low false alarm probability under real channel conditions and low signal-to-noise ratio. © 2014 Safatly et al.; licensee Springer.
dc.format.extent
dc.language English
dc.publisher Hindawi Publishing Corporation; CHAM
dc.relation.ispartof Publication Name: Eurasip Journal on Wireless Communications and Networking; Publication Year: 2014; Volume: 2014;
dc.relation.ispartofseries
dc.relation.uri
dc.source Scopus
dc.subject.other
dc.title Blind spectrum sensing using symmetry property of cyclic autocorrelation function: From theory to practice
dc.type Article
dc.contributor.affiliation Safatly, L., Department of Electrical and Computer Engineering, American University of Beirut, P.O. Box 11-0236, Beirut 1107 2020, Lebanon
dc.contributor.affiliation Aziz, B., SCEE-IETR, SUPELEC, 35576 Cesson-Sévigné cedex, France
dc.contributor.affiliation Nafkha, A., SCEE-IETR, SUPELEC, 35576 Cesson-Sévigné cedex, France
dc.contributor.affiliation Louet, Y., SCEE-IETR, SUPELEC, 35576 Cesson-Sévigné cedex, France
dc.contributor.affiliation Nasser, Y., Department of Electrical and Computer Engineering, American University of Beirut, P.O. Box 11-0236, Beirut 1107 2020, Lebanon
dc.contributor.affiliation El-Hajj, A., Department of Electrical and Computer Engineering, American University of Beirut, P.O. Box 11-0236, Beirut 1107 2020, Lebanon
dc.contributor.affiliation Kabalan, K.Y., Department of Electrical and Computer Engineering, American University of Beirut, P.O. Box 11-0236, Beirut 1107 2020, Lebanon
dc.contributor.authorAddress Nafkha, A.; SCEE-IETR, SUPELEC, 35576 Cesson-Sévigné cedex, France; email: amor.nafkha@supelec.fr
dc.contributor.authorCorporate University: American University of Beirut; Faculty: Faculty of Engineering and Architecture; Department: Electrical and Computer Engineering;
dc.contributor.authorDepartment Electrical and Computer Engineering
dc.contributor.authorDivision
dc.contributor.authorEmail amor.nafkha@supelec.fr
dc.contributor.faculty Faculty of Engineering and Architecture
dc.contributor.authorInitials Safatly, L
dc.contributor.authorInitials Aziz, B
dc.contributor.authorInitials Nafkha, A
dc.contributor.authorInitials Louet, Y
dc.contributor.authorInitials Nasser, Y
dc.contributor.authorInitials El-Hajj, A
dc.contributor.authorInitials Kabalan, KY
dc.contributor.authorOrcidID
dc.contributor.authorReprintAddress Nafkha, A (reprint author), SUPELEC, SCEE IETR, F-35576 Cesson Sevigne, France.
dc.contributor.authorResearcherID
dc.contributor.authorUniversity American University of Beirut
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dc.description.citedTotWOSCount 0
dc.description.citedWOSCount 0
dc.format.extentCount 1
dc.identifier.articleNo 26
dc.identifier.coden
dc.identifier.pubmedID
dc.identifier.scopusID 84898914560
dc.identifier.url
dc.publisher.address GEWERBESTRASSE 11, CHAM, CH-6330, SWITZERLAND
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dc.relation.ispartofConferenceCode
dc.relation.ispartofConferenceDate
dc.relation.ispartofConferenceHosting
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dc.relation.ispartofConferenceSponsor
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dc.relation.ispartofFundingAgency EC, European Commission
dc.relation.ispartOfISOAbbr EURASIP J. Wirel. Commun. Netw.
dc.relation.ispartOfIssue
dc.relation.ispartOfPart
dc.relation.ispartofPubTitle Eurasip Journal on Wireless Communications and Networking
dc.relation.ispartofPubTitleAbbr Eurasip J. Wireless Commun. Networking
dc.relation.ispartOfSpecialIssue
dc.relation.ispartOfSuppl
dc.relation.ispartOfVolume 2014
dc.source.ID WOS:000332322300001
dc.type.publication Journal
dc.subject.otherAuthKeyword
dc.subject.otherChemCAS
dc.subject.otherIndex Feature extraction
dc.subject.otherIndex Radio communication
dc.subject.otherIndex Room and pillar mining
dc.subject.otherIndex Timing jitter
dc.subject.otherIndex Blind spectrum sensing
dc.subject.otherIndex Cyclic autocorrelation function
dc.subject.otherIndex Detection algorithm
dc.subject.otherIndex False alarm probability
dc.subject.otherIndex High detection probability
dc.subject.otherIndex Low signal-to-noise ratio
dc.subject.otherIndex Open-source software development
dc.subject.otherIndex Opportunistic access
dc.subject.otherIndex Signal detection
dc.subject.otherKeywordPlus COGNITIVE RADIO
dc.subject.otherKeywordPlus ENERGY DETECTION
dc.subject.otherKeywordPlus CYCLOSTATIONARITY
dc.subject.otherKeywordPlus SIGNALS
dc.subject.otherWOS Engineering, Electrical and Electronic
dc.subject.otherWOS Telecommunications


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