Publication:
Interpolation based pilot-aided channel estimation for STBC spatial modulation and performance analysis under imperfect CSI

dc.contributor.authorDoğan, Hakan
dc.contributor.authorBaşar, Ertuğrul
dc.contributor.authorPanayırcı, Erdal
dc.contributor.authorACAR, YUSUF
dc.contributor.authorGÜNTEKİN, BAHAR
dc.contributor.authorID237377tr_TR
dc.contributor.authorID149116tr_TR
dc.contributor.authorID10331tr_TR
dc.date.accessioned2018-07-17T14:15:21Z
dc.date.available2018-07-17T14:15:21Z
dc.date.issued2016-09-20
dc.description.abstractA combination of space-time block coding and spatial modulation (STBC-SM) has been recently proposed for multiple input-multiple output systems to obtain both spatial diversity gain and more capacity simultaneously while assuming the perfect channel state information (P-CSI) was available at the receiver. However, in practical scenarios the CSI is unknown to the receiver and should be estimated in order to detect the transmitted data in a reliable way. Therefore, channel estimation (CE) is a major challenge in designing the STBC-SM systems. In this study, the problem of CE is investigated and a new pilot-aided channel estimation (PA-CE) technique, coupled with an interpolation, is proposed for the STBC-SM systems operating in the presence of rapidly time-varying mobile channels. Several interpolation schemes such as the linear, nearest neighbour, piecewise cubic Hermite and the low-pass interpolations are applied and their performances are compared to determine the best suitable interpolation technique to be employed in STBC-SM systems. Bit error rate (BER) performance of the proposed CE technique is then investigated in time-varying channels with different modulation. Moreover, the pairwise error probability of the STBC-SM scheme is derived and its average bit error probability is evaluated analytically in the presence of CE errors.tr_TR
dc.identifier.issn1751-8628
dc.identifier.other1751-8636
dc.identifier.scopus2-s2.0-84988420332
dc.identifier.scopus2-s2.0-84988420332en
dc.identifier.urihttps://doi.org/10.1049/iet-com.2016.0151
dc.identifier.urihttps://hdl.handle.net/11413/2158
dc.identifier.wos384183500017
dc.identifier.wos384183500017en
dc.language.isoen_UStr_TR
dc.publisherINST Engineering Technology-Iet, Michael Faraday House Six Hills Way Stevenage, Hertford Sg1 2Ay, Englandtr_TR
dc.relationIET Communicationstr_TR
dc.subjectchannel estimationtr_TR
dc.subjectspace-time block codestr_TR
dc.subjectdiversity receptiontr_TR
dc.subjectMIMO communicationtr_TR
dc.subjectinterpolationtr_TR
dc.subjectmobile radiotr_TR
dc.subjecttime-varying channelstr_TR
dc.subjecterror statisticstr_TR
dc.subjectquadrature phase shift keyingtr_TR
dc.subjectquadrature amplitude modulationtr_TR
dc.subjectinterpolation-based pilot-aided channel estimationtr_TR
dc.subjectSTBC spatial modulationtr_TR
dc.subjectimperfect CSItr_TR
dc.subjectspace-time block codingtr_TR
dc.subjectmultiple-input multiple-output systemstr_TR
dc.subjectspatial diversity gaintr_TR
dc.subjectperfect channel state informationtr_TR
dc.subjectP-CSItr_TR
dc.subjectSTBC-SM systemstr_TR
dc.subjectPA-CE techniquetr_TR
dc.subjecttime-varying mobile channelstr_TR
dc.subjectlinear nearest neighbour piecewise cubic Hermitetr_TR
dc.subjectlow-pass interpolationtr_TR
dc.subjectbit error rate performancetr_TR
dc.subjectBER performancetr_TR
dc.subjectquadrature phase shift keyingtr_TR
dc.subjectQPSKtr_TR
dc.subject16-quadrature amplitude modulationtr_TR
dc.subject16-QAMtr_TR
dc.subject64-QAMtr_TR
dc.subjectpairwise error probabilitytr_TR
dc.subjectbit error probabilitytr_TR
dc.subjectSpline Interpolationtr_TR
dc.subjectSystemstr_TR
dc.subjectDiversitytr_TR
dc.titleInterpolation based pilot-aided channel estimation for STBC spatial modulation and performance analysis under imperfect CSItr_TR
dc.typeArticle
dspace.entity.typePublication
local.indexed.atscopus
local.indexed.atwos
relation.isAuthorOfPublication7922c65e-abed-4307-afab-5eee424d4aba
relation.isAuthorOfPublicationc665f1fe-4005-4404-95b4-387e9f66ca3a
relation.isAuthorOfPublication.latestForDiscovery7922c65e-abed-4307-afab-5eee424d4aba

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