Joint Source-Relay Design for Full-Duplex MIMO AF Relay Systems

dc.contributor.author Shi, Qingjiang
dc.contributor.author Hong, Mingyi
dc.contributor.author Gao, Xiqi
dc.contributor.author Song, Enbin
dc.contributor.author Cai, Yunlong
dc.contributor.author Xu, Weiqiang
dc.contributor.department Industrial and Manufacturing Systems Engineering
dc.date 2018-02-18T04:39:48.000
dc.date.accessioned 2020-06-30T04:49:14Z
dc.date.available 2020-06-30T04:49:14Z
dc.date.copyright Fri Jan 01 00:00:00 UTC 2016
dc.date.issued 2016-01-01
dc.description.abstract <p>The performance of full-duplex (FD) relay systems can be greatly impacted by the self-interference (SI) at relays. By exploiting multiple antennas, the spectral efficiency of FD relay systems can be enhanced through spatial SI mitigation. This paper studies joint source transmit beamforming and relay processing to achieve rate maximization for FD multiple-input-multiple-output (MIMO) amplify-and-forward (AF) relay systems with consideration of relay processing delay. The problem is difficult to solve mainly due to the SI constraint induced by the relay processing delay. In this paper, we first present a sufficient condition under which the relay amplification matrix has rank-one structure. Then, for the case of rank-one amplification matrix, the rate maximization problem is equivalently simplified into an unconstrained problem that can be locally solved using the gradient ascent method. Next, we propose a penalty-based algorithmic framework, named P-BSUM, for a class of constrained optimization problems that have difficult equality constraints in addition to some convex constraints. By rewriting the rate maximization problem with a set of auxiliary variables, we apply the P-BSUM algorithm to the rate maximization problem in the general case. Finally, numerical results validate the efficiency of the proposed algorithms and show that the joint source-relay design approach under the rankone assumption could be strictly suboptimal as compared to the P-BSUM-based joint source-relay design approach.</p>
dc.description.comments <p>This is a manuscript from <em>IEEE Transactions on Signal Processing</em> 64 (2016): 6118, DOI: <a href="https://doi.org/10.1109/TSP.2016.2605074" target="_blank">10.1109/TSP.2016.2605074</a>. Posted with permission.</p>
dc.format.mimetype application/pdf
dc.identifier archive/lib.dr.iastate.edu/imse_pubs/88/
dc.identifier.articleid 1088
dc.identifier.contextkey 9700778
dc.identifier.s3bucket isulib-bepress-aws-west
dc.identifier.submissionpath imse_pubs/88
dc.identifier.uri https://dr.lib.iastate.edu/handle/20.500.12876/44611
dc.language.iso en
dc.source.bitstream archive/lib.dr.iastate.edu/imse_pubs/88/2016_Hong_JointSource.pdf|||Sat Jan 15 02:17:06 UTC 2022
dc.source.uri 10.1109/TSP.2016.2605074
dc.subject.disciplines Industrial Engineering
dc.subject.disciplines Systems Architecture
dc.subject.disciplines Systems Engineering
dc.subject.keywords Relays
dc.subject.keywords Silicon
dc.subject.keywords MIMO
dc.subject.keywords Delays
dc.subject.keywords Electronic mail
dc.subject.keywords Covariance matrices
dc.subject.keywords Antennas
dc.title Joint Source-Relay Design for Full-Duplex MIMO AF Relay Systems
dc.type article
dc.type.genre article
dspace.entity.type Publication
relation.isAuthorOfPublication fc95af08-1606-4279-89b3-d787d4df2369
relation.isOrgUnitOfPublication 51d8b1a0-5b93-4ee8-990a-a0e04d3501b1
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