DocumentCode
1761804
Title
Practical analysis of codebook design and frequency offset estimation for virtual-multiple-input-multipleoutput systems
Author
Jing Jiang ; Thompson, John S. ; Hongjian Sun ; Grant, P.M.
Author_Institution
Center for Commun. Syst. Res., Univ. of Surrey, Guildford, UK
Volume
7
Issue
6
fYear
2013
fDate
April 16 2013
Firstpage
585
Lastpage
594
Abstract
A virtual-multiple-input-multiple-output (MIMO) wireless system using the receiver-side cooperation with the compress-and-forward (CF) protocol, is an alternative to a point-to-point MIMO system, when a single receiver is not equipped with multiple antennas. It is evident that the practicality of CF cooperation will be greatly enhanced if an efficient source coding technique can be used at the relay. It is even more desirable that CF cooperation should not be unduly sensitive to carrier frequency offsets (CFOs). This study presents a practical study of these two issues. Firstly, codebook designs of the Voronoi vector quantisation (VQ) and the tree-structure VQ (TSVQ) to enable CF cooperation at the relay are described. A comparison in terms of the codebook design and encoding complexity is analysed. It is shown that the TSVQ is much simpler to design and operate, and can achieve a favourable performance-complexity tradeoff. Furthermore, this study demonstrates that CFO can lead to significant performance degradation for the virtual-MIMO system. To overcome this, it is proposed to maintain clock synchronisation and jointly estimate the CFO between the relay and the destination. This approach is shown to provide a significant performance improvement.
Keywords
MIMO communication; communication complexity; computational geometry; cooperative communication; diversity reception; frequency estimation; protocols; radio receivers; relay networks (telecommunication); source coding; synchronisation; trees (mathematics); vector quantisation; CF cooperation; CFO; TSVQ; Voronoi vector quantisation; carrier frequency offset; clock synchronisation; codebook design; compress and forward protocol; encoding complexity; frequency offset estimation; multiple input multiple output; performance complexity tradeoff; point-to-point MIMO wireless system; receiver side cooperation; relay; source coding technique; tree structure VQ; virtual MIMO system;
fLanguage
English
Journal_Title
Communications, IET
Publisher
iet
ISSN
1751-8628
Type
jour
DOI
10.1049/iet-com.2012.0345
Filename
6528097
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