DocumentCode
838500
Title
Correlation Matching Approaches for Blind OSTBC Channel Estimation
Author
Vía, Javier ; Santamaría, Ignacio
Author_Institution
Commun. Eng. Dept. (DICOM), Univ. of Cantabria, Santander
Volume
56
Issue
12
fYear
2008
Firstpage
5950
Lastpage
5961
Abstract
In this paper, the problem of blind channel estimation under orthogonal space-time block coded (OSTBC) transmissions is solved by minimizing some distance measure between the theoretical and estimated correlation matrices of the observations. Specifically, the minimization of the Euclidean distance and the Kullback-Leibler divergence leads, respectively, to the Euclidean correlation matching (ECM) and Kullback correlation matching (KCM) criteria. The proposed techniques exploit the knowledge of the source correlation matrix to unambiguously recover the multiple-input multiple-output (MIMO) channel. Furthermore, due to the orthogonality properties of OSTBCs, both the ECM and KCM criteria result in closed form solutions. In particular, the channel estimate is given by the principal eigenvector of a matrix, which is obtained from the estimated correlation matrix of the observations modified by the code matrices and a set of weights. In the ECM case, the weights are fixed and equal to the eigenvalues of the source correlation matrix, whereas the KCM weights depend on both the signal-to-noise ratio (SNR) and the source eigenvalues. Additionally, we show that the proposed approaches are equivalent in the low SNR regime, whereas in the high SNR regime the KCM criterion is asymptotically equivalent to the relaxed blind maximum-likelihood (ML) decoder. Finally, the performance of the proposed criteria is illustrated by means of some numerical examples.
Keywords
MIMO communication; block codes; channel coding; channel estimation; matrix algebra; maximum likelihood decoding; orthogonal codes; space-time codes; Euclidean correlation matching; Euclidean distance minimization; Kullback correlation matching criteria; Kullback-Leibler divergence leads; MIMO channel; blind OSTBC channel estimation; blind maximum-likelihood decoder; code matrices; eigenvector; multiple-input multiple-output channel; orthogonal space-time block coded transmissions; signal-to-noise ratio; source correlation matrix; Blind channel estimation; Correlation matching; Kullback–Leibler divergence; Kullback-Leibler divergence; blind channel estimation; correlation matching; information geometry; maximum likelihood (ML); maximum-likelihood (ML); orthogonal space–time block coding (OSTBC); orthogonal space-time block coding (OSTBC);
fLanguage
English
Journal_Title
Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1053-587X
Type
jour
DOI
10.1109/TSP.2008.929661
Filename
4602537
Link To Document