Title
Performance Analysis Framework Of Ml Mimo Receiver Over Correlated Rayleigh Fading Channel
Abstract
In this paper, a novel performance analysis framework of Maximum Likelihood (ML) receiver for Vertical Bell Labs Layered Space-Time (V-BLAST) architecture over correlated Rayleigh fading channel is presented. Based on the statistical property of squared Euclidean distance, the exact expressions for Pairwise Error Probability (PEP) over transmit, receive, and joint correlated fading channel are derived. The approximate expression of the PEPs for high signal-to-noise ration (SNR) region is used to quantitatively analyze the loss of the diversity order and the penalty of SNR. Three interesting results of this analysis are: 1) the loss caused by transmit and receive correlation is independent. 2) the transmit correlation has no impact on the diversity order, and the loss of SNR caused by transmit correlation is determined by the transmit correlation matrix and modulation scheme. 3) the loss of diversity order due to receive correlation is equals to the difference of the numbers of receiver antenna and the rank of receive correlation matrix, under the assumption that the receive correlation matrix has full rank, the penalty of SNR is jointly determined by the determinant of the receive correlation matrix and the number of receive antenna. Simulation results are given to corroborate the theoretical analysis.
Year
DOI
Venue
2006
10.1109/ICC.2006.255729
2006 IEEE INTERNATIONAL CONFERENCE ON COMMUNICATIONS, VOLS 1-12
Keywords
Field
DocType
correlation matrix,mimo,fading,signal analysis,maximum likelihood,signal to noise ratio,euclidean distance
Rank (linear algebra),Pairwise error probability,Rayleigh fading,Fading,Euclidean distance,Signal-to-noise ratio,MIMO,Algorithm,Real-time computing,Covariance matrix,Statistics,Mathematics
Conference
Volume
Issue
ISSN
9
null
1550-3607
Citations 
PageRank 
References 
5
0.50
9
Authors
4
Name
Order
Citations
PageRank
Haitao Liu161.23
Gang Li250.50
Xingqing Cheng350.50
Daoben Li44713.15