DocumentCode :
3766002
Title :
Robust regularized ZF in decentralized Broadcast Channel with correlated CSI noise
Author :
Qianrui Li;Paul de Kerret;David Gesbert;Nicolas Gresset
Author_Institution :
Mobile Communication Department, Eurecom, France
fYear :
2015
Firstpage :
329
Lastpage :
336
Abstract :
We consider in this work the Distributed Channel State Information (DCSI) Broadcast Channel (BC) setting, in which the various Transmitters (TXs) compute elements of the precoder based on their individual estimates of the global multiuser channel matrix. Previous works relative to the DCSI setting assume the estimation errors at different TXs to be uncorrelated, while we consider in contrast in this work that the CSI noises can be correlated. This generalization bridges the gap between the fully distributed and the centralized setting, and offers an avenue to analyze partially centralized networks. In addition, we generalize the regularized Zero Forcing (ZF) precoding by letting each TX use a different regularization coefficient. Building upon random matrix theory tools, we obtain a deterministic equivalent for the rate achieved in the large system limit from which we can optimize the regularization coefficients at different TXs. This extended precoding scheme in which each TX applies the optimal regularization coefficient is denoted as “DCSI Regularized ZF” and we show by numerical simulations that it allows to significantly reduce the negative impact of the distributed CSI configuration and is robust to the distribution of CSI quality level across all TXs.
Keywords :
"Precoding","Channel estimation","Signal to noise ratio","Transmitting antennas","Robustness","MIMO","Correlation"
Publisher :
ieee
Conference_Titel :
Communication, Control, and Computing (Allerton), 2015 53rd Annual Allerton Conference on
Type :
conf
DOI :
10.1109/ALLERTON.2015.7447023
Filename :
7447023
Link To Document :
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