DocumentCode :
38771
Title :
An MMSE Strategy at Relays With Partial CSI for a Multi-Layer Relay Network
Author :
Elamvazhuthi, Pannir Selvam ; Dey, Bikash Kumar ; Bhashyam, Srikrishna
Author_Institution :
Tech. Center India, Delphi Automotive Syst. Pvt. Ltd., Bengaluru, India
Volume :
62
Issue :
2
fYear :
2014
fDate :
Jan.15, 2014
Firstpage :
271
Lastpage :
282
Abstract :
We consider a relay network with a single source-destination pair and multiple layers of relays between them. We assume that these layers sequentially relay the signal transmitted by the source to the destination. Unlike existing work, we also assume that the destination and all the forward layers present between the transmitting layer and the destination receive signals during every transmission phase. We optimally combine these signals, say μ of them, using a precoder at each relay layer for onward transmission. We obtain this precoding matrix by minimizing the mean-squared error (MSE) at the relays, and do not require channel-state-information (CSI) of the forward channels at the relays unlike existing systems that minimize MSE at the destination and require CSI of the forward channels at the relays. Our closed-form solution for this matrix is valid for any K number of layers, whereas minimizing MSE at the destination does not have closed-form solution for K > 1. For K > 1, we enhance an existing scheme to obtain a sub-optimal closed-form precoder solution and use it for comparison. We show using simulations that our scheme approaches the bit-error-rate (BER) performance of this scheme, when μ is increased, even with partial CSI.
Keywords :
error statistics; matrix algebra; mean square error methods; precoding; relay networks (telecommunication); BER; MMSE strategy; bit-error-rate; channel-state-information; mean-squared error; multilayer relay network; onward transmission; partial CSI; precoding matrix; single source-destination pair; suboptimal closed-form precoder; transmission phase; Channel estimation; Closed-form solutions; Electronic mail; Optimization; Protocols; Relays; Vectors; MMSE; amplify-and-forward; channel-state-information; multi-layer relay network; relay precoder;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2013.2284471
Filename :
6620928
Link To Document :
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