DocumentCode :
3755883
Title :
Pilot length optimization for spatially correlated multi-user MIMO channel estimation
Author :
Beatrice Tomasi;Maxime Guillaud
Author_Institution :
Mathematical and Algorithmic Sciences Laboratory, Huawei Technologies Co. Ltd., France Research Center, 20 quai du Point du Jour, 92100 Boulogne Billancourt, France
fYear :
2015
Firstpage :
1237
Lastpage :
1241
Abstract :
We address the design of pilot sequences for channel estimation in the context of multiple-user Massive MIMO; considering the presence of channel correlation, and assuming that the statistics are known, we seek to exploit the spatial correlation of the channels to minimize the length of the pilot sequences, and specifically the fact that the users can be separated either through their spatial signature (low-rank channel covariance matrices), or through the use of different training sequences. We introduce an algorithm to design short training sequences for a given set of user covariance matrices. The obtained pilot sequences are in general non-orthogonal, however they ensure that the channel estimation error variance is uniformly upper- bounded by a chosen constant over all channel dimensions. We show through simulations using a realistic scenario based on the one-ring channel model that the proposed technique can yield pilot sequences of length significantly smaller than the number of users in the system.
Keywords :
"Channel estimation","Training","MIMO","Correlation","Covariance matrices","Context","Antennas"
Publisher :
ieee
Conference_Titel :
Signals, Systems and Computers, 2015 49th Asilomar Conference on
Electronic_ISBN :
1058-6393
Type :
conf
DOI :
10.1109/ACSSC.2015.7421339
Filename :
7421339
Link To Document :
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