DocumentCode :
878848
Title :
Blind multiuser detection of STBC signals using hybrid constant modulus and subspace methods
Author :
Lambotharan, S. ; Luo, Y. ; Toker, C. ; Alty, S.R. ; Gani, M.
Author_Institution :
Centre of Digital Signal Process., Cardiff Univ., UK
Volume :
153
Issue :
2
fYear :
2006
fDate :
4/1/2006 12:00:00 AM
Firstpage :
159
Lastpage :
164
Abstract :
A blind multi-user detection algorithm for space-time block coded (STBC) signals is proposed based upon subspace methods and constant modulus algorithms for multiple antenna based receivers. The subspace method is used to determine blindly the multiuser detector required for the mitigation of multi-user interference and to coherently combine multipath and multiple receive antenna signals. It is shown that this subspace method for STBC could however, solve this problem only up to a matrix ambiguity and the structure of this ambiguity matrix looks like a channel matrix obtained for a single user STBC system with frequency non-selective channel. Hence, the remaining problem is shown to be equivalent to blind equalisation of a single user STBC in flat fading channels. A tap constrained constant modulus algorithm is proposed to solve the remaining problem. In this blind method, only the signature waveform of the user of interest is assumed to be known, and the signature waveforms of all other users in addition to the channel impulse responses of all the users are assumed to be unknown. Simulation results confirm superior performance of the proposed method over conventional non-blind matched filters.
Keywords :
antenna arrays; blind equalisers; block codes; fading channels; interference suppression; matrix algebra; multipath channels; multiuser detection; receiving antennas; space-time codes; transient response; STBC; blind equalisation; blind multiuser detection algorithm; channel impulse response; channel matrix; constant modulus algorithm; flat fading channel; multipath signal; multiple antenna based receiver; multiuser interference mitigation; signature waveform; space-time block coded signal; subspace method;
fLanguage :
English
Journal_Title :
Communications, IEE Proceedings-
Publisher :
iet
ISSN :
1350-2425
Type :
jour
DOI :
10.1049/ip-com:20050320
Filename :
1610485
Link To Document :
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