DocumentCode :
1533941
Title :
Space-time blind equalisation in impulsive noise
Author :
Li, Sinan ; Qiu, T.S. ; Zhang, Stan F.
Volume :
3
Issue :
6
fYear :
2009
Firstpage :
445
Lastpage :
458
Abstract :
The presence of non-Gaussian impulsive noise in wireless system can degrade the performance of existing equalisers and signal detectors. The problem of blind source separation and equalisation for multiple-input/multiple-output (MIMO) channels under heavy-tailed impulsive noise environment is studied. A generalised multi-user constant modulus (CM) cost function is proposed by employing the fractional lower order CM property of the equaliser input signals as well as the fractional lower order cross-correlations between them. The associated adaptive blind equalisation algorithm based on a stochastic gradient descent method is defined as fractional lower order multi-user constant modulus algorithm (FMU/CMA), which is able to mitigate impulsive channel noise while recovering all input signals simultaneously. The steady-state mean-square error (MSE) performance of the FMU/CMA is studied in a noise-free environment; the approximate expression is derived based on the energy-preserving relation and the Taylor series expansion. Simulation studies are undertaken to support the analysis with CM and non-CM signal.
Keywords :
MIMO communication; blind equalisers; blind source separation; gradient methods; impulse noise; interference suppression; mean square error methods; radio networks; signal detection; stochastic processes; wireless channels; MIMO channel; Taylor series expansion; blind source separation; energy-preserving relation; fractional lower order cross-correlation; generalised multiuser constant modulus cost function; impulsive channel noise mitigation; multiple-input multiple-output channel; nonGaussian impulsive noise; signal detectors; space-time blind equalisation; steady-state mean-square error performance; stochastic gradient descent method; wireless system;
fLanguage :
English
Journal_Title :
Signal Processing, IET
Publisher :
iet
ISSN :
1751-9675
Type :
jour
DOI :
10.1049/iet-spr.2009.0005
Filename :
5306909
Link To Document :
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