DocumentCode :
535264
Title :
Adaptive blind equalization in impulsive noise environments
Author :
Li, Sen ; Bin Lin ; Qiu, Tian-Shuang
Volume :
7
fYear :
2010
fDate :
16-18 Oct. 2010
Firstpage :
3295
Lastpage :
3299
Abstract :
In some communication systems the transmitted signal is contaminated by impulsive noise with a non-Gaussian distribution. Non-Gaussian noise caused significant performance degradation to communication receivers. The new constant modulus blind equalizer based on fractional lower-order statistics of the equalizer input, referred to as FLOS_CMA, is able to mitigate impulsive channel noise while restoring the constant modulus character of the transmitted communication signal. However, like the constant modulus algorithm (CMA), the steady-state mean square error of the FLOS_CMA algorithm may not be sufficiently low for the system to obtain adequate performance. This paper proposes a concurrent equalizer, in which a decision-directed Least Mean p Norm (DD_LMP) equalizer operates cooperatively with a FLOS_CMA equalizer, controlled through a nonlinear link. Simulation results using M-QAM signaling have shown that the concurrent FLOS_CMA and DD_LMP blind equalizer achieves a dramatic improvement in equalization performance over the FLOS_CMA approach.
Keywords :
adaptive equalisers; blind equalisers; impulse noise; least mean squares methods; quadrature amplitude modulation; DD_LMP equalizer; FLOS_CMA algorithm; M-QAM signaling; adaptive blind equalization; communication receivers; constant modulus blind equalizer; decision-directed least mean p norm equalizer; equalizer input; fractional lower-order statistics; impulsive channel noise; impulsive noise environments; nonGaussian distribution; nonGaussian noise; steady-state mean square error; Blind equalizers; Convergence; Decision feedback equalizers; Noise; Signal processing algorithms; Least Mean p Norm; concurrent equalizer; constant modulus algorithm; fractional lower-order statistics;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Image and Signal Processing (CISP), 2010 3rd International Congress on
Conference_Location :
Yantai
Print_ISBN :
978-1-4244-6513-2
Type :
conf
DOI :
10.1109/CISP.2010.5647456
Filename :
5647456
Link To Document :
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