DocumentCode :
705046
Title :
Statistical efficiency study of blind identification/equalization of two-path channels with the constant-modulus-criterion
Author :
Demissie, Bruno ; Kreuzer, Sebastian
Author_Institution :
Fraunhofer Inst. for Commun., Inf. Process. & Ergonomics, Wachtberg, Germany
fYear :
2010
fDate :
23-27 Aug. 2010
Firstpage :
1101
Lastpage :
1105
Abstract :
The statistical efficiency of a batch-processing constant-modulus blind equalizer for estimating a) the complex-valued tap weight within a two-path channel model and b) the equalized signal is investigated. Expanding the constant-modulus cost-function in a multidimensional Taylor series up to third order we derive closed-form expressions for the first-order bias and variance of the path weight and the equalized symbols as a function of the variance of the Gaussian distributed noise, the block length, and the actual channel parameters. We study random as well as deterministic symbol sequences. In the first case we compute the average of the bias and variance over zero-mean random (real-valued) signals of binary pulse amplitude modulation (PAM), and (complex-valued) signals of phase shift keying (PSK) modulation. We compare our analytical results with Monte-Carlo simulations and find good agreement for small to medium noise variance.
Keywords :
Gaussian noise; Monte Carlo methods; blind equalisers; channel estimation; phase shift keying; pulse amplitude modulation; statistical analysis; Gaussian distributed noise variance; Monte-Carlo simulations; PAM; actual channel parameters; batch-processing constant-modulus blind equalizer; binary pulse amplitude modulation; blind equalization; blind identification; block length; closed-form expressions; complex-valued tap weight estimation; constant-modulus cost-function; deterministic symbol sequences; equalized signal estimation; equalized symbol variance; first-order bias; multidimensional Taylor series; path weight variance; phase shift keying modulation; small-to-medium noise variance; statistical efficiency; two-path channel model; zero-mean random signals; Blind equalizers; Delays; Monte Carlo methods; Noise; Standards; Taylor series;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Signal Processing Conference, 2010 18th European
Conference_Location :
Aalborg
ISSN :
2219-5491
Type :
conf
Filename :
7096319
Link To Document :
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