DocumentCode :
987553
Title :
Separation of an instantaneous mixture of Gaussian autoregressive sources by the exact maximum likelihood approach
Author :
Dégerine, Serge ; Zaïdi, Abdelhamid
Author_Institution :
LMC-IMAG, Grenoble, France
Volume :
52
Issue :
6
fYear :
2004
fDate :
6/1/2004 12:00:00 AM
Firstpage :
1499
Lastpage :
1512
Abstract :
This paper deals with the problem of blind separation of an instantaneous mixture of Gaussian autoregressive sources, without additive noise, by the exact maximum likelihood approach. The maximization of the likelihood function is divided, using relaxation, into two suboptimization problems, solved by relaxation methods as well. The first one consists of the estimation of the separating matrix when the autoregressive structure of the sources is fixed. The second one aims at estimating this structure when the separating matrix is fixed. We show that the first problem is equivalent to the determinant maximization of the separating matrix under nonlinear constraints. We prove the existence and the consistency of the maximum likelihood estimator. We also give the expression of Fisher´s information matrix. Then, we study, by computer simulations, the performance of our estimator and show the improvement of its achievements w.r.t. both quasimaximum likelihood and second-order blind identification (SOBI) estimators.
Keywords :
Gaussian processes; autoregressive processes; blind source separation; determinants; matrix algebra; maximum likelihood estimation; optimisation; relaxation theory; Fisher information matrix; Gaussian autoregressive sources; blind separation; determinant maximization; exact minimum likelihood approach; quasimaximum likelihood estimators; relaxation method; second-order blind estimation; separating matrix estimation; suboptimization problem; Additive noise; Computer simulation; Decorrelation; Filters; Helium; Higher order statistics; Maximum likelihood estimation; Relaxation methods; Source separation; Transmitters; Autoregressive process; instantaneous mixture; maximum likelihood; relaxation method; source separation;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/TSP.2004.827195
Filename :
1299085
Link To Document :
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