DocumentCode :
1445186
Title :
A generalization of joint-diagonalization criteria for source separation
Author :
Moreau, Eric
Author_Institution :
Modelisation et Signal, Inst. des Sci. LIngenieur de Toulon, France
Volume :
49
Issue :
3
fYear :
2001
fDate :
3/1/2001 12:00:00 AM
Firstpage :
530
Lastpage :
541
Abstract :
In the field of blind source separation, joint-diagonalization-based approaches constitute an important framework, leading to useful algorithms such as the popular joint approximate diagonalization of eigenmatrices (JADE) and simultaneous third-order tensor diagonalization (STOTD) algorithms. However, they are often restricted to the case of cumulants of order four. In this paper, we extend the results leading to JADE and STOTD to cumulants of any order greater than or equal to three by exhibiting a new family of contrast functions that constitutes then a unified framework for the above known results. This also leads us to generalize some links between contrast functions and joint-diagonalization criteria on which these algorithms are based. In turn, one contrast of the new family allows us to show that a function previously proposed as a separation criterion is also a contrast. Moreover, for the two generalized JADE and STOTD contrasts, the analytical optimal solution in the case of two sources is derived and shown to keep the same simple expression, whatever the cumulant order. Finally, some computer simulations illustrate the potential advantage one can take by considering statistics of different orders for the joint-diagonalization of cumulant matrices
Keywords :
approximation theory; eigenvalues and eigenfunctions; higher order statistics; matrix algebra; signal processing; JADE algorithm; STOTD algorithm; analytical optimal solution; blind source separation; computer simulations; contrast functions; cumulant matrices; cumulant order; joint approximate diagonalization of eigenmatrices; joint-diagonalization criteria generalization; simultaneous third-order tensor diagonalization; statistics; Blind source separation; Computer simulation; Helium; Independent component analysis; Iterative algorithms; Reactive power; Source separation; Statistical analysis; Statistics; Tensile stress;
fLanguage :
English
Journal_Title :
Signal Processing, IEEE Transactions on
Publisher :
ieee
ISSN :
1053-587X
Type :
jour
DOI :
10.1109/78.905873
Filename :
905873
Link To Document :
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