DocumentCode :
3432305
Title :
Compression of generalised Gaussian sources
Author :
Puga, André T. ; Alves, Artur P.
Author_Institution :
INESC, Porto, Portugal
fYear :
1997
fDate :
25-27 Mar 1997
Firstpage :
465
Abstract :
Summary form only given. This article introduces a non-linear statistical approach to the interframe video coding assuming a priori that the source is non-Gaussian. To this end generalised Gaussian (GG) modelling and high-order statistics are used and a new optimal coding problem is identified as a simultaneous diagonalisation of 2nd and 4th order cumulant tensors. This problem, named the high-order Karhunen-Loeve transform (HOKLT), is an independent component analysis (ICA) method. Using the available linear techniques for cumulant tensor diagonalisation the HOKLT problem cannot be, in general, solved exactly. Considering the impossibility of solving HOKLT problem within the linear group, a non-linear methodology named non-linear independent components analysis (NLICA) that solves the HOKLT problem was introduced. The structure of the analysis operator produced by NLICA is a linear-nonlinear-linear transformation where the first linear stage is an isoentropic ICA operator and the last linear stage is a principal components analysis (PCA) operator. The non-linear stage is diagonal and it converts marginal densities to Gaussianity conserving marginal entropies. Considering the three basic coding modes within DPCM video coders and the three colour components there are nine different sources. Fitting this sources to GG family, done in this work, has shown how far from Gaussianity these sources are and supports the GG modelling effectiveness
Keywords :
Gaussian processes; data compression; differential pulse code modulation; higher order statistics; image colour analysis; transform coding; transforms; video coding; DPCM video coders; colour components; cumulant tensor diagonalisation; fourth order cumulant tensors; generalised Gaussian modelling; generalised Gaussian source compression; high-order Karhunen-Loeve transform; high-order statistics; independent component analysis; interframe video coding; isoentropic ICA operator; linear-nonlinear-linear transformation; nonlinear independent components analysis; nonlinear statistical approach; optimal coding problem; principal components analysis; second order cumulant tensors; Decorrelation; Entropy; Gaussian processes; Independent component analysis; Karhunen-Loeve transforms; Principal component analysis; Statistics; Tensile stress; Video coding; Video signal processing;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Data Compression Conference, 1997. DCC '97. Proceedings
Conference_Location :
Snowbird, UT
ISSN :
1068-0314
Print_ISBN :
0-8186-7761-9
Type :
conf
DOI :
10.1109/DCC.1997.582131
Filename :
582131
Link To Document :
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