DocumentCode
931055
Title
A unified texture model based on a 2-D Wold-like decomposition
Author
Francos, Joseph M. ; Meiri, A. Zvi ; Porat, Boaz
Author_Institution
Signal Processing Technol., Palo Alto, CA, USA
Volume
41
Issue
8
fYear
1993
fDate
8/1/1993 12:00:00 AM
Firstpage
2665
Lastpage
2678
Abstract
A unified texture model that is applicable to a wide variety of texture types found in natural images is presented. This model leads to the derivation of texture analysis and synthesis algorithms designed to estimate the texture parameters and to reconstruct the original texture field from these parameters. The texture field is assumed to be a realization of a regular homogeneous random field, which is characterized in general by a mixed spectral distribution. The texture field is orthogonally decomposed into a purely indeterministic component and a deterministic component. The deterministic component is further orthogonally decomposed into a harmonic component, and a generalized-evanescent component. Both analytical and experimental results show that the deterministic components should be parameterized separately from the purely indeterministic component. The model is very efficient in terms of the number of parameters required to faithfully represent textures. Reconstructed textures are practically indistinguishable from the originals
Keywords
image reconstruction; image texture; 2-D Wold-like decomposition; deterministic component; generalized-evanescent component; harmonic component; image modelling; indeterministic component; mixed spectral distribution; natural images; parameter estimation; regular homogeneous random field; texture analysis; texture field; texture reconstruction; texture synthesis; unified texture model; Algorithm design and analysis; Humans; Image analysis; Image coding; Image reconstruction; Image texture analysis; Phase modulation; Signal processing algorithms; Stochastic processes; Two dimensional displays;
fLanguage
English
Journal_Title
Signal Processing, IEEE Transactions on
Publisher
ieee
ISSN
1053-587X
Type
jour
DOI
10.1109/78.229897
Filename
229897
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