DocumentCode
1190464
Title
Invariances, Laplacian-Like Wavelet Bases, and the Whitening of Fractal Processes
Author
Tafti, Pouya Dehghani ; Van De Ville, Dimitri ; Unser, Michael
Author_Institution
Biomed. Imaging Group, Ecole Polytech. Federate de Lausanne, Lausanne
Volume
18
Issue
4
fYear
2009
fDate
4/1/2009 12:00:00 AM
Firstpage
689
Lastpage
702
Abstract
In this contribution, we study the notion of affine invariance (specifically, invariance to the shifting, scaling, and rotation of the coordinate system) as a starting point for the development of mathematical tools and approaches useful in the characterization and analysis of multivariate fractional Brownian motion (fBm) fields. In particular, using a rigorous and powerful distribution theoretic formulation, we extend previous results of Blu and Unser (2006) to the multivariate case, showing that polyharmonic splines and fBm processes can be seen as the (deterministic vs stochastic) solutions to an identical fractional partial differential equation that involves a fractional Laplacian operator. We then show that wavelets derived from polyharmonic splines have a behavior similar to the fractional Laplacian, which also turns out to be the whitening operator for fBm fields. This fact allows us to study the probabilistic properties of the wavelet transform coefficients of fBm-like processes, leading for instance to ways of estimating the Hurst exponent of a multiparameter process from its wavelet transform coefficients. We provide theoretical and experimental verification of these results. To complement the toolbox available for multiresolution processing of stochastic fractals, we also introduce an extended family of multidimensional multiresolution spaces for a large class of (separable and nonseparable) lattices of arbitrary dimensionality.
Keywords
Brownian motion; Laplace equations; fractals; image resolution; probability; splines (mathematics); stochastic processes; wavelet transforms; Hurst exponent; Laplacian-like wavelet bases; affine invariance; distribution theoretic formulation; fractal process; fractional Laplacian operator; fractional partial differential equation; mathematical tool; multiparameter process; multiresolution processing; multivariate fractional Brownian motion; polyharmonic splines; probabilistic property; stochastic fractals; wavelet transform coefficient; whitening operator; Brownian motion; Fractals; Hydrology; Image processing; Laplace equations; Lattices; Multidimensional systems; Partial differential equations; Stochastic processes; Wavelet transforms; Affine invariance; Hurst exponent; fractional Brownian motion (fBm); fractional partial differential equations; lattices; multidimensional wavelets; operator wavelets; polyharmonic splines; whitening;
fLanguage
English
Journal_Title
Image Processing, IEEE Transactions on
Publisher
ieee
ISSN
1057-7149
Type
jour
DOI
10.1109/TIP.2008.2011451
Filename
4799376
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