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research article

A Unifying Parametric Framework for 2D Steerable Wavelet Transforms

Unser, Michael  
•
Chenouard, Nicolas
2013
Siam Journal On Imaging Sciences

We introduce a complete parameterization of the family of two-dimensional steerable wavelets that are polar-separable in the Fourier domain under the constraint of self-reversibility. These wavelets are constructed by multiorder generalized Riesz transformation of a primary isotropic bandpass pyramid. The backbone of the transform (pyramid) is characterized by a radial frequency profile function h(.), while the directional wavelet components at each scale are encoded by an M x (2N + 1) shaping matrix U, where M is the number of wavelet channels and N the order of the Riesz transform. We provide general conditions on h(omega) and U for the underlying wavelet system to form a tight frame of L2(R-2) (with a redundancy factor 4/3M). The proposed framework ensures that the wavelets are steerable and provides new degrees of freedom (shaping matrix U) that can be exploited for designing specific wavelet systems. It encompasses many known transforms as particular cases: Simoncelli's steerable pyramid, Marr gradient and Hessian wavelets, monogenic wavelets, and Nth-order Riesz and circular harmonic wavelets. We take advantage of the framework to construct new generalized spheroidal prolate wavelets, whose angular selectivity is maximized, as well as signal-adapted detectors based on principal component analysis. We also introduce a curvelet-like steerable wavelet system. Finally, we illustrate the advantages of some of the designs for signal denoising, feature extraction, pattern analysis, and source separation.

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Type
research article
DOI
10.1137/120866014
Web of Science ID

WOS:000326032900005

Author(s)
Unser, Michael  
Chenouard, Nicolas
Date Issued

2013

Publisher

Siam Publications

Published in
Siam Journal On Imaging Sciences
Volume

6

Issue

1

Start page

102

End page

135

Subjects

wavelets

•

steerability

•

Riesz transform

•

frame

URL

URL

http://bigwww.epfl.ch/publications/unser1301.html

URL

http://bigwww.epfl.ch/publications/unser1301.pdf

URL

http://bigwww.epfl.ch/publications/unser1301.ps
Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LIB  
Available on Infoscience
December 9, 2013
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/97546
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