Paper
26 September 2013 A split-augmented Lagrangian algorithm for spectral factorization of a set of 2D directional filters and application to the design of compact shearlet frames
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Abstract
In this paper, we first briefly review the directional properties of the Dual-Tree complex wavelet transform and we investigate how the directional selectivity of the transform can be increased (i.e., to obtain more than 6 orientations per scale). To this end, we describe a new augmented Lagrangian optimization algorithm to jointly perform the 2D spectral factorization of a set of 2D directional filters, with a high numerical accuracy. We demonstrate how this approach can be used to design compactly supported shearlet frames that are tight. Finally, a number of experimental results are given to show the merits of the resulting shearlet frames.
© (2013) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Bart Goossens, Jan Aelterman, Hiêp Luong, Aleksandra Pižurica, and Wilfried Philips "A split-augmented Lagrangian algorithm for spectral factorization of a set of 2D directional filters and application to the design of compact shearlet frames", Proc. SPIE 8858, Wavelets and Sparsity XV, 885806 (26 September 2013); https://doi.org/10.1117/12.2024876
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Cited by 1 scholarly publication.
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KEYWORDS
Wavelets

Optical filters

Discrete wavelet transforms

Image filtering

Fourier transforms

Wavelet transforms

Prototyping

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