DocumentCode
106864
Title
2D Prony-Huang Transform: A New Tool for 2D Spectral Analysis
Author
Schmitt, J. ; Pustelnik, Nelly ; Borgnat, Pierre ; Flandrin, Patrick ; Condat, L.
Author_Institution
Lab. de Phys., Ecole Normale Super. de Lyon, Lyon, France
Volume
23
Issue
12
fYear
2014
fDate
Dec. 2014
Firstpage
5233
Lastpage
5248
Abstract
This paper provides an extension of the 1D Hilbert Huang transform for the analysis of images using recent optimization techniques. The proposed method consists of: 1) adaptively decomposing an image into oscillating parts called intrinsic mode functions (IMFs) using a mode decomposition procedure and 2) providing a local spectral analysis of the obtained IMFs in order to get the local amplitudes, frequencies, and orientations. For the decomposition step, we propose two robust 2D mode decompositions based on nonsmooth convex optimization: 1) a genuine 2D approach, which constrains the local extrema of the IMFs and 2) a pseudo-2D approach, which separately constrains the extrema of lines, columns, and diagonals. The spectral analysis step is an optimization strategy based on Prony annihilation property and applied on small square patches of the IMFs. The resulting 2D Prony-Huang transform is validated on simulated and real data.
Keywords
Hilbert transforms; convex programming; image processing; spectral analysis; 1D Hilbert Huang transform; 2D Prony-Huang transform; 2D spectral analysis; IMF; Prony annihilation property; image processing; intrinsic mode functions; local amplitudes; local extrema; local frequencies; local orientations; local spectral analysis; nonsmooth convex optimization; pseudo-2D approach; robust 2D mode decompositions; small square patches; Convergence; Estimation; Frequency estimation; Market research; Robustness; Spectral analysis; Transforms; Empirical mode decomposition; convex optimization; nonstationary image analysis; spectral analysis;
fLanguage
English
Journal_Title
Image Processing, IEEE Transactions on
Publisher
ieee
ISSN
1057-7149
Type
jour
DOI
10.1109/TIP.2014.2363000
Filename
6922544
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