Title :
The Nonsubsampled Contourlet Transform: Theory, Design, and Applications
Author :
Da Cunha, Arthur L. ; Zhou, Jianping ; Do, Minh N.
Author_Institution :
Dept. of Electr. & Comput. Eng., Illinois Univ., Urbana, IL
Abstract :
In this paper, we develop the nonsubsampled contourlet transform (NSCT) and study its applications. The construction proposed in this paper is based on a nonsubsampled pyramid structure and nonsubsampled directional filter banks. The result is a flexible multiscale, multidirection, and shift-invariant image decomposition that can be efficiently implemented via the a trous algorithm. At the core of the proposed scheme is the nonseparable two-channel nonsubsampled filter bank (NSFB). We exploit the less stringent design condition of the NSFB to design filters that lead to a NSCT with better frequency selectivity and regularity when compared to the contourlet transform. We propose a design framework based on the mapping approach, that allows for a fast implementation based on a lifting or ladder structure, and only uses one-dimensional filtering in some cases. In addition, our design ensures that the corresponding frame elements are regular, symmetric, and the frame is close to a tight one. We assess the performance of the NSCT in image denoising and enhancement applications. In both applications the NSCT compares favorably to other existing methods in the literature
Keywords :
channel bank filters; image denoising; image enhancement; transforms; a trous algorithm; flexible multiscale image decomposition; frequency selectivity; image denoising; image enhancement; multidirection image decomposition; nonseparable two-channel nonsubsampled filter bank; nonsubsampled contourlet transform; nonsubsampled directional filter banks; nonsubsampled pyramid structure; one-dimensional filtering; shift-invariant image decomposition; Filter bank; Filtering; Frequency; Image coding; Image decomposition; Image denoising; Image enhancement; Multidimensional systems; Noise reduction; Wavelet transforms; Contourlet transform; frames; image denoising; image enhancement; multidimensional filter banks; nonsubsampled filter banks;
Journal_Title :
Image Processing, IEEE Transactions on
DOI :
10.1109/TIP.2006.877507