DocumentCode :
2599217
Title :
FWT-based preconditioners for image restoration problems
Author :
D´Amore, Luisa ; Murli, Almerico
Author_Institution :
Center for Res. on Parallel Comput. & Supercomput., Complesso Univ. Monte S. Angelo, Napoli, Italy
Volume :
3
fYear :
1996
fDate :
16-19 Sep 1996
Firstpage :
93
Abstract :
The problem of removing or minimizing degradations in a blurred and noisy image is known as image restoration. The computational kernel of many image restoration problems is the solution of the following inverse problem: Hf=g+η where where the n2-vectors f and g represent the real and the observed image, respectively. The n2 vector η is an additive noise which is usually unknown. The n 2× n2-matrix H is the point spread function matrix and it represents the blurring process. The inverse problem consists in the computation of an approximation to the original image vector f, from known values of g and H. In such cases the restoration problem typically leads to a discrete ill-posed inverse problem. The classical way to compute a reasonable solution is to regularize the discrete problem. We explore the possible use of the fast wavelet transform-based preconditioners for the efficient solution of image restoration problems
Keywords :
image restoration; inverse problems; matrix algebra; noise; optical transfer function; wavelet transforms; FWT-based preconditioners; additive noise; blurred image; computational kernel; degradations; fast wavelet transform; ill-posed inverse problem; image restoration; noisy image; observed image; original image vector approximation; point spread function matrix; real image; regularization; Character generation; Convergence; Degradation; Eigenvalues and eigenfunctions; Image restoration; Inverse problems; Parallel processing; Supercomputers; Symmetric matrices; Wavelet transforms;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Image Processing, 1996. Proceedings., International Conference on
Conference_Location :
Lausanne
Print_ISBN :
0-7803-3259-8
Type :
conf
DOI :
10.1109/ICIP.1996.560377
Filename :
560377
Link To Document :
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