DocumentCode
1122279
Title
A global approach for solving evolutive heat transfer for image denoising and inpainting
Author
Auclair-Fortier, Marie-Flavie ; Ziou, Djemel
Author_Institution
Dept. of Comput. Sci., Sherbrooke Univ., Que.
Volume
15
Issue
9
fYear
2006
Firstpage
2558
Lastpage
2574
Abstract
This paper proposes an alternative to partial differential equations (PDEs) for solving problems in computer vision based on evolutive heat transfer. Traditionally, the method for solving such physics-based problems is to discretize and solve a PDE by a purely mathematical process. Instead of using the PDE, we propose to use the global heat principle and to decompose it into basic laws. We show that some of these laws admit an exact global version since they arise from conservative principles. We also show that the assumptions made about the other basic laws can be made wisely, taking into account knowledge about the problem and the domain. The numerical scheme is derived in a straightforward way from the modeled problem, thus providing a physical explanation for each step in the solution. The advantage of such an approach is that it minimizes the approximations made during the whole process and it modularizes it, allowing changing the application to a great number of problems. We apply the scheme to two applications: image denoising and inpainting which are modeled with heat transfer. For denoising, we propose a new approximation for the conductivity coefficient and we add thin lines to the features in order to block diffusion
Keywords
heat transfer; image denoising; partial differential equations; block diffusion; conductivity coefficient; evolutive heat transfer; global heat principle; image denoising; image inpainting; partial differential equations; physics-based problems; purely mathematical process; Anisotropic magnetoresistance; Application software; Color; Computer vision; Conductivity; Heat transfer; Image denoising; Image processing; Noise reduction; Partial differential equations; Denoising; heat transfer process; image processing; inpainting; line edges; nonlinear and anisotropic diffusion of colors;
fLanguage
English
Journal_Title
Image Processing, IEEE Transactions on
Publisher
ieee
ISSN
1057-7149
Type
jour
DOI
10.1109/TIP.2006.877410
Filename
1673438
Link To Document