A Decomposition and Noise Removal Method Combining Diffusion Equation and Wave Atoms for Textured Images

Joint Authors

Casaca, Wallace Correa de Oliveira
Boaventura, Maurílio

Source

Mathematical Problems in Engineering

Issue

Vol. 2010, Issue 2010 (31 Dec. 2010), pp.1-20, 20 p.

Publisher

Hindawi Publishing Corporation

Publication Date

2010-05-16

Country of Publication

Egypt

No. of Pages

20

Main Subjects

Civil Engineering

Abstract EN

We propose a new method that is aimed at denoising images having textures.

The method combines a balanced nonlinear partial differential equation driven by optimal parameters, mathematical morphology operators, weighting techniques, and some recent works in harmonic analysis.

Furthermore, the new scheme decomposes the observed image into three components that are well defined as structure/cartoon, texture, and noise-background.

Experimental results are provided to show the improved performance of our method for the texture-preserving denoising problem.

American Psychological Association (APA)

Casaca, Wallace Correa de Oliveira& Boaventura, Maurílio. 2010. A Decomposition and Noise Removal Method Combining Diffusion Equation and Wave Atoms for Textured Images. Mathematical Problems in Engineering،Vol. 2010, no. 2010, pp.1-20.
https://search.emarefa.net/detail/BIM-497006

Modern Language Association (MLA)

Casaca, Wallace Correa de Oliveira& Boaventura, Maurílio. A Decomposition and Noise Removal Method Combining Diffusion Equation and Wave Atoms for Textured Images. Mathematical Problems in Engineering No. 2010 (2010), pp.1-20.
https://search.emarefa.net/detail/BIM-497006

American Medical Association (AMA)

Casaca, Wallace Correa de Oliveira& Boaventura, Maurílio. A Decomposition and Noise Removal Method Combining Diffusion Equation and Wave Atoms for Textured Images. Mathematical Problems in Engineering. 2010. Vol. 2010, no. 2010, pp.1-20.
https://search.emarefa.net/detail/BIM-497006

Data Type

Journal Articles

Language

English

Notes

Includes bibliographical references

Record ID

BIM-497006