DocumentCode
1362488
Title
Remote-Sensing Image Denoising Using Partial Differential Equations and Auxiliary Images as Priors
Author
Liu, Peng ; Huang, Fang ; Li, Guoqing ; Liu, Zhiwen
Author_Institution
Spatial Data Center, Center for Earth Obs. & Digital Earth, Beijing, China
Volume
9
Issue
3
fYear
2012
fDate
5/1/2012 12:00:00 AM
Firstpage
358
Lastpage
362
Abstract
In this letter, a new method for denoising remote-sensing images based on partial differential equations (PDEs) is proposed. The method employs the similarity between the different band images in a multicomponent image. Initially, one of the noise-free images in multicomponent remote-sensing images as a prior is introduced into the PDE denoising method. To make use of the priors of the noise-free image in denoising, we construct a new smoothing term for the PDE so as to compute the total variation. The new smoothing term refers to a specific smoothing direction and a specific smoothing intensity of the reference image when denoising the noisy image. The proposed smoothing term is added as a new constraint into the PDE denoising method. Based on the proposed method, the similarity of the directions of the edges between the noisy image and the reference image enables the new algorithm to smooth out more noise and conserve more detail in the denoising process. We also present the discrete form of the proposed denoising model. Multispectral remote-sensing images and hyperspectral remote-sensing images are experimented in this letter. A better performance is achieved by the proposed method when compared with other methods.
Keywords
geophysical image processing; geophysical techniques; image denoising; partial differential equations; remote sensing; PDE denoising method; auxiliary images; band images; denoising process; hyperspectral remote-sensing images; multicomponent remote-sensing images; multispectral remote-sensing images; noise-free images; partial differential equations; reference image; remote-sensing image denoising; smoothing term; specific smoothing direction; specific smoothing intensity; Hyperspectral imaging; Image edge detection; Noise; Noise measurement; Noise reduction; Smoothing methods; TV; Image denoising; partial differential equation (PDE); total variation (TV);
fLanguage
English
Journal_Title
Geoscience and Remote Sensing Letters, IEEE
Publisher
ieee
ISSN
1545-598X
Type
jour
DOI
10.1109/LGRS.2011.2168598
Filename
6061940
Link To Document