DocumentCode
114024
Title
Destriping remotely sensed data using anisotropic diffusion in wavelet domain
Author
Quanlong Feng ; Jianhua Gong
Author_Institution
State Key Lab. of Remote Sensing Sci., Inst. of Remote Sensing & Digital Earth, Beijing, China
fYear
2014
fDate
26-28 April 2014
Firstpage
316
Lastpage
319
Abstract
Due to differences of each detector´s response to the same radiant signal, stripe noise exists in various remotely sensed data, which degrades accuracy of the imagery and brings difficulty in subsequent analysis such as quantitative inversion, terrain classification and object detection. Wavelet shrinkage denoising algorithm can remove the stripe effectively because it suppresses the noise through hard or soft thresholding function. However, the main defect lies in blurred edges of ground objects since it always over reduces the wavelet coefficients. In order to preserve and restore the edges to the full extent, this paper adopted anisotropic diffusion method into wavelet domain. An anisotropic diffusion filtering process was applied to the high frequency wavelet coefficients which eradicated the stripe while preserving the ground object edges. Experimental results showed that the proposed method in this paper outperformed the traditional wavelet shrinkage denoising method both in visual effects and several image quality indexes.
Keywords
anisotropic media; edge detection; image denoising; image restoration; object detection; remote sensing; shrinkage; wavelet transforms; anisotropic diffusion filtering process; anisotropic diffusion method; blurred edges; ground object edges; image quality indexes; object detection; quantitative inversion; radiant signal; remotely sensed data; soft thresholding function; stripe noise; terrain classification; visual effects; wavelet coefficients; wavelet domain; wavelet shrinkage denoising algorithm; Anisotropic magnetoresistance; Filtering; Image edge detection; Noise; Remote sensing; Wavelet domain; Wavelet transforms; anisotropic diffusion; destriping; remote sensing; wavelet analysis;
fLanguage
English
Publisher
ieee
Conference_Titel
Information Science and Technology (ICIST), 2014 4th IEEE International Conference on
Conference_Location
Shenzhen
Type
conf
DOI
10.1109/ICIST.2014.6920392
Filename
6920392
Link To Document