Title :
Adaptive Total Variation Regularization Based SAR Image Despeckling and Despeckling Evaluation Index
Author :
Yao Zhao ; Jian Guo Liu ; Bingchen Zhang ; Wen Hong ; Yi-Rong Wu
Author_Institution :
Sci. & Technol. on Microwave Imaging Lab., Inst. of Electron., Beijing, China
Abstract :
We introduce a total variation (TV) regularization model for synthetic aperture radar (SAR) image despeckling. A dual-formulation-based adaptive TV (ATV) regularization method is applied to solve the TV regularization. The parameter adaptation of the TV regularization is performed based on the noise level estimated via wavelets. The TV-regularization-based image restoration model has a good performance in preserving image sharpness and edges while removing noises, and it is therefore effective for edge preserve SAR image despeckling. Experiments have been carried out using optical images contaminated with artificial speckles first and then SAR images. A despeckling evaluation index (DEI) is designed to assess the effectiveness of edge preserve despeckling on SAR images, which is based on the ratio of the standard deviations of two neighborhood areas of different sizes of a pixel. Experimental results show that the proposed ATV method can effectively suppress SAR image speckles without compromising the edge sharpness of image features according to both subjective visual assessment of image quality and objective evaluation using DEI.
Keywords :
edge detection; geophysical image processing; image denoising; image restoration; interference suppression; optical images; radar imaging; remote sensing by radar; speckle; synthetic aperture radar; ATV regularization method; DEI; SAR image despeckling; SAR image speckle suppression; TV-regularization-based image restoration model; adaptive total variation regularization; artificial speckles; despeckling evaluation index; edge preservation; image quality; image sharpness preservation; noise level estimation; objective evaluation; optical images; parameter adaptation; standard deviations; subjective visual assessment; synthetic aperture radar; wavelets; Estimation; Image edge detection; Indexes; Noise; Synthetic aperture radar; TV; Transforms; Adaptive total variation (ATV) regularization; despeckling; evaluation index; synthetic aperture radar (SAR);
Journal_Title :
Geoscience and Remote Sensing, IEEE Transactions on
DOI :
10.1109/TGRS.2014.2364525