Preprocessing of SAR interferometric data using anisotropic diffusion filter

被引:0
作者
Sartor, Kenneth [1 ]
Allen, Josef De Vaughn [1 ]
Ganthier, Emile [1 ]
Tenali, Gnana Bhaskar [2 ]
机构
[1] Harris Corp, Govt Commun Syst Div, Melbourne, FL 32905 USA
[2] Florida Inst Technol, Melbourne, FL 32901 USA
来源
ALGORITHMS FOR SYNTHETIC APERTURE RADAR IMAGERY XIV | 2007年 / 6568卷
关键词
SAR interferogram; diffusion tensor matrix; non-linear; anisotropic diffusion;
D O I
10.1117/12.719806
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
The most commonly used smoothing algorithms for complex data processing are blurring functions (i.e., Hanning, Taylor weighting, Gaussian, etc.). Unfortunately, the filters so designed blur the edges in a Synthetic Aperture Radar (SAR) scene, reduce the accuracy of features, and blur the fringe lines in an interferogram. For the Digital Surface Map (DSM) extraction, the blurring of these fringe lines causes inaccuracies in the height of the unwrapped terrain surface. Our goal here is to perform spatially non-uniform smoothing to overcome the above mentioned disadvantages. This is achieved by using a Complex Anisotropic Non-Linear Diffuser (CANDI) filter that is a spatially varying. In particular, an appropriate choice of the convection function in the CANDI filter is able to accomplish the non-uniform smoothing. This boundary sharpening intra-region smoothing filter acts on interferometric SAR (IFSAR) data with noise to produce an interferogram. with significantly reduced noise contents and desirable local smoothing. Results of CANDI filtering will be discussed and compared with those obtained by using the standard filters on simulated data.
引用
收藏
页数:12
相关论文
共 50 条
[31]   Pyramid based Multiscale Anisotropic Diffusion Filter for Ultrasound Image Despeckling [J].
Liu, Ting ;
Feng, Naizhang ;
Shen, Yi ;
Pan, Wenlei .
2014 IEEE INTERNATIONAL INSTRUMENTATION AND MEASUREMENT TECHNOLOGY CONFERENCE (I2MTC) PROCEEDINGS, 2014, :1345-1349
[32]   Face Recognition using Gabor Filter based Feature Extraction with Anisotropic Diffusion as a pre-processing technique [J].
Abhishree, T. M. ;
Latha, J. ;
Manikantan, K. ;
Ramachandran, S. .
INTERNATIONAL CONFERENCE ON ADVANCED COMPUTING TECHNOLOGIES AND APPLICATIONS (ICACTA), 2015, 45 :312-321
[33]   Anisotropic diffusion techniques on synthetic aperture radar data [J].
DeVaughn Allen, Josef ;
Ganthier, Emile ;
Tenall, Gnana Bhaskar .
RADAR SENSOR TECHNOLOGY XI, 2007, 6547
[34]   A New Heterogeneity Scale to Improve Anisotropic Diffusion Based Speckle Filters in SAR Images [J].
Chatterjee, Rohit K. ;
Kar, Avijit .
IMAGE AND SIGNAL PROCESSING FOR REMOTE SENSING XIX, 2013, 8892
[35]   Image Denoising Using Generalized Anisotropic Diffusion [J].
Jian Bai ;
Xiang-Chu Feng .
Journal of Mathematical Imaging and Vision, 2018, 60 :994-1007
[36]   Subsidence measurement and DSM extraction of IFSAR data using anisotropic diffusion and wavelet denoising filters [J].
Sartor, Kenneth ;
Allen, Josef De Vaughn ;
Ganthier, Emile ;
Rahmes, Mark ;
Tenali, Gnana Bhaskar ;
Kozaitis, Samuel .
ALGORITHMS FOR SYNTHETIC APERTURE RADAR IMAGERY XV, 2008, 6970
[37]   Image Denoising Using Generalized Anisotropic Diffusion [J].
Bai, Jian ;
Feng, Xiang-Chu .
JOURNAL OF MATHEMATICAL IMAGING AND VISION, 2018, 60 (07) :994-1007
[38]   An improved anisotropic diffusion filter with semi-adaptive threshold for edge preservation [J].
Xu, Jiangtao ;
Jia, Yuanyuan ;
Shi, Zaifeng ;
Pang, Ke .
SIGNAL PROCESSING, 2016, 119 :80-91
[39]   Speckle reduction of ultrasound images based on Rayleigh-trimmed anisotropic diffusion filter [J].
Deng, Yinhui ;
Wang, Yuanyuan ;
Shen, Yuzhong .
PATTERN RECOGNITION LETTERS, 2011, 32 (13) :1516-1525
[40]   High Performance Impulse Detector Using Anisotropic Diffusion [J].
Miura, Sho ;
Tsuji, Hiroyuki ;
Kimura, Tomoaki ;
Tokumasu, Shinji .
IEEE INTERNATIONAL CONFERENCE ON SYSTEMS, MAN AND CYBERNETICS (SMC 2010), 2010,