Full text: XIXth congress (Part B1)

  
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Yunham Dong 
  
ACKNOWLEDGEMENTS 
This work was supported by The Australian Research Council. 
REFERENCES 
Anys, H., and He, D. C., 1995. Evaluation of textural and multipolarization radar features for crop classification. IEEE 
Trans on Geoscience and Remote Sensing, 33 (5), pp. 1170-181. 
Canny, J, 1986. A computational approach to edge detection. IEEE Trans on Pattern Analysis and Machine Intelligence, 
8, pp. 679-689. 
Crimmins, T. R., 1986. Geometric filter for reducing speckle. Optical Engineering, 25, pp. 651-654. 
Dong, Y, Forster, B. C, Milne, A. K., and Morgan, G. A., 1998. Speckle suppression using recursive wavelet 
transforms. International Journal of Remote Sensing, 19 (2), pp. 317-330. 
Dong, Y, and Milne A. K., An review of SAR speckle filters: Texture restoration and preservation. Proceedings of 
IGARSS 2000. 
Dougherty, E., 1992. An Introduction to Morphological Image Processing. SPIE Optical Engineering Press, 
Bellingham. 
Frost, V. S., Stiles, J. A., Shanmugan, K. S., and Holtzman, J. C., 1982. A model for radar images and its application to 
adaptive digital filtering of multiplicative noise. IEEE Trans on Pattern Analysis and Machine Intelligence, 4, pp. 157- 
165. 
Goze, S. and Lopes, A. 1993. A MMSE speckle filtering for full resolution SAR polarimetric data. Journal of Electronic 
Waves and Applications, 7 (5), pp. 717-737. 
Haralick, R. M., Shanmugam, K., and Dinstein, L, 1973. Textural features for image classification. IEEE Trans on 
Systems, Man, and Cybernetics, 3 (6), pp. 610-621. 
Kuan, D. T., Sawchuk, A. A., Strand, T. C, and Chavel, P., 1987. Adaptive restoration of image with speckle. IEEE 
Trans on Acoustic Speech and Signal Processing, 35, pp. 373-383. 
Lee, J. S., 1981. Refined filtering of image noise using local statistics. Computer Graphics and Image Processing, 15, 
pp. 380-389. 
Lee, J. S., 1986. Speckle suppression and analysis for synthetic aperture radar. Optical Engineering, 25(5), pp. 656-643. 
Lee, J. S., Jurkevich, L, Dewaele, P., Wambacq, P., and Oosterlinck, A., 1994. Speckle filtering of synthetic aperture 
radar images: A review. Remote Sensing Reviews, 8 (4) pp. 313-340. 
Lee, J. S., Grunes, M. R., and de Grandi, G., 1999. Polarimetric SAR speckle filtering and its implication for 
classification. IEEE Trans on Geoscience and Remote Sensing, 37 (5), pp. 2363-2373. 
Lopes, A., and Sery, F., 1997. Optimal speckle reduction for the product model in multilook polarimetric SAR imagery 
and the Wishart distribution. IEEE Trans on Geoscience and Remote Sensing, 35 (3), pp. 632-647. 
Mallat, S., and Zhong, S., 1992. Characterization of signals from multiscale edges. IEEE Trans on Pattern Analysis and 
Machine Intelligence, 14, 710-732. 
Novak, L. M., and Burl, M. C., 1990. Optimal speckle reduction in polarimetric SAR imagery. IEEE Trans on 
Aerospace and Electronic Systems, 26, pp. 293-305. 
Tukey, J. W., 1977. Exploratory Data Analysis. Addison-Wesley, Reading, Massachusetts. 
  
International Archives of Photogrammetry and Remote Sensing. Vol. XXXIII, Part B1. Amsterdam 2000. 95 
 
	        
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