DocumentCode :
3508928
Title :
Joint physical optics and FDTD analysis of microwave scattering
Author :
Zhang, B. ; Primak, S. ; LoVetri, J. ; Kashyap, S.
Author_Institution :
Dept. of Electr. Eng., Univ. of Western Ontario, London, Ont., Canada
fYear :
1998
fDate :
1998
Firstpage :
371
Lastpage :
378
Abstract :
A simple preprocessing algorithm of synthetic aperture radar (SAR) data has been suggested. As the first step the information about the location of important non-dispersive scatterers predicted by the Physical Optics (PO) approximation is extracted and the corresponding SAR image is built. This image in many cases is similar to the "optical" image of the target and can be useful in target identification and training of human operators. As the next step more information can be extracted from more accurate approximations of the real target response, such as the GTD approximation, FDTD or other numerical simulation. This additional information describes a shape of a specific scatterer predicted by PO. Extraction of the magnitude of the scatterers and their dispersive properties by conventional spectral estimation techniques can be simplified if time localization is used. The resonant behaviour of the target response can also be ignored which results in more clean and recognizable SAR images
Keywords :
electromagnetic wave scattering; finite difference time-domain analysis; physical optics; radar imaging; radar theory; synthetic aperture radar; FDTD analysis; GTD approximation; SAR imaging; microwave scattering; numerical simulation; physical optics; signal processing algorithm; synthetic aperture radar; target identification; ultra-wideband radar; Adaptive optics; Data mining; Finite difference methods; Humans; Numerical simulation; Optical scattering; Physical optics; Radar scattering; Synthetic aperture radar; Time domain analysis;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Ultra-Wideband Short-Pulse Electromagnetics 4, 1998
Conference_Location :
Tel-Aviv
Print_ISBN :
0-306-46206-0
Type :
conf
DOI :
10.1109/UWBSP.1998.818970
Filename :
818970
Link To Document :
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