DocumentCode :
903744
Title :
A fast physical optics (FPO) algorithm for high frequency scattering
Author :
Boag, Amir
Author_Institution :
Dept. of Electr. Eng - Phys. Electron., Tel-Aviv Univ., Israel
Volume :
52
Issue :
1
fYear :
2004
Firstpage :
197
Lastpage :
204
Abstract :
A novel algorithm referred as the fast physical optics (FPO) for computing the back-scattered field over a range of aspect angles and frequencies is presented. The computation is performed in the framework of the conventional physical optics approximation appropriate for the high frequency scattering regime. The proposed algorithm is, also, directly applicable to fixed angle bistatic configurations and a variety of single scattering formulations. The method comprises two steps. First, a decomposition of the scatterer into subdomains and computation of the pertinent scattering characteristics of each subdomain. Second, interpolation, phase-correction and aggregation of the scattering patterns of the subdomains into the final pattern of the whole body. A multilevel algorithm is formulated via a recursive application of the domain decomposition and aggregation steps. The computational structure of the multilevel algorithm resembles that of the FFT. The proposed method is especially suited for generation of synthetic data for radar imaging simulation.
Keywords :
backscatter; electromagnetic wave scattering; interpolation; physical optics; radar cross-sections; radar imaging; FFT; aspect angle; back-scattered field computation; domain decomposition; electromagnetic scattering pattern aggregation; fast physical optics algorithm; fixed angle bistatic configuration; high frequency scattering regime; interpolation; multilevel algorithm; phase-correction; radar cross sections; radar imaging simulation; recursive application; scatterer decomposition; single scattering formulation; subdomain scattering characteristics; synthetic aperture radar; synthetic data generation; Computational modeling; Frequency; High performance computing; Interpolation; Optical computing; Optical scattering; Physical optics; Physics computing; Radar imaging; Radar scattering;
fLanguage :
English
Journal_Title :
Antennas and Propagation, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-926X
Type :
jour
DOI :
10.1109/TAP.2003.822426
Filename :
1268315
Link To Document :
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