Waves in Random Media, volume 13, issue 3, pages 165-176

Analytical comparison between the surface current integral equation and the second-order small-slope approximation

Tanos Elfouhaily 1
Maminirina Joelson 1
Stéphan Guignard 1
Donald R Thompson 2
1
 
Centre National de la Recherche Scientifique, IRPHE IOA , 49 Rue Joliot-Curie, F-13384, Marseille CEDEX 13, France
2
 
Applied Physics Laboratory, Johns Hopkins University, Laurel, MD 20723 USA.
Publication typeJournal Article
Publication date2003-07-01
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ISSN09597174, 13616676
General Physics and Astronomy
Abstract
This paper is the third in a series discussing a new approximate bistatic model for electromagnetic scattering from perfectly conducting rough surfaces. Our previous approach supplemented the Kirchhoff model through the addition of new terms involving linear orders in slope and surface elevation differences that arise naturally from a second iteration of the surface current integral equation. This completion of the Kirchhoff was shown to provide the correct first-order small perturbation method (SPM-1) in the general bistatic context. The agreement with SPM-1 was achieved because differences of surface heights are no longer expanded in powers of surface slope. While consistent with SPM, our previous formulation fails to reconverge toward the Kirchhoff model, at some incidence and scattered angles, when the illuminated surface satisfies the high frequency roughness condition. This weakness is also shared with the first-order small slope approximation (SSA-1) which is structurally equivalent to our...

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