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Analysis of multiple scattering from two-dimensional dielectric sea surface with iterative Kirchhoff approximation 被引量:1

Analysis of multiple scattering from two-dimensional dielectric sea surface with iterative Kirchhoff approximation
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摘要 An iterative method in the Kirchhoff approximation is proposed for high frequency multiple electromagnetic scattering from two-dimensional dielectric sea surface. The multiple interaction of the scattering field is characterized with the corrected electromagnetic currents of the wind-driven sea surface. The actual surface currents are approximated with the iterative solution of the corrected currents. A newly developed sea spectrum, Elfouhaily spectrum, is utilized to build the sea surface model. The shadowing correction is improved by the Dept-Buffer algorithm. The validity of the iterative Kirchhoff approximation is verified by the agreement of backscattering coefficients with the measured data. An iterative method in the Kirchhoff approximation is proposed for high frequency multiple electromagnetic scattering from two-dimensional dielectric sea surface. The multiple interaction of the scattering field is characterized with the corrected electromagnetic currents of the wind-driven sea surface. The actual surface currents are approximated with the iterative solution of the corrected currents. A newly developed sea spectrum, Elfouhaily spectrum, is utilized to build the sea surface model. The shadowing correction is improved by the Dept-Buffer algorithm. The validity of the iterative Kirchhoff approximation is verified by the agreement of backscattering coefficients with the measured data.
出处 《Chinese Physics B》 SCIE EI CAS CSCD 2010年第8期379-383,共5页 中国物理B(英文版)
基金 Project supported by the National Natural Science Foundation of China(Grant No.60871070) the National Pre-research Foundation and the Foundation of National Electromagnetic Scattering Laboratory,China
关键词 sea surface multiple scattering iterative methods shadowing correction sea surface, multiple scattering, iterative methods, shadowing correction
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