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Effect of shadowing on electromagnetic scattering from rough ocean wavelike surfaces at small grazing angles

机译:小掠角下阴影对粗糙海浪表面电磁散射的影响

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A hybrid moment-method/geometrical-theory-of-diffraction technique (MM/GTD) has been implemented to numerically calculate the electromagnetic scattering from one-dimensionally rough surfaces at extreme illumination angles (down to 0/spl deg/ grazing). The hybrid approach allows the extension of the modeled scattering surface to infinity, avoiding the artificial edge diffraction that prevents use of the standard moment method at the smallest grazing angles, Numerical calculation of the backscattering from slightly rough large-scale surfaces approximating ocean wave features shows that roughness in strongly shadowed regions can contribute significantly to the total backscatter at vertical polarization. This is observed when the shadowing obstacle is several wavelengths high, and the magnitude of the shadow-region contribution does not depend on the radius-of-curvature of the shadowing feature. Strongly shadowed roughness does not significantly contribute to the backscatter at horizontal polarization, although weakly shadowed roughness near the incidence shadow boundary does. The calculations indicate that a shadowing-corrected two-scale model may be able to predict the distributed-surface portion of the sea-surface scattering from the ocean surface at grazing angles down to about 15/spl deg/, but at lower grazing the shadowing and large-scale curvature of the surface prevent the establishment of a Bragg resonance and invalidate the model.
机译:已经实现了一种混合的矩量法/几何几何理论(MM / GTD)技术,以数字方式计算一维粗糙表面在极端照明角度(低至0 / spl度/掠射)下的电磁散射。混合方法允许将模型化的散射表面扩展到无穷大,避免了人工边缘衍射,从而阻止了在最小掠角下使用标准矩量法的计算。从近似粗糙的大尺度表面到海浪特征的反向散射的数值计算表明强烈阴影区域的粗糙度可显着影响垂直极化时的总反向散射。当遮挡障碍物的波长高几个波长时,可以观察到这一点,并且遮挡区域贡献的大小不取决于遮挡特征的曲率半径。虽然在入射阴影边界附近的弱阴影粗糙度确实会造成严重阴影,但在水平极化时,阴影的粗糙度不会显着影响反向散射。计算表明,阴影校正的两尺度模型可能能够预测从低至约15 / spl deg /的掠射角,但在较低的掠射阴影下,来自海洋表面的海面散射的分布表面部分。表面的大曲率会阻止建立布拉格共振并使模型失效。

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