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Bistatic scattering coefficient from one- and two-dimensional random surfaces using the stationary phase and scalar approximation with shadowing effect: comparisons with experiments and application to the sea surface

机译:一维和二维随机表面的双站散射系数,使用具有阴影效应的固定相和标量近似:与实验的比较和在海面的应用

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In this paper, the bistatic scattering coefficient from one- and two-dimensional random surfaces using the stationary phase method and scalar approximation with shadowing effect is investigated. Both of these approaches use the Kirchhoff integral. With the stationary phase, the bistatic cross section is formulated in terms of the surface height joint characteristic function where the shadowing effect is investigated. In the case of the scalar approximation, the scattering function is computed from the previous characteristic function and in terms of expected values for the integrations over the slopes, where the shadowing effect is analysed analytically. Both of these formulations are compared with experimental data obtained from a Gaussian one-dimensional randomly rough perfectly-conducting surface. With the stationary-phase method, the results are applied to a two-dimensional sea surface. [References: 26]
机译:本文利用固定相方法和带阴影效应的标量近似研究了一维和二维随机表面的双基地散射系数。这两种方法都使用基尔霍夫积分。在固定相的情况下,根据研究阴影效应的表面高度联合特征函数来公式化双静态横截面。在标量近似的情况下,散射函数是根据先前的特征函数并根据斜坡上积分的期望值来计算的,其中分析了阴影效应。将这两个公式与从高斯一维随机粗糙的完美导电表面获得的实验数据进行比较。使用固定相方法,将结果应用于二维海面。 [参考:26]

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