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A Geometrical Optics Model of Three Dimensional Scattering From a Rough Layer With Two Rough Surfaces

机译:从具有两个粗糙表面的粗糙层进行三维散射的几何光学模型

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摘要

An asymptotic method is described for predicting the bistatic normalized radar cross section of a rough homogeneous layer made up of two rough surfaces. The model is based on iteration of the Kirchhoff approximation to calculate the fields scattered by the rough layer, and is reduced to the high-frequency limit in order to obtain numerical results rapidly. Shadowing effects, significant for large incidence or scattering angles, are taken into account through the use of shadowing functions. The model is applicable for moderate to large surface roughnesses having small to moderate slopes, and for both lossless and lossy inner media. It was validated for a rough layer with a rough surface over a perfectly flat surface in a preceding contribution. Here, the extension of the model to a rough layer with two rough surfaces is developed, and results are presented to validate the asymptotic model by comparison with a numerical reference method.
机译:描述了一种渐进方法,用于预测由两个粗糙表面组成的粗糙均质层的双基地归一化雷达截面。该模型基于基尔霍夫(Kirchhoff)近似的迭代来计算由粗糙层散射的场,并减小到高频极限,以便快速获得数值结果。通过使用遮蔽功能,可以考虑对于大入射角或散射角而言明显的遮蔽效果。该模型适用于具有小到中等斜率的中到大表面粗糙度,以及无损和有损内部介质。在先前的贡献中,已针对在完美平坦表面上具有粗糙表面的粗糙层进行了验证。在此,开发了将模型扩展到具有两个粗糙表面的粗糙层的方法,并通过与数值参考方法进行比较,给出了验证渐近模型的结果。

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