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Electromagnetic scattering from multilayer rough surfaces based on extended boundary condition formulation and transition matrix approach

机译:基于延伸边界条件制定与转换矩阵方法的多层粗糙表面电磁散射

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The electromagnetic scattering of rough surface has been investigated extensively for the past decades. There exist analytical solutions to rough surface scattering such as small perturbation method (SPM) or Kirchhoff approximation (KA). These analytical solutions, however, are limited to either small or large roughness regimes. Recent efforts have been put forth to study scattering from multilayer rough surface in the application of deep soil moisture estimation. In this paper, multilayer rough surface scattering is analyzed based on an approach which combines extended boundary condition formulation (EBC) and transition matrix method. From the Floquet theorem, the Floquet modes translate into the coherent reflection and transmission coefficients in their corresponding scattering directions. To account for coherent multiple interactions between rough surface layers, transition matrix approach is used. Each Floquet mode direction is considered a port of a multiport system and network theory is used to characterize cascaded rough surface layers. Bistatic scattering coefficients are then obtained by incoherently averaging the power computed from the resultant Floquet modes in the scattering directions. Therefore, the electromagnetic wave interactions in multilayer rough surfaces are analyzed in a very efficient way by applying EBC to each rough surface and then cascading iteratively transition matrix of each layer interface. Finally, the results are validated against the analytical SPM solution to two-layer rough surface scattering.
机译:粗糙表面的电磁散射已经在过去几十年中进行了广泛的研究。存在对粗糙表面散射的分析解,例如小的扰动方法(SPM)或Kirchhoff近似(Ka)。然而,这些分析解决方案仅限于小或大的粗糙度制度。最近的努力已经提出了在深土水分估算中从多层粗糙表面研究散射。本文基于结合扩展边界条件制剂(EBC)和转换矩阵法的方法,分析多层粗糙表面散射。从Foquet定理,浮子模式转化为它们相应的散射方向的相干反射和透射系数。为了考虑粗糙表面层之间的相干多个相互作用,使用转换矩阵方法。每个浮子模式方向被认为是多端口系统的端口,网络理论用于表征级联粗糙表面层。然后,通过冲突地平均从由所得浮子模式中的散射方向计算的功率不相干的功率来获得双面散射系数。因此,通过将EBC施加到每个粗糙表面,然后级联每个层界面的迭代转换矩阵以非常有效的方式分析多层粗糙表面中的电磁波相互作用。最后,将结果与分析SPM溶液验证到两层粗糙表面散射。

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