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Computations of Electromagnetic Wave Scattering from Penetrable Composite Targets using a Surface Integral Equation Method with Multiple Traces

机译:使用具有多个迹线的表面整体方程方法从渗透复合目标的电磁波散射计算

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We present a surface integral equation domain decomposition method (SIE-DDM) for time harmonic electromagnetic wave scattering from bounded composite targets. The proposed SIE-DDM starts by partitioning the composite object into homogeneous sub-regions with constant material properties. Each of the sub-regions is further decomposed into two sub-domains (the interior of the penetrable object, and the exterior free space), separated on the material interface. The interior and the exterior boundary value problems are coupled to each other through the Robin transmission conditions, which are prescribed on the material/domain interface. A generalized combined field integral equation is employed for both the interior and the exterior sub-domains. Convergence studies of the proposed SIE-DDM are included for both single homogeneous object and composite penetrable scatterers. Furthermore, a complex large-scale simulation is conducted to demonstrate the capability of the proposed method to model multi-scale electrically large targets.
机译:我们介绍了一种表面整体式域分解方法(SIE-DDM),用于从有界复合目标的时间谐波电磁波散射。所提出的SIE-DDM通过将复合物体分区成具有恒定材料特性的均质子区域开始。每个子区域进一步分解成两个子畴(可渗透物体的内部,和外部自由空间),在材料界面上分离。内部和外部边界值问题通过罗宾传输条件彼此耦合,这些传输条件在材料/域界面上规定。用于内部和外部子域的广义组合场积分方程。对于单个均匀的物体和复合可渗透散射体,包括所提出的SIE-DDM的收敛研究。此外,进行复杂的大规模模拟以证明所提出的方法模拟多尺度电大目标的能力。

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