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An improved hybrid FEM/MOM combining MLFMA for composite electromagnetic scattering

机译:结合MLFMA的改进有限元/ MOM混合电磁散射法。

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A generalized hybrid scheme combining finite element method (FEM) and the method of moments (MoM) accelerated by multilevel fast multipole algorithm (MLFMA) is first presented to investigate scattering from a 3-D dielectric object above a 2-D electrically large dielectric rough surface. The hybrid FEM/ MoM scheme is divided into the FEM region for the object based on Helmholtz's equation and the MOM region for the rough surface based on coupled integral function, which can greatly reduce the computed region. MLFMA is employed to reduce computation complexity of MOM region itself and coupling interaction matrices between MOM region and FEM region. Consequently the iterative solving process can be greatly accelerated. This genralized hybrid FEM/MOM is very suitable for investigating scattering characteristics of composite model composed of a complex material object and electrically large dielectric rough surface. Some examples verify this generalized hybrid FEM/MOM features high efficiency, low storage requirement, high accuracy and generality.
机译:首先提出了一种将有限元方法(FEM)与由多级快速多极子算法(MLFMA)加速的矩量方法(MoM)相结合的广义混合方案,以研究二维电大介质粗糙表面上的3-D电介质物体的散射表面。基于Helmholtz方程将FEM / MoM混合方案划分为对象的FEM区域和基于耦合积分函数的粗糙表面的MOM区域,可以大大减少计算区域。 MLFMA用于降低MOM区域本身的计算复杂度以及降低MOM区域与FEM区域之间的交互矩阵。因此,可以大大加快迭代求解过程。这种广义的混合有限元/ MOM非常适合研究由复杂材料对象和电大介电粗糙表面组成的复合模型的散射特性。一些示例证明了这种通用混合FEM / MOM具有高效,低存储需求,高精度和通用性的特点。

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