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Hybrid finite element/moment method solution of two-dimensional scattering problems

机译:二维散射问题的有限元/矩混合法求解

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Describes the solution of a two-dimensional scattering problem that consists of a strip embedded in the coating of infinite ground plane containing an aperture that is backed by a cavity. The cavity may be arbitrarily shaped and inhomogeneously filled. The problem under consideration consists of two distinct regions. The external region is very well suited to solution via spectral-domain moment method (MoM). Due to its geometric and material complexity, the internal region is best treated using a partial differential equation (PDE) technique such as vector (edge element) FEM. Clearly, solution of the entire problem with either technique alone is likely to be very difficult and to generate a numerical model that is very computationally intensive, inaccurate or both. An exception to the above statement occurs when the cavity is homogeneously-filled and its cross-section is rectangular. Results from this special case are used to validate the hybrid approach involving both methods. The system of equations generated by the hybrid method can be viewed as the concatenation of a small dense system (from MoM) with a large sparse system (from FEM). This partially sparse, partially dense system is solved using a costume biconjugate gradient routine which is specifically designed for the system generated by the hybrid method.
机译:描述了二维散射问题的解决方案,该问题由嵌入无限地面平面涂层中的条带组成,该条带中包含一个由空腔支撑的孔。空腔可以是任意形状的并且可以不均匀地填充。正在考虑的问题包括两个不同的区域。外部区域非常适合通过谱域矩量法(MoM)求解。由于其几何和材料复杂性,最好使用偏微分方程(PDE)技术(例如矢量(边缘元素)FEM)处理内部区域。显然,仅使用这两种技术来解决整个问题就很困难,并且生成的数值模型的计算量很大,不准确或两者兼而有之。当腔体被均匀填充且其横截面为矩形时,会发生上述陈述的例外情况。此特殊情况的结果用于验证涉及这两种方法的混合方法。可以将通过混合方法生成的方程组看作是一个小密集系统(来自MoM)和一个大稀疏系统(来自FEM)的串联。使用服装双共轭梯度例程可解决此部分稀疏,部分密集的系统,该例程是专门为通过混合方法生成的系统设计的。

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