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A hybridization technique for MLFMM utilizing generalized admittance matrices for a large class of cavity backed aperture scattering problems

机译:MLFMM的一种混合技术,利用广义导纳矩阵来解决一类大型的腔背孔散射问题

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An efficient technique for the analysis of electromagnetic problems involving large metallic bodies with arbitrary complex interior and a number of apertures is proposed. Typical applications for this technique are the computation of EMC related transfer-functions of the electromagnetic field, describing the coupling of energy into complex systems as well as the computation of the RCS of complex cavities in large metallic scatterers. The proposed method is based on the combination of generalized admittance matrices (GAMs) for the apertures with MLFMM (multilevel fast multipole method) for the outer problem. The GAMs are first computed by the most appropriate technique for the complex interior problem (e.g. FDTD). In the second step of this technique, the admittance matrices are incorporated into the MLFMM-accelerated iterative MoM solution process. This technique is especially suited for coupling studies of complex systems requiring many different field incident angles, since the GAMs are computed only once.
机译:提出了一种用于分析电磁问题的有效技术,该电磁问题涉及具有任意复杂内部和许多孔的大型金属体。该技术的典型应用是计算电磁场中与EMC有关的传递函数,描述能量耦合到复杂系统中,以及计算大型金属散射体中复杂腔体的RCS。所提出的方法是基于用于孔的广义导纳矩阵(GAM)与用于外部问题的MLFMM(多级快速多极方法)的组合。首先通过最合适的技术来计算GAM,以解决复杂的内部问题(例如FDTD)。在此技术的第二步中,将导纳矩阵合并到MLFMM加速的迭代MoM解决方案过程中。由于GAM仅计算一次,因此该技术特别适用于需要许多不同场入射角的复杂系统的耦合研究。

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