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Electromagnetic scattering analysis of coated conductors with edgesusing the method of auxiliary sources (MAS) in conjunction with thestandard impedance boundary condition (SIBC)

机译:使用辅助源方法(MAS)结合标准阻抗边界条件(SIBC)对带有边缘的涂层导体进行电磁散射分析

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摘要

A novel combination of the method of auxiliary sources (MAS) and the standard impedance boundary condition (SIBC) is employed in the analysis of transverse magnetic (TM) plane wave scattering from infinite, coated, perfectly conducting cylinders with square cross sections. The scatterer is initially modeled by a SIBC surface and the scattering mechanism is subsequently analyzed via MAS. Although SIBC as well as MAS possess theoretical limitations with regard to an edge, the numerical results show that the MAS/SIBC method provides results of high accuracy for a range of structures with edges. The SIBC modeling of coated conductors with edges has previously been investigated in the literature and thus, this work focuses on comparing MAS and the method of moments (MoM) for SIBC surfaces (MoM/SIBC). A detailed complexity analysis shows that the MAS/SIBC method is, under certain conditions, more efficient than the MoM/SIBC method, proving that the proposed novel combination is a powerful and advantageous computational tool
机译:辅助源方法(MAS)和标准阻抗边界条件(SIBC)的新颖结合被用于分析无限大,有涂层的,具有正方形横截面的导电圆柱体的横向磁(TM)平面波散射。最初通过SIBC表面对散射体进行建模,然后通过MAS分析散射机理。尽管SIBC和MAS在边缘方面都有理论上的局限性,但数值结果表明,MAS / SIBC方法为一系列带有边缘的结构提供了高精度的结果。先前已经在文献中研究了带有边缘的涂层导体的SIBC建模,因此,这项工作着重于比较MAS和SIBC表面的矩量法(MoM)(MoM / SIBC)。详细的复杂度分析表明,在一定条件下,MAS / SIBC方法比MoM / SIBC方法更有效,证明了所提出的新颖组合是一种强大而有利的计算工具

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