EFIE-IBC 公式的稳定性分析和通过空间滤波进行正则化

IF 3.5 Q2 ENGINEERING, ELECTRICAL & ELECTRONIC
Margaux Bruliard;Marcello Zucchi;Giuseppe Vecchi
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引用次数: 0

摘要

阻抗边界条件(IBC)是一种非常重要的均匀化近似,特别是在超表面设计中。然而,IBC边值问题(EFIE-IBC)的标准电场积分方程公式已被证明会导致一些实际感兴趣的阻抗范围的数值不稳定,特别是电感电抗。这一贡献表明,数值不稳定性是由于有关表面阻抗值的EFIE-IBC算子的内在病态,它可以退化为不允许确定解的病态。因此,EFIE-IBC算子的稳定离散化需要正则化。通过系统地限制基函数的波数谱,从而提出了一种正则化方法,这相当于一种空间滤波。这是使用全域基函数实现的。考虑到可能的不适定性,我们设计了两个“基真”测试示例,从物理超表面开始,然后通过IBC进行近似。与地面真值结果的比较表明,标准EFIE-IBC可能会导致显着误差,并且这些误差可能难以检测。相反,正则化系统产生的稳定结果与IBC近似的物理结构的基本真理很好地匹配。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stability Analysis of the EFIE-IBC Formulation and Regularization via Spatial Filtering
The Impedance Boundary Condition (IBC) is a homogenization approximation of great importance, especially in the design of metasurfaces. However, the standard Electric-Field Integral-Equation formulation of the IBC boundary-value problem (EFIE-IBC) has been shown to lead to numerical instabilities for some impedance ranges of practical interest, in particular inductive reactances. This contribution shows that the numerical instabilities are due to an intrinsic ill-conditioning of the EFIE-IBC operator for the concerned surface impedance values, that can degenerate into an ill-posedness that does not allow for definite solution. Hence, the stable discretization of the EFIE-IBC operator requires a regularization. The analysis leads to a proposed regularization by systematically limiting the wavenumber spectrum of the basis functions, which amounts to a spatial filtering. This is implemented using entire-domain basis functions. Given the possible ill-posedness, we devise two “ground truth” test examples starting from a physical metasurface, then approximated via IBC. Comparison to ground truth results shows that the standard EFIE-IBC may lead to significant errors, and that these may be challenging to detect. Conversely, the regularized system yields stable results that well match the ground truth of the physical structure of which the IBC is an approximation.
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来源期刊
CiteScore
6.50
自引率
12.50%
发文量
90
审稿时长
8 weeks
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