A Potential-Based Surface Operator for Modeling Lossy Conductors from DC to High Frequencies

Shashwat Sharma, P. Triverio
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引用次数: 0

Abstract

Surface integral equation methods are appealing for the electromagnetic modeling of lossy conductors due to their ability to model the skin effect with only a surface mesh. However, they can be hindered by a lack of accuracy and numerical stability down to DC. We propose a new method based on electromagnetic potentials, rather than fields, which can accurately model lossy conductors from exactly DC to very high frequencies. Unlike existing potential-based methods, the proposed formulation involves deriving a surface operator for each object to model field penetration inside its volume, but does not significantly increase the number of unknowns compared to field-based methods. The accuracy of the proposed technique is verified numerically for structures representative of applications such as high-speed interconnects and electrically small antennas.
一种基于电位的表面算子用于模拟直流到高频的损耗导体
由于表面积分方程方法能够仅用表面网格对集肤效应进行建模,因此对有损导体的电磁建模具有吸引力。然而,它们可能会受到精度和数值稳定性不足的阻碍,直至DC。我们提出了一种基于电磁势的新方法,而不是基于场的方法,可以精确地模拟从直流电到甚高频的损耗导体。与现有的基于电位的方法不同,所提出的公式涉及为每个物体导出一个表面算子来模拟其体积内的场穿透,但与基于场的方法相比,并没有显著增加未知数的数量。在高速互连和电小天线等具有代表性的应用结构中,数值验证了所提出技术的准确性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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