改进了平面微波结构三维有限元电磁模拟器仿真边界盒的建立程序和网格划分方案

Z. Brito-Brito, J. Rayas-Sánchez, J. Chávez-Hurtado
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引用次数: 0

摘要

本文提出了一种适用于平面微波电路的三维有限元全波电磁模拟器的边界框和离散网格配置的改进方法。我们的程序采用了一种网格划分方案,该方案不仅考虑了最高模拟频率下的波长,还考虑了与模拟结构相关的几何对象以及预期的物理行为。与基于体积域的传统网格划分方案相比,我们展示了基于物理的网格划分如何显著改善平面结构的预期EM行为,并降低其对模拟边界盒的敏感性。我们还展示了在平面结构上使用直接优化时,合理但不充分的网格划分如何降低成功的可能性,并使优化过程的计算成本更高。用COMSOL模拟了一个带l型谐振腔的五阶带阻微带滤波器。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Enhanced procedure to setup the simulation bounding box and the meshing scheme of a 3D finite element EM simulator for planar microwave structures
We present an enhanced procedure to properly configure the simulation bounding box and discretization meshing scheme of a 3-D finite element full-wave EM simulator as applied to planar microwave circuits. Our procedure utilizes a meshing scheme that takes into account not only the wavelength at the highest simulated frequency, but also the geometrical objects associated to the simulated structure, as well as the expected physics behavior. We demonstrate how our physics-based meshing significantly improves the expected EM behavior of planar structures and decreases their sensitivity to the simulation bounding box, with respect to the conventional meshing scheme based on volumetric domains. We also show how a reasonable but inadequate meshing reduces the possibility of success when using direct optimization on the planar structure and makes the optimization process computationally more expensive. Our procedure is illustrated by a fifth order bandstop microstrip filter with L-shaped resonators simulated with COMSOL.
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