Robust multi-fidelity simulation-driven design optimization of microwave structures

S. Koziel, S. Ogurtsov
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引用次数: 36

Abstract

Simple and robust optimization methodology for the simulation-driven design of microwave structures is presented. Our technique exploits a set of EM-based models of increasing discretization density that are sequentially optimized with the optimal design of the “coarser” model being the initial design for the “finer” one. The final design is refined using a polynomial-based approximation model constructed from the coarse-discretization EM-simulation data and corrected using single high-fidelity EM-simulation. The presented technique is easy to implement. It is particularly suitable for structures for which simulation-driven design is a must (e.g., because of the lack of good theoretical models). Operation of our algorithm is demonstrated using two examples of planar ultrawideband antennas and a microstrip filter. In all cases, an optimal design is obtained at a low computational cost corresponding to a few high-fidelity EM simulations of the structure being optimized.
鲁棒多保真度仿真驱动微波结构设计优化
提出了一种简单、鲁棒的微波结构仿真驱动设计优化方法。我们的技术利用了一组基于em的模型来增加离散化密度,这些模型被依次优化,“粗”模型的优化设计是“细”模型的初始设计。最后的设计使用基于多项式的近似模型进行细化,该模型由粗离散化电磁仿真数据构建,并使用单个高保真电磁仿真进行校正。所提出的技术易于实现。它特别适用于必须进行仿真驱动设计的结构(例如,由于缺乏良好的理论模型)。以平面超宽带天线和微带滤波器为例,验证了算法的有效性。在所有情况下,通过对被优化结构进行一些高保真的EM模拟,以较低的计算成本获得了最优设计。
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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