微波元件的计算机辅助设计与结构优化

N. Mahdi, S. Bila, S. Verdeyme, M. Aubourg, C. Durousseau, A. Bessaudou, J. Puech, L. Estagerie, D. Pacaud, H. Leblond
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引用次数: 3

摘要

本文介绍了用于微波元件高级设计的计算机辅助设计(CAD)优化技术库的开发。采用有限元方法对微波元件进行建模,并采用实验设计法(DoE)、水平集法(LS)、拓扑梯度法(TG)和遗传算法(GA)对微波元件的尺寸和形状进行优化。通过迭代最小化与期望规格相关的成本函数,各种技术允许确定组件内2D或3D对象的最佳几何形状或拓扑结构。这些全局和局部优化方法耦合在一起,形成一个优化库,其中可以先后选择各种技术,以获得比单独应用方法更好的结果。通过设计具有改进的空载质量因数的介质谐振器来说明该方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Computer aided design and structural optimization for microwave components
This article describes the development of a library of computer-aided-design (CAD) optimization techniques for advanced design of microwave components. The microwave components are modeled by finite elements and their dimensions and shape are optimized using four methods: design of experiments (DoE), level-set method (LS), topology gradient method (TG) and genetic algorithm (GA). The various techniques allow determining the optimal geometry, shape or topology of 2D or 3D objects within the component, by minimizing iteratively a cost function related to desired specifications. These global and local optimization methods are coupled together resulting in an optimization library where the various techniques can be selected successively in order to acquire a much better result compared to methods applied solely. The approach is illustrated by the design of dielectric resonators with improved unloaded quality factor.
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