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Rapid design of miniaturised branch-line couplers through concurrent cell optimisation and surrogate-assisted fine-tuning

机译:通过同时进行的单元优化和替代辅助的微调,快速设计微型分支线耦合器

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摘要

In this study, the authors introduce a methodology for low-cost simulation-driven design optimisation of highly miniaturised branch-line couplers (BLCs). The first stage of their design approach exploits fast concurrent optimisation of geometrically dependent, but electromagnetically isolated cells that constitute a BLC. The cross-coupling effects between the cells are taken into account in the second stage, where a surrogate-assisted fine-tuning procedure is executed. The tuning process is based on space-mapping-enhanced low-fidelity model of the entire BLC. The latter is constructed by cascading local response surface approximations (RSAs) of the BLC building blocks. The efficiency of their technique is demonstrated through the design of two compact BLCs. A considerable scale of miniaturisation has been achieved in both cases (83.7 and 87.4%, respectively), at the computational cost corresponding to a few EM simulations of the respective BLC. Comparison of numerical results with several surrogate-based design approaches as well as an experimental verification of the final designs are also provided.
机译:在这项研究中,作者介绍了一种用于高度小型化分支线耦合器(BLC)的低成本仿真驱动设计优化的方法。他们设计方法的第一阶段利用快速并行优化构成BLC的几何相关但电磁隔离的单元。在第二阶段考虑单元之间的交叉耦合效应,在第二阶段中执行代理辅助的微调过程。调整过程基于整个BLC的空间映射增强的低保真模型。后者是通过级联BLC构建块的局部响应面近似(RSA)来构造的。通过设计两个紧凑的BLC证明了其技术的效率。在这两种情况下,已经实现了相当大的微型化规模(分别为83.7%和87.4%),其计算成本对应于各个BLC的一些EM模拟。还提供了数值结果与几种基于代理的设计方法的比较以及最终设计的实验验证。

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