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Design optimisation of antennas using electromagnetic simulations and adaptive response correction technique

机译:使用电磁仿真和自适应响应校正技术的天线设计优化

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摘要

In this study, the authors describe a simple and reliable procedure for electromagnetic (EM) simulation-based design of antennas. The authors' approach exploits coarse-discretisation EM simulations (the low-fidelity antenna model) and the adaptive response correction (ARC) technique. ARC is used to enhance the low-fidelity model response so that it can serve as a cheap yet accurate representation of the high-fidelity EM model of the antenna under design. The ARC-based iterative correction-prediction process yields an optimised design at a low CPU cost corresponding to a few high-fidelity simulations of the antenna. The proposed approach is compared with direct optimisation of the high-fidelity model and to surrogate-based optimisation exploiting output space mapping. The results obtained for two antenna design cases indicate by reduction of the overall design cost that ARC allows for better utilisation of the knowledge embedded in the low-fidelity model than the simpler correction method.
机译:在这项研究中,作者描述了基于电磁(EM)仿真的天线设计的简单而可靠的过程。作者的方法利用了粗离散化EM仿真(低保真天线模型)和自适应响应校正(ARC)技术。 ARC用于增强低保真度模型的响应,因此它可以廉价,准确地表示所设计天线的高保真度EM模型。基于ARC的迭代校正预测过程以较低的CPU成本提供了优化的设计,这与天线的一些高保真仿真相对应。将所提出的方法与高保真模型的直接优化以及利用输出空间映射的基于替代的优化进行了比较。在两种天线设计案例中获得的结果表明,通过降低总体设计成本,与更简单的校正方法相比,ARC可以更好地利用低保真模型中嵌入的知识。

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