Abstract
A novel implementation of aggressive space mapping (ASM) for the automatic layout synthesis of planar metamaterial structures is outlined in this article. Specifically, we employ a model-trust region optimisation approach to significantly reduce the computational burden associated with the direct optimisation of high-fidelity models. A Visual Basic for application (VBA) link to a commercial full-wave electromagnetic (EM) solver is created, to ensure that the automated Matlab-based platform has complete control of the design and analysis of the entire ASM process. The validity and e±ciency of our approach is demonstrated with examples of complementary split-ring resonator (CSRR)-loaded transmission lines, comparing both modified and unmodified version of the quasi-Newton iteration within the ASM framework.
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CITATION STYLE
Bradley, P. J. (2013). Quasi-Newton model-trust region approach to surrogate-based optimisation of planar metamaterial structures. Progress In Electromagnetics Research B, (47), 1–17. https://doi.org/10.2528/PIERB12100507
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