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Rapid simulation-driven design of miniaturised dual-band microwave couplers by means of adaptive response scaling

机译:通过自适应响应缩放快速实现小型双频微波耦合器的仿真驱动设计

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摘要

One of the major challenges in the design of compact microwave structures is the necessity of simultaneous handling of several objectives and the fact that expensive electromagnetic (EM) analysis is required for their reliable evaluation. Design of multi-band circuits where performance requirements are to be satisfied for several frequencies at the same time is even more difficult. In this work, a computationally efficient design of dual-band microstrip couplers is demonstrated by means of an adaptive response scaling (ARS) technique. ARS is a surrogate-assisted method that exploits a fast surrogate of the high-fidelity EM-simulation model of the coupler at hand constructed from its corrected equivalent circuit. ARS identifies nonlinear frequency and amplitude response scaling that accommodates the misalignment between the low- and high-fidelity models. Due to exploiting the knowledge embedded in the low-fidelity model ARS surrogate exhibits excellent generalisation capability. It is demonstrated here by optimisation of a dual-band microstrip coupler with enhanced bandwidth, working at 1 GHz and 2 GHz frequencies. The optimised design has been obtained at the cost of just a few high-fidelity EM simulations of the structure. Numerical comparisons indicate superiority of ARS over competitive surrogate-assisted techniques. Experimental validation is also provided.
机译:设计紧凑的微波结构的主要挑战之一是必须同时处理多个物镜,并且需要进行昂贵的电磁(EM)分析才能对其进行可靠的评估。要同时满足几个频率的性能要求的多频带电路的设计就更加困难。在这项工作中,通过自适应响应缩放(ARS)技术演示了双频带微带耦合器的高效计算设计。 ARS是一种替代辅助方法,它利用由其校正后的等效电路构成的耦合器的高保真EM仿真模型的快速替代。 ARS识别非线性频率和幅度响应缩放,以适应低保真模型和高保真模型之间的不对齐情况。由于利用了低保真模型中嵌入的知识,ARS代理具有出色的泛化能力。此处通过优化具有增强带宽的双频微带耦合器进行了演示,该耦合器在1 GHz和2 GHz频率下工作。仅通过几次结构的高保真度EM仿真就获得了优化的设计。数值比较表明ARS优于竞争替代辅助技术。还提供了实验验证。

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