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Surrogate modeling of impedance matching transformers by means of variable-fidelity electromagnetic simulations and nested cokriging

机译:通过可变保真电磁模拟和嵌套录制阻抗匹配变压器的替代模型

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摘要

Accurate performance evaluation of microwave components can be carried out using full-wave electromagnetic (EM) simulation tools, routinely employed for circuit verification but also in the design process itself. Unfortunately, the computational cost of EM-driven design may be high. This is especially pertinent to tasks entailing considerable number of simulations (eg, parametric optimization, statistical analysis). A possible way of alleviating these difficulties is utilization of fast replacement models, also referred to as surrogates. Notwithstanding, conventional modeling methods exhibit serious limitations when it comes to handling microwave components. The principal challenges include large number of geometry and material parameters, highly nonlinear characteristics, as well as the necessity of covering wide ranges of operating conditions. The latter is mandatory from the point of view of the surrogate model utility. This article presents a novel modeling approach that incorporates variable-fidelity EM simulations into the recently reported nested kriging framework. A combination of domain confinement due to nested kriging, and low-/high-fidelity EM data blending through cokriging, enables the construction of reliable surrogates at a fraction of cost required by single-fidelity nested kriging. Our technique is validated using a three-section miniaturized impedance matching transformer with its surrogate model rendered over wide range of operating frequencies. Comprehensive benchmarking demonstrates superiority of the proposed method over both conventional models and nested kriging.
机译:可以使用全波电磁(EM)仿真工具进行微波组件的准确性能评估,通常用于电路验证,也可以在设计过程本身中进行。不幸的是,EM-驱动设计的计算成本可能会很高。这对于需要相当数量的模拟(例如,参数优化,统计分析),这尤其有关。缓解这些困难的可能方法是利用快速替代模型,也称为代理。尽管如此,当涉及处理微波成分时,传统的建模方法表现出严重的限制。主要挑战包括大量几何和材料参数,高度非线性特性,以及覆盖宽范围的操作条件的必要性。后者是从视替代模型实用程序的点强制性的。本文提出了一种新颖的建模方法,将可变保真度EM模拟融入最近报告的嵌套Kriging框架中。由于嵌套的Kriging和低/高保真EM数据混合通过Cokriging而导致的域限制的组合使得单一保真性嵌套克里格需要的成本支付可靠的代理。我们的技术使用三截面小型化阻抗匹配变压器进行了验证,其代理模型在宽范围的操作频率范围内呈现。全面的基准测试证明了在传统模型和嵌套克里格上的提出方法的优越性。

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