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首页> 外文期刊>AEU: Archiv fur Elektronik und Ubertragungstechnik: Electronic and Communication >Accelerated design optimization of miniaturized microwave passives by design reusing and Kriging interpolation surrogates
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Accelerated design optimization of miniaturized microwave passives by design reusing and Kriging interpolation surrogates

机译:设计重新设计和Kriging插值代理的集小型微波自由度的加速设计优化

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摘要

Electromagnetic (EM) analysis has become ubiquitous in the design of microwave components and systems. One of the reasons is the increasing topological complexity of the circuits. Their reliable evaluation-at least at the design closure stage-can no longer be carried out using analytical or equivalent network representations. This is especially pertinent to miniaturized structures, where considerable EM cross-coupling effects occurring in densely arranged layouts affect the performance in a non-negligible manner. Although mandatory, EM-driven design is normally associated with significant computational expenses. Consequently, expediting the procedures that require massive simulations, such as parametric optimization, is a practical necessity. In this paper, a framework for accelerated parameter tuning is proposed. The keystones of our methodology are a set of pre-existing designs optimized for various design objectives, as well as kriging interpolation surrogates. The latter are constructed to yield-for a given set of performance specifications-a reasonably good starting point and to enable rapid optimization by providing the initial approximation of the Jacobian matrix of the circuit outputs. The proposed approach is validated using two compact impedance matching transformers designed within the objective spaces defined by wide ranges of operating bandwidths. As demonstrated, the average tuning cost corresponds to a few EM simulations of the respective circuit despite large numbers of adjustable parameters. (C) 2020 Elsevier GmbH. All rights reserved.
机译:电磁(EM)分析在微波部件和系统的设计中变得无处不在。其中一个原因是越来越多的电路拓扑复杂性。它们的可靠性评估 - 至少在设计封闭阶段 - 不能再使用分析或等效网络表示来执行。这与小型化结构特别相关,其中在密集地布局中发生的相当大的EM交联效果以不可忽略的方式影响性能。虽然强制性的EM驱动的设计通常与重要的计算费用相关。因此,加快需要大规模仿真的程序,例如参数优化,是实际需要。本文提出了一种加速参数调谐的框架。我们的方法论的关键标准是一组针对各种设计目标优化的预先存在的设计,以及Kriging插值代理。后者构造成产生给定的一组性能规范 - 一种合理的起点,并且通过提供电路输出的初始近似来实现快速优化。使用两个紧凑的阻抗匹配变压器验证所提出的方法,该匹配变压器设计在由宽范围的操作带宽范围内限定的目标空间内。如所示,平均调谐成本对应于各个电路的少数EM模拟,尽管有大量可调节参数。 (c)2020 Elsevier GmbH。版权所有。

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