基于 TLM 的时域邻接敏感性:技术现状与展望

M. Bakr
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引用次数: 0

摘要

近年来,高频结构的传输线建模(TLM)取得了很大的进展。Johns、Hoefer、Vahdlieck和其他人的开创性工作有助于使TLM成为一种强大的建模方法。这为基于tlm的伴随灵敏度分析的最新发展铺平了道路,这在本工作中进行了回顾。我们证明了最多使用一个额外的TLM模拟,可以获得任意目标函数对所有参数的一阶灵敏度,而不管它们的数量。对于s参数灵敏度分析,可以消除额外的模拟。我们还证明了完全瞬态响应的灵敏度也可以用一个伴随模拟来估计。通过两个算例说明了基于tlm的伴随灵敏度分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
TLM-based time domain adjoint sensitivities: State of the art and outlook
Over the years, Transmission Line Modeling (TLM) of high frequency structures has seen great advances. The pioneering work of Johns, Hoefer, Vahdlieck, and others have helped in making TLM a robust modeling approach. This paved the way for the most recent developments in TLM-based adjoint sensitivity analysis which is reviewed in this work. We show that using at most one extra TLM simulation, the first order sensitivities of an arbitrary objective function are obtained with respect to all parameters regardless of their number. The extra simulation can be eliminated for S-parameter sensitivity analysis. We also show that the sensitivities of complete transient responses can be estimated using also one adjoint simulation. TLM-based adjoint sensitivity analysis is illustrated through two examples.
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