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Toward improved time domain stability and passivity for full-wave PEEC models

机译:改善全波PEEC模型的时域稳定性和无源性

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摘要

It is well known that time domain integral equation techniques may suffer from stability problems and frequency domain models may provide non-passive results. A main source of these issues is the delay of the coupled elements. In the classical Partial Element Equivalent Circuit (PEEC) method, a single delay was used for each couple of partial element which results in a delay differential equation with reduced stability and accuracy. In this paper, we consider multiple delay coefficients which can be used for both the time and frequency domain. Also, filters are introduced which remove unwanted eigenvalues or resonances in the partial element couplings. This can substantially improve the response of the frequency domain and the time domain models. Stability improvements also means passivity improvements.
机译:众所周知,时域积分方程技术可能会遇到稳定性问题,而频域模型可能会提供非被动结果。这些问题的主要根源是耦合元件的延迟。在经典的分部元件等效电路(PEEC)方法中,对每对分部元件使用单个延迟,这会导致延迟微分方程的稳定性和准确性降低。在本文中,我们考虑了可用于时域和频域的多个延迟系数。而且,引入了滤波器,该滤波器去除了部分元件耦合中不想要的特征值或共振。这可以大大改善频域和时域模型的响应。稳定性的提高也意味着被动性的提高。

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