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Generalized Partial Element Equivalent Circuit (PEEC) Modeling With Radiation Effect

机译:具有辐射效应的广义部分元等效电路(PEEC)建模

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摘要

In this paper, a new frequency-domain formulation of the partial element equivalent circuit (PEEC) model incorporating the concept of generalized complex partial inductance and pure real capacitance is introduced for modeling of 3-D structures, to which the radiation effect is not negligible. Unlike conventional PEEC-based models, the proposed formulation accounts for the radiation effect by introducing physically meaningful complex-valued inductors and pure real-valued capacitors. In essence, the imaginary part of such an inductor represents a frequency-dependent radiation resistance. Having introduced the complex inductance, there is no inversion of the complex matrix of coefficients of potential, which is not physically meaningful and inevitably creates negative resistance. It is proven in this paper that the imaginary part of the generalized complex inductance for a short dipole exactly reflects the radiation resistance of the dipole. Several numerical examples are given to validate the proposed theory. The results obtained are in good agreement with those from commercial full-wave EM solvers, showing the potential of this technique for analyzing and designing high-frequency and high-speed electronic devices.
机译:在本文中,引入了包含广义复数部分电感和纯实电容的概念的部分元素等效电路(PEEC)模型的新频域公式化,以对3-D结构建模,其辐射效应不可忽略。与传统的基于PEEC的模型不同,建议的公式通过引入具有物理意义的复值电感器和纯实值电容器来说明辐射效应。本质上,这种电感器的虚部代表了随频率变化的辐射电阻。引入了复数电感之后,势系数的复数矩阵就不会反转,这在物理上没有意义,并且不可避免地会产生负电阻。本文证明,短偶极子的广义复电感的虚部正好反映了偶极子的辐射电阻。给出了几个数值例子来验证所提出的理论。获得的结果与商用全波EM解算器的结果吻合良好,表明了该技术在分析和设计高频和高速电子设备方面的潜力。

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