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Incorporation of Multiport Lumped Networks Into the Hybrid Time-Domain Finite-Element Analysis

机译:将多端口集总网络纳入混合时域有限元分析

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摘要

A systematic and efficient algorithm is presented for incorporating multiport lumped networks in terms of admittance matrices into a hybrid field-circuit solver based on the extended time-domain finite-element method. The Laplace-domain admittance matrices are cast into the time-domain stepping equations for port voltages and currents to form a lumped-network subsystem, which is then interfaced with the finite-element and circuit subsystems through shared ports. While the port voltages of the lumped-network subsystem are determined by the finite-element and circuit subsystems, its port currents are treated as external current excitations for the finite-element and circuit subsystems. All the lumped-network port variables are then eliminated from the final expressions to form a global system for only the finite-element and circuit unknowns. The proposed algorithm further extends the capability of the existing field-circuit solver to model more complex and mixed-scale hybrid circuits, and the algorithm is validated and demonstrated through numerical examples.
机译:提出了一种基于扩展时域有限元方法的,基于导纳矩阵的多端口集总网络到混合场电路求解器的系统高效算法。将拉普拉斯域导纳矩阵转换为端口电压和电流的时域步进方程,以形成集总网络子系统,然后通过共享端口将其与有限元和电路子系统对接。集总网络子系统的端口电压由有限元和电路子系统确定,但其端口电流被视为有限元和电路子系统的外部电流激励。然后,从最终表达式中消除所有集总网络端口变量,以形成仅适用于有限元和电路未知数的全局系统。所提出的算法进一步扩展了现有场电路求解器建模更复杂和混合比例混合电路的能力,并通过数值实例对该算法进行了验证和演示。

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