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首页> 外文期刊>Fortschritt-Berichte VDI, Reihe 21. Elektrotechnik >Multiscale Modeling and Multirate Time-Integration of Field/Circuit Coupled Problems
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Multiscale Modeling and Multirate Time-Integration of Field/Circuit Coupled Problems

机译:现场/电路耦合问题的多尺度建模和多速率时间积分

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This treatise is intended for mathematicians and computational engineers that work on modeling, coupling and simulation of electromagnetic problems. This includes lumped electric networks, magnetoquasistatic field and semiconductor devices. Their coupling yields a multiscale system of partial differential algebraic equations containing device models of any dimension interconnected by the electric network. It is solved in time domain by multirate techniques that efficiently exploit the structure. The central idea is the usage of lumped surrogate models that describe latent model parts sufficiently accurate (e.g. the field model by an inductance) even if other model parts (e.g. the circuit) exhibit highly dynamic behavior. We propose dynamic iteration and a bypassing technique using surrogate Schur complements. A mathematical convergence analysis is given and numerical examples are discussed. They show a clear reduction in the computational costs compared to single rate approaches.
机译:本论文适用于从事电磁问题建模,耦合和仿真的数学家和计算工程师。这包括集总电网,准静态磁场和半导体器件。他们的耦合产生了多阶偏微分代数方程组,其中包含通过电网互连的任何尺寸的设备模型。它可以通过有效利用结构的多速率技术在时域上解决。中心思想是集总代理模型的使用,该模型描述了足够准确的潜在模型零件(例如通过电感的场模型),即使其他模型零件(例如电路)表现出很高的动态性能。我们提出了动态迭代和使用替代Schur补码的绕过技术。给出了数学收敛性分析并讨论了数值示例。与单速率方法相比,它们显示出计算成本的明显降低。

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