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Structural analysis of electrical circuits including magnetoquasistatic devices

机译:包括静磁器件的电路结构分析

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Modeling electric circuits that contain magnetoquasistatic (MQS) devices leads to a coupled system of differential-algebraic equations (DAEs). In our case, the MQS device is described by the eddy current problem being already discretized in space (via edge-elements). This yields a DAE with a properly stated leading term, which has to be solved in the time domain. We are interested in structural properties of this system, which are important for numerical integration. Applying a standard projection technique, we are able to deduce topological conditions such that the tractability index of the coupled problem does not exceed two. Although index-2, we can conclude that the numerical difficulties for this problem are not severe due to a linear dependency on index-2 variables.
机译:对包含静磁(MQS)器件的电路建模会导致一个微分-代数方程(DAE)耦合系统。在我们的案例中,MQS设备由涡流问题描述,该涡流问题已在空间中离散化(通过边缘元素)。这将产生带有正确陈述的前置项的DAE,必须在时域中对其进行求解。我们对该系统的结构特性感兴趣,这对于数值积分很重要。应用标准投影技术,我们能够推断出拓扑条件,以使耦合问题的可处理性指数不超过2。尽管是索引2,但我们可以得出结论,由于对索引2变量具有线性依赖性,因此此问题的数值困难并不严重。

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