Conformal equivalent circuit model and leapfrog alternating direction implicit formulation for fast simulation of power delivery network

T. Sekine, H. Asai
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引用次数: 1

Abstract

This paper describes a circuit-oriented leapfrog alternating direction implicit (ADI) method applied to a simulation of a power delivery network (PDN). An equivalent circuit model of the PDN is derived by using a recently-proposed conformal modeling technique, in which orthogonal meshes are used along with a treatment to improve the accuracy of the model. Since the conformal equivalent circuit model has a grid-like topology, it is suitable for direction-based algorithms such as an ADI method and the leapfrog ADI method. An advantage of the ADI-based method is that they can use a relatively-large time step size and reduce the total number of time steps in a transient simulation. In addition, the leapfrog ADI method is more efficient than the existing ADI method because its time marching procedure requires less updating processes. As a result, the conformal equivalent circuit model combined with the leapfrog ADI method can be accurate and efficient in modeling and analysis of the PDN.
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保形等效电路模型和跨越式交变方向隐式公式用于快速模拟输电网
本文介绍了一种应用于电力输送网络(PDN)仿真的面向电路的跨跃交替方向隐式(ADI)方法。利用最近提出的保形建模技术推导了PDN的等效电路模型,其中使用正交网格并进行处理以提高模型的精度。由于共形等效电路模型具有类似网格的拓扑结构,因此适用于基于方向的算法,如ADI方法和跳越ADI方法。基于adi的方法的一个优点是,它们可以使用相对较大的时间步长,并减少瞬态仿真中的时间步长总数。此外,跳跃式ADI方法比现有的ADI方法效率更高,因为它的时间推进过程需要更少的更新过程。结果表明,保形等效电路模型与跳越式ADI方法相结合,可以准确、高效地对PDN进行建模和分析。
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