电磁瞬变仿真中等效可控源的数值稳定性及补偿方法

Lu Gao, Feng Ji, Heming Yan, Chang Lin, Hui Pang, Jihong Li
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引用次数: 2

摘要

在电磁瞬态仿真中,通常采用等效可控源代替原电路元件,如用可控电压源代替模块化多电平变换器。由于控制与电路系统解之间存在时间步长延迟,可能存在数值稳定性问题。通过推导时滞微分方程并计算其特征值,解释了数值失稳的原因。最后通过泰勒级数和拉普拉斯变换对时滞函数进行研究,提出了解决数值稳定性问题的数值补偿方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical Stability and Compensation Method for Equivalent Controlled Source in Electromagnetic Transient Simulation
In electromagnetic transient simulation, equivalent controlled source is usually used as an alternative of the original circuit element, such as a controlled voltage source to replace the modular multilevel converter(MMC). Since a time-step delay between the control and circuit system solution, there may be numerical stability problem. By deducing the delay differential equation and calculating its characteristic values, the causes of numerical instability are explained. Finally the numeric compensation method to solve the numerical stability problem is proposed by studying the delay function through Taylor’s series and Laplace transformation.
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