基于拉普拉斯变换的三相逆变器电磁干扰快速预测方法

B. Revol, J. Roudet, J. Schanen, P. Loizelet
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引用次数: 26

摘要

电力电子变换器的概念是在没有实际电磁干扰预测方法的情况下提出的。经典的基于实验的分级方法是有效的,但没有优化。它们涉及到设计持续时间的增加,并且通常会导致滤波器的超大尺寸。为了减少这些阶段,本文提出了一个预测三相逆变器传导电磁干扰的数学模型。该模型基于分析干扰源和传播路径,包括电磁干扰滤波器和感应电机,可以估计所有结构的共模和差模。对无源元件,特别是滤波器元件进行了建模。利用该方法,可以通过仿真来评估不同滤波器组件的效果。时域仿真和频域仿真进行了比较和讨论。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fast EMI prediction method for three-phase inverter based on Laplace transforms
The conception of power electronics converters is made without a real EMI prediction method. The classical sizing methods based on experiments are effective but not optimized. They involve the increase in the designing duration and generally lead to the oversize of the filter. To reduce these stages, a mathematical model for the prediction of conducted EMI generated by a three-phase inverter is pointed out in this paper. This model, based on analytical disturbance-sources and propagation paths, including EMI filter and the induction motor, permits the estimation of common and differential modes in all the structure. Passive components and especially the filter elements have been modeled. With this method, the effect of different filter components can be evaluated by simulations. Time domain and frequency simulations are compared and discussed.
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