Transient analysis of PWM inverter-fed AC motor drives using finite element method coupling with external circuit model

S. Ho, Shiyou Yang, M. Rahman, H. Wong
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引用次数: 3

Abstract

This paper presents a method for an accurate computation of the dynamic behavior of PWM inverter-fed AC motor drives with voltage sources as excitations. The method is based on the 2D finite element method coupling with external circuit models, together with the simultaneous simulation of the motion of the rotor system. Attention is focused on the special issues, such as the best approach to take into account the motion between the stator and the rotor, the skin effect and the numerical oscillation which arises from the (high frequency) step changes of the output voltages of the inverter, when finite element analysis is used. In this paper the interpolating moving boundary is introduced when considering the relative motion between the stator and the rotor, and the numerical critical damping method is used to suppress the numerical oscillation which may occur in numerical simulations. The computed results of a PWM inverter-fed motor drive system is used to validate the proposed method.
用有限元法耦合外电路模型分析PWM逆变式交流电机驱动的暂态
本文提出了一种精确计算以电压源为激励的PWM逆变式交流电机驱动器动态特性的方法。该方法基于二维有限元法,结合外电路模型,对转子系统的运动进行同步仿真。注意的重点是特殊问题,如最好的方法来考虑定子和转子之间的运动,集肤效应和数值振荡产生的逆变器输出电压的(高频)阶跃变化,当使用有限元分析。本文在考虑定子与转子相对运动的情况下,引入了插补运动边界,并采用数值临界阻尼法抑制了数值模拟中可能出现的数值振荡。用PWM逆变电机驱动系统的计算结果验证了所提方法的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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