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Modeling of common mode currents induced by motor cable in converter fed AC motor drives

机译:转换器电机电缆电机电缆诱导的共模电流建模

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Investigation of conducted EMI generation in AC motor fed by pulse width modulated frequency converters requires to consider parasitic capacitances in converters, motor windings and feeding cables to be taken into account. Motor voltage transients and related common mode currents are significantly correlated with resonance effects occurring in load circuits. An analysis of frequency converter load impedance-frequency characteristics allows for identification and determination of frequency ranges in which the foremost contributions to EMI noise generation have the voltage ringing phenomena associated with the load parasitic capacitances. This paper presents a method to model an AC motor with a feeding cable in conducted EMI frequency range up to 30 MHz. Distributed parasitic capacitances of AC motor windings are modeled by a ladder circuit. The proposed circuit model allows for an analysis of the influence of motor feeding cable parameters on common mode currents generated in AC motor drive system, particularly in AC motor itself. The simulation results obtained based on the proposed ladder circuit model are verified by the experimental tests which have been carried out for an exemplary adjustable speed AC motor drive application.
机译:通过脉冲宽度调制变频器馈送的AC电动机中所进行的EMI生成的研究需要考虑转换器中的寄生电容,电机绕组和送料电缆。电动机电压瞬变和相关的共模电流与负载电路中发生的谐振效果显着相关。变频器负载阻抗频率特性的分析允许识别和确定频率范围,其中最重要的贡献对EMI噪声产生具有与负载寄生电容相关联的电压振铃现象。本文介绍了一种用于将AC电动机进行建模的方法,其具有高达30 MHz的电动频率范围内的供给电缆。 AC电动机绕组的分布式寄生电容由梯形电路建模。所提出的电路模型允许分析电动机进给电缆参数对交流电机驱动系统中产生的共模电流的影响,特别是在AC电动机本身中。基于所提出的梯形电路模型获得的仿真结果通过用于示例性可调速度AC电动机驱动应用的实验测试来验证。

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