Multiconductor Transmission Line Approach to Model Common-Mode Currents in Motor-Drive Systems

M. Shokri, R. Serra, M. V. van Beurden
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Abstract

Common-mode (CM) currents are the main disturbance source generated in motor-drive systems. They may cause electromagnetic interference in vulnerable parts of the system and can even damage the motor. A time-efficient and simple method is presented based on the multiconductor transmission line (MTL) theory to predict the CM currents flowing in each path in the motor-drive system. The focus of this study is to model the motor feeding cables that form the main path of the CM current from the inverter to the motor. Two structures of motor feeding cables are considered and the results from the MTL model of each configuration are compared to its equivalent 3D full-wave simulation in CST. Also, the effect of the length of the cable on the CM current is investigated using the proposed model. The comparison between the presented model and the 3D simulation shows the validity of the model. Moreover, the presented model needs significantly less computation time in comparison with the CST model.
电机驱动系统中共模电流的多导体传输线模型
共模电流是电机驱动系统中产生的主要干扰源。它们可能会对系统的脆弱部分造成电磁干扰,甚至会损坏电机。基于多导体传输线(MTL)理论,提出了一种快速、简便的预测电机驱动系统中各路径CM电流的方法。本研究的重点是对形成从逆变器到电机的CM电流的主要路径的电机馈电电缆进行建模。考虑了两种电机馈电索结构,并将每种结构的MTL模型结果与CST中等效的三维全波模拟结果进行了比较。此外,利用所提出的模型研究了电缆长度对CM电流的影响。通过与三维仿真结果的比较,验证了模型的有效性。此外,与CST模型相比,该模型的计算时间显著减少。
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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