Cable characteristics and their influence on motor over-voltages

G. Skibinski, D. Leggate, R. Kerkman
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引用次数: 96

Abstract

Overvoltage transients occur on AC induction motors when connected through a power cable of sufficient length to a variable speed AC drive consisting of a PWM inverter and IGBT power devices. Factors contributing to a motor overvoltage transient equal to twice the theoretical DC bus voltage are described using classical transmission line analysis. A critical cable distance (I/sub c/) is defined where twice the DC bus overvoltage occurs. However, literature is lacking on how motor transients greater than twice the DC bus voltage are generated. This phenomenon is observed on all PWM inverters with output cable lengths greater than the I/sub c/ distance. Theoretical calculations of cable frequency and damping are correlated with simulation and experimental results. Finally, the paper presents an external hardware apparatus (the Terminator), based on a cable's characteristic impedance, that clamps the motor's terminal voltage to levels far below twice the DC bus voltage. All calculations and proposed solutions are verified or demonstrated with experimental results.
电缆特性及其对电机过电压的影响
当通过足够长度的电源线连接到由PWM逆变器和IGBT功率器件组成的变速交流驱动器时,交流感应电动机会发生过电压瞬变。用经典传输线分析方法描述了导致电机过电压暂态为理论直流母线电压两倍的各种因素。临界电缆距离(I/sub c/)定义为直流母线过电压的两倍。然而,文献缺乏如何产生大于直流母线电压两倍的电机瞬变。这种现象在所有输出电缆长度大于I/sub / c/距离的PWM逆变器上都可以观察到。电缆频率和阻尼的理论计算与仿真和实验结果相吻合。最后,本文介绍了一种外部硬件设备(终结者),基于电缆的特性阻抗,将电机的终端电压箝位到远低于直流母线电压的两倍的水平。所有的计算和提出的解决方案都用实验结果进行了验证或论证。
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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