PWM交流驱动电缆长、dv/dt高的应用问题

B. Basavaraja, D. Siva Sarma
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引用次数: 14

摘要

电力电子技术的进步提高了PWM电压源逆变器的性能和输出波形。2至15 kHz的开关频率和0.1 μ s的上升时间在当前IGBT技术中很常见,同时允许功率水平超过200 kW。虽然高开关速度和零开关损耗方案大大提高了PWM逆变器的性能,但在0.1 μ s内0至600 V的高电压上升率(dv/dt)会对电机绝缘和轴承产生不利影响,并使波形质量恶化。由于电缆泄漏电感和耦合电容(L-C)在电机端子处的分布特性,导致过电压,从而进一步应力电机绝缘,长电缆有助于阻尼高频振铃。电压反射是逆变器输出脉冲上升时间和电机电缆长度的函数,电机电缆作为逆变器输出脉冲的传输线。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Application problem of PWM AC drives due to long cable length and high dv/dt
Advances in power electronics technology have improved the performance and output waveforms of PWM voltage source inverters. Switching frequencies of 2 to 15 kHz with 0.1 mus rise times are common with the current IGBT technology while allowing for power levels over 200 kW. While the high switching speeds and zero switching loss schemes drastically improve the performance of the PWM inverters, the high rate of voltage rise (dv/dt) of 0 to 600 V in less than 0.1 mus has adverse effects on the motor insulation and bearings and deteriorates the waveform quality. Long cables contribute to a damped high frequency ringing due to the distributed nature of the cable leakage inductance and coupling capacitance (L-C) at the motor terminals resulting in over voltages which further stress the motor insulation. Voltage reflection is a function of inverter output pulse rise time and the length of the motor cables, which behave as a transmission line for the inverter output pulses.
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