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Quantitative power quality and characteristic analysis of multilevel pulse width modulation methods in medium voltage high power industrial drives

机译:中压大功率工业驱动器的定量电能质量和多级脉宽调制方法的特性分析

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The inherent low switching frequency in medium voltage (MV) alternating current (AC) industrial drives presents power quality and filter design challenges. In this paper, four multilevel pulse width modulation (PWM) methods: Phase Disposition (PD), Switching Loss Minimization (SLM), Selective Harmonic Elimination (SHE) up to 17th and 29th harmonics respectively are considered. The characteristics of long cable effects on common mode voltage (CMV) and differential mode voltage (DMV), inverter losses and efficiency, induction machine (IM) voltage and current harmonics are analyzed. Very little has been published in these quantitative comparisons. It is shown that the SHE method has reduced CMV as compared to the PD and SLM algorithms. Up to 29th harmonic elimination achieves the best harmonics performance without needing an output filter, at the expense that the losses are higher with a lower efficiency. Analytical and simulation results using PLECS for the power electronics circuits and Matlab/Simulink for control systems are verified experimentally with a 1000hp, 4160V neutral point clamped (NPC) adjustable-speed drive (ASD) system that includes a 24-pulse front-end voltage source converter.
机译:中压(MV)交流电(AC)工业驱动器固有的低开关频率给电能质量和滤波器设计提出了挑战。本文提出了四种多电平脉冲宽度调制(PWM)方法:相位配置(PD),最小开关损耗(SLM),选择性谐波消除(SHE),最高可达到17 和29 分别考虑谐波。分析了长电缆对共模电压(CMV)和差模电压(DMV),逆变器损耗和效率,感应电机(IM)电压和电流谐波的影响。这些定量比较几乎没有发表。结果表明,与PD和SLM算法相比,SHE方法降低了CMV。消除第29次谐波即可达到最佳谐波性能,而无需输出滤波器,但代价是损耗较高,效率较低。使用PLECS的电力电子电路和Matlab / Simulink的控制系统的分析和仿真结果已通过1000hp,4160V中性点钳位(NPC)可调速驱动(ASD)系统进行了实验验证,该系统包括24脉冲前端电压源转换器。

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