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Optimal Low-Switching Frequency Pulsewidth Modulation of Medium Voltage Seven-Level Cascade-5/3H Inverter

机译:中压七级串级5 / 3H逆变器的最佳低开关频率脉宽调制

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摘要

Low-switching frequency modulation of multilevel inverters for medium-voltage high-power industrial ac drives is essential to reduce switching losses and, thus, improve the overall energy efficiency of the system. However, minimizing the switching frequency increases the total harmonic distortion (THD) of machine currents. Synchronous optimal pulsewidth modulation (SOP) is an emerging technique for controlling multilevel inverters at low-switching frequency without compromising on the THD of machine currents. The goal of our experiment was to implement SOP technique for controlling seven-level cascade inverter for an induction motor drive at an average device switching frequency limited to rated fundamental frequency. First, optimal seven-level waveforms were obtained by ofline optimization assuming steady-state operating conditions. Then, the switching angles for each semiconductor device were obtained that ensure equal distribution of switching losses as well as minimal unbalance in dc-link capacitor voltages. The proposed SOP technique is validated by experimental results obtained from the seven-level cascade inverter feeding a 1.5-kW induction motor.
机译:用于中压大功率工业交流变频器的多电平逆变器的低开关频率调制对于降低开关损耗并因此提高系统的整体能效至关重要。但是,最小化开关频率会增加机器电流的总谐波失真(THD)。同步最优脉冲宽度调制(SOP)是一种新兴技术,用于在低开关频率下控制多电平逆变器而又不影响机器电流的THD。我们实验的目标是实施SOP技术,以控制平均电动机开关频率(限制在额定基本频率下)的感应电动机驱动器的七级级联逆变器。首先,通过离线优化(假设稳态工作条件)获得最佳的七级波形。然后,获得每个半导体器件的开关角度,以确保开关损耗的均等分布以及直流母线电容器电压的最小不平衡。通过为1.5 kW感应电动机供电的七级级联逆变器的实验结果验证了所提出的SOP技术。

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