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Low-Frequency Current Oscillation Reduction for Six-Step Operation of Three-Phase Inverters

机译:三相逆变器六步运行的低频电流振荡降低

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This paper investigates a control method to significantly reduce the low-frequency current oscillation for six-step operation of a three-phase inverter. The six-step operation of an ac electric machine drive system under high speeds has a few advantages compared with pulse width modulation (PWM) operation including reduced switching losses, a better utilization of the dc bus voltage, and an enhanced speed capability. In digital implementation of the six-step control, power electronics may not be able to switch on and off exactly at the zero crossing points of reference voltages, which will result in a dc offset in phase voltages and cause a low-frequency oscillation in phase currents. The low-frequency oscillation will create issues such as higher power losses, lower efficiency, and excessive heat that may demagnetize magnets on the rotor for a permanent magnet synchronous machine. This research presents a control algorithm using asymmetric PWM to ensure that power electronics switch on and off exactly at the reference voltage zero crossing points. Both simulation and experimental results demonstrate the algorithm can reduce the low-frequency oscillation in phase currents by more than 90%.
机译:本文研究了一种控制方法,该方法可显着降低三相逆变器六步运行的低频电流振荡。与脉宽调制(PWM)操作相比,高速交流电机驱动系统的六步操作具有一些优势,包括减少开关损耗,更好地利用直流总线电压以及增强的速度能力。在六步控制的数字实现中,电力电子设备可能无法准确地在参考电压的零交叉点处打开和关闭,这将导致相电压出现直流偏移,并引起相低频振荡潮流。低频振荡会产生诸如更高的功率损耗,更低的效率以及过多的热量之类的问题,这些问题可能会使永磁同步电机的转子上的磁体消磁。这项研究提出了一种使用非对称PWM的控制算法,以确保电力电子设备在参考电压过零点准确地接通和断开。仿真和实验结果均表明,该算法可以将相电流中的低频振荡降低90%以上。

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