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Switching loss minimised space vector PWM method for IGBT three-level inverter

机译:IGBT三电平逆变器的开关损耗最小化空间矢量PWM方法

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In the inverter-fed motor drive system, inverter output-current distortion is reduced by enhancing the switching frequency and the motor torque ripples; magnetic noise is also reduced as a consequence. However, the system efficiency is also reduced due to the switching loss, this, in turn, sets a limit on any further enhancement of the switching frequency. This is particularly the case for the IGBT three-level inverter, since it is used in high switching frequency applications: the number of switching devices is twice that of the two-level inverter, thus the switching loss problem is more serious. The authors describe a new PWM strategy for the three-level inverter with an ability to reduce switching loss. In comparison with conventional sinusoidal PWM methods generating almost the same distorted load current, every phase of the inverter can have its switching stopped for 120° in one period by this new method. According to the load power factor angle β, if β ≤ 30° the ‘no switching duration' can be set just in the centre of the peak value region of the load current, hence the switching loss can be greatly reduced. The reduction of switching loss is not dependent on β.
机译:在变频器供电的电机驱动系统中,通过提高开关频率和电机转矩脉动来降低变频器的输出电流失真。结果,也降低了磁噪声。但是,由于开关损耗,系统效率也会降低,这反过来又限制了开关频率的进一步提高。 IGBT三电平逆变器尤其如此,因为它用于高开关频率应用:开关器件的数量是两电平逆变器的两倍,因此开关损耗问题更加严重。作者介绍了一种用于三电平逆变器的新型PWM策略,该策略具有降低开关损耗的能力。与产生几乎相同的失真负载电流的常规正弦波PWM方法相比,通过这种新方法,逆变器的每一相都可以在一个周期内停止120°的开关。根据负载功率因数角β,如果β≤30°,则“无开关持续时间”可以设置在负载电流峰值区域的中心,因此可以大大降低开关损耗。开关损耗的降低不依赖于β。

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