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A common mode voltage reduction in boost rectifier/inverter system by shifting active voltage vector in a control period

机译:通过在控制周期内移动有效电压矢量来降低升压整流器/逆变器系统中的共模电压

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This paper proposes a new space-vector pulse width modulation (SVPWM) strategy that can reduce the number of common mode voltage pulses in a three-phase boost rectifier/inverter system using a synchronized switching sequence. In the proposed SVPWM strategy, it is possible to eliminate one common mode voltage pulse in every control period by shifting the active voltage vectors of the inverter to align to those of the boost rectifier. Thus, a reduction in the total number of common mode voltage pulses and RMS motor leakage current can be obtained without extra hardware. Since the proposed SVPWM strategy can be simply implemented in software, it is widely applicable regardless of the power capacity of the converter and results in no increment of converter volume, weight and price. Moreover, because the proposed SVPWM strategy maintains the magnitude of the active voltage vector required for motor control and simply changes the distribution of the zero, voltage vector, it does not effect the control performance of the power converter.
机译:本文提出了一种新的空间矢量脉冲宽度调制(SVPWM)策略,该策略可以使用同步开关序列减少三相升压整流器/逆变器系统中的共模电压脉冲数。在提出的SVPWM策略中,可以通过移动逆变器的有效电压矢量与升压整流器的有效电压矢量对齐,在每个控制周期中消除一个共模电压脉冲。因此,无需额外的硬件即可减少共模电压脉冲和RMS电动机漏电流的总数。由于所提出的SVPWM策略可以通过软件简单实现,因此无论转换器的功率大小如何,它都可以广泛应用,并且不会增加转换器的体积,重量和价格。此外,由于提出的SVPWM策略保持了电机控制所需的有效电压矢量的大小,并且仅更改了零电压矢量的分布,因此不会影响功率转换器的控制性能。

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