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Selective Harmonic Elimination PWM Control Scheme on a Three-Phase Four-Leg Voltage Source Inverter

机译:三相四臂电压源逆变器的选择性谐波消除PWM控制方案

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摘要

A selective harmonic elimination (SHE) control strategy on a three-phase four-leg inverter is reported in this paper. The control signals of the four legs are calculated as follows: 1) control signals of three legs are mathematically expressed using Fourier-based equations on line-to-line basis as conventional SHE technology, which eliminates lower order nontriplen harmonics, and 2) the fourth leg produces the harmonics that are equal to the lower triplen harmonics produced by the other legs. The inverter has almost symmetric three-phase output voltage with unbalanced load because the fourth leg provides a low-impedance path for the triplen harmonics. The switching-to-fundamental frequency ratio is only 13 and 27 (per unit) p.u. for the three legs and the fourth leg in the proposed prototype, which is with the total harmonic distortion of output voltage lower than 4%. Selected solutions for the switching angles are presented and verified by simulation and experimentation in order to confirm the effectiveness of the proposed scheme.
机译:本文报道了三相四桥臂逆变器的选择性谐波消除(SHE)控制策略。四个支路的控制信号的计算方法如下:1)使用传统傅里叶变换(SHE)技术,使用基于傅立叶的方程式以线对线的方式对三个支路的控制信号进行数学表示,以及2)第四分支产生的谐波等于其他分支产生的较低的三次谐波。逆变器具有不对称负载的几乎对称的三相输出电压,因为第四支路为三次谐波提供了低阻抗路径。开关与基本频率之比仅为13和27(每单位)p.u。对于所提出的原型中的三个支路和第四个支路,输出电压的总谐波失真低于4%。提出了针对开关角度的选定解决方案,并通过仿真和实验进行了验证,以确认所提出方案的有效性。

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