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Multilevel inverter using cascaded 3-phase transformers with common-arm configuration

机译:使用具有共臂配置的级联三相变压器的多电平逆变器

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摘要

In multilevel inverter development for 3-phase applications, total number of transformer in the circuit can be reduced by using of cascaded 3-phase transformer circuit instead of single-phase transformer circuit. In the scheme, total number of switching components in the circuit is still a drawback to achieve lower cost and smaller size of the inverter compared with conventional multilevel inverter. This paper includes a challenging method to reduce total switching components in the multilevel inverter by adopting common-arm structure. The proposed inverter has been operated by two control schemes, Newton-Raphson and Equal-area method. After theoretical and experimental comparison of the methods, we found that Newton-Raphson method is useful to eliminate a specific harmonic order. However, the method has a shortcoming in real time operation which is performed by iterative calculation of the nonlinear equations. With Equal-area method, we can easily find the switching angles by calculating a trigonometric function. It can sufficiently minimize Total Harmonic Distortion (THD) of output voltage in real time operation of Digital Signal Processor (DSP).
机译:在针对三相应用的多电平逆变器开发中,可以通过级联的三相变压器电路代替单相变压器电路来减少电路中的变压器总数。在该方案中,与常规的多电平逆变器相比,电路中的开关元件的总数仍然是实现更低的成本和更小的逆变器尺寸的缺点。本文提出了一种具有挑战性的方法,即采用共臂结构来减少多电平逆变器中的总开关组件。拟议的逆变器已通过两种控制方案(牛顿-拉夫森法和均等面积法)运行。通过对方法的理论和实验比较,我们发现Newton-Raphson方法可用于消除特定的谐波阶数。但是,该方法具有实时操作的缺点,该缺点是通过非线性方程的迭代计算来执行的。使用等面积方法,我们可以通过计算三角函数轻松找到开关角度。它可以在数字信号处理器(DSP)的实时操作中充分降低输出电压的总谐波失真(THD)。

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