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DSP Based Implementation of SHE-PWM For Cross-Switched Multilevel Inverter

机译:基于DSP的交叉开关多电平逆变器SHE-PWM的实现

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Multilevel inverter (MLI) plays a crucial role in medium voltage and high power applications. While the usages of MLIs are continuously growing in every area of power industries, it also initiates certain challenges that require attention. The increased number of power electronic components is one of the most challenging issues for multilevel inverters. The output power quality and the semiconductor device ratings of the grid connected high power inverters are largely dependent on the number of power components. Thus, it is required to decrease the overall power components as much as possible while designing these inverters. Therefore, this paper proposes a single phase 7-level cross-switched multilevel inverter that can produce higher voltages utilizing lesser power components. In order to further improve the efficiency of this MLI and enhancing its performance, selective harmonic elimination pulse width modulation (SHE-PWM) control technique is implemented. Here, Newton Raphson algorithm is examined to calculate the switching angles for different modulation indices. The fundamental voltage is obtained by solving the equations in such a way that the desired low order harmonics are eliminated. MATLAB Simulink software has been used to perform the simulation while the hardware model was implemented using digital signal processor eZdsp528335.
机译:多电平逆变器(MLI)在中压和高功率应用中起着至关重要的作用。尽管MLI的使用在电力行业的各个领域都在不断增长,但它也引发了一些需要引起注意的挑战。电力电子元件数量的增加是多电平逆变器最具挑战性的问题之一。并网的大功率逆变器的输出功率质量和半导体器件的额定功率在很大程度上取决于功率组件的数量。因此,在设计这些逆变器时,需要尽可能减少总功率分量。因此,本文提出了一种单相7级交叉开关多电平逆变器,该逆变器可以利用较少的功率分量产生较高的电压。为了进一步提高此MLI的效率并增强其性能,实现了选择性谐波消除脉冲宽度调制(SHE-PWM)控制技术。在这里,检查牛顿拉夫森算法以计算不同调制指数的开关角。通过以消除所需低阶谐波的方式求解方程式来获得基本电压。当使用数字信号处理器eZdsp528335实现硬件模型时,已使用MATLAB Simulink软件执行仿真。

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