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Real-Time Solution and Implementation of Selective Harmonic Elimination of Seven-Level Multilevel Inverter

机译:七电平多电平逆变器的实时解决方案和选择性谐波消除的实现

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This paper proposes a new method to calculate switching angles in selective harmonic elimination technique. It is introduced as a substitute for Newton-Raphson method and similar iteration methods. By utilizing classical control such as the proportional-integral (PI) control, the proposed method can perform a real-time calculation for multilevel inverter's (MLI) switching angles over a wide range of modulation indexes. Therefore, it is able to respond to system dynamics without the need to store precalculated large lookup tables. The proposed method is applied to seven levels cascaded full H-bridge to eliminate its third- and fifth-harmonic contents from the modulation index 0.1 to 1.04. The same procedure can be extended to the vast majority of MLI topologies. A Simulink model is built to simulate and validate the accuracy, dynamics, and continuity of the solution generated by the proposed method. An experimental prototype is also built and its results are discussed to confirm the theory and simulation of the proposed method.
机译:提出了一种选择谐波消除技术计算开关角的新方法。引入它作为牛顿-拉夫森方法和类似迭代方法的替代方法。通过利用诸如比例积分(PI)控制之类的经典控制,该方法可以在很宽的调制指标范围内对多电平逆变器(MLI)的开关角度进行实时计算。因此,它能够响应系统动态,而无需存储预先计算的大型查找表。所提出的方法应用于七级联全H桥,以消除其第三和第五谐波含量从调制指数0.1到1.04。相同的过程可以扩展到绝大多数MLI拓扑。建立Simulink模型以仿真和验证所提出方法生成的解决方案的准确性,动态性和连续性。还建立了实验原型,并讨论了其结果,以证实所提出方法的理论和仿真。

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