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Backstepping controller of five-level three-phase inverter

机译:五电平三相逆变器的反步控制器

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Multilevel converters are becoming increasingly used in many industrial applications due to the many advantages that they offer. The improvements in the output signal quality, lower Total Harmonic Distortion (THD) and many other properties make multilevel converters very attractive for connecting photovoltaic generators to medium voltage grid directly or to be used in a local power supply. In this paper, we focus on the implementation of a three-phase five-level diode clamped inverter and design of a performing nonlinear controller using the Backstepping approach. The control objective is to generate, at the system output, sinusoidal three-phase voltages with amplitude and frequency fixed by the reference signal independently of load variations. The performance study of the multilevel inverter and the designed controller are made by simulations in Matlab/Simulink environment.
机译:由于多电平转换器具有许多优点,因此越来越多地用于许多工业应用中。输出信号质量的提高,总谐波失真(THD)降低以及许多其他特性,使得多电平转换器非常适合将光伏发电机直接连接到中压电网或用于本地电源。在本文中,我们着重于三相五电平二极管钳位逆变器的实现以及使用Backstepping方法设计性能良好的非线性控制器。控制目标是在系统输出端生成正弦波三相电压,其振幅和频率由参考信号固定,与负载变化无关。通过在Matlab / Simulink环境中进行仿真,对多电平逆变器和所设计的控制器进行了性能研究。

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