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Generalization of a Model-Based Controller for the N-Level Cascaded H-Bridge Multilevel Converter Used as a Shunt Active Filter

机译:N型级联H桥多电平转换器用作并联有源滤波器的基于模型的控制器的通用化

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The general function of the multilevel inverter is to synthesize a desired AC voltage from several levels of DC voltages. For this reason, multilevel converters are ideal for connecting either in series or in parallel an AC grid with renewable energy sources such as photovoltaics, fuel cells or with energy storage devices such as capacitors or batteries. For more levels of voltages, the total harmonic distortion of the voltage synthesized, decreases, but the control law gets complicated. This paper presents the modeling and control processes of the cascade H-bridge multilevel converter used as a shunt active filter. The single-phase five-level topology is firstly studied, then, is proposed the generalization of the model and the control law. The transformation of the model in terms of the sum and the difference of the squares of the capacitor voltages is crucial for our developments. Moreover, it is shown that, while the current tracking depends on the sum of the injected voltages, the balance of the capacitor voltages depends on the difference between them.
机译:多电平逆变器的一般功能是从多个直流电压电平合成所需的交流电压。因此,多电平转换器非常适合将交流电网与可再生能源(例如光伏,燃料电池)或储能设备(例如电容器或电池)串联或并联连接。对于更高级别的电压,合成电压的总谐波失真会降低,但是控制律变得复杂。本文介绍了用作并联有源滤波器的级联H桥多电平转换器的建模和控制过程。首先研究了单相五级拓扑,然后提出了模型的泛化和控制律。根据电容器电压的平方和的差和平方来转换模型对于我们的发展至关重要。此外,示出了,虽然电流跟踪取决于注入电压的总和,但是电容器电压的平衡取决于它们之间的差。

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