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A Step by Step Design Procedure of PR controller and Capacitor Current Feedback Active Damping for a LCL-Type Grid-tied T-Type Inverter

机译:LCL型并网T型逆变器的PR控制器和电容器电流反馈有源阻尼分步设计程序

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Distributed power generation systems use power electronics converters as interface for connection to grid. The connection through an LCL filter offers certain advantages, but it brings also the disadvantage of having a resonance frequency. Power electronic converter control is challenging due to filter resonance peak. In this paper a three level ultra-efficient converter called T-Type converter is connected to grid through an LCL filter and its injected current is controlled by PR controller. The resonance peak of the filter is also damped using filter capacitor current feedback. A step by step mathematical design procedure for controller and filter capacitor current feedback coefficient is investigated in details. Simulations are carried out in MATLAB/Simulink environment and results depict suitable performance of the system with designed parameters.
机译:分布式发电系统使用电力电子转换器作为连接到电网的接口。通过LCL滤波器的连接具有某些优点,但也带来了具有谐振频率的缺点。由于滤波器的谐振峰值,电力电子转换器的控制具有挑战性。在本文中,一个三电平超高效转换器(称为T型转换器)通过LCL滤波器连接到电网,其注入电流由PR控制器控制。滤波器的谐振峰值也可以通过滤波电容器电流反馈来衰减。详细研究了控制器和滤波电容器电流反馈系数的逐步数学设计程序。在MATLAB / Simulink环境中进行了仿真,结果描述了具有设计参数的系统的适当性能。

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