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Step by Step Design of a High Order Power Filter for Three-Phase Three-Wire Grid-connected Inverter in Renewable Energy System

机译:可再生能源系统中三相三线并网逆变器高阶电力滤波器的逐步设计

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摘要

Traditionally, when designing an LCL-filter, a three-phase inverter is simplified as a single-phase inverter for analysis and the output phase voltage is used to calculate the inverter-side current harmonics and to design inverter-side inductor. However, for a three-phase three-wire grid-tied system, the output current harmonics of inverter are directly affected by the output line to line voltage. Hence, this paper proposes a new method to analyze the inverter output current harmonics by using the equivalent phase voltage of the three phase inverter. Based on this, a step by step design method of the high order power filter is introduced. Simulations are carried out to verify the accuracy and the validity of the proposed methods through a 6 kW, 380V/50 Hz grid-connected inverter model with three different types of high order power filters.
机译:传统上,在设计LCL滤波器时,将三相逆变器简化为用于分析的单相逆变器,并且将输出相电压用于计算逆变器侧电流谐波和设计逆变器侧电感器。但是,对于三相三线并网系统,逆变器的输出电流谐波会直接受到输出线间电压的影响。因此,本文提出了一种利用三相逆变器的等效相电压来分析逆变器输出电流谐波的新方法。在此基础上,介绍了高阶功率滤波器的逐步设计方法。通过仿真,通过具有三种不同类型的高阶功率滤波器的6 kW,380V / 50 Hz并网逆变器模型,验证了所提出方法的准确性和有效性。

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