A Combination of VSG and Amended Fractional-Order Repetitive Control for Improving Power Quality of Grid-Connected Inverter

H. Kazemi, E. Afjei, A. Rahmati
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引用次数: 1

Abstract

Nowadays, in the modern power systems, due to increasing the application of renewable energy sources, power inverters are most commonly used electronic devices in the energy systems for ac/dc power conversion. Since the standard power inverters have extremely low inertia elements, the modern power systems meet insufficiency inertia to maintain the grid stability. In virtual synchronous generator (VSG) technique, virtual inertia is emulated in the power inverters by implementing swing equation and as a result, grid inertia is increased and grid stability will be satisfied. Although grid inertia issue is solved by VSG control, dealing with some power quality problems, such as grid current harmonic, which occurs in bad situations, has not been considered in this control theory. In this paper, a control approach based on a combination of VSG technique and amended fractional-order repetitive control (AFORC) is presented for grid-connected inverters to cope with the mentioned problem. The results of simulation studies proved that the proposed method besides fulfilling the main VSG objectives, such as transient frequency response enhancement and increasing total inertia of the power systems, it also can extremely diminish harmonic components of the current injected to the grid in the presence of distorted grid voltage and unbalanced nonlinear rectifier loads.
结合VSG和改进分数阶重复控制改善并网逆变器电能质量
如今,在现代电力系统中,由于可再生能源的应用越来越多,电源逆变器是能源系统中最常用的用于交流/直流功率转换的电子设备。由于标准逆变器的惯性元件极低,现代电力系统在维持电网稳定时往往会遇到惯性不足的情况。在虚拟同步发电机(VSG)技术中,通过实现摆幅方程来模拟逆变器中的虚拟惯性,从而增加电网的惯性,满足电网的稳定性要求。虽然VSG控制解决了电网的惯性问题,但该控制理论没有考虑处理一些电能质量问题,如在恶劣情况下出现的电网电流谐波。本文提出了一种基于VSG技术和改进分数阶重复控制(AFORC)相结合的并网逆变器控制方法来解决上述问题。仿真研究结果表明,该方法不仅能达到增强暂态频率响应和增加电力系统总惯量的主要目的,而且在电网电压畸变和非线性整流负载不平衡的情况下,能极大地减小注入电网电流的谐波分量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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