Simplified method of sequence impedance modeling of three-phase LCL inverter

Jiayu Xu, Lucheng Hong, Wu Chen, Shanshan An, Runyu Tang
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引用次数: 0

Abstract

With a large number of distributed power sources connected to the grid, the distribution network is showing a trend of power electronics. As the inverter of the power conversion interface, the stability of its interaction with the grid cannot be ignored. Reasonable impedance modeling of the three-phase grid-connected inverter is the prerequisite for analyzing the stability and resonance characteristics of the grid-connected system. In this paper, firstly the harmonic linearization impedance modeling theory is briefly explained, including the establishment of the harmonic linearization model of the inverter main circuit and the phase-locked loop. Secondly, the traditional harmonic linearization impedance modeling process is analyzed, and it is pointed out that the modeling process requires many tedious phase sequence transformations and convolution operations. To solve this problem, a simplified modeling method is proposed on the basis of the traditional harmonic linearization method, which simplifies the modeling process. Using this method, the positive and negative sequence impedance model of the grid-connected inverter with capacitive current feedback control and grid voltage feedforward control strategy are established. Finally, the simulation verifies the accuracy of the impedance model.
三相LCL逆变器序列阻抗建模的简化方法
随着大量分布式电源并网,配电网呈现出电力电子化的趋势。作为功率转换接口的逆变器,其与电网相互作用的稳定性不容忽视。合理的三相并网逆变器阻抗建模是分析并网系统稳定性和谐振特性的前提。本文首先简要阐述了谐波线性化阻抗建模理论,包括建立了逆变器主电路和锁相环的谐波线性化模型。其次,分析了传统的谐波线性化阻抗建模过程,指出建模过程中需要进行大量繁琐的相序变换和卷积运算;针对这一问题,在传统谐波线性化方法的基础上提出了一种简化建模方法,简化了建模过程。利用该方法,建立了电容式电流反馈控制和电网电压前馈控制并网逆变器的正、负序阻抗模型。最后,通过仿真验证了阻抗模型的准确性。
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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