Phase-lock loop of Grid-connected Voltage Source Converter under non-ideal grid condition

Haojie Wang, Hai Sun, Minxiao Han, J. Guerrero
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引用次数: 6

Abstract

It is a normal practice that the DC micro-grid is connected to AC main grid through Grid-connected Voltage Source Converter (G-VSC) for voltage support. Accurate control of DC micro-grid voltage is difficult for G-VSC under unbalanced grid condition as the fundamental positive-sequence component phase information cannot be accurately tracked. Based on analysis of the cause of double-frequency ripple when unbalance exists in main grid, a phase-locked loop (PLL) detection technique is proposed. Under the conditions of unsymmetrical system voltage, varying system frequency, single-phase system and distorted system voltage the proposed PLL can accurately detect the fundamental positive-sequence component of grid voltage thus accurate control of DC micro-grid voltage can be realized.
非理想电网条件下并网电压源变换器的锁相环
直流微电网通过并网电压源变换器(G-VSC)接入交流主电网进行电压支撑是一种惯例。在电网不平衡条件下,由于不能准确跟踪基态正序分量的相位信息,使得G-VSC难以精确控制直流微电网电压。在分析主电网存在不平衡时产生双频纹波的原因的基础上,提出了一种锁相环检测技术。在系统电压不对称、系统频率变化、系统单相和系统电压畸变等情况下,该锁相环能够准确检测出电网电压的基态正序分量,从而实现对直流微电网电压的精确控制。
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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