Design of Single-Phase Digital Phase Locked Loop Based on MVF-QSG

Hao Yang, Lu Sheng-ge, Qing Feng-Sun
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引用次数: 1

Abstract

QSG (quadrature signal generator) is the critical part of single-phase PLL. In order to effectively reduce the influence of DC components and harmonics on orthogonal signals, a QSG based on multivariable filter (MVF) is proposed, and it’s proved to have good frequency adaptability. In this paper, the author first analyzes the transfer function of MVF, theoretically analyzes the mechanism of its attenuation of DC and harmonics, analyzes the influence of parameter Kf on MVF-QSG, uses MATLAB to simulate the working performance of MVF-QSG on DC components and harmonics under steady state and dynamic conditions and the working performance under the conditions of abrupt voltage frequency variation, and finally establishes a 3kW grid-connected inverter platform, verifies MVF-PLL's phase-locking effect under the conditions of power grid amplitude step and distortion by experiments, and proves the feasibility of the method.
基于MVF-QSG的单相数字锁相环设计
正交信号发生器(QSG)是单相锁相环的关键部件。为了有效降低直流分量和谐波对正交信号的影响,提出了一种基于多变量滤波器(MVF)的QSG,并证明了它具有良好的频率适应性。本文首先分析了MVF的传递函数,从理论上分析了其对直流和谐波的衰减机理,分析了参数Kf对MVF- qsg的影响,利用MATLAB仿真了MVF- qsg在稳态和动态条件下对直流分量和谐波的工作性能,以及电压频率突变条件下的工作性能,最后建立了3kW并网逆变器平台。通过实验验证了MVF-PLL在电网幅度阶跃和失真条件下的锁相效果,证明了该方法的可行性。
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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