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A Novel Phase-Locked Loop Based on Frequency Detector and Initial Phase Angle Detector

机译:基于频率检测器和初始相位角检测器的新型锁相环

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摘要

This paper proposes a new three-phase software phase-locked loop (PLL) that operates fast and accurately in unbalanced, polluted, and frequency deviating circumstances. The proposed PLL consists of a frequency detector and an initial phase angle detector. In the synchronous reference frame, the initial phase angle detector tracks a ramp phase angle, which is generated from frequency deviation of the inputs, with steady error. This detection error is utilized to estimate the actual grid frequency. Frequency adaptive moving average filters (MAFs) are applied in this new PLL to eliminate noises, harmonics, and negative sequence components. In this paper, the effect of discrete sampling on the MAFs is analyzed, and a linear interpolation is employed to enhance the performances of the MAFs. The stability of the proposed PLL is also analyzed, a sufficient stability condition is identified, and the design procedures of the control parameters are also presented. Simulations and experiments verify the performances of the novel PLL.
机译:本文提出了一种新型的三相软件锁相环(PLL),该锁相环可在不平衡,污染和频率偏离的情况下快速而准确地运行。拟议的PLL由一个频率检测器和一个初始相位角检测器组成。在同步参考帧中,初始相位角检测器跟踪由输入频率偏差产生的带有稳定误差的斜坡相位角。该检测误差用于估计实际电网频率。频率自适应移动平均滤波器(MAF)应用于此新PLL中,以消除噪声,谐波和负序分量。本文分析了离散采样对MAF的影响,并采用线性插值来提高MAF的性能。分析了所提出的PLL的稳定性,确定了充分的稳定性条件,并给出了控制参数的设计程序。仿真和实验验证了新型PLL的性能。

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