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A Method to Improve the Dynamic Performance of Moving Average Filter-Based PLL

机译:一种改善基于移动平均滤波器的PLL动态性能的方法

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摘要

Phase-locked loop (PLL) technique is widely used for synchronization applications. A variety of moving average filter (MAF)-based PLLs have been presented in recently published literatures. MAF-based PLL can completely eliminate the effect of unbalanced voltage, characteristic harmonics, and dc offset. Unfortunately, the open-loop bandwidth is drastically reduced after incorporating MAF into the PLL structure. The problem is analyzed in detail in this paper, and it is proved to be caused by the large MAF window width which is determined by the lowest order harmonic. Then, an improved method named differential MAF-PLL (DMAF-PLL) is proposed. This method can rapidly eliminate the lowest order harmonic to narrow the MAF window width. DMAF-PLL is realized by incorporating a special proportional component into the MAF-based PLL. The special proportional component can online change its value according to the frequency of input signal, and it will not introduce phase lag, so as not to deteriorate the stability of PLL. DMAF-PLL increases the open-loop bandwidth and greatly improves the dynamic performance of MAF-based PLL, and it is easy to be implemented with low computational burden. DMAF-PLL can be used in both three-phase and single-phase voltage systems. Simulation and experimental results are included to validate the effectiveness and robustness of the proposed method.
机译:锁相环(PLL)技术被广泛用于同步应用。在最近发表的文献中已经提出了多种基于移动平均滤波器(MAF)的PLL。基于MAF的PLL可以完全消除不平衡电压,特征谐波和直流失调的影响。不幸的是,在将MAF合并到PLL结构之后,开环带宽大大降低了。本文对该问题进行了详细分析,并证明是由最低阶谐波确定的较大的MAF窗口宽度引起的。然后,提出了一种改进的方法,称为差分MAF-PLL(DMAF-PLL)。该方法可以快速消除最低阶谐波,以缩小MAF窗口宽度。 DMAF-PLL通过在基于MAF的PLL中加入特殊比例分量来实现。特殊比例分量可以根据输入信号的频率在线更改其值,并且不会引入相位滞后,从而不会降低PLL的稳定性。 DMAF-PLL增加了开环带宽,极大地提高了基于MAF的PLL的动态性能,并且易于实现,并且计算负担低。 DMAF-PLL可用于三相和单相电压系统。仿真和实验结果也包括在内,以验证所提方法的有效性和鲁棒性。

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