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Multiple-Complex Coefficient-Filter-Based PLL for Improving the Performance of Shunt Active Power Filter under Adverse Grid Conditions

机译:基于多重复杂系数滤波器的PLL,可改善逆向电网条件下并联有源电力滤波器的性能

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In recent years, shunt active power filters (SAPFs) are becoming a popular solution for power quality issues. A crucial part in synchronizing the SAPFs is the accurate estimation of the grid phase/frequency. The multiple-complex coefficient-filter-based PLL (MCCF-PLL) has interesting features under adverse grid conditions. The unique distinction of the MCCF-PLL from other PLLs is the ability of providing information about the sequence (polarity) of each individual frequency. However, the MCCF-PLL has not received much attention in APFs. In this paper, a study and an implementation of a selective harmonic cancelation technique based on MCCF-PLL to the SAPF is suggested. The proposed method proved its reliability and robust behavior in optimizing the performance of the SAPF under unbalanced and distorted grid conditions. The reliability of the proposed method is verified experimentally.
机译:近年来,并联有源滤波器(SAPF)成为解决电能质量问题的一种流行解决方案。同步SAPF的关键部分是准确估计电网相位/频率。在不利的电网条件下,基于多复数系数滤波器的PLL(MCCF-PLL)具有有趣的功能。 MCCF-PLL与其他PLL的独特区别是能够提供有关每个单独频率的序列(极性)信息的能力。但是,MCCF-PLL在APF中并未引起太多关注。本文提出了一种基于MCCF-PLL的选择性谐波消除技术对SAPF的研究和实现。所提出的方法证明了其在不平衡和扭曲电网条件下优化SAPF性能的可靠性和鲁棒性。实验证明了该方法的可靠性。

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