基于倍频算法的基态有源电流提取和锁相环控制三相并联有源电力滤波器

Amit V. Sant;Arpitkumar J. Patel;Josep M. Guerrero
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引用次数: 0

摘要

并联电源有源滤波器(SAPF)的控制需要对负载电流和单位电压模板(uvt)的基本有源分量(FAC)进行估计。本文提出了一种基于FAC和UVT提取器的倍频器,其中负载电流和电源电压的$\alpha-\beta$量经过倍频器作用得到基频为工频4倍的分量。对这些信号进行带通滤波,确定四倍工频对应的分量。从而对得到的电流分量进行进一步处理,提取负载电流的FAC。基于同步参考系理论的锁相环利用同样获得的电压信号,借助所设计的同步逻辑进行精确的UVT提取。使用实验装置进行的对比分析表明,与先前报道的方案相比,开发的提取器具有更快的动态响应和准确的估计。在PSIM软件中研究了采用该提取算法控制的SAPF的性能。并进行了实验验证。采用该控制方案的SAPF运行确保了统一的功率因数运行,并通过从电网中提取正弦电流来遵守总谐波失真(THD)限制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Frequency Multiplier Algorithm Based Fundamental Active Current Extraction and Phase Locked Loop for the Control of 3-Phase Shunt Active Power Filter
Control of shunt power active filter (SAPF) necessitates estimation of the fundamental active component (FAC) of load current and unit voltage templates (UVTs). In this paper, a frequency multiplier based FAC and UVT extractor is proposed, wherein the $\alpha-\beta$ quantities of load current and supply voltage undergo frequency multiplier action to obtain the respective components with fundamental frequency four times the power frequency. With the band pass filtering of these signals, the components corresponding to four times the power frequency are determined. Thus obtained current components are further processed to extract the FAC of load current. Similarly obtained voltage signals are used by the synchronous reference frame theory based phase locked loop for accurate UVT extraction with the help of the designed synchronizing logic. The comparative analysis performed using an experimental setup demonstrates faster dynamic response and accurate estimation with a developed extractor compared to earlier reported schemes. The performance of SAPF controlled with the proposed extraction algorithm is investigated in PSIM software. Further, experimental validation is also presented. The SAPF operation with the proposed control scheme ensures unity power-factor operation and adherence to total harmonic distortion (THD) limits by drawing sinusoidal currents from the grid.
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