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On the control of active power filters

机译:关于有源滤波器的控制

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摘要

This paper compares the popular control methods for two dominant types of active power filters (APFs). With the equivalent transformation of their control diagrams, the recently proposed current-source control method for series active power filter (SAPF) is revealed to have the same control structure as the traditional voltage-source control method therefore have same compensation performances. Similarly, two kinds of popular control methods for parallel active power filter (PAPF) are also compared and found to have the similar control structure. The recently proposed PAPF control scheme without harmonics detection is revealed as a reduced version of the traditional control scheme with harmonics detection. Therefore both have same basic control principles regarding load current harmonics compensation. A general expression of the control methods for PAPF is then proposed in the form of both a control diagram and a set of equations based on current detection. With a particular set of filter gains of the three detected currents, each particular control scheme can be specifically identified and described by the general expression. Subsequently the 64 possible sets of filter gains are examined by the proposed necessary conditions to locate practically valid control schemes. Finally 4 valid control schemes come out and among which some are schemes that have never been reported before. With the comprehensive comparison of the control methods and the proposed general expression in this paper, the essential relationships of the control methods are revealed, some misinterpretations from previous publications are clarified, and some new control schemes are obtained.
机译:本文比较了两种主要类型的有源电力滤波器(APF)的常用控制方法。通过对它们的控制图进行等效变换,揭示了最近提出的用于串联有源功率滤波器(SAPF)的电流源控制方法具有与传统电压源控制方法相同的控制结构,因此具有相同的补偿性能。类似地,还对两种常见的并联有源滤波器(PAPF)的控制方法进行了比较,发现它们具有相似的控制结构。作为不带谐波检测的传统控制方案的简化版本,揭示了最近提出的不带谐波检测的PAPF控制方案。因此,两者在负载电流谐波补偿方面具有相同的基本控制原理。然后,以控制图和基于电流检测的一组方程式的形式,提出了PAPF控制方法的一般表达。利用三个检测到的电流的一组特定的滤波器增益,可以通过通用表达式来具体标识和描述每个特定的控制方案。随后,通过提议的必要条件检查64种可能的滤波器增益集,以找到实际有效的控制方案。最终出现了4种有效的控制方案,其中一些是以前从未报告过的方案。通过对控制方法的综合比较和本文提出的通用表达式,揭示了控制方法的本质关系,澄清了先前出版物中的一些误解,并获得了一些新的控制方案。

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