Comparative Study of Direct and Indirect Current Control Algorithms for Shunt Active Power Filter

N. A. Rahman, N. Nasir, R. Baharom
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引用次数: 1

Abstract

This paper presents a study on the development and simulation of two current control algorithms for a single-phase Shunt Active Power Filter (SAPF) operation. These current control algorithms are developed using two control strategies namely as direct and indirect current control strategies. Both current control algorithms are called Direct Current Control (DCC) algorithm and Indirect Current Control (ICC) algorithm. The operation of the SAPF using DCC and ICC algorithms are analysed in MATLAB/Simulink; to determine which current control algorithm is capable to boost up the steady-state performance of the SAPF in compensating harmonic currents. This work considers two cases of study. The first one is to study the performance of the SAPF under different percentages of full-load current, whilst, the second case is to study the performance of the SAPF when it is connected to different types of non-linear load. The SAPF performance is assessed by analysing the Total Harmonic Distortion (THD) value of instantaneous supply currents. From simulation results, it can be claimed that the SAPF using the DCC algorithm inherits better performance (in compensating harmonic currents) than using the ICC algorithm. Selected simulation results are presented to verify the hypothesis.
并联型有源电力滤波器直流与间接电流控制算法的比较研究
本文研究了单相并联有源电力滤波器的两种电流控制算法的开发和仿真。这些电流控制算法采用两种控制策略,即直接和间接电流控制策略。这两种电流控制算法分别称为直流控制(DCC)算法和间接电流控制(ICC)算法。在MATLAB/Simulink中分析了采用DCC和ICC算法的SAPF的运算;以确定哪种电流控制算法能够在补偿谐波电流时提高SAPF的稳态性能。这项工作考虑了两个研究案例。第一个案例是研究SAPF在不同满载电流百分比下的性能,第二个案例是研究SAPF连接不同类型非线性负载时的性能。通过分析瞬时供电电流的总谐波失真(THD)值来评估SAPF的性能。从仿真结果可以看出,使用DCC算法的SAPF继承了比使用ICC算法更好的性能(补偿谐波电流)。给出了一些仿真结果来验证这一假设。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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