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Meeting IEEE-519 Current Harmonics and Power Factor Constraints With a Three-Phase Three-Wire Active Power Filter Under Distorted Source Voltages

机译:三相三线有源功率滤波器在源电压失真的情况下满足IEEE-519电流谐波和功率因数约束

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摘要

An efficient steady-state compensation method and a conceptual design for sizing the three-phase three-wire shunt active power filter (APF) under nonsinusoidal source voltages are presented in this paper. Conventionally, the compensation currents injected by the APF are determined to eliminate harmonic currents of the nonlinear load as well as to compensate reactive power and maintain the sinusoidal source currents. However, the subject related to the optimal control of the APF to meet the IEEE-519 harmonic current limits and other constraints, such as minimum load power factor requirement after compensation with an optimal kilo-volt-ampere rating, are rarely investigated. In this paper, an optimization-based solution algorithm is proposed to determine the three-phase three-wire APF current injections to meet different constraints with an optimal filter size, where the voltage compensation-based control strategy is formulated as a nonlinear programming problem and is solved to find the optimal compensator gains and APF current injections. Results obtained by simulations with Matlab/Simulink show that the proposed approach is very flexible and effective for compensating harmonic currents generated by the nonlinear load with an optimal size of the APF.
机译:提出了一种有效的稳态补偿方法和一种在非正弦电源电压下确定三相三线并联有源功率滤波器(APF)尺寸的概念设计。通常,确定由APF注入的补偿电流以消除非线性负载的谐波电流,以及补偿无功功率并保持正弦源电流。但是,很少有人研究与满足IEEE-519谐波电流限制的APF的最佳控制和其他约束(例如,以最佳千伏安额定值补偿后的最小负载功率因数要求)有关的主题。本文提出了一种基于优化的求解算法,以确定具有最佳滤波器尺寸的三相三线APF电流注入,以满足不同的约束,其中将基于电压补偿的控制策略表述为非线性规划问题,并且解决方案以找到最佳补偿器增益和APF电流注入。通过Matlab / Simulink仿真获得的结果表明,所提出的方法对于使用APF的最佳大小来补偿非线性负载产生的谐波电流非常灵活且有效。

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