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Modeling and Simulation of a PI Controlled Shunt Active Power Filter for Power Quality Enhancement Based on P-Q Theory

机译:基于P-Q理论的PI控制分流有源电力滤波器的建模与仿真

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摘要

The design of reliable power filters that mitigate current and voltage harmonics to meet the power quality requirements of the utility grid is a major requirement of present-day power systems. In this paper, a detailed systematic approach to design a shunt active power filter (SAPF) for power quality enhancement is discussed. A proportional–integral (PI) controller is adopted to regulate the DC-link voltage. The instantaneous reactive power theory is employed for the reference current’s extraction. Hysteresis current control is used to obtain the gate pulses that control the voltage source inverter (VSI) switches. The detailed SAPF is developed and simulated for balanced nonlinear loads and unbalanced nonlinear loads using MATLAB/Simulink. The simulation results indicate that the proposed filter can minimize the harmonic distortion to a level below that deployed by the Institute of Electrical and Electronics Engineers (IEEE) standards.
机译:可靠性电源滤波器的设计,可实现电流和电压谐波,以满足公用事业电网的电力质量要求是本日电力系统的主要要求。本文讨论了设计用于电力质量增强的分流有源电力滤波器(SAPF)的详细系统方法。采用比例积分(PI)控制器来调节DC-Link电压。瞬时无功功率理论用于参考电流的提取。滞后电流控制用于获得控制电压源逆变器(VSI)交换机的栅极脉冲。使用MATLAB / Simulink的平衡非线性负载和不平衡非线性负载开发和模拟详细的SAPF。仿真结果表明,所提出的滤波器可以最小化由电气和电子工程师(IEEE)标准部署的低级的谐波变形。

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