Nonlinear Predictive Control of a Power Parallel Active Filter for Harmonic Compensation

Q2 Engineering
Boum At, Michael Dzp
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引用次数: 0

Abstract

This article presents the modelling and design of nonlinear predictive control of a power active filter. The dynamic modelling is based on the abc-dq transformation. The reference harmonic component are extracted from nonlinear load current detected by applying the method of the synchronous reference frame, where a three phase inverter made of diode bridge with an RL load is taken as the nonlinear load. The injected currents by the active filter are controlled in the synchronous orthogonal dq reference by the use of a nonlinear model predictive control based on differential geometry and the diffeomorphism. The level of the voltage on the Dc side is control by the use of a PI regulator and is used as voltage reference for the SVPWM. The SVPWM is used here to generate the control output to the voltage inverter. The simulation results show a good performance for constant load and for variable one also.
电力并联有源滤波器谐波补偿的非线性预测控制
本文介绍了电力有源滤波器非线性预测控制的建模与设计。动态建模基于abc-dq变换。采用同步参照系的方法从检测到的非线性负载电流中提取出参考谐波分量,其中非线性负载为带RL负载的二极管桥式三相逆变器。采用基于微分几何和微分同态的非线性模型预测控制,在同步正交dq基准下控制由有源滤波器注入的电流。直流侧的电压水平由PI调节器控制,并作为SVPWM的电压基准。SVPWM在这里用于产生电压逆变器的控制输出。仿真结果表明,该方法在恒负载和变负载情况下均具有良好的性能。
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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CiteScore
2.10
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0.00%
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