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Improved performance of single-phase shunt active power filter by using conservative power theory and model predictive control

机译:利用保守功率理论和模型预测控制改善单相并联有源电力滤波器的性能

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摘要

Shunt active power filters (SAPFs) are considered as an effective and practical solution for growing power quality problems. The purpose of the SAPF is to generate and inject the appropriate current into the power system to eliminate the load harmonics and obtain the unit power factor. In this paper, a single-phase power system with pure sinusoidal voltage source and nonlinear load with single-phase SAPF is studied. The reference currents of the filter are obtained by conservative power theory (CPT) and constructed using the model predictive control (MPC) switching algorithm which is applied to the conventional two-level inverter. This study is verified by both simulation and experimental results. Also, the results of this study are compared with those of hysteresis switching algorithm.
机译:并联有源功率滤波器(SAPF)被认为是解决日益严重的电能质量问题的有效且实用的解决方案。 SAPF的目的是生成适当的电流并将其注入电源系统,以消除负载谐波并获得单位功率因数。本文研究了具有正弦正弦电压源和单相SAPF非线性负载的单相电力系统。滤波器的参考电流通过保守功率理论(CPT)获得,并使用模型预测控制(MPC)切换算法构建,该算法应用于常规的两电平逆变器。仿真和实验结果均验证了该研究。另外,将本研究的结果与磁滞切换算法的结果进行了比较。

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