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A Modular Cascaded Multilevel Inverter Based Shunt Hybrid Active Power Filter for Selective Harmonic and Reactive Power Compensation Under Distorted/Unbalanced Grid Voltage Conditions

机译:基于模块化级联多电平逆变器的并联混合有源电力滤波器,在电网电压失真/不平衡条件下进行选择性谐波和无功补偿

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In recent years, shunt hybrid active power filters are being increasingly considered as a viable alternative to both passive filters and active power filters for compensating harmonics. In literature, their applications are restricted to balanced systems and low voltage applications and therefore not for industrial applications. This paper investigates the performance of a modular cascaded multilevel inverter based Shunt Hybrid Active Power Filter (SHAPF) for reactive power compensation and selective harmonics elimination under distorted/unbalanced grid voltage conditions in medium voltage levels. In the proposed control method, reactive power compensation is achieved successfully with a perceptible amount and the performance results of harmonic compensation are satisfactory. Theoretical analysis and simulation results are obtained from an actual industrial network model in PSCAD. The simulation results are presented for a proposed system in order to demonstrate that the harmonic compensation performance meets the IEEE-519 standard.
机译:近年来,并联混合有源功率滤波器被越来越多地视为无源滤波器和有源功率滤波器的可行替代方案,以补偿谐波。在文献中,它们的应用仅限于平衡系统和低压应用,因此不适用于工业应用。本文研究了在中等电压水平下,在电网电压失真/不平衡的情况下,基于模块级联多电平逆变器的并联型混合有源电力滤波器(SHAPF)的性能,可用于无功补偿和选择性谐波消除。在提出的控制方法中,无功补偿成功地达到了可感知的程度,谐波补偿的性能结果令人满意。从PSCAD中的实际工业网络模型获得理论分析和仿真结果。针对拟议的系统提供了仿真结果,以证明谐波补偿性能符合IEEE-519标准。

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