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An Advanced Current Control Strategy for Three-Phase Shunt Active Power Filters

机译:三相并联有源电力滤波器的先进电流控制策略

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摘要

This paper proposes an advanced control strategy to enhance performance of shunt active power filter (APF). The proposed control scheme requires only two current sensors at the supply side and does not need a harmonic detector. In order to make the supply currents sinusoidal, an effective harmonic compensation method is developed with the aid of a conventional proportional-integral (PI) and vector PI controllers. The absence of the harmonic detector not only simplifies the control scheme but also significantly improves the accuracy of the APF, since the control performance is no longer affected by the performance of the harmonic tracking process. Furthermore, the total cost to implement the proposed APF becomes lower, owing to the minimized current sensors and the use of a four-switch three-phase inverter. Despite the simplified hardware, the performance of the APF is improved significantly compared to the traditional control scheme, thanks to the effectiveness of the proposed compensation scheme. The proposed control scheme is theoretically analyzed, and a 1.5-kVA APF is built in the laboratory to validate the feasibility of the proposed control strategy.
机译:本文提出了一种先进的控制策略,以提高并联有源电力滤波器(APF)的性能。所提出的控制方案在电源侧仅需要两个电流传感器,并且不需要谐波检测器。为了使电源电流为正弦波,借助于常规的比例积分(PI)和矢量PI控制器,开发了一种有效的谐波补偿方法。谐波检测器的缺失不仅简化了控制方案,而且还大大提高了APF的精度,因为控制性能不再受谐波跟踪过程的性能影响。此外,由于最小化电流传感器以及使用四开关三相逆变器,实施拟议的APF的总成本变得更低。尽管简化了硬件,但由于提出的补偿方案的有效性,与传统的控制方案相比,APF的性能得到了显着改善。从理论上分析了所提出的控制方案,并在实验室中建立了一个1.5 kVA APF以验证所提出的控制策略的可行性。

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