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Second Order Generalized Integrator Based Reference Current Generation Method for Single-Phase Shunt Active Power Filters Under Adverse Grid Conditions

机译:基于二阶广义积分器的逆网格条件下单相并联有源电力滤波器的参考电流生成方法

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摘要

The reference current generation (RCG) is a crucial part in the control of a shunt active power filter (APF). A variety of RCG techniques have been proposed in literature. Among these, the instantaneous reactive power theory, called pq theory, is probably the most widely used technique. The pq theory offers advantages such as satisfactory steady-state and dynamic performance, and at the same time simple digital implementation, however its application was limited to three-phase systems. To exploit the advantages of pq theory in single-phase systems, the single-phase pq theory has been proposed recently. In this paper, a simple and effective implementation of the single phase pq theory for single-phase shunt APFs is proposed. The suggested approach is based on employing second order generalized integrators (SOGI), and a phase locked loop (PLL). To fine tune the control parameters, a systematic design procedure based on the pole-zero cancellation, and the extended symmetrical optimum theory is proposed. During the design procedure, the effects of grid frequency variations and the presence of distortion in the grid voltage are taken into account. Finally, to confirm the effectiveness of the suggested approach, simulation results are presented.
机译:参考电流生成(RCG)是并联有源功率滤波器(APF)控制中的关键部分。文献中已经提出了多种RCG技术。其中,称为pq理论的瞬时无功功率理论可能是使用最广泛的技术。 pq理论具有诸如令人满意的稳态和动态性能,以及同时简单的数字实现等优点,但是其应用仅限于三相系统。为了利用pq理论在单相系统中的优势,最近提出了单相pq理论。本文提出了一种简单有效地实现单相并联APF的单相pq理论。建议的方法基于使用二阶通用积分器(SOGI)和锁相环(PLL)。为了对控制参数进行微调,提出了基于零极点抵消的系统设计程序,并扩展了对称最优理论。在设计过程中,考虑了电网频率变化的影响以及电网电压中失真的存在。最后,为确认所建议方法的有效性,给出了仿真结果。

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