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Optimal Cascade Non-Integer Controller for Shunt Active Power Filter: Real-Time Implementation

机译:用于并联有源功率滤波器的最佳级联非整数控制器:实时实现

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摘要

Active power filters (APFs) are used to mitigate the harmonics generated by nonlinear loads in distribution networks. Therefore, due to the increase of nonlinear loads in power systems, it is necessary to reduce current harmonics. One typical method is utilizing Shunt Active Power Filters (SAPFs). This paper proposes an outstanding controller to improve the performance of the three-phase 25-kVA SAPF. This controller can reduce the current total harmonic distortion (THD), and is called fractional order PI-fractional order PD (FOPI-FOPD) cascade controller. In this study, another qualified controller was applied, called multistage fractional order PID controller, to show the superiority of the FOPI-FOPD cascade controller to the multistage FOPID controller. Both controllerswere designed based on a non-dominated sorting genetic algorithm (NSGA-II). The obtained results demonstrate that the steady-state response and transient characteristics achieved by the FO (PI + PD) cascade controller are superior to the ones obtained by the multistage FOPID controller. The proposed controller was able to significantly reduce the source current THD to less than 2, which is about a 52 reduction compared to the previous work in the introduction. Finally, the studied SAPF systemwith the proposed cascade controller was developed in the hardware-In-the Loop (HiL) simulation for real-time examinations.
机译:有源功率滤波器 (APF) 用于减轻配电网中非线性负载产生的谐波。因此,由于电力系统中非线性负载的增加,有必要降低电流谐波。一种典型的方法是使用并联有源电源滤波器(SAPF)。本文提出了一种出色的控制器,以提高三相 25 kVA SAPF 的性能。该控制器可以降低电流总谐波失真(THD),称为分数阶PI-分数阶PD(FOPI-FOPD)级联控制器。在这项研究中,应用了另一种合格的控制器,称为多级分数阶PID控制器,以证明FOPI-FOPD级联控制器优于多级FOPID控制器。两种控制器均基于非显性分选遗传算法(NSGA-II)设计。结果表明,FO(PI+PD)级联控制器的稳态响应和瞬态特性优于多级FOPID控制器。所提出的控制器能够将源电流THD显著降低到2%以下,与之前介绍中的工作相比,降低了约52%。最后,在硬件在环(HiL)仿真中开发了所研究的SAPF系统,并提出了级联控制器,用于实时检查。

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