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Approximated fuzzy logic controlled shunt active power filter for improved power quality

机译:近似模糊逻辑控制的并联有源功率滤波器,可改善电能质量

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摘要

Shunt active power filters have been widely used for power quality improvement. With the advancement in artificial intelligence techniques, the applications of fuzzy logic-based control systems have increased manifolds. This paper proposes a reduced rule fuzzy logic controller (FLC) in the voltage control loop of a shunt active power filter (APF), which is approximating a conventional large rule FLC. The difference between the controlled outputs of two controllers is compensated by proposed compensating factors. The dynamic response and harmonic compensation performance of proposed 4-rule approximated fuzzy logic controller (AFLC) is compared with 25-rule FLC. A three-phase shunt APF is used for harmonic and reactive power compensation. The proposed scheme is tested with randomly varying single and multiple non-linear loads. The simulation results presented under transient and steady-state conditions confirm that the proposed 4-rule AFLC efficiently approximates the 25-rule FLC. The proposed control methodology takes less computational time and computational memory as the numbers of rules are reduced significantly.
机译:并联有源电力滤波器已被广泛用于改善电能质量。随着人工智能技术的进步,基于模糊逻辑的控制系统的应用已增加了很多。本文在并联有源电力滤波器(APF)的电压控制环路中提出了一种简化规则的模糊逻辑控制器(FLC),该控制器近似于常规的大规则FLC。两个控制器的受控输出之间的差异由建议的补偿因子补偿。将拟议的4规则近似模糊逻辑控制器(AFLC)的动态响应和谐波补偿性能与25规则FLC进行了比较。三相并联APF用于谐波和无功功率补偿。在随机变化的单个和多个非线性负载下测试了所提出的方案。在瞬态和稳态条件下给出的仿真结果证实,所提出的4规则AFLC有效地逼近了25规则FLC。由于大大减少了规则数量,因此所提出的控制方法需要较少的计算时间和计算内存。

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