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Performance analysis of SAPF based on self tuned harmonic filter with fuzzy logic controller

机译:基于模糊控制器自校正谐波滤波器的SAPF性能分析。

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This article present software implementation, evaluation and simulation of three phase three wire(3-ph-3w) shunt active power filter (SAPF). It is able to harmonic mitigation, reactive power mitigation and power factor correction (PFC) under balanced diode rectifier nonlinear load with resistive inductive load as well as time series change of supply voltage amplitude. The p-q theory with self-tuning harmonic filter (STHF) is exercised for fundamental reference supply current generation. The novelty of control topology implemented in proposed brief is brought STHF which directly extracts voltage and current fundamental components in α-β axis without use of synchronizing unit vector element. Fuzzy logic based controller has been designed in MATLAB/Simulink platform to evaluate system performance under non-linearity and time series supply voltage amplitude variation. It will be proved that a define approach has good dynamic response. A simulation performance and results will illustrate better performance in comparison with classical extraction methods will be obtained. The usefulness of proposed SAPF is demonstrated through simulation using sim-power-system and embedded function integrated in MATLAB/Simulink.
机译:本文介绍了三相三线(3-ph-3w)并联有源电力滤波器(SAPF)的软件实现,评估和仿真。它能够在带有电阻性感性负载的平衡二极管整流器非线性负载以及电源电压幅度随时间变化的情况下,实现谐波抑制,无功功率抑制和功率因数校正(PFC)。运用带有自调谐谐波滤波器(STHF)的p-q理论来产生基本的参考电源电流。提出的摘要中实现的控制拓扑的新颖性是STHF,它无需使用同步单位矢量元素就可以直接提取α-β轴上的电压和电流基本分量。已在MATLAB / Simulink平台中设计了基于模糊逻辑的控制器,以评估非线性和时间序列电源电压幅度变化下的系统性能。将证明定义方法具有良好的动态响应。与经典提取方法相比,仿真性能和结果将说明更好的性能。通过使用sim-power-system和集成在MATLAB / Simulink中的嵌入式功能进行仿真,证明了所提出的SAPF的有用性。

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