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ADALINE Harmonics Extraction Algorithm applied to a Shunt Active Power Filter based on an Adaptive Fuzzy Hysteresis current control and a fuzzy DC voltage controller

机译:基于自适应模糊滞后电流控制和模糊直流电压控制器的分流有源电力滤波器应用于分流有源电力滤波器的亚甘油谐波提取算法

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摘要

This paper deals with the use of an adaptive linear (ADALINE) neural network in a harmonic extraction algorithm based on the calculation of instantaneous active and reactive powers. This technique, called "ANN-PQ", is developed in order to achieve an effective separation between the fundamental and harmonic components of the instantaneous powers, which used as reference variables in the control of the shunt active power filter (SAPF). In order to further increase the filtering performances of the SAPF, fuzzy logic theory is used in two parts of the SAPF control system. The first concerns the modulation technique where the hysteresis band of the current control strategy will be generated by a fuzzy inference system. In the second part, the fuzzy logic will be integrated into the external control loop of the SAPF to maintain the DC voltage at its reference value. The numerical simulation results, given at the end of this paper, clearly show the effectiveness of the proposed control techniques.
机译:本文根据瞬时活动和无功功率的计算,涉及在谐波提取算法中使用自适应线性(Adaline)神经网络。这种技术称为“Ann-PQ”,以实现瞬时功率的基本和谐波分量之间的有效分离,其用作在控制分流有源电力滤波器(SAPF)中的参考变量。为了进一步提高SAPF的过滤性能,模糊逻辑理论用于SAPF控制系统的两部分。首先涉及通过模糊推理系统产生电流控制策略的滞后带的调制技术。在第二部分中,模糊逻辑将集成到SAPF的外部控制回路中,以将DC电压保持在其参考值。在本文末尾给出的数值模拟结果,清楚地表明了所提出的控制技术的有效性。

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