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An Improved Harmonic Current Detection Method Based on Parallel Active Power Filter

机译:一种改进的基于并行有源电力滤波器的谐波电流检测方法

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Harmonic detection technology plays an important role in the applications of active power filter. The accuracy and real-time performance of harmonic detection are the precondition to ensure the compensation performance of Active Power Filter (APF). This paper proposed an improved instantaneous reactive power harmonic current detection algorithm. The algorithm uses an improved i_p-i_q algorithm which is combined with the moving average value filter. The proposed i_p-i_q algorithm can remove the aft and dq coordinate transformation, decreasing the cost of calculation, simplifying the extraction process of fundamental components of load currents, and improving the detection speed. The traditional low-pass filter is replaced by the moving average filter, detecting the harmonic currents more precisely and quickly. Compared with the traditional algorithm, the THD (Total Harmonic Distortion) of the grid currents is reduced from 4.41% to 3.89% for the simulations and from 8.50% to 4.37% for the experiments after the improvement. The results show the proposed algorithm is more accurate and efficient.
机译:谐波检测技术在有源电力滤波器的应用中起着重要作用。谐波检测的准确性和实时性能是确保有源电力滤波器(APF)补偿性能的前提。本文提出了一种改进的瞬时无功功率谐波电流检测算法。该算法使用改进的I_P-I_Q算法,该I_P-I_Q算法与移动平均值滤波器组合。所提出的I_P-I_Q算法可以去除AFT和DQ坐标转换,降低计算成本,简化了负载电流的基本组件的提取过程,提高了检测速度。传统的低通滤波器由移动平均滤波器替换,更精确且快速地检测谐波电流。与传统算法相比,电流电流的THD(总谐波变形)从仿真的4.41%降低至3.89%,在改进后的实验中的8.50%至4.37%。结果表明,所提出的算法更准确,高效。

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