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An Instantaneous Reactive Current Individual-phase Detection Method and Digital Realization Based on Fourier Transform

机译:基于傅里叶变换的瞬时无功电流单相检测方法和数字实现

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摘要

Currently, the frequency-domain detection methods based on Fourier Transform theory are widely used for reactive current detection, but they usually need the voltage phase information by means of phase locked loop (PLL), which will increase the algorithm complexity and may cause the reactive current detection errors. Therefore, this paper introduces an instantaneous reactive current detection method based on Fourier transform, which abandons the PLL to improve the comprehensive performance of the reactive current detection. Moreover, a synchronous tracking method for system frequency and a compensation strategy for the time delays derived from signal sampling, analog-digital conversion and detection algorithms are embedded in the proposed method, for the purpose of further reduce the reactive current detection errors. In addition, a digital realization means for this method based on recursive Discrete Fourier Transform (DFT) is introduced. The simulation and experimental results show that, with this novel method, the reactive currents could be individual-phase detected from the three-phase distorted unbalanced load currents accurately and quickly.
机译:目前,基于傅里叶变换理论的频域检测方法广泛用于无功电流检测,但它们通常需要逐相锁相环(PLL)的电压相位信息,这将增加算法复杂性并且可能导致反应性电流检测错误。因此,本文介绍了一种基于傅里叶变换的瞬时无功电流检测方法,其使PLL提高了反应电流检测的综合性能。此外,在所提出的方法中嵌入了用于系统频率的系统频率的同步跟踪方法和用于导出从信号采样,模数转换和检测算法的时间延迟的补偿策略,以便进一步降低反应电流检测误差。另外,引入了基于递归离散傅里叶变换(DFT)的该方法的数字实现装置。仿真和实验结果表明,通过这种新方法,可以精确且快速地从三相失真的不平衡负载电流检测到的无反应电流。

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