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A reiterative DFT to damp decaying DC and subsynchronous frequency components in fault current

机译:迭代DFT阻尼故障电流中衰减的DC和次同步频率分量

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摘要

This work presents a reiterative discrete Fourier transform (DFT) algorithm for fault current filtering. First, the short-windows DFT (SWDFT)-based mimic filter is developed to damp the measurement. Then, a reiterative scheme is proposed to reconstruct the damped measurement for further damping. The proposed algorithm can sufficiently damp the decaying dc as well as the subsynchronous frequency components. Thus, the proposed algorithm is appropriate to the filtering design on both the conventional and series-compensated transmission lines. Meanwhile, the recursive form is developed to reduce the computational burden. The simulation results illustrate that the algorithm significantly reduces the time to obtain the accurate fundamental phasor and that it has a better performance than the conventional DFT algorithm
机译:这项工作提出了一种用于故障电流滤波的迭代式离散傅里叶变换(DFT)算法。首先,开发了基于DFT(SWDFT)的短窗口模拟滤波器来抑制测量。然后,提出了一种迭代方案来重构阻尼测量以进一步阻尼。所提出的算法可以充分衰减衰减的直流电以及次同步频率分量。因此,所提出的算法适用于常规和串联补偿传输线上的滤波设计。同时,开发了递归形式以减轻计算负担。仿真结果表明,该算法大大减少了获得准确的基本相量的时间,并且比传统的DFT算法具有更好的性能。

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