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Phasor Estimation Algorithm Based on Complex Frequency Filters for Digital Relaying

机译:基于复频滤波器的数字中继的相位估计算法

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摘要

This paper presents a new filter-based algorithm to estimate the fundamental phasor of fault currents, using the proposed complex frequency filter. The presence of decaying dc component (ddc) in fault currents causes large error in discrete Fourier transform (DFT)-based phasor estimation methods. The proposed filter discriminates the ddc from dc and sinusoidal signals. In this algorithm, first, the ddc is filtered out by the proposed filter. Then, the fundamental phasor can be precisely extracted by applying DFT. Second and fourth order of the complex frequency filter and their design method are presented. To evaluate the performance of the proposed algorithm, several test signals are used. The algorithm is also compared with recent DFT-based and mimic-DFT methods, using four performance indices. The simulation results demonstrate the robustness of the proposed algorithm against harmonics, noise, multiple ddc components, and off-nominal frequency. It also offers faster convergence speed. The proposed complex frequency filter can also be used for the phasor estimation of harmonic components in the presence of ddc with no need to readjust its parameters.
机译:本文介绍了一种新的基于滤波器的算法来估算故障电流的基本相量,使用所提出的复频滤波器。在故障电流中存在衰减的DC分量(DDC)在离散的傅里叶变换(DFT)的相控算法中导致大的误差。所提出的滤波器区分DDC来自DC和正弦信号。在该算法中,首先,通过所提出的滤波器滤除DDC。然后,可以通过应用DFT精确提取基础相量。提出了复频滤波器的第二和四阶和它们的设计方法。为了评估所提出的算法的性能,使用多个测试信号。使用四个性能指标,还将该算法与最近的基于DFT和模拟-DFT方法进行了比较。仿真结果展示了谐波,噪声,多个DDC组件和非名义频率抵抗算法的鲁棒性。它还提供更快的收敛速度。所提出的复频滤波器还可用于DDC存在下的谐波分量的相位估计,无需重新调整其参数。

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