用于失真电力信号频率估计的改进窗口相位差法

Chengcheng Li, Yuan Wan, Pingheng Pan, Bian Hu, Junhao Zhang
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引用次数: 0

摘要

频率是电力系统最重要的指标之一,需要精确的估算才能为监测、控制和保护提供可靠的依据。由于效率高,DFT 被广泛应用于电力系统的频率测量。然而,频谱泄漏和篱笆效应等固有缺陷降低了 DFT 的精度。其中一种名为窗口相位差法(WPD)的变体利用两个窗口序列在频域中的相位变化来解决这一问题,并实现了精确的频率估计。由于忽略了负分量和噪声污染,基于 WPD 的频率估计仍存在不期望误差。为了减少非期望误差的影响,本文首先分析了频谱泄漏引入的 WPD 系统误差,并提出了一种通过系统误差补偿实现更精确频率估计的改进 WPD(IWPD)。然后,通过推导频率估计方差的理论表达式,研究了基于 IWPD 的噪声信号频率估计的窗口效应。最后,通过大量的计算机仿真和实际实验验证了所提出的 IWPD。
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Improved windowed phase difference method for frequency estimation of distorted power signals
Frequency is one of the most significant indicators of power system, which needs accurate estimation to provide a reliable basis for monitoring, control, and protection. Owning to the efficiency, DFT is widely used in the frequency measurement of power systems. However, the inherent defects, that is, the spectral leakage and picket fence effect, decrease the accuracy of DFT. One of the variants, named the windowed phase difference method (WPD), addresses the problem using the phase variation of two windowed sequences in the frequency domain and achieves accurate frequency estimation. Suffering from the ignored negative component and contamination of noise, there are still undesired errors in WPD-based frequency estimation. To reduce the influence of the undesired errors, this paper first analyzes the systematic error of WPD introduced by spectrum leakage and proposes an improved WPD (IWPD) through systematic error compensation to achieve more accurate frequency estimations. Then, the windowing effect on IWPD-based frequency estimation of a noisy signal is studied by deducing the theoretical expression of frequency estimation variance. Finally, the proposed IWPD is validated by extensive computer simulations and practical experiments.
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