A balancing voltage transformation for robust frequency estimation in unbalanced power systems

Yili Xia, Kai Wang, Wenjiang Pei, D. Mandic
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引用次数: 3

Abstract

This paper addresses the detection of the fundamental frequency of power systems under unbalanced and distorted conditions. By using the second order information, both the autocorrelation and pseudo-autocorrelation, within the Clarke's transformed voltage, a novel balancing voltage transformation (BVT) is proposed to accurately detect the underlying phase angle evolution of the positive sequence component. This removes the biggest obstacle in current power systems and makes possible to use any frequency estimator for single-tone exponential on unbalanced power systems. The robustness of the proposed phase angle detection technique is illustrated for two well-known and efficient frequency estimators, that is, a discrete Fourier transform (DFT) coefficient interpolation method [1] and the weighted linear predictor (WLP) [2]. A window technique is used to cater for the fast and computationally affordable frequency estimation purposes. Simulations over a range of unbalanced conditions, including voltage dips and swells, frequency deviations and the presence of higher order harmonics support the analysis.
一种用于不平衡电力系统鲁棒频率估计的平衡电压变换
本文讨论了电力系统在不平衡和畸变条件下的基频检测问题。利用Clarke变换电压内的二阶自相关和伪自相关信息,提出了一种新的平衡电压变换(BVT),以准确检测正序分量的底层相角演变。这消除了当前电力系统中最大的障碍,使得在不平衡电力系统中使用任何频率估计器进行单音指数估计成为可能。本文所提出的相角检测技术对于两种众所周知且高效的频率估计方法(即离散傅立叶变换(DFT)系数插值方法[1]和加权线性预测器(WLP)[2])具有鲁棒性。使用窗口技术来满足快速和计算负担得起的频率估计目的。在一系列不平衡条件下的模拟,包括电压下降和膨胀,频率偏差和高阶谐波的存在支持分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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