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Discriminant-Analysis-Based Single-Phase Earth Fault Protection Using Improved PCA in Distribution Systems

机译:配电系统中基于改进分析法的基于判别分析的单相接地故障保护

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摘要

This paper presents a new approach for single phase-earth fault protection in distribution systems. Traditional protection schemes are analyzed and compared with one another for effective fault feature extraction. The maximum-likelihood method is also carried out on several copula functions to find the optimal copula to fit the fault feature data. Then, copula rank correlation is calculated by the optimal copula, and the principal component analysis technique is improved to preprocess and reduce the dimension of the fault data by decomposing the copula rank correlation matrix instead of computing the eigenvalues and their eigenvectors of the covariance matrix. Finally, the distance discriminant function is defined and operation criterion is proposed, and distance discriminant analysis is used to discriminate the faulty feeder. Simulation results of a practical 10-kV distribution system show that the proposed approach of fault protection is able to achieve better identification accuracy than the hierarchical clustering algorithm and Fuzzy c-means algorithms-based approaches.
机译:本文提出了一种配电系统单相接地故障保护的新方法。对传统的保护方案进行了分析,并将其相互比较以有效地提取故障特征。还对几种联接函数执行最大似然法,以找到适合断层特征数据的最优联接。然后,通过最优copula来计算copula等级相关性,并通过分解copula rank关联矩阵而不是计算协方差矩阵的特征值及其特征向量来改进主成分分析技术以预处理和减小故障数据的维数。最后,定义了距离判别函数并提出了运行准则,并通过距离判别分析来判别故障馈线。实际的10 kV配电系统的仿真结果表明,与基于层次聚类算法和基于模糊c均值算法的方法相比,所提出的故障保护方法能够实现更好的识别精度。

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