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Fault Classification for Transmission Lines Based on Group Sparse Representation

机译:基于组稀疏表示的输电线路故障分类

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Fault classification is an important aspect of the protective relaying system for transmission lines. This paper proposes a new method based on group sparse representation for fault classification in transmission lines in which half-cycle superimposed current signals are measured for the classification task. When compared to conventional feature extraction methods, the proposed method in this paper alleviates the requirement to manually design feature. Signals are factorized over an over-complete basis in which elements are the fault signals themselves. The algorithm of classification is based on the idea that the training samples of a particular fault type approximately form a linear basis for any test sample belonging to that class. Solved by l(2,1)-minimization, the coefficient should be group sparse, and its non-zero entries correspond to particular group of correlated training samples. It is illustrated that the proposed classification method can be properly modified to deal with noise-containing signals. Moreover, dimension reduction is performed using random mapping technique. The results of several simulations are carried out by PSCAD/EMTDC and field data in real system indicate that the proposed method is accurate and fast for fault classification, and has a high robustness to noise.
机译:故障分类是输电线路继电保护系统的重要方面。提出了一种基于群稀疏表示的输电线路故障分类的新方法,该方法通过测量半周叠加电流信号来完成分类任务。与传统特征提取方法相比,本文提出的方法减轻了人工设计特征的需求。信号在过完整的基础上分解,其中故障信号本身就是要素。分类算法基于这样的思想,即特定故障类型的训练样本对于属于该类别的任何测试样本大致形成线性基础。通过l(2,1)-最小化求解,该系数应为组稀疏,并且其非零条目对应于相关训练样本的特定组。说明了所提出的分类方法可以被适当地修改以处理包含噪声的信号。此外,使用随机映射技术执行尺寸减小。 PSCAD / EMTDC进行了多次仿真,结果表明,该方法对故障分类准确,快速,对噪声具有较高的鲁棒性。

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