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Fast fault detection and classification based on a combination of wavelet singular entropy theory and fuzzy logic in distribution lines in the presence of distributed generations

机译:小波奇异熵理论与模糊逻辑相结合的分布式发电系统快速故障检测与分类

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This paper proposes a new method of fault detection and classification in asymmetrical distribution systems with dispersed generation to detect islanding and perform protective action based on applying a combination of wavelet singular entropy and fuzzy logic. In this method, positive components of currents at common coupling points are decomposed to adjust detailed coefficients of wavelet transforms and singular value matrices, and expected entropy values are calculated via stochastic process. Indexes are defined based on the wavelet singular entropy in positive components and three phase currents to detect and classify the fault. This protection scheme is put forward for fault detection and is investigated in different types of faults such as single-phase to ground, double-phase to ground, three-phase to ground and line to line in distribution lines in the presence of distributed generations, and different locations of faults are verified when the distributed generation is connected to the utility. The major priority of the proposed protection scheme is its reduction in time (10 ms from the event inception) in distinguishing islanding and protection transmission lines in the presence of distributed generations. (C) 2015 Elsevier Ltd. All rights reserved.
机译:提出了一种基于小波奇异熵和模糊逻辑相结合的离散发电不对称配电系统故障检测与分类的新方法,以检测孤岛并采取保护措施。在这种方法中,分解公共耦合点处的电流的正分量,以调整小波变换和奇异值矩阵的详细系数,并通过随机过程计算期望的熵值。基于正分量的小波奇异熵和三相电流定义指标,以检测和分类故障。提出了这种保护方案用于故障检测,并在存在分布式发电的情况下,针对配电线路中的单相接地,双相接地,三相接地和线对线等不同类型的故障进行了研究,当将分布式发电连接到公用事业时,将验证故障的不同位置。所提出的保护方案的主要优先事项是在存在分布式发电的情况下,减少区分孤岛和保护传输线的时间(从事件发生起10毫秒)。 (C)2015 Elsevier Ltd.保留所有权利。

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