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Transient selectivity for enhancing autonomous fault management in unearthed distribution networks with DFIG-based distributed generations

机译:利用基于DFIG的分布式发电来增强出土配电网中自治故障管理的瞬态选择性

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This paper proposes a method for identifying the faulty section in unearthed distribution networks connected with Doubly-Fed Induction Generator (DFIG)-based distributed generation. The proposed method depends on a dedicated transient-based selectivity function that is incorporated in an autonomous fault management procedure. Faulty section discrimination is performed by extracting the relative polarities of the front slopes at the terminals of each section generated by the fault current. The integration procedure of the protection selectivity function with the autonomous control is designed for the unearthed MV networks. Both earth and phase faults are considered in order to realize a broad, versatile and practical classification for such networks. Simulation cases are prepared using the ATP-EMTP package for testing purposes. The results corroborate the efficacy of the proposed method for classifying the faulty segment in distribution networks even for high impedance arcing faults as well as with considerable amounts of distributed wind turbines. (C) 2016 Elsevier B.V. All rights reserved.
机译:本文提出了一种基于双馈感应发电机(DFIG)的分布式发电连接的配电网故障区间识别方法。所提出的方法取决于在自治故障管理过程中并入的专用的基于瞬态的选择性函数。通过提取由故障电流产生的每个部分的端子处的前斜率的相对极性,来执行故障部分的判别。保护选择性功能与自主控制的集成过程是为出土的MV网络设计的。为了实现这种网络的广泛,通用和实用的分类,都考虑了接地故障和相位故障。为了进行测试,使用ATP-EMTP软件包准备了模拟案例。结果证实了所提出的用于对配电网中的故障段进行分类的方法的有效性,即使对于高阻抗电弧故障以及大量分布式风力涡轮机也是如此。 (C)2016 Elsevier B.V.保留所有权利。

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