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Comparative Study of Different Approaches for Islanding Detection of Distributed Generation Systems

机译:分布发电系统岛屿检测不同方法的比较研究

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The issue of unintentional islanding in grid interconnection still remains a challenge in grid-connected, Distributed Generation System (DGS). This study discusses the general overview of popular islanding detection methods. Because of the various Distributed Generation (DG) types, their sizes connected to the distribution networks, and, due to the concern associated with out-of-phase reclosing, anti-islanding continues to be an issue, where no clear solution exists. The passive islanding detection technique is the simplest method to detect the islanding condition which compares the existing parameters of the system having some threshold values. This study first presents an auto-ground approach, which is based on the application of three-phase, short-circuit to the islanded distribution system just to reclose and re-energize the system. After that, the data mining-decision tree algorithm is implemented on a typical distribution system with multiple DGs. The results from both of the techniques have been accomplished and verified by determining the Non-Detection Zone (NDZ), which satisfies the IEEE standards of 2 s execution time. From the analysis, it is concluded that the decision tree approach is effective and highly accurate to detect the islanding state in DGs. These simulations in detail compare the old and new methods, clearly highlighting the progress in the field of islanding detection.
机译:在网格互连中无意岛屿的问题仍然是网格连接,分布生成系统(DGS)的挑战。本研究讨论了流行岛屿检测方法的一般概述。由于各种分布式生成(DG)类型,它们的大小连接到分配网络,并且由于与之相关的关注,反孤岛仍然是一个问题,其中不存在明确的解决方案。被动孤岛检测技术是检测孤岛条件的最简单方法,其比较具有一些阈值的系统的现有参数。本研究首先介绍了一种自动接地方法,基于三相,短路到岛状分配系统的应用只是为了重新旋转并重新激励系统。之后,数据挖掘决策树算法在具有多个DG的典型分发系统上实现。通过确定非检测区(NDZ)来完成和验证这两种技术的结果,该非检测区(NDZ)满足了2 S执行时间的IEEE标准。从分析中,得出结论,决策树方法是有效的,高精度地检测DGS中的岛屿状态。这些模拟详细比较了旧的和新方法,清楚地突出了岛屿检测领域的进展。

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