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A Comparison of Impedance-Based Fault Location Methods for Power Underground Distribution Systems

机译:基于阻抗的电力地下配电系统故障定位方法的比较

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In the last few decades, the Smart Grid paradigm presence has increased within power systems. These new kinds of networks demand new Operations and Planning approaches, following improvements in the quality of service. In this sense, the role of the Distribution Management System, through its Outage Management System, is essential to guarantee the network reliability. This system is responsible for minimizing the consequences arising from a fault event (or network failure). Obviously, knowing where the fault appears is critical for a good reaction of this system. Therefore, several fault location techniques have been proposed. However, most of them provide individual results, associated with specific testbeds, which make the comparison between them difficult. Due to this, a review of fault location methods has been done in this paper, analyzing them for their use on underground distribution lines. Specifically, this study is focused on an impedance-based method because their requirements are in line with the typical instrumentation deployed in distribution networks. This work is completed with an exhaustive analysis of these methods over a PSCAD TM X4 implementation of the standard IEEE Node Test Feeder, which truly allows us to consistently compare the results of these location methods and to determine the advantages and drawbacks of each of them.
机译:在过去的几十年中,智能电网范例在电力系统中的应用有所增加。随着服务质量的提高,这些新型网络需要新的运营和计划方法。从这个意义上说,分配管理系统通过其中断管理系统的作用对于保证网络可靠性至关重要。该系统负责最小化由故障事件(或网络故障)引起的后果。显然,知道故障出现在哪里对于系统的良好反应至关重要。因此,已经提出了几种故障定位技术。但是,它们中的大多数提供与特定测试床相关的单独结果,这使得它们之间的比较变得困难。因此,本文对故障定位方法进行了综述,并分析了其在地下配电线路上的应用。具体而言,本研究专注于基于阻抗的方法,因为它们的要求与配电网络中部署的典型仪表相符。通过对标准IEEE节点测试Feeder的PSCAD TM X4实施方式进行的详尽分析,完成了这项工作,这确实使我们能够始终如一地比较这些定位方法的结果,并确定每种方法的优缺点。

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