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A Practical Integrated Fault Location Method for Electrical Power Distribution Networks

机译:实用的配电网综合故障定位方法

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Future distribution systems are expected to be self-healing systems which can manage the faults and quickly restore the customers from outage. As the basic function of fault management systems, fault location methods play an important role in reducing the outage time and related costs. This paper aims to present a practical method that provides precise and reliable estimations of the fault location. The method is an integration of a voltage sag-based method and an impedance-based method. Following to any permanent fault, the proposed method first uses the voltage sag magnitudes measured by a limited number of meters to find the closest node to the fault. Then, it investigates the lines connected to the node selected and uses an impedance-based method to find the exact fault location. The method proposed can be applied to large-scale distribution systems having several laterals and load taps. Simulations are on a practical distribution system are performed to test the method performance. The simulation study includes a comparative analysis with two other recent methods reported in the literature. The results show the better accuracy of the proposed method even with measurement inaccuracies and load data errors.
机译:预期未来的配电系统将是可自我修复的系统,可以管理故障并迅速使客户恢复正常运行。作为故障管理系统的基本功能,故障定位方法在减少停机时间和相关成本方面起着重要作用。本文旨在提出一种实用的方法,该方法可提供对故障位置的精确而可靠的估计。该方法是基于电压骤降的方法和基于阻抗的方法的集成。在出现任何永久性故障之后,所提出的方法首先使用由有限的电表测量的电压骤降幅度来找到与故障最接近的节点。然后,它研究连接到所选节点的线路,并使用基于阻抗的方法来查找确切的故障位置。所提出的方法可以应用于具有多个侧面和负载抽头的大规模配电系统。在实际的分配系统上进行仿真以测试方法的性能。仿真研究包括与文献中报道的其他两种最新方法的比较分析。结果表明,即使存在测量误差和载荷数据误差,该方法也具有较好的精度。

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