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High Impedance Fault Detection and Location in Combined Overhead Line and Underground Cable Distribution Networks Equipped with Data Loggers

机译:高阻抗故障检测和桥接线和地下电缆配电网络中的位置,配备了数据记录器

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摘要

Power distribution networks are vulnerable to different faults, which compromise the grid performance and need to be managed effectively. Automatic and accurate fault detection and location are key components of effective fault management. This paper proposes a new framework for fault detection and location for smart distribution networks that are equipped with data loggers. The framework supports networks with mixed overhead lines and underground cables. The proposed framework consists of area detection, faulty section identification, and high impedance fault location. Firstly, the faulty zone and section are detected based on the operation of over-current relays and digital fault recorders. Then, by comparing the recorded traveling times at both ends of lines, which are related to the protection zone, the faulty line is identified. In the last step, the location of the fault is estimated based on discrete wavelet transform. The proposed method is tested on a 20 kV 13 node network, which is composed of overhead lines and underground cables. The method is tested in both balanced and unbalanced configurations. The obtained results confirm the advantages of the proposed method compared with the current state-of-the art.
机译:配电网络容易受到不同故障的影响,这会损害网格性能,并且需要有效地管理。自动和准确的故障检测和位置是有效故障管理的关键组件。本文为配备数据记录器的智能配送网络提供了一个新的故障检测框架。该框架支持具有混合架空线和地下电缆的网络。所提出的框架包括区域检测,故障部分识别和高阻抗故障位置。首先,基于过电流继电器和数字故障记录器的操作检测故障区域和部分。然后,通过比较与保护区相关的线的两端的记录的行进时间,识别出故障线。在最后一步中,基于离散小波变换估计故障的位置。所提出的方法在20 kV 13节点网络上进行测试,该网络由架空线和地下电缆组成。该方法以平衡和不平衡的配置测试。与当前最先进的结果相比,所获得的结果证实了该方法的优点。

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