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Enhanced Protection Scheme for Smart Grids Using Power Line Communications Techniques—Part I: Detection of High Impedance Fault Occurrence

机译:使用电力线通信技术的智能电网增强保护方案-第一部分:高阻抗故障发生的检测

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Occurrence of high impedance faults (HIFs) in rural overhead power distribution networks may cause safety and economic issues for both public and the utility. Such faults may not be detected by the conventional protection schemes, so the development of a more sophisticated method is necessary. The forthcoming evolution of power networks to smart grids creates opportunities for new technologies to be implemented to that purpose. Utilities may transmit data that are necessary for the system operation using specific frequency ranges. A novel method utilizing these is proposed in this work. The monitoring of the network's input impedance in these frequency ranges can be used for detection of HIF occurrence, because such faults impose significant changes in its value. The proposed method is applied to single branch topologies, as well as to an existing topology of a Greek rural distribution system. Significant conclusions are derived in both cases. Moreover, the influence of several parameters, such as fault impedance and location and earth's electromagnetic properties on the method's efficacy is examined. Also, it is shown that the implementation of the proposed method may be drastically simplified by focusing on the monitoring of specific frequencies rather than the entire frequency range under study.
机译:农村架空配电网中发生高阻抗故障(HIF)可能会给公共和公用事业造成安全和经济问题。常规的保护方案可能无法检测到此类故障,因此有必要开发一种更复杂的方法。电力网络向智能电网的即将到来的发展为为此目的实施新技术创造了机会。实用程序可以使用特定的频率范围来传输系统操作所需的数据。在这项工作中提出了一种利用这些方法的新颖方法。在这些频率范围内监视网络的输入阻抗可用于检测HIF的发生,因为此类故障会对其值产生重大影响。所提出的方法适用于单个分支拓扑,以及希腊乡村配电系统的现有拓扑。两种情况均得出重要结论。此外,还检查了故障阻抗和位置以及接地电磁特性等几个参数对方法有效性的影响。另外,还表明,通过关注特定频率而不是整个研究频率范围的监视,可以大大简化所提出​​方法的实现。

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