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首页> 外文期刊>International Journal of Electrical Power & Energy Systems >A new faulty section identification and fault localization technique for three-terminal transmission line
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A new faulty section identification and fault localization technique for three-terminal transmission line

机译:三端输电线路故障段识别与故障定位新技术

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摘要

Owing to mal-operation of the conventional scheme during high resistance ground fault near tap point, a new faulty section identification and fault localization technique for three-terminal transmission line is presented in this paper. The proposed technique utilizes time-synchronized voltage and current signals from all the three terminals. Initially, fault detection based on estimation of superimposed voltage of tap point with reference to all three terminals has been carried out. Subsequently, utilizing the above three estimated superimposed voltages; faulty section identification criterion is formed. Finally, fault localization i.e. estimation of the value of fault distance and resistance has been performed. The authenticity of the proposed technique has been verified by simulating an existing 400 kV Indian three-terminal transmission network in PSCAD/EMTDC software. The simulation results point out that the proposed technique is able to identify the faulty section correctly. Moreover, it precisely estimates the value of fault distance and fault resistance as the percentage error for fault location and resistance remains within +/- 1.5% and +/- 3.5%, respectively. Likewise, its performance remains unaffected during wide variation in fault and system parameters. At the end, comparative evaluation of the proposed technique with the existing protection scheme clearly shows its superiority. (C) 2017 Elsevier Ltd. All rights reserved.
机译:由于传统方案在分接点附近高电阻接地故障时的误操作,提出了一种新的三端输电线路故障段识别和故障定位技术。所提出的技术利用了来自所有三个端子的时间同步电压和电流信号。最初,已经进行了基于相对于所有三个端子的抽头点的叠加电压的估计的故障检测。随后,利用上述三个估计的叠加电压;形成故障区域识别标准。最后,进行了故障定位,即估计故障距离和电阻值。通过在PSCAD / EMTDC软件中模拟现有的400 kV印度三端输电网络,已验证了所提出技术的真实性。仿真结果表明,所提出的技术能够正确识别出故障区域。此外,由于故障位置和电阻的百分比误差分别保持在+/- 1.5%和+/- 3.5%之内,因此可以精确估计故障距离和故障电阻的值。同样,在故障和系统参数变化很大的情况下,其性能也不会受到影响。最后,对所提出技术与现有保护方案的比较评估清楚地表明了其优势。 (C)2017 Elsevier Ltd.保留所有权利。

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