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Unsynchronized Fault-Location Technique for Double-Circuit Transmission Systems Independent of Line Parameters

机译:与线路参数无关的双回路传输系统的非同步故障定位技术

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摘要

In this paper, a new double-end fault-location technique is proposed for parallel transmission lines depending on unsynchronized measurements of both line ends without using line parameters. The proposed technique is based on profiling the correlation between the unknown synchronization angle and the fault distance to accurately estimate the fault point. The positive-sequence network with lumped parameter line model is first utilized in order to facilitate pinpointing the required synchronizing angle between both line ends. The least square error method is used to solve the equivalent positive-sequence network of the line using unsynchronized double-end measurements. Then, an accurate estimation of the fault distance can be realized for all fault types depending on the positive-sequence network of the faulty line. The performance of the proposed locator is thoroughly investigated using a detailed simulation of a selected 150-mi overhead parallel transmission system using the Alternate Transients Program/Electromagnetic Transients Program package. A wide variety of faulty conditions is covered in order to exploit the benefits of using double-end data even with very high fault resistance and untransposed transmission lines.
机译:在本文中,提出了一种新的双端故障定位技术,该技术基于不使用线路参数而对线路两端的不同步测量来确定并行传输线路。所提出的技术基于对未知同步角与故障距离之间的相关性进行分析以准确估计故障点。首先使用带有集总参数线模型的正序网络,以便于精确指出线两端之间所需的同步角。最小二乘误差法用于使用不同步的双端测量来求解线路的等效正序网络。然后,根据故障线路的正序网络,可以针对所有故障类型实现对故障距离的准确估计。拟议的定位器的性能已通过使用替代暂态程序/电磁暂态程序程序包对选定的150英里高架并行传输系统进行了详细的仿真,进行了深入研究。为了利用即使在非常高的抗故障性和未换位的传输线的情况下使用双端数据的好处,也涵盖了各种各样的故障条件。

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