多段电力线故障定位

Y. Gong, M. Mynam, A. Guzman
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引用次数: 2

摘要

故障定位信息对输变网和子输变网的运行和维护至关重要。计算准确故障定位的一些挑战包括故障电阻、零序阻抗变化、零序互耦、负载、系统非均匀性以及由多段特征差异很大的电力线组成的电力线。本文提出了一种能对多段电力线路提供准确的故障定位信息的故障定位方法。这些部分可以有不同的阻抗特性。所提出的方法适用于不同类型的电力线,包括架空线路、地下电缆以及包括架空线路和地下电缆段的复合线路。故障电阻、并行线互耦、系统非均匀性和负载变化对所提出的故障定位方法的准确性影响最小。本文将现场事件报告与实际电力系统模型计算的故障定位结果进行了比较。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fault location for power lines with multiple sections
Fault location information is critical for operating and maintaining transmission and subtransmission networks. Some of the challenges in calculating accurate fault location include fault resistance, zero-sequence impedance variations, zero-sequence mutual coupling, load, system nonhomogeneity, and power lines composed of multiple sections with considerably different characteristics. This paper presents a fault location method that provides accurate fault location information for power lines with multiple sections. These sections can have different impedance characteristics. The proposed method is suitable for different types of power lines, including overhead lines, underground cables, and composite lines that include both overhead line and underground cable sections. Fault resistance, parallel-line mutual coupling, system nonhomogeneity, and load variations have minimal effect on the accuracy of the proposed fault location method. This paper compares fault location results calculated from event reports that were obtained from the field and from models of real power systems.
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