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Real-Time Sag Monitoring System for High-Voltage Overhead Transmission Lines Based on Power-Line Carrier Signal Behavior

机译:基于电力线载波信号行为的高压架空输电线路实时垂度监测系统

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摘要

A new method of measuring the change in the average height above ground of horizontal high-voltage overhead transmission-lines (OHTLs) phase conductors is introduced. The new technique, called power-line carrier sag (PLC–SAG) for short, determines average overhead conductor height variations in real time by correlating sag with measured variations in the amplitude of signals propagating between power-line carrier (PLC) stations. The multifrequency PLC–SAG monitoring signals are injected onto the operational PLC system in the 50- to 500-kHz band, but without interfering with the operational integrity of the PLC teleprotection system. The feasibility of the method was examined using the theory of natural modes for multiconductor systems, and tested by extensive field experiments on two horizontal 400-kV lines operated in South Africa by Eskom. It is concluded that the average height of a horizontal OHTL can be tracked accurately for continuous periods by the PLC–SAG technique.
机译:引入了一种测量水平高压架空输电线路(OHTL)相导体的地面平均高度变化的新方法。这一新技术简称为电力线载波骤降(PLC-SAG),它通过将垂度与在电力线载波(PLC)站点之间传播的信号幅度的测量变化相关联,从而实时确定平均架空导线的高度变化。多频PLC–SAG监视信号以50至500 kHz的频带注入到正在运行的PLC系统中,但不会影响PLC远程保护系统的运行完整性。使用自然模式理论对多导体系统检查了该方法的可行性,并通过Eskom在南非运营的两条水平400 kV线路上进行了广泛的现场试验,测试了该方法的可行性。结论是,通过PLC–SAG技术可以连续连续地精确跟踪水平OHTL的平均高度。

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