Comparison of methods for monitoring icing of high-voltage power lines and an overview of measuring equipment used to diagnose such lines

Nataliya Kriukova, Vladyslav Markov, Ye. Honcharov, I. Polyakov
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Abstract

The low structural reliability of overhead lines, due to continuous climatic influence, becomes the cause of electrical network accidents and unreliable power supply. Ensuring the trouble-free operation of overhead lines is a complex task, the solution of which is of the utmost importance for the normal functioning of the entire infrastructure. In the autumn-winter period, difficult weather conditions almost completely exclude the quick completion of repair works. A fairly large share of accidents occurs during the formation of icy deposits on wires and lightning protection cables. Today, visual inspections of high-voltage power lines remain the main way of diagnosing icy deposits. In practice, it is necessary to equip overhead lines with ice load telemetry devices, which will allow monitoring the formation of ice deposits on wires in real time. The following diagnostic methods are used in modern ice monitoring devices: strainometric, fiber-optic, aerodynamic, locational, and instrumental-parametric. The tensiometric method of diagnosis is implemented by means of direct measurement of the icy load on the wire with subsequent comparison of the measured values with predetermined values of the threshold loads. To implement this diagnostic method, magnetoelastic force measuring sensors are used. Such a sensor is connected between the traverse of the U-shaped support and the upper end of the corresponding garland of insulators with a phase wire. Ice, wind and ice-wind loads are measured separately. This method has a limited scope of application, namely for diagnosing the formation of ice on the phase wires of intermediate spans of single-circuit lines with two-post U-shaped resistances. The fiber-optic method of strain gauge measurements is implemented in object control systems under difficult operating conditions, at nuclear power plants. The mechanical effort sensor (fiber-optic strain sensor) implements the fiber-optic method of strain measurement. Fiber-optic strain sensors are characterized by high accuracy due to resistance to interference and complexity of execution.
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高压电力线结冰监测方法的比较和用于诊断高压电力线的测量设备的概述
由于持续的气候影响,架空线路结构可靠性低,成为造成电网事故和供电不稳定的原因。确保架空线路的无故障运行是一项复杂的任务,其解决对整个基础设施的正常运行至关重要。在秋冬季节,恶劣的天气条件几乎完全排除了快速完成维修工作的可能性。相当大一部分事故发生在电线和防雷电缆结冰形成的过程中。今天,对高压电线的目测检查仍然是诊断冰沉积的主要方法。在实践中,有必要为架空线路配备冰负荷遥测设备,这将允许实时监测电线上冰沉积的形成。在现代冰监测装置中使用的诊断方法有:应变法、光纤法、气动法、定位法和仪器参数法。张力测量诊断方法是通过直接测量导线上的冰载荷,然后将测量值与预定的阈值载荷进行比较来实现的。为了实现这种诊断方法,使用了磁弹性力测量传感器。该传感器用相线连接在u形支架的导线与相应绝缘子花环的上端之间。冰荷载、风荷载和冰-风荷载分别测量。该方法适用范围有限,即用于诊断双柱u型电阻单线中间跨相线结冰情况。光纤应变计测量方法是在核电站困难操作条件下的目标控制系统中实施的。机械力传感器(光纤应变传感器)实现了光纤应变测量方法。光纤应变传感器具有高精度由于抵抗干扰和执行的复杂性。
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