Laboratory Setup for Fault Detection on Overhead Power Lines Based on Magnetic Field Measurement

Đorđe Lekić, Predrag Mršić, Bojan Erceg, Č. Zeljković, Nemanja Kitić, P. Matić
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Abstract

This paper presents a laboratory setup for testing and experimental verification of fault detection methods based on contactless measurement of power line magnetic field. The setup consists of a physical power line model scaled to laboratory conditions with two orthogonal measuring coils installed on one support pole underneath phase conductors. Voltages induced in the coils are amplified and filtered out by using analog electrical circuits and are fed to a digital data acquisition board. The sampled voltages are digitally processed by employing a generalized fault detection method previously developed by the authors. In this paper the main steps for designing the measuring coils, analog amplifying and filtering circuits are described in detail. The developed laboratory setup is verified by experiments for different shunt and series faults.
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基于磁场测量的架空电力线路故障检测实验室设置
本文介绍了一种基于非接触测量电力线磁场的故障检测方法的实验室测试和实验验证。该装置包括一个按实验室条件缩放的物理电力线模型,两个正交的测量线圈安装在相导体下面的一个支撑杆上。线圈中感应的电压通过模拟电路放大和滤除,并提供给数字数据采集板。采用作者先前开发的广义故障检测方法对采样电压进行数字处理。本文详细介绍了测量线圈、模拟放大和滤波电路设计的主要步骤。通过对不同的并联和串联故障的实验验证了所建立的实验室装置。
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