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Partial Discharge Location Technique for Covered-Conductor Overhead Distribution Lines

机译:覆盖导线架空配电线的局部放电定位技术

摘要

In Finland, covered-conductor (CC) overhead lines are commonly used in medium voltage (MV) networks because the loads are widely distributed in the forested terrain. Such parts of the network are exposed to leaning trees which produce partial discharges (PDs) in CC lines.This thesis presents a technique to locate the PD source on CC overhead distribution line networks. The algorithm is developed and tested using a simulated study and experimental measurements. The Electromagnetic Transient Program-Alternative Transient Program (EMTP-ATP) is used to simulate and analyze a three-phase PD monitoring system, while MATLAB is used for post-processing of the high frequency signals which were measured. A Rogowski coil is used as the measuring sensor. A multi-end correlation-based technique for PD location is implemented using the theory of maximum correlation factor in order to find the time difference of arrival (TDOA) between signal arrivals at three synchronized measuring points. The three stages of signal analysis used are: 1) denoising  by applying discrete wavelet transform (DWT); 2) extracting the PD features using the absolute or windowed standard deviation (STD) and; 3) locating the PD point. The advantage of this technique is the ability to locate the PD source without the need to know the first arrival time and the propagation velocity of the signals. In addition, the faulty section of the CC line between three measuring points can also be identified based on the degrees of correlation.An experimental analysis is performed to evaluate the PD measurement system performance for PD location on CC overhead lines. The measuring set-up is arranged in a high voltage (HV) laboratory. A multi-end measuring method is chosen as a technique to locate the PD source point on the line. A power transformer 110/20 kV was used to energize the AC voltage up to 11.5 kV/phase (20 kV system). The tests were designed to cover different conditions such as offline and online measurements.The thesis evaluates the possibility of using a Rogowski coil for locating faults in MV distribution lines and a test bench of a 20 kV distribution network is developed. Different fault scenarios are simulated including earth and phase faults, arcing faults and faults caused by leaning trees. Results favourably show the possibility of using a Rogowski coil for locating faults in distribution networks.
机译:在芬兰,由于负荷广泛分布在森林地带,因此在中压(MV)网络中通常使用覆盖导体(CC)架空线。网络的这些部分暴露在倾斜的树上,这些树在CC线路中产生局部放电(PD)。本文提出了一种在CC架空配电线路网络上定位PD源的技术。使用模拟研究和实验测量来开发和测试该算法。电磁暂态程序-暂态暂态程序(EMTP-ATP)用于模拟和分析三相PD监视系统,而MATLAB用于对所测量的高频信号进行后处理。 Rogowski线圈用作测量传感器。使用最大相关因子理论实现了一种基于多端相关性的PD定位技术,以便找到三个同步测量点信号到达之间的到达时间差(TDOA)。使用的信号分析的三个阶段是:1)通过应用离散小波变换(DWT)去噪; 2)使用绝对或窗口标准偏差(STD)提取PD特征,并且; 3)定位PD点。该技术的优点是无需知道信号的首次到达时间和传播速度即可定位PD源的能力。此外,还可以根据相关程度识别三个测量点之间CC线路的故障部分,并进行实验分析以评估PD测量系统在CC架空线上的PD定位性能。测量装置布置在高压(HV)实验室中。选择多端测量方法作为在线上定位PD源点的技术。使用110/20 kV电源变压器为AC电压供电,最高可达11.5 kV /相(20 kV系统)。测试旨在涵盖离线和在线测量等不同条件。本文评估了使用Rogowski线圈定位中压配电线路中的故障的可能性,并开发了20 kV配电网的测试台。模拟了不同的故障场景,包括接地故障和相位故障,电弧故障以及由倾斜树木引起的故障。结果很好地表明了使用Rogowski线圈定位配电网络中故障的可能性。

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  • 作者

    Isa Muzamir;

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  • 年度 2013
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