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Online travelling wave-based fault location on crossbonded AC cables in underground transmission systems

机译:在地下传动系统中横向交流电缆的在线旅行波的故障位置

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In this paper, a fault locator system specifically designed for crossbonded cables is described. Electromagnetic wave propagation theory for crossbonded cables with focus on fault location purposes is discussed. Based on this, the most optimal modal component and input signal to the fault locator system are identified. The fault locator system uses the Wavelet Transform both to create reliable triggers in the units and to estimate the fault location based on time domain signals obtained in the substations by two fault locator units. Field measurements of faults artificially created on a section of a 245 kV crossbonded cable system, connecting the newly installed 400 MW Danish offshore wind farm Anholt to the main grid, are obtained and used to verify the proposed system. Furthermore, extensive simulation data created in PSCAD/EMTDC is used in order to examine the robustness of the system to changes in the fault inception angle, fault resistance and fault location. It is shown that the fault location can be estimated very accurately using the proposed system and the system will be used to monitor Danish crossbonded transmission cables in the future.
机译:本文描述了一种专门设计用于交叉电缆的故障定位器系统。讨论了专注于故障定位目的的横梁电缆的电磁波传播理论。基于此,识别出故障定位系统最佳的模态分量和输入信号。故障定位系统使用小波变换来在单元中创建可靠的触发器,并基于两个故障定位单元在变电站中获得的时域信号来估计故障位置。在245 kV跨跨越电缆系统的一部分上,将新安装的400兆瓦丹麦海上风电场Anholt连接到主电网的截面上的现场测量,并用于验证所提出的系统。此外,使用在PSCAD / EMTDC中创建的广泛仿真数据,以便检查系统的稳健性,以更换故障成立角,故障和故障位置。结果表明,使用所提出的系统可以非常准确地估计故障位置,并且该系统将在将来监控丹麦交叉传输电缆。

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