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Geomagnetically induced currents modelling and monitoring transformer neutral currents in Austria

机译:奥地利的地磁感应电流建模和监测变压器中性线电流

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Transmission system operators are responsible for security and reliability of their grid. An important topic is the analysis of possible risks for the transmission system network. The paper presents actual results about geomagnetically induced currents (GIC) in the Austrian transmission system. Because of problems with unexpected noise at some transformers, investigations were started, which gave an indication that DC could be the source of this noise. Due to the particular geological structure of the country, the influence of GIC in Austria is higher than for the most other countries in Central Europe. A simulation model to compute GIC was set up and compared to the measured DC transformer neutral current. The comparison of the simulated and measured currents shows a good correlation. High geomagnetic disturbances, which lead to high currents according the simulation model, can be confirmed by the measurement. Differences between measurement and simulation can be seen in the region of "fast" fluctuation within seconds. By detailed analysis of the times of occurrence it was shown, that currents from underground railway, which are operating with DC, flow through the transmission grid, too.
机译:传输系统运营商应对其电网的安全性和可靠性负责。一个重要的话题是分析传输系统网络的潜在风险。本文介绍了奥地利输电系统中有关地磁感应电流(GIC)的实际结果。由于某些变压器存在意外噪声的问题,因此开始了调查,这表明直流可能是这种噪声的来源。由于该国特殊的地质结构,GIC在奥地利的影响力高于中欧大多数其他国家。建立了计算GIC的仿真模型,并将其与测得的直流变压器中性点电流进行比较。模拟电流和测量电流的比较显示出良好的相关性。通过测量可以确定高地磁干扰,该干扰会导致仿真模型产生大电流。可以在几秒钟内的“快速”波动区域中看到测量与模拟之间的差异。通过对发生时间的详细分析,可以看出,以直流电运行的地下铁路的电流也流经输电网。

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