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Influence of shield wires on geomagnetically induced currents in power systems

机译:屏蔽线对电力系统中地磁感应电流的影响

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摘要

There is increasing interest in assessing the GIC risk to power systems with GIC disturbing events to power systems observed in many parts of the world. An essential step in GIC risk assessment is modeling of GIC. Many factors have been considered in the GIC network model, but the effect of shield wires is still not clear. In this paper, we investigate multiple ways in which shield wires can influence the GIC in the transmission lines, including: mutual inductance between the shield wire and the transmission line, voltage change in substation grounding resistance due to GIC flowing to/from the shield wire, the geoelectric field distortion due to GIC flowing to/from the shield wire through tower footings and the influence of shield wires on the effective substation grounding resistance. Typical values for each effect are calculated to determine the significance of the shield wire effect on GIC. For the situations considered, the effect of shield wires on the effective substation grounding resistance is the only one that significantly affects GIC in transformers. To include this effect in GIC modeling a simple formula is given for the resistance of a shield wire and tower network.
机译:随着在世界许多地方观察到的GIC干扰事件对电力系统的影响,人们越来越有兴趣评估GIC对电力系统的风险。 GIC风险评估的重要步骤是对GIC进行建模。 GIC网络模型中已经考虑了许多因素,但是屏蔽线的影响仍然不清楚。在本文中,我们研究了屏蔽线可影响传输线中GIC的多种方式,包括:屏蔽线与传输线之间的互感,由于流入/来自屏蔽线的GIC引起的变电站接地电阻的电压变化GIC引起的地电场畸变,其通过塔架基础从屏蔽线流入/流出屏蔽线,以及屏蔽线对变电站有效接地电阻的影响。计算每种效应的典型值,以确定屏蔽线效应对GIC的重要性。对于所考虑的情况,屏蔽线对变电站有效接地电阻的影响是唯一会严重影响变压器GIC的因素。为了将这种效应包括在GIC建模中,给出了屏蔽线和塔架网络电阻的简单公式。

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