一种计算地磁风暴在大型高压电网上产生的电流的技术

J. Gilbert, W. Radasky, E. Savage
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引用次数: 13

摘要

本文详细介绍了一种计算地磁风暴对输电线路和大型电网变压器产生的电流的方法。在实践中,这项技术是由三组输入数据驱动的——不规则网格上的磁力计数据、风暴模型中的磁场以及卫星数据中的磁场预测。该技术采用了在水平和垂直方向上变化的地面电导率,以及一种计算效率高的技术,用于执行从水平磁场获得水平电场所需的卷积。准静态技术用于线路和变压器的电路建模,各种变压器和铁芯类型可以包括在电流和无功需求产生的建模中。该技术已在POWERCAST™代码中实现。
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A technique for calculating the currents induced by geomagnetic storms on large high voltage power grids
This paper provides details of a computational technique used to calculate currents induced by geomagnetic storms on transmission lines and in transformers of a large power grid. In practice, this technique has been driven by three sets of input data - magnetometer data on an irregular grid, magnetic fields from storm models, and predictions of magnetic fields from satellite data. The technique employs a ground conductivity that varies in both the horizontal and vertical directions and a computationally efficient technique for performing the convolutions needed to obtain the horizontal electric field from the horizontal magnetic field. A quasistatic technique is used for circuit modeling of lines and transformers, and various transformer and core types may be included for modeling of the current flow and of the generation of reactive power demand. This technique has been implemented in the POWERCAST™ code.
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