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Solar shield: forecasting and mitigating space weather effects on high-voltage power transmission systems

机译:遮阳罩:预测和减轻空间天气对高压输电系统的影响

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摘要

In this paper, central elements of the Solar Shield project, launched to design and establish an experimental system capable of forecasting the space weather effects on high-voltage power transmission system, are described. It will be shown how Sun-Earth system data and models hosted at the Community Coordinated Modeling Center (CCMC) are used to generate two-level magnetohydrodynamics-based forecasts providing 1-2 day and 30-60 min lead-times. The Electric Power Research Institute (EPRI) representsthe end-user, the power transmission industry, in the project. EPRI integrates the forecast products to an online display tool providing information about space weather conditions to the member power utilities. EPRI also evaluates the economic impacts ofsevere storms on power transmission systems. The economic analysis will quantify the economic value of the generated forecasting system. The first version of the two-level forecasting system is currently running in real-time at CCMC. An initial analysisof the system's capabilities has been completed, and further analysis is being carried out to optimize the performance of the system. Although the initial results are encouraging, definite conclusions about system's performance can be given only after more extensive analysis, and implementation of an automatic evaluation process using forecasted and observed geomagnetically induced currents from different nodes of the North American power transmission system. The final output of the Solar Shield will be a recommendation for an optimal forecasting system that may be transitioned into space weather operations.
机译:在本文中,描述了旨在设计和建立能够预测空间天气对高压输电系统影响的实验系统的太阳盾项目的核心要素。将展示如何使用社区协调建模中心(CCMC)托管的Sun-Earth系统数据和模型来生成基于两级磁流体动力学的预测,提供1-2天和30-60分钟的交货时间。电力研究所(EPRI)代表该项目的最终用户,即电力传输行业。 EPRI将预测产品集成到在线显示工具中,该工具向成员电力公司提供有关太空天气状况的信息。 EPRI还评估了强风暴对输电系统的经济影响。经济分析将量化所生成的预测系统的经济价值。 CCMC当前正在实时运行两级预测系统的第一版。已经完成了对系统功能的初步分析,并且正在进行进一步分析以优化系统性能。尽管最初的结果令人鼓舞,但只有在进行了更广泛的分析并使用从北美电力传输系统不同节点处预测和观察到的地磁感应电流进行自动评估过程之后,才能给出有关系统性能的明确结论。太阳盾的最终输出将是对最佳预报系统的建议,该预报系统可能会转换为太空天气作业。

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