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A real-time forecast service for the ionospheric equatorial zonal electric field

机译:电离层赤道纬向电场的实时预报服务

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The zonal electric field is the primary driver of two important features of the equatorial ionosphere: (l)The Equatorial Ionization Anomaly (EIA), and (2) plasma density irregularities, also known as spread-F. During propagation through the ionosphere, communication and navigation radio signals are attenuated, delayed and scattered by these ionospheric features. Prediction of the zonal electric field is therefore a key to the real-time specification of the ionosphere. We divide the zonal electric field into a climatological contribution plus the prompt-penetration contribution predicted by a transfer-function model applied to the interplanetary electric field measured by the Advanced Composition Explorer (ACE) satellite. The zonal electric field is predicted about one hour in advance, covering all local times and longitudes. The real-time prediction is available as a Google application at http://www.geomag.us/models/PPEFM/RealtimeEF.html. The benefit of this application to space weather forecasting is twofold: As the driver of the equatorial plasma fountain, the predicted zonal electric field is a leading indicator by 2–3 h of the EIA and the Total Electron Content (TEC) of the equatorial ionosphere. Second, rapid uplift of the ionosphere by strong eastward electric field is known to induce spread-F. Prediction of enhanced prompt penetration electric field in the eastward direction therefore enables the forecast of radio communication and navigation outages in the equatorial region.
机译:纬向电场是赤道电离层两个重要特征的主要驱动力:(l)赤道电离异常(EIA),以及(2)等离子体密度不规则现象,也称为散布F。在通过电离层传播期间,通信和导航无线电信号会因这些电离层特征而衰减,延迟和散射。因此,对区域电场的预测是电离层实时规范的关键。我们将纬向电场划分为气候贡献加上通过传递函数模型预测的快速渗透贡献,该传递函数模型适用于由高级成分探测器(ACE)卫星测量的行星际电场。预计纬向电场大约提前一小时,涵盖所有当地时间和经度。实时预测可作为Google应用程序在http://www.geomag.us/models/PPEFM/RealtimeEF.html上获得。此应用程序对空间天气预报的好处有两个:作为赤道等离子喷泉的驱动器,预测的纬向电场是EIA和赤道电离层总电子含量(TEC)2-3小时的领先指标。 。其次,已知通过强东电场快速升高电离层会引起F扩散。因此,预测向东方向上增强的快速穿透电场可以预测赤道地区的无线电通信和导航中断。

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