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US-TEC: A new data assimilation product from the Space Environment Center characterizing the ionospheric total electron content using real-time GPS data

机译:US-TEC:来自太空环境中心的新数据同化产品,使用实时GPS数据表征电离层总电子含量

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摘要

The potential of data assimilation for operational numerical weather forecasting has been appreciated for many years. For space weather it is a new path that we are just beginning to explore. With the emergence of satellite constellations and the networks of ground-based observations, sufficient data sources are now available to make the application of data assimilation techniques a viable option. The first space weather product at Space Environment Center (SEC) utilizing data assimilation techniques, US-TEC, was launched as a test operational product in November 2004. US-TEC characterizes the ionospheric total electron content (TEC) over the continental United States (CONUS) every 15 min with about a 15-min latency. US-TEC is based on a Kalman filter data assimilation scheme driven by a ground-based network of real-time GPS stations. The product includes a map of the vertical TEC, an estimate of the uncertainty in the map, and the departure of the TEC from a 10-day average at that particular universal time. In addition, data files are provided for vertical TEC and the line-of-sight electron content to all GPS satellites in view over the CONUS at that time. The information can be used to improve single-frequency GPS positioning by providing more accurate corrections for the ionospheric signal delay, or it can be used to initialize rapid integer ambiguity resolution schemes for dual-frequency GPS systems. Validation of US-TEC indicates an accuracy of the line-of-sight electron content of between 2 and 3 TEC units (1 TECU = 10~(16) el m~(-2)), equivalent to less than 50 cm signal delay at L1 frequencies, which promises value for GPS users. This is the first step along a path that will likely lead to major improvement in space weather forecasting, paralleling the advances achieved in meteorological weather forecasting.
机译:多年来,人们已经认识到数据同化用于运行数字天气预报的潜力。对于太空天气,这是我们刚刚开始探索的一条新道路。随着卫星星座和地面观测网络的出现,现在已经有了足够的数据源,使数据同化技术的应用成为可行的选择。 2004年11月,在太空环境中心(SEC)首次使用数据同化技术的太空气象产品US-TEC作为测试运行产品推出。US-TEC表征了美国大陆上电离层的总电子含量(TEC) CONUS)每15分钟大约有15分钟的潜伏期。 US-TEC基于由实时GPS站的地面网络驱动的卡尔曼滤波器数据同化方案。该产品包括垂直TEC的地图,该地图中不确定性的估计以及该TEC在该特定世界时间与10天平均值的偏离。此外,当时在CONUS范围内,所有GPS卫星的垂直TEC和视线电子含量的数据文件都已提供。该信息可用于通过为电离层信号延迟提供更准确的校正来改善单频GPS定位,或者可用于初始化双频GPS系统的快速整数歧义解决方案。 US-TEC的验证表明,视线电子含量的准确度介于2至3个TEC单元之间(1 TECU = 10〜(16)el m〜(-2)),相当于小于50 cm的信号延迟在L1频率下,这有望为GPS用户带来价值。这是沿着这条道路迈出的第一步,这可能会导致空间天气预报的重大改进,与气象天气预报所取得的进步相提并论。

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