首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Modeling impact of FORMOSAT-7/COSMIC-2 mission on ionospheric space weather monitoring
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Modeling impact of FORMOSAT-7/COSMIC-2 mission on ionospheric space weather monitoring

机译:建模FORMOSAT-7 / COSMIC-2任务对电离层空间天气监测的影响

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[1] For the past decade, the paucity of ionospheric observations has made it almost impossible to reconstruct the three-dimensional structures of global ionospheric electron density. The Formosa Satellite-3/Constellation Observing System for Meteorology, Ionosphere and Climate (FORMOSAT-3/COSMIC, F3/C) constellation has provided ionospheric electron density profiles with high vertical resolution through radio occultation measurements. Slated for deployment starting in 2016, the FORMOSAT-7/COSMIC-2 (F7/ C2) constellation will further provide more than 4 times the number of the F3/C occultation soundings. An observing system simulation experiment is conducted to determine the impact of F7/C2 on ionospheric weather monitoring. The results first show that the F7/C2 observations can reconstruct 3-D ionospheric structurewith a data accumulation period of 1 h, which can advance studies of small spatial/temporal scale variation/signatures in the ionosphere. Comparing to assimilation results of F3/C, the assimilation system significantly reduces the error arising in the models and observations after assimilating synthetic observations of F7/C2. During this observing system simulation experiment period, the averaged root-mean-square error percentage for the results of F7/C2 is about 4.4%, lower than that of F3/C 7.3%. Furthermore, even with an assimilation window of less than 60min, the F7/C2 RMS errors still yield reliable values compared to the F3/C results. This paper represents a major advance in ionospheric weather monitoring for the future mission.
机译:[1]在过去的十年中,由于电离层观测的匮乏,几乎不可能重建全球电离层电子密度的三维结构。用于气象,电离层和气候的台塑卫星3 /星座观测系统(FORMOSAT-3 / COSMIC,F3 / C)星座通过无线电掩星测量提供了具有高垂直分辨率的电离层电子密度剖面。 FORMOSAT-7 / COSMIC-2(F7 / C2)星座定于2016年开始部署,其提供的F3 / C掩星测深数将进一步超过4倍。进行了观测系统仿真实验,以确定F7 / C2对电离层天气监测的影响。结果首先表明,F7 / C2观测可以重建3D电离层结构,其数据积累周期为1 h,这可以促进电离层小空间/时间尺度变化/特征的研究。与F3 / C的同化结果相比,同化系统在对F7 / C2的综合观测结果进行同化后,显着减少了模型和观测值中出现的误差。在此观测系统模拟实验期间,F7 / C2结果的平均均方根误差百分比约为4.4%,低于F3 / C 7.3%的均方根误差百分比。此外,即使同化窗口小于60分钟,与F3 / C结果相比,F7 / C2 RMS误差仍可得出可靠的值。本文代表了未来任务电离层天气监测的重大进展。

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