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Temporal and spatial deviation in F2 peak parameters derived from FORMOSAT-3/COSMIC

机译:从FORMOSAT-3 / COSMIC得出的F2峰参数的时空偏差

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The plasma frequency profiles derived from the Constellation of Observing System for Meteorology, Ionosphere and Climate (COSMIC) radio occultation measurements are compared with ground-based ionosonde data during the year 2013. Equatorial and midlatitude five stations located in the Northern and Southern Hemisphere are considered: Jicamarca, Jeju, Darwin, Learmonth, and Juliusruh. The aim is to validate the COSMIC-derived data with ground-based measurements and to estimate the difference in plasma frequency (which represents electron density) and height of F2 layer peak during the daytimeighttime and during different seasons by comparing the two data sets. Analysis showed that the nighttime data are better correlated than the daytime, and the maximum difference occurs at the equatorial ionospheric anomaly (EIA) station as compared to lower and midlatitude stations during the equinox months. The difference between daytime and nighttime correlations becomes insignificant at midlatitude stations. The statistical analysis of computed errors in foF2 (hmF2) showed Gaussian nature with the most probable error range of ±15% (±10%) at the equatorial and EIA stations, ±9% (±7%) outside the EIA region which reduced to ±8% (±6%) at midlatitude stations. The reduction in error at midlatitudes is attributed to the decrease in latitudinal electron density gradients. Comparing the analyzed data during the three geomagnetic storms and quiet days of the same months, it is observed that the differences are significantly enhanced during storm periods and the magnitude of difference in foF2 increases with the intensity of geomagnetic storm.
机译:将2013年期间由气象,电离层和气候观测系统星座(COSMIC)无线电掩星测量得出的等离子体频率分布与地面离子探空仪数据进行了比较。考虑了位于北半球和南半球的赤道和中纬度五个台站:Jicamarca,济州,达尔文,里尔蒙德和朱利叶斯鲁。目的是通过基于地面的测量来验证源自COSMIC的数据,并通过比较两个数据集来估计白天/夜间以及不同季节的等离子体频率(代表电子密度)和F2层峰高的差异。 。分析表明,夜间数据比白天的相关性更好,并且在春分月份,与低纬度和中纬度站相比,赤道电离层异常(EIA)站的差异最大。在中纬度站,白天和夜间的相关性之间的差异变得微不足道。对foF2(hmF2)的计算误差进行的统计分析表明,高斯性质在赤道站和EIA站的最大误差范围为±15%(±10%),在EIA区域外的误差范围为±9%(±7%),这降低了到中纬度站的±8%(±6%)。中纬度误差的减少归因于纬度电子密度梯度的减少。比较三个月的地磁风暴和同一月的安静天期间的分析数据,可以观察到在暴风雨期间差异显着增强,并且foF2差异的大小随地磁风暴的强度而增加。

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