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Ionospheric F-layer global scintillation index variation using COSMIC during the period of 2007-2013

机译:2007 - 2013年期间,在2007 - 2013年期间使用宇宙的电离层F层全局闪烁指数变化

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摘要

The three-dimensional global morphology and seasonal characteristics of the ionospheric scintillation index of the F-layer between 150 and 550 km altitudes are analyzed using the GPS radio occultation measurements from the Constellation Observing System for Meteorology, Ionosphere and Climate during the 7-year period of low and high sunspot activity from 2007 to 2013. The results show that the prominent scintillation intensity, which is confined within +/- 30A degrees geomagnetic latitude, starts at post-sunset, reaches a maximum at around pre-midnight, and often persists until postmidnight. Moderate scintillation activity can be observed in the high-latitude region almost at any time, whereas weak scintillation prevails in the midlatitude region. The noticeable scintillation peak near midnight occurs at an altitude of approximately 250 km in most cases. However, the peak of the scintillation activity during the solar maximum extends to higher altitudes than observed during the solar minimum. Additionally, the local variation in time and altitude of the scintillation intensity is closely correlated with ionospheric HmF2. Statistical analysis indicates that an increase in solar activity or geomagnetic activity enhances the occurrence rate of scintillation and results in intense scintillation. The current research is beneficial for directly studying global ionospheric irregularities at GHz frequency based on high-rate L1 data and constructing a global scintillation model.
机译:使用来自7年期间的星座观测系统的GPS无线电掩护,分析了150和550 km海拔150和550 km高度之间的F层的电离层闪烁指数的三维全局形态和季节性特征从2007年至2013年的低阳光差活动。结果表明,突出的闪烁强度被限制在+/- 30A程度内,从日落后开始,在午夜左右达到最大值,并且经常持续存在直到Postmidnight。可以在高纬度地区随时在高纬度地区观察中等的闪烁活动,而中间地区的弱闪烁率占有平。在大多数情况下,在午夜附近的明显的闪烁峰发生在大多数情况下约250公里。然而,太阳能最大值期间的闪烁活动的峰值延伸到比太阳最小值期间观察到的高度高度。另外,闪烁强度的局部变化和海拔高度与电离层HMF2密切相关。统计学分析表明太阳能活性或地磁活动的增加提高了闪烁的发生率,并导致强烈的闪烁。目前的研究对于基于高速L1数据的GHz频率直接研究全球电离层不规则性,并构建全局闪烁模型。

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