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Derivation of global ionospheric Sporadic E critical frequency (foEs) data from the amplitude variations in GPS/GNSS radio occultations

机译:从GPS / GNSS无线电掩星的幅度变化中推导全局电离层散态e临界频率(FOES)数据

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摘要

The ionospheric sporadic E (Es) layer has a significant impact on the global positioning system (GPS)/global navigation satellite system (GNSS) signals. These influences on the GPS/GNSS signals can also be used to study the occurrence and characteristics of the Es layer on a global scale. In this paper, 5.8 million radio occultation (RO) profiles from the FORMOSAT-3/COSMIC satellite mission and ground-based observations of Es layers recorded by 25 ionospheric monitoring stations and held at the UK Solar System Data Centre at the Rutherford Appleton Laboratory and the Chinese Meridian Project were used to derive the hourly Es critical frequency ( Es) data. The global distribution of Es with a high spatial resolution shows a strong seasonal variation in Es with a summer maximum exceeding 4.0 MHz and a winter minimum between 2.0 and 2.5 MHz. The GPS/GNSS RO technique is an important tool that can provide global estimates of Es layers, augmenting the limited coverage and low-frequency detection threshold of ground-based instruments. Attention should be paid to small Es values from ionosondes near the instrumental detection limits corresponding to minimum frequencies in the range 1.28–1.60 MHz.
机译:电离层旋转型E(ES)层对全球定位系统(GPS)/全球导航卫星系统(GNSS)信号具有显着影响。这些对GPS / GNSS信号的影响也可用于研究全球规模的ES层的发生和特征。在本文中,来自Formosat-3 / Cosmic卫星任务的580万无线电掩星(RO)型材以及由25个电离层监测站记录的ES层的基础观测,并在英国太阳能系统数据中心在Rutherford Appleton实验室和中国经络项目用于得出每小时的临界频率。具有高空间分辨率的ES的全球分布显示了ES的强烈季节性变化,夏季最大值超过4.0 MHz,冬季最小值在2.0和2.5 MHz之间。 GPS / GNSS RO技术是一个重要的工具,可以提供ES层的全局估计,增强基于地面仪器的有限覆盖和低频检测阈值。应注意,在仪器检测限附近的IONOSONDES中应注意,对应于1.28-1.60 MHz的最小频率的仪器检测限。

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