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Global Ionospheric Modelling using Multi-GNSS: BeiDou, Galileo, GLONASS and GPS

机译:使用多GNSS的全局电离层模型:北斗,伽利略,GLONASS和GPS

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摘要

The emergence of China's Beidou, Europe's Galileo and Russia's GLONASS satellites has multiplied the number of ionospheric piercing points (IPP) offered by GPS alone. This provides great opportunities for deriving precise global ionospheric maps (GIMs) with high resolution to improve positioning accuracy and ionospheric monitoring capabilities. In this paper, the GIM is developed based on multi-GNSS (GPS, GLONASS, BeiDou and Galileo) observations in the current multi-constellation condition. The performance and contribution of multi-GNSS for ionospheric modelling are carefully analysed and evaluated. Multi-GNSS observations of over 300 stations from the Multi-GNSS Experiment (MGEX) and International GNSS Service (IGS) networks for two months are processed. The results show that the multi-GNSS GIM products are better than those of GIM products based on GPS-only. Differential code biases (DCB) are by-products of the multi-GNSS ionosphere modelling, the corresponding standard deviations (STDs) are 0.06?ns, 0.10?ns, 0.18?ns and 0.15?ns for GPS, GLONASS, BeiDou and Galileo, respectively in satellite, and the STDs for the receiver are approximately 0.2~0.4?ns. The single-frequency precise point positioning (SF-PPP) results indicate that the ionospheric modelling accuracy of the proposed method based on multi-GNSS observations is better than that of the current dual-system GIM in specific areas.
机译:中国北斗,欧洲伽利略和俄罗斯的Glonass卫星的出现已经乘以GPS提供的电离层刺穿点(IPP)的数量。这为具有高分辨率的精确全局电离层地图(GIMS)提供了巨大的机会,以提高定位精度和电离层监测能力。本文基于多GNSS(GPS,GLONASS,BEIDOU和GALILEO)在当前的多星座状态下观察来开发GIM。仔细分析和评估了对电离层建模的多GNS的性能和贡献。从多GNSS实验(MGEX)和国际GNSS服务(IGS)网络的多GNSS观察到超过300站进行两个月。结果表明,基于GPS的GIM产品,多GNSS GIM产品优于GIM产品。差分码偏差(DCB)是多GNSS电离层建模的副产物,相应的标准偏差(STD)为0.06?NS,0.10?NS,0.18?NS和0.15?NS用于GPS,Glonass,北斗和伽利略,分别在卫星中,接收器的STD约为0.2〜0.4?NS。单频精确点定位(SF-PPP)结果表明,基于多GNSS观察的所提出的方法的电离层建模精度优于特定区域目前的双系统GIM。

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