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Evaluating the impact of CNES real-time ionospheric products on multi-GNSS single-frequency positioning using the IGS real-time service

机译:使用IGS实时服务评估CNES实时电离层产品对多GNSS单频定位的影响

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摘要

Multi-global navigation satellite system (GNSS) real-time (RT) single-frequency (SF) positioning with a low-cost receiver has received increasing attention in recent years due to its large amount of possible applications. One major challenge in single-frequency positioning is the effective mitigation of the ionospheric delays since it is a dominant error source. Nowadays, a high-precision RT ionospheric vertical total electron content (VTEC) product is released by the Centre National d'Etudes Spatiales (CNES) through its real-time service (RTS). The effect of this product on RT single-frequency positioning needs to be investigated. In this study, we provide an evaluation of the quality of multi-GNSS CLK93 orbit and clock products through the comparison to the final precise products, and comprehensively evaluate the impact of CNES VTEC products on multi-GNSS RT-SF-SPP (Standard Point Positioning)/PPP (Precise Point Positioning) performances. Datasets from 46 Multi-GNSS Experiment (MGEX) stations and the CLK93 corrections for 14 consecutive days in 2019 are collected to process with different scenarios. Experimental results show that the CNES VTEC products can replace the final GIM products in the single- and multi-GNSS SF-SPP with the same positioning accuracy requirements during the period of mild solar activity (Kp index is less than 3). Regarding the kinematic RT-SF-PPP, the (re-)convergence also can be improved by adopting the prior CNES-VTEC constrains. Compared with the IF RT-SF-PPP with quad-constellation, the positioning accuracy of the CNES-VTEC-constrained RT-SF-PPP can be improved by about 10.30%, in which the average RMS can achieve 17.9, 19.8 and 32.3 cm in the North, East and Up components, respectively.Compared with the final precise products of GBM, the satellite orbit accuracy of CLK93 products is 4, 5, 12 and 16 cm for GPS, Galileo, GLONASS and BDS, respectively. As for the CLK93 satellite clock, its RMS accuracy of GPS, Galileo, GLONASS and BDS is 0.3, 0.4, 2.5 and 1.8 ns, respectively.
机译:多全球导航卫星系统(GNSS)的实时(RT)单频(SF)定位具有低成本接收器的定位,近年来由于其大量可能的应用而受到近年来的关注。单频定位中的一个主要挑战是有效减轻电离层延迟,因为它是一个主要的错误源。如今,通过其实时服务(RTS),Center National D'Etudes Spatiales(CNE)释放了高精度RT电离层垂直总电子含量(VTEC)产品。需要研究该产品对RT单频定位的影响。在本研究中,我们通过与最终的精确产品的比较提供了多GNSS CLK93轨道和时钟产品质量的评估,并综合评估了CNES VTEC产品对多GNSS RT-SF-SPP的影响(标准点定位)/ PPP(精确点定位)性能。从46个多GNSS实验(MGEx)站和2019年连续14天的CLK93校正的数据集被收集到以不同的情况进行处理。实验结果表明,CNES VTEC产品可以在轻微的太阳能活动期间用相同的定位精度要求更换单个和多GNSS SF-SPP中的最终GIM产品(KP指数小于3)。关于运动RT-SF-PPP,通过采用先前的CNE-VTEC约束,也可以提高(重新)收敛。与具有四分之一的RT-SF-PPP相比,CNE-VTEC受约束的RT-SF-PPP的定位精度可以提高约10.30%,其中平均RMS可以实现17.9,19.8和32.3cm在北部,东部和上升组件中分别采用GBM的最终精确产品,CLK93产品的卫星轨道精度分别为GPS,伽利略,GLONASS和BDS的4,5,12和16厘米。至于CLK93卫星时钟,其GPS,伽利略,GLONASS和BDS的RMS精度分别为0.3,0.4,2.5和1.8ns。

著录项

  • 来源
    《Advances in space research》 |2020年第11期|2516-2527|共12页
  • 作者单位

    College of Surveying and Geo-Informatics Tongji University Shanghai 200092 China Shanghai Astronomical Observatory Chinese Academy of Sciences Shanghai 200030 China;

    Shanghai Astronomical Observatory Chinese Academy of Sciences Shanghai 200030 China School of Astronomy and Space Science University of Chinese Academy of Sciences Beijing 100049 China Shanghai Key Laboratory of Space Navigation and Positioning Techniques Shanghai Astronomical Observatory Chinese Academy of Sciences Shanghai 200030 China Shanghai Astronomical Observatory Chinese Academy of Sciences Shanghai 200030 China;

    Shanghai Astronomical Observatory Chinese Academy of Sciences Shanghai 200030 China Tokyo University of Marine Science and Technology Tokyo 1358533 Japan;

    College of Surveying and Geo-Informatics Tongji University Shanghai 200092 China Shanghai Astronomical Observatory Chinese Academy of Sciences Shanghai 200030 China;

    Beijing Navigation Center Beijing 100094 China;

    College of Surveying and Geo-Informatics Tongji University Shanghai 200092 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Multi-GNSS; Real-time; Single frequency; SPP; PPP; CNES-VTEC;

    机译:多GNSS;即时的;单频;SPP;PPP;CNES-VTEC;
  • 入库时间 2022-08-18 21:48:31

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