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Refinement of global ionospheric coefficients for GNSS applications: Methodology and results

机译:完善全球导航卫星系统应用的全球电离层系数:方法和结果

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摘要

We developed the methodology for the optimal estimation of global ionospheric coefficients of the current Global Navigation Satellite Systems (GNSSs), including the eight- and ten-parameter Klobuchar-like as well as NeQuick models. The ionospheric coefficients of those correction models are calculated from two sets of globally distributed tracking stations of the International GNSS Services (IGS). Performance of the re-estimated Klobuchar-like and NeQuick coefficients are validated during 2002–2014 over the continental and oceanic areas, respectively. Over the continental areas, GPS TECs derived from 40 ground GPS receivers are selected as reference. The eight-, ten-parameter Klobuchar-like and NeQuick models can mitigate the ionospheric delay by 65.8, 67.3 and 75.0%, respectively. Over the global oceans, the independent TECs derived from Jason-1&2 altimeters are used as reference. The re-estimated ionospheric correction models can mitigate 56.1–66.7% of the delay errors. Compared to the original GPS Ionospheric Correction Algorithm (ICA), performance of those eight-, ten-parameter Klobuchar-like and NeQuick models has improved 3.4, 5.9 and 13.4% during the whole test period, respectively. The methodology developed here takes the advantage of high-quality ionospheric TECs derived from the global network of GNSS receivers. The re-estimated ionospheric coefficients can be used as precise ionospheric products to monitor and assess GNSS broadcast ionospheric parameters and to improve the performance of various single-frequency GNSS applications.
机译:我们开发了用于最佳估计当前全球导航卫星系统(GNSS)的全球电离层系数的方法,包括八参数和十参数的Klobuchar型以及NeQuick模型。这些校正模型的电离层系数是从国际GNSS服务(IGS)的两组全球分布的跟踪站中计算得出的。重新估计的Klobuchar系数和NeQuick系数的性能分别在2002-2014年期间在大陆和海洋区域得到验证。在整个大陆地区,从40个地面GPS接收器获得的GPS TEC被选作参考。类似于Klobuchar的八,十参数模型和NeQuick模型可以分别减少电离层延迟65.8%,67.3%和75.0%。在全球海洋中,以Jason-1&2高度计衍生的独立TEC为参考。重新估算的电离层校正模型可以减轻56.1–66.7%的延迟误差。与原始GPS电离层校正算法(ICA)相比,在整个测试期间,这8个,10个参数的Klobuchar类模型和NeQuick模型的性能分别提高了3.4%,5.9%和13.4%。这里开发的方法利用了从全球GNSS接收器全球网络中提取的高质量电离层TEC的优势。重新估算的电离层系数可用作精确的电离层产品,以监视和评估GNSS广播电离层参数,并改善各种单频GNSS应用的性能。

著录项

  • 来源
    《Advances in space research》 |2019年第1期|343-358|共16页
  • 作者单位

    Academy of Opto-Electronics, Chinese Academy of Sciences|State Key Laboratory of Geodesy and Earth’s Dynamics, Institute of Geodesy and Geophysics, Chinese Academy of Sciences;

    Academy of Opto-Electronics, Chinese Academy of Sciences;

    State Key Laboratory of Geodesy and Earth’s Dynamics, Institute of Geodesy and Geophysics, Chinese Academy of Sciences;

    State Key Laboratory of Geodesy and Earth’s Dynamics, Institute of Geodesy and Geophysics, Chinese Academy of Sciences;

    State Key Laboratory of Geodesy and Earth’s Dynamics, Institute of Geodesy and Geophysics, Chinese Academy of Sciences;

    Academy of Opto-Electronics, Chinese Academy of Sciences;

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

    Ionosphere; GNSS; Ionospheric correction; Broadcast ionospheric model (BIM);

    机译:电离层GNSS电离层校正广播电离层模型(BIM);

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