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Regional ionospheric TEC modeling based on a two-layer spherical harmonic approximation for real-time single-frequency PPP

机译:基于两层球谐近似的实时单频PPP区域电离层TEC建模

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摘要

The ionosphere has been considered as one of the major error sources in GNSS signal propagation, and it is still difficult to be modeled precisely, especially for real-time positioning applications. The commonly used ionospheric models are usually based on the one-layer approximation, which neglects the ionospheric variation in the vertical domain and limits the scope of improvement over one-layer models. A new ionospheric model based on the two-layer approximation and two spherical harmonic (SH) functions is proposed in this contribution, where a quasi-globe projection is designed to avoid the inherent ill-posed problem and retain the physical meaning of the SH when regional data are used. GPS and BDS data from the National Positioning Infrastructure of Australia and Crustal Movement Observation Network of China are used for validating the new model's performance in different areas and different periods. Results show (1) the precision of ionospheric TEC estimates from the new model can be improved by about 26% and 31% in the cross-validation experiment compared to the traditional one-layer model in Australian and Chinese regions, respectively; (2) the positioning accuracy of kinematic single-frequency precise point positioning (SF-PPP) in the experimental regions using the new model reaches about 0.7 m and 0.8 m in the horizontal and vertical components, respectively, in comparison with the one-layer model's 1.0 m (horizontal) and 1.4 m (vertical); (3) the convergence time of the SF-PPP using the new model is 5-10 min for achieving a sub-meter level of positioning accuracy in both horizontal and vertical components, whereas it needs 30-40 min in case the one-layer model is used.
机译:电离层已被认为是GNSS信号传播中的主要误差源之一,但仍然难以精确建模,尤其是在实时定位应用中。常用的电离层模型通常基于单层近似,它忽略了垂直域中的电离层变化,并限制了单层模型的改进范围。为此,提出了一种基于两层近似和两个球谐函数的新电离层模型,其中设计了准球投影来避免固有的不适定问题并保留SH的物理含义。使用区域数据。来自澳大利亚国家定位基础设施和中国地壳运动观测网络的GPS和BDS数据用于验证新模型在不同地区和不同时期的性能。结果表明:(1)在交叉验证实验中,与澳大利亚和中国地区的传统单层模型相比,新模型对电离层TEC估算的精度分别提高了约26%和31%; (2)与单层相比,使用新模型的运动单频精确点定位(SF-PPP)在实验区域中的定位精度在水平和垂直方向分别达到约0.7 m和0.8 m模型的1.0 m(水平)和1.4 m(垂直); (3)使用新模型的SF-PPP的收敛时间为5-10分钟,以实现水平和垂直组件中亚米级的定位精度,而在单层情况下则需要30-40分钟使用模型。

著录项

  • 来源
    《Journal of Geodesy》 |2019年第9期|1659-1671|共13页
  • 作者单位

    Chinese Acad Sci Aerosp Informat Res Inst Beijing Peoples R China|Chinese Acad Sci Inst Geodesy & Geophys Key Lab Geodesy & Earth Dynam Wuhan Hubei Peoples R China;

    Chinese Acad Sci Aerosp Informat Res Inst Beijing Peoples R China|Univ Chinese Acad Sci Beijing Peoples R China;

    Chinese Acad Sci Aerosp Informat Res Inst Beijing Peoples R China;

    RMIT Univ SPACE Res Ctr Melbourne Vic Australia|China Univ Min & Technol Sch Environm & Spatial Informat Xuzhou Jiangsu Peoples R China;

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

    Ionospheric TEC modeling; Single-frequency PPP; Two-layer approximation; GPS and BDS;

    机译:电离层TEC建模;单频PPP;两层近似;GPS和BDS;
  • 入库时间 2022-08-18 04:59:04

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