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Multi-GNSS precise point positioning (MGPPP) using raw observations

机译:使用原始观测值的多GNSS精确点定位(MGPPP)

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摘要

A joint-processing model for multi-GNSS (GPS, GLONASS, BDS and GALILEO) precise point positioning (PPP) is proposed, in which raw code and phase observations are used. In the proposed model, inter-system biases (ISBs) and GLONASS code inter-frequency biases (IFBs) are carefully considered, among which GLONASS code IFBs are modeled as a linear function of frequency numbers. To get the full rank function model, the unknowns are re-parameterized and the estimable slant ionospheric delays and ISBs/IFBs are derived and estimated simultaneously. One month of data in April, 2015 from 32 stations of the International GNSS Service (IGS) Multi-GNSS Experiment (MGEX) tracking network have been used to validate the proposed model. Preliminary results show that RMS values of the positioning errors (with respect to external double-difference solutions) for static/kinematic solutions (four systems) are 6.2 mm/2.1 cm (north), 6.0 mm/2.2 cm (east) and 9.3 mm/4.9 cm (up). One-day stabilities of the estimated ISBs described by STD values are 0.36 and 0.38 ns, for GLONASS and BDS, respectively. Significant ISB jumps are identified between adjacent days for all stations, which are caused by the different satellite clock datums in different days and for different systems. Unlike ISBs, the estimated GLONASS code IFBs are quite stable for all stations, with an average STD of 0.04 ns over a month. Single-difference experiment of short baseline shows that PPP ionospheric delays are more precise than traditional leveling ionospheric delays.
机译:提出了一种用于多GNSS(GPS,GLONASS,BDS和GALILEO)精确点定位(PPP)的联合处理模型,其中使用了原始代码和相位观测。在所提出的模型中,系统间偏差(ISB)和GLONASS码频率间偏差(IFB)被仔细考虑,其中GLONASS码IFB被建模为频率数的线性函数。为了获得全秩函数模型,未知数被重新参数化,可估计的倾斜电离层延迟和ISB / IFB被同时导出和估计。 2015年4月,来自国际GNSS服务(IGS)多GNSS实验(MGEX)跟踪网络的32个站的一个月数据已用于验证所提出的模型。初步结果表明,静态/运动学解决方案(四个系统)的定位误差(相对于外部双差解决方案)的RMS值为6.2 mm / 2.1 cm(北),6.0 mm / 2.2 cm(东)和9.3 mm /4.9厘米(向上)。对于GLONASS和BDS,用STD值描述的估计ISB的一天稳定性分别为0.36和0.38 ns。在所有日期的相邻日期之间,ISB出现了明显的跳跃,这是由不同日期和不同系统中不同的卫星时钟基准引起的。与ISB不同,估计的GLONASS代码IFB对所有电台都相当稳定,一个月的平均STD为0.04 ns。短基线的单差实验表明,PPP电离层延迟比传统的平准电离层延迟更精确。

著录项

  • 来源
    《Journal of Geodesy》 |2017年第3期|253-268|共16页
  • 作者单位

    Chinese Acad Sci, Inst Geodesy & Geophys, State Key Lab Geodesy & Earths Dynam, 340 Xudong Rd, Wuhan 430077, Peoples R China|Univ Chinese Acad Sci, 19 Yuquan Rd, Beijing 100049, Peoples R China;

    Chinese Acad Sci, Inst Geodesy & Geophys, State Key Lab Geodesy & Earths Dynam, 340 Xudong Rd, Wuhan 430077, Peoples R China;

    Chinese Acad Sci, Inst Geodesy & Geophys, State Key Lab Geodesy & Earths Dynam, 340 Xudong Rd, Wuhan 430077, Peoples R China;

    Chinese Acad Sci, Inst Geodesy & Geophys, State Key Lab Geodesy & Earths Dynam, 340 Xudong Rd, Wuhan 430077, Peoples R China|Univ Chinese Acad Sci, 19 Yuquan Rd, Beijing 100049, Peoples R China;

    Chinese Acad Sci, Inst Geodesy & Geophys, State Key Lab Geodesy & Earths Dynam, 340 Xudong Rd, Wuhan 430077, Peoples R China|Univ Chinese Acad Sci, 19 Yuquan Rd, Beijing 100049, Peoples R China;

    Chinese Acad Sci, Inst Geodesy & Geophys, State Key Lab Geodesy & Earths Dynam, 340 Xudong Rd, Wuhan 430077, Peoples R China|Univ Chinese Acad Sci, 19 Yuquan Rd, Beijing 100049, Peoples R China;

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

    Multi-GNSS precise point positioning; Raw observations; Re-parameterization; Inter-system bias; Inter-frequency bias; PPP ionospheric delays;

    机译:多GNSS精确点定位;原始观测;重新参数化;系统间偏差;频率间偏差;PPP电离层延迟;

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