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Performance assessment of real-time multi-GNSS integrated PPP with uncombined and ionospheric-free combined observables

机译:实时多GNSS集成PPP的实时多GNSS的性能评估与无线和离子层组合可观察

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摘要

For precise position services, the real-time precise point positioning (PPP) is a promising technology. The real-time PPP performance is expected to be improved by multi-system combination. The performance of real-time multi-system PPP needs to be periodically investigated, with the increasing number of available satellites and the continuously improved quality of real-time precise products of satellite clocks and orbits. In this study, a comprehensive performance assessment is conducted for the four-system integrated real-time PPP (FSIRT-PPP) with GPS, BDS, Galileo and GLONASS in both static and kinematic modes. The datasets from 118 stations spanning approximately a month are used for analysis, and the real-time stream CLK93 is employed. The superior performance of FSIRT-PPP is validated by comparing with the results of GPS/BDS, GPS/Galileo, GPS/GLONASS, GPS-only, BDS-only, Galileo-only and GLONASS-only cases. The FSIRT-PPP using ionospheric-free (IF) combined observables can achieve a convergence time of 10.9, 4.8 and 11.8 min and a positioning accuracy of 0.4, 0.5 and 0.7 cm in the static mode in the east, north and up directions, respectively, while the derived statistic is 15.4, 7.0 and 16.4 min, and 1.6, 1.2 and 3.4 cm in the kinematic mode in the three directions, respectively. Moreover, we also compare the position solutions of real-time PPP adopting IF combined and uncombined (UC) observables, and prove the mathematical equivalence between the two PPP models in the converged stage, provided that there are no external ionospheric corrections or constraints given to the estimated ionospheric delays in the UC model. The difference between the fully converged positioning accuracy of IF-based and UC-based real-time PPP is marginal, but the UC-based real-time PPP has longer convergence time due to the influence of the significant unmodeled time-varying errors in the real-time precise products as well as the different parameterization between them. For completeness, the real-time kinematic PPP results in harsh environments and the post-processed PPP results are also presented.
机译:对于精确的位置服务,实时精确点定位(PPP)是一个有前途的技术。预计使用多系统组合将改善实时PPP性能。需要定期调查实时多系统PPP的性能,越来越多的可用卫星和卫星时钟和轨道的实时精确产品的不断提高的质量。在这项研究中,使用GPS,BDS,Galileo和Glonass的四系统集成实时PPP(FSIRT-PPP)进行了全面的绩效评估,以静态和运动模式。来自大约一个月的118站的数据集用于分析,并且采用实时流CLK93。通过比较GPS / BDS,GPS / Galileo,GPS / GLONASS,仅限GPS,仅限BDS,仅限GLONASO和GLONASS-ONLIS的结果,通过比较来验证FSIRT-PPP的卓越性能。使用离电离层(IF)组合的可观察结果的FSIRT-PPP可以分别达到10.9,4.8和11.8分钟的收敛时间,并且分别在东部,北方和向上方向的静态模式下的定位精度为0.4,0.5和0.7cm ,而衍生的统计数据分别在三个方向上的运动模式下为15.4,7.0和16.4分钟,1.6,1.2和3.4cm。此外,我们还比较采用组合和未掺杂(UC)可观察的实时PPP的位置解决方案,并证明了融合阶段中的两个PPP模型之间的数学等效性,只要没有给出外部电离层校正或约束UC模型中的估计电离层延迟。基于UC和UC的实时PPP的完全融合定位精度之间的差异是边缘的,但​​由于有关未拼接的时变误差的影响,基于UC的实时PPP具有更长的收敛时间实时精确产品以及它们之间的不同参数化。对于完整性,还呈现了实时运动PPP在恶劣环境中产生了恶劣环境和后处理的PPP结果。

著录项

  • 来源
    《Advances in space research》 |2021年第1期|234-252|共19页
  • 作者单位

    School of Geosciences and Info-Physics. Central South University Changsha China Guangxi Key Laboratory of Spatial Information and Geomatics Guilin China Hunan Institute of Surveying and Mapping Technology Changsha China;

    School of Geosciences and Info-Physics. Central South University Changsha China College of Geological Engineering and Geomatics Chang'an University Xi'an China Northwest Electric Power Design Institute Co. LTD. of China Power Engineering Consulting Group Xi'an China;

    School of Geodesy and Geomatics Wuhan University 129 Luoyu Road. Wuhan China;

    School of Geodesy and Geomatics Wuhan University 129 Luoyu Road. Wuhan China;

    School of Geodesy and Geomatics Wuhan University 129 Luoyu Road. Wuhan China;

    School of Geodesy and Geomatics Wuhan University 129 Luoyu Road. Wuhan China;

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

    Precise point positioning (PPP); Multi-system; Performance assessment; Uncombined observable; Ionospheric-free combined observable; Real-time;

    机译:精确点定位(PPP);多系统;绩效评估;未达到的可观察;无电离层组合可观察;即时的;

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