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Assessment of BeiDou-3 and Multi-GNSS Precise Point Positioning Performance

机译:北斗3号和多GNSS精确点定位性能评估

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摘要

With the launch of BDS-3 and Galileo new satellites, the BeiDou navigation satellite system (BDS) has developed from the regional to global system, and the Galileo constellation will consist of 26 satellites in space. Thus, BDS, GPS, GLONASS, and Galileo all have the capability of global positioning services. It is meaningful to evaluate the ability of global precise point positioning (PPP) of the GPS, BDS, GLONASS, and Galileo. This paper mainly contributes to the assessment of BDS-2, BDS-2/BDS-3, GPS, GLONASS, and Galileo PPP with the observations that were provided by the international Global Navigation Satellite System (GNSS) Monitoring and Assessment System (iGMAS). The Position Dilution of Precision (PDOP) value was utilized to research the global coverage of GPS, BDS-2, BDS-2/BDS-3, GLONASS, and Galileo. In particular, GPS-only, BDS-2-only, BDS-2/BDS-3, GLONASS-only, Galileo-only, and multi-GNSS combined PPP solutions were analyzed to verify the capacity of the PPP performances in terms of positioning accuracy, convergence time, and zenith troposphere delay (ZTD) accuracy. In view of PDOP, the current BDS and Galileo are capable of global coverage. The BDS-2/BDS-3 and Galileo PDOP values are fairly evenly distributed around the world similar to GPS and GLONASS. The root mean square (RMS) of positioning errors for static BDS-2/BDS-3 PPP and Galileo-only PPP are 10.7, 19.5, 20.4 mm, and 6.9, 18.6, 19.6 mm, respectively, in the geographic area of the selected station, which is the same level as GPS and GLONASS. It is worth mentioning that, by adding BDS-3 observations, the positioning accuracy of static BDS PPP is improved by 17.05%, 24.42%, and 35.65%, and the convergence time is reduced by 27.15%, 27.87%, and 35.76% in three coordinate components, respectively. Similar to the static positioning, GPS, BDS-2/BDS-3, GLONASS, and Galileo have the basically same kinematic positioning accuracy. Multi-GNSS PPP significantly improves the positioning performances in both static and kinematic positioning. In terms of ZTD accuracy, the difference between GPS, BDS-2/BDS-3, GLONASS, and Galileo is less than 1 mm, and the BDS-2/BDS-3 improves ZTD accuracy by 20.48% over the BDS-2. The assessment of GPS, BDS-2, BDS-2/BDS-3, GLONASS, Galileo, and multi-GNSS global PPP performance are shown to make comments for the development of multi-GNSS integration, global precise positioning, and the construction of iGMAS.
机译:随着BDS-3和伽利略新卫星的发射,北斗导航卫星系统(BDS)已从区域系统发展到全球系统,伽利略星座将由26颗太空卫星组成。因此,BDS,GPS,GLONASS和Galileo都具有全球定位服务的能力。评估GPS,BDS,GLONASS和Galileo的全球精确点定位(PPP)的能力很有意义。本文主要通过国际全球导航卫星系统(GNSS)监视和评估系统(iGMAS)提供的观测资料,为BDS-2,BDS-2 / BDS-3,GPS,GLONASS和Galileo PPP评估做出贡献。 。精确位置稀释(PDOP)值用于研究GPS,BDS-2,BDS-2 / BDS-3,GLONASS和Galileo的全球覆盖范围。特别是,分析了仅GPS,仅BDS-2,BDS-2 / BDS-3,仅GLONASS,仅伽利略和多GNSS组合PPP解决方案,以验证PPP性能的定位能力精度,收敛时间和天顶对流层延迟(ZTD)精度。考虑到PDOP,当前的BDS和Galileo能够进行全球覆盖。 BDS-2 / BDS-3和Galileo PDOP值在全球范围内分布相当均匀,类似于GPS和GLONASS。静态BDS-2 / BDS-3 PPP和仅伽利略PPP的定位误差的均方根(RMS)在所选地理区域中分别为10.7、19.5、20.4 mm和6.9、18.6、19.6 mm站,与GPS和GLONASS处于同一级别。值得一提的是,通过添加BDS-3观测值,静态BDS PPP的定位精度提高了17.05%,24.42%和35.65%,并且收敛时间缩短了27.15%,27.87%和35.76%。三个坐标分量。与静态定位类似,GPS,BDS-2 / BDS-3,GLONASS和Galileo具有基本相同的运动定位精度。 Multi-GNSS PPP大大提高了静态和运动定位中的定位性能。在ZTD精度方面,GPS,BDS-2 / BDS-3,GLONASS和Galileo之间的差异小于1毫米,并且BDS-2 / BDS-3的ZTD精度比BDS-2提高了20.48%。对GPS,BDS-2,BDS-2 / BDS-3,GLONASS,Galileo和多GNSS全球PPP性能的评估显示出对多GNSS集成,全球精确定位和卫星导航系统建设的评价。 iGMAS。

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