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首页> 外文期刊>Advances in space research >Precise point positioning with quad-constellations: GPS, BeiDou, GLONASS and Galileo
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Precise point positioning with quad-constellations: GPS, BeiDou, GLONASS and Galileo

机译:具有四星座的精确点定位:GPS,北斗,GLONASS和伽利略

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摘要

Multi-constellation GNSS precise point positioning (PPP) first became feasible back to 2007 but with only two constellations, namely GPS and GLONASS. With the availability of more satellites and precise orbit and clock products from BeiDou and Galileo, it is possible now to investigate PPP with four constellations, namely GPS, BeiDou, GLONASS and Galileo. This research aims at investigating the quad-constellation PPP for position determination and analyzing its positioning performance. A quad-constellation PPP model is developed to simultaneously process the observations from all the four GNSS systems. The developed model is also applicable to the PPP processing with observations from single, dual or triple constellations. The analysis on PPP accuracy and convergence time is conducted based on data processing results from both static and kinematic tests of single-constellation and multi-constellations. The three-hour static positioning results indicate that the BeiDou-only PPP accuracy is worse than the GPS-only PPP. The RMSs of position errors for BeiDou-only PPP are 5.2 cm, 2.7 cm and 8.3 cm in east, north and up directions while the ones for GPS-only PPP are 3.9 cm, 1.6 cm and 5.7 cm. The GPS/BeiDou PPP improves the positioning accuracy by 28%, 6% and 7% and reduces the convergence time by 26%, 13% and 14% over the GPS-only PPP in three coordinate components, respectively. The GPS/GLONASS PPP achieves slightly better performance than the GPS/BeiDou PPP. The triple-constellation PPP further increases the positioning accuracy and decreases the convergence time over the dual-constellation PPP. The improvement of positioning performance is not significant after adding Galileo due to currently limited number of satellites. Similar to the static positioning, the quad-constellation kinematic PPP also significantly improves the positioning performance in contrast with single-constellation and dual-constellations. The time varying characteristics of the time differences between the four systems are also investigated. The results indicate that the system time differences of GPS with BeiDou, GLONASS and Galileo are very stable over time with STD values of better than 1.1 ns.
机译:多星座GNSS精确点定位(PPP)最早可以追溯到2007年,但是只有两个星座,即GPS和GLONASS。随着北斗和伽利略卫星的更多供应以及精确的轨道和时钟产品的出现,现在有可能研究具有四个星座的PPP,即GPS,北斗,GLONASS和伽利略。本研究旨在研究用于确定位置的四星座PPP,并分析其定位性能。开发了四星座PPP模型以同时处理来自所有四个GNSS系统的观测结果。所开发的模型也适用于PPP处理,具有来自单个,双重或三重星座的观测结果。基于单星座图和多星座图的静态和运动学测试的数据处理结果,对PPP准确性和收敛时间进行了分析。三个小时的静态定位结果表明,仅北斗的PPP精度比仅GPS的PPP差。仅北斗PPP的位置误差RMS在东,北和向上方向为5.2 cm,2.7 cm和8.3 cm,而仅GPS PPP的位置误差为3.9 cm,1.6 cm和5.7 cm。与仅GPS的PPP相比,GPS /北斗PPP在三个坐标分量上的定位精度分别提高了28%,6%和7%,收敛时间缩短了26%,13%和14%。 GPS / GLONASS PPP的性能比GPS /北斗PPP略好。与双星座PPP相比,三星座PPP进一步提高了定位精度并减少了收敛时间。由于当前的卫星数量有限,在添加伽利略之后,定位性能的改善并不明显。与静态定位类似,与单星座和双星座相比,四星座运动学PPP也显着提高了定位性能。还研究了四个系统之间的时差的时变特性。结果表明,GPS与北斗,GLONASS和Galileo的系统时间差随时间变化非常稳定,STD值优于1.1 ns。

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