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Experimental Study on the Precise Orbit Determination of the BeiDou Navigation Satellite System

机译:北斗导航卫星系统精确定轨的实验研究

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摘要

The regional service of the Chinese BeiDou satellite navigation system is now in operation with a constellation including five Geostationary Earth Orbit satellites (GEO), five Inclined Geosynchronous Orbit (IGSO) satellites and four Medium Earth Orbit (MEO) satellites. Besides the standard positioning service with positioning accuracy of about 10 m, both precise relative positioning and precise point positioning are already demonstrated. As is well known, precise orbit and clock determination is essential in enhancing precise positioning services. To improve the satellite orbits of the BeiDou regional system, we concentrate on the impact of the tracking geometry and the involvement of MEOs, and on the effect of integer ambiguity resolution as well. About seven weeks of data collected at the BeiDou Experimental Test Service (BETS) network is employed in this experimental study. Several tracking scenarios are defined, various processing schemata are designed and carried out; and then, the estimates are compared and analyzed in detail. The results show that GEO orbits, especially the along-track component, can be significantly improved by extending the tracking network in China along longitude direction, whereas IGSOs gain more improvement if the tracking network extends in latitude. The involvement of MEOs and ambiguity-fixing also make the orbits better.
机译:中国北斗卫星导航系统的区域服务现已开始运作,其星座包括五颗对地静止地球轨道卫星(GEO),五颗倾斜地球同步轨道(IGSO)卫星和四颗中地球轨道(MEO)卫星。除了具有约10 m定位精度的标准定位服务外,还已经展示了精确的相对定位和精确的点定位。众所周知,精确的轨道和时钟确定对于增强精确的定位服务至关重要。为了改善北斗地区系统的卫星轨道,我们专注于跟踪几何的影响和MEO的参与,以及整数模糊度分辨率的影响。在这项实验研究中,使用了北斗实验测试服务(BETS)网络收集的大约七个星期的数据。定义了几种跟踪方案,设计并执行了各种处理方案;然后,将估计值进行比较和详细分析。结果表明,通过在中国沿经度方向扩展跟踪网络,可以显着改善GEO轨道,特别是沿轨道的组成部分;而如果跟踪网络在纬度上扩展,则IGSO会获得更大的改善。 MEO的参与和解决歧义性也使轨道变得更好。

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