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Initial Results of BDS3 GEO Orbit Determination with Inter-satellite Link Measurements

机译:利用卫星间链路测量确定BDS3 GEO轨道的初步结果

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Owning to some successful applications of RDSS and RNSS, keeping GEO satellites in BeiDou Navigation Constellation becomes one of the key differences between BDS and other Global Navigation Satellite Systems (GNSS). And for the first time, BDS GEO works as a node of Inter-Satellite Links. It makes precise orbit determination (POD) based on Inter Satellite Ranging (ISR) for GEO possible. Orbit, hardware delay and solar radiation pressure parameters are estimated in POD process. Mean value of estimated hardware delay is 1189.18 ns and STD is 0.15. RMS of post-fit residuals of ISR, between 10 of 18 MEO satellites and GEO satellite is less than 45 cm, and that between the other 8 MEO satellites and GEO satellite is less than 56 cm. RMS of GEO 48-h OOD is no greater than 2.4 m in position and no greater than 0.2 m in radial direction.
机译:由于RDSS和RNSS的一些成功应用,将GEO卫星保持在北斗导航星座中已成为BDS与其他全球导航卫星系统(GNSS)之间的主要区别之一。而且,BDS GEO首次作为“卫星间链接”的节点。它使基于GEO的卫星间测距(ISR)的精确轨道确定(POD)成为可能。在POD过程中估计轨道,硬件延迟和太阳辐射压力参数。估计硬件延迟的平均值为1189.18 ns,STD为0.15。 18颗MEO卫星中有10颗与GEO卫星之间的ISR拟合后残差均方根小于45厘米,其他8颗MEO卫星与GEO卫星之间的残差均方根小于56厘米。 GEO 48-h OOD的有效值在位置上不大于2.4 m,在径向方向上不大于0.2 m。

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