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Estimation of antenna phase center offset for BDS IGSO and MEO satellites

机译:BDS IGSO和MEO卫星天线阶段中心偏移的估计

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The BeiDou satellite navigation system (BDS) is different from other global navigation satellite systems (GNSSs) because of its special constellation, which consists of satellites in geostationary earth orbit, inclined geosynchronous earth orbit (IGSO), and medium earth orbit (MEO). Compared to MEO satellites, the observations of IGSO satellites cover only a small range of nadir angles. Therefore, the estimation of phase center offsets (PCOs) suffers from high correlation with other estimation parameters. We have estimated the phase center offsets for BeiDou IGSO and MEO satellites with a direct PCO parameters model, and constraints are applied to cope with the correlation between the PCOs and other parameters. Validation shows that the estimated PCO parameters could be used to improve the accuracy of orbit and clock offset overlaps. Compared with the Multi-GNSS Experiment antenna phase center correction model, the average improvements of the proposed method for along-track, cross-track, and radial components are 19 mm (31%), 5 mm (14%), and 2 mm (15%) for MEO satellites, and 13 mm (17%), 12 mm (21%), and 5 mm (19%) for IGSO satellites. For clock offset overlaps, average improvements of standard deviation and root mean square (RMS) are 0.03 ns (20%) and 0.03 ns (12%), respectively. The RMS of precise coordinates in the BDS-only positioning was also improved significantly with a level of 24 mm (30%) in the up-direction. Finally, the overall uncertainty of the estimated results is discussed.
机译:北斗卫星导航系统(BDS)不同于其他全球导航卫星系统(GNSSS),因为其特殊的星座,由地球静止地球轨道轨道,倾斜的地球同步地球轨道(IGSO)和中原轨道(MEO)组成。与Meo卫星相比,IGSO卫星的观察仅覆盖了一小部分Nadir角度。因此,阶段中心偏移(PCOS)的估计遭受与其他估计参数的高相关性。我们估计了具有直接PCO参数模型的Beidou Igso和Meo卫星的相位中心偏移,并应用约束来应对PCOS与其他参数之间的相关性。验证表明,估计的PCO参数可用于提高轨道和时钟偏移重叠的准确性。与多GNSS实验天线相位中心校正模型相比,沿轨道,跨轨道和径向部件的所提出方法的平均改进为19毫米(31%),5毫米(14%)和2毫米对于Meo卫星的(15%),13毫米(17%),12毫米(21%)和5毫米(19%)用于Igso卫星。对于时钟偏移重叠,标准偏差的平均改善和均方方(RMS)分别为0.03ns(20%)和0.03ns(12%)。 BDS----ops定位中的精确坐标的RMS也在上方的24mm(30%)的水平显着提高。最后,讨论了估计结果的总体不确定性。

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