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Research on Attitude Models and Antenna Phase Center Correction for Jason-3 Satellite Orbit Determination

机译:确定Jason-3卫星轨道的姿态模型和天线相位中心校正的研究

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摘要

We focused on the researches of two models used for Jason-3 precise orbit determination (POD)—Jason-3 attitude modes and receiver phase center variation (PCV) model. A combined attitude mode for the Jason-3 satellite is designed based on experimental analysis used in some special cases, such as in the absence of quaternions or when inconvenient to use. We researched the linking of satellite attitude with antenna phase center. Specially, to verify the validity of the combined attitude, we analyzed the effects of different attitude modes on receiver phase center offset (PCO) estimation, PCO correction and POD. Meanwhile, the difference analysis of PCO correction based on attitude modes also contains the combined attitude modeling processes. The POD results showed that the orbital accuracies with the combined attitude are slightly more stable than those with attitude event file. By introducing receiver PCVs into POD, the mean residuals root-mean-square (RMS) is reduced by 1.9 mm and orbital 3D-RMS position difference is improved by 5.7 mm. The eight schemes were designed to integratedly verify the effectiveness of different attitude modes and receiver PCVs model. The results conclude that the accuracy using the combined attitude is higher than that of event file, which also prove the feasibility of the combined attitude in integrated POD and it can be as a revision of attitude event file. Using all mentioned attitude modes, the orbital accuracy by introducing PCVs can be improved by the millimeter level. The integrated effects of attitude modes and receiver PCVs on POD are almost consistent with the effects of a single variable. The optimal results of Jason-3 POD indicate that orbital mean radial RMS is close to 1 cm, and the 3D-RMS position difference is within 3 cm.
机译:我们专注于Jason-3精确轨道确定(POD)的两种模型的研究-Jason-3姿态模式和接收器相位中心变化(PCV)模型。 Jason-3卫星的组合姿态模式是基于在某些特殊情况下使用的实验分析而设计的,例如在没有四元数或不方便使用的情况下。我们研究了卫星姿态与天线相位中心的联系。特别是,为了验证组合姿态的有效性,我们分析了不同姿态模式对接收机相位中心偏移(PCO)估计,PCO校正和POD的影响。同时,基于姿态模式的PCO校正的差异分析也包含了组合的姿态建模过程。 POD结果表明,组合姿态的轨道精度比具有姿态事件文件的轨道精度稍微稳定一些。通过将接收器PCV引入POD,平均残差均方根(RMS)减小1.9 mm,轨道3D-RMS位置差提高5.7 mm。设计这八种方案以综合验证不同姿态模式和接收器PCV模型的有效性。结果表明,组合姿态的精度要高于事件文件的精度,这也证明了组合姿态在集成POD中的可行性,可以作为姿态事件文件的修正。使用所有提到的姿态模式,通过引入PCV可以使轨道精度提高毫米级。姿态模式和接收器PCV对POD的综合影响几乎与单个变量的影响一致。 Jason-3 POD的最佳结果表明,轨道平均径向RMS接近1 cm,3D-RMS位置差在3 cm以内。

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