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Chang'E-1 precision orbit determination and lunar gravity field solution

机译:E娥一号精确轨道确定和月球重力场解决方案

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In this paper we presented results assessing the role of space VLBI tracking data for precision orbit determination (POD) for Chang''E-1 and corresponding lunar gravity field solution based on tracking data of Chang''E-1, China''s first lunar exploration mission. The POD of the lunar orbit segment of Chang''E-1 was performed using S-band two-way Range and Range Rate (Ru00026;RR) data, together with VLBI delay and delay rate data. The role of VLBI data in the POD of Chang''E-1 had been analyzed, and the orbit accuracy was given with different orbit solution strategies. We concluded that the VLBI tracking data contributed significantly to the Chang''E-1 POD. Based on POD of Chang''E-1, the lunar gravity field solution CEGM based on six months tracking data was presented, the accuracy of the model was assessed by gravity field power spectrum and admittance/coherence between gravity and topography, the result showed that CEGM had significant improvement than a prior model GLGM-2.
机译:在本文中,我们提出了评估空间VLBI跟踪数据在Chang娥一号1号精确轨道确定(POD)中的作用以及基于Chang娥一号1号跟踪数据的相应月球重力场解的结果。首次登月任务。 Chang'E-1的月球轨道段的POD使用S波段双向距离和距离率(Ru00026; RR)数据以及VLBI延迟和延迟率数据进行。分析了VLBI数据在Chang'E-1 POD中的作用,并通过不同的轨道求解策略给出了轨道精度。我们得出的结论是,VLBI跟踪数据对Chang'E-1 POD做出了重大贡献。基于Chang'E-1的POD,提出了基于六个月跟踪数据的月球重力场解法CEGM,通过重力场功率谱和重力与地形之间的导纳/相干性评估了模型的准确性。 CEGM比以前的型号GLGM-2有显着改进。

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