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

Jianguo Yan, J. Ping, Qian Huang, Jianfeng Cao
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引用次数: 16

Abstract

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 (R&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.
嫦娥一号精密定轨及月球重力场解算
基于中国首次月球探测任务“嫦娥一号”的跟踪数据,对空间VLBI跟踪数据在“嫦娥一号”精确定轨中的作用进行了评估,并给出了相应的月球重力场求解结果。利用s波段双向距离和距离速率(R&RR)数据,结合VLBI延迟和延迟率数据,对嫦娥一号月球轨道段进行了POD。分析了VLBI数据在嫦娥一号POD中的作用,给出了不同轨道解算策略下的轨道精度。结果表明,VLBI跟踪数据对嫦娥一号POD有重要贡献。基于嫦娥一号卫星的POD,提出了基于6个月跟踪数据的月球重力场解CEGM,通过重力场功率谱和重力与地形导纳/相干性对模型的精度进行了评估,结果表明,CEGM比之前的模型GLGM-2有显著提高。
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