Independent Mars spacecraft precise orbit determination software development and its applications

被引:1
作者
Jianguo Yan
Xuan Yang
Mao Ye
Fei Li
Weitong Jin
Jean-Pierre Barriot
机构
[1] Wuhan University,State Key Laboratory of Engineering in Surveying, Mapping and Remote Sensing
[2] Observatoire géodésique de Tahiti,undefined
来源
Astrophysics and Space Science | 2017年 / 362卷
关键词
Precise orbit determination; Independent; Software; MEX;
D O I
暂无
中图分类号
学科分类号
摘要
In this paper, we present an independent software for Mars spacecraft precise orbit determination and gravity field recovery we call the Mars Gravity Recovery and Analysis Software (MAGREAS), which is aimed to analyze tracking data from the Chinese Mars exploration mission and similar NASA and ESA Mars-related projects. The design structure, module distribution, and functions of the software are described in this manuscript. A detailed cross validation with the mature precise orbit determination platform Geodyn-II was done. Additionally, we use MAGREAS to process the MEX orbital tracking data with two-way and three-way tracking modes separately. Measurement residuals and the difference from the reconstructed ephemeris provided by Royal Observatory of Belgium indicate that our software is reliable. In addition to describe of our software and validate with Geodyn-II, we give a simulation case close to Chinese Mars exploration mission to indicate the application of our software. We present a simulation of a four-way tracking mode between Earth tracking station, Mars orbiter, and Mars lander to validate the effectiveness of our MAGREAS-based approach for Mars orbiter determination and lander positioning. Experimental results show that our proposed tracking mode significantly improves positioning accuracy. This work will provide a reference for the design of the Chinese Mars exploration mission as well as for the processing of Chinese Mars mission orbital tracking data.
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[1]  
Andert T.P.(2010)Precise mass determination and the nature of Phobos Geophys. Res. Lett. 37 3654-3669
[2]  
Rosenblatt P.(2010)Mars Express tracking and orbit determination trials with Chinese VLBI network Chin. Sci. Bull. 55 977-985
[3]  
Pätzold M.(2004)Network science, NetLander: a European mission to study the planet Mars Planet. Space Sci. 52 1050-1067
[4]  
Häusler B.(2009)Lander radio science for obtaining the rotation and orientation of Mars Planet. Space Sci. 57 1069-1081
[5]  
Dehant V.(2011)Revealing Mars’ deep interior: future geodesy missions using radio link between landers, orbiters, and the Earth Planet. Space Sci. 59 1971-1974
[6]  
Tyler G.L.(2003)Joint estimation of Martian Geophys. Res. Lett. 30 228-245
[7]  
Marty J.C.(2016) and rotation variations from simultaneous geodetic measurements: numerical simulations of a network science experiment Icarus 262 69-74
[8]  
Cao J.F.(2010)Seasonal and static gravity field of Mars from MGS, Mars Odyssey and MRO radio science J. Spacecr. TT&C Technol. 29 83-89
[9]  
Huang Y.(2009)BACC orbit determination and analysis software for deep space explorers J. Spacecr. TT&C Technol. 28 78-90
[10]  
Hu X.G.(2014)The Mars satellite orbit determination software at Shanghai Astronomical Observatory Science 344 3-18