VLBI Orbit Determination Technology for Mars Exploration

Expand
  • Shanghai Astronomical Observatory, Chinese Academy of Sciences, Shanghai 200030, China

Received date: 07 Mar 2018

Revised date: 04 Sep 2018

Abstract

China will launch the first Mars probe composed of an orbiter and a rover in 2020. The tracking and precise orbit determination of the Mars probe is the basis for completing engineering tasks and scientific exploration. At present, three methods, ranging, Doppler measurement and VLBI (Very Long Baseline Interferometry) angle measurement based on terrestrial radio measurement, are mainly used in the tracking and orbit determination of the Mars probe. In this paper, the application of differential VLBI technology is introduced, the Mars probe VLBI technology and orbit determination errors based on VLBI and Doppler/ranging measurement in the arc segment of Martian orbit insertion are analyzed, the positioning analysis of rover based on the same-beam VLBI and the Mars probe VLBI observation are presented. The results are of great application value to the orbit determination of Mars probe in China.

Cite this article

LIU Qinghui . VLBI Orbit Determination Technology for Mars Exploration[J]. Journal of Deep Space Exploration, 2018 , 5(5) : 435 -441 . DOI: 10.15982/j.issn.2095-7777.2018.05.005

References

[1] 刘庆会,吴亚军,黄勇,等. 基于同波束VLBI的火星车测定位技术[J]. 中国科学:物理学力学天文学,2015,45:099502
LIU Q H,WU Y J,HUANG Y,et al. Mars rover positioning technology based on Same-Beam VLBI[J]. Sci Sin-Phys Mech Astron,2015,45:099502
[2] 刘庆会,昌胜骐,黄勇,等. 火星探测器跟踪及VLBI测定轨分析[J]. 中国科学:物理学力学天文学,2017(9):47
[3] MARTIN-MUR T J,KRUIZINGA G L,BURKHART P D,et al. Mars science laboratory interplanetary navigation[J]. Journal of Spacecraft and Rockets,2014,51(4):1014-1028
[4] 刘庆会,贺庆宝,郑鑫,等. 天马望远镜在嫦娥三号测定轨VLBI观测中的应用分析[J]. 中国科学:物理学力学天文学,2015,45:039501
LIU Q H,HE Q B,ZHENG X,et al. Analysis of VLBI observation for Tianma radio telescope in Chang’E-3 orbit determination[J]. Sci Sin-Phys Mech Astron,2015,45:039501
[5] LIU Q H,ZHENG X,HUANG Y,et al. Monitoring motion and measuring relative position of the Chang’E-3 rover[J]. Radio Science,2014. https://dio:org/10.1002/2014RS005449.
[6] HUANG Y,CHANG S Q,LI P J,et al. Orbit determination of Chang’E-3 and positioning of the lander and the rover[J]. Chin Sci Bull,2014,59:3858-3867
[7] 李培佳,黄勇,昌胜骐,等. 基于地基观测的嫦娥三号着陆器与巡视器高精度定位[J]. 科学通报,2014,59:3162-3173
LI P J,HUANG Y,CHANG S Q,et al. Positioning for the Chang’E-3 lander and rover using Earth-based observations[J]. Chin Sci Bull,2014,59:3162-3173
[8] LIU Q,KIKUCHI F K,MATSUMOTO,et al. Same-beam VLBI observations of SELENE for im-proving lunar gravity field model[J]. Radio Science,2010,45:1-7
[9] 郑鑫,刘庆会,吴亚军,等. 基于同波束VLBI差分相时延的“玉兔”月球车动作监视分析[J]. 中国科学,物理学力学天文学,2014,44:872-878
ZHENG X,LIU Q H,WU Y J,et al. Motion monitoring and analysis of Chang’E-3 rover based on same-beam VLBI differential phase delay[J]. Sci Sin-Phys Mech Astron,2014,44:872-878
Outlines

/