Abstract
In this study, orbit determination (OD) simulation for the Korea Pathfinder Lunar Orbiter (KPLO) was accomplished for investigation of the observational arc-length effect using a sequential estimation algorithm. A lunar polar orbit located at 100 km altitude and 90° inclination was mainly considered for the KPLO mission operation phase. For measurement simulation and OD for KPLO, the Analytical Graphics Inc. Systems Tool Kit 11 and Orbit Determination Tool Kit 6 software were utilized. Three deep-space ground stations, including two deep space network (DSN) antennas and the Korea Deep Space Antenna, were configured for the OD simulation. To investigate the arc-length effect on OD, 60-hr, 48-hr, 24-hr, and 12-hr tracking data were prepared. Position uncertainty by error covariance and orbit overlap precision were used for OD performance evaluation. Additionally, orbit prediction (OP) accuracy was also assessed by the position difference between the estimated and true orbits. Finally, we concluded that the 48-hr-based OD strategy is suitable for effective flight dynamics operation of KPLO. This work suggests a useful guideline for the OD strategy of KPLO mission planning and operation during the nominal lunar orbits phase.
Publisher
The Korean Space Science Society
Reference34 articles.
1. Bae
J
, Song YJ, Kim YR, Kim B, Burn delay analysis of the lunar orbit insertion for Korea Pathfinder Lunar Orbiter, J. Astron. Space Sci. 34, 281-288 (2017). 10.5140/JASS.2017.34.4.281
2. Beckman
M
, Concha M, Lunar Prospector orbit determination results, Proceedings of the AIAA/AAS Astrodynamics Specialist Conference and Exhibit, Boston, MA, 10-12 August, 1998. 10.2514/6.1998-4561
3. Carranza
E
, Konopliv A, Ryne M, Lunar prospector orbit determination uncertainties using the high resolution lunar gravity models, Proceedings of the AAS/AIAA Astrodynamics Specialists Conference, Girdwood, AK, 16- 19 August, 1999.
4. Goossens
S
, Matsumoto K, Lunar satellite orbit determination analysis and quality assessment from lunar prospector tracking data and SELENE simulations, Adv. Space Res. 40, 43-50 (2007). 10.1016/j.asr.2006.12.0080273-1177
5. Goossens
S
, Matsumoto K, Rowlands DD, Lemoine FG, Noda H, et al., Orbit determination of the SELENE satellites using multi-satellite data types and evaluation of SELENE gravity field models, J. Geod. 85, 487-504 (2011). 10.1007/s00190-011-0446-20949-7714
Cited by
5 articles.
订阅此论文施引文献
订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献