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Orbital launch window for Moon-to-Earth trajectories

  • Jingyang Li*
  • , Shengping Gong
  • , Hexi Baoyin
  • , Junfeng Li*
  • , S. Y. Yim
  • *Corresponding author for this work
  • Tsinghua University

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

To support China's manned lunar landing mission requirements of high-latitude landing and anytime return, i.e., the capability of safely returning the crew exploration vehicle at any time from any lunar parking orbit, an orbital launch window for Moon-to-Earth return has been established. The launch window is a certain time interval during which the transearth injection may occur and result in a safe lunar return to the specified landing site on the surface of the Earth. Using the patched conic technique, an analytical design method for determining the transearth trajectories is developed with a finite sphere of influence model. Orbital launch window has been established to study the mission sensitivities to transearth trip time and energy requirement, and also to provide the basis for the preparation of an orbital launch timetable compatible with lunar missions and reentry conditions requirements. The results presented here are limited to a single impulsive maneuver. The difference between the results of the analytical model and high-fidelity model is compared. This difference is relatively small and can be easily eliminated by a simple differential correction procedure. The solution can also be used to serve as an initial estimate for future optimization procedures.

Original languageEnglish
Title of host publication1st IAA Conference on Dynamics and Control of Space Systems 2012 - Advances in the Astronautical Sciences
Subtitle of host publicationProceedings of the 1st International Academy of Astronautics Conference on DyCoSS 2012
Pages839-865
Number of pages27
StatePublished - 2012
Externally publishedYes
Event1st International Academy of Astronautics Conference on Dynamics and Control of Space Systems, DyCoSS 2012 - Porto, Portugal
Duration: 19 Mar 201221 Mar 2012

Publication series

NameAdvances in the Astronautical Sciences
Volume145
ISSN (Print)0065-3438

Conference

Conference1st International Academy of Astronautics Conference on Dynamics and Control of Space Systems, DyCoSS 2012
Country/TerritoryPortugal
CityPorto
Period19/03/1221/03/12

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