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Trajectory Design Considerations for Lunar Surface to Near Rectilinear Halo Orbit RendezvousNASA’s Artemis program plans to use a 9:2 resonant southward Near-Rectilinear Halo Orbit (NRHO) at the Earth-Moon’s L2 libration point to stage assets for a sustained lunar exploration campaign. This architecture includes the use of the Gateway space station positioned in this orbit. While the proximity operations in the NRHO are similar to field-free space dynamics, the far-field rendezvous aspect of the problem is more complicated. We analyze the key drivers of the ΔV performance of the far-field rendezvous problem from low lunar orbit to the Gateway. We find that lunar latitudinal libration is a driving factor to ΔV performance for surface ascent missions that rendezvous with the NRHO, and that transfer time from low lunar orbit to NRHO affects more aspects of the geometry and performance than expected from rendezvous in Keplerian orbits.
Document ID
20220018387
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Christopher W Foster
(Odyssey Space Research (United States) Houston, Texas, United States)
Peter M Brandt
(Odyssey Space Research (United States) Houston, Texas, United States)
Marielle M Pellegrino
(Odyssey Space Research (United States) Houston, Texas, United States)
Cesar A Ocampo
(Odyssey Space Research (United States) Houston, Texas, United States)
David Strack
(Odyssey Space Research (United States) Houston, Texas, United States)
Date Acquired
December 5, 2022
Publication Date
January 15, 2023
Subject Category
Astrodynamics
Report/Patent Number
AAS 23-150
Meeting Information
Meeting: 33rd AAS/AIAA Space Flight Mechanics Meeting
Location: Austin, TX
Country: US
Start Date: January 15, 2023
End Date: January 19, 2023
Sponsors: American Institute of Aeronautics and Astronautics, American Astronautical Society
Funding Number(s)
CONTRACT_GRANT: 80JSC017D0001
Distribution Limits
Public
Copyright
Public Use Permitted.
Keywords
NRHO
Rendezvous
Artemis
Mission design
LLO
Near rectilinear halo orbit
HLS
Human Landing System
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