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Rephasing and Loitering Strategies in the Gateway Near Rectilinear Halo OrbitNASA's Gateway plans to operate in an L2 9:2 lunar synodic Near Rectilinear Halo Orbit (NRHO) for nominal operations. During the mission's lifetime, scenarios may arise where rephasing within the NRHO or loitering in an alternate trajectory are advantageous. This investigation discusses two strategies to perform this rephasing in the NRHO over a relatively short timespan. The first method uses two maneuvers to shift the phase along a single transfer arc. The second strategy employs four maneuvers, leveraging an intermediate orbit for rephasing. An optimization strategy is formulated to construct locally optimal solutions in the Circular Restricted Three-Body Problem (CR3BP) and verified in a higher-fidelity ephemeris model.
Document ID
20230010792
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Brian Mccarthy
(AI Solutions Lanham, Maryland, United States)
Stephen Scheuerle
(Purdue University West Lafayette West Lafayette, Indiana, United States)
Emily Zimovan-Spreen
(Johnson Space Center Houston, Texas, United States)
Dale Williams
(Purdue University West Lafayette West Lafayette, Indiana, United States)
Diane Davis
(Jacobs (United States) Dallas, Texas, United States)
Kathleen Howell
(Purdue University West Lafayette West Lafayette, Indiana, United States)
Date Acquired
July 25, 2023
Subject Category
Astrodynamics
Report/Patent Number
AAS 23-200
Meeting Information
Meeting: AAS/AAIA Astrodynamics Specialist Conference
Location: Big Sky, MT
Country: US
Start Date: August 13, 2023
End Date: August 17, 2023
Sponsors: American Institute of Aeronautics and Astronautics, American Astronautical Society
Funding Number(s)
CONTRACT_GRANT: OSTEM-Intern-Single
CONTRACT_GRANT: HQ NAC TI&E
CONTRACT_GRANT: 80JSC022DA035
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Keywords
NRHO
Near Rectilinear Halo Orbit
Artemis
Gateway
Dynamical Systems Theory
Optimization
Mission Design
Trajectory Design
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