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Mission-Maps For Outbound Cislunar Transfer TrajectoriesThis study quantifies the robustness and sensitivity of an outbound cislunar trajectory for a lunar lander in the form of mission-maps, or topological maps that allows either a computer program or mission designer to intuitively optimize the placement of critical outbound correction burns from the derived sensitivity data. The non-linear multi-body dynamics are applied to generate an outbound cislunar reference profile used by a linear covariance analysis (LinCov) tool to compute the expected Δv and trajectory dispersions due to the initial state uncertainty, sensor errors, maneuver execution errors, and disturbance accelerations along the outbound cislunar profile. The rapid performance analysis capabilities of LinCov are complimented with parallel processing techniques to evaluate hundreds and thousands of different translational burn locations, placements, and targeting constraints to identify the combination that minimizes the total Δv usage (nominal plus 3σ Δv) and trajectory dispersions at lunar orbit insertion. This study utilizes a generalized reference targeting algorithm to quickly assess the integrated closed-loop GN&C system performance due to different targeting configurations and constraints. The resulting mission maps provide an intuitive insight to ascertain each trajectory correction maneuver’s (TCM) sensitivity to different burn times along an outbound cislunar trajectory and quickly identify desirable engineering tradeoffs when performing analysis on the number and placement of these burns that nominally zero. Multiple mission maps are generated for a variety of different performance parameters that allow engineers to visually identify optimal solutions for trajectory correction maneuver placements, the number of correction burns, and the targeting constraints for each burn.
Document ID
20250000774
Acquisition Source
Johnson Space Center
Document Type
Conference Paper
Authors
Carter Van Hammond
(United States Air Force Academy Colorado Springs, Colorado, United States)
David Woffinden
(Johnson Space Center Houston, United States)
Luke Sauter
(United States Air Force Academy Colorado Springs, Colorado, United States)
Nathan Collins
(United States Air Force Academy Colorado Springs, Colorado, United States)
Date Acquired
January 21, 2025
Publication Date
January 31, 2025
Publication Information
Publisher: American Astronautical Society
Subject Category
Astrodynamics
Report/Patent Number
AAS-25-028
Meeting Information
Meeting: 47th Annual American Astronautical Society (AAS) Guidance, Navigation and Control (GN&C) Conference
Location: Breckenridge, CO
Country: US
Start Date: January 31, 2025
End Date: February 5, 2025
Sponsors: American Astronautical Society
Funding Number(s)
INTERAGENCY: IAA-EA-22-35582
WBS: 909018.36.40.02.72.01
Distribution Limits
Public
Copyright
Portions of document may include copyright protected material.
Keywords
GN&C
Targeting
Linear Covariance Analysis
Cislunar
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