Automated Tour Design in the Saturnian System

Fuente: arXiv
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Autori principali: Takubo, Yuji, Landau, Damon, Anderson, Brian
Natura: Preprint
Pubblicazione: 2022
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author Takubo, Yuji
Landau, Damon
Anderson, Brian
author_facet Takubo, Yuji
Landau, Damon
Anderson, Brian
contents Future missions to Enceladus would benefit from multi-moon tours that leverage V-infinity on resonant orbits to progressively transfer between moons. Such "resonance family hopping" trajectories present a vast search space for global optimization due to the different combinations of available resonances and flyby speeds. The proposed multi-objective tour design algorithm optimizes entire moon tours from Titan to Enceladus via grid-based dynamic programming, in which the computation time is significantly reduced by utilizing a database of V-infinity-leveraging transfers. The result unveils a complete trade space of the moon tour design to Enceladus in a tractable computation time and global optimality.
format Preprint
id arxiv_https___arxiv_org_abs_2210_14996
institution arXiv
publishDate 2022
record_format arxiv
spellingShingle Automated Tour Design in the Saturnian System
Takubo, Yuji
Landau, Damon
Anderson, Brian
Optimization and Control
Future missions to Enceladus would benefit from multi-moon tours that leverage V-infinity on resonant orbits to progressively transfer between moons. Such "resonance family hopping" trajectories present a vast search space for global optimization due to the different combinations of available resonances and flyby speeds. The proposed multi-objective tour design algorithm optimizes entire moon tours from Titan to Enceladus via grid-based dynamic programming, in which the computation time is significantly reduced by utilizing a database of V-infinity-leveraging transfers. The result unveils a complete trade space of the moon tour design to Enceladus in a tractable computation time and global optimality.
title Automated Tour Design in the Saturnian System
topic Optimization and Control
url https://arxiv.org/abs/2210.14996