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タイトルGlobal Optimization of Low-Thrust Interplanetary Trajectories Subject to Operational Constraints
本文(外部サイト)http://hdl.handle.net/2060/20160001642
著者(英)Vavrina, Matthew A.; Hinckley, David; Englander, Jacob A.
著者所属(英)NASA Goddard Space Flight Center
発行日2016-02-14
言語eng
内容記述Low-thrust interplanetary space missions are highly complex and there can be many locally optimal solutions. While several techniques exist to search for globally optimal solutions to low-thrust trajectory design problems, they are typically limited to unconstrained trajectories. The operational design community in turn has largely avoided using such techniques and has primarily focused on accurate constrained local optimization combined with grid searches and intuitive design processes at the expense of efficient exploration of the global design space. This work is an attempt to bridge the gap between the global optimization and operational design communities by presenting a mathematical framework for global optimization of low-thrust trajectories subject to complex constraints including the targeting of planetary landing sites, a solar range constraint to simplify the thermal design of the spacecraft, and a real-world multi-thruster electric propulsion system that must switch thrusters on and off as available power changes over the course of a mission.
NASA分類Astrodynamics
レポートNOAAS 16-239
GSFC-E-DAA-TN29037
権利Copyright, Distribution as joint owner in the copyright


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