2015/11/03 by Dario Izzo, Izzo, Dario, Daniel Hennes +5 · 1 citation
Engineering · Physics and Astronomy · #Astro and Planetary Science #FOS: Physical sciences #Space Physics (physics.space-ph) #Space Satellite Systems and Control #Spacecraft Dynamics and Control #physics.space-ph
paper · pdf · doi:10.48550/arxiv.1511.00821
To appear in: "Space Engineering: Modeling and Optimization with Case Studies", Edited by: Giorgio Fasano, János D. Pintér. Springer, 2016
openalex publication_date 2015/11/03 · arxiv created 2016/03/10 · arxiv updated 2016/03/11 · openalex created_date 2022/10/06 · openalex updated_date 2026/07/28
The design of interplanetary trajectories often involves a preliminary search for options later refined/assembled into one final trajectory. It is this broad search that, often being intractable, inspires the international event called Global Trajectory Optimization Competition. In the first part of this chapter, we introduce some fundamental problems of space flight mechanics, building blocks of any attempt to participate successfully in these competitions, and we describe the use of the open source software PyKEP to solve them. In the second part, we formulate an instance of a multiple asteroid rendezvous problem, related to the 7th edition of the competition, and we show step by step how to build a possible solution strategy. In doing so, we introduce two new techniques useful in the design of this particular mission type: the use of an asteroid phasing value and its surrogates and the efficient computation of asteroid clusters. We show how the basic building blocks, sided to these innovative ideas, allow designing an effective global search for possible trajectories.