Application of discrete mechanics and optimal control to spacecraft in non-keplerian motion around small solar system bodies
- Prolonged operations close to small solar system bodies require a sophisticated control logic to minimize propellant mass and maximize operational efficiency. A control logic based on Discrete Mechanics and Optimal Control (DMOC) is proposed and applied to both conventionally propelled and solar sail spacecraft operating at an arbitrarily shaped asteroid in the class of Itokawa. As an example, stand-off inertial hovering is considered, recently identified as a challenging part of the Marco Polo mission. The approach is easily extended to stand-off orbits. We show that DMOC is applicable to spacecraft control at small objects, in particular with regard to the fact that the changes in gravity are exploited by the algorithm to optimally control the spacecraft position. Furthermore, we provide some remarks on promising developments.
Author: | M. Gehler, S. Ober-Blöbaum, Bernd DachwaldORCiD |
---|---|
ISBN: | 978-161567908-9 |
Parent Title (English): | Procceedings of the 60th International Astronautical Congress |
Publisher: | Elsevier |
Place of publication: | Amsterdam |
Document Type: | Conference Proceeding |
Language: | English |
Year of Completion: | 2009 |
Tag: | Spacecraft |
First Page: | 1360 |
Last Page: | 1371 |
Note: | 60th International Astronautical Congress 2009, IAC 2009; Daejeon; South Korea; 12 October 2009 through 16 October 2009 |
Link: | https://www.scopus.com/record/display.uri?eid=2-s2.0-77953551203&origin=inward&txGid=55a9d77f018557e6d78a7421419a8393 |
Zugriffsart: | bezahl |
Institutes: | FH Aachen / Fachbereich Luft- und Raumfahrttechnik |
FH Aachen / IfB - Institut für Bioengineering | |
FH Aachen / Kommission für Forschung und Entwicklung | |
open_access (DINI-Set): | open_access |
collections: | Verlag / Elsevier |
Licence (German): | ![]() |