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Towards the automated operations of large distributed satellite systems. Part 2: Classifications and tools.

Authors :
Ben-Larbi, Mohamed Khalil
Flores Pozo, Kattia
Choi, Mirue
Haylok, Tom
Grzesik, Benjamin
Haas, Andreas
Krupke, Dominik
Konstanski, Harald
Schaus, Volker
Fekete, Sándor P.
Schurig, Christian
Stoll, Enrico
Source :
Advances in Space Research. Jun2021, Vol. 67 Issue 11, p3620-3637. 18p.
Publication Year :
2021

Abstract

Recent developments have seen a trend towards larger constellations of spacecraft, with some proposals featuring constellations of more than 10.000 satellites. While similar concepts for large constellations already existed in the past, traditional satellite deployments hardly ever feature groups of more than 100 satellites. This trend towards considerably larger satellite numbers originates from non-traditional design and operations of spacecraft by non-traditional space companies. The evolution in the space sector, precipitated by new players, is often referred to as "Space 4.0" or "New Space". It necessitates a rethinking of the way satellites and satellite constellations are planned, designed, and operated. New operational paradigms are needed to enable automatic, optimal task definition, and scheduling in a holistic approach. This is the second of two companion papers that investigate the operations of distributed satellite systems. This second article investigates the classification of distributed satellite systems and evaluates commercial tools for automated spacecraft operations, whereas the first article performed a survey of conventional and "new space"operations of spacecraft constellations. Classification metrics for constellations are derived and evaluated with respect to their informative value concerning the operation, the automation, and the scalability of the constellation. The proposed classification system is applied to the Dove and RapidEye constellation and allows for a comparison between the presented automation approaches. Commercial tools for automated spacecraft operations are evaluated for several mission task elements, such as orbit control, orbit maintenance, and collision avoidance. Subsequently, the trends, benefits, and standardization needs for operational automation are identified. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
02731177
Volume :
67
Issue :
11
Database :
Academic Search Index
Journal :
Advances in Space Research
Publication Type :
Academic Journal
Accession number :
150083484
Full Text :
https://doi.org/10.1016/j.asr.2020.08.018