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Hauptverfasser: Roque, Pedro, Phodapol, Sujet, Krantz, Elias, Lim, Jaeyoung, Verhagen, Joris, Jiang, Frank J., Dörner, David, Mao, Huina, Tibert, Gunnar, Siegwart, Roland, Stenius, Ivan, Tumova, Jana, Fuglesang, Christer, Dimarogonas, Dimos V.
Format: Preprint
Veröffentlicht: 2025
Schlagworte:
Online-Zugang:https://arxiv.org/abs/2501.16973
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author Roque, Pedro
Phodapol, Sujet
Krantz, Elias
Lim, Jaeyoung
Verhagen, Joris
Jiang, Frank J.
Dörner, David
Mao, Huina
Tibert, Gunnar
Siegwart, Roland
Stenius, Ivan
Tumova, Jana
Fuglesang, Christer
Dimarogonas, Dimos V.
author_facet Roque, Pedro
Phodapol, Sujet
Krantz, Elias
Lim, Jaeyoung
Verhagen, Joris
Jiang, Frank J.
Dörner, David
Mao, Huina
Tibert, Gunnar
Siegwart, Roland
Stenius, Ivan
Tumova, Jana
Fuglesang, Christer
Dimarogonas, Dimos V.
contents In the near future, autonomous space systems will compose many of the deployed spacecraft. Their tasks will involve autonomous rendezvous and proximity operations with large structures, such as inspections, assembly, and maintenance of orbiting space stations, as well as human-assistance tasks over shared workspaces. To promote replicable and reliable scientific results for autonomous control of spacecraft, we present the design of a space robotics laboratory based on open-source and modular software and hardware. The simulation software provides a software-in-the-loop architecture that seamlessly transfers simulated results to the hardware. Our results provide an insight into such a system, including comparisons of hardware and software results, as well as control and planning methodologies for controlling free-flying platforms.
format Preprint
id arxiv_https___arxiv_org_abs_2501_16973
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Towards Open-Source and Modular Space Systems with ATMOS
Roque, Pedro
Phodapol, Sujet
Krantz, Elias
Lim, Jaeyoung
Verhagen, Joris
Jiang, Frank J.
Dörner, David
Mao, Huina
Tibert, Gunnar
Siegwart, Roland
Stenius, Ivan
Tumova, Jana
Fuglesang, Christer
Dimarogonas, Dimos V.
Robotics
In the near future, autonomous space systems will compose many of the deployed spacecraft. Their tasks will involve autonomous rendezvous and proximity operations with large structures, such as inspections, assembly, and maintenance of orbiting space stations, as well as human-assistance tasks over shared workspaces. To promote replicable and reliable scientific results for autonomous control of spacecraft, we present the design of a space robotics laboratory based on open-source and modular software and hardware. The simulation software provides a software-in-the-loop architecture that seamlessly transfers simulated results to the hardware. Our results provide an insight into such a system, including comparisons of hardware and software results, as well as control and planning methodologies for controlling free-flying platforms.
title Towards Open-Source and Modular Space Systems with ATMOS
topic Robotics
url https://arxiv.org/abs/2501.16973