Trustful Coopetitive Infrastructures for the New Space Exploration Era

Fuente: arXiv
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Autores principales: Baima, Renan Lima, Chovet, Loïck, Hartwich, Eduard, Bera, Abhishek, Sedlmeir, Johannes, Fridgen, Gilbert, Olivares-Mendez, Miguel Angel
Formato: Preprint
Publicado: 2024
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author Baima, Renan Lima
Chovet, Loïck
Hartwich, Eduard
Bera, Abhishek
Sedlmeir, Johannes
Fridgen, Gilbert
Olivares-Mendez, Miguel Angel
author_facet Baima, Renan Lima
Chovet, Loïck
Hartwich, Eduard
Bera, Abhishek
Sedlmeir, Johannes
Fridgen, Gilbert
Olivares-Mendez, Miguel Angel
contents In the new space economy, space agencies, large enterprises, and start-ups aim to launch space multi-robot systems (MRS) for various in-situ resource utilization (ISRU) purposes, such as mapping, soil evaluation, and utility provisioning. However, these stakeholders' competing economic interests may hinder effective collaboration on a centralized digital platform. To address this issue, neutral and transparent infrastructures could facilitate coordination and value exchange among heterogeneous space MRS. While related work has expressed legitimate concerns about the technical challenges associated with blockchain use in space, we argue that weighing its potential economic benefits against its drawbacks is necessary. This paper presents a novel architectural framework and a comprehensive set of requirements for integrating blockchain technology in MRS, aiming to enhance coordination and data integrity in space exploration missions. We explored distributed ledger technology (DLT) to design a non-proprietary architecture for heterogeneous MRS and validated the prototype in a simulated lunar environment. The analyses of our implementation suggest global ISRU efficiency improvements for map exploration, compared to a corresponding group of individually acting robots, and that fostering a coopetitive environment may provide additional revenue opportunities for stakeholders.
format Preprint
id arxiv_https___arxiv_org_abs_2402_06014
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Trustful Coopetitive Infrastructures for the New Space Exploration Era
Baima, Renan Lima
Chovet, Loïck
Hartwich, Eduard
Bera, Abhishek
Sedlmeir, Johannes
Fridgen, Gilbert
Olivares-Mendez, Miguel Angel
Robotics
Computational Engineering, Finance, and Science
Multiagent Systems
Software Engineering
Systems and Control
C.2.4; D.2.11; D.2.1; H.1.1; H.2.6; H.4.2; H.3.4; H.3.5; J.4; J.7; K.6.1; K.6.3; K.6.4
In the new space economy, space agencies, large enterprises, and start-ups aim to launch space multi-robot systems (MRS) for various in-situ resource utilization (ISRU) purposes, such as mapping, soil evaluation, and utility provisioning. However, these stakeholders' competing economic interests may hinder effective collaboration on a centralized digital platform. To address this issue, neutral and transparent infrastructures could facilitate coordination and value exchange among heterogeneous space MRS. While related work has expressed legitimate concerns about the technical challenges associated with blockchain use in space, we argue that weighing its potential economic benefits against its drawbacks is necessary. This paper presents a novel architectural framework and a comprehensive set of requirements for integrating blockchain technology in MRS, aiming to enhance coordination and data integrity in space exploration missions. We explored distributed ledger technology (DLT) to design a non-proprietary architecture for heterogeneous MRS and validated the prototype in a simulated lunar environment. The analyses of our implementation suggest global ISRU efficiency improvements for map exploration, compared to a corresponding group of individually acting robots, and that fostering a coopetitive environment may provide additional revenue opportunities for stakeholders.
title Trustful Coopetitive Infrastructures for the New Space Exploration Era
topic Robotics
Computational Engineering, Finance, and Science
Multiagent Systems
Software Engineering
Systems and Control
C.2.4; D.2.11; D.2.1; H.1.1; H.2.6; H.4.2; H.3.4; H.3.5; J.4; J.7; K.6.1; K.6.3; K.6.4
url https://arxiv.org/abs/2402.06014