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Topology Abstraction-Based Routing Scheme for Secret-Key Provisioning in Hybrid GEO/LEO Quantum Satellite Networks

Quantum key distribution (QKD) is a promising technique to resist the threat against quantum computers. However, the high loss of quantum signals over a long-distance optical fiber is an obstacle for QKD in the intercontinental domain. In this context, the quantum satellite network is preferred over...

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Autores principales: Guo, Mingxuan, Cao, Yuan, Zhu, Jiali, Zhou, Xingyu, Zhang, Chunhui, He, Xinyi, Yu, Xiaosong, Zhao, Yongli, Zhang, Jie, Wang, Qin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10378358/
https://www.ncbi.nlm.nih.gov/pubmed/37509994
http://dx.doi.org/10.3390/e25071047
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author Guo, Mingxuan
Cao, Yuan
Zhu, Jiali
Zhou, Xingyu
Zhang, Chunhui
He, Xinyi
Yu, Xiaosong
Zhao, Yongli
Zhang, Jie
Wang, Qin
author_facet Guo, Mingxuan
Cao, Yuan
Zhu, Jiali
Zhou, Xingyu
Zhang, Chunhui
He, Xinyi
Yu, Xiaosong
Zhao, Yongli
Zhang, Jie
Wang, Qin
author_sort Guo, Mingxuan
collection PubMed
description Quantum key distribution (QKD) is a promising technique to resist the threat against quantum computers. However, the high loss of quantum signals over a long-distance optical fiber is an obstacle for QKD in the intercontinental domain. In this context, the quantum satellite network is preferred over the terrestrial quantum optical network. Due to the mobility of satellites, the satellite topology is dynamic in the quantum satellite network, which remains a challenge for routing. In hybrid geostationary-earth-orbit (GEO)/low-earth-orbit (LEO) quantum satellite networks, the lack of an efficient scheduling scheme for GEO/LEO satellites also limits the construction of quantum satellite networks. Therefore, this paper provides a topology abstraction-based routing scheme for secret-key provisioning, where the dynamic physical topology is translated into a quasi-static abstracted topology. This scheme contributes to saving the precious secret key resources. In order to improve the success probability of long-distance QKD requests, three novel resource-scheduling heuristic algorithms are proposed in hybrid GEO/LEO quantum satellite networks. Simulation results indicate that the proposed algorithms can improve the success probability of QKD requests by 47% compared to the benchmark.
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spelling pubmed-103783582023-07-29 Topology Abstraction-Based Routing Scheme for Secret-Key Provisioning in Hybrid GEO/LEO Quantum Satellite Networks Guo, Mingxuan Cao, Yuan Zhu, Jiali Zhou, Xingyu Zhang, Chunhui He, Xinyi Yu, Xiaosong Zhao, Yongli Zhang, Jie Wang, Qin Entropy (Basel) Article Quantum key distribution (QKD) is a promising technique to resist the threat against quantum computers. However, the high loss of quantum signals over a long-distance optical fiber is an obstacle for QKD in the intercontinental domain. In this context, the quantum satellite network is preferred over the terrestrial quantum optical network. Due to the mobility of satellites, the satellite topology is dynamic in the quantum satellite network, which remains a challenge for routing. In hybrid geostationary-earth-orbit (GEO)/low-earth-orbit (LEO) quantum satellite networks, the lack of an efficient scheduling scheme for GEO/LEO satellites also limits the construction of quantum satellite networks. Therefore, this paper provides a topology abstraction-based routing scheme for secret-key provisioning, where the dynamic physical topology is translated into a quasi-static abstracted topology. This scheme contributes to saving the precious secret key resources. In order to improve the success probability of long-distance QKD requests, three novel resource-scheduling heuristic algorithms are proposed in hybrid GEO/LEO quantum satellite networks. Simulation results indicate that the proposed algorithms can improve the success probability of QKD requests by 47% compared to the benchmark. MDPI 2023-07-12 /pmc/articles/PMC10378358/ /pubmed/37509994 http://dx.doi.org/10.3390/e25071047 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Guo, Mingxuan
Cao, Yuan
Zhu, Jiali
Zhou, Xingyu
Zhang, Chunhui
He, Xinyi
Yu, Xiaosong
Zhao, Yongli
Zhang, Jie
Wang, Qin
Topology Abstraction-Based Routing Scheme for Secret-Key Provisioning in Hybrid GEO/LEO Quantum Satellite Networks
title Topology Abstraction-Based Routing Scheme for Secret-Key Provisioning in Hybrid GEO/LEO Quantum Satellite Networks
title_full Topology Abstraction-Based Routing Scheme for Secret-Key Provisioning in Hybrid GEO/LEO Quantum Satellite Networks
title_fullStr Topology Abstraction-Based Routing Scheme for Secret-Key Provisioning in Hybrid GEO/LEO Quantum Satellite Networks
title_full_unstemmed Topology Abstraction-Based Routing Scheme for Secret-Key Provisioning in Hybrid GEO/LEO Quantum Satellite Networks
title_short Topology Abstraction-Based Routing Scheme for Secret-Key Provisioning in Hybrid GEO/LEO Quantum Satellite Networks
title_sort topology abstraction-based routing scheme for secret-key provisioning in hybrid geo/leo quantum satellite networks
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10378358/
https://www.ncbi.nlm.nih.gov/pubmed/37509994
http://dx.doi.org/10.3390/e25071047
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