PkT-SIN: A secure communication protocol for space information networks with periodic k-time anonymous authentication
Space Information Network (SIN) enables universal Internet connectivity for any object, even in remote and extreme environments where deploying a cellular network is difficult. Access authentication is crucial for ensuring user access control in SIN and preventing unauthorized entities from gaining...
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2024
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sg-smu-ink.sis_research-105652024-11-18T05:38:58Z PkT-SIN: A secure communication protocol for space information networks with periodic k-time anonymous authentication YANG, Yang XUE, Wenyi SUN, Jianfei YANG, Guomin LI, Yingjiu Pang, Hwee Hwa DENG, Robert H. Space Information Network (SIN) enables universal Internet connectivity for any object, even in remote and extreme environments where deploying a cellular network is difficult. Access authentication is crucial for ensuring user access control in SIN and preventing unauthorized entities from gaining access to network services. However, due to the complex communication environment in SIN, including exposed links and higher signal delay, designing a secure and efficient authentication scheme presents a significant challenge. In this paper, we propose a secure communication protocol for SIN with periodic k-time anonymous authentication (named PkT-SIN) that allows satellite users to anonymously authenticate to ground stations at most k times in each single time period. An efficient handover mechanism is designed to ensure seamless communication for satellite users to communicate with different satellites and ground stations, taking into account the dynamic topology of SIN. As a core component of PkT-SIN, we propose a novel primitive, periodic k-time keyed-verification anonymous credential (PkT-KVAC), that enables users to derive k tokens from a credential for anonymous and unlinkable authentication. On the other hand, a verifier can always recognize a reused token from a dishonest user. PkT-KVAC is of independent contribution to anonymous authentication in pay-per-use business scenarios. Formal security proofs confirm that PkT-SIN and PkT-KVAC have desired security features. The supremacy of their computing features is demonstrated through comprehensive comparison and rigorous performance analysis. 2024-06-01T07:00:00Z text application/pdf https://ink.library.smu.edu.sg/sis_research/9565 info:doi/10.1109/TIFS.2024.3409070 https://ink.library.smu.edu.sg/context/sis_research/article/10565/viewcontent/PkT_SIN_av.pdf http://creativecommons.org/licenses/by-nc-nd/4.0/ Research Collection School Of Computing and Information Systems eng Institutional Knowledge at Singapore Management University Space information networks periodic k-time authentication keyed-verification anonymous credential Aerospace Engineering Databases and Information Systems Information Security |
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Space information networks periodic k-time authentication keyed-verification anonymous credential Aerospace Engineering Databases and Information Systems Information Security |
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Space information networks periodic k-time authentication keyed-verification anonymous credential Aerospace Engineering Databases and Information Systems Information Security YANG, Yang XUE, Wenyi SUN, Jianfei YANG, Guomin LI, Yingjiu Pang, Hwee Hwa DENG, Robert H. PkT-SIN: A secure communication protocol for space information networks with periodic k-time anonymous authentication |
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Space Information Network (SIN) enables universal Internet connectivity for any object, even in remote and extreme environments where deploying a cellular network is difficult. Access authentication is crucial for ensuring user access control in SIN and preventing unauthorized entities from gaining access to network services. However, due to the complex communication environment in SIN, including exposed links and higher signal delay, designing a secure and efficient authentication scheme presents a significant challenge. In this paper, we propose a secure communication protocol for SIN with periodic k-time anonymous authentication (named PkT-SIN) that allows satellite users to anonymously authenticate to ground stations at most k times in each single time period. An efficient handover mechanism is designed to ensure seamless communication for satellite users to communicate with different satellites and ground stations, taking into account the dynamic topology of SIN. As a core component of PkT-SIN, we propose a novel primitive, periodic k-time keyed-verification anonymous credential (PkT-KVAC), that enables users to derive k tokens from a credential for anonymous and unlinkable authentication. On the other hand, a verifier can always recognize a reused token from a dishonest user. PkT-KVAC is of independent contribution to anonymous authentication in pay-per-use business scenarios. Formal security proofs confirm that PkT-SIN and PkT-KVAC have desired security features. The supremacy of their computing features is demonstrated through comprehensive comparison and rigorous performance analysis. |
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text |
author |
YANG, Yang XUE, Wenyi SUN, Jianfei YANG, Guomin LI, Yingjiu Pang, Hwee Hwa DENG, Robert H. |
author_facet |
YANG, Yang XUE, Wenyi SUN, Jianfei YANG, Guomin LI, Yingjiu Pang, Hwee Hwa DENG, Robert H. |
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YANG, Yang |
title |
PkT-SIN: A secure communication protocol for space information networks with periodic k-time anonymous authentication |
title_short |
PkT-SIN: A secure communication protocol for space information networks with periodic k-time anonymous authentication |
title_full |
PkT-SIN: A secure communication protocol for space information networks with periodic k-time anonymous authentication |
title_fullStr |
PkT-SIN: A secure communication protocol for space information networks with periodic k-time anonymous authentication |
title_full_unstemmed |
PkT-SIN: A secure communication protocol for space information networks with periodic k-time anonymous authentication |
title_sort |
pkt-sin: a secure communication protocol for space information networks with periodic k-time anonymous authentication |
publisher |
Institutional Knowledge at Singapore Management University |
publishDate |
2024 |
url |
https://ink.library.smu.edu.sg/sis_research/9565 https://ink.library.smu.edu.sg/context/sis_research/article/10565/viewcontent/PkT_SIN_av.pdf |
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