Efficient identity-based authenticated key agreement protocol with provable security for vehicular ad hoc networks

In vehicular ad hoc networks, establishing a secure channel between any two vehicles is fundamental. Authenticated key agreement is a useful mechanism, which can be used to negotiate a shared key for secure data transmission between authentic vehicles in vehicular ad hoc networks. Among the existing...

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Main Authors: Lanjun Dang, Jie Xu, Xuefei Cao, Hui Li, Jie Chen, Yueyu Zhang, Xiaotong Fu
Format: Article
Language:English
Published: Hindawi - SAGE Publishing 2018-04-01
Series:International Journal of Distributed Sensor Networks
Online Access:https://doi.org/10.1177/1550147718772545
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author Lanjun Dang
Jie Xu
Xuefei Cao
Hui Li
Jie Chen
Yueyu Zhang
Xiaotong Fu
author_facet Lanjun Dang
Jie Xu
Xuefei Cao
Hui Li
Jie Chen
Yueyu Zhang
Xiaotong Fu
author_sort Lanjun Dang
collection DOAJ
description In vehicular ad hoc networks, establishing a secure channel between any two vehicles is fundamental. Authenticated key agreement is a useful mechanism, which can be used to negotiate a shared key for secure data transmission between authentic vehicles in vehicular ad hoc networks. Among the existing identity-based two-party authenticated key agreement protocols without pairings, there are only a few protocols that provide provable security in strong security models such as the extended Canetti–Krawczyk model. This article presents an efficient pairing-free identity-based one-round two-party authenticated key agreement protocol with provable security, which is more suitable for real-time application environments with highly dynamic topology such as vehicular ad hoc networks than the existing identity-based two-party authenticated key agreement protocols. The proposed protocol is proven secure under the passive and active adversaries in the extended Canetti–Krawczyk model based on the Gap Diffie–Hellman assumption. The proposed protocol can capture all essential security attributes including known-session key security, perfect forward secrecy, basic impersonation resistance, key compromise impersonation resistance, unknown key share resistance, no key control, and ephemeral secrets reveal resistance. Compared with the existing identity-based two-party authenticated key agreement protocols, the proposed protocol is superior in terms of computational cost and running time while providing higher security.
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spelling doaj.art-76b374a0c02e48928d75e5060b8c74a22023-09-02T23:53:23ZengHindawi - SAGE PublishingInternational Journal of Distributed Sensor Networks1550-14772018-04-011410.1177/1550147718772545Efficient identity-based authenticated key agreement protocol with provable security for vehicular ad hoc networksLanjun Dang0Jie Xu1Xuefei Cao2Hui Li3Jie Chen4Yueyu Zhang5Xiaotong Fu6State Key Laboratory of Integrated Service Networks (ISN), Xidian University, Xi’an, ChinaSchool of Information and Control Engineering, Xi’an University of Architecture and Technology, Xi’an, ChinaState Key Laboratory of Integrated Service Networks (ISN), Xidian University, Xi’an, ChinaState Key Laboratory of Integrated Service Networks (ISN), Xidian University, Xi’an, ChinaState Key Laboratory of Integrated Service Networks (ISN), Xidian University, Xi’an, ChinaState Key Laboratory of Integrated Service Networks (ISN), Xidian University, Xi’an, ChinaState Key Laboratory of Integrated Service Networks (ISN), Xidian University, Xi’an, ChinaIn vehicular ad hoc networks, establishing a secure channel between any two vehicles is fundamental. Authenticated key agreement is a useful mechanism, which can be used to negotiate a shared key for secure data transmission between authentic vehicles in vehicular ad hoc networks. Among the existing identity-based two-party authenticated key agreement protocols without pairings, there are only a few protocols that provide provable security in strong security models such as the extended Canetti–Krawczyk model. This article presents an efficient pairing-free identity-based one-round two-party authenticated key agreement protocol with provable security, which is more suitable for real-time application environments with highly dynamic topology such as vehicular ad hoc networks than the existing identity-based two-party authenticated key agreement protocols. The proposed protocol is proven secure under the passive and active adversaries in the extended Canetti–Krawczyk model based on the Gap Diffie–Hellman assumption. The proposed protocol can capture all essential security attributes including known-session key security, perfect forward secrecy, basic impersonation resistance, key compromise impersonation resistance, unknown key share resistance, no key control, and ephemeral secrets reveal resistance. Compared with the existing identity-based two-party authenticated key agreement protocols, the proposed protocol is superior in terms of computational cost and running time while providing higher security.https://doi.org/10.1177/1550147718772545
spellingShingle Lanjun Dang
Jie Xu
Xuefei Cao
Hui Li
Jie Chen
Yueyu Zhang
Xiaotong Fu
Efficient identity-based authenticated key agreement protocol with provable security for vehicular ad hoc networks
International Journal of Distributed Sensor Networks
title Efficient identity-based authenticated key agreement protocol with provable security for vehicular ad hoc networks
title_full Efficient identity-based authenticated key agreement protocol with provable security for vehicular ad hoc networks
title_fullStr Efficient identity-based authenticated key agreement protocol with provable security for vehicular ad hoc networks
title_full_unstemmed Efficient identity-based authenticated key agreement protocol with provable security for vehicular ad hoc networks
title_short Efficient identity-based authenticated key agreement protocol with provable security for vehicular ad hoc networks
title_sort efficient identity based authenticated key agreement protocol with provable security for vehicular ad hoc networks
url https://doi.org/10.1177/1550147718772545
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