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

机译:高效的基于身份的认证密钥协商协议,具有可证明的车载自组网安全性

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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.
机译:在车辆自组织网络中,在任何两辆车之间建立安全通道至关重要。认证密钥协议是一种有用的机制,可用于协商共享密钥,以在车辆自组织网络中的真实车辆之间进行安全的数据传输。在现有的基于身份的两方身份验证密钥协商协议中,没有配对的协议中,只有少数几个协议可以在强大的安全模型(如扩展的Canetti–Krawczyk模型)中提供可证明的安全性。本文提出了一种具有可证明的安全性的,基于身份的高效无配对单轮两方身份验证密钥协商协议,该协议比现有的身份验证更适合具有高度动态拓扑的实时应用环境,例如车辆自组织网络。基于两方认证的密钥协商协议。在基于Gap Diffie-Hellman假设的扩展的Canetti-Krawczyk模型中的被动和主动对手下,该协议被证明是安全的。所提出的协议可以捕获所有必要的安全属性,包括已知会话密钥安全性,完美的前向保密性,基本模拟抵抗,密钥折衷模拟抵抗,未知密钥共享抵抗,无密钥控制以及短暂的秘密揭示抵抗。与现有的基于身份的两方身份验证密钥协商协议相比,该协议在计算成本和运行时间方面均优越,同时提供了更高的安全性。

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