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A privacy-preserving multi-server authenticated key-agreement scheme based on Chebyshev chaotic maps

机译:基于Chebyshev混沌映射的隐私保护多服务器认证密钥协商方案。

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The paper presents a password-based authenticated key-agreement protocol for multi-server environments by using Chebyshev chaotic maps. The protocol allows a user to login to different servers via a single password. The proposed scheme has removed the weakness of multi-server authenticated key-agreement schemes, which adopt the architecture of two-level servers. After a user has finished the first login to a service providing server, the control server is not required to be online for the user's subsequent logins. Compared with the related multi-server authentication schemes, our scheme meets more security requirements, such as mutual authentication, perfect forward security, freedom of password change, scalability of login, resistance to the stolen verifier attacks, resistance to server spoofing attacks, and two-factor security. Detailed analysis shows that the proposed scheme can resist several kinds of attacks. The proposed scheme is provably secure under the CDH assumption of Chebyshev polynomials in the random oracle model. Furthermore, it offers the user and server with privacy-preserving, that is, anonymity and untraceability. Any adversary can neither figure out the identities of users or the identities of service providing servers nor link different sessions with a user or a server. Copyright (c) 2016 John Wiley & Sons, Ltd.
机译:通过使用Chebyshev混沌映射,提出了一种用于多服务器环境的基于密码的认证密钥协商协议。该协议允许用户通过一个密码登录不同的服务器。该方案消除了采用两级服务器体系结构的多服务器认证密钥协商方案的弱点。用户完成对服务提供服务器的首次登录后,对于用户的后续登录,控制服务器不需要处于联机状态。与相关的多服务器身份验证方案相比,我们的方案满足了更多的安全性要求,例如相互身份验证,完善的转发安全性,密码更改的自由度,登录的可伸缩性,抵抗被验证者的攻击,抵抗服务器欺骗的攻击以及两个。因素安全性。详细分析表明,该方案可以抵抗多种攻击。在随机预言机模型中,在Chebyshev多项式的CDH假设下,所提出的方案是可证明安全的。此外,它为用户和服务器提供隐私保护,即匿名性和不可追溯性。任何对手都无法弄清用户的身份或提供服务的服务器的身份,也无法链接与用户或服务器的不同会话。版权所有(c)2016 John Wiley&Sons,Ltd.

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