Provable Secure Pairing-Free Certificate-Less Authenticated Key Agreement Protocol

A. Farouk, M. Fouad
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Abstract

Security and efficiency are the main grid authentication protocols objectives. Practical efficient certificate-less public key cryptography-based authentication protocol is widely acknowledged as a challenging issue in grid computing environment. Unfortunately, certificate-less authenticated key agreement protocols rely on bilinear pairing that is extremely computational expensive. A recently published protocol claims meeting some attacks, however, there are some shortcomings in such a protocol. In this paper, such a competing protocol is mathematically criticized. Then, a secure and efficient grid pairing-free certificate-less two-party authenticated key agreement protocol is proposed for grid computing. Finally, the proposed protocol is mathematically proved as secure and efficient in the Lippold model, a very strong security model, under the gap Diffie-Hellman assumption.
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可证明的安全无配对无证书认证密钥协议
安全性和效率是网格身份验证协议的主要目标。在网格计算环境下,高效实用的无证书公钥加密认证协议是一个具有挑战性的问题。不幸的是,不需要证书的身份验证密钥协议依赖于双线性配对,计算成本非常高。最近发布的一个协议声称可以应对一些攻击,然而,这种协议存在一些缺点。本文对这种竞争协议进行了数学上的批判。在此基础上,提出了一种安全高效的网格无配对、无证书的双方认证密钥协议。最后,在间隙Diffie-Hellman假设下,用数学方法证明了该协议在Lippold模型(一个非常强的安全模型)下是安全有效的。
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