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Efficient pairing-free, certificateless two-party authenticated key agreement protocol for grid computing

机译:高效的免配对,无证书的两方身份验证密钥协议,用于网格计算

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The most prevalent grid security standard, grid security infrastructure uses an authentication protocol based on public key infrastructure (PKI). Certificateless public key cryptography (CL-PKC) overcomes PKI certificate management problems and is well aligned with grid computing demands. Security and efficiency are the main grid authentication protocol objectives. Practical, efficient CL-PKC-based authentication protocols for real grid environments is widely acknowledged as a challenging issue. Unfortunately, certificateless authenticated key agreement protocols rely on bilinear pairings, which are extremely computational expensive. In this paper, we present a novel pairing-free certificateless two-party authenticated grid key agreement (GPC-AKA) protocol, providing a lighter weight key management approach for grid users. We then propose the first practical GPC-AKA implementation as a proof of concept. We also compare the efficiency of GPC-AKA to other proposed work in the literature.
机译:网格安全基础结构是最流行的网格安全标准,它使用基于公钥基础结构(PKI)的身份验证协议。无证书公钥加密(CL-PKC)克服了PKI证书管理问题,并与网格计算需求很好地吻合。安全性和效率是网格认证协议的主要目标。在实际的网格环境中,实用,高效的基于CL-PKC的身份验证协议被公认为具有挑战性的问题。不幸的是,无证书的认证密钥协商协议依赖于双线性配对,这在计算上非常昂贵。在本文中,我们提出了一种新颖的免配对的无证书两方身份验证网格密钥协议(GPC-AKA)协议,为网格用户提供了一种更轻量级的密钥管理方法。然后,我们提出了第一个实用的GPC-AKA实施方案,作为概念证明。我们还将GPC-AKA的效率与文献中其他拟议的工作进行了比较。

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