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Strongly secure identity-based authenticated key agreement protocols without bilinear pairings

机译:高度安全的基于身份的认证密钥协商协议,无需双线性配对

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摘要

In this paper, we present two strongly secure pairing-free identity-based (ID-based) twoparty authenticated key agreement (AKA) protocols achieving implicit authentication, which are proven secure in the extended Canetti-Krawczyk (eCK) model. The proposals can offer provable security against both passive and active adversaries in the random oracle model. Our schemes capture all basic desirable security properties including key compromise impersonation resilience, ephemeral secrets reveal resistance, (weak) perfect forward secrecy and master key forward secrecy etc. We show the security of one of these proposals can be reduced to the standard computational Diffie-Hellman assumption, and the security of the other relies on the gap Diffie-Hellman assumption while having a lower computational overhead. Currently, there are few pairing-free ID-based AKA protocols that are provably secure in such strong security models as the eCK model. Our schemes can provide strong security assurances and in the meanwhile achieve a good computational efficiency. Compared with previous related schemes, our protocols have advantages over them in security, efficiency or both. (C) 2016 Elsevier Inc. All rights reserved.
机译:在本文中,我们介绍了实现隐式身份验证的两个高度安全的基于配对的基于身份的无身份配对协议(AKA)协议,这些协议在扩展的Canetti-Krawczyk(eCK)模型中被证明是安全的。这些提议可以为随机预言模型中的被动和主动对手提供可证明的安全性。我们的方案捕获了所有基本的合乎需要的安全属性,包括密钥折衷模拟的弹性,短暂的秘密揭示了抵抗力,(弱)完美的前向保密性和主密钥前向保密性等。我们证明了这些建议之一的安全性可以降低到标准计算Diffie- Hellman假设以及其他方法的安全性都依赖于间隙Diffie-Hellman假设,同时具有较低的计算开销。当前,很少有基于免配对ID的AKA协议在eCK模型等强大的安全模型中可证明是安全的。我们的方案可以提供强大的安全保证,同时达到良好的计算效率。与以前的相关方案相比,我们的协议在安全性,效率或两者上均比它们具有优势。 (C)2016 Elsevier Inc.保留所有权利。

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