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An efficient 3D Diffie-Hellman based Two-Server password-only authenticated key exchange

机译:基于高效3D Diffie-Hellman的两服务器仅口令认证密钥交换

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Abstract: In emerging technological world, security potentially remains as a highest challenge in the large-scale distributed systems, as it is suffering extensively with adversaria! attacks due to insufficient mutual authentication. In order to address this, a state-of-art tetrahedron (3D) based two-server Password Authenticated and Key Exchange (PAKE) protocol has been formulated with formal proof of security by incorporating the elementary properties of pla?e geometry. The main intention of this work is, obtaining a password from the stored credentials must be infeasible when both the servers compromised together. At the outset to realize these goals, in this paper, the properties of the tetrahedron are utilized along with Diffie-Hellman (DH) key exchange algorithm to withstand against malicious attacks. A significant aspect of the proposed 3D PAKE protocol is, client side complexity has been reduced to a greater extent in terms of computation and communication. Both theoretically and practically, 3D PAKE protocol is the first demonstrable secure two-server PAKE protocol that breaks the assumptions of the Yang et al. and Yi et al. protocol that the two servers must not compromise together. Computational complexity, communication complexity, security key principies, best of all attacks happening dubiously are considered as the evaluation parameters to compare the performance of the proposed 3D PAKE protocol.
机译:摘要:在新兴的技术世界中,安全性仍然是大规模分布式系统中的最高挑战,因为它正遭受着广泛的对抗!相互身份验证不足引起的攻击。为了解决这个问题,已经通过结合平面几何的基本属性,制定了基于最新四面体(3D)的两服务器密码验证和密钥交换(PAKE)协议,并通过形式化的安全性证明。这项工作的主要目的是,当两台服务器一起受损时,从存储的凭证中获取密码必须是不可行的。为了实现这些目标,本文首先利用四面体的属性以及Diffie-Hellman(DH)密钥交换算法来抵御恶意攻击。提出的3D PAKE协议的一个重要方面是,在计算和通信方面,客户端的复杂性已在很大程度上降低了。在理论上和实践上,3D PAKE协议都是第一个可证明的安全两服务器PAKE协议,它打破了Yang等人的假设。和Yi等。两台服务器不得同时妥协的协议。计算复杂性,通信复杂性,安全密钥原则,可疑发生的所有攻击中的最佳攻击均被视为评估参数,用于比较建议的3D PAKE协议的性能。

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