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A provably secure dynamic ID-based authenticated key agreement framework for mobile edge computing without a trusted party

机译:一种可提供的基于安全的动态ID身份验证的Moversion Edit验证的密钥协议框架,用于移动边缘计算,没有可信政党

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摘要

Mobile Edge Computing (MEC) is an emergent paradigm that brings computation, storage, and network resources close to mobile users. It allows applications to execute near the user, which are delay-sensitive and content-aware. Since the MEC systems comprise distributed edge devices managed by self-governing people, they are more liable to security and privacy threats. Therefore, acure and efficient authentication mechanism is required for MEC. In this paper, we construct a mutual authentication and key agreement scheme without the involvement of a trusted third party for MEC, which ensures mutual authentication between a user and edge servers and generates a secure session key. This scheme achieves important security attributes such as secure communication, user anonymity in mutual authentication and session key agreement. The performance analysis of the proposed protocol indicates better efficiency. Moreover, we prove the security of the protocol in the random oracle model and simulate the protocols using AVISPA simulator. The analysis of security shows that the proposed protocol is safe against known attacks.
机译:移动边缘计算(MEC)是一种紧急范式,可带来靠近移动用户的计算,存储和网络资源。它允许应用程序在用户附近执行,这是延时敏感和内容感知的。由于MEC系统包括由自治人员管理的分布式边缘设备,因此它们更容易抵达安全和隐私威胁。因此,MEC需要识别和有效的认证机制。在本文中,我们构建了一个相互认证和关键协议方案,而不会参与MEC,这确保了用户和边缘服务器之间的相互认证,并生成安全会话密钥。该方案实现了重要的安全属性,如安全通信,相互认证和会话密钥协议中的用户匿名。建议方案的性能分析表明了更好的效率。此外,我们在随机Oracle模型中证明了协议的安全性,并使用Avispa Simulator模拟协议。安全性分析表明,拟议的协议对已知攻击是安全的。

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