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An Anonymous and Self-Verified Mobile Authentication with Authenticated Key Agreement for Large-Scale Wireless Networks

机译:大规模无线网络的带有身份验证密钥协议的匿名和自我验证的移动身份验证

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Increasing numbers of mobile users are being allowed to use wireless networks, and universal access is being promoted. In the absent of a single, trusted authentication server, it is a great challenge to ensure the inter-domain security, which makes it feasible for users to migrate into foreign domains. Thus, an authentication mechanism is needed between mobile users and foreign servers, and an authenticated key also is highly desirable to support secure communications in wireless networks. In addition, maintaining the anonymity of users is an important security requirement, such as the information about customers's behaviors. Recent research has focused on these issues and has provided definitions and some constructions. Importantly, Tang and Wu proposed an efficient mobile authentication scheme, which they called `'Efficient Mobilization Authentication Scheme" (EMAS), which enjoys both computational efficiency and communication efficiency that exceed the efficiencies of other recent mobile authentication schemes. Unfortunately, we found out that Tang and Wu's scheme does not meet the basic security requirements. Therefore, to develop a more acceptable mobile authentication scheme, we propose a self-verified mobile authentication scheme that has a novel architecture. To provide the better computation efficiency and storage efficiency, our scheme does not require of long-term secret keys on the servers.
机译:允许越来越多的移动用户使用无线网络,并且正在促进通用访问。在没有单个受信任的身份验证服务器的情况下,确保域间安全性是一个巨大的挑战,这使得用户迁移到外部域变得可行。因此,在移动用户和外部服务器之间需要一种认证机制,并且非常需要认证密钥来支持无线网络中的安全通信。此外,维护用户的匿名性是一项重要的安全要求,例如有关客户行为的信息。最近的研究集中在这些问题上,并提供了定义和一些构造。重要的是,Tang和Wu提出了一种有效的移动身份验证方案,他们将其称为“有效动员身份验证方案”(EMAS),其计算效率和通信效率均超过了其他最近的移动身份验证方案的效率。由于Tang and Wu的方案不符合基本的安全要求,因此,为了开发出更可接受的移动认证方案,我们提出了一种具有新颖架构的自验证移动认证方案,为了提供更好的计算效率和存储效率,该方案不需要服务器上的长期密钥。

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