基于物联网的多服务器环境下具有匿名三因素身份的限时动态组密钥分发方案

Chien-Lung Hsu, Tuan-Vinh Le
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引用次数: 4

摘要

第五代(5G)移动技术实现了一种新型网络,提供了高峰值数据速率、超低延迟通信和高用户密度。在支持5g的物联网(IoT)系统中,数据的存储和共享具有高效率和可靠性。随着物联网设备数量的增加,安全和隐私问题变得突出。现有的双因素身份验证机制对潜在的攻击并不安全。此外,单服务器架构不可能满足用户的需求,因为他们必须存储大量凭据。在物联网环境中,同一组的用户使用共同的组服务,组通信发挥了重要作用。在本文中,我们的工作介绍了一种基于物联网的多服务器环境的具有匿名三因素识别的限时动态组密钥分发方案。本工作的贡献如下:(1)我们引入了一个基于时间限制的动态组密钥分发方案,该方案允许服务器将动态组密钥分发给特定使用组服务的用户;(2)我们的方案提供了一个高度安全的环境,集成了密码、智能卡和生物识别的三因素认证;(3)提出了一种基于多服务器的架构,以减轻网络负载,节省开销;(4)安全性分析和性能评估结果表明,与之前的方案相比,我们的方案实现了更强的安全性,并且承担了合理的计算成本。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Time Bound Dynamic Group key Distribution Scheme with Anonymous Three-factor Identification for IoT-Based Multi-Server Environments
Fifth generation (5G) mobile technology enables a new kind of network which provides high peak data rates, ultra-low latency communication and high user density. In 5G-enabled Internet of Thing (IoT) systems, data is stored and shared with high efficiency and reliability. When the number of IoT devices is increasing, security and privacy issues become prominent. Existing two-factor authentication mechanism is not secure against potential attacks. In addition, it is not possible for single-server architecture to satisfy the needs of the users since they must store massive credentials. Group communication has played an important role in IoT environment where the users of the same groups use common group services. In this paper, our work introduces a time bound dynamic group key distribution scheme with anonymous three-factor identification for IoT-based multi-server environments. The contributions of this work are the following: (1) we introduce a time bound-based dynamic group key distribution scheme which allows the server to distribute dynamic group keys to the users for specific use of group services; (2) our scheme provides a high security environment with three-factor authentication integrating password, smart card and biometrics; (3) we propose a multi-server-based architecture to alleviate the network load and save overhead; and (4) the results of security analysis and performance evaluation indicate that our scheme achieves a stronger security, and bears a rational computation cost compared with its predecessor schemes.
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