A dynamic group key agreement scheme for UAV networks based on blockchain

IF 3 3区 计算机科学 Q2 COMPUTER SCIENCE, INFORMATION SYSTEMS
Jie Zhou, Ming Luo, Lixin Song, Jinlin Hu
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引用次数: 0

Abstract

In mobile ad hoc networks (MANETs), group communication is an important communication mode, and group key agreement technology is the key to ensure the security of group communication. Due to the influence of node movement, topology change and network congestion in MANETs, the traditional group key agreement technology has many security and performance problems, such as node authentication, access control, data integrity, topology maintenance, routing protocol and so on. Therefore, we propose a certificateless dynamic group key protocol scheme based on blockchain, which can be used for cluster communication in unmanned aerial vehicle (UAV). In our scheme, blockchain technology is used to realize the agreement of group keys, which protects privacy and ensures the transparency of the agreement process. All nodes can verify the generation process of the group key through the information recorded in the blockchain. Meanwhile, the consensus algorithm of blockchain can ensure that the process of generating group keys is fair and there is no interference from malicious nodes. In addition, we propose a certificateless authentication protocol, which solves the problems of key escrow and batch authentication in traditional group key agreement technology. We have made formal security analysis and performance analysis, and the results show that this scheme is more secure and efficient than the existing certificateless group key protocol. This scheme can solve the problems existing in traditional group key agreement technology, such as key leakage and centralized management, and realize secure access control and key agreement mechanism. Therefore, this scheme is a safe and efficient solution, which can be effectively applied to the communication security of UAV network.

一种基于区块链的无人机网络动态组密钥协商方案
在移动自组织网络中,群组通信是一种重要的通信方式,而群组密钥协商技术是保证群组通信安全的关键。由于MANET中节点移动、拓扑变化和网络拥塞的影响,传统的组密钥协议技术存在许多安全和性能问题,如节点认证、访问控制、数据完整性、拓扑维护、路由协议等。因此,我们提出了一种基于区块链的无证书动态组密钥协议方案,其可用于无人机(UAV)中的集群通信。在我们的方案中,使用区块链技术实现了组密钥的协议,保护了隐私,确保了协议过程的透明度。所有节点都可以通过区块链中记录的信息来验证组密钥的生成过程。同时,区块链的共识算法可以确保生成组密钥的过程是公平的,不受恶意节点的干扰。此外,我们提出了一种无证书认证协议,解决了传统的组密钥协商技术中的密钥托管和批量认证问题。我们进行了形式化的安全分析和性能分析,结果表明该方案比现有的无证书组密钥协议更安全、更高效。该方案可以解决传统组密钥协商技术中存在的密钥泄漏、集中管理等问题,实现安全的访问控制和密钥协商机制。因此,该方案是一种安全高效的解决方案,可以有效地应用于无人机网络的通信安全。
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来源期刊
Pervasive and Mobile Computing
Pervasive and Mobile Computing COMPUTER SCIENCE, INFORMATION SYSTEMS-TELECOMMUNICATIONS
CiteScore
7.70
自引率
2.30%
发文量
80
审稿时长
68 days
期刊介绍: As envisioned by Mark Weiser as early as 1991, pervasive computing systems and services have truly become integral parts of our daily lives. Tremendous developments in a multitude of technologies ranging from personalized and embedded smart devices (e.g., smartphones, sensors, wearables, IoTs, etc.) to ubiquitous connectivity, via a variety of wireless mobile communications and cognitive networking infrastructures, to advanced computing techniques (including edge, fog and cloud) and user-friendly middleware services and platforms have significantly contributed to the unprecedented advances in pervasive and mobile computing. Cutting-edge applications and paradigms have evolved, such as cyber-physical systems and smart environments (e.g., smart city, smart energy, smart transportation, smart healthcare, etc.) that also involve human in the loop through social interactions and participatory and/or mobile crowd sensing, for example. The goal of pervasive computing systems is to improve human experience and quality of life, without explicit awareness of the underlying communications and computing technologies. The Pervasive and Mobile Computing Journal (PMC) is a high-impact, peer-reviewed technical journal that publishes high-quality scientific articles spanning theory and practice, and covering all aspects of pervasive and mobile computing and systems.
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