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Blockchain-Based Dynamic Key Management for Heterogeneous Intelligent Transportation Systems

机译:基于区块链的异构智能交通系统动态密钥管理

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摘要

As modern vehicle and communication technologies advanced apace, people begin to believe that the Intelligent Transportation System (ITS) would be achievable in one decade. ITS introduces information technology to the transportation infrastructures and aims to improve road safety and traffic efficiency. However, security is still a main concern in vehicular communication systems (VCSs). This can be addressed through secured group broadcast. Therefore, secure key management schemes are considered as a critical technique for network security. In this paper, we propose a framework for providing secure key management within the heterogeneous network. The security managers (SMs) play a key role in the framework by capturing the vehicle departure information, encapsulating block to transport keys and then executing rekeying to vehicles within the same security domain. The first part of this framework is a novel network topology based on a decentralized blockchain structure. The blockchain concept is proposed to simplify the distributed key management in heterogeneous VCS domains. The second part of the framework uses the dynamic transaction collection period to further reduce the key transfer time during vehicles handover. Extensive simulations and analysis show the effectiveness and efficiency of the proposed framework, in which the blockchain structure performs better in term of key transfer time than the structure with a central manager, while the dynamic scheme allows SMs to flexibly fit various traffic levels.
机译:随着现代车辆和通信技术的迅速发展,人们开始相信智能交通系统(ITS)将在十年内实现。 ITS将信息技术引入交通基础设施,旨在改善道路安全和交通效率。但是,安全性仍然是车辆通信系统(VCS)中的主要问题。这可以通过安全的组广播解决。因此,安全密钥管理方案被认为是网络安全的关键技术。在本文中,我们提出了一个用于在异构网络中提供安全密钥管理的框架。安全管理器(SM)在框架中起关键作用,方法是捕获车辆离场信息,封装块以传输密钥,然后对同一安全域中的车辆执行重新密钥化。该框架的第一部分是基于分散式区块链结构的新型网络拓扑。提出了区块链概念以简化异构VCS域中的分布式密钥管理。框架的第二部分使用动态交易收集周期来进一步减少车辆交接期间的密钥转移时间。大量的仿真和分析显示了所提出框架的有效性和效率,其中在密钥传输时间方面,区块链结构比具有中央管理器的结构表现更好,而动态方案允许SM灵活地适应各种流量水平。

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