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A Safety and Security Architecture for Reducing Accidents in Intelligent Transportation Systems

机译:减少智能交通系统事故的安全保障体系结构

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The Internet of Things (IoT) technology is transforming the world into Smart Cities, which have a huge impact on future societal lifestyle, economy and business. Intelligent Transportation Systems (ITS), especially IoT-enabled Electric Vehicles (EVs), are anticipated to be an integral part of future Smart Cities. Assuring ITS safety and security is critical to the success of Smart Cities because human lives are at stake. The state-of-the-art understanding of this matter is very superficial because there are many new problems that have yet to be investigated. For example, the cyber-physical nature of ITS requires considering human-in-the-loop (i.e., drivers and pedestrians) and imposes many new challenges. In this paper, we systematically explore the threat model against ITS safety and security (e.g., malfunctions of connected EVs/transportation infrastructures, driver misbehavior and unexpected medical conditions, and cyber attacks). Then, we present a novel and systematic ITS safety and security architecture, which aims to reduce accidents caused or amplified by a range of threats. The architecture has appealing features: (i) it is centered at proactive cyber-physical-human defense; (ii) it facilitates the detection of early-warning signals of accidents; (iii) it automates effective defense against a range of threats.
机译:事物互联网(物联网)技术正在转变为智能城市,对未来的社会生活方式,经济和业务产生巨大影响。智能交通系统(其),尤其是启用了IOT的电动车(EVS),预计将成为未来智能城市的一个组成部分。确保其安全性和安全对智能城市的成功至关重要,因为人类的生命是有利的。最先进的理解这一问题非常肤浅,因为还有许多尚未调查的新问题。例如,其需要考虑循环(即司机和行人)的网络物理性质,并强加了许多新的挑战。在本文中,我们系统地探索了其安全性和安全性的威胁模型(例如,连接的EVS /运输基础设施的故障,驾驶员不当行为和意外的医疗条件以及网络攻击)。然后,我们提出了一种新颖和系统的安全和安全架构,旨在减少一系列威胁引起或放大的事故。该架构具有吸引力的特点:(i)它以积极主动的网络实物 - 人体防御为中心; (ii)它有助于检测事故的预警信号; (iii)它可以自动防范一系列威胁。

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