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An Extended Intelligent Driver Model to Describe the Impact of Cyberattacks on Connected Vehicles

机译:一个扩展的智能驱动程序模型,可以描述网络攻击对连通车辆的影响

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Connected vehicle technology has received considerable attention in recent years, due to its potential to significantly benefit in improving traffic efficiency, enhancing road safety, and reducing fuel consumption. However, vehicular wireless communication such as vehicle-to-vehicle (V2V) and vehicle-to-infrastructure (V2I) is in an open-access environment, which makes connected vehicles vulnerable to cyber threats. In our research, we first summarize some typical cyberattacks that can disturb connected vehicles and found that these cyberattacks, in essence, can alter velocity, position, and acceleration of the subject vehicle. For understanding the mechanism of traffic disturbance under cyberattacks, we proposed an improved intelligent driver model to describe traffic dynamics of the connected vehicles under cyberattacks, especially when the attack is infectious. To clearly describe the impact of cyberattacks on vehicles, a two-layer system structure is proposed, where the upper layer describes the cyber information propagation and the lower describes the traffic flow dynamics. Finally, using the new dynamical model, extensive simulation cases studies are carried out to describe traffic dynamics with potential cyberattacks for connected vehicle platoons. These simulation results further indicate the proposed model could be applied to help avoid collisions and relieve traffic congestion.
机译:由于其可能在提高交通效率,提高道路安全性和减少燃料消耗方面,近年来,近年来,近年来,近年来,近年来,近年来的电动汽车技术得到了相当大的关注。然而,诸如车辆到车辆(V2V)和基础设施(V2I)的车辆无线通信在开放式接入环境中,这使得连接的车辆容易受到网络威胁的影响。在我们的研究中,我们首先总结了一些可以打扰连通车辆的典型网络攻击,并发现这些网络图案本质上可以改变主题车辆的速度,位置和加速度。为了了解网络攻击下的交通障碍机制,我们提出了一种改进的智能驱动程序模型,以描述连通车辆的交通动态,特别是当攻击发生传染性时。为了清楚地描述Cyber​​Actack对车辆的影响,提出了一种双层系统结构,其中上层描述网络信息传播,下层描述了流量流动动态。最后,利用新的动态模型,进行了广泛的模拟案例,以描述具有连接车夹的潜在网络攻击的交通动态。这些仿真结果进一步表明了所提出的模型可以应用于帮助避免碰撞和缓解交通拥堵。

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