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String Stability Analysis of Cooperative Adaptive Cruise Control under Jamming Attacks

机译:干扰攻击下协同自适应巡航控制的弦稳定性分析

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Cooperative Adaptive Cruise Control (CACC) is considered as a key enabling technology to automatically regulate the inter-vehicle distances in a vehicle platooning while maintaining the string stability. Although the cyber and physical parts in the existing CACC systems are integrated in one control framework, the research on realistic modeling and security issues of these systems are still largely open. A good modeling of cyber characteristics and awareness of cyber attacks impact on the CACC operation leads to a better understanding of system design and defense mechanisms. In this paper, we conduct a comprehensive analysis on the vehicle string stability by considering a realistic wireless channel under a mobile reactive jamming attack. We examine the stability of the platoon under attacks by conducting extensive simulations for a wide range of realworld lead vehicle’s acceleration profiles. We utilize timedomain definition of string stability to delineate the impact of the jamming attacks on the CACC system’s functionality and string stability. We also examine the attacker’s possible locations at which it can destabilize the string.
机译:协作式自适应巡航控制(CACC)被认为是一项关键的启用技术,可在调节车辆排的同时自动调节车距,同时保持弦的稳定性。尽管现有CACC系统中的网络和物理部分都集成在一个控制框架中,但是有关这些系统的实际建模和安全性问题的研究仍处于很大的开放状态。良好的网络特征建模和网络攻击意识会影响CACC的运行,可以更好地理解系统设计和防御机制。在本文中,我们通过考虑在移动无功干扰攻击下的真实无线信道,对车串稳定性进行了全面的分析。我们通过对各种现实世界领先车辆的加速度分布图进行广泛的模拟,来检查在攻击下的排的稳定性。我们利用字符串稳定性的时域定义来描述干扰攻击对CACC系统功能和字符串稳定性的影响。我们还检查了攻击者可能使琴弦不稳定的位置。

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