Security vulnerabilities of IEEE 802.11p and visible light communication based platoon

Seyhan Uçar, S. Ergen, Öznur Özkasap
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引用次数: 38

Abstract

Technology brings autonomous vehicles into the reality where vehicles become capable of cruising themselves. A vehicular platoon contains autonomous vehicles organized into groups with close proximity. It is envisioned that with the increased demand for autonomous vehicles, platoons would be the part of our lives in near future. From this perspective, vehicular platoon control using current dominant IEEE 802.11p (DSRC) is an active research field. However, DSRC suffers from problems of performance degradation due to congestion, the scarcity of radio-frequency (RF) and security. Visible Light Communication (VLC), on the other hand, is a promising complementary technology with the potential to address DSRC problems. In this paper, we investigate the security vulnerabilities of hybrid DSRC-VLC platoon in the presence of outside attackers. We develop a simulation platform to realize the hybrid platoon. We demonstrate that although VLC limits the effect of adversaries, hybrid architectures still suffer from the packet falsification and replay attacks.
基于排的IEEE 802.11p和可见光通信的安全漏洞
技术将自动驾驶汽车带入现实,汽车可以自行巡航。车辆排包含自动驾驶车辆,它们被组织成距离很近的组。可以预见,随着对自动驾驶汽车需求的增加,车队将在不久的将来成为我们生活的一部分。从这个角度来看,使用当前主流IEEE 802.11p (DSRC)的车辆排控制是一个活跃的研究领域。然而,由于拥塞、射频(RF)的稀缺性和安全性,DSRC遭受性能下降的问题。另一方面,可见光通信(VLC)是一种有潜力解决DSRC问题的有前途的补充技术。本文研究了DSRC-VLC混合排在外部攻击者存在下的安全漏洞。我们开发了一个仿真平台来实现混合排。我们证明,尽管VLC限制了对手的影响,但混合架构仍然遭受数据包伪造和重放攻击。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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