Wi-Fi车载通信的安全性:隧道场景的现场试验

S. Soderi, Harri Viittala, Jani Saloranta, M. Hämäläinen, J. Iinatti, A. Gurtov
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引用次数: 4

摘要

无线通信越来越多地被选择作为车载网络的有线替代。当无线技术实现安全关键应用时,需要加密对策。本文描述了在真实隧道场景中安全对车内通信的影响,例如,对于城市交通或矿山车辆,为了维护系统安全而强制使用安全措施。测量活动在一个运动滑雪隧道中进行,使用商用现货(COTS) Wi-Fi模块。我们的目标是考虑视距(LOS)和非视距(NLOS)场景,了解开销对隧道安全性的影响。此外,该研究还比较了不同的安全解决方案,以评估鲜为人知的协议。这些现场试验表明,在没有中继器的NLOS中,无线安全在300米以内是可行的。最后,通过实验验证了主机身份协议在单独使用或与其他安全解决方案结合使用时的有效性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Security of Wi-Fi on-board intra-vehicular communication: Field trials of tunnel scenario
Wireless communications are increasingly-often selected as a cable replacement for on-board vehicular networks. When a wireless technology implements safety critical application, cryptographic countermeasures are required. This paper describes the impact of security on intra-vehicular communication in a real tunnel scenario, e.g. for urban transit or mining vehicles where the usage of security is mandatory in order to maintain the system safety. The measurement campaign was carried out in a sport ski-tunnel using commercial off-the-shelf (COTS) Wi-Fi modules. The objective was to understand the impact of overhead on security in a tunnel considering line-of-sight (LOS) and non-LOS (NLOS) scenarios. In addition, the study compared different solutions for security to evaluating lesser known protocols. These field trials showed that wireless security is feasible up to 300 m in NLOS without repeaters. Finally, the experiment presented confirms the effectiveness of the Host Identity Protocol when used as standalone or in combination with other security solution.
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