On the Design of Jamming-Aware Safety Applications in VANETs

Hani Alturkostani, Anup Chitrakar, R. Rinker, A. Krings
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引用次数: 5

Abstract

Connected vehicles communicate either with each other or with the fixed infrastructure using Dedicated Short Range Communication (DSRC). The communication is used by DSRC safety applications, such as forward collision warning, which are intended to reduce accidents. Since these safety applications operate in a critical infrastructure, reliability of the applications is essential. This research considers jamming as the source of a malicious act that could significantly affect reliability. Previous research has discussed jamming detection and prevention in the context of wireless networks in general, but little focus has been on Vehicular Ad Hoc Networks (VANET), which have unique characteristics. Other research discussed jamming detection in VANET, however it is not aligned with current DSRC standards. We propose a new jamming-aware algorithm for DSRC safety application design for VANET that increases reliability using jamming detection and consequent fail-safe behavior, without any alteration of existing protocols and standards. The impact of deceptive jamming on data rates and the impact of the jammer's data rate were studied using actual field measurements. Finally, we show the operation of the jamming-aware algorithm using field data.
vanet中干扰感知安全应用的设计
联网车辆通过专用短程通信(DSRC)相互通信或与固定基础设施通信。该通信用于DSRC安全应用,如前向碰撞警告,旨在减少事故。由于这些安全应用程序在关键基础设施中运行,因此应用程序的可靠性至关重要。本研究认为干扰是一种会显著影响可靠性的恶意行为的来源。以往的研究主要讨论了无线网络环境下的干扰检测和预防,但很少关注具有独特特点的车载自组网(VANET)。其他研究讨论了VANET中的干扰检测,但它与当前的DSRC标准不一致。我们提出了一种新的干扰感知算法,用于VANET的DSRC安全应用设计,该算法通过干扰检测和随后的故障安全行为来提高可靠性,而无需改变现有协议和标准。通过实际现场测量,研究了欺骗性干扰对数据速率的影响以及干扰机数据速率的影响。最后,我们用现场数据展示了干扰感知算法的操作。
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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