The impact of jamming on threshold-based agreement in VANET

Hani Alturkostani, A. Krings
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引用次数: 6

Abstract

In Intelligent Transportation Systems (ITS), Dedicated Short Range Communication (DSRC) enables communication among vehicles (V2V) and vehicles to infrastructure (V2I). ITS safety applications are designed to increase road safety and to reduce accidents. The reliability of DSRC-based ITS safety applications is essential. Thus, improving resiliency against faults, and enhancing reliability, are primary goals. Research has shown that threshold-based agreement methods effectively reduce the impact of value faults through validating events, by receiving the Basic Safety Message (BSM) from multiple sources. Whereas previous work considered value faults, e.g., injection, data fabrication and sensor manipulation, it does not address the impact of omission faults and jamming. This paper investigates the impact of jamming on threshold-based agreement in Vehicular Ad Hoc Networks (VANET). It is shown that jamming drastically reduces the correctness of the voted upon decision. We consider the Emergency Electronic Brake Lights (EEBL) safety application, and demonstrate how jammer position and power affect the correctness of the decision. Furthermore we show how the number of vehicles impacts the correctness of decisions in the presence of jamming. Finally a new adaptive threshold algorithm is introduced that improves the resilience against jamming attacks compared to algorithms presented in previous research.
干扰对VANET中基于阈值协议的影响
在智能交通系统(ITS)中,专用短程通信(DSRC)实现了车辆之间(V2V)和车辆与基础设施(V2I)的通信。智能交通系统的安全应用旨在提高道路安全和减少事故。基于dsrc的ITS安全应用的可靠性至关重要。因此,提高对故障的弹性和增强可靠性是主要目标。研究表明,基于阈值的协议方法通过从多个源接收基本安全消息(Basic Safety Message, BSM)来验证事件,有效地降低了值错误的影响。虽然以前的工作考虑了数值故障,例如注入、数据制造和传感器操作,但它没有解决遗漏故障和干扰的影响。研究了干扰对车载自组织网络(VANET)中基于阈值协议的影响。结果表明,干扰极大地降低了投票决策的正确性。我们考虑了紧急电子刹车灯(EEBL)的安全应用,并论证了干扰器的位置和功率对决策正确性的影响。此外,我们还展示了在存在干扰的情况下,车辆数量如何影响决策的正确性。最后介绍了一种新的自适应阈值算法,与以往的研究算法相比,该算法提高了抗干扰能力。
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