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Understanding Vehicle-to-Vehicle IEEE 802.11p Beaconing Performance in Real-World Highway Scenarios

机译:了解现实世界高速公路场景中的车对车IEEE 802.11p信标性能

摘要

Periodic exchange of situational information (beacons) is at the basis of most active safety applications in vehicular environments. Despite its fundamental role in raising the level of "situational awareness" onboard vehicles, very little is known to date on beaconing performance in a real vehicular environment. This paper analyzes the results of two measurement campaigns that have been designed with the purpose of disclosing beaconing performance in a variety of vehicular links, for what concerns vehicle configuration (tall/short), line-of-sight conditions (LOS/NLOS), as well as single-hop or two-hop propagation of the information reported in the beacons. For the first time, beaconing performance is characterized in terms of not only the packet (beacon) delivery rate (PDR), but also in terms of the packet (beacon) inter-reception (PIR) time. The latter metric has been suggested in the literature as more accurately measuring the level of "situation awareness" onboard vehicles than the traditional PDR metric. This paper also presents a simulation-based analysis aimed at estimating the benefit of multi-hop propagation of situational information beyond the second hop of communication. The analysis of the data collected in the measurement campaigns as well as the simulation-based analysis disclose a number of interesting insights which might prove useful in the design of active safety applications. Finally, another major contribution of this paper is promoting the Gilbert-Elliot model, previously proposed to model bit-error bursts in packet switched networks, as a very accurate model of beacon reception behavior observed in real-world scenarios.
机译:定期交换态势信息(信标)是车辆环境中大多数主动安全应用程序的基础。尽管其在提高车载“境况意识”水平方面起着根本性的作用,但迄今为止在真正的车辆环境中对信标性能的了解还很少。本文分析了旨在衡量各种车辆链路信标性能的两个测量活动的结果,这些活动涉及车辆配置(高/短),视线条件(LOS / NLOS),以及信标中报告的信息的单跳或两跳传播。信标性能首次不仅通过数据包(信标)传送速率(PDR)来表征,而且还通过数据包(信标)间接收(PIR)时间来表征。后一种度量标准在文献中已被建议为比传统PDR度量标准更准确地测量车载“位置感知”水平。本文还提出了一种基于仿真的分析,旨在评估情景信息在通信的第二跳以外的多跳传播的好处。对测量活动中收集到的数据的分析以及基于模拟的分析揭示了许多有趣的见解,这些见解可用于主动安全应用的设计。最后,本文的另一个主要贡献是推广了吉尔伯特-艾略特模型(Gilbert-Elliot model),该模型先前被提议用于对分组交换网络中的误码突发进行建模,作为在实际场景中观察到的信标接收行为的非常准确的模型。

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