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首页> 外文期刊>International Journal of Vehicular Technology >Real-Time Communication Support for Cooperative, Infrastructure-Based Traffic Safety Applications
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Real-Time Communication Support for Cooperative, Infrastructure-Based Traffic Safety Applications

机译:针对基于基础设施的协作交通安全应用的实时通信支持

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The implementation of ITS (Intelligent Transport Systems) services offers great potential to improve the level of safety, efficiency and comfort on our roads. Although cooperative traffic safety applications rely heavily on the support for real-time communication, the Medium Access Control (MAC) mechanism proposed for the upcoming IEEE 802.11p standard, intended for ITS applications, does not offer deterministic real-time support, that is, the access delay to the common radio channel is not upper bounded. To address this problem, we present a framework for a vehicle-to-infrastructure-based (V2I) communication solution extending IEEE 802.11p by introducing a collision-free MAC phase assigning each vehicle an individual priority based on its geographical position, its proximity to potential hazards and the overall road traffic density. Our solution is able to guarantee the timely treatment of safety-critical data, while minimizing the required length of this real-time MAC phase and freeing bandwidth for best-effort services (targeting improved driving comfort and traffic efficiency). Furthermore, we target fast connection setup, associating a passing vehicle to an RSU (Road Side Unit), and proactive handover between widely spaced RSUs. Our real-time MAC concept is evaluated analytically and by simulation based on a realistic task set from a V2I highway merge assistance scenario.
机译:ITS(智能运输系统)服务的实施为提高我们道路的安全性,效率和舒适性提供了巨大的潜力。尽管合作交通安全应用严重依赖于对实时通信的支持,但针对即将到来的IEEE 802.11p标准(针对ITS应用)提议的媒体访问控制(MAC)机制并未提供确定性的实时支持,也就是说,对公共无线电信道的访问延迟不是上限。为了解决这个问题,我们提出了一种基于车辆到基础设施(V2I)的通信解决方案的框架,该解决方案通过引入无碰撞MAC阶段来扩展IEEE 802.11p,该阶段基于每辆车辆的地理位置,与车辆的接近程度为其分配优先级潜在危害和总体道路交通密度。我们的解决方案能够确保及时处理对安全至关重要的数据,同时最大程度地缩短了实时MAC阶段所需的时间,并释放了带宽以提供尽力而为的服务(旨在提高驾驶舒适性和交通效率)。此外,我们的目标是快速建立连接,将经过的车辆与RSU(路侧单元)相关联,并在间距较大的RSU之间进行主动切换。我们的实时MAC概念是通过基于V2I高速公路合并辅助场景中的实际任务集进行分析和仿真评估后得出的。

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