延迟敏感和拥塞感知交通信息系统的自适应信标

C. Sommer, O. Tonguz, F. Dressler
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引用次数: 103

摘要

我们提出了自适应交通信标(ATB),这是一种完全分散的汽车到x协议,围绕延迟敏感性和拥塞感知的中心思想构建。从之前的研究结果中,我们看到集中式解决方案、vanet和基于广播的方法各自显示出优缺点,这取决于流量密度、渗透率、网络利用率和其他参数;因此,智能交通系统需要针对特定的设置进行调整。为了克服这一限制,我们开发了一种基于广播的解决方案,该解决方案经过精心设计,只使用无线信道的剩余容量。因此,它不会影响使用同一无线网络的其他应用程序。ATB在两个方面具有自适应性:一是根据信道质量和本地知识库中消息的重要性动态地调整信标间隔;二是协议可以动态地利用可用的基础设施元素。仿真实验表明,ATB在广泛的设置中表现良好。它保持一个非拥塞的无线信道,以防止在数据交换期间发生冲突。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Adaptive beaconing for delay-sensitive and congestion-aware traffic information systems
We present Adaptive Traffic Beacon (ATB), a fully-decentralized car-to-X protocol built around the central ideas of delay sensitivity and congestion awareness. From previous research findings, we see that centralized solutions, VANETs, and broadcasting based approaches each show benefits and drawbacks depending on traffic density, penetration, network utilization, and other parameters; intelligent transportation systems are therefore tuned for specific settings. In order to overcome this limitation, we developed a broadcast-based solution that has been designed to carefully use only the remaining capacity of the wireless channel. Thus, it will not influence other applications using the same radio network. ATB is adaptive in two dimensions: First, the beacon interval is adapted dynamically according to the channel quality and the importance of messages in the local knowledge base, and, secondly, the protocol can dynamically make use of available infrastructure elements. Simulation experiments demonstrate that ATB performs well in a broad range of settings. It maintains a non-congested wireless channel to prevent collisions during the data exchange.
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