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首页> 外文期刊>Transportation research. Part C, Emerging Technologies >Simulation studies of information propagation in a self-organizing distributed traffic information system
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Simulation studies of information propagation in a self-organizing distributed traffic information system

机译:自组织分布式交通信息系统中信息传播的仿真研究

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摘要

This paper investigates the feasibility of a self-organizing, completely distributed traffic information system based upon vehicle-to-vehicle communication technologies. Unlike centralized traffic information systems, the proposed system does not need public infrastructure investment as a prerequisite for implementation. Due to the complexity of the proposed system, simulation is selected as the primary approach in the feasibility studies. A simulation framework is built based on an existing microscopic traffic simulation model for the simulation studies. The critical questions for building the proposed market-driven system are examined both from communication requirements and traffic engineering points of view. Traffic information propagation both in freeway and arterial networks via information exchange among IVC-equipped vehicles is tested within the simulation framework. Results on the probability of successful IVC and traffic information propagation distance obtained from the simulation studies are generated and analyzed under incident-free and incident conditions for various roadway formats and parameter combinations. Comparisons between the speed of the incident information wave and the speed of the corresponding traffic shock wave due to the incident are analyzed for different scenarios as the most crucial aspect of the information propagation as a potential foundation for application in such a decentralized traffic information system.
机译:本文研究了基于车对车通信技术的自组织,完全分布式交通信息系统的可行性。与集中式交通信息系统不同,拟议的系统不需要公共基础设施投资即可作为实施的先决条件。由于拟议系统的复杂性,在可行性研究中选择仿真作为主要方法。基于现有的微观交通仿真模型,为仿真研究建立了仿真框架。从通信需求和交通工程的角度对构建建议的市场驱动系统的关键问题进行了研究。在模拟框架内测试了通过配备IVC的车辆之间的信息交换在高速公路和干线网络中传播的交通信息。从模拟研究中获得的成功IVC概率和交通信息传播距离的结果是在各种道路格式和参数组合的无事故和事故条件下生成和分析的。针对作为信息传播的最关键方面的不同场景,分析了事件信息波的速度与相应事件引起的相应交通冲击波的速度之间的比较,作为在这种分散式交通信息系统中应用的潜在基础。

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