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首页> 外文期刊>Journal of Intelligent Transportation Systems >Modeling Dynamic Vehicle Navigation in a Self-Organizing, Peer-to-Peer, Distributed Traffic Information System
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Modeling Dynamic Vehicle Navigation in a Self-Organizing, Peer-to-Peer, Distributed Traffic Information System

机译:自组织,对等分布式交通信息系统中的动态车辆导航建模

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摘要

This article presents a simulation-based framework to model the potential benefits from dynamic vehicle on-line routing in a distributed traffic information system based upon a vehicle-to-vehicle information-sharing architecture. Within this framework, certain vehicles with specific inter-vehicle communication equipment in the traffic network are capable of autonomous traffic surveillance and peer-to-peer information sharing. Based on real-time and historical traffic information, they independently optimize their routes, forming a self-organizing traffic information overlay to the existing vehicular roadway network. In-trip rerouting decisions arising from drivers' interactions with this distributed information system are modeled according both to a rational-boundary model and to a binary-logit model under the assumption that each driver is a rational entity. A path-based microscopic traffic simulation model is developed to study on-line vehicle navigation in the distributed traffic information system, testing nonrecurrent congestion cases on two different networks representing typical roadway scenarios in daily commuting. Based on simulation study results, potential benefits both for travelers with access to the traffic information system as well as for the traffic system as a whole are demonstrated.
机译:本文提出了一种基于仿真的框架,该模型可以基于车对车信息共享体系结构对分布式交通信息系统中动态车辆在线路由的潜在利益进行建模。在此框架内,在交通网络中具有特定车辆间通信设备的某些车辆能够进行自主交通监控和对等信息共享。他们基于实时和历史交通信息,独立优化路线,形成自组织交通信息,覆盖现有的车辆行车道网络。在假设每个驾驶员都是理性实体的前提下,根据理性边界模型和二进制逻辑模型对驾驶员与该分布式信息系统交互所产生的行程中重新路由决策进行建模。开发了基于路径的微观交通仿真模型,以研究分布式交通信息系统中的在线车辆导航,在代表日常通勤的典型道路场景的两个不同网络上测试非经常性拥堵情况。根据模拟研究结果,表明了访问交通信息系统的旅行者以及整个交通系统的潜在利益。

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