论文标题

Intas-相扑的Ingolstadt流量方案

InTAS -- The Ingolstadt Traffic Scenario for SUMO

论文作者

Lobo, Silas C., Neumeier, Stefan, Fernandez, Evelio M. G., Facchi, Christian

论文摘要

车辆临时网络(VANETS)预计将是迈向更安全的道路运输的下一个重要一步,支持申请以交换车辆之间的信息。为了开发该领域的新应用,考虑到所有交通情况,都需要大量的测试。但是,在现实生活中重现这些测试是不可行的,因为任何应用程序上的任何失败都会对运输系统的安全产生严重影响,并可能冒险。因此,本文介绍了INTA的概念,模型和验证,这是Ingolstadt的现实交通情况。 Intas Road拓扑精确代表Ingolstadt真实路线图。在地图中添加了建筑物,公交站和交通信号灯等元素。根据在交通信号灯上部署的实际程序模拟了二十个交通信号灯系统。考虑人口统计数据和交通信息信息,基于ActivityGen方法对交通需求进行建模。城市公共交通系统还相应地模拟了公交车及其路线。考虑到设备的最佳价值。rerouting.probability,该步骤是通过评估INTAS输出和真实流量数据来定义的。通过将24个测量点的真实流量数据与INTAS模拟结果进行比较,可以验证该方案。

Vehicular Ad Hoc Networks (VANETs) are expected to be the next big step towards safer road transport, supporting applications to exchange information between vehicles. To develop novel applications for this area a high number of tests, considering all traffic situations, are demanded. However, it is unfeasible to reproduce these tests in real life, by the fact that any failure on the applications would cause severe impacts on transport system safety and could risk human lives. Thus, this paper presents the concept, model, and validation for InTAS, a realistic traffic scenario for Ingolstadt. InTAS road topology accurately represents Ingolstadt real road map. Elements such as buildings, bus stops, and traffic lights were added to the map. Twenty traffic lights systems were simulated according to the real program deployed on the traffic lights. Traffic demand was modeled based on the activitygen method, considering demographic data and real-traffic information. The city public transport system was also simulated accordingly to bus time-tables and their routes. The simulation step was implemented considering the best value for device.rerouting.probability, which was defined by evaluating InTAS output and real traffic data. The scenario was validated by comparing real-traffic data from 24 measurement points with InTAS simulation results.

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