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A security-embedded infrastructure for Tele-Traffic Speed Control

机译:电信速度控制的嵌入式安全基础架构

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In this paper we introduce a novel approach, relying on intelligent engineering, whereby the maximum speed limit at which vehicles on the road can cruise is controlled from some central or distributed facility. The system, as designed, leverages the use of the ubiquitous cellular infrastructure to cut down the costs involved that would otherwise accrue as a result of the need to build a dedicated traffic control system.rnIn the new system maximum speed limits are transmitted from a Central Control Facility (CCF) to all stretches of roads and highways dispersed across urban areas in a highly dynamic manner. The system uses information arriving via a dynamic feedback system on prevailing weather conditions, road conditions, and bulk of traffic, amongst others, before it would broadcast maximum speed limit information to various destinations. When deployed in its final release, this will be done using a highly automated system with little human intervention.rnThe work presented in this paper elaborates the TTC Network Design and RSU Network Distribution for the Tele-Traffic Speed Control System, to remotely manage, enforce, and control the maximum speed limit allowed on road stretches in rural and urban areas for different vehicle categories.rnThe new system has been deployed successfully in a laboratory controlled environment on three vehicle categories; one category representing passenger vehicles, another buses and commuter transport, while the third representing trucks and freight traffic. It is expected that when the system is fully deployed on the wireless infrastructure, speed-related traffic accidents will witness a drop by more than 65-70% according to known accident statistics.
机译:在本文中,我们介绍了一种依靠智能工程的新颖方法,该方法可通过中央或分布式设施来控制道路上车辆行驶的最大速度限制。按照设计,该系统利用了无处不在的蜂窝基础设施的使用,以减少所涉及的成本,而这些成本原本是由于需要建立专用的交通控制系统而产生的。在新系统中,最大速度限制是从中央传输的。控制设施(CCF),以高度动态的方式分布在遍布城市地区的所有道路和高速公路。在将最大速度限制信息广播到各个目的地之前,该系统使用通过动态反馈系统到达的有关主要天气状况,道路状况和大量交通等信息。在最终版本中部署时,将使用高度自动化的系统来完成,而无需人工干预。rn本文中的工作阐述了远程交通速度控制系统的TTC网络设计和RSU网络分布,以远程管理,执行,并控制不同车辆类别在农村和城市地区道路上允许的最大速度限制。rn新系统已成功地在实验室控制的环境中部署了三种车辆类别;一类代表乘用车,另一类代表公共汽车和通勤运输,而第三类代表卡车和货运。根据已知的事故统计数据,预计将系统完全部署在无线基础架构上后,与速度相关的交通事故将下降65-70%以上。

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