基于无线传感器网络的智能交通控制实验装置

N. Abdelsamee, Hanoof Alsulaimani, N. Albatati
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引用次数: 1

摘要

交通堵塞是当今需要考虑的主要问题之一。基本上,车辆交通在道路的交叉路口交叉,并由交通信号控制。交通标志需要良好的协调和控制,以确保车辆交通的畅通和安全,从而最大限度地减少交通信号灯长时间延迟造成的交通堵塞的可能性。本研究的主要目的是利用无线传感器网络(WSN)设计一种智能交通监控系统。WSN是一种支持物理系统大规模监控的新兴无线网络技术。本文提出了一种基于WSN的低成本智能交通监控方案。提出的系统是一个示范的四个路口与四个单向车道。每个车道都配备了一个超声波无线传感器节点,负责监控该车道的交通负荷。所有车道记录的交通负荷将通过一个基站进一步处理,该基站负责打开重负荷车道的交通标志。我们提出的无线传感器网络的硬件实现已经使用Arduino微控制器和ZigBee收发器完成。无线通信基于IEEE 802.15.4标准,功耗极低。与目前传统的交通监控模式相比,该系统具有成本更低、易于部署、易于维护、覆盖范围更广等优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental Setup of Smart Traffic Control using Wireless Sensor Networks
Traffic jam is one of the major concerns to be considered nowadays. Basically, Vehicular traffic intersects at the junctions of the road and is controlled by the traffic signals. Traffic signs need a good coordination and control to ensure the smooth and safe flow of the vehicular traffic which can minimize the possibilities of traffic jams, caused by long delays of the traffic lights. The main objective of this study is to design a smart traffic monitoring system using wireless sensor network (WSN). WSN is an emerging wireless networking technology that support large scale monitoring of physical system. In this paper we propose a low cost solution for smart traffic monitoring using WSN. The proposed system is a demonstration of four junctions with Four unidirectional lanes. Each Lane is equipped with an ultrasonic wireless sensor node that is responsible for monitoring the traffic load in that lane. The recorded traffic loads from all lanes are further processed via a base station that is responsible for opening the traffic sign for Heavy loaded traffic lane. The hardware implementation of our proposed WSN has been done using Arduino microcontrollers and ZigBee transceivers. The wireless communication is based on IEEE 802.15.4 due its ultra-low power consumption. Compared to the current traditional traffic monitoring paradigms, the proposed system has more lower cost, easy-to-deploy, easy to maintain, and higher coverage area.
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