基于密度的应急车辆智能感知交通控制系统

Dr. M. Varadharaj
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引用次数: 7

摘要

目前的交通灯控制器(TLC)主要依靠单片机和微芯片实现。这些TLC有限制,因为它们依赖于预描绘的齿轮,这是关于程序的填充,没有连续调整的多功能性。由于时间跨度固定,橙色和红色信号的停留时间更长,车辆消耗的燃料也更多。为了使红绿灯的领导作用逐步发挥作用,我们提出了“基于密度的应急车辆智能感知交通控制系统”。它主要是用磁传感器来模拟真实环境,用红外模块来模拟模型。我们项目的主要目标是通过有效利用绿色信号时间来高效地疏导交通。在该系统中,通过保留在道路一侧的磁传感器的数量来获得特定车道上的车辆密度,磁传感器产生关于交通密度的输出信号。由此产生的输出信号由ARM微控制器进一步处理,并根据磁传感器获得的密度,由微控制器改变绿色信号的倒计时时间,从而防止所有车辆经过后绿色信号的使用。除了这个系统之外,我们的系统还可以感知救护车等紧急车辆,通过检测救护车或其他紧急车辆发射的射频信号,利用路边的射频接收器来检测信号,并通过在道路的四面都放上红色信号来停止所有车辆,并放上特殊的“绿色吉普车信号”让紧急车辆通过,因此我们的系统为紧急车辆提供了道路。它还可以借助射频发射器和接收器对应急车辆进行优先排序。当信令板接收到射频信号后,将相应的车道打开,为应急车辆扫清道路。DSS还通过在路口检查车辆排放来分析污染水平。当任意两条车道的优先级发生冲突时,系统会考虑到污染水平,为它们轮流提供信号。气体传感器安装在信号板上,有助于计算污染物水平。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Density Based Traffic Control System with Smart Sensing Of Emergency Vehicles
Present Traffic Light Controller (TLC) relies upon micro-controller and microchip. These TLC have restrictions as they are depend on pre-portrayed gear, which is filling in with respect  to the program that doesn't have the versatility of adjustment on continuous reason. Owing to fixed time spans, orange and red signal’s holding up time is more and vehicle uses more fuel. To make traffic light leadership progressively beneficial, we abuse the advancement of new procedure called as “Density based traffic control system with smart sensing of emergency vehicles”. It is constructed mainly by using Magnetic Sensors for real world environment and by using IR modules for Model. The main objective of our project is to clear traffic efficiently by effective usage of the green signal time. In this system the density of the vehicle in a particular lane is obtained by the number of magnetic sensors kept in the road side which produces output signal with respect to the density of the traffic. Thus produced output signal is further processed by ARM microcontroller and according to the density obtained by the magnetic sensors the countdown time of the green signal is varied by the microcontroller and hence the usage of green signal even after all the vehicle pass by are prevented. In addition to this system our system also senses the emergency vehicle like ambulance that approaches the signal by detecting the RF signal transmitted by the Ambulance or other emergency vehicle with the help of RF receivers that kept at the road side and halts all the vehicles by putting red signal for all the four sides of road and puts special ‘green jeep signal’ for the emergency vehicle to pass by hence our system provide way for emergency vehicle. It can also prioritize the emergency vehicle with the help of RF transmitter and receiver. As the signalling board receives the RF signal, it turns the Corresponding lane ON, thus clearing the route for the emergency vehicle. DSS also analyses the pollution levels by placing a check over the vehicle emissions at the junctions. When the priorities of any two lanes clash, pollution levels are taken into account to provide the signals for them in turns. The gas sensors are fitted onto the signalling boards which help in calculating the pollutant levels.
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