设计和建造密度控制交通灯系统

A. S. A, Okeke J. C, Ayanbisi O. W, A. T. E., Ogunwale E. I, Oladapo O. F, Araka I. O.
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引用次数: 0

摘要

这项工作介绍了压电传感器在道路上的应用,道路相交形成一个 T 字路口,传感器的应用有助于调节控制道路两侧的交通密度。目前的交通拥堵是由于时间管理不当造成的,最终导致交通延误。毋庸置疑,在很多人出门上班的清晨时段和晚上下班时段都会出现这种情况。城市地区人口和经济活动的增加导致车辆拥有量和使用量的增加,从而导致道路上的交通流量增加。这源于人们实现目标的普遍愿望,最终导致目前的交通基础设施每天都人满为患。然而,尽管尝试了各种解决方案,但每个人都对交通拥堵嗤之以鼻,交通拥堵只会变得越来越糟糕。本项目的目标是创建一种基于密度的动态道路信号。同步信号灯会根据路口交通密度自动变化。制作这个项目所需的组件包括微控制器(Arduino uno)、LED(发光二极管)、压电传感器、跳线、9 V 电池、开关和运算放大器。工作成果的重点是通过传感器检测密度,该传感器将安装在地下,作为每辆经过车辆的计数器,由大约 9 V 的电池供电。该传感器被称为压电传感器,遵循压电效应规则,即非静态物体产生的应力或运动物体产生的机械能将产生电荷,以响应所产生的机械能。压电传感器产生的电荷将被传输到微控制器(Arduino Uno)。通过接收到的信号的输入阶段,微控制器中的程序将根据从道路两侧检测到的密度状态,命令发光二极管(LED)发挥相应的作用。从而有效、准确地调节交通流量。总之,在道路上应用压电传感器可以准确地检测到是否有车辆通过。
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Design and Construction of a Density-Controlled Traffic Light System
This work introduces the application of piezoelectric sensors on the road which intersects to form a T juncture, the application of the sensor aids in regulating the control of traffic density on each side of the road. Traffic congestion as of today is caused by the improper management of time and eventually leads to traffic delays. This was undoubtedly observed during early hours when a lot of civilians head out to their workstations and during closing hours in the evenings. The increasing population and economic activities in urban areas contribute to higher vehicle ownership and usage, leading to more traffic on the roads. It is achieved from the general desire of people to achieve goals, which ultimately leads to daily overcrowding of the present transportation infrastructure. But despite attempts at solutions, everyone despises traffic congestion, and it only gets unfavorable. The objective of this project is to create a dynamic road signal that is based on density. The synchronization signals automatically change to detect intersection traffic density. The components required to build this project include the microcontroller (Arduino uno), LEDs (light emitting diodes), piezoelectric sensors, jumper wires, a 9 V battery, a switch, and an operational amplifier. The result of the work focuses on the detection of density from a sensor which will be constructed underground to operate as a counter for every vehicle that passes by as it will be powered by a battery of approximately 9 V. The sensor which is known as the piezoelectric sensor abides by the rule of piezoelectric effect, which states that the stress produced from a non-static object, or the mechanical energy produced from a moving object will produce an electric charge in response to the mechanical energy generated. The electric charge produced from the piezoelectric sensor will be transmitted to the microcontroller (Arduino Uno). Through the input stage of the signal received, the program in the microcontroller will command the light-emitting diode (LEDs) to function accordingly to the state of density detected from each side of the road. Thereby regulating the flow of traffic movement efficiently and accurately. Overall, the application of the piezoelectric sensor on the road can accurately detect the presence of a vehicle passing.
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