Implementation of a Speed Control System Using Arduino

Begum Korunur Engiz, Rakan Bashir
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引用次数: 4

Abstract

Road safety is a concern of all authorities. One of the most important safety concerns is excessive speed which results in accidents, injuries, death, as well as damage in public property. Therefore, the imposition of automatic speed is essential and important in municipality's arsenal to prevent and combat excessive speed. The speed control system that we used in this project depends on the ultrasonic radar. Where this radar unit is capable of tracking multiple vehicles together across multiple tracks. The system consists of an ultrasonic sensor, an Arduino board, and a webcam. Speed and location of vehicles are determined accurately by using ultrasonic sensor, and the distance is calculated over a simple period of time. The vehicles like ambulances were excluded from the speed limit because the speed is necessary in this case to save lives. In the proposed system, if the speed of the car reaches 95% of the specified speed limit of the road, the system will warn the driver by sending a light packet means will be punished if the speed exceeds. If the vehicle exceeds the predefined speed, the system will take a high-resolution digital image of the vehicle and the license plate. The image taken will be presented as a guide to the competent authorities as evidence of the detailed information (location of the event, maximum speed, time, date and speed of the car). By using this prototype speed control system, speed monitoring can be done through sensors, in efficient and cheaper way.
基于Arduino的速度控制系统的实现
道路安全是所有当局关心的问题。最重要的安全问题之一是车速过快,它会导致事故、伤害、死亡以及公共财产的破坏。因此,自动速度的征收是必不可少的和重要的市政武器库,以防止和打击过快的速度。本课题采用的速度控制系统是基于超声波雷达的。这个雷达单元能够在多个轨道上跟踪多个车辆。该系统由超声波传感器、Arduino板和网络摄像头组成。车辆的速度和位置通过超声波传感器精确确定,并在一段简单的时间内计算距离。救护车等车辆被排除在限速范围之外,因为在这种情况下,速度对于挽救生命是必要的。在提出的系统中,如果汽车的速度达到道路规定速度限制的95%,系统将通过发送轻数据包的方式警告驾驶员,如果速度超过则会受到处罚。如果车辆超过预定的速度,系统将拍摄车辆和车牌的高分辨率数字图像。拍摄的图像将作为详细信息(事件地点、最高速度、时间、日期和车速)的证据提交给主管当局。通过使用该原型速度控制系统,可以通过传感器进行速度监测,效率高,成本低。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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