Vehicles Automatic Controller by using the Eye Gaze Sensor Application

Q3 Physics and Astronomy
T. Karthika, S. Parasuraman, A. Manimaran, P. Geetha, Selciya Selvan, D. Kumutha
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引用次数: 0

Abstract

Vehicle accidents have suddenly increased over the years, and several technologies are also being researched to prevent them. The above research work offers ways of an accident prevention system employing an eye blink sensor as well as an automated braking technique to make sure that when fatigue is detected and the driver doesn't respond to the buzzer's warning bell within the permitted time, the Vehicle comes to a slow stop. During the allocated time before circuit design, the vehicle's hazard, warning lights are turned on to warn other drivers, particularly those driving ahead. Thus, the results show that the eye blink sensor is used by the car's accident prevention system once the car has stopped. The Proteus software package and the C++ programming language were utilized to verify that the automated braking system is an effective method for reducing accidents caused by fatigued driving. The design and development of a car collision and accident prevention system, when drowsiness is identified using eye blink sensors is proposed in this research paper. This research work is essential because incorporating this technology into automobiles prevents accidents caused by driving when fatigued. This research work might be improved by more research to increase driver attention by employing wireless technology to inform other cars when the driver is tired rather than using the vehicle's danger warning lights
车辆自动控制器使用眼睛注视传感器的应用
近年来,交通事故突然增加,人们也在研究几种预防交通事故的技术。上述研究工作提供了一种采用眨眼传感器和自动制动技术的事故预防系统的方法,以确保当检测到疲劳时,驾驶员没有在允许的时间内响应蜂鸣器的警告铃,车辆会缓慢停车。在电路设计之前的指定时间内,车辆的危险警示灯会打开,以警告其他驾驶员,特别是前面行驶的驾驶员。因此,结果表明,一旦汽车停止,眨眼传感器就会被汽车的事故预防系统使用。利用Proteus软件包和c++编程语言验证了自动制动系统是减少疲劳驾驶事故的有效方法。本文提出了一种基于眨眼传感器的汽车碰撞与事故预防系统的设计与开发。这项研究工作至关重要,因为将这项技术应用到汽车上可以防止疲劳驾驶造成的事故。这项研究工作可以通过更多的研究来提高驾驶员的注意力,通过使用无线技术来通知其他车辆,而不是使用车辆的危险警示灯
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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来源期刊
Journal of Nano-and electronic Physics
Journal of Nano-and electronic Physics Materials Science-Materials Science (all)
CiteScore
1.40
自引率
0.00%
发文量
69
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