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Intelligent Fatigue Detection and Automatic Vehicle Control System


Affiliations
1 Department of CSE GHRCOETW, RTMN University, Nagpur[Maharashtra], India
2 Department of CSE GHRCOETW , RTMN University, Nagpur[Maharashtra], India
 

This paper describes method for detecting the early signs of fatigue in train drivers. As soon as the train driver is falling in symptoms of fatigue immediate message will be transfer to the control room indicating the status of the drivers. In addition of the advance technology of heart rate sensors is also added in the system for correct detection of status of driver if in either case driver is falling to fatigue due to any sever medical problems .The fatigue is detected in the system by the image processing method of comparing the image(frames) in the video and by using the human features we are able to estimate the indirect way of detecting fatigue. The technique also focuses on modes of person when driving the train i.e. awake, drowsy state or sleepy and sleep state. The system is very efficient to detect the fatigue and control the train also train can be controlled if it cross any such signal by which the train may collide on another train.

Keywords

Fatigue, Drowsiness, Heart Rate Detection, Automatic Buzzer System.
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  • Intelligent Fatigue Detection and Automatic Vehicle Control System

Abstract Views: 352  |  PDF Views: 146

Authors

Monali Gulhane
Department of CSE GHRCOETW, RTMN University, Nagpur[Maharashtra], India
P. S. Mohod
Department of CSE GHRCOETW , RTMN University, Nagpur[Maharashtra], India

Abstract


This paper describes method for detecting the early signs of fatigue in train drivers. As soon as the train driver is falling in symptoms of fatigue immediate message will be transfer to the control room indicating the status of the drivers. In addition of the advance technology of heart rate sensors is also added in the system for correct detection of status of driver if in either case driver is falling to fatigue due to any sever medical problems .The fatigue is detected in the system by the image processing method of comparing the image(frames) in the video and by using the human features we are able to estimate the indirect way of detecting fatigue. The technique also focuses on modes of person when driving the train i.e. awake, drowsy state or sleepy and sleep state. The system is very efficient to detect the fatigue and control the train also train can be controlled if it cross any such signal by which the train may collide on another train.

Keywords


Fatigue, Drowsiness, Heart Rate Detection, Automatic Buzzer System.