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Title:
Automatic Collision Control System
Aim:
To minimize the probability of vehicular accidents due to direct collision.
Abstract:
Human safety is growing to be an important aspect in the use of technologies, even those that we
use everyday. The same can be said for Automobiles. Although, most of the luxury cars are
being provided with Cruise control and Crash avoidance systems, cars belonging to the middle
and lower segments fail to exhibit such safety qualities. To avoid this partiality we have
developed a Collision avoidance system that can function with any vehicle.
Components Used:
• IR Obstacle Detection Sensor – 5v (Range – 2 ~ 80cm)
• Relay Circuit – 5v
• Battery – 9v
• Driver Circuit
• Remote Controlled car
Original Idea:
• Initially, we had decided to develop a system with an Ultrasonic obstacle detection sensor
(Range – 2cm ~ 4m) which works hand-in-hand with an Arduino control board.
• Input to the control board was given through a simplified version of C++, making it easier to
learn to program.
• When the Ultrasonic sensor detects an obstacle, it generates a pulse, which varies according
to the distance of the obstacle.
• The Arduino control board receives the pulse and generates a voltage with respect to the
magnitude of the pulse.
• This generated voltage activates the solenoid valve and further the brake cylinders and thus
causing the braking action.
Conclusion:
The aim of our project was to design a collision avoidance system that was simple, economical
and easy to install irrespective of the vehicle in use.
We certainly believe that we had achieved the same to the best of our abilities.

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Project - Automatic collision control system

  • 1. Title: Automatic Collision Control System Aim: To minimize the probability of vehicular accidents due to direct collision. Abstract: Human safety is growing to be an important aspect in the use of technologies, even those that we use everyday. The same can be said for Automobiles. Although, most of the luxury cars are being provided with Cruise control and Crash avoidance systems, cars belonging to the middle and lower segments fail to exhibit such safety qualities. To avoid this partiality we have developed a Collision avoidance system that can function with any vehicle. Components Used: • IR Obstacle Detection Sensor – 5v (Range – 2 ~ 80cm) • Relay Circuit – 5v • Battery – 9v • Driver Circuit • Remote Controlled car Original Idea: • Initially, we had decided to develop a system with an Ultrasonic obstacle detection sensor (Range – 2cm ~ 4m) which works hand-in-hand with an Arduino control board. • Input to the control board was given through a simplified version of C++, making it easier to learn to program. • When the Ultrasonic sensor detects an obstacle, it generates a pulse, which varies according to the distance of the obstacle. • The Arduino control board receives the pulse and generates a voltage with respect to the magnitude of the pulse. • This generated voltage activates the solenoid valve and further the brake cylinders and thus causing the braking action. Conclusion:
  • 2. The aim of our project was to design a collision avoidance system that was simple, economical and easy to install irrespective of the vehicle in use. We certainly believe that we had achieved the same to the best of our abilities.