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PROJECT DESCRIPTION

The project is designed to build an obstacle avoiding robotic vehicle using ultrasonic sensors for robotic movement. An Arduino development is used to achieve the desired operation.

A robot is a machine that can perform some task automatically or with guidance. Robotics is generally a combination of computational intelligence and physical machines (motors). Computational intelligence involves programmed instructions.

The project proposes robotic vehicle that has an intelligence built in it such that it guides itself whenever an obstacle comes ahead of it. This robotic vehicle is built, using a microcontroller of Atmel family of Arduino Board.

An ultrasonic sensor unit is used to detect any obstacle ahead of it that sends a command to the Arduino Board. Depending on the input signal received, the microcontroller redirects the robot to move in an alternate direction by appropriately actuating the motors interfaced to it through a motor driver IC.

 This concept in future can be extended in such a way that if a destination is fed to the robot, the robot can map the whole terrain and can reach its destination by deciding a suitable path avoiding obstacles.    

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The project is designed to build an obstacle avoiding robotic vehicle using ultrasonic sensors for robotic movement. An Arduino development is used to achieve the desired operation.

A robot is a machine that can perform some task automatically or with guidance. Robotics is generally a combination of computational intelligence and physical machines (motors). Computational intelligence involves programmed instructions.

The project proposes robotic vehicle that has an intelligence built in it such that it guides itself whenever an obstacle comes ahead of it. This robotic vehicle is built, using a microcontroller of Atmel family of Arduino Board.

An ultrasonic sensor unit is used to detect any obstacle ahead of it that sends a command to the Arduino Board. Depending on the input signal received, the microcontroller redirects the robot to move in an alternate direction by appropriately actuating the motors interfaced to it through a motor driver IC.

 This concept in future can be extended in such a way that if a destination is fed to the robot, the robot can map the whole terrain and can reach its destination by deciding a suitable path avoiding obstacles.    

PROJECT HIGHLIGHTS
Easy to use, Self-explanatory kit.
All-inclusive solution kit.
Extensive audio-visuals available.
Branding-free material.
Pre-programmed Microcontroller.
Call/mail for Tech Support from 10 am - 7 pm IST.
×
Easy to use, Self-explanatory kit.
All-inclusive solution kit.
Extensive audio-visuals available.
Branding-free material.
Pre-programmed Microcontroller.
Call/mail for Tech Support from 10 am - 7 pm IST.
BLOCK DIAGRAM
Arduino Operated Obstacle Avoidance Robot
Hardware Requirements
  • Arduino Develop board
  • Motor Driver IC
  • DC Motors
  • Diodes
  • Battery
  • Ultrasonic Sensor.
×
  • Arduino Develop board
  • Motor Driver IC
  • DC Motors
  • Diodes
  • Battery
  • Ultrasonic Sensor.
Software Requirements
  • Arduino software
  • Languages: Arduino programming language
×
  • Arduino software
  • Languages: Arduino programming language
OTHER INFORMATION
Battery not included in the kit due to Courier service prohibition. Please buy NI-CAD LEAD ACID Rechargeable 6V battery for this project.
×
Battery not included in the kit due to Courier service prohibition. Please buy NI-CAD LEAD ACID Rechargeable 6V battery for this project.
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