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HVS-122. Implementation of a Versatile Solar Powered Vehicle with Ultrasonic sensors which gives voltage display on LCD.

6,000.00

The purpose of this project is to build a solar powered vehicle/car with Ultrasonic Sensors.

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The purpose of this project is to build a solar powered vehicle/car with Ultrasonic Sensors. This Vehicle/car automatically senses the presence of obstacles in its path and changes its direction of movement. The obstacle detection mechanism is done by an ultrasonic sensor that makes uses of ultrasonic waves to find the presence of an obstacle in its path.   The proposed project is a Microcontroller based control system, solar powered DC motors and Ultrasonic Sensor. This autonomous vehicle/car senses the obstacles in its path by continuously transmitting the ultrasonic waves. If any obstacle comes in its vicinity then the ultrasonic waves get reflected back to the vehicle/car. The ultrasonic receiver fitted on the vehicle/car senses these ultrasonic waves and this information is passed onto the Microcontroller. Now the Microcontroller takes necessary action like taking the diversion, reversing the vehicle/car direction etc. The power required for the operation of vehicle motors is supplied from solar panels connected to a battery. Also, the voltage from solar panels will be displayed on LCD by interfacing solar panel to Microcontroller through a voltage measuring circuitry. The Microcontroller is programmed using Embedded ‘C’ language.   This vehicle/car is designed in such a way that there is no requirement of manual attention towards it. It makes use of the ultrasonic sensors to detect the obstacle present in its expected trajectory and dynamically changes the trajectory to be followed.    

The main objectives of the project are:  
  1. Powering of vehicle through solar energy.
  2. Obstacle detection.
  3. Measurement of voltage from solar panel.
      The major building blocks of this project are:  
  1. Solar panel.
  2. Charging circuit.
  3. Battery.
  4. PIC Microcontroller.
  5. Ultrasonic module.
  6. Geared DC motor with driver.
  7. Reset Button.
  8. Voltage measuring circuit.
  9. LCD display with driver.
  10. Crystal
  11. LED indicators.
    Software’s used:    
  1. PIC-C compiler for Embedded C programming.
  2. PIC kit 2 programmer for dumping code into Micro controller.
  3. Express SCH for Circuit design.
       

Regulated Power Supply:

                 

Block Diagram:      

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