Introduction: The commercial and domestic markets energy demands have been reported to be rising at an alarming growth over recent years. Although non-renewable resources are rapidly reducing, there is really no other choice for providing usable energy rather than use renewable resources. Sol
Indigenous Development of Learning based Rotational Solar Charging Station for Rural Areas
Introduction:
The commercial and domestic markets energy demands have been reported to be rising at an alarming growth over recent years. Although non-renewable resources are rapidly reducing, there is really no other choice for providing usable energy rather than use renewable resources. Solar energy is one of these resources, and is the most accessible and easy to harness through solar panels. This project enhances the productivity of solar energy harvesting. The Rotating Solar Panel Using Arduino project aims to power a 9VDC battery using a solar panel positioned on a frame which can rotate using a motor. These motors are getting controlled by an Arduino Uno Board. The Rotating Solar Panel system scans from one surface to another to assess the current position of the sun and, as a result, the best location for harnessing solar energy. To charge the battery, the position with the maximum energy capacity is chosen. By adjusting the Solar panel to be incident directly towards the Sun on a daily basis, we can get the most from it. As a result, this project improves the efficiency hence the smartness of the solar tracking operation.
Problem Statement:
The problem with fixed solar panel is that it is fixed at a certain position and does not follow the sun so when the sun moves away from its path, energy is not produced, even when it is facing towards the sun it cannot get its full potential as it is not in the best position to get sun light, plus in normal solar systems there is no wireless or easily accessible interface or front end, the user has to go to solar panel and check the charge controller for the battery life and other real time details of the solar panel.

Therefore, we proposed a rotating solar panel with a mobile application interface to get the maximum energy and make the life of the user easier. In our system the solar panel will rotate with respect to the sun and follow the sun until dawn which means energy will be stored and used the whole time until the sun is set out. The second is the mobile application interface all the data about the solar panel for example; Voltage, Battery charging, will be Displayed on application which means the user does not have to go to the system and check the details, we will be shifting towards real time data completely
The purpose of this project will be able to achieve the following objectives, is
Description of the Goals are as under:
This project is the rotation of solar panel through sunlight. The solar panel will be rotated according to the sunlight which will be done by Light Dependent Resistors (LDRs). The acceptance of light in LDR will be set according to the threshold of the sun. A mobile application will be designed that will show the Voltage, Battery charging, and Direction (Degrees) received from solar panel in real time by simply checking the application or the LCD available on the circuit box. The data will be sent through HC-05 is a Bluetooth device which displays the data in real time and a MEGA ARDUINO will be used with SIM900 GSM module which will also send data to the user mobile. Rotating the panel and showing data in real time is our target to achieve. Rotating solar panels are nearly negligible in Pakistan and showing real time data in solar system is a plus point. By using LDR’s we will detect the angles to monitor position of the solar plate. The data displaying on the LCD will also be displayed on the Application which can be accessed easily. The prime benefit of using micro controller HC-05 is it built in Bluetooth module. This real time data can be utilized in many ways like if there is a problem with the battery it will show that it is not getting charged at that time, it can also show the amount of battery left through which the user can get to know how much more time they will have electricity. There is a problem which will be solved through the charge controller that if the battery will reach 0 percent that means if you use the full battery, it will be useless and will not charge again so to overcome this charge controller is used which will restrict the flow when the battery level reaches 50 % which can also be changed and configured, it also helps in sending the current from plate to battery which means it will send the amount of current that the battery can tolerate.


Phase 1: Plan (4 weeks approx.)
Phase 2: Concept of Operations (3-4 weeks approx.)
Phase 3: Design and Testing ( 5-6 weeks approx.)
Phase 4: Sensitivity and Utility/Cost (3-4 weeks approx.)
Phase 5: Analysis of Systems (3-4 weeks)
Phase 6: Presenting
| Item Name | Type | No. of Units | Per Unit Cost (in Rs) | Total (in Rs) |
|---|---|---|---|---|
| Total cost of dSolar Panel, 3 Servo Motors, Bluetooth Device, 02 Arduino, Male & Female Jumper Wires, Iron & Soldering Wire Station, LDR’s, Resistors, Bread Board, Battery Bank, Buttons, Potentiometer, LCD | Equipment | 1 | 70000 | 70000 |
| Total in (Rs) | 70000 |
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