Analysis of an Arduino based solar tracking system

Author:

Mohamad A,Rahman MTA,Phasinam K,Bin Mohamad MS,Saad MAM,Chionh SY

Abstract

Abstract The main purpose of this research is to develop and evaluate a solar tracking system which able to maximize the power output of the solar panel. The design of the solar tracking system consists of some electronic components such as an Arduino Uno R3 microcontroller, four light-dependent resistors (LDRs), two servo motors, and one solar panel. The Arduino microcontroller acts as the main controller of the whole system, light-dependent resistor is used as a light sensor to detect sunlight while the function of the servo motor is to rotate the solar panel to align with the sunlight. The prototype of the solar tracking system was build and tested. The data result obtained are tabulated and the comparison of performance between the static solar panel and solar tracking system is showed using the graphical method. As a result, solar panels with tracking mechanisms can generate more current, voltage, and power than static solar panels. The overall efficiency of the solar panel had increased after the implementation of the tracking system.

Publisher

IOP Publishing

Subject

General Physics and Astronomy

Reference7 articles.

1. Review of Photovoltaic/Thermal System Design and Heat Transfer Enhancement Methods

2. An experimental comparison study between single-axis tracking and fixed photovoltaic solar panel efficiency and power output: Case study in east coast Malaysia;Mahendran,2013

3. A review on sun position sensors used in solar applications

4. Comparative performance analysis between static solar panels and single-axis tracking system on a hot climate region near to the equator

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1. Design and implementation of a solar tracking system using a hydraulic system;AIP Conference Proceedings;2024

2. Integrated Heuristic Approaches to get Maximum Power from Fixed and Moving PV Solar Panel;2023 Third International Conference on Advances in Electrical, Computing, Communication and Sustainable Technologies (ICAECT);2023-01-05

3. Experimental Investigation of Azimuth- and Sensor-Based Control Strategies for a PV Solar Tracking Application;Applied Sciences;2022-05-09

4. Arduino-based Dual Axis Solar Tracking System Prototype;MATEC Web of Conferences;2022

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