UGC Approved Journal no 63975(19)
New UGC Peer-Reviewed Rules

ISSN: 2349-5162 | ESTD Year : 2014
Volume 12 | Issue 10 | October 2025

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Published in:

Volume 11 Issue 4
April-2024
eISSN: 2349-5162

UGC and ISSN approved 7.95 impact factor UGC Approved Journal no 63975

7.95 impact factor calculated by Google scholar

Unique Identifier

Published Paper ID:
JETIR2404D36


Registration ID:
538163

Page Number

n295-n298

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Title

Solar Tracking System with Gyro-Stabilized Platform: Optimizing Photovoltaic Efficiency

Abstract

This research paper presents the design, implementation, and performance evaluation of a solar tracker system utilizing light-dependent resistors (LDR) integrated into a gyro-stabilized platform capable of floating on water. the objective of the suggested solar tracking mechanism is to maximise energy capture efficiency by dynamically modifying the solar panels' orientation in response to the amount of incident sunlight. an array of LDR sensors that have been carefully positioned to detect changes in ambient light conditions makes up the solar tracker system. a microprocessor processes the acquired data to allow for real-time modifications to the solar panel orientations. the system's adaptability and suitability are increased by mounting the solar panels on a gyro- stabilized platform intended for use on watery areas.

Key Words

1. Solar Tracking System 2. Gyro-Stabilized Platform 3. Photovoltaic Efficiency 4. Light-Dependent Resistors (LDR) 5. Solar Panels 6. Microprocessor 7. Gyroscope 8. Water-floating platform 9. Energy capture efficiency 10. Sustainable energy sources 11. Solar electricity 12. Sun tracking technology 13. Environmental conditions 14. Arduino 15. Servo motors 16. Azimuth adjustment 17. Elevation adjustment 18. Pulse-width modulation (PWM) 19. Control algorithm 20.Proportional-integral-derivative (PID) control 21. Gyro Stabilizer 22. Gyroscope sensors 23. Enhanced energy generation

Cite This Article

"Solar Tracking System with Gyro-Stabilized Platform: Optimizing Photovoltaic Efficiency", International Journal of Emerging Technologies and Innovative Research (www.jetir.org), ISSN:2349-5162, Vol.11, Issue 4, page no.n295-n298, April-2024, Available :http://www.jetir.org/papers/JETIR2404D36.pdf

ISSN


2349-5162 | Impact Factor 7.95 Calculate by Google Scholar

An International Scholarly Open Access Journal, Peer-Reviewed, Refereed Journal Impact Factor 7.95 Calculate by Google Scholar and Semantic Scholar | AI-Powered Research Tool, Multidisciplinary, Monthly, Multilanguage Journal Indexing in All Major Database & Metadata, Citation Generator

Cite This Article

"Solar Tracking System with Gyro-Stabilized Platform: Optimizing Photovoltaic Efficiency", International Journal of Emerging Technologies and Innovative Research (www.jetir.org | UGC and issn Approved), ISSN:2349-5162, Vol.11, Issue 4, page no. ppn295-n298, April-2024, Available at : http://www.jetir.org/papers/JETIR2404D36.pdf

Publication Details

Published Paper ID: JETIR2404D36
Registration ID: 538163
Published In: Volume 11 | Issue 4 | Year April-2024
DOI (Digital Object Identifier):
Page No: n295-n298
Country: Mumbai, Maharashtra, India .
Area: Engineering
ISSN Number: 2349-5162
Publisher: IJ Publication


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