Datalogger Experimental Analysis Based on Arduino Mega 2560 on a 100 Wp Monocrystalline Solar Panel Using Perforated Plate

Adipradana, Wirawan and Sofijan, Armin and Rahmawati, Rahmawati and Bizzy, Irwin and Sipahutar, Riman and Fajri, M. A. (2021) Datalogger Experimental Analysis Based on Arduino Mega 2560 on a 100 Wp Monocrystalline Solar Panel Using Perforated Plate. Atlantis Highlights in Engineering, 7. pp. 189-192. ISSN 2589-4943

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Abstract

This experiment was carried out to reduce excess heat in solar panels and increase the output power generated by the 100 Wp monocrystalline solar panel by applying perforated aluminum plates as a Passive Cooling Technique on solar panels. The energy source used is 12 W halogen lamps as a substitute for solar energy and data collection is carried out with a solar panel rack height of 350 mm. The resulting data will be recorded automatically by a datalogger based on Arduino Mega 2560 and stored on a Micro SD Card which is operated via a computer. The perforated aluminium plate used has the length of 1000 mm, the width of 670 mm, the thickness of 2 mm, the hole diameter of 2.5 mm and the distance between the center points of the hole of 20 mm. In this experimental research, the best results of PV panels equipped with perforated aluminium plate are the voltage of 13.25 V, the current of 4.36 A, the under temperature of 32.0C, and the output power of 57.77 W.

Item Type: Article
Uncontrolled Keywords: Data Logger, Monocrystalline, Passive Cooling, Perforated Aluminium Plate, Photovoltaic
Subjects: T Technology > TK Electrical engineering. Electronics Nuclear engineering > TK1-9971 Electrical engineering. Electronics. Nuclear engineering > TK1 Electrical engineering--Periodicals. Automatic control--Periodicals. Computer science--Periodicals. Information technology--Periodicals. Automatic control. Computer science. Electrical engineering. Information technology.
Divisions: 03-Faculty of Engineering > 20201-Electrical Engineering (S1)
Depositing User: Dr. Ir. Irwin Bizzy, M.T.
Date Deposited: 06 Jun 2022 07:59
Last Modified: 06 Jun 2022 07:59
URI: http://repository.unsri.ac.id/id/eprint/71132

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