IMPLEMENTATION OF MAXIMUM POWER POINT TRACKING TWO AXIS ON PHOTOVOLTAIC BASED ON ARDUINO UNO

DOI:
https://doi.org/10.36456/best.vol2.no2.3469
Keywords:
Photovoltaic, LDR Sensor, and Arduino UnoAbstract
The photovoltaic system is a renewable energy source that utilizes solar energy and converts it into direct current (DC) electrical energy as an alternative energy to replace fossil fuels which will run out over time because it cannot be renewed quickly. In the design of the Maximum Power Point Tracking Two Axis On Photovoltaic Based on Arduino Uno intends to get a solar panel system that can work automatically following the maximum point of sunlight. The LDR (Light Dependent Resisitor) sensor functions to provide analog signals to Arduino Uno which Arduino Uno then processed as a basis for decision making to move the steper motor in changing the position of the solar panel so that it can get maximum sun exposure
Downloads
References
Balabel, A. A., M, A., & A, S. F. (2013). Design and Performance of Solar Tracking Photovoltaic System . InternationalJournal of Control, Automation And System, Vol 1 No 2
Dimas Juniyanto.(2018).Optimalisasi Standalone Photovoltaic System Dengan Implementasi Algoritma P&O- Fuzzy MPPT,Jurnal Teknik Elektro Vol 10 No.1.2018
Fachri Devanikal .(2017). Analisis Pengaruh Fuzzy Logic Controller Pada Penelusuran Titik Daya Maksimum Untuk Sistem Konversi Energi Berbasis Photovoltaic,E-Proceding of Engineering : Vol 4,No 1.1 2017
Jain, D. S., & Cheema, S. S. (2012). Simulation Studies on Dual Axis Solar Photovoltaic Panel Tracking System. Patiala: Electrical & Instrumentation Engineering Department Thapar University.
Kadir, Abdul. 2013. Panduan Praktis Mempelajari Aplikasi Mikrokontroler dan Pemrogramannya Menggunakan Arduino. Yogyakarta: Penerbit C.V Andi.
Lutfi Izzati Aini. (2017). Perancangan Mobile Active Two Axis Solar Tracker Pada Photovoltaic Menggunakan Kendali Logika Fuzzy-PI. Jurnal Teknik Fisika Institut TeknologI Sepuluh November.
Mairizwan, & Hendro. (2015). Perancangan dan Pembuatan Prototype Sistem Tracker Sel Surya untuk Mengikuti Arah Gerak Matahari. Prosiding Simposium Nasional Inovasi dan Pembelajaran Sains, 2.
Munandar, Aris. 2012. Liquid Crystal Display 16x2 (LCD). http://www.leselektronika.com/2012/06/liguid-crystal-display-lcd-16-x-2.html. Pada 5 Januari 2020 Pukul 14.00 WIB
Rochman, Sagita, and Akbar Sujiwa. "Peningkatan Daya Output Generator Listrik Tipe Afpmg Pada Putaran Rendah Menggunakan 3 Rotor Dan 2 Stator."
Sujiwa, Akbar, and Sagita Rochman. "Pengembangan Sistem Kontrol Serta Monitoring Suhu dan Volume Air Berbasis Web Pada Perangkat Desalinasi Air Laut." SNHRP (2019): 1-9.
Sri Kusumadewi.. Aplikasi Logika Fuzzy Untuk Pendukung Keputusan. Yogyakarta: Penerbit GRAHA ILMU. 2005:70-76
Suci Imani Putri. (2014). Rancang Bangun dan Optimasi Panel Surya Berpenjejak dengan Logika Fuzzy Takagi Sugeno . Jurnal EECCIS Vol.18 No 1.