PV Mini-Grid Analysis as A Resource for Automatic Fish Feeder Systems
DOI:
https://doi.org/10.56862/irajtma.v1i3.35Abstract
The purpose of this study was to determine the angle of inclination of the 10 WP solar panel so that the maximum amount of sunlight that falls on the surface area of the solar cell, analyze the performance of the solar cell, calculate the duration of charging the battery using a 10 WP solar panel. The method used is an experiment by recording every 10 minutes the output current and voltage of a 10 WP solar panel and battery, the current and voltage entering the battery and recording the intensity of sunlight using a solar meter. The overall results, based on theory and experiment, are that the angle of inclination of the solar panel is 10 WP so that the maximum amount of sunlight that falls on the surface area of the solar cell is at an angle of 9.3620 at 12.00 WIB facing south where the instantaneous intensity of sunlight hitting the solar panel at is 1049 W/m2, the performance of the solar cell is obtained by an average output current of solar panels 0.1295 A, the average output voltage of solar panels is 14.3162 V, the average output power of solar panels is 1.8798 W, the average the power that hits the solar panel is 59.3811 W, and the average panel efficiency is 3.1707%, the duration of charging the battery using a 10 WP solar panel is approximately 29 hours 8 minutes so that the battery is fully charged or approximately 2 days 5 hours 8 minutes.
References
Arismunandar, W. 1995. Teknologi rekayasa surya. Jakarta: Pradnya Paramita.
Derman, Budiani Destyningtias, and Arif Suprasetyo. 2019. “Rancang Bangun Pakan Ikan Otomatis Tenaga Surya Berbasis Programmable Logic Controller.” Jurnal Pengembangan Rekayasa dan Teknologi 14(2): 55.
Gede, Wiyana. 2012. “Pemanfaatan Energi Surya.” Jurusan Pendidikan Teknik Mesin 9: 37–46.
Hamid, Riskha Mirandha, Rizky Rizky, Mohamad Amin, and Ida Bagus Dharmawan. 2016. “Rancang Bangun Charger Baterai Untuk Kebutuhan UMKM.” JTT (Jurnal Teknologi Terpadu) 4(2): 130.
Idris, Muhammad, I. Husin, Indra Hermawan, Uun Novalia, R. D. Batubara, Nugroho Agung Pambudi, and Alfan Sarifudin. 2023. “Engine Performance Using Blended Fuels of Biodiesel and Eco Diesel.” Energy Engineering: Journal of the Association of Energy Engineering 120 (1): 107–23. https://doi.org/10.32604/ee.2023.019203.
Jufrizal, Zulkifli, and Himsar Ambarita. 2013. “Perkiraan Intensitas Radiasi Matahari Yang Dapat Dimanfaatkan Pada Permukaan Datar Dengan Metode Simulasi.” SAINTEK 27 (December): 65–73.
Jufrizal, Zulkifli, Ardiansyah Lubis, and Abdullah Muhazir. 2013. “Pengembangan Perangkat Lunak Untuk Memperkirakan Radiasi Matahari Pada Kondisi Langit Cerah.” In Prosiding Seminar Nasional Peran Teknologi Di Era Globalisasi Ke-2, 455–62. Medan: Biro Publikasi dan Dokumentasi - ITM.
Nugraha, Angga. 2020. “Analisis Perbandingan Efisiensi Dan Karakteristik Solar Charge Controller ( Scc ) Tipe Pwm Dan Mppt.” : 44.
Prijatna, Dedy, Handarto Handarto, and Yoshua Andreas. 2018. “Rancang Bangun Pemberi Pakan Ikan Otomatis.” Jurnal Teknotan 12(1): 30–35.
Sihombing, Adelia BR Panggabean Daniel, Felix Darwin, Jaya Waruwu, and Yosafat T. Silaban. 2019. “Prototype Alat Pendeteksi Tanah Longsor Berbasis Mikrokontroler Avr Atmega 328 Dengan Menggunakan Tenaga Panel Surya 20 Wp Laporan Tugas Akhir.”
Sutanto, B., Herlambang, Y. D., Bono, B., Alfauzi, A. S., & Munawwaroh, D. A. 2021. “Optimalisasi Arah Sudut Tilt Dan Sudut Azimuth Dari Alat Pemanen Energi Radiasi Matahari Di Semarang, Jawa Tengah”. Eksergi, 17(2), 145-154.
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