Implementasi Sensor LDR Pada Prototipe Sistem Tracking Dual Axis Untuk Deteksi Arah Sinar Matahari Pada Sel Surya

Authors

  • Dekki Widiatmoko Politeknik Angkatan Darat
  • Rachmat Setiawibawa Politeknik Angkatan Darat
  • Rafi Maulana Al-farizi Politeknik Angkatan Darat
  • Mokhammad Syafaat Politeknik Angkatan Darat
  • Eriski Prawira Politeknik Angkatan Darat

DOI:

https://doi.org/10.61132/aspirasi.v1i5.407

Keywords:

Solar energy, solar cell, dual-axis tracking system, LDR sensors

Abstract

Solar energy is a potential solution to meet the electricity needs of TNI AD posts and bases in border areas. However, conventional solar energy systems have limited efficiency because they can only absorb sunlight from one direction. The efficiency of solar energy systems can be improved by using a dual-axis tracking system equipped with a LDR sensor. The LDR sensor is used to detect the direction of sunlight. The change in the LDR sensor resistance due to the change in the intensity of light that hits it is then processed by a microcontroller to move the solar panel in the appropriate direction. Based on the results of testing, the dual-axis tracking system with an LDR sensor significantly increases the power generated compared to conventional solar energy systems. At the peak of performance during dynamic testing at 12:00 pm, the total power reached 2,196 W, while the static test reached a total power of 1,311 W. Therefore, the dual-axis tracking system with an LDR sensor can be a more optimal choice to improve the performance and efficiency of solar energy systems in generating electricity at TNI AD posts and bases in border areas.

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References

Arif N., Kastono, “Potensi Energi Surya sebagai Energi Listrik Alternatif berbasis RETScreen di Kota Palopo, Indonesia”, Dewantara. J. Tech., Vol. 01, No. 01, Hal. 38-42, November 2020.

Asyari H., Aji A. W., “Desain Solar Tracking Dual Axis Berbasis Arduino dan Sensor Light Dependent Resistor untuk Meningkatkan Daya Keluaran Sel Surya”, JTE Uniba, Vol. 7, No. 2, April 2023.

Desmira, Aribowo D., Priyogi G., Islam S., “ Aplikasi Sensor LDR (Light Dependent Resistor) Untuk Efisiensi Energi Pada Lampu Penerangan Jalan Umum”, Jurnal Prosisko Vol. 9 No.1. Maret 2022.

Hakim T. D., Sukma M., “Rancang Bangun Dual-Axis Solar Tracker Menggunakan Mikrokontroler Arduino Mega 2560”, Jurnal Elektro Vol 10 No 2 Juli 2022.

Ilham M, Ramadhan F dan Wirawan I. G., “Potensi Pemanfaatan Energi Surya di Indonesia” Jurnal Pendidikan Teknologi dan Kejuruan, Volume: 17, No. 1, 2022.

Nurhayati, Maisura B., “Pengaruh Intensitas Cahaya Terhadap Nyala Lampu dengan Menggunakan Sensor Cahaya Light Dependent Resistor”, Jurnal Ilmiah Pendidikan Teknik Elektro, Vol.5, No.2, Agustus 2021.

Ramli I., Samman F. A., Said S. M., “Panel Surya dengan Sistem Tracking Arah Sinar Matahari”, Jurnal Eksitasi, Vol. 1, No. 1, 2022.

Tricahyono R. W., Kholis N., “Sistem Monitoring Intensitas Cahaya dan Daya Pada Dual Axis Solar Tracking System Berbasis IoT”, Jurusan Teknik Elektro. Volume 7 Nomor 4, 233-238, 2018.

Wibawa U., Purnomo H., Ramadhani A. Z., “Aplikasi Solar Tracker System Berbasis Arduino Uno untuk Sistem Photovoltaic pada Penerangan Jalan Umum”, Jurnal EECCIS Vol. 15, No. 2, Agustus 2022.

Zuddin H., “Perancangan dan Implementasi Sistem Instalasi Solar Tracking Dual Axis Untuk Optimasi Panel Surya”, Jurnal Teknik Elektro. Volume 8 No. 03 Hal. 563-570. 2019.

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Published

2023-09-30

How to Cite

Dekki Widiatmoko, Rachmat Setiawibawa, Rafi Maulana Al-farizi, Mokhammad Syafaat, & Eriski Prawira. (2023). Implementasi Sensor LDR Pada Prototipe Sistem Tracking Dual Axis Untuk Deteksi Arah Sinar Matahari Pada Sel Surya. ASPIRASI : Publikasi Hasil Pengabdian Dan Kegiatan Masyarakat, 1(5), 132–140. https://doi.org/10.61132/aspirasi.v1i5.407

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