Perancangan Panel Surya Berbasis Solar Tracker Menggunakan Penggerak Bersumber Tenaga Wind Turbine

Authors

  • Andika Kusuma Nugroho
  • Ardian Infantono

DOI:

https://doi.org/10.54706/senastindo.v7.2025.441

Keywords:

hybrid renewable system, photovoltaic, Solar tracker

Abstract

Solar energy and wind energy are two major renewable resources with high potential when integrated into a hybrid system. Conventional dual-axis solar tracker systems generally rely on electrical power supplied directly from the photovoltaic (PV) panel, which reduces the net output delivered to the battery. This research proposes the development of a dual-axis solar tracker powered by a small-scale wind turbine, enabling the PV panel to fully contribute its electrical output to battery charging. The system employs LDR sensors for sunlight detection, an Arduino Uno microcontroller, and JGY-370 gear motors for azimuth and elevation tracking. Experimental analysis compares two operational scenarios: (1) the tracker powered by the solar panel and (2) the tracker powered by the wind turbine. Results demonstrate that the wind-powered configuration produces higher net energy, maintains stable panel orientation throughout the day, and increases overall system efficiency.

 

Downloads

Download data is not yet available.

References

[1] Alim, M.S., Thamrin, S. dan W., R.L. (2023) “Pemanfaatan Pembangkit Listrik Tenaga Surya sebagai Alternatif Ketahanan Energi Nasional Masa Depan,” Jurnal Pengabdian kepada Masyarakat Nusantara (JPkMN), 4(3), hal. 2427–2435.

[2] Asmi, J. dan Candra, O. (2020) “Prototype Solar Tracker Dua Sumbu Berbasis Microcontroller Arduino Nano dengan Sensor LDR,” JTEV (Jurnal Teknik Elektro dan Vokasional), 6(2), hal. 54.

[3] Endra, R.Y. et al. (2019) “Model Smart Room Dengan Menggunakan Mikrokontroler Arduino Untuk Efisiensi Sumber Daya,” Explore: Jurnal Sistem informasi dan telematika, 10(1). Fauzi, A. & Hidayat, M., 2024. Perancangan Sistem Hybrid PLTS dan PLTB Off Grid.

[4] Hidayanti, D. dan Dewangga, G. (2020) “Rancang Bangun Pembangkit Hybrid Tenaga Angin dan Surya dengan Penggerak Otomatis pada Panel Surya,” Eksergi, 15(3), hal. 93.

[5] Hilal, A. dan Manan, S. (2015) “Pemanfaatan Motor Servo Sebagai Penggerak Cctv Untuk Melihat Alat-Alat Monitor Dan Kondisi Pasien Di Ruang Icu,” Gema Teknologi, 17(2), hal. 95–99.

[6] Huda, A.N. dan Putra, R.G. (2020) “Perancangan Solar Charge Controler Menggunakan Control Proportional Integral Derivative (PID) Pada Prototype Traffic Light (2),” 5(2), hal. 9–15

[7] Iturralde Carrera, L.A., (2025) “Efficiency and Sustainability in Solar Photovoltaic Systems”. Energies, 6(3), hal. 50. Jonoshita, I., 2024. Energy Conversion Efficiency and Its Improving Methods for Solar Cell. Environmental Science & Ecology. [online] Landsberg, P.T., 1998. Solar Energy Conversion: List of Efficiencies and Some Limits. Solar Energy. [online]

[8] Maulana, R.P., Maimun dan Syahputra, R. (2022) “Analisis Rancang Bangun Pembangkit Listrik Hybrid (Energi Surya Dan Turbin Angin),” Jurnal Tektro, 06(01), hal. 127–131.

[9] Mirza, Y. dan Firdaus, A. (2016) “Light Dependent Resistant (Ldr) Sebagai Pendeteksi Warna,” Jupiter, 8, hal. 39–45.

[10] Parikesit, E., Purwadianto, D. & Sambada, F.A.R. (2017). Pelacak Matahari Dua Sumbu Menggunakan LDR untuk Meningkatkan Absorbsi Matahari. Universitas Indonesia.

[11] Pardawantara, M., Antony, F. dan Rachmansyah (2023) “Perancangan Sistem Solar Tracking Dual Axis Untuk Optimasi Panel Surya Menggunakan Sensor Ldr Dan Gyroscope Berbasis Internet of Things (Iot),” Journal of Intelligent Networks and IoT Global, 1(2), hal. 98–106.

[12] Purwoto, B.H., Jatmiko, M.A.F. & Huda, I.F., 2019. Efisiensi Penggunaan Panel Surya Sebagai Sumber Energi Alternatif. Emitor: Jurnal Teknik Elektro, 18(1), hal.10 14.

[14] Pusch, A., 2023. Energy Conversion Efficiency of the Bulk Photovoltaic Effect. PRX Energy. [online]

[15] Rd. Reyhan Triwibowo, Ignatius R. Mardiyanto dan Mulki R. B Pratama (2024) “Sistem Kontrol Pada Solar Tracker Dual Axis Berbasis Arduino dan Light Dependent Resistor (LDR),” Jurnal Teknik Energi, 13(1), hal. 52–57.

[16] Rianto, M.A., Sudarti, S. dan Yushardi, Y. (2022) “Analisis Teoritis Penggunaan Jenis Turbin Angin Terhadap Output Daya Listrik,” Jurnal Inovasi Mesin, 4(2), hal. 18–25. Rizki, Maimun & Syahputra, (2022) “PERANCANGAN SISTEM HYBRID PLTS DAN PLTB OFF GRID PADA SKALA RUMAH TINGGAL DI DAERAH PERBUKITAN,” 08, hal. 280–290.

[17] Rohman, M.M.A. et al. (2025) “Optimasi Daya Keluaran Pada Prototipe AeroSolar Sistem Hybrid Tenaga Surya dan Tenaga Bayu,” 19(1).

[18] Sarmah, P., 2023. Comprehensive Analysis of Solar Panel Performance and Efficiency. PMC. [online]

[19] Syahtuta, Z. & Haryanti, M., (2023). “Rancang Bangun Solar Tracker Dual Axis Berbasis IoT (Internet of Things”). Jurnal Teknologi Informasi, 12(1), pp.45–52.

[20] Udoka, V.H., Kiiza, R., Ukagwu, K.J. & Okafor, W., (2024). “Factors Influencing the Efficiency of Solar Energy Systems. Journal of Engineering”, Technology & Applied Science, 6(3), pp.119-131

Downloads

Published

2025-12-28

How to Cite

Kusuma Nugroho, A., & Infantono, A. (2025). Perancangan Panel Surya Berbasis Solar Tracker Menggunakan Penggerak Bersumber Tenaga Wind Turbine. Prosiding Seminar Nasional Sains Teknologi Dan Inovasi Indonesia (SENASTINDO), 7, 211–218. https://doi.org/10.54706/senastindo.v7.2025.441

Most read articles by the same author(s)

1 2 > >>