Implementasi Sistem Monitoring Pengukuran pada Pembangkit Listrik Tenaga Mikrohidro Berbasis Arduino di Kampus PNUP Makassar
DOI:
https://doi.org/10.31004/jutin.v9i1.56141Keywords:
Micro Hydro Power Plant, Arduino Uno, voltage, current, electrical powerAbstract
This study aims to design and implement an electrical parameter monitoring system for a Micro Hydro Power Plant (PLTMH) based on Arduino Uno. The system was developed by integrating current, voltage, and speed sensors to obtain real-time performance data of the power plant. The research employed an experimental method consisting of hardware and software design, system testing, and analysis of measurement data. The results indicate that the developed monitoring system is capable of measuring and displaying the main electrical parameters, namely voltage, current, and electrical power, continuously and in real time. Under the testing conditions, the maximum values obtained were 10.6 V for voltage, 0.16 A for current, and 1.7 Watts of output power at a water discharge of 32 L/min. These results demonstrate that the monitoring system performs properly and is able to represent the operational performance of the micro hydro power plant. Therefore, the system can be effectively utilized as a monitoring tool to support performance evaluation and management of the power generation system.References
Arham, M., & Nur, M. I. (2023). Perancangan Pltmh Turbin Archimedes Screw Pada Kawasan Pedesaan Terpencil Dusun Cindakko Desa Bonto Somba Kec.Tompobulu Kab. Maros. 5(1), 17–22. https://finance.detik.com/energi/
Arham, M., Nur, M. I., Hs, H., & Salam, A. A. (2025). ANALISIS PERBANDINGAN PERFORMA TURBIN ARCHIMEDES SCREW MENGGUNAKAN CLOSED SYSTEM.
Arham, M., Salam, A. A., Nur, M. I., & Hs, H. (2023). PENGARUH KEMIRINGAN POROS TERHADAP PERFORMANCE TURBIN ARCHIMEDES SCREW SKALA LABORATOIUM. 2018, 1–8.
Association, I. S. S. 946-2020. (2020). Recommended Practice for the Design of DC Power Systems for Stationary Applications. IEEE. IEEE Standards Association. https://standards.ieee.org/standard/946-2020.html
Hadi, M. N. (2025). Optimasi Potensi Pembangkit Listrik Tenaga Bayu di Kabupaten Sukabumi. 4(4), 2885–2898.
Harahap, M., & Syaputra, A. (2023). Analisis Karakteristik Daya Output Inverter Pembangkit Listrik Tenaga Air Skala Kecil Menggunakan Arduino Muchsin Harahap dkk / Jurnal Rekayasa Mesin. 18(1), 105–112.
International, E. A. (2021). World Energy Outlook 2021. IEA. IEA. https://www.iea.org/reports/world-energy-outlook-2021
Mubarak, H., & Arham, M. (2024). Efisiensi Boiler Dan Turbin Uap Untuk PLTU Unit 2 PT . XYZ. 7(1), 49–62.
Nugroho, A., & S. (2018). Analisis potensi dan pengembangan pembangkit listrik tenaga mikrohidro di daerah terpencil. Jurnal Energi Terbarukan.
Of, H., & Indonesia, S. O. F. (2023). Handbook of energy & economic statistics of indonesia 2023. The Ministry of Energy and Mineral Resources.
Ramadhan, U. V., Sulistiono, D., Handoko, D., & Manurung, A. (2019). Pengembangan Sistem Akuisisi Data Otomatis Berbasis Arduino untuk Alat Uji Unjuk Kerja Turbin Air. 11(2), 108–119.
Rombe, M., Arham, M., Mubarak, H., & Taha, S. (2024). Analisis Performance Turbine Terhadap Peningkatan Kebutuhan Excess O 2 Secondary Boiler Pada Power Plan PT . Semen Tonasa Capacity Of 70 MW. 6, 219–236.
Sukandi, A., Abadi, C. S., Studi, P., Tenaga, P., & Jakarta, P. N. (2016). Sistem kontrol hidrolik berbasis. 15(3), 245–250.
Syahbana, Z., & Setiadi, R. (2025). JIM : Jurnal Inovasi Mesin Design of An IOT-Based Voltage and Current Monitoring System and Turbine Performance Analysis In A Micro Hydro Power Plant. 7(1), 52–67. https://doi.org/10.15294/jim.v7i1.23615
Teknik, F., Tanjungpura, U., & Makalah, I. (2025). Analisis potensi pembangkit listrik tenaga mikrohidro di sungai tang gi kabupaten bengkayang. 26(2).
Teknik, M., Universitas, E., Teknik, D., Universitas, E., Teknik, F., & Tadulako, U. (2020). RANCANG BANGUN SISTEM MONITORING DAYA PADA GENERATOR SINKRON. 32–38.
Tianhong Pan, Y. Z. (2017). Designing Embedded Systems with Arduino: A Fundamental Technology for Makers. Can Lend Chapters, Not Whole Ebooks.
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