ANALISIS OPTIMALISASI KONTRIBUSI ENERGI PLTS PADA SISTEM HIBRIDA PLTS–MIKROHIDRO 500 W UNTUK PENERANGAN JALAN UMUM AREA PERKEBUNAN DI KELURAHAN TARATARA

Authors

  • Miracle Marqiano Johanes Runtuewene Politeknik Negeri Manado
  • Christo Mamusung Politeknik Negeri Manado
  • Michelle Bianca Mantow Politeknik Negeri Manado
  • Maureen Langie Politeknik Negeri Manado
  • Donald Bastian Noya Politeknik Negeri Manado

DOI:

https://doi.org/10.23969/jp.v11i02.48742

Keywords:

energy optimisation, hybrid system, microhydro, photovoltaic, public street lighting

Abstract

The integration of solar photovoltaic (PV) generation into a hybrid energy system introduces an inherent challenge: the intermittent nature of solar irradiance often produces unstable power output, particularly under cloudy or rainy conditions. This study analyses the optimisation of PV energy contribution in a 500 W hybrid PV–microhydro system supplying a public street lighting (PJU) load in the plantation area of Taratara Village, Tomohon City. A prototype combining a 250 Wp polycrystalline PV module and an undershot waterwheel coupled to a permanent magnet generator was designed, fabricated, and tested. Time-series data were collected for solar irradiance, water discharge, output voltage, current, and real power under varying weather conditions. The data were used to map the correlation between irradiance fluctuation and PV conversion efficiency, and to compute the percentage of PV contribution to the total daily energy generated. Projected results indicate that PV contributes around 15–17% of the total daily energy on clear days and drops to 5–6% on overcast days, while the microhydro generator delivers a stable baseload of approximately 250 W throughout the day. The study recommends an MPPT-based dispatch strategy and a battery sizing of at least 100 Ah at 12 V to ensure load continuity. The findings can serve as a technical reference for future deployment of hybrid renewable street lighting in similar rural plantation areas.

Downloads

Download data is not yet available.

References

Bhandari, B., Lee, K. T., Lee, C. S., Cho, Y. M., & Ahn, S. H. (2014). A novel off-grid hybrid power system comprised of solar photovoltaic, wind, and hydro energy sources. Applied Energy, 133, 236–242.

Daryanto, Y. (2007). Kajian Potensi Angin untuk Pembangkit Listrik Tenaga Bayu. Yogyakarta: Balai PPTAGG–UPT-LAGG.

Hidayat, R., & Suryani, A. (2020). Analisis Kinerja Sistem Hibrida PLTS–PLTMH untuk Penerangan Jalan Umum Pedesaan. Jurnal Teknik Elektro Indonesia, 12(2), 145–156.

Kadir, A. (1995). Energi: Sumber Daya, Inovasi, Tenaga Listrik, dan Potensi Ekonomi (Edisi ke-2). Jakarta: UI Press.

Khan, F. A., Pal, N., & Saeed, S. H. (2018). Review of solar photovoltaic and wind hybrid energy systems for sizing strategies optimization techniques and cost analysis methodologies. Renewable and Sustainable Energy Reviews, 92, 937–947.

Lasabuda, R., & Pongoh, J. (2019). Pemanfaatan Energi Mikrohidro pada Saluran Irigasi di Sulawesi Utara: Studi Kelayakan Teknis. Jurnal Realtech, 15(1), 23–32.

Manolakos, D., Papadakis, G., Papantonis, D., & Kyritsis, S. (2004). A stand-alone photovoltaic power system for remote villages using pumped water energy storage. Energy, 29(1), 57–69.

Nasir, A. (2020). Analisis Kebijakan Subsidi Listrik Pedesaan dan Pengaruhnya terhadap Pembangunan Infrastruktur PJU. Jurnal Energi dan Ketenagalistrikan, 14(3), 201–214.

Patel, M. R. (2005). Wind and Solar Power Systems: Design, Analysis, and Operation (2nd ed.). Boca Raton: CRC Press.

Petruzella, F. D. (2001). Elektronika Industri (Terj.). Yogyakarta: Andi Offset.

Rahman, F., & Setiawan, A. (2023). Optimalisasi Pengoperasian Sistem Hibrida PLTS–Pikohidro Berbasis MPPT pada Beban Penerangan Jalan. Jurnal Nasional Teknik Elektro, 12(1), 45–53.

Rashid, M. H. (2014). Power Electronics: Devices, Circuits, and Applications (4th ed.). Upper Saddle River: Pearson.

Sianipar, R. (2014). Perencanaan Pembangkit Listrik Tenaga Mikrohidro (PLTMH). Jurnal Teknik Mesin, 4(3), 13–25.

Standar Nasional Indonesia. (2008). SNI 7391:2008 – Spesifikasi Penerangan Jalan di Kawasan Perkotaan. Jakarta: Badan Standardisasi Nasional.

Sumanto. (2013). Mesin Arus Searah dan Generator Sinkron. Jakarta: Andi.

Wibowo, T., Pratama, R. A., & Sari, D. P. (2024). Strategi Dispatch Energi pada Sistem Hibrida Surya–Hidro Skala Kecil untuk Aplikasi PJU Pedesaan. Jurnal Energi Terbarukan Indonesia, 8(2), 88–101.

Yusuf, M. I. (2016). Perahu Listrik Untan di Sungai Kapuas. Pontianak: Universitas Tanjungpura.

Zamista, A. A. (2017). Perancangan Solar Cell untuk Kebutuhan Energi Listrik pada Kapal Nelayan. Jurnal Untek, 10(1), 1–7.

Downloads

Published

2026-05-20