Preprint has been published in a journal as an article
DOI of the published article https://doi.org/10.47662/alulum.v13i1.862
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Capacity Analysis of Electric Energy System Needs of PLN and Solar Panel for Salt Making Proces

Analisa Kapasitas Kebutuhan Sistem Energi Listrik PLN dan Panel Surya Untuk Proses Pembuatan Garam

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DOI:

https://doi.org/10.21070/ups.7174

Keywords:

Energy Efficiency, Renewable Energy, Solar Power Plan, Salt Production, Hybrid System

Abstract

This study explores the use of solar power plants (PLTS) in a hybrid system with PLN electricity to support salt production, particularly in remote areas with limited electricity access. The objective is to design and optimize an efficient and sustainable renewable energy system. Data collection involves measuring key components, including voltage from the inverter to the stove powered by PLN and solar panels charging the battery. Tests indicate that salt production requires 700 watts from PLN for 1.5 hours, with an average voltage of 195-196V and a current of 3.3-4A. The solar panel voltage remains stable at 12.58V in sunny weather but drops to 12.21V when cloudy. Results confirm that the hybrid system effectively supports salt production by mitigating solar power fluctuations due to weather, ensuring a reliable energy supply.

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References

A. E. Setyono and B. F. T. Kiono, “Dari Energi Fosil Menuju Energi Terbarukan: Potret Kondisi Minyak dan Gas Bumi Indonesia Tahun 2020 – 2050,” Jurnal Energi Baru dan Terbarukan, vol. 2, no. 3, pp. 154–162, Oct. 2021, doi: 10.14710/jebt.2021.11157.

A. Zaenal, Jamaaluddin, A. Ahfas, D. Hadidjaja, and A. Falah, “Analisa Kapasitas Pembangkit Listrik Tenaga Surya (PLTS) untuk Pengering Kupang,” Techné : Jurnal Ilmiah Elektroteknika, vol. 23, no. 1, pp. 55–64, Apr. 2024, doi: 10.31358/techne.v23i1.415.

W. A. Prasetyo, A. W. Wisaksono, and I. S. Sulistiyowati, “Pembangkit Listrik Tenaga Picohydro Menggunakan Turbin Ulir Dengan Monitoring Berbasis Google Sheet Pada Aliran Sungai Desa Masangan Wetan,” Prosiding Sains Nasional dan Teknologi, vol. 12, no. 1, p. 527, Dec. 2022, doi: 10.36499/psnst.v12i1.7097.

L. Halim, “Analisis Teknis dan Biaya Investasi Pemasangan PLTS On Grid dan Off Grid di Indonesia,” RESISTOR (Elektronika Kendali Telekomunikasi Tenaga Listrik Komputer), vol. 5, no. 2, p. 131, Nov. 2022, doi: 10.24853/resistor.5.2.131-136.

A. Ahfas, D. R. Hadidjaja, S. Syahrorini, B. Studi Teknik Elektro, and F. Saintek, “ID CARD SEBAGAI CHARGER HP BERBASIS ENERGI TERBARUKAN,” 2022. [Online]. Available: https://pssh.umsida.ac.id.

J. Jamaaluddin et al., “Heat Transfer Management of Solar Power Plant for Dryer,” International Journal on Engineering Applications (IREA), vol. 12, no. 3, p. 195, May 2024, doi: 10.15866/irea.v12i3.23959.

J. Jamaaluddin, S. D. Ayuni, and I. A. S. Wulandari, “Design of Automatic Transfer Switch System Solar Power Plant – PLN,” Journal of Electrical Technology UMY, vol. 7, no. 2, pp. 57–64, May 2024, doi: 10.18196/jet.v7i2.14651.

A. A. G. A. Pawitra Putra, I. N. S. Kumara, and W. G. Ariastina, “Review Perkembangan PLTS di Provinsi Bali Menuju Target Kapasitas 108 MW Tahun 2025,” Majalah Ilmiah Teknologi Elektro, vol. 19, no. 2, p. 181, Dec. 2020, doi: 10.24843/MITE.2020.v19i02.P09.

L. Maurina, M. Mahlinda, A. Thalib, and R. Kurniawan, “Produksi garam di lahan geomembran: Perhitungan kapasitas produksi, mutu dan perbandingannya dengan garam tradisional,” Jurnal Litbang Industri, vol. 11, no. 2, p. 138, Dec. 2021, doi: 10.24960/jli.v11i2.6935.138-144.

Y. Ulfidatul, H. Fakultas, and E. Dan Bisnis, “Jurnal Studi Manajemen dan Bisnis PENINGKATAN KUALITAS PRODUKSI GARAM MENGGUNAKAN TEKNOLOGI GEOMEMBRAN,” 2019. [Online]. Available: http://journal.trunojoyo.ac.id/jsmb

W. Y. Pratama and A. Z. Abidin, “KAJIAN EKSISTENSI PRODUK GARAM DARAT DI DESA JONO, KECAMATAN TAWANGHARJO, KABUPATEN GROBOGAN, JAWA TENGAH,” Jurnal EMT KITA, vol. 7, no. 2, pp. 351–361, Mar. 2023, doi: 10.35870/emt.v7i2.937.

Sapto Prayogo, “Pengembangan sistem manajemen baterai pada PLTS menggunakan on-off grid tie inverter,” vol. Vol 9 No 1, no. JURNAL TEKNIK ENERGI, pp. 58–59, Nov. 2019.

S. D. Ayuni, S. Syahrorini, and J. Jamaaluddin, “Lapindo Embankment Security Monitoring System Based on IoT,” Elinvo (Electronics, Informatics, and Vocational Education), vol. 6, no. 1, pp. 40–48, Sep. 2021, doi: 10.21831/elinvo.v6i1.40429.

A. Haris et al., “Technology Sun Tracking System for Solar Power Plants Base on Recurrent Neural Networks,” in Proceedings of the International Seminar of Science and Applied Technology (ISSAT 2020), Paris, France: Atlantis Press, 2020. doi: 10.2991/aer.k.201221.038.

I. A. E. R. & D. K. Aji. Jamaaluddin Jamaaluddin, “Analisa Perbandingan PWM Dan MPPT Untuk Beban Di Atas 200 W,” no. Vol. 3 No. 1 (2020): Sinarfe7-3 2020, pp. 1–2, Sep. 2020.

I. Sulistiyowati, H. Kurniawan, Jamaaluddin, E. A. Suprayitno, and R. Rahim, “Application of Bidirectional DC-DC Converter for Saving Energy on Photovoltaic,” IOP Conf Ser Mater Sci Eng, vol. 434, p. 012214, Dec. 2018, doi: 10.1088/1757-899X/434/1/012214.

I. Anshory et al., “Monitoring solar heat intensity of dual axis solar tracker control system: New approach,” Case Studies in Thermal Engineering, vol. 53, p. 103791, Jan. 2024, doi: 10.1016/j.csite.2023.103791.

Posted

2025-02-05