Sistem Pembangkit Listrik Panel Surya Atap Model 0n-Grid Dengan Kapasitas 62.4 kWp

Authors

  • Muhammad Suyanto IST AKPRIND Yogyakarta
  • Prasetyono Eko Pambudi IST AKPRIND Yogyakarta
  • Faisal Wildan Chotami IST AKPRIND Yogyakarta

DOI:

https://doi.org/10.34151/jurtek.v16i2.4527

Keywords:

inverter, solar radiation, solar panel

Abstract

Solar panels are one of the renewable alternative energies that can be used as primary energy in generating electrical energy through the Solar Power Plant (PLTS) system. The main ingredient of PLTS is the radiation produced by the sun every day.On the roof of the Smart and Green Learning Center (SGLC) Building, Faculty of Engineering UGM, an on-grid solar power plant with a capacity of 62.4 kWp is installed with a total of 156 solar panel modules. The power generated by PLTS can reach 205.627 kW or 183 kWh in sunny conditions in cloudy the power generated by PLTS is 73.781 kW or 66 kWh with the amount of light intensity absorbed reach 110,966 Lux and the lowest value to be reaching 3,407 Lux. The amount of solar irradiation received is directly proportional to the amount of solar light intensity produced with the largest radiation reaching 877 W/m2 while the lowest radiation is 27 W/m2. The aims to know the value of the power generated by PLTS through the inverter and to determine the value of economic savings from the installed PLTS

Downloads

Download data is not yet available.

References

Hidayat, Ta’lim Nur, and Sutrisno Rohmat.S. 2021. Analisis Output Daya Pada Pembangkit Listrik Tenaga Surya Dengan Kapasitas 10Wp, 20Wp, Dan 30Wp. Jurnal Crankshaft 4(2):9–18. doi: 10.24176/crankshaft.v4i2.6013.

Kristiawan, H., I. N. S. Kumara, and I. A. D. Giriantari. 2019. Potensi Pembangkit Listrik Tenaga Surya Atap Gedung Sekolah Di Kota Denpasar. Jurnal SPEKTRUM 6(4):66. doi: 10.24843/spektrum.2019.v06.i04.p10.

Muin, Haziz, Danar Susilo Wijayanto, and Indah Widiastuti. 2020. Studi Perbandingan Penggunaan Panel Surya Dengan Turbin Angin Sebagai Sumber Energi Listrik Alternatif Di Kampus Universitas Sebelas Maret Surakarta. NOZEL Jurnal Pendidikan Teknik Mesin 2(1):27. doi: 10.20961/nozel.v1i3.34503.

Nurjaman, Hendi Bagja, and Trisna Purnama. 2022. Pembangkit Listrik Tenaga Surya (PLTS) Sebagai Solusi Energi Terbarukan Rumah Tangga. Jurnal Edukasi Elektro 6(2): 136–42.

Purwoto, Bambang Hari, Jatmiko Jatmiko, Muhamad Alimul Fadilah, and Ilham Fahmi Huda. 2018. Efisiensi Penggunaan Panel Surya Sebagai Sumber Energi Alternatif. Emitor: Jurnal Teknik Elektro 18(1): 10–14.

Salim, Sardi. 2022. Perencanaan Dan Studi Kelayakan PLTS Rooftop Pada Gedung Fakultas Teknik UNG, Gorontalo. 4.

Suyanto, M., T. Rusianto, and Subandi. 2020. Development of a Household Solar Power Plant: System Using Solar Panels. IOP Conference Series: Materials Science and Engineering 807(1). doi: 10.1088/1757-899X/807/1/012007.

Usman, Mukhamad. 2020. Analisis Intensitas Cahaya Terhadap Energi Listrik Yang Dihasilkan Panel Surya. Power Elektronik: Jurnal Orang Elektro 9(2):52–57. doi: 10.30591/polektro.v9i2.2047.

Published

2023-12-07

How to Cite

Suyanto, M., Eko Pambudi, P. ., & Wildan Chotami, F. . (2023). Sistem Pembangkit Listrik Panel Surya Atap Model 0n-Grid Dengan Kapasitas 62.4 kWp . Jurnal Teknologi, 16(2), 153–161. https://doi.org/10.34151/jurtek.v16i2.4527