Analisis Kelayakan Pembangunan PLTS pada Kafe Pondok Juice
DOI:
https://doi.org/10.61132/venus.v3i3.856Keywords:
Solar-Power-Plant, feasibility, pondok-juiceAbstract
Indonesia, which is located on the equator, has great potential to utilize solar energy, with an average solar radiation reaching 4.80 kWh/m² per day. This provides an advantage in the development of Solar Power Plants (SPP), one of which is through the installation of rooftop on the roof of the building as a source of electrical energy. This study aims to analyze the feasibility of SPP development by considering the techno-economic aspects of the Pondok Juice cafe. The total real electrical energy consumption required by the Pondok Juice cafe is 32,548 Wh/day. Assuming a system loss of 15%, the total electrical energy requirement that must be supplied by the SPP is 37,430.2 Wh/day. The initial investment projection is IDR 204,265,197, with operational and maintenance costs for 25 years of IDR 105,760,028. The investment feasibility analysis shows NPV of IDR 441,523,820.10, BCR 4.11, DPP ±5 years, and IRR 15.55%, which proves that this SPP planning is feasible to implement.
References
Afandi, A. N., Fadlika, I., Gumilar, L., Andriansyah, M. R., Mistakim, E., Fakhri, A. S., Muazib, A., Asyhari, M. R. I., & Sidiq, M. F. (2021). Rancang bangun off-grid system pembangkit listrik tenaga surya (PLTS) sebagai modul pembelajaran bagi mahasiswa Universidade Oriental De Timor Lorosa’e (UNITAL). Prosiding SNAPP: Sosial Humaniora, Pertanian, Kesehatan dan Teknologi, 1(1), 349–359.
Ardiansyah, A., Setiawan, I. N., & Sukerayasa, I. W. (2021). Perancangan PLTS atap on grid system pada kantor Badan Perencanaan Pembangunan Daerah Penelitian dan Pengembangan Kota Probolinggo. Jurnal SPEKTRUM, 8(4).
Ariyani, S., Wicaksono, D. A., Fitriana, F., Taufik, R., & Germenio, G. (2021). Studi perencanaan dan monitoring system pembangkit listrik tenaga surya di remote area. Techné: Jurnal Ilmiah Elektroteknika, 20(2), 113–124.
Hayusman, L. M. (2022). Studi perencanaan panel kendali PLTS-PLN berdasarkan kapasitas baterai untuk PLTS off-grid. JST (Jurnal Sains Terapan), 8(1), 35–44.
Hendra, M. P., Pradana, R. A., Masulili, A. N., & Wisudanto, W. (2024). Mengukur kinerja dan analisis kelayakan investasi ditinjau dari aspek finansial pada pengadaan truck mounted crane di Kilang Sei Pakning. Sebatik, 28(1), 98–104.
Hidayat, F., Winardi, B., & Nugroho, A. (2019). Analisis ekonomi perencanaan pembangkit listrik tenaga surya (PLTS) di Departemen Teknik Elektro Universitas Diponegoro. Transient, 7(4), 875.
Hiswandi, M. F., Iswahyudi, F., & Soeroto, W. M. (2023). Analisis kelayakan investasi pembangkit listrik tenaga surya atap dengan sistem on-grid di pabrik minuman siap saji. Sebatik, 27(1), 22–29.
Husen Sobana, H. D. (2018). Studi kelayakan bisnis. Pustaka Setia.
Jamil, S. R., Wang, L., Tang, C., Khan, H. M. S., & Che, D. (2022). The role and impact of costing method in the decision‐making of energy project: A comparative assessment between levelized cost of energy and benefit‐to‐cost ratio analysis. International Journal of Energy Research, 46(4), 4754–4769.
Jannah, H. H. N., Styana, U. I. F., Kurniawan, A., & Hindarti, F. (2023). Analisis teknik dan ekonomi perencanaan PLTS rooftop sistem on-grid di SDN 1 Temuwuh. Proceeding of ITY Green Technology.
Kartika, W., & Oktarini, I. D. (2022). Pengaruh biaya operasional terhadap produktivitas tenaga kerja di KJPP Herman Meirizki Surabaya. Jurnal Akuntansi, 3(1).
Kim, J. (2022). Do NPV and IRR measure the profitability of investment opportunities? Conditions as measures of profitability. Journal of Korean Society of Industrial and Systems Engineering, 45(4), 167–173.
Mohan, K. S., Mahapatra, S., Febin, D. J. L., Perumal, T., Raj, S., & Prabhakaran, P. (2022). Economic feasibility studies of simple and discounted payback periods for 1 MWp ground mounted solar PV plant at Tirupati Airport. In Smart Grids and Microgrids: Technology Evolution (pp. 59–73).
Nurjaman, H. B., & Purnama, T. (2022). Pembangkit listrik tenaga surya (PLTS) sebagai solusi energi terbarukan rumah tangga. Jurnal Edukasi Elektro, 6(2), 136–142.
Puriza, M. Y., Yandi, W., & Asmar, A. (2021). Perbandingan efisiensi konversi energi panel surya tipe polycrystaline dengan panel surya monocrystaline berbasis Arduino di Kota Pangkalpinang. Jurnal Ecotipe (Electronic, Control, Telecommunication, Information, and Power Engineering), 8(1), 47–52.
Putra, I. W. S., Kumara, I. N. S., & Hartati, R. S. (2022). Analisis tekno ekonomi implementasi sistem PLTS atap pada gedung kantor Walikota Denpasar. Majalah Ilmiah Teknologi Elektro, 21(2), 185–194.
Rabaia, M. K. H., Abdelkareem, M. A., Sayed, E. T., Elsaid, K., Chae, K.-J., Wilberforce, T., & Olabi, A. G. (2021). Environmental impacts of solar energy systems: A review. Science of The Total Environment, 754, 141989.
Rafli, R., Ilham, J., & Salim, S. (2022). Perencanaan dan studi kelayakan PLTS rooftop pada gedung Fakultas Teknik UNG. Jambura Journal of Electrical and Electronics Engineering, 4(1), 8–15.
Rani, C. T. (2023). Perencanaan dan analisa tekno ekonomi PLTS on-grid system pada smart greenhouse Politeknik Negeri Jember menggunakan software PVSYST. [Tesis tidak dipublikasikan]. Politeknik Negeri Jember.
Setiawan, A., & Hermanto, A. (2022). Pengembangan perangkat lunak optimasi ekonomi dan analisa finansial PLTS studi kasus PLTS 10 MWAC. Jurnal Teknik Mesin Indonesia, 17(2), 59–71.
Sihotang, G. H. (2019). Perencanaan pembangkit listrik tenaga surya rooftop di Hotel Kini Pontianak. Journal of Electrical Engineering, Energy, and Information Technology (J3EIT), 7(1).
Suhendar, S. (2022). Dasar–dasar perencanaan pembangkit listrik tenaga surya. Media Edukasi Indonesia.
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