Analisis Levelized Cost of Electricity (LCoE) pada PLTS Terapung dengan PLTS di Daratan: Study Kasus Pulau Kodingareng, Makassar Sulawesi Selatan
DOI:
https://doi.org/10.61132/globe.v3i1.741Keywords:
Floating PV, economic feasibility, Levelized Cost of Electricity (LCoE)Abstract
Indonesia, as an archipelagic country with over 17,000 islands, faces significant challenges in providing electricity access, particularly to small and remote islands. One promising solution is Solar Power Plants (PLTS), both land-based and floating solar plants that utilize water surfaces, suitable for areas with limited land availability. This study evaluates the economic feasibility of floating solar plants and land-based solar plants using the Levelized Cost of Electricity (LCoE) approach. LCoE encompasses all costs of construction, operation, maintenance, and energy production over the plant's lifespan, serving as a key benchmark in selecting power generation technologies. The findings show that the LCoE for floating solar plants is Rp11,197.00/kWh, lower than land-based solar plants at Rp11,769.00/kWh, although both exceed the electricity purchase price in Kodingareng, South Sulawesi, at Rp2,460.00/kWh. This difference is influenced by higher construction costs for floating solar plants but offset by greater energy output and lower operation and maintenance costs. This research provides a basis for developing solar power systems in archipelagic regions, emphasizing efficiency and sustainable energy solutions.
References
Danu, A. R. (2021, April 22). Analisa Keekonomian Tarif Listrik Untuk Pembangkit Listrik Tenaga Surya FTI UII 5 kWp dengan Metode Life Cycle Cost (LCC). Dspace. https://dspace.uii.ac.id/handle/123456789/28271.
ESDM One Map. (2021). Diakses 7 Maret 2022. [Online]. https://geoportal.esdm.go.id/ebtke/
ESDM. (2020). SIARAN PERS, PLTS Terapung Pertama Di Indonesia dan Terbesar di Asia Tenggara Resmi Dibangun. Diakses 8 Maret 2022.[Online].https://ebtke.esdm.go.id/post/2020/12/18/2737/plts.terapung.pertama.di.indonesia.dan.terbesar.di.asia.tenggara.resmi.dibangun.
ESMAP. (2020). Global Photovoltaic Power Potential by Country. Washington, DC: World Bank.
I.B.K. Sugirianta, I.A.D. Giriantari, I.N.S. Kumara. 2016. ”Analisa Keekonomian Tarif Listrik Pembangkit Listrik Tenaga Surya 1 MWP Bangli Dengan Metode Life Cycle Cost” Majalah Ilmiah Teknologi Elektro, Vol. 15, No.2, Juli-Desember 2016.
K. Trapani and M. R. Santafe (2014). "A review of floating photovoltaic installations 2007–2013". Prog. Photovolt: Res. Appl.
Nursanti., Syahrul., Tamsil, A. (2018). “Alternatif Livelihood Development Strategies to Increase the Income of Fishing Households on the Kodingareng Island of Makassar”. Journal of Indonesian Tropical Fisheries ISSN 2655 4461 Vol. 1, No 1, 49-58.
Radhiansyah, T. D. Rachmilda and D. Hamdani. (2021). "Performance Analysis of Offshore Floating PV Systems in Isolated Area," 3rd International Conference on High Voltage Engineering and Power Systems (ICHVEPS), Bandung, Indonesia, 2021, pp. 651-655, doi: 10.1109/ICHVEPS53178.2021.9600926.
Radhiansyah. (2022). Analisis Kinerja Plts Terapung Laut Di Area Terisolasi [Tesis Magister, Institut Teknologi Bandung]. ITB Repository. Bandung, Indonesia.
Ramasamy, Vignesh, & Margolis, Robert. Floating Photovoltaic System Cost Benchmark: Q1 2021 Installations on Artificial Water Bodies. United States. https://doi.org/10.2172/1828287.
Ramasamy, Vignesh, & Margolis, Robert. Floating Photovoltaic System Cost Benchmark: Q1 2021 Installations on Artificial Water Bodies. United States. https://doi.org/10.2172/1828287.
Solcast. (2020). Accessed in August. 23, 2021. [Online]. Available: https://solcast.com/
Tiwari, G. N. & Dubey. S. (2010). Fundamentals of Photovoltaic Modules and Their Applications. Centre for Energy Studies, Indian Institute of Technology (IIT) Delhi, New Delhi, India, RSC publishing, pp. 59-67.
Umoette, A. T., Ubom, E. A., & Festus, M. U. (2016). Design of stand-alone offshore floating PV system for Ibeno health centre. Science Journal of Energy Engineering, 4(6), 56–61.
Wicaksono, Bernardus G.D. (2019): Perancangan Sistem Tenaga Listrik Hibrida Off-Grid untuk Beban Komunal dan Beban Administratif di Desa Amaru, Asmat, Papua, Tesis Program Magister, Institut Teknologi Bandung.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2025 Globe: Publikasi Ilmu Teknik, Teknologi Kebumian, Ilmu Perkapalan

This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.