HOMER sizing of a Diesel-PV-Battery hybrid system to supply an isolated site in southern Algeria

Main Article Content

Hadj Moussa Bahamida
Nawel Fekari
Yahia Bakelli
Abdelhamid Kaabeche
Yahia Zakaria Bouzouaoui

Abstract

Remote areas are often powered by oversized diesel generators, resulting in high investment and operating costs and significant greenhouse gas emissions. To address this issue, a methodology for optimal sizing of mini-hybrid PV/diesel/battery power plants, using HOMER software, has been presented. A case study was conducted to analyze a real hybridization project of a multi-generator diesel power plant located in the village of Moulay Lahcen, Tamanrasset, Algeria. The study aims to reduce the net present cost, the Levelized energy cost, and CO2 emissions. A comparison of different configurations of hybrid mini-power plants, with and without storage, has been conducted. The results show that a hybrid PV/diesel/battery system in AC/DC switched configuration is a reliable, cost-effective, and environmentally friendly option for the sustainable electrification of the studied remote areas. This configuration has the lowest net present cost (NPC) of $483443, a Levelized cost of energy (LCOE) of $0.132/kWh, a fuel consumption of 49868 liters/year and CO2 emissions of 130.434 tons/year. A sensitivity analysis of several parameters influencing the design of the studied systems was also carried out. This analysis highlighted that the price of fuel is one of the parameters that most influences the choice of the optimal hybrid system.

Article Details

Section

Articles

How to Cite

[1]
“HOMER sizing of a Diesel-PV-Battery hybrid system to supply an isolated site in southern Algeria”, J. Ren. Energies, vol. 28, no. 1, pp. 187 – 205, Jun. 2025, doi: 10.54966/dvvkj028.

References

Afonaa-Mensah, S., Odoi-Yorke, F., Babatunde Majeed, I., 2024. Evaluating the impact of industrial loads on the performance of solar PV/diesel hybrid renewable energy systems for rural electrification in Ghana. Energy Conversion and Management: X 21, 100525. https://doi.org/10.1016/j.ecmx.2024. 100525

Al-Orabi, A.M., Osman, M.G., Sedhom, B.E., 2023. Evaluation of green hydrogen production using solar, wind, and hybrid technologies under various technical and financial scenarios for multi-sites in Egypt. International Journal of Hydrogen Energy 48, 38535–38556. https://doi.org/10.1016/j.ijhydene. 2023.06.218

Aziz, A.S., Tajuddin, M.F.N., Hussain, M.K., Adzman, M.R., Ghazali, N.H., Ramli, M.A.M., Khalil Zidane, T.E., 2022. A new optimization strategy for wind/diesel/battery hybrid energy system. Energy 239, 122458. https://doi.org/10.1016/j.energy.2021.122458

Bouzid, Z., Ghellai, N., & Mezghiche, T. (2015). Overview of Solar Potential, State of the Art and Future of Photovoltaic Installations in Algeria. International Journal of Renewable Energy Research, 5(2), 427–434.

Duffie, J.A., Beckman, W.A., 2006. Solar Engineering of Thermal Processes, 3rd ed. Wiley.

Dufo-López, R., Bernal-Agustín, J.L., Yusta-Loyo, J.M., Domínguez-Navarro, J.A., Ramírez-Rosado, I.J., Lujano, J., Aso, I., 2011. Multi-objective optimization minimizing cost and life cycle emissions of stand-alone PV–wind–diesel systems with batteries storage. Applied Energy 88, 4033–4041. https://doi.org/10.1016/j.apenergy.2011.04.019

HOMER® Pro Version 3.7 User Manual, 2016.

Khaled, O., Zahid, M., Zahid, T., Ilahi, T., 2024. Techno-Economic Feasibility of Hybrid Energy Systems Installation in Pakistan. IEEE Access PP, 1. https://doi.org/10.1109/ACCESS.2024.3376409

Khirennas, A., Kaabeche, A., Talha, A., Bakelli, Y., 2021. A new optimal sizing methodology of storage-less PV system for retrofitting existing diesel-based power generation system within mini-grids. Energy Conversion and Management 250, 114854. https://doi.org/10.1016/j.enconman.2021.114854

Khirennas, A., Talha, A., Kaabeche, A., Bakelli, Y., 2020. Overview of fossil fuel-based hybrid power generation systems within mini-grids – The experience of storage-less PV system integration into three of the Great Algerian South mini-grids. Energy Conversion and Management 221, 113191. https://doi.org/10.1016/j.enconman.2020.113191

Kotb, K.M., Elkadeem, M.R., Elmorshedy, M.F., Dán, A., 2020. Coordinated power management and optimized techno-enviro-economic design of an autonomous hybrid renewable microgrid: A case study in Egypt. Energy Conversion and Management 221, 113185. https://doi.org/10.1016/j.enconman.2020. 113185

Mokhtara, C., Negrou, B., Settou, N., Gouareh, A., Settou, B., Chetouane, M.A., 2020. Decision-making and optimal design of off-grid hybrid renewable energy system for electrification of mobile buildings in Algeria: case study of drilling camps in Adrar. Algerian Journal of Environmental Science and Technology 6, 1323–1334.

Moien A. Omar, Techno-economic analysis of PV/diesel/battery hybrid system for rural community electrification: A case study in the Northern West Bank, Energy, 317, 2025, 134770, https://doi.org/10.1016/j.energy.2025.134770

Salau, A.O., Maitra, S.K., Kumar, A., Mane, A., Dumicho, R.W., 2024. Design, modeling, and simulation of a PV/diesel/battery hybrid energy system for an off-grid hospital in Ethiopia. e-Prime - Advances in Electrical Engineering, Electronics and Energy 8, 100607. https://doi.org/10.1016/j.prime.2024.100607

Suman, G.K., Yadav, S., Roy, O.P., 2021. HOMER Based Optimal Sizing of a PV/Diesel/Battery Hybrid System for a Laboratory Facility, 2020 3rd International Conference on Energy, Power and Environment: Towards Clean Energy Technologies, Shillong, Meghalaya, India, 2021, pp. 1-5, doi: 10.1109/ICEPE50861.2021.9404436.

Thirunavukkarasu, M., Sawle, Y., 2020. Design, analysis and optimal sizing of standalone PV/diesel/battery hybrid energy system using HOMER. IOP Conf. Ser.: Mater. Sci. Eng. 937, 012034. https://doi.org/10.1088/1757-899X/937/1/012034

Tiam Kapen, P., Medjo Nouadje, B.A., Chegnimonhan, V., Tchuen, G., Tchinda, R., 2022. Techno-economic feasibility of a PV/battery/fuel cell/electrolyzer/biogas hybrid system for energy and hydrogen production in the far north region of cameroon by using HOMER pro. Energy Strategy Reviews 44, 100988. https://doi.org/10.1016/j.esr.2022.100988

Zebboudj, M., Rekioua, D., Rekioua, T., 2024. Proposed technical-economic analysis of a hybrid system with battery storage in the off-grid case and on-grid using Homer Pro®. Journal of Electrical Systems 20, 204–224.

Similar Articles

You may also start an advanced similarity search for this article.

Most read articles by the same author(s)