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• Hybrid power systems can provide sustainable energy for remote areas in Iraq, reducing reliance on fossil fuels. • Optimized configurations using PV, wind, battery, and diesel generators minimize costs and environmental impact. • The PV/WT/BESS/DG system achieved the lowest LCOE of 0. 0521 per kWh with 99. 3 % renewable energy. • Sensitivity analysis validates the hybrid system's performance under varying solar and wind conditions. • The system design is scalable and offers a framework for long-term energy solutions in off-grid regions. This study investigates the potential of hybrid power systems to provide sustainable and cost-effective energy solutions for remote communities in Iraq. Iraq primarily relies on fossil fuels for electricity generation, despite possessing significant untapped renewable energy potential. This research evaluates the techno-economic and environmental performance of a hybrid power system combining photovoltaic (PV) arrays, wind turbines (WT), battery energy storage systems (BESS), and diesel generators (DG) for remote areas, using Baghdad as a case study. Using HOMER Pro software, five optimized configurations were modeled and analyzed in terms of energy output, levelized cost of energy (LCOE), net present cost (NPC), and carbon dioxide emissions (CO2). The results demonstrate that the PV/WT/BESS/DG configuration is the optimal solution, generating an annual energy output of 90. 113 MWh, of which 71. 7 % (64. 652 MWh/year) is contributed by the PV arrays, 27. 8 % (25. 033 MWh/year) by wind turbines, and only 0. 475 % (0. 428 MWh/year) by diesel generators. Moreover, the economic analysis reveals that the optimal hybrid configuration achieves the lowest LCOE of 0. 0521 per kWh and an NPC of 40, 681. Furthermore, this system configuration reduces CO2 emissions to 426. 337 kg/year, significantly lower than the emissions of alternative configurations such as the PV/BESS/DG system, which emits 33, 384 kg/year. Finally, this research presents a realistic framework for the implementation of renewable energy systems in distant parts of Iraq, delivering a scalable, economically feasible, and ecologically sustainable approach to address increasing energy needs while reducing dependence on fossil fuels.
Qasim et al. (Wed,) studied this question.