
Access to reliable electricity remains a major challenge in off-grid regions of Sub-Saharan
Africa. This study presents a techno-economic assessment and optimization of a hybrid
photovoltaic (PV)–battery–diesel energy system for rural electrification in Popokabaka.
The system was modeled and optimized using HOMER Pro, considering multiple
configurations and performance indicators such as Net Present Cost (NPC), Levelized Cost
of Energy (LCOE), renewable energy fraction, and emissions.
Results show that the PV–battery–diesel configuration is optimal, achieving a renewable
fraction of 97% and reducing diesel consumption by 98%, corresponding to annual fuel
savings of approximately 297,000 liters. The system yields an LCOE of $0.1799/kWh and
a payback period of 6.11 years.
These findings confirm that hybrid renewable energy systems provide a cost-effective,
reliable, and environmentally sustainable solution for rural electrification and can serve as
a scalable model for similar off-grid regions.