This paper focuses on Cameroon, a country rich in energy resources but with unequal distribution and exploitation. It highlights the lack of access to electricity in rural areas, especially in
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No comprehensive study has been done to determine the reliability, performance, and sustainability of the hybrid power stations in the Cameroonian context. Moreover, the Tongou hydropower station installed by an NGO suffered from acute power outages owing to poor system design .
The mean annual daily global solar irradiation is about 5.2 kWh/m 2 /day with peak sun hours of about 5 h per day thus, making solar energy a promising energy source. Cameroon has many small-scale to large-scale rivers with the potential for power production especially in remote areas .
Pumped-hydro storage plants, because of their mode of operation, would significantly contribute to Cameroon’s energy policy in that they would facilitate the integration of variable energy sources and improve on the required flexibility to regulate possible grid congestion.
These properties can be used in the compensation of the fluctuating solar PV output and hence, supply stable electricity to users. Cameroon’s location around the equator in West Africa and its tropical climate expose it to sufficient global solar insolation with a GHI ranging between 4.9 kWh/m 2 /day and 5.8 kWh/m 2 /day .
Research on the subject of hydro-based hybrid system optimization is limited, especially for Cameroon. As of 2019, Cameroon’s rural electrification rate was 32% while the national electricity access rate was 63% .
Nonetheless, it remains under-exploited with large hydro having an exploitation rate of less than 5%, 0% for pumped-hydro and <0.1% for small-hydro. Hybridizing these small hydro-based renewables with other sources can contribute in stabilizing the transmission network in Cameroon.