Foldable Solar Container: Mobile Power for Africa''s Future
Foldable containers deploy in hours with minimal equipment, providing immediate power for emergency and remote applications across Africa. Innovative folding mechanism reduces
model OnSSET to estimate granular and spatially explicit levelized costs of electricity and costs per person per day (pp/d) for 40 countries in SSA. We nd that solar-powered mini-grids and standalone systems drastically lower the cost of electrifying remote and high-cost areas, particularly for lower tiers of electri cation.
We find that solar-powered mini-grids and standalone systems drastically lower the cost of electrifying remote and high-cost areas, particularly for lower tiers of electrification. On average, least-cost electrification in SSA at Tier 3 (ca. 365 kWh/household/year) can be provided at 14c USD/kWh or 7c USD pp/d.
We further observe that the LCOE is similar across tiers for the first 30% of the unelectrified population because these people live in urban or peri-urban areas with existing grid connections. Hence, least-cost electrification takes place via grid densification, which serves different tiers at similar cost.
The levelized cost of electricity (LCOE) to electrify with grid only increases dramatically at around 500 million people. Adding MG and SAS can further reduce the LCOE.
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