Summary
For Africa to meet its 2030 SDG7 targets and ambition of attaining energy-for-all by 2040 and climate neutrality by 2063, the proportion of renewables in the current energy mix needs to be dramatically improved through robust and effective technologies, sustainable business models, a skilled technical workforce and an enabling regulatory environment. RePower will contribute to these efforts by demonstrating and validating a modular and scalable plug and play (PnP) microgrid system based on photovoltaics (PV) and biomass combined heat and power (BCHP) augmented with a battery energy storage system (BESS) and an intelligent energy management system (EMS), and by providing tools, processes and a roadmap to replicate the installation of this modular plug-and-play microgrid system at any other location. The modular and scalable RePower microgrid system will build upon the Solartainer, an existing and containerised PV-BESS solution that has already been successfully piloted by project partner, AGT, in 21 locations empowering 25,420 customers in remote off-grid locations and providing 934 SMEs with power in Mali, Niger and Chad. The new Solartainer RePower combined with a unique BCHP solution will have the capacity and flexibility to provide distributed, affordable, reliable and stable electricity as well as heat and cooling to off-grid communities in Senegal, Niger and Madagascar. Compared to the average PV-based microgrids currently on the market for Africa, the RePower setup including BCHP will improve the renewable energy generation capacity of the existing plants by over 50% while also reducing the unit cost of electricity by about 60 % – 70 % allowing consumers to extend electricity usage to the productive use of energy (PUE), such as farming, water pumping, food processing, construction and other small-scale industries. The modularity of the system allows sizing to meet the demands any specific application or locality, thus matching energy supply with demand.
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More information & hyperlinks
Web resources: | https://cordis.europa.eu/project/id/101096250 |
Start date: | 01-10-2023 |
End date: | 30-09-2027 |
Total budget - Public funding: | 12 706 411,57 Euro - 9 988 745,00 Euro |
Cordis data
Original description
For Africa to meet its 2030 SDG7 targets and ambition of attaining energy-for-all by 2040 and climate neutrality by 2063, the proportion of renewables in the current energy mix needs to be dramatically improved through robust and effective technologies, sustainable business models, a skilled technical workforce and an enabling regulatory environment. RePower will contribute to these efforts by demonstrating and validating a modular and scalable plug and play (PnP) microgrid system based on photovoltaics (PV) and biomass combined heat and power (BCHP) augmented with a battery energy storage system (BESS) and an intelligent energy management system (EMS), and by providing tools, processes and a roadmap to replicate the installation of this modular plug-and-play microgrid system at any other location. The modular and scalable RePower microgrid system will build upon the Solartainer, an existing and containerised PV-BESS solution that has already been successfully piloted by project partner, AGT, in 21 locations empowering 25,420 customers in remote off-grid locations and providing 934 SMEs with power in Mali, Niger and Chad. The new Solartainer RePower combined with a unique BCHP solution will have the capacity and flexibility to provide distributed, affordable, reliable and stable electricity as well as heat and cooling to off-grid communities in Senegal, Niger and Madagascar. Compared to the average PV-based microgrids currently on the market for Africa, the RePower setup including BCHP will improve the renewable energy generation capacity of the existing plants by over 50% while also reducing the unit cost of electricity by about 60 % – 70 % allowing consumers to extend electricity usage to the productive use of energy (PUE), such as farming, water pumping, food processing, construction and other small-scale industries. The modularity of the system allows sizing to meet the demands any specific application or locality, thus matching energy supply with demand.Status
SIGNEDCall topic
HORIZON-CL5-2022-D3-01-05Update Date
12-03-2024
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