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| Funder | Swedish Energy Agency |
|---|---|
| Recipient Organization | Kth, Royal Institute of Technology |
| Country | Sweden |
| Start Date | Jan 04, 2021 |
| End Date | Dec 20, 2024 |
| Duration | 1,446 days |
| Data Source | Swedish Research Council |
| Grant ID | P2020-90107_Energi |
Cities are responsible for a 70% share of global CO2 emissions.
Therefore, there is a high potential for emissions reduction in improving the energy footprint of urban built environments.
Since cities are very dynamic and dense ecosystems, they offer numerous options that can be developed to reach the climate targets. One promising option is the integration of solar PV coupled with energy storage systems (ESS).
The aim on this project is to study the implementation and optimal operation of turnkey solutions involving solar PV coupled to energy storage systems (PV-ESS).
For this, a two-fold approach where the impact of policy modifications is investigated by means of techno-economic scenario analyses while also demonstrating the PV-ESS system solution at KTH Live-In Lab.
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