Considering distribution grids and local flexibilities in the prospective development of the European power system by 2050
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DOI: 10.1016/j.apenergy.2020.114958
Note: View the original document on HAL open archive server: https://hal.science/hal-03133109
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Cited by:
- Reveron Baecker, Beneharo & Candas, Soner, 2022. "Co-optimizing transmission and active distribution grids to assess demand-side flexibilities of a carbon-neutral German energy system," Renewable and Sustainable Energy Reviews, Elsevier, vol. 163(C).
- Kosman, Wojciech & Rusin, Andrzej & Reichel, Piotr, 2023. "Application of an energy storage system with molten salt to a steam turbine cycle to decrease the minimal acceptable load," Energy, Elsevier, vol. 266(C).
- Manuela Ingaldi & Dorota Klimecka-Tatar, 2020. "People’s Attitude to Energy from Hydrogen—From the Point of View of Modern Energy Technologies and Social Responsibility," Energies, MDPI, vol. 13(24), pages 1-19, December.
- Deng, Xu & Lv, Tao & Xu, Jie & Hou, Xiaoran & Liu, Feng, 2022. "Assessing the integration effect of inter-regional transmission on variable power generation under renewable energy consumption policy in China," Energy Policy, Elsevier, vol. 170(C).
- Hakim Azaioud & Robbert Claeys & Jos Knockaert & Lieven Vandevelde & Jan Desmet, 2021. "A Low-Voltage DC Backbone with Aggregated RES and BESS: Benefits Compared to a Traditional Low-Voltage AC System," Energies, MDPI, vol. 14(5), pages 1-28, March.
- Neetzow, Paul, 2021. "The effects of power system flexibility on the efficient transition to renewable generation," Applied Energy, Elsevier, vol. 283(C).
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More about this item
Keywords
Long-term planning; European transmission grid; Distribution grids; Variable energy resources; Storage systems; Flexibility solutions;All these keywords.
NEP fields
This paper has been announced in the following NEP Reports:- NEP-BAN-2022-03-21 (Banking)
- NEP-ENE-2022-03-21 (Energy Economics)
- NEP-ENV-2022-03-21 (Environmental Economics)
- NEP-REG-2022-03-21 (Regulation)
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