JULIA
MERINO FERNANDEZ
Investigador/a en el periodo 2018-2021
Universidad Politécnica de Madrid
Madrid, EspañaPublicaciones en colaboración con investigadoras/es de Universidad Politécnica de Madrid (12)
2022
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Carbon-Free Electricity Generation in Spain with PV–Storage Hybrid Systems†
Energies, Vol. 15, Núm. 13
2021
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Fostering DER integration in the electricity markets
Distributed Energy Resources in Local Integrated Energy Systems: Optimal Operation and Planning (Elsevier), pp. 175-205
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Gender and STEAM as part of the MOOC STEAM4ALL
IEEE Global Engineering Education Conference, EDUCON
2020
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Advanced mobility communication
ICT for Electric Vehicle Integration with the Smart Grid (Institution of Engineering and Technology), pp. 1-36
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Determining the storage capacity for carbon-free generation mix scenario in Spain
Proceedings - 2020 IEEE International Conference on Environment and Electrical Engineering and 2020 IEEE Industrial and Commercial Power Systems Europe, EEEIC / I and CPS Europe 2020
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Electric vehicles as distributed energy storage for local energy management
ICT for Electric Vehicle Integration with the Smart Grid (Institution of Engineering and Technology), pp. 237-264
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Electric vehicles for renewable energy integration in isolated power systems
ICT for Electric Vehicle Integration with the Smart Grid (Institution of Engineering and Technology), pp. 285-316
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Peer-to-peer energy market between electric vehicles
ICT for Electric Vehicle Integration with the Smart Grid (Institution of Engineering and Technology), pp. 175-206
2019
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Shared Self-Consumption Economic Analysis for a Residential Energy Community
SEST 2019 - 2nd International Conference on Smart Energy Systems and Technologies
2018
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Electrical machines-based multi-disturbance device for testing distribution grid technologies
International Journal of Electrical Power and Energy Systems, Vol. 99, pp. 57-68
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Using Dynamic Neural Networks for Battery State of Charge Estimation in Electric Vehicles
Procedia Computer Science
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Using mobility information to perform a feasibility study and the evaluation of spatio-temporal energy demanded by an electric taxi fleet
Energy Conversion and Management, Vol. 157, pp. 59-70