Project description
Use Case scenarios and early trials
The energy sector has entered a period of major change which will continue for many years to come. The increasing proportion of electricity from renewable sources means that the architecture of the energy grid will have to support the distributed, in addition to the centralised, generation of energy and to adapt to a highly volatile supply e.g. from wind and solar generators. From the consumption perspective, electric vehicles will demand new load management patterns in the grids. At the same time, private and commercial consumers are being encouraged to reduce their energy use and electronics manufacturers are striving to reduce the energy use of their products. The energy supply will need to evolve into a dynamic system to provide the smart energy infrastructure needed to support society in 2020 and beyond.
Future Internet technologies will play a critical role in the development of Smart Energy infrastructures, enabling new functionality while reducing costs. In the FINSENY project, key actors from the ICT and energy sectors will team-up to identify the ICT requirements of Smart Energy Systems. This will lead to the definition of new solutions and standards, verified in a large scale pan-European Smart Energy trial. Project results will contribute to the emergence of a sustainable Smart Energy infrastructure, based on new products and services, to the benefit of all European citizens and the environment.
As part of the FI-PPP programme, FINSENY will intensively analyse energy-specific requirements together with the other FI-PPP projects, develop solutions to address these requirements, and prepare for a Smart Energy trial in phase two of the programme. The growing FINSENY Smart Grid Stakeholder Group will provide broad visibility of the on-going project work in the energy community, enhancing the acceptability of the project results and facilitating the development of the smart energy market.
Fields of science (EuroSciVoc)
CORDIS classifies projects with EuroSciVoc, a multilingual taxonomy of fields of science, through a semi-automatic process based on NLP techniques. See: https://op.europa.eu/en/web/eu-vocabularies/euroscivoc.
CORDIS classifies projects with EuroSciVoc, a multilingual taxonomy of fields of science, through a semi-automatic process based on NLP techniques. See: https://op.europa.eu/en/web/eu-vocabularies/euroscivoc.
- engineering and technologyenvironmental engineeringenergy and fuelsrenewable energy
- natural sciencescomputer and information sciencesinternet
- social sciencessocial geographytransportelectric vehicles
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Call for proposal
FP7-2011-ICT-FI
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Funding Scheme
CP - Collaborative project (generic)Coordinator
81541 MUNCHEN
Germany
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Participants (40)
1050 BRUXELLES
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5400 Baden
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52062 Aachen
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52070 AACHEN
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69190 Walldorf
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68309 Mannheim
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Participation ended
81541 Munchen
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52074 Aachen
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40549 Dusseldorf
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80333 Munchen
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70435 STUTTGART
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63069 OFFENBACH AM MAIN
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81371 Munchen
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58513 Lüdenscheid
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7330 Brande
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48009 Bilbao
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28050 Madrid
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28037 Madrid
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28033 MADRID
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02610 Espoo
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02044 VTT ESPOO
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38031 Grenoble Cedex 1
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92230 Gennevilliers
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75008 Paris
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92130 Issy Les Moulineaux
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34100 Chalkida
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D02 Dublin
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12 DUBLIN
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X91 Waterford
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00144 Roma
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00139 ROMA
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20123 Milano
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02-326 WARSZAWA
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20509 MALMO
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164 80 Stockholm
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38041 GRENOBLE
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LV-1010 Riga
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6812 AH ARNHEM
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030236 Bucuresti
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G2 8SP Glasgow
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