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4 Projects, page 1 of 1
Open Access Mandate for Publications and Research data assignment_turned_in Project2023 - 2029Partners:MARITIME CENTER OF EXCELLENCE D.O.O, SNAM S.P.A., MINISTRY OF THE ENVIRONMENT,CLIMATE AND ENERGY, UL, University of Rijeka +24 partnersMARITIME CENTER OF EXCELLENCE D.O.O,SNAM S.P.A.,MINISTRY OF THE ENVIRONMENT,CLIMATE AND ENERGY,UL,University of Rijeka,ACI D.D,GITONE KVARNER D.O.O.,GRAD CRES,FENO,FHA,Ministry of Economy,META Group,ABS,CTS H2 S.R.L.,UNITS,FABER,INDELOOP DOO,ECUBES TEHNOLOGIJE D.O.O.,Ministry of Infrastructure,FBK,CONSORZIO,ALPACEM CEMENT, DD,TPL FVG S.C. A R.L.,ACTIVE SOLERA JEDNOSTAVNO DRUSTVO S OGRANICENOM ODGOVORNOSCU ZA USLUGE,STEKLARNA HRASTNIK DRUZBA ZA PROIZVPROIZVODNJO STEKLENIH IZDELKOV DOO,Dilj d.o.o.,HSE,ACEGASAPSAMGA S.P.A.,REGIONE FVGFunder: European Commission Project Code: 101111927Overall Budget: 343,783,008 EURFunder Contribution: 24,996,800 EURThe North Adriatic Hydrogen Valley – NAHV project builds on the LoI signed in March 2022 by representatives of the Slovenian Ministry of Infrastructure, Croatian Ministry of Economy and Sustainable Development and Friuli Venezia Giulia (FVG) Autonomous Region in Italy, contributing to the European Green Deal and European Hydrogen Strategy goals. The project’s high-level objective is the creation of a hydrogen-based economic, social and industrial ecosystem based on the capacity of the quadruple helix actors. This will drive economic growth, generating new job opportunities in the framework of both the green and digital transitions and, by creating the conditions for wider EU replicability, it will contribute to the creation of a European Hydrogen Economy, To fulfil these objectives the NAHV project involves a well-rooted partnership of 36 organizations (of which 2 in Hydrogen Europe, 3 in Hydrogen Europe Research), covering the transnational Central European area of 3 territories - Slovenia, Croatia and FVG Region, demonstrating cross-border integration of hydrogen production, distribution and consumption, and exchange of over 20% of NAHV annual hydrogen production of over 5000 tons. The project will activate 17 testbed applications in their related ecosystems, clustered in 3 main pillars - hard to abate, energy and transport sectors. These will act as real-life cases for piloting global hydrogen markets, moving from TRL 6 at the beginning to TRL 8 at the end of the project. Four fuel cell applications in the energy and transport sectors will be demonstrated. Testbeds will then be scaled up at industrial level as a replicable model, contributing to the decarbonisation of the 3 territories by harnessing renewables to improve system resilience, security of supply and energy independence. Replicability will also be ensured for the whole NAHV model, with the uptake of at least 5 additional hydrogen valleys in Europe, particularly in Central and South Eastern Europe.
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For further information contact us at helpdesk@openaire.euOpen Access Mandate for Publications and Research data assignment_turned_in Project2019 - 2023Partners:APG, UBITECH, BORZEN DOO, University of Zagreb, Faculty of Electrical Engineering and Computing, ED LUXEMBOURG +27 partnersAPG,UBITECH,BORZEN DOO,University of Zagreb, Faculty of Electrical Engineering and Computing,ED LUXEMBOURG,UNIPER HUNGARY ENERGETIKAI KFT,Smart Wires Europe,BUTE,HEP - OPERATOR PRIJENOSNOG SUSTAVA d.o.o.,C & G SKUPINA, INVESTIRANJE IN SVETOVANJE DOO,UBITECH ENERGY,ECO ESO ELECTRICITY SYSTEM OPERATOR,OPERATORI SISTEMIT TE TRANSMETIMITOST - SHOQERI ANONIME,CINTECH SOLUTIONS LTD,TECH INSPIRE LTD,WEATHER2UMBRELLA LTD,IEIT,CIRCE,HSE,INDEPENDENT SYSTEM OPERATOR IN BOSNIA AND HERZEGOVINA,University of Bucharest,HUPX MAGYAR SZERVEZETT VILLAMOSENERGIA-PIAC ZARTKORUEN MUKODO RESZVENYTARSASAG,MAVIR ZRT,COMPANIA NATIONALA DE TRANSPORT AL ENERGIEI ELECTRICE TRANSELECTRICA SA,ME Innnovations,ADMIE,SOFTWARE COMPANY EOOD,SCHWEITZER ENGINEERING LABORATORIES ESPANA, SL,UNIZG,INDEPENDENT BULGARIAN ENERGY EXCHANGE,Studio elektronike Rjieka,MONITEC GMBHFunder: European Commission Project Code: 864274Overall Budget: 13,643,700 EURFunder Contribution: 9,996,500 EURTo achieve its energy goals EU needs to establish a geographically large market by initially improving its cross-border electricity interconnections. A geographically large market, based on imports and exports of electricity, could increase the level of competition, boost the EU’s security of electricity supply and integrate more renewables into energy markets. Electricity should, as far as possible, flow between Member States as easily as it currently flows within Member States, so as to increase sustainability potential and real competition as well as to drive economic efficiency of the energy system. To this end, FARCROSS aims to address this challenge by connecting major stakeholders of the energy value chain and demonstrating integrated hardware and software solutions that will facilitate the “unlocking” of the resources for the cross-border electricity flows and regional cooperation. The project will promote state-of-the-art technologies to enhance the exploitation/capacity/efficiency of transmission grid assets, either on the generation or the transmission level. The hardware and software solutions will increase grid observability to facilitate system operations at a regional level, exploit the full potential of transmission corridors for increased electricity flows that will facilitate transition to flow-based regional market coupling, consider cross-border connections and their specific ICT and grid infrastructure, planning to use a wide-area protection approach to ensure the safe integration of renewable energy sources into the grid, mitigate disturbances, increase power system stability. An innovative regional forecasting platform will be demonstrated for improved prognosis of renewable generation and demand response and a capacity reserves optimization tool will be tested to maximize cross-border flows. The non-harmonization of national regulation will be studied and measures will be recommended to avoid distortion of the technology benefits.
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For further information contact us at helpdesk@openaire.euOpen Access Mandate for Publications assignment_turned_in Project2018 - 2022Partners:EPFL, SAFT SAS, RSE SPA, Paris Dauphine University, University of Duisburg-Essen +28 partnersEPFL,SAFT SAS,RSE SPA,Paris Dauphine University,University of Duisburg-Essen,ENSIEL,ENGINEERING - INGEGNERIA INFORMATICA SPA,COMPENDIA SRL,Elia (Belgium),greenpower,REE,EKC,R&D NESTER,TU Berlin,Efacec Energia,EDISON RINNOVABILI SPA,HDE SRL,HSE,IT4POWER GMBH,IBM Italia,RTE RESEAU DE TRANSPORT D ELECTRICITE SA,ABB,FBK,REN - REDE ELECTRICA NACIONAL S.A.,CENTRO NACIONAL DE ENERGIAS RENOVABLES CENER,ULPGC,EDISON SPA,ELECTRICITY TRANSMISSION SYSTEM OPERATOR,EGP,Schneider Electric (France),INGETEAM,TERNA,LETIFunder: European Commission Project Code: 773406Overall Budget: 27,252,700 EURFunder Contribution: 21,207,900 EURSix TSOs, eleven research partners, together with sixteen industry (manufacturers, solution providers) and market (producers, ESCo) players address, through a holistic approach, the identification and development of flexibilities required to enable the Energy Transition to high share of renewables. This approach captures synergies across needs and sources of flexibilities, such as multiple services from one source, or hybridizing sources, thus resulting in a cost-efficient power system. OSMOSE proposes four TSO-led demonstrations (RTE, REE, TERNA and ELES) aiming at increasing the techno-economic potential of a wide range of flexibility solutions and covering several applications, i.e.: synchronisation of large power systems by multiservice hybrid storage; multiple services provided by the coordinated control of different storage and FACTS devices; multiple services provided by grid devices, large demand-response and RES generation coordinated in a smart management system; cross-border sharing of flexibility sources through a near real-time cross-border energy market. The demonstrations are coordinated with and supported by simulation-based studies which aim (i) to forecast the economically optimal mix of flexibility solutions in long-term energy scenarios (2030 and 2050) and (ii) to build recommendations for improvements of the existing market mechanisms and regulatory frameworks, thus enabling the reliable and sustainable development of flexibility assets by market players in coordination with regulated players. Interoperability and improved TSO/DSO interactions are addressed so as to ease the scaling up and replication of the flexibility solutions. A database is built for the sharing of real-life techno-economic performances of electrochemical storage devices. Activities are planned to prepare a strategy for the exploitation and dissemination of the project’s results, with specific messages for each category of stakeholders of the electricity system.
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For further information contact us at helpdesk@openaire.euOpen Access Mandate for Publications and Research data assignment_turned_in Project2024 - 2026Partners:TURNING TABLES SOCIEDAD LIMITADA, ENGINEERING - INGEGNERIA INFORMATICA SPA, RWTH, BUTE, T.G. TECHNIKI MONOPROSOPI I.K.E. +67 partnersTURNING TABLES SOCIEDAD LIMITADA,ENGINEERING - INGEGNERIA INFORMATICA SPA,RWTH,BUTE,T.G. TECHNIKI MONOPROSOPI I.K.E.,WESTNETZ,HELLENIC ENERGY EXCHANGE,EAC,University of Bucharest,RSE SPA,ETRA INVESTIGACION Y DESARROLLO SA,ARETI S.P.A.,E.ON ENERGIE DEUTSCHLAND GMBH,TU Dortmund University,Adaion Smart Grid Solutions S.L.,ELECTRICITY TRANSMISSION SYSTEM OPERATOR,Inštitut za elektrogospodarstvo in elektroindustrijo,ENTSO-E,UPRC,APG,E.ON ESZAK-DUNANTULI ARAMHALOZATI ZARTKORUEN MUKODO RT,Entra Energy,TU Delft,Consorzio Nazionale Interuniversitario per i Trasporti e la Logistica,SOUTHEAST EUROPEAN TECHNOLOGICAL COMPANY LTD,AMPRION GMBH,ENEL X WAY SRL,OMI-POLO ESPANOL SA,EPESA,CIRCE,HSE,RTE RESEAU DE TRANSPORT D ELECTRICITE SA,FHG,COLLABORATIVE RESEARCH FOR ENERGY SYSTEM MODELING,REE,HUPX MAGYAR SZERVEZETT VILLAMOSENERGIA-PIAC ZARTKORUEN MUKODO RESZVENYTARSASAG,E.ON ONE GMBH,UCY,R&D NESTER,MAVIR ZRT,COMPANIA NATIONALA DE TRANSPORT AL ENERGIEI ELECTRICE TRANSELECTRICA SA,ED LUXEMBOURG,RAE,CINTECH SOLUTIONS LTD,Artelys (France),TRI,ENEL X SRL,INESC TEC,TENNET,F4STER - FUTURE 4 SUSTAINABLE TRANSPORT AND ENERGY RESEARCH INSTITUTE ZARTKORUEN MUKODO TARSASAG,ENVELIO GMBH,EDG West,VITO,UBITECH ENERGY,ENEL GRIDS S.R.L.,ECO ESO ELECTRICITY SYSTEM OPERATOR,SMART SUSTAINABLE SOCIAL INNOVATIONS MONOPROSOPI IKE,EDSO,EG,TSO CYPRUS,UL,REN - REDE ELECTRICA NACIONAL S.A.,Comillas Pontifical University,TP AEOLIAN DYNAMICS LTD,CUERVA ENERGIA SLU,UoA,Liander (Netherlands),SOFTWARE COMPANY EOOD,STEDIN DELFLANDSTEDIN MIDDEN HOLLAND STEDIN UTRECH,ΔΕΔΔΗΕ Α.Ε.,JEDLIX B.V.,ADMIEFunder: European Commission Project Code: 101136119Overall Budget: 25,216,100 EURFunder Contribution: 20,000,000 EURThe current international situation makes the process of energy transition more critical for Europe than ever before. It is a key requirement to increase the penetration of renewables while aiming at making the infrastructure more resilient and cost-effective. In this context, digital twins (DT) build a key asset to facilitate all aspects of business and operational coordination for system operators and market parties. It is of fundamental importance to now start a process of agreement at European level so not to develop isolated instances but a federated ecosystem of DT solutions. Each operator should be able to make its own implementation decisions while preserving and supporting interoperability and exchange with the remaining ecosystem. Exactly this is the vision of the TwinEU consortium: enabling new technologies to foster an advanced concept of DT while determining the conditions for interoperability, data and model exchanges through standard interfaces and open APIs to external actors. The envisioned DT will build the kernel of European data exchange supported by interfaces to the Energy Data Space under development. Advanced modeling supported by AI tools and able to exploit High Performance Computing infrastructure will deliver an unprecedented capability to observe, test and activate a pan-European digital replica of the European energy infrastructure. In this process, reaching consensus is crucial: the consortium therefore gathers an unprecedented number of actors committed to achieving this common goal. The concepts developed by TwinEU span over 15 different European countries with a continuous coverage of the continental map. Demos will encompass key players at every level from transmission to distribution and market operators, while also testing the coordinated cross-area data exchange. The consortium also includes relevant industry players, research institutions and associations with a clear record in developing innovative solutions for Europe.
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