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SABINA SIGNED

SmArt BI-directional multi eNergy gAteway

Total Cost €

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EC-Contrib. €

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Partnership

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 SABINA project word cloud

Explore the words cloud of the SABINA project. It provides you a very rough idea of what is the project "SABINA" about.

automatically    50    integrate    quality    heat    energy    validated    aggregation    coupling    responds    digital    minutes    building    seconds    local    30    operate    scaled    2050    sabina    university    conversion    standards    plc    10    added    2030    supply    settings    algorithms    generation    inertia    day    optimization    sme    insero    guarantee    greenhouse    sources    complete    accurately    contribution    renewable    business    compatible    automatic    share    flexibility    compliance    consumption    lab    architecture    power    optimal    accommodate    estimating    horizons    emissions    buildings    stable    model    thermal    solution    grid    estimation    breakthrough    service    navarra    telvent    electric    inverters    start    storage    sms    continuous    cheapest    created    district    excess    ensured    complementary    arise    source    flexibilities    feeding    networks    time    alliance    electrical    political    gas    transition    determined    electricity    meet   

Project "SABINA" data sheet

The following table provides information about the project.

Coordinator
SMS ENERGY SERVICES LIMITED 

Organization address
address: PRENNAU HOUSE COPSE WALK CARDIFF GATE BUSINESS PARK
city: CARDIFF
postcode: CF23 8XH
website: www.up-ltd.co.uk

contact info
title: n.a.
name: n.a.
surname: n.a.
function: n.a.
email: n.a.
telephone: n.a.
fax: n.a.

 Coordinator Country United Kingdom [UK]
 Project website http://www.sabina-project.eu
 Total cost 4˙611˙041 €
 EC max contribution 3˙789˙868 € (82%)
 Programme 1. H2020-EU.3.3.4. (A single, smart European electricity grid)
 Code Call H2020-LCE-2016-SGS
 Funding Scheme RIA
 Starting year 2016
 Duration (year-month-day) from 2016-11-01   to  2020-10-31

 Partnership

Take a look of project's partnership.

# participants  country  role  EC contrib. [€] 
1    SMS ENERGY SERVICES LIMITED UK (CARDIFF) coordinator 377˙100.00
2    INSERO AS DK (HORSENS) participant 622˙963.00
3    NATIONAL TECHNICAL UNIVERSITY OF ATHENS - NTUA EL (ATHINA) participant 548˙375.00
4    FUNDACIO INSTITUT DE RECERCA DE L'ENERGIA DE CATALUNYA ES (SANT ADRIA DE BESOS) participant 516˙250.00
5    EUROPEAN DIGITAL SME ALLIANCE BE (BRUXELLES) participant 500˙000.00
6    UNIVERSIDAD DE NAVARRA ES (PAMPLONA) participant 496˙560.00
7    SCHNEIDER ELECTRIC ESPANA SA ES (BARCELONA) participant 472˙431.00
8    AMIRES SRO CZ (PRAHA 6) participant 236˙250.00
9    CSEM CENTRE SUISSE D'ELECTRONIQUE ET DE MICROTECHNIQUE SA - RECHERCHE ET DEVELOPPEMENT CH (NEUCHATEL) participant 19˙938.00

Map

 Project objective

Flexibility needs to be added to Europe’s power system to accommodate an increasing share of variable power generation from renewable sources. Indeed, service quality issues start to arise on the grid when this share in electricity consumption reaches 10%. To meet the EU’s targets for reduction of greenhouse gas emissions this share should rise to 30% by 2030 and up to 50% by 2050. The cost of this transition and the necessary measures to guarantee stable and continuous supply are a major political concern. The SABINA project responds to it by targeting the cheapest possible source of flexibility: the existing thermal inertia in buildings and the coupling between heat and electricity networks it enables. This coupling requires accurately estimating the thermal inertia of many buildings. SABINA’s partner the University of Navarra has created a breakthrough, automatic method for this estimation, which shall be scaled up, validated and integrated in a complete management system through this project. This system will operate on two complementary time horizons: • One day: aggregation and management at the district level of the electric and thermal flexibilities, and conversion and storage of the excess electrical energy to thermal energy in the freely available building inertia. • Seconds to minutes: local control of inverters feeding renewable electricity to the grid, with optimal parameters automatically determined at the district level. Research partners will develop novel control and optimization algorithms, and integrate and evaluate the system in lab and operational settings. The SABINA solution is compatible with both new and existing buildings; it is planned to be deployed within five years of the end of the project. Lead users are present in the consortium: Telvent and SMS plc, the coordinator, for the architecture, and Insero for the business model it enables; compliance and contribution to relevant standards will be ensured by the European Digital SME Alliance

 Deliverables

List of deliverables.
Standards landscape and ecosystem in the scope of SABINA Documents, reports 2020-04-07 18:23:34
Tutorials for energy managers and professionals Documents, reports 2020-04-07 18:23:26
Documentation of 2nd SABINA workshop (invitation brochure, presentations, feedback) Documents, reports 2020-04-07 18:23:09
Documentation of 3rd SABINA workshop (invitation brochure, presentations, feedback) Documents, reports 2020-04-07 18:23:19
Development and maintenance of SABINA webpage Websites, patent fillings, videos etc. 2019-05-31 16:41:49
Business canvas model Documents, reports 2019-05-31 16:41:49
Market-based requirements for the SABINA solution Documents, reports 2019-05-31 16:41:39
Dissemination and Communication strategy document prepared Documents, reports 2019-05-31 16:41:42
Documentation of 1st SABINA workshop (invitation brochure, presentations, feedback) Documents, reports 2019-05-31 16:41:52

Take a look to the deliverables list in detail:  detailed list of SABINA deliverables.

 Publications

year authors and title journal last update
List of publications.
2019 Paolo Taddeo, Ivan Bellanco, Elena Fuentes, Joana Ortiz, Jaume Salom
Real-time experimental connection of an EnergyPlus building model with a real water-to-water heat pump through Functional Mockup Interface
published pages: , ISSN: , DOI:
Building Simulation 2019 Conference 2020-01-29
2019 Eva Lucas Segarra, Hu Du, Germán Ramos Ruiz, Carlos Fernández Bandera
Methodology for the Quantification of the Impact of Weather Forecasts in Predictive Simulation Models
published pages: 1309, ISSN: 1996-1073, DOI: 10.3390/en12071309
Energies 12/7 2020-01-29
2019 A. Peppas, C. Politi, K. Kollias, M. Taxiarchou, D. Mantelis, L. Karalis
An empirical methodology for rating building thermal mass as energy storage system
published pages: , ISSN: , DOI:
Energy in Buildings 2019 Conference (ASHRAE Hellenic Chapter) 2020-01-29
2018 William Martin, Yves Stauffer, Christophe Ballif, Andreas Hutter, Pierre-Jean Alet
Automated quantification of PV hosting capacity in distribution networks under user-defined control and optimisation procedures
published pages: , ISSN: , DOI:
2018 IEEE PES Innovative Smart Grid Technologies Conference Europe (ISGT-Europe) 2020-01-29
2019 Vicente Gutiérrez González , Germán Ramos Ruiz , Eva Lucas Segarra , Germán Campos Gordillo , Carlos Fernandez Bandera
Characterization of Building Foundation in Building Energy Models.
published pages: , ISSN: , DOI:
Building Simulation 2019 Conference 2020-01-29
2019 Vicente Gutiérrez González, Lissette Álvarez Colmenares, Jesús Fernando López Fidalgo, Germán Ramos Ruiz, Carlos Fernández Bandera
Uncertainy’s Indices Assessment for Calibrated Energy Models
published pages: 2096, ISSN: 1996-1073, DOI: 10.3390/en12112096
Energies 12/11 2020-01-29
2019 Casals, Rodríguez, Corchero, Carrillo
Evaluation of the End-of-Life of Electric Vehicle Batteries According to the State-of-Health
published pages: 63, ISSN: 2032-6653, DOI: 10.3390/wevj10040063
World Electric Vehicle Journal 10/4 2020-01-29

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The information about "SABINA" are provided by the European Opendata Portal: CORDIS opendata.

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