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NRG-5 SIGNED

Enabling Smart Energy as a Service via 5G Mobile Network advances (NRG-5)

Total Cost €

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EC-Contrib. €

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Partnership

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Project "NRG-5" data sheet

The following table provides information about the project.

Coordinator
ENGINEERING - INGEGNERIA INFORMATICA SPA 

Organization address
address: Via San Martino Della Battaglia 56
city: ROMA
postcode: 00185
website: www.eng.it

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 Italy [IT]
 Total cost 6˙941˙275 €
 EC max contribution 6˙833˙775 € (98%)
 Programme 1. H2020-EU.2.1.1. (INDUSTRIAL LEADERSHIP - Leadership in enabling and industrial technologies - Information and Communication Technologies (ICT))
 Code Call H2020-ICT-2016-2
 Funding Scheme /RIA
 Starting year 2017
 Duration (year-month-day) from 2017-06-01   to  2019-11-30

 Partnership

Take a look of project's partnership.

# participants  country  role  EC contrib. [€] 
1    ENGINEERING - INGEGNERIA INFORMATICA SPA IT (ROMA) coordinator 1˙141˙250.00
2    THALES COMMUNICATIONS & SECURITY SAS FR (GENNEVILLIERS) participant 602˙200.00
3    BRITISH TELECOMMUNICATIONS PUBLIC LIMITED COMPANY UK (LONDON) participant 578˙750.00
4    INEO ENERGY AND SYSTEMS FR (VELIZY VILLACOUBLAY) participant 504˙500.00
5    SINGULARLOGIC ANONYMI ETAIREIA PLIROFORIAKON SYSTIMATON KAI EFARMOGON PLIROFORIKIS EL (NEA KIFISIA) participant 499˙250.00
6    OPTIMUM ANONIMI ETAIRIA TECHNOLOGIES PLIROFORIKIS EL (NEA CHALKIDONEA) participant 390˙125.00
7    RHEINISCH-WESTFAELISCHE TECHNISCHE HOCHSCHULE AACHEN DE (AACHEN) participant 367˙000.00
8    EMOTION SRL IT (BASTIA UMBRA PG) participant 297˙500.00
9    POWER OPERATIONS LIMITED UK (LONDON) participant 294˙000.00
10    ASM TERNI SPA IT (TERNI) participant 285˙575.00
11    SORBONNE UNIVERSITE FR (PARIS) participant 279˙500.00
12    VISIONA INGENIERIA DE PROYECTOS SL ES (Majadahonda) participant 275˙000.00
13    INSTITUT JOZEF STEFAN SI (LJUBLJANA) participant 261˙750.00
14    CENTRUL ROMAN AL ENERGIEI - CRE RO (BUCURESTI) participant 243˙500.00
15    TECHNOLOGIKO EKPEDEFTIKO IDRIMA STEREAS ELLADAS EL (LAMIA) participant 240˙125.00
16    WIND TRE SPA IT (TREZZANO SUL NAVIGLIO MI) participant 235˙000.00
17    HISPASAT SA ES (MADRID) participant 203˙500.00
18    SOCIETATEA NATIONALA DE GAZE NATURALE ROMGAZ SA RO (MEDIAS) participant 135˙250.00
19    RUTGERS, THE STATE UNIVERSITY OF NEW JERSEY US (NEW BRUNSWICK) participant 0.00
20    UNIVERSITE PIERRE ET MARIE CURIE - PARIS 6 FR (PARIS) participant 0.00

Mappa

 Project objective

Despite a number of software frameworks and reference architectures have made available for 5G enabling technologies, there is a clear gap to bridge towards 5G seamless application with a number of “vertical” sectors. Energy vertical represents undoubtedly one of the most significant “test cases” for 5G enabling technologies, due to the need of addressing a huge range of very diverse requirements to deal with across a variety of applications (stringent capacity for smart metering/AMI versus latency for supervisory control and fault localization).However, to effectively support energy utilities along their transition towards more decentralized renewable-oriented systems, several open issues still remain as to 5G networks management automation, security, resilience, scalability and portability. To face these issues, NRG-5 will research and develop a novel 5G PPP-compliant software framework specifically tailored to the energy domain, which combines i) trusted, scalable and lock-in free plug ‘n’ play support for a variety of constrained devices; ii) 5G devices’ abstractions to demonstrate mMTC, uMTC and xMBB communications coupled with partially distributed, trusted, end-to-end security and MCM to enable secure, scalable and energy efficient communications; iii) extended Mobile Edge Computing (xMEC) micro-clouds to reduce backhaul load, increase the overall network capacity and reduce delays, while facilitating the deployment of generic MTC-related NFVs and utility-centric VNFs; iv) an extended 5G ETSI-MANO predictive analytics framework to support automated, dynamic, elastic VNF reconfiguration. Extensive lab based validation will be complemented with real life demonstrations in two pilot sites (Italy, France) where proof-of-concept implementations for 5G-enabled electricity and gas distribution network optimized management will be offered, while offering support to 5G PPP phase III projects via demonstrating high replication potential towards other verticals.

 Work performed, outcomes and results:  advancements report(s) 

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