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High-capacity hydrogen-based green-energy storage solutions for grid balancing

Cel

INGRID introduces and demonstrates the usage of safe, high-density solid-state hydrogen storage systems as an effective energy vector to balance the grid also by powering off-grid applications, thus enabling a smart balance between variable green energy sources supply and the grid demand. To reach its ambitions objective, the INGRID project will focus on:

• The usage of new hydrogen solid-state storage technology ,as safe and high-density energy storage systems, to be integrated in a closed loop coupled with water electrolyzers and fuel cell systems to achieve a high efficiency regenerative loop.

• Decentralized power generation and energy distribution architectures (interconnecting infrastructure, dispensing technology, transmission system) based on effective rapid and safe hydrogen-based energy storage/deliver solutions capable to accept and manage any RES fluctuation and variability;

• Advanced ICT solutions for intelligent Simulation and Energy Management System (EMS) able to correctly simulate, manage, monitor, dispatch energy in compliance with the power request of the grid, allowing a correct balance between variable energy supply and demand and simulate .

• Perform limited demonstrative scaled-down test case for assessing the storage system’ high balancing capabilities in presence of high variable electricity demand consisting in a small pilot version of a green urban mobility system integrating conventional public transport designed to be self-sustainable.

Słowa kluczowe

Zaproszenie do składania wniosków

FP7-ENERGY-2011-2
Zobacz inne projekty w ramach tego zaproszenia

Koordynator

ENGINEERING - INGEGNERIA INFORMATICA SPA
Wkład UE
Brak danych
Adres
PIAZZALE DELL'AGRICOLTURA 24
00144 ROMA
Włochy

Zobacz na mapie

Region
Centro (IT) Lazio Roma
Rodzaj działalności
Private for-profit entities (excluding Higher or Secondary Education Establishments)
Kontakt administracyjny
Massimo Bertoncini (Dr.)
Linki
Koszt całkowity
Brak danych

Uczestnicy (6)