Robust and reliable general management tool for performance and dUraBility improvement of fuel cell stationarY units
Akronyymi
RUBY
Rahoitetun hankkeen kuvaus
RUBY aims at developing and implementing a tool able to perform integrated Monitoring, Diagnostic, Prognostic and Control functions for production μ-CHP and Backup (BUP) systems, based on SOFC and PEMFC. The proposal is the final step toward the production, installation and commercialization of stationary FCSs with new management functions that will enhance system lifetime, stack durability, availability, reliability and overall performance with improved efficiency. These enhancements will lead to TCO reduction, paving the way toward advanced maintenance service implementation, less cost and increased warranty periods, leading to a better customer satisfaction. RUBY leverages the findings of the last 8 years applied research that contributed to move the FC technologies towards the same maturity of market-available conventional energy conversion technologies. The key-feature of RUBY tool is the Electrochemical Impedance Spectroscopy (EIS)-based advanced monitoring of both SOFC and PEMFC stacks, which has been demonstrated viable for its implementation on FCSs. RUBY will finalize the work on the hardware integration with stack diagnostic and control algorithms as well as with fault detection algorithms for BOP. Then, condition monitoring algorithms will be built along with prognostic and advanced adaptive control functions. The holistic vision of the FCS and a thorough knowledge of the State of the Health will be used to evaluate the lifetime of FCS components for improved supervisory control. Artificial Intelligence-based algorithms will be exploited to elaborate grid and FCS data toward the development of control functions for perspective VPP management and future integration with smart-grid. One-year tests will be conducted in real environment for certified μ-CHP and for BUP installed in a controlled real field to concentrate long-term operations in a shorter timeframe. The tool’s components will begin with TRL5/6 and end with TRL8 for μ-CHP and TRL7 for BUP.
Näytä enemmänAloitusvuosi
2020
Päättymisvuosi
2024
Myönnetty rahoitus
COMMUNAUTE D' UNIVERSITES ET ETABLISSEMENTS UNIVERSITE BOURGOGNE - FRANCHE - COMTE (FR)
265 261.25 €
Participant
SUNFIRE FUEL CELLS GMBH (DE)
248 020.68 €
Participant
ECOLE POLYTECHNIQUE FEDERALE DE LAUSANNE (CH)
313 505 €
Participant
BITRON SPA (IT)
159 422.5 €
Participant
BALLARD POWER SYSTEMS EUROPE AS (DK)
380 742.58 €
Participant
EIFER EUROPAISCHES INSTITUT FUR ENERGIEFORSCHUNG EDF KIT EWIV (DE)
234 225 €
Participant
FONDAZIONE BRUNO KESSLER (IT)
100 197.5 €
Participant
UNIVERSITE DE FRANCHE-COMTE (FR)
37 715 €
Third party
UNIVERSITA DEGLI STUDI DI SALERNO (IT)
481 333.75 €
Coordinator
INSTITUT JOZEF STEFAN (SI)
170 041.25 €
Participant
COMMISSARIAT A L ENERGIE ATOMIQUE ET AUX ENERGIES ALTERNATIVES (FR)
262 225 €
Participant
Myönnetty summa
2 999 715 €
Rahoittaja
Euroopan unioni
Rahoitusmuoto
Research and Innovation action
Puiteohjelma
Horizon 2020 Framework Programme
Haku
Ohjelman osa
Energy (5352 Increase the electrical efficiency and the durability of the different fuel cells used for power production to levels which can compete with conventional technologies, while reducing costs (5371 )
Aihe
Enhancement of durability and reliability of stationary PEM and SOFC systems by implementation and integration of advanced diagnostic and control tools (FCH-02-8-2019Haun tunniste
H2020-JTI-FCH-2019-1 Muut tiedot
Rahoituspäätöksen numero
875047
Tunnistetut aiheet
energy, electricity, power