Capacities

Integration with the energy system

DC/DC converters and inverters for fuel cell systems and/or electrolyzers

  • Design and construction. Participation in pilots and demonstrators.

  • Digital modeling and control of power electronics elements.

  • Reliability and predictive maintenance.

Hydrogen power grids and microgrids. Renewable electricity generation

  • Planning, integration and design of networks, electrical topology and sizing of elements at the level of microgrids.

  • Network planning, integration and design, electrical topology and sizing of TSO and DSO level elements.

  • Study of the particularities of off-shore wind sources.

  • Operation and control.

  • Planning management algorithms in hydrogen storage electrical flexibility markets.

  • Hydrogen network support. Modular electrolyzers.

Vehicles with fuel cell

  • Traction system design. Design and control of electric traction motors and inverters.

  • Design and control of hybrid electric traction systems.

  • Development of the state machine for the coordination of the different driving modes.

  • Sizing of the fuel cell.

  • Design and development of prototypes and demonstrators for mobility applications using fuel cells.

Integration of hydrogen into the water and waste sector

  • Study of blue hydrogen production in sewage treatment plants: Biogas methane recovery, upgrading and reformation.

  • Study of electrolysis from different types of water (desalinated, regenerated) and renewable energies.

  • Study of new hydrogen production processes from waste.

Hydrogen economy and sustainability

  • Economic and environmental optimization of hydrogen energy systems, considering legal restrictions, consumption behavior, and energy generation forecasting.

Heat and fuel cell

  • Modeling, study and design of systems for the use of residual heat in fuel cells.