Demonstration of a digitized energy system integration across sectors enhancing flexibility and resilience towards efficient, sustainable, cost-optimised, affordable, secure and stable energy supply

Project: EU project

Project Details

Description

Existing tools for planning and operating local energy systems are fragmented. At the same time, general-purpose tools are being developed that could potentially provide many of the functionalities of process-specific tools while also allowing integrated planning and operational management.

ELEXIA sets out to advance the technological-readiness level (TRL) of such tools and to combine them into a robust Digital Services Platform (DSP) for local site managers and planners.
AcronymELEXIA
StatusActive
Effective start/end date1/09/2231/08/26

Collaborative partners

  • VTT Technical Research Centre of Finland
  • Vestegnens Kraftvarmeselskab I/S (Project partner)
  • Bergen kommune (Project partner)
  • WINGS ICT Solutions Information & Communication Technologies IKE (Project partner)
  • CORE Kentro Kainotomias AMKE (Project partner)
  • Eviny Termo AS (Project partner)
  • Labelec - Estudos, Desenvolvimentos E Actividades Laboratoriais, S.A (Project partner)
  • Tecnalia Research & Innovation (TRI) (Project partner)
  • CLIMIFY ApS (Project partner)
  • University of Durham (Project partner)
  • BKK Nett AS (Project partner)
  • BIR AS (Project partner)
  • Core Innovation and Technology OE (Project partner)
  • Center Danmark Drift ApS (Project partner)
  • Enfor A/S (Project partner)
  • AMC TECH Sp. z o.o. (Project partner)
  • Sines Port authority (Project partner)
  • BIR Infrastruktur AS (Project partner)
  • Technical University of Denmark (DTU) (Project partner)
  • Tmrow ApS (Project partner)
  • NORCE Norwegian Research Centre AS (Project partner) (lead)
  • Høje-Taastrup Municipality (Project partner)

Funding category

  • Horizon Europe

Keywords

  • HORIZON-CL5-2021-D3-02-05
  • control systems
  • electric power distribution
  • signal processing
  • urban engineering
  • energy conversion