H2020Doctoral network2017–2022

ROMSOC · Reduced Order Modelling, Simulation and Optimization of Coupled systems

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2017-09-01 → 2022-08-31
EU contribution
€2,661,418
Participants
23
Scheme
MSCA-ITN

Lines connect the coordinator with its partners.

Results in brief

Reduced Order Modelling, Simulation and Optimization of Coupled systems

The development of high quality products and processes is essential for the future competitiveness of the European economy. In most key technology areas product development is increasingly based on simulation and optimization via mathematical models that allow to optimize design and functionality using free design parameters. Best performance of modelling, simulation and optimization (MSO) techniques is obtained by using a model hierarchy ranging from very fine to very coarse models obtained by model order reduction (MOR) techniques and to adapt the model and the methods to the user-defined requirements in accuracy and computational speed. Within the ROMSOC project a common framework is derived and the next generation of researchers is trained in this highly interdisciplinary field, in particular for SMEs, in areas such as optical and electronic systems, economic processes, and materials. A joint training programme has been developed which builds on the strengths of the academic and industrial partners and their strong history of academic/industrial cooperation. ROMSOC educates highly skilled researchers in MSO that will become facilitators in the transfer of innovative concepts to industry.

Data: CORDIS, © European Union

Project objective

The development of high quality products and processes is essential for the future competitiveness of the European economy. In most key technology areas product development is increasingly based on simulation and optimization via mathematical models that allow to optimize design and functionality using free design parameters. Best performance of modelling, simulation and optimization (MSO) techniques is obtained by using a model hierarchy ranging from very fine to very coarse models obtained by model order reduction (MOR) techniques and to adapt the model and the methods to the user-defined requirements in accuracy and computational speed.ROMSOC will work towards this goal for high dimensional and coupled systems that describe different physical phenomena on different scales; it will derive a common framework for different industrial applications and train the next generation of researchers in this highly interdisciplinary field. It will focus on the three major methodologies: coupling methods, model reduction methods, and optimization methods, for industrial applications in well selected areas, such as optical and electronic systems, economic processes, and materials. ROMSOC will develop novel MSO techniques and associated software with adaptability to user-defined accuracy and efficiency needs in different scientific disciplines. It will transfer synergies between different industrial sectors, in particular for SMEs. To lift this common framework to a new qualitative level, a joint training programme will be developed which builds on the strengths of the academic and industrial partners and their strong history of academic/industrial cooperation. By delivering early-career training embedded in a cutting-edge research programme, ROMSOC will educate highly skilled interdisciplinary researchers in mathematical MSO that will become facilitators in the transfer of innovative concepts to industry. It will thus enhance the capacity of European research and development.

Original text from CORDIS.

Participants

  • TECHNISCHE UNIVERSITAT BERLIN · BerlinCoordinatorGermany
  • ABB SCHWEIZ AG · BADENSwitzerland
  • ARCELORMITTAL INNOVACION INVESTIGACION E INVERSION SL · GozonSpain
  • BERGISCHE UNIVERSITAET WUPPERTAL · WuppertalGermany
  • CONSORCIO CENTRO DE INVESTIGACIÓN E TECNOLOXÍA MATEMÁTICA DE GALICIA · Santiago De CompostelaSpain
  • CorWave · ParisFrance
  • DANIELI OFFICINE MECCANICHE SpA · Buttrio (Ud)Italy
  • DB Schenker Rail Polska S.A. · ZabrzePoland
  • FORSCHUNGSVERBUND BERLIN EV · BerlinGermany
  • FRIEDRICH-ALEXANDER-UNIVERSITAET ERLANGEN-NUERNBERG · ErlangenGermany
  • INSTITUT NATIONAL DE RECHERCHE EN INFORMATIQUE ET AUTOMATIQUE · Le Chesnay CedexFrance
  • MATHCONSULT GMBH · LinzAustria
  • MICROFLOWN TECHNOLOGIES BV · ARNHEMNetherlands
  • MICROGATE SRL · BOLZANOItaly
  • Math.Tec GmbH · WienAustria
  • POLITECNICO DI MILANO · MilanoItaly
  • SAGIV TECH LTD · Ra AnanaIsrael
  • SCUOLA INTERNAZIONALE SUPERIORE DI STUDI AVANZATI DI TRIESTE · TriesteItaly
  • SIGNIFY NETHERLANDS BV · EindhovenNetherlands
  • STICHTING EUROPEAN SERVICE NETWORK OF MATHEMATICS FOR INDUSTRY AND INNOVATION · GoirleNetherlands
  • STMICROELECTRONICS SRL · Agrate BrianzaItaly
  • UNIVERSITAET BREMEN · BremenGermany
  • UNIVERSITAT LINZ · LinzAustria

Links

Data: CORDIS, © European Union