Objective
MODELPLEX has three major objectives:
- Objective A: Develop an open solution for complex systems engineering improving quality and productivity;
- Objective B: Lead its industrialisation;
- Objective C: Ensure its successful adoption by the industry.
Model-driven engineering (MDE) is an approach that is gaining acceptance in several software domains with proven benefits such as cost reduction and quality improvement. However, applicability to complex systems engineering still remains a challenge. This is despite complex systems having an even greater need for model-based approaches because models can provide the necessary abstractions that enable human comprehension, communication, simulation and analysis, and synthesis of implementation artefacts for such systems.
MODELPLEX will define and develop a coherent infrastructure specifically for the application of MDE to the development and subsequent management of complex systems within a variety of industrial domains, where complexity is characterized by a combination of size, heterogeneity, legacy system management, dynamicity, distribution and autonomy of systems.
MODELPLEX will use established MODELWARE technologies as a basis for providing this second-generation MDE approach to solving complex systems engineering problems and will combine substantial innovations in model engineering technology, validation and verification, as well as system management and control. MODELPLEX is organised into two phases of 18 months, each phase delivering significantly innovative and implemented open solutions. The first phase will build and deliver appropriate MDE solutions for complex systems and prepare their consolidation within selected industrial domains.
To achieve the objectives, a consortium of 22 complementary partners of internationally recognized experts in MDE has been setup. It includes major leaders of software intensive industry firms, tool vendors, academia and consultancy companies based in 8 countries.
Fields of science (EuroSciVoc)
CORDIS classifies projects with EuroSciVoc, a multilingual taxonomy of fields of science, through a semi-automatic process based on NLP techniques.
CORDIS classifies projects with EuroSciVoc, a multilingual taxonomy of fields of science, through a semi-automatic process based on NLP techniques.
- natural sciencescomputer and information sciencessoftwaresoftware applicationssystem software
- social scienceseconomics and businesseconomicsproduction economicsproductivity
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Call for proposal
Data not availableFunding Scheme
IP - Integrated ProjectCoordinator
49527 PETACH TIKVA
Israel
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Participants (21)
BH23 3PY CHRISTCHURCH, DORSET
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PARIS 15
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79108 MÜNCHEN
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48170 ZAMUDIO
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PO6 3AU PORTSMOUTH HAMPSHIRE
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78153 LE CHESNAY CEDEX
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WALLDORF
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35760 SAINT GREGOIRE
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75008 PARIS
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38106 BRAUNSCHWEIG
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1000 BRUXELLES
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NEUILLY SUR SEINE
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28043 MADRID
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44035 NANTES
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PARIS
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YORK
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4056 TANANGER
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S7 2EJ SHEFFIELD, YORKSHIRE
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195220 ST PETERSBURG
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