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Multi-Partner Project: A Model-Driven Engineering Framework for Federated Digital Twins of Industrial Systems (MATISSE)
Mälardalen University, School of Innovation, Design and Engineering, Embedded Systems.ORCID iD: 0000-0002-8027-0611
University of Teramo, Teramo, Italy.
Johannes Kepler University, Linz, Austria.
Imt Atlantique, LS2N (CNRS), Nantes, France.
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2025 (English)In: Proceedings -Design, Automation and Test in Europe, DATE, Institute of Electrical and Electronics Engineers (IEEE) , 2025Conference paper, Published paper (Refereed)
Abstract [en]

Digital twins are virtual representations of real-world entities or systems. Their primary goal is to help organizations understand and predict the behaviour and properties of these entities or systems. Additionally, digital twins enhance activities such as monitoring, verification, validation, and testing. However, the inherent complexity of digital twins implies challenges throughout the systems engineering process. This notably includes design, development, and analysis phases, as well as deployment, execution, and maintenance. Moreover, existing approaches, methods, techniques, and tools for modelling, simulating, validating, and monitoring single digital twins must now address the increased complexity in federation scenarios. These scenarios introduce new challenges, such as digital twin identification, shared metadata, cross-digital twin communication and synchronization, and federation governance. The KDT Joint Undertaking MATISSE project tackles these challenges by aiming to provide a model-driven framework for the continuous engineering of federated digital twins. It leverages model-driven engineering techniques and practices as the core enabling technology, with traceability serving as an essential infrastructural service for the digital twins federation. In this paper, we introduce the MATISSE conceptual framework for digital twins, highlighting both the novelty of the project's concept and its technical objectives. As the project is still in its initial phase, we identify key research challenges relevant to the DATE community and propose a preliminary research roadmap. This roadmap addresses traceability and federation mechanisms, the required continuous engineering strategy, and the development of digital twin-based services for verification, validation, prediction, and monitoring. To illustrate our approach, we present two concrete scenarios that demonstrate practical applications of the MATISSE conceptual framework. 

Place, publisher, year, edition, pages
Institute of Electrical and Electronics Engineers (IEEE) , 2025.
Series
Design, Automation and Test in Europe (DATE), ISSN 1558-1101
Keywords [en]
Continuous System Engineering, Federated Digital Twins, Model-Driven Engineering, Verification & Validation
National Category
Computer Sciences
Identifiers
URN: urn:nbn:se:mdh:diva-71866DOI: 10.23919/DATE64628.2025.10993046ISI: 001506972600257Scopus ID: 2-s2.0-105006901282ISBN: 9783982674100 (print)OAI: oai:DiVA.org:mdh-71866DiVA, id: diva2:1967440
Conference
2025 Design, Automation and Test in Europe Conference, DATE 2025, Lyon, 31 March 2025 through 2 April 2025
Available from: 2025-06-11 Created: 2025-06-11 Last updated: 2026-02-16Bibliographically approved

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Bucaioni, Alessio

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