Summary
To meet the challenge of increasingly complex electronic systems, it is necessary to constantly raise the level of abstraction. This is the case in the software domain with UML and model-driven engineering, and in the hardware domain with SystemC and the electronic system level. We present here the MARTE UML profile, which provides a coherent, unified language for all the design and analysis needs of real-time embedded systems within the framework of model-driven engineering.
Abstract
To deal with the challenge of the increasing complexity of electronic systems, we must constantly raise the abstraction level. This has been done in the software domain with UML and model driven engineering and in the hardware domain with SystemC and the electronic system level. We present here the MARTE UML profile that provides a coherent and unified language for all the design and analysis needs of real time embedded systems in a model driven engineering approach.
Keywords
UML, real-time, embedded systems, design, analysis, model-driven engineering (MDE)
Keywords
UML, real time, embedded systems, design, analysis, model driven engineering (MDE)
Key points
Field: Embedded systems design tools
Degree of technology diffusion: Emergence | Growth | Maturity
Technologies involved : UML
Applications: Embedded systems, real-time systems
Main French players :
Competitive clusters: System@tic
Competence centers: INRIA, CEA, CNRS, universities of Lille, Nice, Rennes...
Manufacturers: Thales, CoFluent, NoMagic
Other international players: Carleton University, Canada, University of Cantabria, Spain...