Iulia Dragomir

dblp:40/8656 · DBLP profile ↗
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14ranked-venue papers
7as first author
1since 2021 · last 2022
0000-0002-5529-6094ORCID · verified

Domains — the database's venue-derived domains; a paper can count in several

Software engineering, systems software and programming languages · 10 · 6 first-authorTheory of computation · 2 · 1 since 2021Applied, interdisciplinary, general and emerging computing · 2 · 1 first-authorComputer networks · 1
YearPublicationVenuePosition
2022 The refinement calculus of reactive systems
Viorel Preoteasa, Iulia Dragomir, Stavros Tripakis
Inf. Comput.2
2020 Model-Based Design of Resilient Systems Using Quantitative Risk Assessment
Braham Lotfi Mediouni, Iulia Dragomir, Ayoub Nouri, Saddek Bensalem
VECoS2
2020 The Refinement Calculus of Reactive Systems Toolset
Iulia Dragomir, Viorel Preoteasa, Stavros Tripakis
Int. J. Softw. Tools Technol. Transf.1
2019 Mechanically Proving Determinacy of Hierarchical Block Diagram Translations
Viorel Preoteasa, Iulia Dragomir, Stavros Tripakis
VMCAI2
2018 Designing Systems with Detection and Reconfiguration Capabilities: A Formal Approach
Iulia Dragomir, Simon Iosti, Marius Bozga, Saddek Bensalem
ISoLA (3)1
2018 The Refinement Calculus of Reactive Systems Toolset
Iulia Dragomir, Viorel Preoteasa, Stavros Tripakis
TACAS (2)1
2017 Type Inference of Simulink Hierarchical Block Diagrams in Isabelle
Viorel Preoteasa, Iulia Dragomir, Stavros Tripakis
FORTE2
2017 Contract-based modeling and verification of timed safety requirements within SysML
Iulia Dragomir, Iulian Ober, Christian Percebois
Softw. Syst. Model.1
2016 Compositional Semantics and Analysis of Hierarchical Block Diagrams
Iulia Dragomir, Viorel Preoteasa, Stavros Tripakis
SPIN1
2014 Safety Contracts for Timed Reactive Components in SysML
Iulia Dragomir, Iulian Ober, Christian Percebois
SOFSEM1
2013 Early Analysis of Ambient Systems SYSML Properties using OMEGA2-IFx
abstract
Formal methods provide tools to verify the consistency and correctness of a specification with respect to the desired properties of the system. This verification is important as the development of an AAL (Ambient Assisted Living) system involves different technologies (medical services, surveillance cameras, intelligent devices, etc.) requiring a strong consistency checking between models. We illustrate in this paper how we prove some of the properties of the system before the development even starts. To model the AAL system, we use the SysML language. In terms of tools, we used Rational Rhapsody in combination with the OMEGA2 profile which is an executable Uml/SysML profile used for the formal specification and validation of critical real-time systems. This profile is supported by the IFx toolset which provides mechanisms for the model simulation and properties verification of the AAL system.
Manzoor Ahmad, Iulia Dragomir, Jean-Michel Bruel, Iulian Ober, Nicolas Belloir
SIMULTECH2
2012 A Case Study in Formal System Engineering with SysML
Iulia Dragomir, Iulian Ober, David Lesens
ICECCS1
2011 Unambiguous UML Composite Structures: The OMEGA2 Experience
Iulian Ober, Iulia Dragomir
SOFSEM2
2010 OMEGA2: A New Version of the Profile and the Tools
abstract
In previous work we contributed to the definition of an executable profile of UML, called OMEGA UML, dedicated to the formal specification and validation of real-time systems. The prominent features of OMEGA UML are (1) a small and coherent set of concepts for describing the architecture and the behaviour of a system, (2) means for formalizing the properties of the system, in particular timing properties, and (3) a well-behaved concurrent execution model suited for real-time applications. To meet user demands, the profile has recently been updated to include hierarchical composite structures (part of the standard UML 2. x specification) and new concurrency structures. The new version (OMEGA2) is in line with the original principles: simplicity, well-defined operational semantics and tool support for simulation and verification (IFx version 2). The present paper contains an overview of both the profile and the tool.
Iulian Ober, Iulia Dragomir
ICECCS2