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ModelCVS

Projekt: Geförderte ForschungBund / Land / Gemeinden

Projektdetails

Beschreibung

With the rise of model-driven software development, more and more development tasks are being performed on models. A rich variety of modeling tools is available supporting different tasks, such as model creation, model simulation, model checking, and code generation. Seamless exchange of models among different modeling tools increasingly becomes a crucial prerequisite for effective software development processes. Due to lack of interoperability, however, it is often difficult to use tools in combination, thus the potential of model-driven software development cannot be fully utilized - unless we find some scalable way of integration. We are aiming at providing a semantic infrastructure for model-based tool integration, enabling to facilitate any tool appropriate for the modeling task at hand. The key innovations provided are a set of scalable architectural model integration patterns supported by a high-level metamodel integration language, thus going beyond existing low-level model transformation approaches. Ontology-based metamodel integration considerably lowers the manual effort required for tool integration, enabling a novel synergic use of technologies from the model engineering and ontology engineering domains. An open knowledge base for tool integration captures essential knowledge about modeling languages and tools in terms of ontologies, fostering reuse within and beyond the scope of this project. These innovations will be realized within the ModelCVS prototype and case study. The core of the system will be based on a versioning system such as CVS, thus providing a loosely-coupled and well-proofed integration architecture. Transparent transformation of models between different tools' languages and exchange formats, as well as versioning capabilities exploiting the rich syntax and semantics of models represent the key functionalities of ModelCVS.
StatusAbgeschlossen
Tatsächliches Beginn-/Enddatum01.01.200631.12.2007

Wissenschaftszweige

  • 102006 Computer Supported Cooperative Work (CSCW)
  • 102027 Web Engineering
  • 101031 Approximationstheorie
  • 102 Informatik
  • 305901 Computerunterstützte Diagnose und Therapie
  • 102033 Data Mining
  • 102032 Computational Intelligence
  • 101029 Mathematische Statistik
  • 102013 Human-Computer Interaction
  • 305905 Medizinische Informatik
  • 101028 Mathematische Modellierung
  • 101027 Dynamische Systeme
  • 101004 Biomathematik
  • 101026 Zeitreihenanalyse
  • 102015 Informationssysteme
  • 101024 Wahrscheinlichkeitstheorie
  • 202017 Embedded Systems
  • 202038 Telekommunikation
  • 202037 Signalverarbeitung
  • 102019 Machine Learning
  • 305907 Medizinische Statistik
  • 103029 Statistische Physik
  • 202036 Sensorik
  • 102018 Künstliche Neuronale Netze
  • 202035 Robotik
  • 106005 Bioinformatik
  • 106007 Biostatistik
  • 101019 Stochastik
  • 101018 Statistik
  • 102021 Pervasive Computing
  • 101017 Spieltheorie
  • 102002 Augmented Reality
  • 102001 Artificial Intelligence
  • 101016 Optimierung
  • 102004 Bioinformatik
  • 101015 Operations Research
  • 102003 Bildverarbeitung
  • 102025 Verteilte Systeme
  • 101014 Numerische Mathematik

JKU-Schwerpunkte

  • Sustainable Development: Responsible Technologies and Management
  • Digital Transformation
  • Scalable Vector Graphics Pattern P2P-Service for Enhanced Barrier-free Web-Applications

    Altmanninger, K. & Wöß, W., Jän. 2007, 13th International Multimedia Modeling Conference, Special Session on Networked Graphics Applications (NGA). Tat Jen Cham, Jianfei Cai, Chitra Dorai, Deepu Rajan, Tat-Seng Chua and Liang-Tien Chia (Hrsg.). Berlin Heidelberg: Springer Verlag, Band 4352. S. 730-737 8 S. (Lecture Notes in Computer Science (including subseries Lecture Notes in Artificial Intelligence and Lecture Notes in Bioinformatics); Band 4352 LNCS, Nr. PART 2).

    Publikation: Beitrag in Buch/Bericht/KonferenzbandKonferenzbeitragBegutachtung