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    1. Friedrich-Alexander-Universität
    2. Technische Fakultät
    3. Department Informatik
    Friedrich-Alexander-Universität Computer Science 7 CS7
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    4. GeTTeMo – Systematische Generierung von Testszenarien aus benutzungsorientierten Testmodellen

    GeTTeMo – Systematische Generierung von Testszenarien aus benutzungsorientierten Testmodellen

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      • A⁵: Development Method for Driver Assistance Systems based on a Domain-Specific Language
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      • e-NUE: Co-Simulation of Electrified and Connected Vehicles
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      • Formal verification and validation of test methods for complex vehicle safety systems in virtual environments
      • GeTTeMo – Systematische Generierung von Testszenarien aus benutzungsorientierten Testmodellen
      • HISTORY – HIgh Speed neTwork mOnitoRing and analYsis
      • Hybrid Simulation of Intelligent Energy Systems
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      • Q.E.D. (QoS Enhanced Development Using UML2.0 and TTCN-3)
      • Quality of Service of Networked Embedded Systems
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      • Secure intelligent Mobility – Testarea Germany
      • Security and Quality of Service and Aspects in ZigBee-based Wireless Communication
      • Self-organization of SN-MRS systems
      • Sensitivity Analysis of Queueing Networks
      • SkyNet – Communicating Paragliders
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      • Software-in-the-Loop Simulation and Testing of Highly Dependable Distributed Automotive Applications
      • Support for inter-domain routing and data replication in virtual coordinate based networks
      • SWARM (Storage With Amply Redundant Megawatt)
      • Telematics Services in Hybrid Networks
      • Transmission of Safety-Relevant Sensor Data in Intra-Car Communication Systems
      • Veins 1.0 – Vehicles in Network Simulation
      • Web Cluster Laboratory
      • WinPEPSY-QNS - Performance Evaluation and Prediction System for Queueing Networks

    GeTTeMo – Systematische Generierung von Testszenarien aus benutzungsorientierten Testmodellen

    Project Description

    Das Ziel des Projekts ist die Erstellung einer integrierten Werkzeugumgebung für die Unterstützung der Testgetriebenen Agilen Simulation, sowie die Schaffung eines Visualisierungswerkzeugs für Benutzungsmodelle mit rudimentären Editiermöglichkeiten.

    Die Kopplung des Testfallgenerators .getmore (sepp.med GmbH) und des Simulationsframeworks Syntony (gemeinsame Entwicklung von Informatik 7 und Fraunhofer IIS) ist dabei eines der wesentlichen Projektziele. Außerdem umfasst der Projektrahmen die Erstellung eines MCUP-Editors für die Erstellung, Modifikation und Konsistenzprüfung von Benutzungsprofilen, Visualisierung von Graphen ohne Positionsinformationen mithilfe eines neuen Layout-Algorithmus und die Ansicht der Modelle aus verschiedenen Perspektiven (z.B. Tester-Perspektive, Validierungsperspektive).

    Project Period

      2010-01-01 – 2011-02-28

    Project Members

    • Prof. Dr.-Ing. Reinhard German
    • Dr.-Ing. Anatoli Djanatliev
    • Dr.-Ing. Vitali Schneider
    • Florian Prester

    Sponsered by

    • BMWi (Bundesministerium für Wirtschaft und Technologie)

    Involved Institutions

    • sepp.med gmbh

    Related Publications

    1. Anatoli Djanatliev, Winfried Dulz, Reinhard German und Vitali Schneider, “VeriTAS – A Versatile Modeling Environment for Test-driven Agile Simulation,” Proceedings of the 2011 Winter Simulation Conference, Phoenix, AZ USA, pp. 3657-3666, Dezember 2011  
    Computer Science 7 (Computer Networks and Communication Systems)
    Friedrich-Alexander-Universität Erlangen-Nürnberg

    Martensstr. 3
    91058 Erlangen
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