Location via proxy:   [ UP ]  
[Report a bug]   [Manage cookies]                
skip to main content
10.5555/2876341.2876362acmconferencesArticle/Chapter ViewAbstractPublication PagesspringsimConference Proceedingsconference-collections
research-article

Model-based configuration of automotive co-simulation scenarios

Published: 12 April 2015 Publication History
  • Get Citation Alerts
  • Abstract

    Co-simulation represents a state-of-the-art method for virtual integration and simulation of automotive systems. Due to the needed number of simulation component models to describe such systems and their environment, the setup of all involved co-simulation tools within a framework becomes time consuming and error-prone. Based on related work, this paper takes the idea of a model based co-simulation configuration further, where all necessary information for execution of co-simulations is retrieved from a system model. For that purpose a meta-model, a subsequently derived UML-profile and a tool extension are developed. With this approach a tighter integration of simulation based verification activities to model-based systems engineering techniques is achieved. This allows engineers to generate co-simulation configurations out of system models. The resulting co-simulation configurations are fed directly to the used co-simulation framework, eliminating the need for time-consuming configuration of such a framework. Furthermore, potential reuse of entire co-simulation configurations, or parts thereof, is ensured. To support these claims, two use cases from the automotive domain are adducted to evaluate the described approach.

    References

    [1]
    Benedikt, M., Watzenig, D., Zehetner, J., and Hofer, A. NEPCE - A Nearly Energy Preserving Coupling Element for Weak-coupled Problems and Co-simulation. In IV International Conference on Computational Methods for Coupled Problems in Science and Engineering, Coupled Problems (2013).
    [2]
    Blockwitz, T., Otter, M., Akesson, J., Arnold, M., Clauss, C., Elmqvist, H., Friedrich, M., Junghanns, A., Mauss, J., Neumerkel, D., Olsson, H., and Viel, A. Functional Mockup Interface 2.0: The Standard for Tool independent Exchange of Simulation Models. 173--184.
    [3]
    Friedenthal, S., Moore, A., and Steiner, R. A practical guide to SysML: the systems modeling language. Elsevier, 2011.
    [4]
    Geimer, M., Krüger, T., and Linsel, P. Co-Simulation: gekoppelte Simulation oder Simulatorkopplung. O+P Zeitschrift für Fluidtechnik (2006), 4--8.
    [5]
    Karner, M., Krammer, M., Schratter, M., Wimmer, P., Watzenig, D., and Gruber, C. M. A Comprehensive Approach for Modeling, Simulation and Virtual Validation of Integrated Safety Systems. Advanced Microsystems for Automotive Applications: Smart Systems for Safe and Green Vehicles (2013), 101--110.
    [6]
    Karner, M., Steger, C., Armengaud, E., Pistauer, M., and Pfister, F. A cross domain co-simulation platform for the efficient analysis of mechatronic systems. SAE World Conference, SAE Technical Paper 2010-01-0239 (2010).
    [7]
    Krammer, M., Clazzer, F., Armengaud, E., Karner, M., Steger, C., and Weiss, R. Exploration of the FlexRay signal integrity using a combined prototyping and simulation approach. In 13th IEEE Symposium on Design and Diagnostics of Electronic Circuits and Systems, IEEE (2010), 111--116.
    [8]
    Krammer, M., Karner, M., and Fuchs, A. Semi-formal Modeling of Simulation-based V & V Methods to Enhance Safety. In Proceedings of the Embedded World 2014 Exhibition and Conference, WEKA Fachmedien GmbH (Nuremberg, Germany, 2014).
    [9]
    Mews, M., Svacina, J., and Weissleder, S. From AUTOSAR Models to Co-simulation for MiL-Testing in the Automotive Domain. In Software Testing, Verification and Validation (ICST), 2012 IEEE Fifth International Conference on (April 2012), 519--528.
    [10]
    Modelisar Consortium. Specification for Product Lifecycle Management (PLM) of modeling, simulation and validation information. FMI PLM Interface (2011). 11. Object Management Group. OMG Systems Modeling Language (OMG SysML) Version 1.3, 2012.
    [11]
    Puntigam, W. Coupled Simulation: Key for a Successful Energy Management. Virtual Vehicle 11th Automotive Technology Conference (2007).
    [12]
    Selic, B. A Systematic Approach to Domain-Specific Language Design Using UML. 10th IEEE International Symposium on Object and Component-Oriented Real-Time Distributed Computing (ISORC'07) (May 2007), 2--9.
    [13]
    Virtual Vehicle Research and Test Center. ICOS Independent Co-Simulation - User Manual Version 3, 2013.
    [14]
    Wang, B., and Baras, J. S. Hybridsim: A modeling and co-simulation toolchain for cyber-physical systems. In Proceedings of the 2013 IEEE/ACM 17th International Symposium on Distributed Simulation and Real Time Applications, DS-RT '13, IEEE Computer Society (Washington, DC, USA, 2013), 33--40.
    [15]
    Zehetner, J., Lu, W., and Watzenig, D. Design of modern vehicle electrical systems based on co-simulation and a model library. ATZelektronik worldwide 8, 4 (Aug. 2013), 20--24.

    Cited By

    View all

    Index Terms

    1. Model-based configuration of automotive co-simulation scenarios

      Recommendations

      Comments

      Information & Contributors

      Information

      Published In

      cover image ACM Conferences
      ANSS '15: Proceedings of the 48th Annual Simulation Symposium
      April 2015
      217 pages
      ISBN:9781510800991

      Sponsors

      Publisher

      Society for Computer Simulation International

      San Diego, CA, United States

      Publication History

      Published: 12 April 2015

      Check for updates

      Author Tags

      1. SysML
      2. UML
      3. automotive
      4. co-simulation
      5. configuration
      6. language

      Qualifiers

      • Research-article

      Conference

      SpringSim '15
      Sponsor:
      SpringSim '15: 2015 Spring Simulation Multiconference
      April 12 - 15, 2015
      Virginia, Alexandria

      Contributors

      Other Metrics

      Bibliometrics & Citations

      Bibliometrics

      Article Metrics

      • Downloads (Last 12 months)7
      • Downloads (Last 6 weeks)1
      Reflects downloads up to 11 Aug 2024

      Other Metrics

      Citations

      Cited By

      View all

      View Options

      Get Access

      Login options

      View options

      PDF

      View or Download as a PDF file.

      PDF

      eReader

      View online with eReader.

      eReader

      Media

      Figures

      Other

      Tables

      Share

      Share

      Share this Publication link

      Share on social media