• DocumentCode
    22774
  • Title

    Visual Analytics for Complex Engineering Systems: Hybrid Visual Steering of Simulation Ensembles

  • Author

    Matkovic, Kresimir ; Gracanin, Denis ; Splechtna, Rainer ; Jelovic, Mario ; Stehno, Benedikt ; Hauser, Helwig ; Purgathofer, Werner

  • Author_Institution
    VRVis Res. Center, Vienna, Austria
  • Volume
    20
  • Issue
    12
  • fYear
    2014
  • fDate
    Dec. 31 2014
  • Firstpage
    1803
  • Lastpage
    1812
  • Abstract
    In this paper we propose a novel approach to hybrid visual steering of simulation ensembles. A simulation ensemble is a collection of simulation runs of the same simulation model using different sets of control parameters. Complex engineering systems have very large parameter spaces so a naïve sampling can result in prohibitively large simulation ensembles. Interactive steering of simulation ensembles provides the means to select relevant points in a multi-dimensional parameter space (design of experiment). Interactive steering efficiently reduces the number of simulation runs needed by coupling simulation and visualization and allowing a user to request new simulations on the fly. As system complexity grows, a pure interactive solution is not always sufficient. The new approach of hybrid steering combines interactive visual steering with automatic optimization. Hybrid steering allows a domain expert to interactively (in a visualization) select data points in an iterative manner, approximate the values in a continuous region of the simulation space (by regression) and automatically find the “best” points in this continuous region based on the specified constraints and objectives (by optimization). We argue that with the full spectrum of optimization options, the steering process can be improved substantially. We describe an integrated system consisting of a simulation, a visualization, and an optimization component. We also describe typical tasks and propose an interactive analysis workflow for complex engineering systems. We demonstrate our approach on a case study from automotive industry, the optimization of a hydraulic circuit in a high pressure common rail Diesel injection system.
  • Keywords
    data analysis; data visualisation; design of experiments; optimisation; parameter space methods; steering systems; automatic optimization; automotive industry; complex engineering systems; control parameters; coupling simulation; high pressure common rail Diesel injection system; hybrid visual steering; hydraulic circuit; interactive analysis; interactive steering; large parameter spaces; prohibitively large simulation; visual analytics; visualization; Analytical models; Computational modeling; Data models; Optimization; Simulation; Visualization; Automatic Optimization; Integrated Design Environment; Interactive Visual Analysis; Simulation; Visual Steering;
  • fLanguage
    English
  • Journal_Title
    Visualization and Computer Graphics, IEEE Transactions on
  • Publisher
    ieee
  • ISSN
    1077-2626
  • Type

    jour

  • DOI
    10.1109/TVCG.2014.2346744
  • Filename
    6876045