Validity Frame-enabled model-based engineering processes

被引:5
作者
Van Acker, Bert [1 ,2 ]
De Meulenaere, Paul [1 ]
Vangheluwe, Hans [1 ]
Denil, Joachim [1 ]
机构
[1] Univ Antwerp, Antwerp, Belgium
[2] Univ Antwerp, Groenenborgerlaan 171, B-2020 Antwerp, Belgium
来源
SIMULATION-TRANSACTIONS OF THE SOCIETY FOR MODELING AND SIMULATION INTERNATIONAL | 2024年 / 100卷 / 02期
关键词
Model validity; engineering ontology; model-driven engineering; cyber-physical systems; DESIGN; MANAGEMENT; SUPPORT;
D O I
10.1177/00375497231205035
中图分类号
TP39 [计算机的应用];
学科分类号
081203 ; 0835 ;
摘要
Model-based systems engineering (MBSE) focuses on using models to support the design, optimization, simulation, and ultimately deployment of complex cyber-physical systems (CPSs). These models enable reasoning about and predicting the behavior of the (realized) real-world system in silico. The value of using such (predictive) model depends on its validity against its real-world counterpart. As such, the validity context of a model is critical to ensure correct model use. Reasoning on validity is only possible if the validity of the model was captured explicitly at design time. In previous work, the validity frame (VF) was presented as a way to explicitly capture a model's validity; however, no guidance on the integration process within MBSE processes was given. Within this article, we present the creation and evolution of the model and its VFs to ensure model validity consistency and completeness. This evolution results in a set of interrelated models and VFs. By capturing these relations, we create a lightweight frame-enabled library of model variants. We show our contribution using an F1/10 vehicle simulation test bench.
引用
收藏
页码:185 / 226
页数:42
相关论文
共 64 条
  • [1] Towards a Formal Specification of Multi-Paradigm Modelling
    Amrani, Moussa
    Blouin, Dominique
    Heinrich, Robert
    Rensink, Arend
    Vangheluwe, Hans
    Wortmann, Andreas
    [J]. 2019 ACM/IEEE 22ND INTERNATIONAL CONFERENCE ON MODEL DRIVEN ENGINEERING LANGUAGES AND SYSTEMS COMPANION (MODELS-C 2019), 2019, : 419 - 424
  • [2] [Anonymous], 2000, THEORY MODELING SIMU
  • [3] Antonopoulos A.M., 2014, MASTERING BITCOIN UN
  • [4] Balci O., 1994, P 27 C WINT SIM ARL
  • [5] Bartocci Ezio, 2018, Lectures on Runtime. Verification Introductory and Advanced Topics. LNCS 10457, P135, DOI 10.1007/978-3-319-75632-5_5
  • [6] Benveniste A., 2015, Contracts for Systems Design: Theory
  • [7] Contracts for System Design
    Benveniste, Albert
    Caillaud, Benoit
    Nickovic, Dejan
    Passerone, Roberto
    Raclet, Jean-Baptiste
    Reinkemeier, Philipp
    Sangiovanni-Vincentelli, Alberto
    Damm, Werner
    Henzinger, Thomas A.
    Larsen, Kim G.
    [J]. FOUNDATIONS AND TRENDS IN ELECTRONIC DESIGN AUTOMATION, 2018, 12 (2-3): : I - +
  • [8] Validating Industrial Requirements with a Contract-Based Approach
    Bernaerts, Matthias
    Oakes, Bentley James
    Vanherpen, Ken
    Aelvoet, Bjorn
    Vangheluwe, Hans
    Denil, Joachim
    [J]. 2019 ACM/IEEE 22ND INTERNATIONAL CONFERENCE ON MODEL DRIVEN ENGINEERING LANGUAGES AND SYSTEMS COMPANION (MODELS-C 2019), 2019, : 18 - 27
  • [9] Blochwitz T., 2011, Proc. 8th Int. Modelica Conf., Dresden, P105, DOI DOI 10.3384/ECP11063105
  • [10] Blockwitz T, 2012, P 9 INT MODELICA C, P173, DOI DOI 10.3384/ECP12076173