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Multi-Paradigm Discrete-Event Modelling and Co-simulation of Cyber-Physical Systems

机译:电子物理系统的多范例离散事件建模和协同仿真

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In the modelling of Cyber-Physical Systems (CPSs), there are different possible routes that can be followed to gradually achieve a collection of constituent models that can be co-simulated with a high level of accuracy. This paper demonstrates a methodology which initially develops all constituent models at a high level of abstraction with discrete-event models expressed using the Vienna Development Method (VDM). Subsequently, a number of these are refined (without changing the interfaces) by more detailed models expressed in different formalisms, and using tools that can export Functional Mock-up Units (FMUs) for co-simulation through the Functional Mock-up Interface (FMI) standard. The development team of each of these more detailed models can then experiment with the interactions with all the other constituent models, using the high-level discrete-event versions until higher-fidelity alternatives are ready. The results reported in this paper were obtained in an innovation experiment within the EU CPSE Labs research project, part of Smart Anything Everywhere initiative.
机译:在网络物理系统(CPS)的建模中,可以遵循不同的可能路线,以逐步实现可以高度准确地共同仿真的组成模型的集合。本文演示了一种方法,该方法最初使用维也纳开发方法(VDM)表示的离散事件模型以较高的抽象水平开发所有组成模型。随后,通过使用以不同形式表示的更详细的模型,并使用可以导出功能模型单元(FMU)以便通过功能模型接口(FMI)进行协同仿真的工具,对其中的一些进行精炼(无需更改接口)。 )标准。然后,这些更详细的模型中的每一个的开发团队都可以使用高级离散事件版本来试验与所有其他组成模型的交互,直到准备好更高保真度的替代方案为止。本文报告的结果是在欧盟CPSE实验室研究项目的一项创新实验中获得的,该实验是“智能无处不在”计划的一部分。

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