信息物理系统
计算机科学
统一建模语言
类图
物理系统
软件
系统工程
软件工程
数据科学
工程类
量子力学
操作系统
物理
程序设计语言
作者
Jörg Christian Kirchhof,Judith Michael,Bernhard Rumpe⋆,Simon Varga,Andreas Wortmann
标识
DOI:10.1145/3365438.3410941
摘要
Digital twins emerge in many disciplines to support engineering, monitoring, controlling, and optimizing cyber-physical systems, such as airplanes, cars, factories, medical devices, or ships. There is an increasing demand to create digital twins as representation of cyber-physical systems and their related models, data traces, aggregated data, and services. Despite a plethora of digital twin applications, there are very few systematic methods to facilitate the modeling of digital twins for a given cyber-physical system. Existing methods focus only on the construction of specific digital twin models and do not consider the integration of these models with the observed cyber-physical system. To mitigate this, we present a fully model-driven method to describe the software of the cyber-physical system, its digital twin information system, and their integration. The integration method relies on MontiArc models of the cyber-physical system's architecture and on UML/P class diagrams from which the digital twin information system is generated. We show the practical application and feasibility of our method on an IoT case study. Explicitly modeling the integration of digital twins and cyber-physical systems eliminates repetitive programming activities and can foster the systematic engineering of digital twins.
科研通智能强力驱动
Strongly Powered by AbleSci AI