动态信息物理系统开发中以行为为中心的数字孪生设计

C. Stary, Matthes Elstermann, A. Fleischmann, W. Schmidt
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引用次数: 8

摘要

数字孪生是网络物理系统的数字模型,不仅可以实现连续监测,还可以实现网络服务、物理产品、机器和设备的积极功能改进。当在组织和技术革新方面认识和探索商业机会,以及丰富与系统有关的应用范围时,这种能力是极其重要的。在其目标生态系统(如智能城市)中运行之前,网络物理系统可以通过可执行的行为模型进行验证并作为数字孪生运行。这些模型的开发捕获了CPS组件的水平和垂直集成,从而允许考虑特定的系统质量,例如交通的污染影响。本文研究了在系统转换过程中开发和操作数字孪生的方法和技术方面。我们在以人为中心的建模和开发环境中考虑集成的深度和广度、连接性、组织智能、验证和实现可变性。该方法丰富了对网络物理系统的数字表示的数字孪生的理解,允许根据操作条件动态分配物理和数字部件。交通管理的一个典型案例研究证明了以沟通为中心的方法的可行性和实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Behavior-Centered Digital-Twin Design for Dynamic Cyber-Physical System Development
Digital Twins are digital models of Cyber-Physical Systems to enable not only continuous monitoring but also active functional improvement of networked services, physical products, machines and devices. This capacity is of utmost importance when recognizing and exploring business opportunities in terms of organizational and technology innovations, as well as enriching the scope of system-relevant applications. Before being operated in their target ecosystems, such as smart cities, Cyber-Physical Systems can be validated and be run as Digital Twin through executable behavior models. The development of these models captures both, the horizontal, and the vertical integration of CPS components, thus allowing to consider specific system qualities, such as pollution effects of traffic. This article investigates methodological and technological aspects of developing and operating Digital Twins along system transformation processes. We consider integration depth and breadth, connectivity, organizational intelligence, validation, and implementation variability in the context of human-centered modeling and development. The approach enriches the understanding of digital twins towards digital representation of Cyber-Physical Systems allowing for dynamic allocation of physical and digital parts according to operational conditions. An exemplary case study in traffic management demonstrates the feasibility and practicability of the communication-centered approach.
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