Digital Twins are increasingly being introduced for smart manufacturing systems to improve the efficiency of the main disciplines of such systems. Formal techniques, such as graphs, are a common way of describing Digital Twin models, allowing broad types of tools to provide Digital Twin based services such as fault detection in production lines. Obtaining correct and complete formal Digital Twins of physical systems can be a complicated and time consuming process, particularly for manufacturing systems with plenty of physical objects and the associated manufacturing processes. Automatic generation of Digital Twins is an emerging research field and can reduce time and costs. In this paper, we focus on the generation of Digital Twins for flexible manufacturing systems with Automated Guided Vehicles (AGVs) on the factory floor. In particular, we propose an architectural framework and the associated design choices and software development tools that facilitate automatic generation of Digital Twins for AGVs. Specifically, the scope of the generated digital twins is controlling AGVs in the factory floor. To this end, we focus on different control levels of AGVs and utilize graph theory to generate the graph-based Digital Twin of the factory floor.
翻译:正在越来越多地为智能制造系统引进数字双胞胎,以提高这类系统主要学科的效率。像图表这样的正规技术是描述数字双胞胎模型的一种常见方式,允许使用多种工具提供数字双胞胎服务,如生产线的故障检测。获得正确和完整的正式的物理系统数字双胞胎系统,可能是一个复杂和耗时的过程,特别是对于拥有大量物理物体的制造系统和相关制造工艺的制造系统而言。自动生成数字双胞胎是一个新兴的研究领域,可以减少时间和费用。在本文中,我们侧重于在工厂楼层生成具有自动制导车(AGVs)的灵活制造系统的数字双胞胎系统。特别是,我们提出了一个建筑框架和相关的设计选择以及软件开发工具,便利AGVs自动生成数字双胞胎。具体地说,生成的数字双胞胎的范围正在控制工厂楼层的AGVs。为此,我们侧重于AGVs的不同控制水平,并使用图表理论来生成工厂楼的图形数字双。