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工业 4.0 组件中资产治理外壳的自动化设计与集成。

Automated Design and Integration of Asset Administration Shells in Components of Industry 4.0.

机构信息

Faculty of Electrical Engineering and Communication, Brno University of Technology, 616 00 Brno, Czech Republic.

Institute for Automation Engineering, Otto von Guericke University Magdeburg, 39106 Magdeburg, Germany.

出版信息

Sensors (Basel). 2021 Mar 12;21(6):2004. doi: 10.3390/s21062004.

Abstract

One of the central concepts in the principles of Industry 4.0 relates to the methodology for designing and implementing the digital shell of the manufacturing process components. This concept, the Asset Administration Shell (AAS), embodies a systematically formed, standardized data envelope of a concrete component within Industry 4.0. The paper discusses the AAS in terms of its structure, its components, the sub-models that form a substantial part of the shell's content, and its communication protocols (Open Platform Communication-Unified Architecture (OPC UA) and MQTT) or SW interfaces enabling vertical and horizontal communication to involve other components and levels of management systems. Using a case study of a virtual assembly line that integrates AASs into the technological process, the authors present a comprehensive analysis centered on forming AASs for individual components. In the given context, the manual AAS creation mode exploiting framework-based automated generation, which forms the AAS via a configuration wizard, is assessed. Another outcome consists of the activation of a virtual assembly line connected to real AASs, a step that allows us verify the properties of the distributed manufacturing management. Moreover, a discrete event system was modeled for the case study, enabling the effective application of the Industry 4.0 solution.

摘要

工业 4.0 原则中的一个核心概念涉及到设计和实现制造过程组件的数字外壳的方法。这个概念,资产管理外壳(AAS),体现了工业 4.0 中一个具体组件的系统形成的、标准化的数据封装。本文从结构、组件、构成外壳内容重要部分的子模型、以及其通信协议(开放平台通信-统一架构(OPC UA)和 MQTT)或 SW 接口等方面讨论了 AAS,这些接口能够实现垂直和水平通信,涉及其他组件和管理层级。通过一个将 AAS 集成到工艺流程中的虚拟装配线的案例研究,作者对以形成各个组件的 AAS 为中心的全面分析进行了介绍。在给定的上下文中,评估了利用基于框架的自动化生成来手动创建 AAS 的模式,该模式通过配置向导来形成 AAS。另一个结果是激活连接到实际 AAS 的虚拟装配线,这一步骤允许我们验证分布式制造管理的属性。此外,还为案例研究建立了一个离散事件系统,从而能够有效地应用工业 4.0 解决方案。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6676/8000614/0e4e9848dd28/sensors-21-02004-g001.jpg

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