数字线程支持的产品生命周期数字孪生方法

Laetitia V. Monnier, Guodong Shao, S. Foufou
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引用次数: 0

摘要

技术进步推动制造业向智能制造和工业4.0转型。数字孪生(Digital Twin)和数字线程(Digital Thread)等有前景的概念可以帮助加速这种转变。使用数字孪生的一个好处是实现生命周期信息的连续性。然而,目前,大多数数字孪生实现的重点是在“筒仓”中对物理元素的特定生命周期阶段进行建模。这使得企业错过了高达65%的数字孪生投资的潜在价值。这也导致合并来自不同生命周期阶段的不同数据流具有挑战性。数字线被用来表示产品生命周期中的信息流。跨产品生命周期阶段使用信息将促进数字孪生的互操作性和可重用性。因为每个生命周期阶段的数据都可以被系统地访问和管理,这将确保数字孪生的价值和可信度。业界对于什么是数字孪生和数字线程以及它们之间的关系仍然存在很多困惑。由于所涉及的标准和技术的异质性,将来自数字线程的生命周期数据用于数字孪生实现是复杂的。本文给出了数字孪生和数字线程的定义;我们强调了将它们用于产品生命周期管理和分析的数字孪生的互操作性和可重用性的好处;我们提出了一种使用由数字线程支持的生命周期数据实现数字孪生的方法。最后,我们通过提供一个将数字孪生与数字线程集成的示例来展示所提出的方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Methodology for Digital Twins of Product Lifecycle Supported by Digital Thread
Technological advancements have led to the transition of manufacturing industries to Smart Manufacturing and Industry 4.0. Promising concepts such as Digital Twin and Digital Thread could help speed up the transition. One benefit of using digital twins is to enable continuity of lifecycle information. However, currently, most digital-twin implementations focus on modeling a particular lifecycle stage of a physical element in “silos”. This makes companies missing out on up to 65% of possible value of digital twin investments. This also results in it challenging to incorporate diverse data streams from different lifecycle stages. Digital thread has been used to represent information flow along the product lifecycle. Using information across product lifecycle stages will facilitate interoperability and reusability of digital twins. Because data from each lifecycle stage could be accessed and managed systematically, this will ensure the value and the credibility of the digital twin. A lot of confusion still remains in industry about what are digital twin and digital thread as well as their relationships. Using lifecycle data from a digital thread for digital twin implementation is complex because of the heterogeneity of standards and technologies involved. In this paper, we provide definitions of both digital twin and digital thread; we highlight the benefit of using them for interoperability and reusability of a digital twin for product lifecycle management and analysis; we propose a methodology for implementing digital twins using lifecycle data supported by a digital thread. Finally, we showcase the proposed methodology by providing an example of integrating digital twins with a digital thread.
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