首页> 外文期刊>ASCE-ASME Journal of Risk and Uncertainty in Engineering Systems, Part B. Mechanical Engineering >Digital Twins: State-of-the-Art and Future Directions for Modeling and Simulation in Engineering Dynamics Applications
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Digital Twins: State-of-the-Art and Future Directions for Modeling and Simulation in Engineering Dynamics Applications

机译:数字双胞胎:在工程动态应用中的建模和仿真的最先进和未来方向

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摘要

This paper presents a review of the state of the art for digital twins in the application domain of engineering dynamics. The focus on applications in dynamics is because: (i) they offer some of the most challenging aspects of creating an effective digital twin, and (ii) they are relevant to important industrial applications such as energy generation and transport systems. The history of the digital twin is discussed first, along with a review of the associated literature; the process of synthesizing a digital twin is then considered, including definition of the aims and objectives of the digital twin. An example of the asset management phase for a wind turbine is included in order to demonstrate how the synthesis process might be applied in practice. In order to illustrate modeling issues arising in the construction of a digital twin, a detailed case study is presented, based on a physical twin, which is a small-scale three-story structure. This case study shows the progression toward a digital twin highlighting key processes including system identification, data-augmented modeling, and verification and validation. Finally, a discussion of some open research problems and technological challenges is given, including workflow, joints, uncertainty management, and the quantification of trust. In a companion paper, as part of this special issue, a mathematical framework for digital twin applications is developed, and together the authors believe this represents a firm framework for developing digital twin applications in the area of engineering dynamics.
机译:本文提出了对工程动态应用领域的数字双胞胎的最新技术的审查。关注动态中的应用是:(i)他们提供了一些创建有效数字双胞胎的最具挑战性的方面,(ii)与能源发电和运输系统等重要的工业应用相关。首先讨论了数字双胞胎的历史,以及相关文献的审查;然后考虑合成数字双胞胎的过程,包括数字双胞胎的目标和目标的定义。包括风力涡轮机的资产管理阶段的示例,以证明如何在实践中应用合成过程。为了说明在建造数字双胞胎的建造中产生的建模问题,基于物理双胞胎,呈现了详细的案例研究,这是一种小规模的三层结构。本案例研究显示了数字双胞胎突出显示关键过程的进展,包括系统识别,数据增强建模和验证和验证。最后,给出了一些开放研究问题和技术挑战的讨论,包括工作流程,关节,不确定性管理和信任的量化。在一个伴侣论文中,作为这一特殊问题的一部分,开发了一种数字双胞胎应用的数学框架,作者在一起认为这代表了一种在工程动态领域开发数字双胞胎应用的公司框架。

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