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首页> 外文期刊>Proceedings of the IEEE >Digital Twin in the IoT Context: A Survey on Technical Features, Scenarios, and Architectural Models
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Digital Twin in the IoT Context: A Survey on Technical Features, Scenarios, and Architectural Models

机译:IOT背景中的数字双胞胎:技术功能,场景和建筑模型的调查

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摘要

Digital twin (DT) is an emerging concept that is gaining attention in various industries. It refers to the ability to clone a physical object (PO) into a software counterpart. The softwarized object, termed logical object, reflects all the important properties and characteristics of the original object within a specific application context. To fully determine the expected properties of the DT, this article surveys the state-of-the-art starting from the original definition within the manufacturing industry. It takes into account related proposals emerging in other fields, namely augmented and virtual reality (e.g., avatars), multiagent systems, and virtualization. This survey thereby allows for the identification of an extensive set of DT features that point to the "softwarization" of POs. To properly consolidate a shared DT definition, a set of foundational properties is identified and proposed as a common ground outlining the essential characteristics (must-haves) of a DT. Once the DT definition has been consolidated, its technical and business value is discussed in terms of applicability and opportunities. Four application scenarios illustrate how the DT concept can be used and how some industries are applying it. The scenarios also lead to a generic DT architectural model. This analysis is then complemented by the identification of software architecture models and guidelines in order to present a general functional framework for the DT. This article, eventually, analyses a set of possible evolution paths for the DT considering its possible usage as a major enabler for the softwarization process.
机译:数字双胞胎(DT)是一种新兴的概念,正在进行各种行业。它指的是将物理对象(PO​​)克隆到软件对应物中的能力。 DESTWRARIZED对象称为逻辑对象,反映了特定应用程序上下文中原始对象的所有重要属性和特征。为了完全确定DT的预期属性,本文从制造业内的原始定义中调查最先进的。它考虑了其他领域的相关建议,即增强和虚拟现实(例如,化身),多重系统和虚拟化。因此,该调查允许识别一组广泛的DT功能,该特征点为POS的“软态”。为了适当地巩固共享的DT定义,识别了一组基本属性,并提出作为概述DT的基本特征(必须 - 必须的)的共同点。一旦巩固了DT定义,就可以在适用性和机会方面讨论了其技术和业务价值。四个应用方案说明了如何使用DT概念以及一些行业如何应用。这种情况也会导致通用DT架构模型。然后通过识别软件架构模型和指南来补充该分析,以便为DT提供一般功能框架。本文最终分析了一系列可能的演变路径,用于考虑其可能使用作为软态过程的主要启动器。

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