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Journal ArticleDOI

Digital twin-driven product design, manufacturing and service with big data

TLDR
In this paper, a new method for product design, manufacturing, and service driven by digital twin is proposed, and three cases are given to illustrate the future applications of digital twin in three phases of a product respectively.
Abstract
Nowadays, along with the application of new-generation information technologies in industry and manufacturing, the big data-driven manufacturing era is coming. However, although various big data in the entire product lifecycle, including product design, manufacturing, and service, can be obtained, it can be found that the current research on product lifecycle data mainly focuses on physical products rather than virtual models. Besides, due to the lack of convergence between product physical and virtual space, the data in product lifecycle is isolated, fragmented, and stagnant, which is useless for manufacturing enterprises. These problems lead to low level of efficiency, intelligence, sustainability in product design, manufacturing, and service phases. However, physical product data, virtual product data, and connected data that tie physical and virtual product are needed to support product design, manufacturing, and service. Therefore, how to generate and use converged cyber-physical data to better serve product lifecycle, so as to drive product design, manufacturing, and service to be more efficient, smart, and sustainable, is emphasized and investigated based on our previous study on big data in product lifecycle management. In this paper, a new method for product design, manufacturing, and service driven by digital twin is proposed. The detailed application methods and frameworks of digital twin-driven product design, manufacturing, and service are investigated. Furthermore, three cases are given to illustrate the future applications of digital twin in the three phases of a product respectively.

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Citations
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Journal ArticleDOI

Data Super-Network Fault Prediction Model and Maintenance Strategy for Mechanical Product Based on Digital Twin

TL;DR: This paper proposes a “super-network-warning features” fault prediction and maintenance method for aero-engine bearing maintenance, and shows that the model prediction error of this method is better than the traditional method.
Journal ArticleDOI

A novel framework to evaluate innovation value proposition for smart product–service systems

TL;DR: This study proposes an integrated framework using DEMATEL and CRITIC methods based on the neutrosophic set to improve an overall quality in the healthcare sector extensively as many solution types, such as sensors, smart pills, and smart surgeries.
Journal ArticleDOI

Digital-Twin-Enabled Intelligent Distributed Clock Synchronization in Industrial IoT Systems

TL;DR: A digital-twin-enabled model-based scheme is proposed to achieve an intelligent clock synchronization for reducing resource consumption associated with distributed synchronization in fast-changing IIoT environments and a significant enhancement on the clock accuracy is accomplished with dramatically reduced communication resource consumption in networks with different packet delay variations.
Journal ArticleDOI

Digitalisation and servitisation of machine tools in the era of Industry 4.0: a review

TL;DR: In the context of Industry 4.0, machine tools play a pivotal role in the manufacturing world since their performance significantly affects the product quality and production efficiency as mentioned in this paper, and they play a crucial role in manufacturing process.
Journal ArticleDOI

Intelligent Maintenance Systems and Predictive Manufacturing

TL;DR: A comprehensive review of the recent efforts and advances in prominent methods for maintenance in manufacturing industries over the last decades is presented, identifying the existing research challenges, and outlining directions for future research.
References
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Journal ArticleDOI

Internet of Things in Industries: A Survey

TL;DR: This review paper summarizes the current state-of-the-art IoT in industries systematically and identifies research trends and challenges.
Proceedings ArticleDOI

The Digital Twin Paradigm for Future NASA and U.S. Air Force Vehicles

TL;DR: In this article, the Digital Twin system integrates ultra-high fidelity simulation with the vehicle s on-board integrated vehicle health management system, maintenance history and all available historical and fleet data to enable unprecedented levels of safety and reliability.
Journal ArticleDOI

Reengineering Aircraft Structural Life Prediction Using a Digital Twin

TL;DR: A conceptual model of how the Digital Twin can be used for predicting the life of aircraft structure and assuring its structural integrity is presented and the technical challenges to developing and deploying a Digital Twin are discussed.
Book ChapterDOI

Digital Twin—The Simulation Aspect

TL;DR: This chapter focuses on the simulation aspects of the Digital Twin, where simulation merges the physical and virtual world in all life cycle phases and enables the users to master the complexity of mechatronic systems.
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