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August 31, 2021International Journal of Production Research76 citations

Blockchain-enabled digital twin collaboration platform for heterogeneous socialized manufacturing resource management

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MLMing LiYFYelin FuQCQiqi Chen

Key Points

  • This research aims to develop a blockchain-enabled digital twin collaboration platform for managing heterogeneous socialized manufacturing resources.
  • Proposed a blockchain-enabled digital twin collaboration platform (BcDTCP) to address resource management challenges.
  • Designed a ubiquitous object structure to manage the functionalities of digital twins.
  • Utilized a timed coloured Petri net-based workflow to implement collaboration logic via smart contracts.
  • The BcDTCP demonstrated enhanced management of distributed and heterogeneous socialized manufacturing resources.
  • Case study under 3D printing showed significant improvements in stakeholder collaboration efficiency.
  • Evaluations indicated that the use of blockchain improved the decentralised organization of manufacturing resources.

Abstract

Social manufacturing is conceptualised as a new type of networked manufacturing paradigm that supports the organisation of socialised manufacturing resources (SMRs) to satisfy the growth of personalised demands on crowd intelligence in a timely manner when co-creating open architecture products. The high participation of each stakeholder in this type of product production places a higher requirement on sufficient collaboration among social, cyber and physical spaces. However, under a decentralised social manufacturing network, the management of SMRs has encountered some real-life challenges in terms of their distributed and heterogeneous features. Hence, this paper proposes a blockchain-enabled digital twin collaboration platform (BcDTCP) as an integrated solution to address these challenges. A hybrid domain-driven design method is presented to design and implement business-knowledge driven systems. To address the heterogeneity of SMRs, a ubiquitous object structure is designed to flexibly adjust the functionality of the digital twin. Blockchain is introduced to construct a peer-to-peer network to organise the SMRs in a decentralised manner. Additionally, a timed coloured Petri net-based workflow is adopted to formulise the collaboration logic into a smart contract executed on the blockchain. Finally, a demonstrative case study is conducted to verify and evaluate the proposed BcDTCP under a 3D printing scenario.

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Cite This Study

Li et al. (2021) studied this question.

synapsesocial.com/papers/6a1c053bb33628da419d1f0ehttps://doi.org/10.1080/00207543.2021.1966118
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