产品跟踪还是组件跟踪?区块链在两级供应链管理中的应用

IF 6.5 1区 工程技术 Q1 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS Computers & Industrial Engineering Pub Date : 2025-02-01 Epub Date: 2024-12-03 DOI:10.1016/j.cie.2024.110789
Ardavan Babaei , Majid Khedmati , Mohammad Reza Akbari Jokar , Erfan Babaee Tirkolaee
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引用次数: 0

摘要

消费者对产品真实性和碳足迹追踪的意识是当今世界在供应链中采用区块链的最显著原因之一。然而,研究文献尚未研究供应链中采用区块链的具体方法。本研究旨在开发一种决策支持工具,以处理采用区块链技术来设计两层供应链的问题。在这方面,基于跟踪类型和区块生成权限,开发了四个集成供应链和区块链的具体案例。在产品跟踪中,绿色产品在整个供应链中进行研究,而在组件跟踪中,绿色产品在供应链的组件之间进行研究。由于区块链网络中的权威机构对供应链信息进行记录和验证是必要的,因此在本工作中,对供应链的各个环节和成员都考虑了这些权威机构。据我们所知,这是第一次尝试对绿色供应链管理(GSCM)中采用区块链的各种方法进行分类,并提出相关的数学优化模型。在这条线上,开发了四个混合整数线性规划(MILP)模型,旨在将与物理供应链和区块链部署相关的成本最小化,以实现供应链与区块链技术的集成。它们由分支和效率(B&;E)算法和同时数据包络分析(SDEA)模型处理,考虑了共同(成本和服务)和创新(区块链)标准。结果表明,基于链路的模型和构件跟踪模型具有较高的成本效益。此外,绿色产品跟踪的成本目标函数对块数的敏感性高于部件跟踪。最终,该研究为决策者和管理者了解如何在供应链网络特征、成本、透明度和服务方面采用区块链提供了很大的机会。
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Product tracing or component tracing? Blockchain adoption in a two-echelon supply chain management
Consumer awareness of product authenticity and carbon footprint tracing are among the most remarkable reasons for adopting blockchain in the supply chain in today’s world. However, the research literature has not yet examined specific ways to adopt blockchain in the supply chain. This study aims to develop a decision support tool to deal with the adoption of blockchain technology to design a two-echelon supply chain. In this regard, four specific cases for integrating supply chain and blockchain are developed based on types of tracing and block generation authority. In product tracing, green products are investigated throughout the supply chain, while in component tracing, green products are examined between the components of the supply chain. As it is necessary to record and verify the supply chain information by authorities in the blockchain network, in this work, such authorities are taken into account for both links and members of the supply chain. As far as we know, this is the first attempt to classify the various methods of adopting blockchain in Green Supply Chain Management (GSCM) and propose mathematical optimization models related to them. In this line, four Mixed-Integer Linear Programming (MILP) models with the aim of minimizing the costs related to the physical supply chain and blockchain deployment are developed for the integration of the supply chain with blockchain technology. They are treated by the Branch and Efficiency (B&E) algorithm and Simultaneous Data Envelopment Analysis (SDEA) model considering common (cost and service) and innovative (blockchain) criteria. The results showed that link-based and component tracing models are cost-effective. In addition, the cost objective function of green product tracing is more sensitive to the number of blocks than that of component tracing. Eventually, the study provides great opportunities for decision-makers and managers to understand how to adopt blockchain in terms of supply chain network characteristics, cost, transparency, and service.
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来源期刊
Computers & Industrial Engineering
Computers & Industrial Engineering 工程技术-工程:工业
CiteScore
12.70
自引率
12.70%
发文量
794
审稿时长
10.6 months
期刊介绍: Computers & Industrial Engineering (CAIE) is dedicated to researchers, educators, and practitioners in industrial engineering and related fields. Pioneering the integration of computers in research, education, and practice, industrial engineering has evolved to make computers and electronic communication integral to its domain. CAIE publishes original contributions focusing on the development of novel computerized methodologies to address industrial engineering problems. It also highlights the applications of these methodologies to issues within the broader industrial engineering and associated communities. The journal actively encourages submissions that push the boundaries of fundamental theories and concepts in industrial engineering techniques.
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