供应链
块链
生产(经济)
分类
计算机科学
环境经济学
业务
运筹学
风险分析(工程)
产业组织
经济
微观经济学
工程类
计算机安全
程序设计语言
营销
作者
Vijaya Kumar Manupati,Tobias Schoenherr,M. Ramkumar,Stephan M. Wagner,Sai Krishna Pabba,Rubee Singh
标识
DOI:10.1080/00207543.2019.1683248
摘要
Blockchain technology is destined to revolutionise supply chain processes. At the same time, governmental and regulatory policies are forcing firms to adjust their supply chains in response to environmental concerns. The objective of this study is therefore to develop a distributed ledger-based blockchain approach for monitoring supply chain performance and optimising both emission levels and operational costs in a synchronised fashion, producing a better outcome for the supply chain. We propose the blockchain approach for different production allocation problems within a multi-echelon supply chain (MESC) under a carbon taxation policy. As such, we couple recent advances in digitalisation of operations with increasingly stringent regulatory environmental policies. Specifically, with lead time considerations under emission rate constraints (imposed by a carbon taxation policy), we simultaneously consider the production, distribution and inventory control decisions in a production allocation-based MESC problem. The problem is then formulated as a Mixed Integer Non-Linear Programming (MINLP) model. We show that the distributed ledger-based blockchain approach minimises both total cost and carbon emissions. We then validate the feasibility of the proposed approach by comparing the results with a non-dominated sorting genetic algorithm (NSGA-II). The findings provide support for policymakers and supply chain executives alike.
科研通智能强力驱动
Strongly Powered by AbleSci AI