A bi-objective decision support tool based on system dynamics and discrete event modelling for sustainable supply chain

Circular Economy Pub Date : 2023-08-01 DOI:10.55845/sddh3833
Jia Yu, Trung Hieu, Simon Gray, Adriana Encinas-Oropesa
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Abstract

Based on the development trend of sustainable concepts and the implement ability of composites combined with Agave Bagasse Fibre (ABF) and Polyethylene Terephthalate (PET). The purpose of this paper is to design a bi-objective decision support tool for supply chain of composite material which combined with ABF and PET. Through the production, processing, recycling, and reprocessing of composite materials, the sustainable supply chain model of four different schemes is designed, and the data results of each scheme model are calculated and analysed. The tool can support supply chain modelling solutions that seek best practices for sustainable supply chains and optimize resource efficiency through cost and carbon dioxide emissions. The sustainable supply chain model was designed, created, and optimized in AnyLogic software using System Dynamics and Discrete Event Simulation modelling methods based on the supply chain model established by previous researchers. According to the analysis results of the model data, the reasonable design of the whole process can effectively reduce the cost and carbon dioxide emissions and achieve the effectiveness and implementation of the sustainable supply chain. The results of this study will provide reference for more sustainable supply chain models in the future. Further research on composite materials can be carried out by combining with practice.
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基于系统动力学和离散事件建模的可持续供应链双目标决策支持工具
基于可持续理念的发展趋势和龙舌兰甘蔗渣纤维(ABF)与聚对苯二甲酸乙二醇酯(PET)复合材料的实施能力。本文的目的是设计一个结合ABF和PET的复合材料供应链双目标决策支持工具。通过复合材料的生产、加工、回收和再加工,设计了四种不同方案的可持续供应链模型,并对每种方案模型的数据结果进行了计算和分析。该工具可以支持供应链建模解决方案,寻求可持续供应链的最佳实践,并通过成本和二氧化碳排放优化资源效率。在前人建立的供应链模型的基础上,利用系统动力学和离散事件仿真建模方法,在AnyLogic软件中设计、创建和优化可持续供应链模型。根据模型数据的分析结果,整个流程的合理设计可以有效地降低成本和二氧化碳的排放,实现可持续供应链的有效性和实施。本研究的结果将为未来更可持续的供应链模式提供参考。结合实际,可以对复合材料进行进一步的研究。
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