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Decision Support Tool Selection for Eco-Design Integration into the Simultaneous Design of Product and its Supply Chain

机译:决策支持工具选择的生态设计集成到同时设计产品及其供应链中

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摘要

In the simultaneous design of product and its supply chain (SDPSC), the main criteria that is usually used to choose a product design is product cost since it is assumed that up to 70% of product cost is determined during the design phase. However, some researches recognise that product design decisions also affect the environmental impact of the product throughout its supply chain. Consequently, merging eco-design tools with the joint DPSC can develop a better understanding of the product and its environmental interactions to achieve green product development.In this paper, we present a literature review dealing with environmental principles’ integration into the SDPSC, then we investigate tools for green product design selection using multi-criteria decision making (MCDM). We compare suitability of three selected MCDM methods, namely Technique for Order Preference by Similarity to an Ideal Solution (TOPSIS), Preference Ranking Organization Method for Enrichment Evaluations (PROMETHEE), and Multi-Attribute Value Theory (MAVT). Two case studies were selected from literature, and a sensitivity analysis is applied for each selected method. Results suggest that although all methods are convenient and can be used in practice, TOPSIS method was more stable towards weighting changes.
机译:在产品及其供应链(SDPSC)的同时设计中,通常用于选择产品设计的主要标准是产品成本,因为它假设在设计阶段期间确定了高达70%的产品成本。然而,一些研究认识到产品设计决策也会影响产品在其供应链中的环境影响。因此,与联合DPSC合并生态设计工具可以更好地了解产品及其环境相互作用,以实现绿色产品开发。本文提出了一个与环境原则“整合到SDPSC中的文献综述,然后我们使用多标准决策(MCDM)调查绿色产品设计选择的工具。我们比较三种选定的MCDM方法的适用性,即通过相似性与理想解决方案(TOPSIS)的顺序优先,偏好排名组织方法进行丰富评估(PROMETHEE)和多属性值理论(MAVT)的优先技术。从文献中选择两个案例研究,对每个选定的方法施加灵敏度分析。结果表明,尽管所有方法都是方便的并且可以在实践中使用,但TopSIS方法对加权变化更稳定。

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