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Integrated optimization of sustainable supply chains and transportation networks for multi technology bio-based production: A decision support system based on fuzzy ε-constraint method

机译:用于多技术生物生产的可持续供应链和运输网络的综合优化:基于模糊ε-约束法的决策支持系统

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摘要

Developing and employing effective design methodologies can significantly improve the economic and environmental viability of renewable production processes. This study contributes by presenting a novel bi-level decision support system (DSS) to aid modelling and optimization of multi technology, multi product supply chains and co-modal transportation networks for biomass based (bio-based) production combining two multi-objective mathematical models. Considering the supply chain configuration optimized by the first level of the DSS, in the second level, the transportation network is designed specifying the most appropriate transportation mode and related transportation option under transfer station availability limitations. A hybrid solution methodology that integrates fuzzy set theory and ε-constraint method is proposed. This methodology handles the system specific uncertainties addressing the economic and environmental sustainability aspects by capturing trade-offs between conflicting objectives in the same framework. To explore the viability of the proposed models and solution methodology, a regional supply chain and transportation network is designed using the entire West Midlands (WM) region of the UK as a testing ground. Additionally, scenario and sensitivity analyses are conducted to provide further insights into design and optimization of the biomass based supply chains.
机译:开发和采用有效的设计方法可以显著提高可再生能源的生产过程的经济和环境可行性。通过提出一种新颖的双级决策支持系统(DSS),以援助建模和多技术的优化,多产品的供应链和合作模式的交通网络为基于生物质的这种研究有助于(生物基)生产结合两个多目标数学楷模。考虑到供应链结构通过DSS的第一级优化,在第二级,交通网络的设计,指定下传送站的可用性的限制最合适的运输方式和相关的运输选项。的混合溶液的方法,集成了模糊集理论和ε-约束方法提出。这种方法处理系统的具体解决的不确定性通过捕捉在同一框架内相互冲突的目标之间进行权衡的经济和环境的可持续发展方面。要探索建立的模型和解决方案的方法,区域性供应链和运输网络使用英国的整个西米德兰兹郡(WM)区域作为测试全新设计的可行性。此外,场景和灵敏度分析被进行,以提供进一步的见解到生物质基于供应链的设计和优化。

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