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Handling of Uncertainty in Life Cycle Inventory by Correlated Multivariate Lognormal Distributions: Application to the Design of Supply Chain Networks

机译:相关多元对数正态分布处理生命周期库存不确定性:在供应链网络设计中的应用

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摘要

In this work, we analyze the effect of incorporating life cycle inventory (LCI) uncertainty on the multi-objective optimization of chemical supply chains (SC) considering simultaneously their economic and environmental performance. To this end, we present a stochastic multi-scenario mixed-integer linear programming (MILP) coupled with a two-step transformation scenario generation algorithm with the unique feature of providing scenarios where the LCI random variables are correlated and each one of them has the desired lognormal marginal distribution. The environmental performance is quantified following life cycle assessment (LCA) principles, which are represented in the model formulation through standard algebraic equations. The capabilities of our approach are illustrated through a case study of a petrochemical supply chain. We show that the stochastic solution improves the economic performance of the SC in comparison with the deterministic one at any level of the environmental impact, and moreover the correlation among environmental burdens provides more realistic scenarios for the decision making process.
机译:在这项工作中,我们分析了生命周期清单(LCI)不确定性对化学品供应链(SC)的多目标优化的影响,同时考虑了它们的经济和环境绩效。为此,我们提出了一种随机多场景混合整数线性规划(MILP),并结合了两步转换场景生成算法,该算法的独特之处在于提供了与LCI随机变量相关且每个场景都具有LCI随机变量的场景。所需的对数正态边际分布。遵循生命周期评估(LCA)原则对环境绩效进行量化,该原则在模型公式中通过标准代数方程式表示。通过对石化供应链的案例研究来说明我们的方法的功能。我们表明,与确定性解决方案相比,在任何水平的环境影响下,随机性解决方案都可以提高供应链管理的经济绩效,此外,环境负担之间的相关性为决策过程提供了更为现实的方案。

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