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Multi-period stochastic optimization of a sustainable multi-feedstock second generation bioethanol supply chain A logistic case study in Midwestern United States

机译:可持续多原料第二代生物乙醇供应链的多周期随机优化,美国中西部的物流案例研究

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摘要

This work proposes a multi-objective optimization model to design a sustainable multi-period second generation biomass-to-bioethanol supply chain under multiple uncertainties. The objective is to simultaneously maximize the economic, environmental, and social performance. The strategic decisions such as land allocation for switchgrass cultivation, biorefinery locations and capacities, and the biomass-tobioethanol conversion pathway are determined for each planning period which are staggered across the entire planning horizon. The augmented 8-constraint method is used to trade-off among the competing objectives and to obtain feasible solutions that achieve desired levels of sustainability. In order to solve the proposed stochastic optimization model efficiently and effectively, this work proposes a solution approach involving sequential application of a modified Sample Average Approximation method and Benders decomposition. A case study is presented to demonstrate the effectiveness of the proposed mathematical model and its impact on land usage and sustainability. (C) 2016 Elsevier Ltd. All rights reserved.
机译:该工作提出了一种多目标优化模型,用于在多个不确定性下设计可持续的多时期第二代生物质对生物乙醇供应链。目标是同时最大化经济,环境和社会绩效。为每个规划期间确定整个规划地平线交错的每个规划期,确定了对切换栽培,生物术地点和容量的土地分配等战略决策,以及生物质 - 乙醛乙醇转化途径。增强的8约束方法用于在竞争目标之间进行折衷,并获得达到所需可持续性水平的可行解决方案。为了有效且有效地解决所提出的随机优化模型,这项工作提出了一种解决方法方法,涉及修改样本平均近似方法的顺序应用和弯曲分解。提出了一个案例研究以证明提出的数学模型的有效性及其对土地使用和可持续性的影响。 (c)2016 Elsevier Ltd.保留所有权利。

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