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Design and planning of infrastructures for bioethanol and sugar production under demand uncertainty

机译:需求不确定情况下生物乙醇和糖生产基础设施的设计和规划

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摘要

In this paper, we address the strategic planning of integrated bioethanol-sugar supply chains (SC) under uncertainty in the demand. The design task is formulated as a multi-scenario mixed-integer linear programming (MILP) problem that decides on the capacity expansions of the production and storage facilities of the network over time along with the associated planning decisions (i.e., production rates, sales, etc.). The MILP model seeks to optimize the expected performance of the SC under several financial risk mitigation options. This consideration gives a rise to a multi-objective formulation, whose solution is given by a set of network designs that respond in different ways to the actual realization of the demand (the uncertain parameter). The capabilities of our approach are demonstrated through a case study based on the Argentinean sugarcane industry. Results include the investment strategy for the optimal SC configuration along with an analysis of the effect of demand uncertainty on the economic performance of several biofuels SC structures.
机译:在本文中,我们针对需求不确定的情况下的生物乙醇-糖集成供应链(SC)的战略规划。设计任务被表述为多场景混合整数线性规划(MILP)问题,该问题决定了网络的生产和存储设施随时间推移的容量扩展以及相关的规划决策(例如,生产率,销售额,等等。)。 MILP模型力求在几种降低财务风险的方案下优化SC的预期绩效。这种考虑引起了多目标公式的提出,其解决方案由一组网络设计给出,这些网络设计以不同的方式响应需求的实际实现(不确定参数)。通过基于阿根廷甘蔗业的案例研究证明了我们方法的功能。结果包括最佳SC配置的投资策略,以及需求不确定性对几种生物燃料SC结构经济性能的影响分析。

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