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Enhanced models and improved solution for competitive biofuel supply chain design under land use constraints

机译:土地使用约束下竞争性生物燃料供应链设计的增强模型和改进解决方案

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This paper studies the effect of government regulation on farmland use to balance food and energy production in a competitive biofuel supply chain design framework. We propose a Stackelberg-Nash game model with a direct land-use constraint that captures farmland, food, and fuel market equilibrium. To provide farmers with incentives to comply with the land-use regulation, we implement the land-use constraint through a cap-and-trade mechanism which we show attains equivalent land-use patterns. We further prove the existence of optimal solutions of the two equivalent discretely constrained mathematical program with equilibrium constraints (DC-MPEC) models. Two adaptive "relax-and-tighten" schemes, integrality and Lagrangian duality based relaxation, are proposed to handle the binary variables in a mixed integer formulation of the models. The proposed methodology is tested in a case study for the State of Illinois. The computational results demonstrate the superiority of our customized algorithms to publicly available solvers for solving problems with realistic sizes. Finally, the efficiency of the cap-and-trade mechanism is demonstrated through comparisons of scenarios with and without regulation as well as a sensitivity analysis on the cap-and-trade level. The cap-and-trade policy is found to effectively reduce biomass farmland use and profits of the biofuel industry. It may have different impacts on social welfare depending on problem settings and market parameters. Cap-and-trade levels also affect system behavior and thus should be carefully selected. (C) 2015 Elsevier B.V. and Association of European Operational Research Societies (EURO) within the International Federation of Operational Research Societies (IFORS). All rights reserved.
机译:本文研究了竞争性生物燃料供应链设计框架中政府法规对农田使用的影响,以平衡食品和能源生产。我们提出了具有直接土地使用约束条件的Stackelberg-Nash博弈模型,该模型可以捕获农田,粮食和燃料市场的平衡。为了鼓励农民遵守土地使用法规,我们通过限额交易机制实施了土地使用约束条件,该机制表明达到了相同的土地使用模式。我们进一步证明了两个具有均衡约束的等效离散约束数学程序(DC-MPEC)模型的最优解的存在。提出了两种自适应的“放松和紧缩”方案,即完整性和基于拉格朗日对偶性的松弛,以处理模型的混合整数公式中的二进制变量。在伊利诺伊州的案例研究中对提出的方法进行了测试。计算结果证明了我们的定制算法在解决实际大小问题方面优于公开可用的求解器。最后,通过比较有无管制的情况下的限额交易机制的效率,以及在限额交易水平上的敏感性分析,证明了限额交易机制的效率。发现限额与贸易政策可以有效减少生物质耕地的使用和生物燃料行业的利润。根据问题的设置和市场参数,它可能对社会福利产生不同的影响。总量管制和交易水平也会影响系统行为,因此应谨慎选择。 (C)2015年Elsevier B.V.和国际运营研究学会联合会(IFORS)中的欧洲运营研究学会协会(EURO)。版权所有。

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