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Fair Profit Allocation in Supply Chain Optimization with Transfer Price and Revenue Sharing: MINLP Model and Algorithm for Cellulosic Biofuel Supply Chains

机译:具有转移价格和收益共享的供应链优化中的公平利润分配:纤维素生物燃料供应链的MINLP模型和算法

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摘要

A mixed-integer nonlinear programming (MINLP) formulation to simultaneously optimize operational decisions as well as profit allocation mechanisms in supply chain optimization, namely material transfer prices and revenue share policies among the supply chain participants is proposed. The case of cellulosic bioethanol supply chains is specifically considered and the game-theory Nash bargaining solution approach is employed to achieve fair allocation of profit among the collection facilities, biorefineries, and distribution centers. The structural advantages of certain supply chain participants can be taken into account by specifying different values of the negotiation-power indicators in the generalized Nash-type objective function. A solution strategy based on a logarithm transformation and a branch-and-refine algorithm for efficient global optimization of the resulting nonconvex MINLP problem is proposed. To demonstrate the application of the proposed framework, an illustrative example and a state-wide county-level case study on the optimization of a potential cellulosic bioethanol supply chain in Illinois are presented.
机译:提出了一种混合整数非线性规划(MINLP)公式,以在供应链优化中同时优化运营决策和利润分配机制,即供应链参与者之间的物料转移价格和收益分成政策。特别考虑了纤维素生物乙醇供应链的情况,并采用博弈论的纳什讨价还价解决方案方法来实现收集设施,生物精炼厂和分销中心之间的利润公平分配。通过在广义Nash型目标函数中指定不同的谈判能力指标值,可以考虑某些供应链参与者的结构优势。提出了一种基于对数变换和分支细化算法的求解策略,可以有效地全局优化所产生的非凸MINLP问题。为了演示所提出框架的应用,本文提供了一个示例性示例和一个全州县级案例研究,以优化伊利诺伊州潜在的纤维素生物乙醇供应链。

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