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Economic and Environmental Life Cycle Optimization of Noncooperative Supply Chains and Product Systems: Modeling Framework, Mixed-Integer Bilevel Fractional Programming Algorithm, and Shale Gas Application

机译:非兴种供应链和产品系统的经济环境生命周期优化:建模框架,混合整数彼得分数规划算法和页岩气应用

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摘要

In this work, we propose a general modeling framework for the economic and environmental life cycle optimization of supply chains and product systems with noncooperative stakeholders. This framework is based on the functional-unit-based life cycle optimization approach and the leader follower Stackelberg game structure to capture the decentralized feature and noncooperative relationships between multiple stakeholders across the product life cycle. The leader enjoys the priority of decision-making to optimize both its own economic performance and the life cycle environmental performance of the supply chain or product system. After the observation of leader's decisions, the follower takes actions correspondingly to optimize its own economic performance. The resulting problem is formulated as a mixed-integer bilevel fractional program to account for conflicting objectives and interactions among different stakeholders. Design and decisions for both leader and follower are taken into consideration, including facility allocation, technology selection, production planning, transportation and storage scheduling, etc. To tackle the computational challenge of the resulting mixed-integer bilevel fractional programs, a tailored solution algorithm is developed based on a parametric algorithm and a projection-based reformulation and decomposition method. An application to a well-to-wire Marcellus shale gas supply chain is presented to demonstrate the applicability of the proposed life cycle optimization modeling framework and the efficiency of the solution algorithm.
机译:在这项工作中,我们向非支持利益相关者提供了一种用于供应链和产品系统的经济和环境生命周期优化的一般建模框架。该框架基于基于功能单元的生命周期优化方法和领导者跟随者Stackelberg游戏结构,以捕获产品生命周期的多个利益相关者之间的分散特征和非自由作关系。领导者享有决策的优先事项,以优化其自身的经济绩效和供应链或产品系统的生命周期环境性能。在观察领导者的决定之后,追随者相应地采取行动以优化自己的经济表现。由此产生的问题被制定为混合整数Bilevel分数程序,以考虑不同利益相关者之间的目标和互动。考虑到领导者和追随者的设计和决策,包括设施分配,技术选择,生产计划,运输和存储调度等,以解决由此产生的混合整数贝塞尔分数计划的计算挑战,是一种定制的解决方案算法基于参数算法和基于投影的重构和分解方法开发。提出了一种良好的Marcellus页岩气供应链的应用,以证明所提出的生命周期优化建模框架的适用性和解决方案算法的效率。

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