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Integrated optimization for supply chain with facility disruption

机译:供应链的集成优化与设施中断

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Supply chain optimization models typically assume that facilities never fail. However, in the real world cases facilities are always subject to disruptions of various sorts due to natural disasters, strikes, machine breakdowns, power outages, and other factors. This paper investigates an integrated supply chain optimization problem that optimizes facility locations, customer allocations, and inventory management decisions when facilities are subject to disruption risks. When a facility fails, its customers may be reassigned to other operational facilities in order to avoid the high penalty costs associated with losing service. The problem is formulated as a mixed integer nonlinear programming to minimize the sum of the expected total costs. The model simultaneously determines the location of distribution centres and the allocation of disruption affected customer to distribution centres. In order to solve the proposed model, an effective solution approach based on genetic algorithm is presented. Finally, computational results for several instances of the problem are given to validate the effectiveness of the proposed model and algorithm.
机译:供应链优化模型通常假设设施永远不会失败。但是,在现实世界中,由于自然灾害,罢工,机器故障,断电和其他因素,设施总是会遭受各种破坏。本文研究了一个集成的供应链优化问题,该问题可在设施遭受中断风险时优化设施位置,客户分配和库存管理决策。当设施发生故障时,可以将其客户重新分配给其他运营设施,以避免因失去服务而产生的高昂罚款成本。该问题被公式化为混合整数非线性规划,以最大程度地减少预期总成本之和。该模型同时确定了配送中心的位置以及受干扰影响的客户向配送中心的分配。为了解决该模型,提出了一种基于遗传算法的有效求解方法。最后,给出了问题若干实例的计算结果,以验证所提出模型和算法的有效性。

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