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Fuzzy scheduling of a build-to-order supply chain

机译:按订单生产的供应链的模糊调度

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摘要

The overwhelming majority of the literature in the area of supply chain planning and scheduling considers the traditional make-to-stock (MTS) environment. However, manufacturers of assembled products such as cars, computers, furniture, etc. adopt the build-to-order supply chain (BOSC) to become agile in a mass customization process in order to meet diversified customer requirements. In this paper we propose an integrated production-distribution planning model for a multi-echelon, multi-plant and multi-product supply chain operating in a build-to-order (BTO) environment. The uncertainties associated with estimation of the various operational cost parameters are represented by fuzzy numbers. The BOSC scheduling model is thus constructed as a mixed-integer fuzzy programming (MIFP) problem with the goal of reducing the overall operating costs related to component fabrication, procurement, assembling, inspection, logistics and inventory, while improving customer satisfaction by allowing product customization and meeting delivery promise dates at each market outlet. An efficient compromise solution approach by transforming the problem into an auxiliary multi-objective linear programming model is also suggested.
机译:供应链计划和调度领域的绝大多数文献都考虑了传统的按库存生产(MTS)环境。但是,诸如汽车,计算机,家具等组装产品的制造商采用按订单生产的供应链(BOSC)在大规模定制过程中变得敏捷,以满足多样化的客户需求。在本文中,我们提出了一个按订单生产(BTO)环境中运行的多级,多工厂和多产品供应链的集成生产分配计划模型。与各种运营成本参数的估计相关的不确定性由模糊数表示。因此,将BOSC调度模型构造为混合整数模糊规划(MIFP)问题,目的是减少与组件制造,采购,组装,检查,物流和库存相关的总体运营成本,同时通过允许产品定制来提高客户满意度并在每个市场都达到交货承诺日期。还提出了通过将问题转换为辅助的多目标线性规划模型的有效折衷解决方案。

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