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Operational planning of supply chains in a production and distribution center with just-in-time delivery

机译:随时间交货的生产和配送中心供应链的运营规划

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Purpose: A supply chain consists of raw material suppliers, manufacturers and retailers where inventory of raw materials and finished goods are involved, respectively. Therefore, it is important to find optimal solutions, which are beneficial for both supplier, manufacturer and retailer. Design/methodology/approach: This research focuses on a semi-continuous manufacturing facility by assuming that the production of succeeding cycle starts immediately after the production of preceding cycle. In reality, the inventory of a supply chain system may not be completely empty. A number of products may be left over after the deliveries are made. These leftover inventories are added to the next shipment after the production of required amount to makeup a complete batch for shipment. Therefore, it is extremely important to search for an optimal strategies for these types production facilities where leftover finished goods inventory remains after the final shipment in a production cycle. Considering these scenarios, an inventory model is developed for an imperfect matching condition where some finished goods remains after the shipments. Findings: Based on the previous observation, this research also considers a single facility that follows JIT delivery and produces multiple products to satisfy customers’ demand. For this problem a rotational cycle model is developed to optimize the facility operations. Both problems are categorized as mixed integer non-linear programming problems which are to be solved to find optimum number of orders, shipments and rotational cycle policy for multiple products. Also, this solution will lead to estimate the optimum production quantity and minimum total system cost. Research limitations: This research considers the supply chain based on manufacturers point of view and it does not consider the transportation cost associated with supply chain. Next study will be focused on issues with joint decision making, information sharing, and transportation decision. Practical implications: This study will help the managers of refinery and paper industries in making their operation smooth by applying optimizing techniques and robust decision making. Originality/value: Based on the literature, no research was found on continuous production system supply chain and its optimization with JIT delivery. This research will definitely provide a direction for such problem to the researchers.
机译:目的:供应链包括原材料供应商,制造商和零售商,分别涉及原料和成品库存的库存。因此,找到最佳解决方案非常重要,这对于供应商,制造商和零售商来说都是有益的。设计/方法/方法:本研究专注于半连续制造设施,假设后续循环的生产在前期循环的生产后立即开始。实际上,供应链系统的库存可能不是完全空的。在交付后,可以留下许多产品。这些剩余库存将在生产所需金额后添加到下一个装运中,以构成装运完整批次。因此,在生产周期中最终发货后仍然存在剩余的成品库存仍然是对这些类型的生产设施的最佳策略来说是非常重要的。考虑到这些场景,为不完美的匹配条件开发了一种库存模型,其中一些成品在货物后仍然存在。调查结果:根据先前的观察,本研究还考虑了JIT交付的单一设施,并产生多种产品以满足客户的需求。对于此问题,开发了旋转循环模型以优化设施操作。这两个问题都被分类为混合整数非线性编程问题,以找到多个产品的最佳订单,出货量和旋转循环策略。此外,该解决方案将导致估计最佳的生产量和最低总系统成本。研究限制:本研究考虑了基于制造商的观点,并不考虑与供应链相关的运输成本。下一项研究将重点关注联合决策,信息共享和运输决定的问题。实际意义:本研究将通过应用优化技术和强大的决策,帮助炼油厂和造纸业行业的管理人员顺利进行操作。原创性/价值:基于文献,在连续生产系统供应链上没有找到研究及其与JIT交付的优化。这项研究肯定会为研究人员提供这样的问题。

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