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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Design and manage deep lane storage system layout. An iterative decision-support model
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Design and manage deep lane storage system layout. An iterative decision-support model

机译:设计和管理深车道存储系统布局。 一个迭代决策支持模型

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摘要

Block stacking storage guarantees high storage density for end-of-line warehouses in product flow manufacturing systems, which are mostly diffused in food processing and beverage industry. These storage systems, characterized by high volumes per item and limited inventory mix, are organized through storage deep lanes of homogeneous items. Setting the optimal lane depths for the incoming stock-keeping-units (SKUs) influences the overall space and time efficiency performances, as well as the layout of the storage zones, the selection of the proper storage modes and equipment. This paper illustrates an original decision-support model to (1) manage existing block storage warehouses, and (2) to aid the design of new block storage systems from green field. The management of a warehouse (1) deals with the assignment of the incoming product lots to the optimal lane depth, storage mode, and zone in a constrained and capacitated storage environment. The design of a warehouse from green field (2) is aided by identifying the optimal configuration of lane depths and storage modes that minimizes the infrastructural costs. The proposed model is formulated via integer linear programming (ILP) and minimizes mutually the costs generated by space and time inefficiencies. The illustrated results obtained by its application to a real case study from the beverage industry, candidate the model as a tool to aid operative and strategic layout issues in deep lane storage systems.
机译:块堆叠存储可确保产品流动制造系统中线尾仓库的高存储密度,这些系统主要在食品加工和饮料行业中扩散。这些存储系统,其特征在于每个项目的高量和有限的库存混合,通过储存均匀物品的储存。为进入的储存单元(SKU)设置最佳车道深度影响整体空间和时间效率性能,以及存储区域的布局,选择适当的存储模式和设备。本文说明了原始决策支持模型到(1)管理现有块存储仓库,(2),以帮助从绿色字段设计新的块存储系统。仓库管理(1)处理将传入的产品批次分配到最佳车道深度,存储模式和受限存储环境中的区域。通过识别最大限度地实现基础设施成本的车道深度和存储模式的最佳配置,辅助从绿地(2)的仓库设计。所提出的模型通过整数线性编程(ILP)配制,并最大限度地减少空间和时间效率低下产生的成本。通过其应用于从饮料行业的实际研究获得的所示结果,候选模型作为一种工具,以帮助深道储存系统中的操作和战略布局问题。

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