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Detailed design of fishbone warehouse layouts with vertical travel

机译:鱼骨仓库垂直布局的详细设计

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In this paper, we provide a method to generate a three-dimensional detailed design of fishbone layouts. This method takes the desired storage capacity and returns the location (x,y,z) of each opening of the warehouse in such a way that the total operational cost - area cost and material handling cost - of the warehouse is minimal. We model the arrangement of the openings using mathematical finite sequences and represent a fishbone layout in terms of four primary characteristics. Next, we develop an algorithm that generates a detailed design of a fishbone layout given values of its four primary characteristics. Then, we present an optimization model that finds the values for the four primary characteristics that minimize the total operational cost of the warehouse. Finally, we solve the optimization model using a genetic algorithm. Our results suggest that in 91.74% of the cases, our optimization procedure reaches a near optimum point - deviated only by 0.587% - in a reasonable computational time (maximum 4.5 min). This paper aims to diminish dependence upon experts and human decision making in the process of implementing a fishbone layout on greenfield projects, and fulfills an identified need of warehouse practitioners by integrating the most recent advances on non-traditional layouts and detailed warehouse design. (C) 2015 Elsevier B.V. All rights reserved.
机译:在本文中,我们提供了一种生成鱼骨布局的三维详细设计的方法。该方法采用所需的存储容量,并以使仓库的总运营成本(面积成本和物料搬运成本)最小的方式返回仓库每个开口的位置(x,y,z)。我们使用数学有限序列对开口的布置进行建模,并根据四个主要特征来表示鱼骨布局。接下来,我们开发一种算法,该算法根据给定的四个主要特征值生成鱼骨布局的详细设计。然后,我们提出一个优化模型,该模型可以找到四个主要特征的值,这些值可以最大程度地减少仓库的总运营成本。最后,我们使用遗传算法求解优化模型。我们的结果表明,在91.74%的情况下,我们的优化过程在合理的计算时间内(最长4.5分钟)达到了接近最佳点-仅偏离了0.587%。本文旨在减少在未开发项目上实施鱼骨式布局的过程中对专家和人类决策的依赖,并通过整合非传统布局和详细的仓库设计方面的最新进展,满足仓库从业人员的明确需求。 (C)2015 Elsevier B.V.保留所有权利。

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