Simulation-based Optimization Approached to Design a Proposed Warehouse Layout on Bicycle Industry

Farrel Stefan Sienera, Tanti Octavia, Desi Winoto
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引用次数: 1

Abstract

The finished goods must be stored in a warehouse before the items are dispatched. Due to the increasing demand in 2020, there will be an increase in the quantity of items, which will cause the finished goods warehouse at PT X to reach capacity. This issue lengthens the flow through the warehouse and makes it easier for the items to sustain damage. To improve capacity, the firm is building a new finished goods warehouse, and it wants to organize the two warehouses so that the displacement time is as short as possible. This study utilized simulations to calculate the time and dedicated and class-based storage strategies to establish the layout. This study utilized simulations to determine the time and dedicated and class-based storage approaches to establish the layout. According to the findings, the dedicated storage technique has a total displacement distance of 703,952 meters and an average moving duration of 3.37 minutes per pallet. These findings are not as useful as the class-based storage technique, which has 705,961 meters and an average pallet turn time of 3.53 minutes.
基于仿真的自行车行业仓库布局优化设计方法
成品在发货前必须先存入仓库。由于2020年的需求增加,物品数量将会增加,这将导致PT X的成品仓库达到容量。这个问题延长了通过仓库的流程,使物品更容易遭受损坏。为了提高容量,公司正在建设一个新的成品仓库,并希望将两个仓库组织起来,使位移时间尽可能短。本研究利用模拟计算时间和专用存储策略和基于类的存储策略来建立布局。本研究使用模拟来确定时间,并使用专用和基于类的存储方法来建立布局。研究结果表明,专用存储技术的总位移距离为703952米,平均移动时间为3.37分钟/个托盘。这些发现不如基于类别的存储技术有用,后者有705,961米,平均托盘转动时间为3.53分钟。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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