Analysis of Loading Time Improvement on Finished Product Warehouse Using Lean Six Sigma and Discrete Event Simulation

Hari Suciadi, D. Ishak
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Abstract

Performance improvement must be carried out continuously at all process lines in the industry in order to increase its competitiveness, including in the process of operating the finished product warehouse. Improvements in the warehouse can be made by reducing waste and defects in every process (inbound, storage handling, picking and shipping). The Lean Six Sigma approach has been widely used in various industries and can increase productivity. This study aims to present an analysis of the application of lean six sigma in finished product warehouse operations with a discrete event simulation approach in order to obtain suggestions for improvements to reduce waste during loading process. Lean Six Sigma provides a structured approach through the implementation of DMAIC (Define, Measure, Analyze, Improve and Control) for analyzing a warehouse operation problem, diagnose its cause and generate improvement plan. Discrete event simulation is used in the "improve" stage to provide an evaluation of loading process improvement in product warehouse. Simulations are carried out in case studies of steel plate warehouse products where there is some waste during the loading process, including inefficient storage location and reshuffling during delivery. Improvement scenarios based on lean six sigma are simulated so that they can be implemented, in order to obtain a more systematic warehouse operation improvement design.
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用精益六西格玛和离散事件模拟分析成品仓库装货时间的改进
为了提高其竞争力,必须在行业的所有工艺线上持续进行绩效改进,包括在成品仓库的操作过程中。仓库的改进可以通过减少每个过程中的浪费和缺陷来实现(入库、存储处理、拣选和运输)。精益六西格玛方法已广泛应用于各个行业,可以提高生产力。本研究旨在以离散事件模拟方法分析精益六西格玛在成品仓库作业中的应用,以获得改善建议,以减少装载过程中的浪费。精益六西格玛通过实施DMAIC(定义、测量、分析、改进和控制)提供了一种结构化的方法,用于分析仓库操作问题,诊断其原因并生成改进计划。在“改进”阶段,采用离散事件模拟对产品仓库装载过程的改进进行评估。针对钢板仓库产品在装载过程中存在的一些浪费,包括低效的存储位置和运输过程中的重新洗牌,进行了仿真研究。对基于精益六西格玛的改进方案进行模拟,使其得以实施,以获得更系统的仓库操作改进设计。
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