Quantifying the Impact of Inspection Processes on Production Lines through Stochastic Discrete-Event Simulation Modeling

P. Martinez, Rafiq Ahmad
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引用次数: 1

Abstract

Inspection processes are becoming more and more popular beyond the manufacturing industry to ensure product quality. Implementing inspection systems in multistage production lines brings many benefits in productivity, quality, and customer satisfaction. However, quantifying the changes necessary to adapt the production to these systems is analytically complicated, and the tools available lack the flexibility to visualize all the inspection strategies available. This paper proposed a discrete-event simulation model that relies on probabilistic defect propagation to quantify the impact on productivity, quality, and material supply at the introduction of inspection processes in a multistage production line. The quantification follows lean manufacturing principles, providing from quite basic quantity and time elements to more comprehensive key performance indicators. The flexibility of discrete-event simulation allows for customized manufacturing and inspection topologies and variability in the tasks and inspection systems used. The model is validated in two common manufacturing scenarios, and the method to analyze the cost-effectiveness of implementing inspection processes is discussed.
用随机离散事件模拟模型量化检验过程对生产线的影响
为了确保产品质量,检验过程在制造业之外变得越来越流行。在多阶段生产线上实施检测系统,在生产率、质量和客户满意度方面都有很多好处。然而,量化使生产适应这些系统所需的变化在分析上是复杂的,并且可用的工具缺乏可视化所有可用检查策略的灵活性。本文提出了一个离散事件仿真模型,该模型依赖于概率缺陷传播来量化在多阶段生产线中引入检验过程时对生产率、质量和材料供应的影响。量化遵循精益制造原则,提供从相当基本的数量和时间要素到更全面的关键绩效指标。离散事件模拟的灵活性允许定制的制造和检查拓扑结构和可变性的任务和检查系统使用。在两种常见的制造场景下对模型进行了验证,并讨论了实施检测过程的成本效益分析方法。
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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