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Assessing manufacturing flow lines under uncertainties in processing time: An application based on max-plus equations, multicriteria decisions, and global sensitivity analysis

机译:在处理时间的不确定因素下评估制造流量线:基于MAX-PLUS方程,多标准决策和全局敏感性分析的应用

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摘要

In this paper, a novel application on how uncertainties in a manufacturing flow line -MFL (e.g., times required to perform an action) could be analyzed and what the benefits are of such analysis. The approach proposed investigates three main goals: i) Uncertainty analysis, ii) Stochastic dominance, and iii) Sensitivity analysis. In particular, this paper extends the application of max-plus algebra to model MFL with different flow configurations and buffer capacities and provides the approximated probability density functions (PDFs) of selected performance indicators (e.g., the total idle time in the whole line, output rates, throughputs, among others). As a result, it is possible to quantify the variability of the selected output, compare different possible configurations among MFL, choose the best one, and identify critical variables and risk drivers (e.g., the processing times that affect the most a KPI -key performance indicator). The approach, illustrated by analyzing a case study of the literature, emphasizes the benefits for a decision-maker in charge of the design or managing of the manufacturing system.
机译:在本文中,可以分析制造流线-MFL(例如,执行动作所需的时间)中的不确定性的新颖应用,并且有益于这种分析。该方法提出了调查三个主要目标:i)不确定性分析,ii)随机优势和III)敏感性分析。特别地,本文将MAX-PLUS代数的应用扩展到模拟MFL,具有不同的流量配置和缓冲容量,并提供所选性能指示器的近似概率密度函数(PDF)(例如,整行中的总空转时间,输出价格,吞吐量等)。结果,可以量化所选输出的可变性,比较MFL之间的不同可能配置,选择最佳的一个,并识别关键变量和风险驱动程序(例如,影响最大KPI-Key性能的处理时间指标)。通过分析文献的案例研究说明的方法强调了决策者负责制造系统的决策者的益处。

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