A Simulation-Based Approach for Improving the Performance of a Manufacturing System

M. Azarian, Hao Yu, W. Solvang
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引用次数: 2

Abstract

The latest and innovative manufacturing paradigms, i.e., flexible manufacturing systems (FMS), reconfigurable manufacturing systems (RMS), etc., have provided opportunities to achieve an efficient and effective manufacturing process. However, due to the inherent stochasticity of customer demands as well as other influencing factors, factories are still facing dynamic and complex challenges related to their production management. Among which, machine failure is one of the most significant problems. Therefore, this research investigates a novel solution through incorporating the concept of Industry 4.0 (I4.0) into a manufacturing process, where reconfigurable machines are used to compensate for the production loss of a dedicated production line due to machine failure. A simulation-based approach is developed with the help of FlexSim in order to examine two general configurations with respect to three key performance indicators (KPIs). The results illustrate, by properly adopting the concept and technologies of I4.0, the performance of a manufacturing process can be improved to better react to unexpected events in production. From both technical and operational perspectives, several recommendations for further development are given in this paper.
基于仿真的制造系统性能改进方法
最新和创新的制造范式,即柔性制造系统(FMS),可重构制造系统(RMS)等,为实现高效和有效的制造过程提供了机会。然而,由于客户需求的固有随机性以及其他影响因素,工厂的生产管理仍然面临着动态和复杂的挑战。其中,机器故障是最重要的问题之一。因此,本研究通过将工业4.0 (I4.0)的概念纳入制造过程来研究一种新颖的解决方案,其中使用可重构机器来补偿由于机器故障而导致的专用生产线的生产损失。在FlexSim的帮助下,开发了一种基于仿真的方法,以检查关于三个关键绩效指标(kpi)的两种一般配置。结果表明,通过适当采用工业4.0的概念和技术,可以提高制造过程的性能,以更好地应对生产中的意外事件。从技术和操作的角度,提出了进一步发展的建议。
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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