ROUTING FLEXIBILITY ANALYSIS OF DIDACTIC FLEXIBLE MANUFACTURING CELLS USING EVIDENCE NETWORKS

Glgorije Mirkov, Mirko Đapić
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Abstract

Flexible manufacturing systems are becoming increasingly popular in modern industry, providing flexibility in producing different products and quick adaptability to changes in the production program. Didactic FMC (DFMC) are small manufacturing systems used for educational purposes, providing students with practical experience in production. DFMC systems are the basic element in learning new concepts of Industry 4.0. This paper explores the flexibility of routing components in DFMC systems using the Dempster-Shafer theory of belief functions and evidence networks developed based on this theory. By using the Dempster-Shafer theory, we evaluate the flexibility of routing in the system for producing different products, i.e., the system's ability to adapt to changes in the production program according to the concepts of Industry 4.0. The analysis of routing flexibility allows for identifying critical points of the system and suggestions for improving system efficiency. The results show that routing flexibility is a key factor for the efficiency of the DFMC system. The Dempster-Shafer theory provides a precise analysis of beliefs based on various input parameters, which contributes to the precision and reliability of the analysis of routing flexibility of DFMC system components. This paper contributes to the understanding of routing flexibility and provides guidelines for further research in this area.
基于证据网络的教学柔性制造单元路由灵活性分析
柔性制造系统在现代工业中越来越受欢迎,它提供了生产不同产品的灵活性和对生产计划变化的快速适应性。教学FMC (DFMC)是用于教育目的的小型制造系统,为学生提供生产实践经验。DFMC系统是学习工业4.0新概念的基本要素。本文利用信念函数的Dempster-Shafer理论和基于该理论开发的证据网络,探讨了DFMC系统中路由组件的灵活性。通过使用Dempster-Shafer理论,我们评估了系统中生产不同产品的路由灵活性,即根据工业4.0的概念,系统适应生产计划变化的能力。通过对路由灵活性的分析,可以识别系统的关键点,并提出提高系统效率的建议。结果表明,路由灵活性是影响DFMC系统效率的关键因素。Dempster-Shafer理论提供了基于不同输入参数的信念的精确分析,这有助于DFMC系统组件路由灵活性分析的精度和可靠性。本文有助于对路由灵活性的理解,并为该领域的进一步研究提供指导。
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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