DETERMINATION OF PROCESS VARIABILITY BY USING TRIANGULAR FUZZY NUMBER TO MINIMIZE PRODUCTION LEAD TIME IN A DYNAMIC VALUE STREAM MAPPING

Q4 Earth and Planetary Sciences
M. Thulasi, A. A. Faieza, A. S. Azfanizam, Z. Leman
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引用次数: 0

Abstract

This paper shows the incorporation of Value Stream Mapping (VSM) with triangular fuzzy numbers to determine variability and uncertainty in a conveyor manufacturing company. VSM is a pen and paper tool which is used to indicate wastes and bottleneck processes graphically and develop an action plan to enhance the production line. However, some weaknesses are identified in the conventional VSM where it fails to consider variability in a dynamic manufacturing environment. As such, this paper fills up the research gap by using Triangular Fuzzy Number (TFN) to illustrate time intervals, inventories and other variables of VSM operation. The purpose of this paper is to minimize total production lead time (TPLT) and total value-added time (TVAT) in the current value stream of the conveyor chain. More accurate details of variability in the dynamic manufacturing environment can be illustrated by a Triangular Fuzzy Number (TFN) of VSM.  As a result, the future value stream map shows 50% and 22% reduction in TPLT and TVAT respectively compared to the current value stream. In conclusion, this paper also recommends that in order to optimize the accuracy of VSM analysis further, a discrete event simulation can be used to examine the fuzzy VSM. 
在动态价值流映射中用三角模糊数最小化生产提前期确定过程可变性
本文介绍了将价值流映射与三角模糊数相结合来确定输送机制造企业的可变性和不确定性。VSM是一种笔和纸的工具,用于图形化地指示浪费和瓶颈过程,并制定行动计划以提高生产线。然而,在传统的VSM中发现了一些弱点,即它未能考虑动态制造环境中的可变性。因此,本文利用三角模糊数(TFN)来说明VSM运行的时间间隔、库存等变量,填补了研究空白。本文的目的是最小化总生产提前期(TPLT)和总增值时间(TVAT)在当前的价值流的输送链。动态制造环境中可变性的更准确细节可以通过VSM的三角模糊数(TFN)来说明。因此,未来价值流图显示,与当前价值流相比,TPLT和TVAT分别减少了50%和22%。综上所述,本文还建议,为了进一步优化VSM分析的准确性,可以使用离散事件模拟来检验模糊VSM。
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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来源期刊
ASEAN Engineering Journal
ASEAN Engineering Journal Engineering-Engineering (all)
CiteScore
0.60
自引率
0.00%
发文量
75
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