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直觉模糊环境下个人防坠落系统的失效模式与效应分析

Failure mode and Effect Analysis of personal fall arrest system under the intuitionistic fuzzy environment.

作者信息

Ghasemi Fakhradin, Rahimi Jamshid

机构信息

Occupational Health and Safety Engineering Department, Abadan University of Medical Sciences, Abadan, Iran.

Occupational Health Department, School of Public Health, Alborz University of Medical Sciences, Alborz, Iran.

出版信息

Heliyon. 2023 Jun 1;9(6):e16606. doi: 10.1016/j.heliyon.2023.e16606. eCollection 2023 Jun.

Abstract

BACKGROUND AND AIMS

Intuitionistic fuzzy sets (IFS) theory is more powerful than classic fuzzy sets theory in handling uncertainty. A new approach for Failure Mode and Effect Analysis (FMEA) was developed based on IFS and group decision-making (known as IF-FMEA) for investigating Personal Fall Arrest System (PFAS).

METHOD

FMEA parameters, including occurrence, consequence, and detection, were re-defined based on a seven-point linguistic scale. Each linguistic term was associated with an intuitionistic triangular fuzzy set. Opinions on the parameters were gathered from a panel of experts, integrated using the similarity aggregation method, and defuzzified utilizing the center of gravity approach.

RESULTS

Nine failure modes were identified and analyzed using both FMEA and IF-FMEA. The risk priority numbers (RPNs) and prioritization obtained from the two approaches were different, highlighting the importance of using IFS. The highest RPN was associated with the lanyard web failure, while the failure of the anchor D-ring had the least RPN. Detection score was higher for metal parts of the PFAS, suggesting that failures in these parts are harder to detect.

CONCLUSION

In addition to being economical in terms of calculations, the proposed method was efficient in handling uncertainty. Different parts of a PFAS create different levels of risk.

摘要

背景与目的

直觉模糊集(IFS)理论在处理不确定性方面比经典模糊集理论更强大。基于直觉模糊集和群体决策开发了一种新的失效模式与效应分析(FMEA)方法(称为IF - FMEA),用于研究个人坠落防护系统(PFAS)。

方法

基于七点语言量表重新定义了FMEA参数,包括发生度、后果和探测度。每个语言术语都与一个直觉三角模糊集相关联。从专家小组收集关于这些参数的意见,使用相似性聚合方法进行整合,并采用重心法进行去模糊化处理。

结果

使用FMEA和IF - FMEA识别并分析了九种失效模式。两种方法得到的风险优先数(RPN)和优先级不同,突出了使用直觉模糊集的重要性。最高的RPN与安全带织带失效相关,而锚点D形环的失效RPN最小。PFAS金属部件的探测得分较高,表明这些部件的失效更难检测。

结论

除了计算上经济外,所提出的方法在处理不确定性方面是有效的。PFAS的不同部件产生不同程度的风险。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/31ae/10258374/dc9695745171/gr1.jpg

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