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Fuzzy smart failure modes and effects analysis to improve safety performance of system: Case study of an aircraft landing system

机译:模糊智能故障模式和影响分析,以提高系统的安全性能:飞机降落系统的案例研究

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摘要

Failure modes and effects analysis (FMEA) is a safety and reliability technique that is widely used to evaluate, design, and process a system against diverse possible ways through which the potential failure has a tendency to occur. In conventional FMEA, the risk evaluation is determined by risk priority number (RPN) obtained by multiplying of three risk factors-severity, occurrence, and detection. However, because of many shortages in conventional FMEA, the RPN scores have been widely criticized along issues bothering on ambiguity and vagueness, scoring, appraising, evaluating, and selecting corrective actions. In this paper, we propose a new integrated fuzzy smart FMEA framework where the combination of fuzzy set theory, analytical hierarchy process (AHP), and data envelopment analysis (DEA) is used, respectively, to handle uncertainty and to increase the reliability of the risk assessment. These are achieved by employing a heterogeneous group of experts and determining the efficiency of FMEA mode with adequate priority and corrective actions using RPN, time, and cost as indicators. A numerical example (aircraft landing system) is provided to exemplify the feasibility and effectiveness of the proposed model. The outputs of the proposed model compared with the conventional risk assessment technique results show its effectiveness, reliability, and propensity for real applications.
机译:故障模式和影响分析(FMEA)是一种安全性和可靠性技术,已广泛用于评估,设计和处理系统,以防止可能发生故障的各种可能方式。在传统的FMEA中,风险评估由风险优先级数(RPN)决定,该风险优先级数是通过将三个风险因素(严重性,发生和检测)相乘而获得的。然而,由于常规FMEA的许多短缺,RPN分数在困扰歧义和模糊性,评分,评估,评估和选择纠正措施的问题上受到广泛批评。在本文中,我们提出了一个新的集成模糊智能FMEA框架,该框架将模糊集理论,层次分析法(AHP)和数据包络分析(DEA)相结合,分别用于处理不确定性和提高可靠性。风险评估。这些工作是通过聘请不同种类的专家组成的,并以RPN,时间和成本为指标,通过适当的优先级和纠正措施来确定FMEA模式的效率。提供了一个数值示例(飞机降落系统)来说明所提出模型的可行性和有效性。与传统的风险评估技术结果相比,该模型的输出显示了其有效性,可靠性和对实际应用的倾向。

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