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An Extension of the Failure Mode and Effect Analysis with Hesitant Fuzzy Sets to Assess the Occupational Hazards in the Construction Industry

机译:用犹豫模糊集扩展故障模式和效果分析评估建筑行业的职业病危害。

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摘要

The construction industry is considered as one of the most dangerous industries in terms of occupational safety and has a high rate of occupational incidents and risks compared to other industries. Given the importance of identifying and assessing the occupational hazards in this industry, researchers have conducted numerous studies using statistical methods, multi-criteria decision-making methods, expert-based judgments, and so on. Although, these researchers have used linguistic variables, fuzzy sets and interval-valued intuitionistic fuzzy sets to overcome challenges such as uncertainty and ambiguity in the risk assessment conducted by experts; the previous models lack in efficiency if the experts are hesitant in their assessment. This leads to the inability to assign a specific membership degree to any risk. Therefore, in this research, it is tried to provide an improved approach to the Failure Mode and Effects Analysis (FMEA) method using an Multi-Criteria Decision-Making (MCDM) method based on the hesitant fuzzy set, which can effectively cope with the hesitance of the experts in the evaluation. Also, Stepwise Weight Assessment Ratio Analysis (SWARA) method is applied for risk factor weighing in the proposed approach. This model is applied to a construction industry case study to solve a realistic occupational risk assessment. Moreover, a comparison is made between the results of this model and those obtained by the conventional FMEA and some other aggregation operators. The results indicate that the newly developed approach is useful and flexible to address complex FMEA problems and can generate logical and reliable priority rankings for failure modes.
机译:就职业安全而言,建筑业被认为是最危险的产业之一,与其他产业相比,其职业事故和风险的发生率很高。考虑到识别和评估该行业中的职业危害的重要性,研究人员使用统计方法,多准则决策方法,基于专家的判断等进行了许多研究。尽管这些研究人员使用语言变量,模糊集和区间值直觉模糊集来克服专家进行的风险评估中的诸如不确定性和歧义性之类的挑战。如果专家们犹豫不决,以前的模型将缺乏效率。这导致无法为任何风险分配特定的成员资格程度。因此,在本研究中,尝试使用基于犹豫模糊集的多准则决策方法(MCDM)为故障模式和影响分析(FMEA)方法提供一种改进的方法,该方法可以有效地应对在评估专家的犹豫。此外,在所提出的方法中,逐步权重评估比率分析(SWARA)方法适用于风险因素加权。该模型应用于建筑行业案例研究,以解决现实的职业风险评估。此外,在此模型的结果与常规FMEA和其他一些聚合运算符获得的结果之间进行了比较。结果表明,新开发的方法对于解决复杂的FMEA问题是有用且灵活的,并且可以为故障模式生成逻辑可靠的优先级排序。

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