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首页> 外文期刊>Applied Soft Computing >Z-number integrated weighted VIKOR technique for hazard prioritization and its application in virtual prototype based EOT crane operations
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Z-number integrated weighted VIKOR technique for hazard prioritization and its application in virtual prototype based EOT crane operations

机译:Z-Number集成加权Vikor技术,用于危险优先级序列及其在基于虚拟原型的EOT起重机操作中的应用

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摘要

Hazard identification and its ranking is one of the foundation steps of safety management. Nowadays, failure mode and effect analysis (FMEA), a reliability analysis tool, is widely used to identify, assess, and rank hazards/failure events related to products, processes, and services because of its simplistic nature. Traditional FMEA focuses on computing the risk priority number (RPN) to rank the identified hazards based on three risk factors, occurrence (O), severity (S), and detectability (D) of a failure mode (FM). However, the traditional RPN method has been criticized because of its limitations in the assessment of hazards/failure events, weighting of the risk factors, and prioritization of the FMs. Furthermore, experts usually provide rating on the risk factors based on their expertise, which introduces impreciseness, uncertainty, and vagueness in the subsequent assessments. In this study, Z-number is used to capture the uncertainty and unreliability associated with experts' evaluation. Also, the concept of objectivity is deployed along with subjectivity in the weight calculation of the risk factors in the information assessment process. Classic VIKOR (ViseKriterijum-ska Optimizacija I Kompromisno Resenje) method is also extended in Z-environment to rank the identified hazards by incorporating the concepts of maximum group utility and minimum regret. For the illustration purpose, we have applied our proposed method in virtual prototyping based EOT crane operations. Sensitivity analysis and comparative evaluation with the existing methods are also presented to validate our proposed method. (C) 2020 Elsevier B.V. All rights reserved.
机译:危险识别及其排名是安全管理的基础步骤之一。如今,失败模式和效果分析(FMEA)是一种可靠性分析工具,广泛用于识别,评估和排名与产品,流程和服务相关的危害/失败事件,因为其简单的性质。传统的FMEA专注于计算风险优先级(RPN),以基于三次危险因素,发生(O),严重程度和故障模式(FM)的检测(D)排列所识别的危险。然而,传统的RPN方法是由于其在评估危险/失败事件,风险因素的权重以及FMS的优先级方面的局限性而受到批评。此外,专家通常根据其专业知识提供对风险因素的评分,这引入了后续评估中的不精确,不确定性和模糊性。在本研究中,Z-Number用于捕获与专家评估相关的不确定性和不可靠性。此外,客观性的概念以及信息评估过程中危险因素的重量计算的主观性。经典Vikor(VINEKRITIRIJUM-SKA OptimizACIJA I Kompromisno Resenje)方法在Z-Environmence中也扩展了通过合并最大组实用程序和最小遗憾的概念来对所识别的危险进行排名。为了说明目的,我们已经在虚拟原型的EOT起重机操作中应用了我们的建议方法。还提出了与现有方法的敏感性分析和比较评估,以验证我们所提出的方法。 (c)2020 Elsevier B.V.保留所有权利。

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