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Equipment maintainability and its influencing factors analysis based on grey system theory

机译:基于灰色系统理论的设备可维护性及其影响因素分析

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Purpose - The purpose of this paper is to solve the comprehensive evaluation of the equipment maintainability level based on grey system theory, and make an analysis of the corresponding influencing factors and their prioritization process. Design/methodology/approach - Considering the diversity, uncertainty and small sample size of the influencing factors of the equipment maintainability level, a multilayer evaluation attribute system is set up, and the grey relational method is utilized to assess the equipment's comprehensive maintainability. First, the bottom layer relational coefficient and weighted relational degree are analyzed, and, by means of the focus of relational degree through the bottom layer to top layer, the general evaluation of the equipment maintainability is carried out. Second, the equipment maintainability level and its influencing factors model, i.e. GM(1,N) model are set up, and the prioritization of the influencing factors is achieved through the comparison of the size of the model drive coefficients. Finally, the practical example calculation results show that this method has not only realized a sensible and effective evaluation of the equipment maintainability level, but also provided a prioritization of the influencing factors, which helps to focus attention on the major influencing factors and make this method of significant engineering application value in the improvement of the equipment maintainability level. Findings - The modeling of electronic equipment maintainability level and analysis of its corresponding practical example prove that grey system theory could not only perform a comprehensive evaluation of the equipment maintainability level, but also provide a quantitative analysis of its various influencing factors, whereas, other methods such as fuzzy mathematics, etc. can only make a general evaluation of the equipment maintainability level. Practical implications - This paper has realized an integral evaluation of the equipment maintainability level and has made an analysis of the prioritization of its various influencing factors. These investigation results could be introduced as a promising innovative idea in the evaluation of the equipments' other performances and the prioritization of its various corresponding influencing factors. Originality/value - Considering the diversity and uncertainty of influencing factors of the equipment maintainability level, this paper has realized a multilayer evaluation attribute system to perform a comprehensive evaluation of equipment maintainability level by means of weighted grey relational degree model. Furthermore, the prioritization of its various influencing factors is achieved based on the GM(1,N) model.
机译:目的-本文的目的是解决基于灰色系统理论的设备可维护性水平的综合评估,并分析相应的影响因素及其优先顺序。设计/方法/方法-考虑到设备可维护性水平的影响因素的多样性,不确定性和小样本量,建立了多层评估属性系统,并采用灰色关联法评估设备的综合可维护性。首先,分析底层的相关系数和加权的相关度,并通过关注从底层到顶层的相关度,对设备的可维护性进行总体评估。其次,建立设备可维护性水平及其影响因素模型,即GM(1,N)模型,并通过比较模型驱动系数的大小来确定影响因素的优先级。最后,实例计算结果表明,该方法不仅对设备的可维护性水平进行了合理有效的评估,而且对影响因素进行了优先排序,有助于将注意力集中在主要影响因素上,从而使该方法成为现实。在提高设备可维护性水平方面具有重要的工程应用价值。研究结果-电子设备可维护性水平的建模和相应实例的分析证明,灰色系统理论不仅可以对设备可维护性水平进行全面评估,还可以对其各种影响因素进行定量分析,而其他方法诸如模糊数学等只能对设备的可维护性水平做出总体评估。实际意义-本文已经实现了对设备可维护性水平的整体评估,并对各种影响因素的优先级进行了分析。这些研究结果可以作为一种很有前途的创新思想引入到设备的其他性能评估中,并优先考虑各种相应的影响因素。原创性/价值-考虑到设备可维护性水平影响因素的多样性和不确定性,本文实现了一种多层评估属性系统,可以通过加权灰色关联度模型对设备可维护性水平进行综合评估。此外,基于GM(1,N)模型获得了其各种影响因素的优先级。

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