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首页> 外文期刊>Soft computing: A fusion of foundations, methodologies and applications >Development of an ITARA-based hybrid multi-criteria decision-making model for material selection
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Development of an ITARA-based hybrid multi-criteria decision-making model for material selection

机译:基于ITARA的混合多标准决策模型的研制

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The optimum selection of material in manufacturing environment should be investigated using a strategic perspective because of its complex nature. The ideal alternative cannot be found easily due to the different criteria, so the decision maker has to consider several factors for selecting the appropriate material. As a result, the decision maker should design a proper form of decision support system to solve the given problem. From decision-maker perspective, it is not easy to determine criteria weights of materials selection problem. Especially, several criteria cause inadequate subjective evaluation. In order to prevent this, different novel hybrid models were developed by using indifference threshold-based attribute ratio analysis (ITARA), VlseKriterijumska Optimizacija I Kompromisno Resenje (VIKOR) technique for order of preference by similarity to ideal solution (TOPSIS) and multi-objective optimization on the basis of ratio (MOORA) methods. Two case studies (material selection of flywheel and cryogenic storage tank) were taken from the literature to test these models. ITARA is used to calculate the criteria weights in the problems, and the final rankings are obtained by using VIKOR, TOPSIS and MOORA. The results indicate that the proposed methods produced successful results in terms of material selection perspective.
机译:由于其复杂性,应使用战略视角来调查制造环境中材料的最佳选择。由于标准不同,无法轻易发现理想的替代方案,因此决策者必须考虑用于选择合适的材料的几个因素。因此,决策者应设计一种正确形式的决策支持系统来解决给定的问题。从决策者的角度来看,确定材料选择问题的标准权重不容易。特别是,若干标准导致主观评估不足。为了防止这一点,通过使用基于灰度阈值的属性比率分析(Itara),Vlsekriterijumska Optimizacija i Kompromisno Resenje(Vikor)技术来开发不同的新型混合模型,以便通过相似性与理想解决方案(Topsis)和多目标的优先顺序基于比率(Moora)方法的优化。从文献中取出了两种案例研究(用于飞轮和低温储罐的材料选择)以测试这些模型。 Itara用于计算问题的标准权重,最终排名是通过使用Vikor,Topsis和Moora获得的。结果表明,所提出的方法在材料选择视角方面取得了成功的结果。

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