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Hybridized fuzzy analytic hierarchy process and fuzzy weighted average for identifying optimal design concept

机译:混合模糊层次分析与模糊加权平均的最优设计概念识别。

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摘要

In this article, a novel hybridized Multi-Attribute Decision Model (MADM) is developed to identify an optimal design of a Reconfigurable Assembly Fixture (RAF) from a set of alternative design concepts. The model combines the comparative advantage of Fuzzy Analytic Hierarchy Process (FAHP) and the computational strength of the Fuzzy Weighted Average (FWA) based on left and right scores in order to obtain aggregates for the design alternatives considering the relative importance of the design criteria as needed in the optimal design. The model was applied to evaluate four design concepts of a RAF with six design features having numerous sub-features. Results obtained from the evaluation process shows that there are differences in final values of the design alternatives. However, a close variation exists between these values. These differences can be accrued to the interrelationships between the design features and sub-features obtained from the Fuzzy Synthetic Extent (FSE) of the FAHP and an unambiguity judgment of the FWA when aggregating availability of the design features and sub-features in the design alternatives.
机译:在本文中,开发了一种新颖的混合多属性决策模型(MADM),以从一组替代设计概念中确定可重新配置装配夹具(RAF)的最佳设计。该模型结合了模糊分析层次结构(FAHP)的比较优势和基于左右得分的模糊加权平均(FWA)的计算强度,从而获得了考虑设计标准相对重要性的设计备选方案的汇总优化设计中需要的。该模型用于评估英国皇家空军的四个设计概念,其中六个设计功能具有众多子功能。从评估过程中获得的结果表明,设计替代方案的最终价值存在差异。但是,这些值之间存在紧密的差异。这些差异可以归因于从FAHP的模糊综合程度(FSE)获得的设计特征和子特征之间的相互关系,以及在将设计特征和子特征的可用性汇总到其他设计方案中时,FWA的明确性判断。

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