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A mathematical programming approach to multi-attribute decision making with interval-valued intuitionistic fuzzy assessment information

机译:具有区间直觉模糊评估信息的多属性决策的数学规划方法

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This article proposes an approach to handle multi-attribute decision making (MADM) problems under the interval-valued intuitionistic fuzzy environment, in which both assessments of alternatives on attributes (hereafter, referred to as attribute values) and attribute weights are provided as interval-valued intuition istic fuzzy numbers (IVIFNs). The notion of relative closeness is extended to interval values to accommo date 1VIFN decision data, and fractional programming models are developed based on the Technique for Order Preference by Similarity to Ideal Solution (TOPSIS) method to determine a relative closeness inter val where attribute weights are independently determined for each alternative. By employing a series of optimization models, a quadratic program is established for obtaining a unified attribute weight vector, whereby the individual IVIFN attribute values are aggregated into relative closeness intervals to the ideal solution for final ranking. An illustrative supplier selection problem is employed to demonstrate how to apply the proposed procedure.
机译:本文提出了一种在区间值直觉模糊环境下处理多属性决策(MADM)问题的方法,其中,对属性的备选方案(以下称为属性值)评估和属性权重均以区间-重视直觉模糊数(IVIFN)。相对亲和度的概念被扩展到间隔值以容纳1VIFN决策数据,并基于“基于理想解决方案的顺序偏好技术”(TOPSIS)方法开发了分数编程模型,以确定属性权重为的相对亲近区间为每个替代方案独立确定。通过使用一系列优化模型,建立了一个二次程序来获得统一的属性权重向量,从而将各个IVIFN属性值聚合为相对理想区间的相对接近度间隔,以进行最终排名。说明性的供应商选择问题用于说明如何应用建议的程序。

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