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A Divergence-Based Distance Measure for Intuitionistic Fuzzy Sets and Its Application in the Decision-Making of Innovation Management

机译:直观模糊集的基于分歧的距离测量及其在创新管理决策中的应用

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摘要

The theory of intuitionistic fuzzy set has attracted much attention because of its stronger ability in depicting and modeling uncertainty. Recent years, numbers of distance measures of intuitionistic fuzzy sets have been proposed to distinguish the information conveyed by intuitionistic fuzzy sets. However, many existing distance measures cannot meet the requirements of a metric distance. So defining new distance measure for intuitionistic fuzzy sets is important to provide more choice in application. A new method to measure the distance between intuitionistic fuzzy sets is proposed in this paper. The proposed method is developed based on the divergence measure between intuitionistic fuzzy sets, which was firstly introduced by Shannon based on the idea of entropy. The mathematical properties of the new distance measure are discussed, and it is shown that the proposed distance measure satisfies all axiomatic properties of intuitionistic fuzzy distance measure. Numerical examples are presented to verify the effectiveness and reasonability of the new distance measure. Finally, the new distance measure is applied in innovation management to solve the decision making problems. It is illustrated that the proposed distance measure performs better than most of existing measures.
机译:由于其描绘和建模不确定性的能力更强,直觉模糊集的理论引起了很多关注。近年来,提出了直觉模糊集的距离测量措施,以区分直觉模糊集传达的信息。然而,许多现有距离措施不能满足度量距离的要求。因此,为直觉模糊集定义新距离测量对于在应用中提供更多选择是很重要的。本文提出了一种测量直觉模糊集之间距离的新方法。所提出的方法是基于直觉模糊集之间的发散测量来开发,这是基于熵的思想,由Shannon首先引入。讨论了新距离测量的数学特性,并显示了所提出的距离测量来满足直觉模糊距离测量的所有公理性质。提出了数值例子以验证新距离测量的有效性和合理性。最后,新的距离测量适用于创新管理,解决决策问题。示出了所提出的距离测量比大多数现有措施更好。

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