Title of article
Several new results based on the study of distance measures of intuitionistic fuzzy sets
Author/Authors
Chen, C. School of Mathematics - South China University of Technology, Guangzhou, China , Deng, X. School of Mathematics - South China University of Technology, Guangzhou, China
Pages
17
From page
147
To page
163
Abstract
It is doubtless that intuitionistic fuzzy set (IFS) theory plays an increasingly important role in solving the problems
under uncertain situation. As one of the most critical members in the theory, distance measure is widely used in
many aspects. Nevertheless, it is a pity that part of the existing distance measures has some drawbacks in practical
signicance and accuracy. To make up for their drawbacks and pursue more accuracy and eectiveness, in this paper, we
propose a new inclusion relation of IFSs and a new denition called strict distance measure. Based on this new relation,
an analysis is given to point out that the common shortcoming of Hamming distance measure and Euclidean distance
measure is the mishandling of hesitancy degree. Therefore, the role of hesitancy degree in distance measure is studied
deeply and then three strict distance measures are put forward to overcome the above shortcoming. In addition, a novel
denition called the characteristic function of distance measure is dened to describe the character of strict distance
measure. On this basis, a theorem is presented to illustrate the inevitability of the occurrence of unrecognized result
in pattern recognition problems in some special cases. This theorem also shows that the problem cannot be entirely
attributed to distance measures. In view of this condition, we provide an appropriate solution. Compared with other
existing distance measures in some examples, the superiorities of our improved distance measures are demonstrated to
be more eective and more signicant.
Keywords
Intuitionistic fuzzy set , distance measure , inclusion relation , hesitancy degree , characteristic function
Journal title
Iranian Journal of Fuzzy Systems (IJFS)
Serial Year
2020
Record number
2526338
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