SciELO - Scientific Electronic Library Online

 
vol.27 issue1Lexical Complexity Evaluation based on Context for Russian LanguageTowards the Monitoring of Violent Events in Social Media through Visual Information author indexsubject indexsearch form
Home Pagealphabetic serial listing  

Services on Demand

Journal

Article

Indicators

Related links

  • Have no similar articlesSimilars in SciELO

Share


Computación y Sistemas

On-line version ISSN 2007-9737Print version ISSN 1405-5546

Abstract

BANOS-ZAMORA, Luis Diego; TELLEZ-VELAZQUEZ, Arturo; MIRANDA-LUNA, Rosebet  and  CRUZ-BARBOSA, Raúl. Comparative Analysis of Clustering Methods for Fuzzy Classifiers Simplification. Comp. y Sist. [online]. 2023, vol.27, n.1, pp.141-151.  Epub June 16, 2023. ISSN 2007-9737.  https://doi.org/10.13053/cys-27-1-4530.

One problem of fuzzy systems for classification tasks is the exponential growth of rule generation, which translates into excessively long processing times. Different proposals in the literature address this problem through exhaustive rule reduction techniques, which achieve competitive results compared to conventional classifiers by reducing their computational complexity as well. This paper proposes a methodology that is comprised of two stages: (1) a clustering technique that helps identify the structure of an initial low-accurate classifier and (2) a differential evolution parameter identification stage that takes that low-accurate classifier and refines it to obtain a high-accurate classifier. In this way, a comparative analysis among several clustering methods is performed, allowing the users to select a reduced rule set and avoid the use of traditional rule search algorithms. The results show that the Gaussian Mixture Model is the most suitable clustering technique to identify the structure of fuzzy classifiers, since it provides the corresponding fuzzy model with highly competitive classification performance compared to other state-of-the-art methods.

Keywords : Fuzzy classifiers simplification; clustering algorithm; differential evolution; structure identification; parameter identification.

        · text in English     · English ( pdf )