Efficient Image Retrieval by Fuzzy Rules from Boosting and Metaheuristic

Author:

Korytkowski Marcin1,Senkerik Roman2,Scherer Magdalena M.3,Angryk Rafal A.4,Kordos Miroslaw5,Siwocha Agnieszka6

Affiliation:

1. Department of Computer Engineering , Częstochowa University of Technology , Częstochowa , Poland

2. Tomas Bata University in Zlín , 760 05 Zlín , Czech Republic

3. Faculty of Management , Częstochowa University of Technology , Częstochowa , Poland

4. Department of Computer Science , Georgia State University , Atlanta , GA, USA

5. Department of Computer Science and Automatics , University of Bielsko-Biała , Poland

6. Information Technology Institute , University of Social Science, Łódź , Poland ; Clark University , Worcester , MA 01610 , USA

Abstract

Abstract Fast content-based image retrieval is still a challenge for computer systems. We present a novel method aimed at classifying images by fuzzy rules and local image features. The fuzzy rule base is generated in the first stage by a boosting procedure. Boosting meta-learning is used to find the most representative local features. We briefly explore the utilization of metaheuristic algorithms for the various tasks of fuzzy systems optimization. We also provide a comprehensive description of the current best-performing DISH algorithm, which represents a powerful version of the differential evolution algorithm with effective embedded mechanisms for stronger exploration and preservation of the population diversity, designed for higher dimensional and complex optimization tasks. The algorithm is used to fine-tune the fuzzy rule base. The fuzzy rules can also be used to create a database index to retrieve images similar to the query image fast. The proposed approach is tested on a state-of-the-art image dataset and compared with the bag-of-features image representation model combined with the Support Vector Machine classification. The novel method gives a better classification accuracy, and the time of the training and testing process is significantly shorter.

Publisher

Walter de Gruyter GmbH

Subject

Artificial Intelligence,Computer Vision and Pattern Recognition,Hardware and Architecture,Modelling and Simulation,Information Systems

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