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http://dx.doi.org/10.3837/tiis.2017.01.015

An Optimized CLBP Descriptor Based on a Scalable Block Size for Texture Classification  

Li, Jianjun (School of Computer Science and Technology, Hangzhou Dianzi University)
Fan, Susu (School of Computer Science and Technology, Hangzhou Dianzi University)
Wang, Zhihui (School of Software Technology, Dalian University of Technology)
Li, Haojie (School of Software Technology, Dalian University of Technology)
Chang, Chin-Chen (Department of Information Engineering and Computer Science, Feng Chia University)
Publication Information
KSII Transactions on Internet and Information Systems (TIIS) / v.11, no.1, 2017 , pp. 288-301 More about this Journal
Abstract
In this paper, we propose an optimized algorithm for texture classification by computing a completed modeling of the local binary pattern (CLBP) instead of the traditional LBP of a scalable block size in an image. First, we show that the CLBP descriptor is a better representative than LBP by extracting more information from an image. Second, the CLBP features of scalable block size of an image has an adaptive capability in representing both gross and detailed features of an image and thus it is suitable for image texture classification. This paper successfully implements a machine learning scheme by applying the CLBP features of a scalable size to the Support Vector Machine (SVM) classifier. The proposed scheme has been evaluated on Outex and CUReT databases, and the evaluation result shows that the proposed approach achieves an improved recognition rate compared to the previous research results.
Keywords
Texture classification and recognition; LBP; CLBP; SVM; Scalable block size;
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