Animal fiber recognition based on feature fusion of the maximum inter-class variance

Author:

Zhu Yaolin1,Zhao Lu1,Chen Xin1,Li Yunhong1,Wang Jinmei2

Affiliation:

1. School of Electronics and Information, Xi’an Polytechnic University , Xi’an , China

2. School of Textile science and Engineering, Xi’an Polytechnic University , Xi’an , China

Abstract

Abstract Cashmere and wool are common raw materials in the textile industry. The clothes made of cashmere are popular because of the excellent comfort. A system that can quickly and automatically classify the two will improve the efficiency of fiber recognition in the textile industry. We propose a classification method of cashmere and wool fibers based on feature fusion using the maximum inter-class variance. First, the fiber target area is obtained by the preprocessing algorithm. Second, the features of sub-images are extracted through the algorithm of the Discrete Wavelet Transform. It is linearly fused by introducing the weight in the approximate and detailed features. The maximum separability of the feature data can be achieved by the maximum inter-class variance. Finally, different classifiers are used to evaluate the performance of the proposed method. The support vector machine classifier can achieve the highest recognition rate, with an accuracy of 95.20%. The experimental results show that the recognition rate of the fused feature vectors is improved by 6.73% compared to the original feature vectors describing the image. It verifies that the proposed method provides an effective solution for the automatic recognition of cashmere and wool.

Publisher

Walter de Gruyter GmbH

Subject

General Materials Science

Reference23 articles.

1. Luo, J., Lu, K., Zhang, B., Zhang, Y., Chen, Y., Tian, J. (2021). Current status and progress of identification methods for cashmere and wool fibers. Wool Textile Journal, 48(10), 112–117.

2. Xing, W., Xin, B., Deng, N., Chen, Y., Zhang, Z. (2019). A novel digital analysis method for measuring and identifying of wool and cashmere fibers. Measurement, 132, 11–21.

3. Zhong, Y., Lu, K., Tian, J., Zhu, H. (2017). Wool/cashmere identification based on projection curves. Textile Research Journal, 87(14), 1730–1741.

4. Lin, P. (2019). Detection method for distinguishing wool from cashmere. Western Leather, 41(18), 160.

5. Ma, C., Liu, X., Liu, F. (2014). A research on cashmere automatic identification method based on statistical analysis. Wool Textile Journal, 42(10), 62–64.

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