Araştırma Makalesi

Detecting of Circular Knitting Fabric Defects Using VGG16 Architecture

Cilt: 11 Sayı: 2 29 Haziran 2022
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Detecting of Circular Knitting Fabric Defects Using VGG16 Architecture

Öz

Although the conventional image processing methods can detect fabric defects, fabric defect detection is an open research problem due to the diversity of defect types. In this paper, the feasibility of VGG16 deep learning architecture for fabric defect detection has been demonstrated. A new fabric defect database is used. The pre-trained model of VGG16 architecture on the new database is built. Thus, the training time of the model is reduced. The experimental results show that the VGG16 model outperforms the traditional Shearlet transform and GLCM methods.

Anahtar Kelimeler

Kaynakça

  1. Chen M, Yu L, Zhi C, Sun R, Zhu S, Gao Z, et al. Improved faster R-CNN for fabric defect detection based on Gabor filter with Genetic Algorithm optimization. Comput Ind. 2022.134:103551.
  2. Hanbay K, Talu MF, Özgüven ÖF. Fabric defect detection systems and methods—A systematic literature review. Optik (Stuttg). 2016 Dec 1;127(24):11960–73.
  3. Cuifang Z, Yu C, Jiacheng M. Fabric defect detection algorithm based on PHOG and SVM. Indian J Fibre Text Res. 2020;45:123–6.
  4. Zhu D, Pan R, Gao W, Zhang J. Yarn-Dyed fabric defect detection based on autocorrelation function and GLCM. Autex Res J. 2015. 15(3):226–32.
  5. Pourkaramdel Z, Fekri-Ershad S, Nanni L. Fabric defect detection based on completed local quartet patterns and majority decision algorithm. Expert Syst Appl. 2022 .198:116827.
  6. Zhang B, Tang C. A Method for Defect Detection of Yarn-Dyed Fabric Based on Frequency Domain Filtering and Similarity Measurement. Autex Res J. 2019 Sep 1;19(3):257–62.
  7. Vermaak H, Nsengiyumva P, Luwes N. Using the Dual-Tree Complex Wavelet Transform for Improved Fabric Defect Detection. J Sensors. 2016.–8.
  8. Hanbay K, Fatih Talu M, Özgüven ÖF, Öztürk D. Real-Time Detection of Knitting Fabric Defects Using Shearlet Transform. Tekst ve Konfeksiyon. 29(1):2019. 3-10.

Ayrıntılar

Birincil Dil

İngilizce

Konular

Mühendislik

Bölüm

Araştırma Makalesi

Yayımlanma Tarihi

29 Haziran 2022

Gönderilme Tarihi

18 Nisan 2022

Kabul Tarihi

7 Haziran 2022

Yayımlandığı Sayı

Yıl 2022 Cilt: 11 Sayı: 2

Kaynak Göster

APA
Hanbay, K. (2022). Detecting of Circular Knitting Fabric Defects Using VGG16 Architecture. Turkish Journal of Nature and Science, 11(2), 125-129. https://doi.org/10.46810/tdfd.1105343
AMA
1.Hanbay K. Detecting of Circular Knitting Fabric Defects Using VGG16 Architecture. TDFD. 2022;11(2):125-129. doi:10.46810/tdfd.1105343
Chicago
Hanbay, Kazım. 2022. “Detecting of Circular Knitting Fabric Defects Using VGG16 Architecture”. Turkish Journal of Nature and Science 11 (2): 125-29. https://doi.org/10.46810/tdfd.1105343.
EndNote
Hanbay K (01 Haziran 2022) Detecting of Circular Knitting Fabric Defects Using VGG16 Architecture. Turkish Journal of Nature and Science 11 2 125–129.
IEEE
[1]K. Hanbay, “Detecting of Circular Knitting Fabric Defects Using VGG16 Architecture”, TDFD, c. 11, sy 2, ss. 125–129, Haz. 2022, doi: 10.46810/tdfd.1105343.
ISNAD
Hanbay, Kazım. “Detecting of Circular Knitting Fabric Defects Using VGG16 Architecture”. Turkish Journal of Nature and Science 11/2 (01 Haziran 2022): 125-129. https://doi.org/10.46810/tdfd.1105343.
JAMA
1.Hanbay K. Detecting of Circular Knitting Fabric Defects Using VGG16 Architecture. TDFD. 2022;11:125–129.
MLA
Hanbay, Kazım. “Detecting of Circular Knitting Fabric Defects Using VGG16 Architecture”. Turkish Journal of Nature and Science, c. 11, sy 2, Haziran 2022, ss. 125-9, doi:10.46810/tdfd.1105343.
Vancouver
1.Kazım Hanbay. Detecting of Circular Knitting Fabric Defects Using VGG16 Architecture. TDFD. 01 Haziran 2022;11(2):125-9. doi:10.46810/tdfd.1105343

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