DOI QR코드

DOI QR Code

A Study on the Color Functions of the Textile Design System based on CAD using Image Analysis Methods

텍스타일 디자인 캐드 시스템의 색정리 기능에 대한 정량적 분석 연구

  • Choi, Kyung-Me (Dept. of Clothing and Textiles, Graduate School, Ewha Womans University) ;
  • Kim, Jong-Jun (Dept. of Clothing and Textiles, Ewha Womans University)
  • 최경미 (이화여자대학교 대학원 의류학과) ;
  • 김종준 (이화여자대학교 의류학과)
  • Received : 2011.03.23
  • Accepted : 2011.06.20
  • Published : 2011.09.30

Abstract

Printing process has been a major sector in the textile industries for a long period of time. With the advent of digital textile printing, the complex procedures of printing preparations and after-treatment processes have been streamlined. For the design of the motives of images to be printed, the use of image handling software, e.g. Photoshop(Adobe), has been of prime importance. Even though the software is extremely useful and functionally versatile, there are many laborious steps involved for the specific textile printing process. The use of a CAD-based textile printing function may help the textile printing process in streamlining the complex processing stages. The image qualities of the output designs have been compared objectively with the aid of several image similarity evaluation schemes including the SSIM, and FSIM Index methods.

Keywords

References

  1. 김신희(2009), 포토샵과 일러스트레이터를 이용한 텍스타일 디자인, 교학연구사, pp.5-18.
  2. 박소영(2002), 디지털 프린팅을 위한 컴퓨터 텍스타일 디자인, 교문사, pp.3-6.
  3. 김신희(2009), "포토샵을 이용하여 공예적 기법인 마블링패턴을 DTP출력용 텍스타일 디자인으로 개발", 패션비즈니스, 13(2), pp.115-122.
  4. 한국염색기술연구소(2008), 차세대 친환경 디지털 텍스타일 프린팅 기술교본, pp.3-4.
  5. J. L. Starck, F. Murtagh, A. Bijaoui(1998), Image Processing and Data Analysis, Cambridg: Cambridge University Press, pp.74-75.
  6. S. H. Jeong, S. H. Kim, C. J. Hong(2001), "The evaluation of evenness of nonwovens using image analysis method", Fibers and Polymers, 2(3), pp.164-170. https://doi.org/10.1007/BF02875331
  7. 대한민국 등록특허 2007-100671346.
  8. 김종준, 전동원, 이정민(2005), "벨벳織物의 外 觀特性과 파일纖維의 三次元的모델링", 패션비즈니스, 9(4), pp.170-177.
  9. 이정민, 김종준, 전동원(2008), "에콜로지 트랜드 소재의 외관특성에 관한 연구", 패션비즈니스, 12(4), pp.131-142.
  10. Z. Wang(2002), "A Universal Image Quality Index", IEEE Signal Processing Letters, 9(3), pp.81-84.
  11. Z. Wang, E. P. Simoncelli, A. C. Bovik (2003), "Multi-Scale Structural Similarity for Image Quality Assessment," Proc. of the 37th IEEE Asilomar Conf. on Signals, Systems and Computers, pp.1398-1402.
  12. M.P. Sampat, et al.(2009), "Complex Wavelet Structural Similarity: A New Image Similarity Index," IEEE Trans. Image Process. 18(11), pp.2385-2401.
  13. L. Zhang, X. Mou, D. Zhang(2010), "FSIM: A Feature Similarity Index for Image Quality Assessment", IEEE Trans. on Image Processing, 99(1), pp.1-12.
  14. P. Kovesi(1999), "Image Features from Phase Congruency," Videre: J. Comp. Vis. Res., 1(3), pp.1-26.