Color and Texture Analysis of Textiles Using Image Acquisition and Spectral Analysis in Calibrated Sphere Imaging System-II

Author:

Rout Nibedita1,Hu Jinlian2ORCID,Baciu George3,Pattanaik Priyabrata1ORCID,Nakkeeran K.4ORCID,Khandual Asimananda5ORCID

Affiliation:

1. School of Electronics, ITER, S’O’A University, Bhubaneswar 751030, Odisha, India

2. Laboratory of Wearable Materials for Healthcare, City University, Hong Kong, China

3. Department of Computing, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, China

4. School of Engineering, Fraser Noble Building, University of Aberdeen, Aberdeen AB24 3UE, UK

5. Department of Textile Engineering, OUTR (Former CET), Bhubaneswar 751029, Odisha, India

Abstract

The extended application of device-dependent systems’ vision is growing exponentially, but these systems face challenges in precisely imitating the human perception models established by the device-independent systems of the Commission internationale de l’éclairage (CIE). We previously discussed the theoretical treatment and experimental validation of developing a calibrated integrated sphere imaging system to imitate the visible spectroscopy environment. The RGB polynomial function was derived to obtain a meaningful interpretation of color features. In this study, we dyed three different types of textured materials in the same bath with a yellow reactive dye at incremental concentrations to see how their color difference profiles tested. Three typical cotton textures were dyed with three ultra-RGB remozol reactive dyes and their combinations. The color concentration ranges of 1%, 2%, 3%, and 4% were chosen for each dye, followed by their binary and ternary mixtures. The aim was to verify the fundamental spectral feature mapping in various imaging color spaces and spectral domains. The findings are quite interesting and help us to understand the ground truth behind working in two domains. In addition, the trends of color mixing, CIE color difference, CIExy (chromaticity) color gamut, and RGB gamut and their distinguishing features were verified. Human perception accuracy was also compared in both domains to clarify the influence of texture. These fundamental experiments and observations on human perception and calibrated imaging color space could clarify the expected precision in both domains.

Funder

new fiber science and IoT Lab

TEQIP-3 seed money

MODROB

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Computer Networks and Communications,Hardware and Architecture,Signal Processing,Control and Systems Engineering

Reference18 articles.

1. Rout, N., Baciu, G., Pattanaik, P., Nakkeeran, K., and Khandual, A. (2022). Color and Texture Analysis of Textiles Using Image Acquisition and Spectral Analysis in Calibrated Sphere Imaging System-I. Electronics, 24.

2. Yao, P. (2022). Advanced Textile Image Analysis Based on Multispectral Color Reproduction. [Ph.D. Dissertation, Hong Kong Polytechnic University].

3. Colorimetric processing of digital color image!;Khandual;Int. J. Adv. Res. Comp. Sc. Soft. Eng.,2013

4. A survey on computational spectral reconstruction methods from RGB to hyperspectral imaging;Zhang;Sci. Rep.,2022

5. Color Characterization for Scanners: Dpi and Color Co-Ordinate Issues;Khandual;Int. J. Adv. Res. Comput. Sci. Softw. Eng.,2012

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