Color Prediction Model for Flexographic Prints Based on Spectral Reflectance

Author(s):  
Dongwen Tian ◽  
Zhonghua Yu ◽  
Jinghuan Ge
2012 ◽  
Vol 430-432 ◽  
pp. 1176-1182
Author(s):  
Chao Rong Lin ◽  
Jun Fei Xu ◽  
Jin Lin Xu

Spectral prediction of spot color ink has always been a difficult problem in the field of color research. The current paper adopted color parallel and superposition models to deal with the Clapper-Yule model and to simplify the prediction model of spectral reflectance of spot color ink. respectively. Based on the experimental verification. the simplified method has a certain practical application value. and the spot color prediction of general presswork can meet the requirements fully. The most important consideration is that the simplification can largely reduce the computational difficulty. Moreover. the current paper compared the accuracy of color parallel model with the superposition model to simplify the spectral prediction model of spot color ink. The result showed that the color superposition model has higher accuracy in simplifying the spectral prediction model of spot color ink.


2020 ◽  
Vol 10 (1) ◽  
Author(s):  
Jiyou Zhu ◽  
Xinna Zhang ◽  
Weijun He ◽  
Xuemei Yan ◽  
Qiang Yu ◽  
...  

Abstract To quantitatively reflect the relationship between dust and plant spectral reflectance. Dust from different sources in the city were selected to simulate the spectral characteristics of leaf dust. Taking Euonymus japonicus as the research object. Prediction model of leaf dust deposition was established based on spectral parameters. Results showed that among the three different dust pollutants, the reflection spectrum has 6 main reflection peaks and 7 main absorption valleys in 350–2500 nm. A steep reflection platform appears in the 692–763 nm band. In 760–1400 nm, the spectral reflectance gradually decreases with the increase of leaf dust coverage, and the variation range was coal dust > cement dust > pure soil dust. The spectral reflectance in 680–740 nm gradually decreases with the increase of leaf dust coverage. In the near infrared band, the fluctuation amplitude and slope of its first derivative spectrum gradually decrease with the increase of leaf dust. The biggest amplitude of variation was cement dust. With the increase of dust retention, the red edge position generally moves towards short wave direction, and the red edge slope generally decreases. The blue edge position moved to the short wave direction first and then to the long side direction, while the blue edge slope generally shows a decreasing trend. The yellow edge position moved to the long wave direction first and then to the short wave direction (coal dust, cement dust), and generally moved to the long side direction (pure soil dust). The yellow edge slope increases first and then decreases. The R2 values of the determination coefficients of the dust deposition prediction model have reached significant levels, which indicated that there was a relatively stable correlation between the spectral reflectance and dust deposition. The best prediction model of leaf dust deposition was leaf water content index model (y = 1.5019x − 1.4791, R2 = 0.7091, RMSE = 0.9725).


2009 ◽  
Author(s):  
Na Dong ◽  
Yixin Zhang ◽  
Guoyun Shi

2008 ◽  
Vol 28 (1) ◽  
pp. 200-204 ◽  
Author(s):  
张逸新 Zhang Yixin ◽  
臧冬娟 Zang Dongjuan ◽  
葛惊寰 Ge Jinghuan

2010 ◽  
Vol 39 (11) ◽  
pp. 1982-1987
Author(s):  
田东文 TIAN Dongwena ◽  
张逸新 ZHANG Yixinb ◽  
王庆娟 WANG Qingjuana

2015 ◽  
Vol 52 (11) ◽  
pp. 113301
Author(s):  
于海琦 于海琦 ◽  
刘真 刘真 ◽  
田全慧 田全慧

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