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Regression based characterization of color measurement instruments in printing applications

机译:在印刷应用中基于回归的色彩测量仪器特性

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In the context of print quality and process control colorimetric parameters and tolerance values are clearly defined. Calibration procedures are well defined for color measurement instruments in printing workflows. Still, using more than one color measurement instrument measuring the same color wedge can produce clearly different results due to random and systematic errors of the instruments. In certain situations where one instrument gives values which are just inside the given tolerances and another measurement instrument produces values which exceed the predefined tolerance parameters, the question arises whether the print or proof is approved or not accepted with regards to the standard parameters. The aim of this paper was to determine an appropriate model to characterize color measurement instruments for printing applications in order to improve the colorimetric performance and hence the inter-instrument agreement. The method proposed is derived from color image acquisition device characterization methods which have been applied by performing polynomial regression with a least square technique. Six commercial color measurement instruments were used for measuring color patches of a control color wedge on three different types of paper substrates. The characterization functions were derived using least square polynomial regression, based on the training set of 14 BCRA tiles colorimetric reference values and the corresponding colorimetric measurements obtained by the measurement instruments. The derived functions were then used to correct the colorimetric values of test sets of 46 measurements of the color control wedge patches. The corrected measurement results obtained from the applied regression model was then used as the starting point with which the corrected measurements from other instruments were compared to find the most appropriate polynomial, which results in the least color difference. The obtained results demonstrate that the proposed regression method works remarkably well with a range of different color measurement instruments used on three types of substrates. Finally, by extending the training set from 14 samples to 38 samples the obtained results clearly indicate that the model is robust.
机译:在打印质量和过程控制方面,应明确定义比色参数和公差值。在打印工作流程中为颜色测量仪器定义了很好的校准程序。但是,由于仪器的随机性和系统性误差,使用不止一种颜色测量仪测量同一色楔仍会产生明显不同的结果。在某些情况下,如果一台仪器给出的值恰好在给定的公差范围内,而另一台测量仪器产生的值超过了预定义的公差参数,则会出现有关标准参数的打印或校样是否被批准的问题。本文的目的是确定一种合适的模型,以表征用于打印应用的颜色测量仪器,以改善比色性能,从而改善仪器间的一致性。所提出的方法是从彩色图像采集设备的表征方法中得出的,该方法已通过使用最小二乘技术执行多项式回归而得到应用。使用六种商用颜色测量仪器测量三种不同类型的纸张基材上的对照色楔的色块。基于14个BCRA图块的比色参考值和由测量仪器获得的相应比色测量值的训练集,使用最小二乘多项式回归得出特征函数。然后将派生的函数用于校正颜色控制楔形色块的46个测量值的测试集的比色值。然后,将从应用的回归模型中获得的校正后的测量结果用作起点,与其他仪器的校正后的测量结果进行比较,以找到最合适的多项式,从而使色差最小。获得的结果表明,所提出的回归方法对于在三种类型的基材上使用的一系列不同的颜色测量仪器都非常有效。最后,通过将训练集从14个样本扩展到38个样本,获得的结果清楚地表明该模型是健壮的。

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