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    • 42. 发明申请
    • SYSTEMS AND METHODS FOR ESTIMATING THE COLOR OF COATED PRINTS
    • 用于估算涂布印刷品颜色的系统和方法
    • US20110032546A1
    • 2011-02-10
    • US12537696
    • 2009-08-07
    • Edul N. DalalLalit Keshav Mestha
    • Edul N. DalalLalit Keshav Mestha
    • H04N1/60
    • G01J3/46G01J3/463H04N1/6033H04N1/6097
    • A method for estimating the color of a coated print includes: measuring the color of an uncoated print with a color measuring device; and estimating the color of the print when coated by a coating process based on the uncoated color measurement using a function that correlates uncoated color measurements and coated color measurements; and adjusting at least one parameter of the printing process based on the coated color estimation. The correlating function may be derived by measuring the color of a plurality of uncoated color patches; measuring the color of the plurality of patches after the patches have been coated by the coating process; and correlating the color of the coated patches with the uncoated patches based on the coated and uncoated color patch measurements.
    • 用于估计涂布印刷品的颜色的方法包括:用彩色测量装置测量未涂覆印刷品的颜色; 以及使用使未涂布的颜色测量和涂覆的颜色测量相关联的功能,基于未涂覆的颜色测量,通过涂布工艺涂布时估计印刷物的颜色; 以及基于所述涂覆的颜色估计来调整所述打印处理的至少一个参数。 相关函数可以通过测量多个未涂覆的色块的颜色来得到; 在通过涂布工艺涂覆贴片之后测量多个贴片的颜色; 并且基于涂覆和未涂覆的色块测量值将涂覆的斑块的颜色与未涂覆的贴片相关联。
    • 49. 发明授权
    • Method and system to personalize sensor characterizing reference database in multiple LED spectrophotometers
    • 在多个LED分光光度计中个性化传感器特征参考数据库的方法和系统
    • US07555396B2
    • 2009-06-30
    • US11086087
    • 2005-03-22
    • Lalit Keshav Mestha
    • Lalit Keshav Mestha
    • G01D18/00
    • G01J3/50G01J3/02G01J3/0275G01J3/501G01J3/524
    • To generate a reference database for a particular sensor in a multiple LED spectrophotometric system with a reduced number of test measurements taken from training samples, a first set of reflectance reference measurements are generated from a test target on to a reference sensor from a plurality of different LED emissions. A first spectral reconstruction reference matrix is computed by performing an operational characterization of the reference sensor from the first set of reflectance reference measurements. A second set of reflectance reference measurements from the test target is generated from a second subject sensor whose operation is to be personalized by the objective reference database. The second set of reflectance reference measurements are less in number than the first set. A second reconstruction matrix is computed by performing an operational characterization of the subject sensor from the second set of measurements. The second reconstruction matrix is adjusted by relating the second set of reflectance measurements to a set of corresponding reflectance measurements of the reference sensor, whereby the adjusting of the second matrix comprises computing an optimal solution spectral reconstruction matrix for the second sensor. The reference database is generated from the optimal solution spectral reconstruction matrix.
    • 为了在具有从训练样本获得的测试测量数量减少的多个LED分光光度系统中产生用于特定传感器的参考数据库,从测试目标产生第一组反射参考测量值到多个不同的参考传感器 LED排放。 通过从第一组反射参考测量值执行参考传感器的操作表征来计算第一光谱重构参考矩阵。 来自测试目标的第二组反射参考测量从第二目标传感器产生,其第二对象传感器的操作将由目标参考数据库进行个性化。 第二组反射参考测量数量少于第一组。 通过从第二组测量执行对象传感器的操作表征来计算第二重建矩阵。 通过将第二组反射率测量值与参考传感器的一组对应的反射率测量值相关联来调整第二重构矩阵,由此第二矩阵的调整包括计算第二传感器的最优解谱重构矩阵。 参考数据库是从最优解谱重建矩阵生成的。