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    • 93. 发明授权
    • Methodology for substrate fluorescent non-overlapping dot design patterns for embedding information in printed documents
    • 用于在印刷文件中嵌入信息的底物荧光非重叠点设计模式的方法
    • US07800785B2
    • 2010-09-21
    • US11754733
    • 2007-05-29
    • Raja BalaReiner EschbachShen-Ge WangYonghui Zhao
    • Raja BalaReiner EschbachShen-Ge WangYonghui Zhao
    • H04N1/405
    • B41M3/144
    • The teachings as provided herein relate to a watermark embedded in an image, and methodology for same, that has the property of being relatively indecipherable under normal light, and yet decipherable under UV light. This fluorescent mark comprises a substrate containing optical brightening agents, and a first dot design printed as an image upon the substrate. The first dot design has as a characteristic, the property of strongly suppressing substrate fluorescence. A second dot design having a property of providing a differing level of substrate fluorescence suppression from that of the first dot design such that when rendered in close spatial proximity with the first dot design image print, the resultant image rendered substrate suitably exposed to an ultra-violet light source, will yield a discernable image evident as a fluorescent mark.
    • 本文提供的教导涉及嵌入在图像中的水印及其方法,其具有在正常光线下相对不可破译的性质,并且在UV光下可解码。 该荧光标记包括含有荧光增白剂的基材和在基材上作为图像印刷的第一点设计。 第一个点设计具有强烈抑制底物荧光的特性。 具有提供与第一点设计不同程度的底物荧光抑制的性质的第二点设计,使得当与第一点设计图像打印紧密地空间接近时,所得到的图像渲染衬底适当地暴露于超 紫色光源,将产生明显的可辨别图像作为荧光标记。
    • 95. 发明授权
    • Watermarking
    • 水印
    • US07764403B2
    • 2010-07-27
    • US11634657
    • 2006-12-06
    • Robert P. LoceRaja BalaKaren M. Braun
    • Robert P. LoceRaja BalaKaren M. Braun
    • H04N1/40H04N1/60
    • H04N1/32309H04N1/32299
    • Extended colorant sets are used to hide data or provide a watermark in printed images. Extended set colorants are colorants other than, and in addition to, the standard or common subtractive primary colorants: cyan, magenta, yellow and/or black. Where the extended colorant set supports a plurality of colorant recipes for rendering a given color, watermark data is used to select a colorant recipe from the plurality. As the watermark data to be encoded in the image changes state with image position, alternate colorant recipes or colorant selection functions are selected. The image is rendered based on the alternate colorant recipe selections. Watermark information is encoded in the colorant recipe or colorant selection function selection. Use of the extended colorant sets allows information to be encoded even in portions of an image having colors that do not include a neutral component.
    • 扩展着色剂集合用于隐藏数据或在打印图像中提供水印。 扩展的定色着色剂是除了标准或普通的减色原色着色剂之外的除了以外的着色剂:青色,品红色,黄色和/或黑色。 在延伸着色剂组支持用于渲染给定颜色的多个着色剂配方的情况下,使用水印数据从多个中选择着色剂配方。 当图像中要编码的水印数据用图像位置改变状态时,选择着色剂配方或着色剂选择功能。 基于备选着色剂配方选择渲染图像。 水印信息在着色剂配方或着色剂选择功能选择中进行编码。 使用扩展着色剂组允许即使在具有不包括中性成分的颜色的图像的部分中也可以对信息进行编码。
    • 96. 发明授权
    • Gray balance calibration of an imaging system
    • 成像系统的灰度平衡校准
    • US07733478B2
    • 2010-06-08
    • US12258368
    • 2008-10-24
    • Robert M. VanDuynRaja Bala
    • Robert M. VanDuynRaja Bala
    • G01J1/10
    • H04N1/6033
    • One aspect of the disclosure is directed to a calibration system. The calibration system includes an imaging device including a predetermined print engine capable of being calibrated and a calibration sheet. The calibration sheet includes at least one visible calibration reference region including a given mix of pre-selected reference colorants printed in the calibration reference region on the calibration sheet. The pre-selected reference colorants have been previously printed on the printable calibration sheet using a different imaging device that is different than the given imaging device and that has the same print engine as the given imaging device. The calibration sheet includes freshly printable target regions on the calibration sheet. The given imaging device is configured to enter into the calibration mode, wherein the given imaging device is configured to freshly print a mix of colorants corresponding to the pre-selected reference colorants onto at least one of the target regions.
    • 本公开的一个方面涉及校准系统。 校准系统包括成像装置,其包括能够被校准的预定打印引擎和校准片。 校准片材包括至少一个可见的校准参考区域,其包括打印在校准片材上的校准参考区域中的预先选择的参考着色剂的给定混合物。 预先选择的参考着色剂已经使用与给定成像装置不同的不同的成像装置预先印刷在可印刷的校准片上,并且具有与给定的成像装置相同的印刷引擎。 校准页在校准页上包括新鲜可打印的目标区域。 给定的成像装置被配置为进入校准模式,其中给定的成像装置被配置为将对应于预先选择的参考着色剂的着色剂的混合物新鲜地打印到至少一个目标区域上。
    • 98. 发明授权
    • Spatially varying luminance compression gamut mapping system and method
    • 空间变化的亮度压缩色域映射系统和方法
    • US07652808B2
    • 2010-01-26
    • US10733608
    • 2003-12-11
    • Raja Bala
    • Raja Bala
    • G03F3/00G06K1/00G06K9/00G06K9/36
    • H04N1/6027H04N1/6072
    • A system and method for gamut mapping includes a luminance compression algorithm for gamut mapping that varies across different parts of the image. In shadow regions, a soft compression function is applied to bring out the detail. In other regions, including areas with high local contrast, a hard clipping function is applied to preserve local contrast. The algorithm adaptively blends between these two functions to ensure that the overall compression function is spatially smooth. The system and method may also use chrominance information to compute “perceived lightness”, to be used as input to the low-pass filter. Also, the blending function α( ) could be a function of chrominance as well as luminance.
    • 用于色域映射的系统和方法包括在图像的不同部分上变化的色域映射的亮度压缩算法。 在阴影区域,应用软压缩功能来显示细节。 在其他区域,包括局部对比度较高的区域,应用硬切割功能来保持局部对比度。 该算法自适应地融合了这两个功能,以确保整体压缩功能在空间上平滑。 该系统和方法还可以使用色度信息来计算“感知亮度”,以用作低通滤波器的输入。 此外,混合函数alpha()可以是色度以及亮度的函数。