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    • 152. 发明授权
    • System and method for dynamic zoom to view documents on small displays
    • 动态缩放的系统和方法可在小显示器上查看文档
    • US08812978B2
    • 2014-08-19
    • US11315993
    • 2005-12-22
    • Reiner EschbachEmil V. RaineroZhigang FanShen-ge Wang
    • Reiner EschbachEmil V. RaineroZhigang FanShen-ge Wang
    • G06F3/048G06F17/21
    • G06F17/211
    • A system and method for dynamic zoom adjustment based, in part, upon: the raster data in the user selected local area is disclosed; and/or the knowledge of a prevailing font size in a user selected region such that the text in that region is enlarged to be just readable. To achieve this, the detail in the local area is examined and a zoom factor is calculated that depends on the image detail and/or the viewing screen resolution. A document server may be employed to develop the information needed to enable this functionality. In one embodiment, the information is developed by RIPping the document, and then storing a spatial map of localized details (e.g., font sizes at several display resolutions) to automatically adjust a zoom level or factor and thereby facilitate navigation and reading.
    • 一种用于动态变焦调整的系统和方法,部分地基于:用户选择的局部区域中的光栅数据; 和/或在用户选择的区域中的主要字体大小的知识,使得该区域中的文本被放大为仅仅是可读的。 为了实现这一点,检查局部区域中的细节,并且计算取决于图像细节和/或观看屏幕分辨率的缩放因子。 可以使用文档服务器来开发实​​现该功能所需的信息。 在一个实施例中,通过RIP文档来开发信息,然后存储本地化细节(例如,几种显示分辨率的字体大小)的空间图,以自动调整缩放级别或因子,从而便于导航和阅读。
    • 153. 发明授权
    • Variable data image watermarking using infrared sequence structures in black separation
    • 在黑色分离中使用红外序列结构的可变数据图像水印
    • US08699089B2
    • 2014-04-15
    • US13553338
    • 2012-07-19
    • Reiner EschbachZhigang FanMartin E. Hoover
    • Reiner EschbachZhigang FanMartin E. Hoover
    • H04N1/40
    • G06T1/0028G06T2201/0051H04N1/32261H04N1/32309H04N1/32331H04N1/32352H04N2201/327
    • An image watermarking method includes a color transform on RGB image data to derive CMYK image data that define a constant K image. Variable infrared (IR) mark data defining an IR mark are received and a sparse two-dimensional pattern of black pixels is defined that corresponds to the variable IR data, e.g., using Gold codes or pseudorandom binary sequences. A watermarked black separation K″ is defined by embedding the sparse two-dimensional pattern into the constant K black separation K′ while maintaining local average levels. A watermarked image includes the watermarked black separation K″ in combination with the CMY separations of the constant K image. A decoding process includes using an IR microscope fitted with IR LEDs and an IR pass filter to capture an IR image, which is subjected to exposure correction, thresholding, and dilation operations to extract the two-dimensional pattern for subsequent correlation processing.
    • 图像水印方法包括对RGB图像数据进行颜色变换以导出定义常数K图像的CMYK图像数据。 接收定义IR标记的可变红外(IR)标记数据,并且例如使用Gold码或伪随机二进制序列来定义对应于可变IR数据的稀疏二维图案的黑色像素。 通过将稀疏二维图案嵌入常数K黑色分离K'同时维持局部平均水平来定义水印黑色分离K“。 水印图像包括水印黑色分离K“与常数K图像的CMY分离的组合。 解码过程包括使用装有IR LED的IR显微镜和IR通过滤光片来捕获经过曝光校正,阈值和扩张操作的IR图像,以提取二维图案用于随后的相关处理。
    • 154. 发明授权
    • Double layer UV variable data text
    • 双层UV可变数据文本
    • US08545928B2
    • 2013-10-01
    • US13539818
    • 2012-07-02
    • Reiner Eschbach
    • Reiner Eschbach
    • B41M3/14B44F1/12G03F1/00B41F17/00
    • B42D25/305B41M3/144B42D25/29B42D25/45B42D2033/20B42D2035/24B44F1/10C09D11/50Y10T428/24802Y10T428/24835
    • A method and system for including a double layer security mark in digital document data defining an image of a document to be printed and in the printed document. A fluorescence mark region including a fluorescence mark is defined using first and second metameric colorant mixtures. Variation in colorant spatial coverage between the first and second metameric colorant mixtures results in colorant-free areas that define the fluorescence mark due to substrate fluorescence under UV illumination. The fluorescence mark region is modified to define a double layer fluorescence mark region including the fluorescence mark and also including at least one visible light object defined by a third colorant mixture. The third colorant mixture is added to the fluorescence mark region by masking the colorant-free areas of the fluorescence mark region to prevent writing of the third colorant mixture data to the colorant-free areas to avoid disturbing the colorant-free areas.
    • 一种用于在定义要打印的文档的图像和打印文档中的数字文档数据中包括双层安全标记的方法和系统。 使用第一和第二同种异体着色剂混合物限定包括荧光标记的荧光标记区域。 第一和第二同色素着色剂混合物之间的着色剂空间覆盖率的变化导致无着色剂的区域,其在UV照射下由于底物荧光而限定荧光标记。 修改荧光标记区域以限定包括荧光标记的双层荧光标记区域,并且还包括由第三着色剂混合物限定的至少一个可见光物体。 通过掩蔽荧光标记区域的无着色剂区域将第三着色剂混合物加入到荧光标记区域,以防止将第三着色剂混合物数据写入无着色剂区域,以避免干扰无着色剂区域。
    • 155. 发明授权
    • Infrared encoding of security elements using standard xerographic materials with distraction patterns
    • 使用具有分心模式的标准静电复印材料对安全元件进行红外编码
    • US08455087B2
    • 2013-06-04
    • US11758359
    • 2007-06-05
    • Reiner EschbachRaja BalaMartin S Maltz
    • Reiner EschbachRaja BalaMartin S Maltz
    • G03C1/00
    • G03G21/046Y10T428/24802
    • The teachings as provided herein relate to a watermark embedded in an image that has the property of being relatively indecipherable under normal light, and yet decipherable under infrared illumination when viewed by a suitable infrared sensitive device. This infrared mark entails in combination with at least one distraction pattern, a substrate reflective to infrared radiation, and a first colorant mixture and second colorant mixture printed as an image upon the substrate. The first colorant mixture layer in connection with the substrate has a property of strongly reflecting infrared illumination, as well as a property of low contrast under normal illumination against a second colorant mixture as printed in close spatial proximity to the first colorant mixture pattern, such that the resultant image rendered substrate suitably exposed to an infrared illumination, will yield a discernable image evident as a infrared mark to a suitable infrared sensitive device.
    • 本文提供的教导涉及嵌入在图像中的水印,其具有在正常光线下相对不可解译的性质,并且在由合适的红外敏感装置观看时在红外照明下可解码。 该红外标记需要与至少一个分散图案,反射红外辐射的基底以及作为图像印刷在基底上的第一着色剂混合物和第二着色剂混合物组合。 与基底相关的第一着色剂混合物层具有强烈反射红外照明的性质,以及在正常照射下对第二着色剂混合物的低对比度的性质,其与第一着色剂混合物图案紧密相邻地印刷,使得 适当地暴露于红外照明的所得到的图像渲染基板将产生作为适合的红外敏感装置的红外标记显而易见的可识别图像。
    • 157. 发明授权
    • Method and apparatus for using pattern color space in print job processing
    • 在打印作业处理中使用图案颜色空间的方法和装置
    • US08355167B2
    • 2013-01-15
    • US12392582
    • 2009-02-25
    • Edward ChapmanReiner Eschbach
    • Edward ChapmanReiner Eschbach
    • H04N1/60
    • H04N1/00867H04N1/0087H04N1/32128H04N2201/326
    • A method for creating a pattern color space for use during print job processing may include: a) defining a variable portion of the pattern color space, b) defining a fixed portion of the pattern color space, c) defining a bounding shape for the pattern color space, d) defining a procedure for painting the variable and fixed portions within the bounding shape, and e) at least temporarily, saving the pattern color space to a storage device. The variable portion of the pattern color space may be based on variable data associated with the print job and an object within the print job may identify the pattern color space for a color parameter. A system using this method may include a storage device, a digital front end, a print controller, and a print engine. Various methods for using the pattern color space during print job processing are also provided.
    • 用于创建在打印作业处理期间使用的图案颜色空间的方法可以包括:a)定义图案颜色空间的可变部分,b)限定图案颜色空间的固定部分,c)为图案定义边界形状 颜色空间,d)定义用于在边界形状内绘制变量和固定部分的过程,以及e)至少暂时将图案颜色空间保存到存储设备。 图案颜色空间的可变部分可以基于与打印作业相关联的可变数据,并且打印作业内的对象可以识别颜色参数的图案颜色空间。 使用该方法的系统可以包括存储设备,数字前端,打印控制器和打印引擎。 还提供了用于在打印作业处理期间使用图案颜色空间的各种方法。
    • 158. 发明申请
    • DOUBLE LAYER UV VARIABLE DATA TEXT
    • 双层UV可变数据文本
    • US20130004743A1
    • 2013-01-03
    • US13539818
    • 2012-07-02
    • Reiner Eschbach
    • Reiner Eschbach
    • B32B33/00G06K15/02
    • B42D25/305B41M3/144B42D25/29B42D25/45B42D2033/20B42D2035/24B44F1/10C09D11/50Y10T428/24802Y10T428/24835
    • A method and system for including a double layer security mark in digital document data defining an image of a document to be printed and in the printed document. A fluorescence mark region including a fluorescence mark is defined using first and second metameric colorant mixtures. Variation in colorant spatial coverage between the first and second metameric colorant mixtures results in colorant-free areas that define the fluorescence mark due to substrate fluorescence under UV illumination. The fluorescence mark region is modified to define a double layer fluorescence mark region including the fluorescence mark and also including at least one visible light object defined by a third colorant mixture. The third colorant mixture is added to the fluorescence mark region by masking the colorant-free areas of the fluorescence mark region to prevent writing of the third colorant mixture data to the colorant-free areas to avoid disturbing the colorant-free areas.
    • 一种用于在定义要打印的文档的图像和打印文档中的数字文档数据中包括双层安全标记的方法和系统。 使用第一和第二同种异体着色剂混合物限定包括荧光标记的荧光标记区域。 第一和第二同色素着色剂混合物之间的着色剂空间覆盖率的变化导致无着色剂的区域,其在UV照射下由于底物荧光而限定荧光标记。 修改荧光标记区域以限定包括荧光标记的双层荧光标记区域,并且还包括由第三着色剂混合物限定的至少一个可见光物体。 通过掩蔽荧光标记区域的无着色剂区域将第三着色剂混合物加入到荧光标记区域,以防止将第三着色剂混合物数据写入无着色剂区域,以避免干扰无着色剂区域。
    • 159. 发明申请
    • RELEVANCE BASED PRINT INTEGRITY VERIFICATION
    • 相关打印完整性验证
    • US20120320388A1
    • 2012-12-20
    • US13160725
    • 2011-06-15
    • Reiner EschbachMichael C. LacagninaScott MayneDennis L. Venable
    • Reiner EschbachMichael C. LacagninaScott MayneDennis L. Venable
    • H04N1/60G06K15/00
    • H04N1/6027
    • A relevance based print integrity method includes comparing current raster image data that define a document to be printed with golden raster image data that define a previous version of said document with a known (perfect) quality. A plurality of differences between said current raster image data and said golden raster image data are calculated, and each of the differences is processed to determine a relevance value of the difference and to assign the relevance value to the difference. The method includes generating and storing a list of the differences, wherein the list is ordered in terms of the relevance value assigned to each difference. The difference list is presented to a user textually or graphically and/or is used to control or interrupt printing operations.
    • 基于相关性的打印完整性方法包括将定义要打印的文档的当前光栅图像数据与已知(完美)质量定义所述文档的先前版本的黄金光栅图像数据进行比较。 计算所述当前光栅图像数据和所述黄金光栅图像数据之间的多个差异,并且处理每个差异以确定所述差异的相关性值,并将所述相关性值分配给所述差异。 该方法包括生成和存储差异列表,其中列表根据分配给每个差异的相关性值进行排序。 区别列表以文字或图形方式呈现给用户,和/或用于控制或中断打印操作。