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    • 33. 发明申请
    • System and method for embedding miniature security marks
    • 用于嵌入微型安全标记的系统和方法
    • US20080037822A1
    • 2008-02-14
    • US11502987
    • 2006-08-11
    • Zhigang FanWilliam A. Fuss
    • Zhigang FanWilliam A. Fuss
    • G06K9/00
    • H04N1/32309H04N1/32229
    • A method is provided for embedding miniature security marks within documents and images, utilizing a mark parameters database, graphical user interface, and detection simulator. The method includes predicting detection error rates for each pixel location of a host image, defined as a digital representation of at least one recipient of the miniature security marks. The detection error rates for each pixel are displayed with the host image on a graphical user interface and the desired miniature security mark locations are selected. At least one set of miniature security mark parameters is identified, with the parameters being mark parameters that enable determination of an optimized balance between detectability and visibility of the miniature security marks. The host image with the miniature security mark is displayed on the graphical user interface for review and adjustment by an operator.
    • 提供了一种利用标记参数数据库,图形用户界面和检测模拟器在文档和图像内嵌入微型安全标记的方法。 该方法包括预测主机图像的每个像素位置的检测错误率,被定义为微型安全标记的至少一个接收者的数字表示。 每个像素的检测错误率与图像用户界面上的主机图像一起显示,并选择所需的微型安全标记位置。 识别至少一组微型安全标记参数,其中参数是可以确定微型安全标记的可检测性和可见性之间的优化平衡的标记参数。 具有微型安全标记的主机图像显示在图形用户界面上,供操作员查看和调整。
    • 34. 发明授权
    • Image processing code generation based on structured image (SI)
techniques
    • 基于结构化图像(SI)技术的图像处理代码生成
    • US6141012A
    • 2000-10-31
    • US829385
    • 1997-03-31
    • James E. BollmanDennis L. VenableMichael R. CampanelliWilliam A. Fuss
    • James E. BollmanDennis L. VenableMichael R. CampanelliWilliam A. Fuss
    • G06T1/00G06T11/60G06T9/00
    • G06T11/60
    • A scheme that generates image processing source code for custom applications automatically by using structured image (SI) technology in a way that takes advantage of the unbound and incomplete features of SI. Resulting custom applications developed by this method can be defined and converted to running source code in minutes, or shipped to a co-user of the system in a compact portable form for remote code generation.Nested sub-component references and associated image processing operations necessary to generate an output raster image are obtained from a structured image template. Image processing operations and the order of said operations within an image processing definition are stored within the structured image definition. Unbound structured image references to undefined component objects and incomplete structured image references to image processing operations and parameters not explicitly defined within said structured image are input options. Source code is generated from structured image definition language automatically utilizing a modified structured image render program which analyzes said structured image definition language. The code can be used for further rendering or code modification activities.
    • 通过使用结构化图像(SI)技术自动生成用于自定义应用程序的图像处理源代码的方案,可以利用SI的未绑定和不完整的功能。 通过此方法开发的结果定制应用程序可以在几分钟内定义并转换为运行的源代码,或者以紧凑的便携式形式发送给系统的共同用户,用于远程代码生成。 从结构化图像模板中获取嵌套子分量参考和生成输出光栅图像所需的相关图像处理操作。 图像处理操作和图像处理定义内的所述操作的顺序被存储在结构化图像定义内。 对未定义的组件对象的未绑定结构化图像引用和未在所述结构化图像中明确定义的图像处理操作和参数的不完整结构化图像引用是输入选项。 源代码从结构化图像定义语言生成,自动利用分析所述结构化图像定义语言的修改的结构化图像渲染程序。 该代码可用于进一步渲染或代码修改活动。
    • 38. 发明授权
    • System and method for embedding dispersed miniature security marks
    • 嵌入分散小型安全标记的系统和方法
    • US07864979B2
    • 2011-01-04
    • US11656663
    • 2007-01-23
    • Zhigang FanWilliam A. Fuss
    • Zhigang FanWilliam A. Fuss
    • G06K9/00
    • H04N1/32144G06T1/0028G06T2201/0051G06T2201/0202H04N1/32229
    • A method is provided for embedding dispersed miniature security marks within documents and images, utilizing a mark parameters database, graphical user interface, and detection simulator. The method includes predicting detection error rates for each pixel location of a host image, defined as a digital representation of at least one recipient of the dispersed miniature security marks, with each dispersed miniature security mark including a plurality of scattered dots. The detection error rates for each pixel are displayed with the host image on a graphical user interface and the desired dispersed miniature security mark locations are selected. At least one set of dispersed miniature security mark parameters is identified, with the parameters being mark parameters that enable determination of an optimized balance between detectability and visibility of the dispersed miniature security marks. The host image with the dispersed miniature security mark is displayed for review and adjustment by an operator.
    • 提供了一种利用标记参数数据库,图形用户界面和检测模拟器在文档和图像中嵌入分散的微型安全标记的方法。 该方法包括预测主体图像的每个像素位置的检测错误率,被定义为分散的微型安全标记的至少一个接收者的数字表示,每个分散的微型安全标记包括多个散射点。 每个像素的检测错误率与图像用户界面上的主机图像一起显示,并选择所需的分散微型安全标记位置。 识别至少一组分散的微型安全标记参数,其中参数是可以确定分散的微型安全标记的可检测性和可见性之间的优化平衡的标记参数。 具有分散的小型安全标记的主机图像被显示以供操作员查看和调整。