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    • 1. 发明授权
    • Neutral pixel correction for proper marked color printing
    • 中性像素校正,用于正确标记彩色打印
    • US08117134B2
    • 2012-02-14
    • US12252391
    • 2008-10-16
    • James B. CampbellFrancis Kapo TseXing LiDavid J. Metcalfe
    • James B. CampbellFrancis Kapo TseXing LiDavid J. Metcalfe
    • G06F17/00G06F3/12
    • H04N1/403G06Q30/0283H04N1/56
    • A system calculates appropriate billing within an imaging pipeline. An input component receives an image that is described as a plurality of pixels. A PDL component receives the image and determines a location, a color and a designation for each of the one or more pixels. A marking engine modifies the one or more pixels based at least in part on the location and the color provided by the PDL component and places each of the one or more pixels as a monochrome or a composite pixel on a substrate. An analysis component counts the number of monochrome and composite pixels placed on the substrate by the marking engine, the number of composite pixels that include a designation are counted as monochrome. A billing component calculates the cost for placing each of the monochrome and the composite pixels counted by the analysis component.
    • 系统在成像流水线内计算适当的计费。 输入部件接收被描述为多个像素的图像。 PDL组件接收图像并且确定一个或多个像素中的每一个的位置,颜色和指定。 标记引擎至少部分地基于由PDL组件提供的位置和颜色来修改一个或多个像素,并且将一个或多个像素中的每一个作为单色或复合像素放置在衬底上。 分析组件通过标记引擎计算放置在衬底上的单色和复合像素的数量,包括指定的复合像素的数量被计为单色。 计费组件计算放置由分析组件计数的单色和复合像素中的每一个的成本。
    • 2. 发明申请
    • NEUTRAL PIXEL CORRECTION FOR PROPER MARKED COLOR PRINTING
    • 用于正确标记颜色打印的中性像素校正
    • US20100100505A1
    • 2010-04-22
    • US12252391
    • 2008-10-16
    • James B. CampbellFrancis Kapo TseXing LiDavid J. Metcalfe
    • James B. CampbellFrancis Kapo TseXing LiDavid J. Metcalfe
    • H04N1/60G06F17/00
    • H04N1/403G06Q30/0283H04N1/56
    • A system calculates appropriate billing within an imaging pipeline. An input component receives an image that is described as a plurality of pixels. A PDL component receives the image and determines a location, a color and a designation for each of the one or more pixels. A marking engine modifies the one or more pixels based at least in part on the location and the color provided by the PDL component and places each of the one or more pixels as a monochrome or a composite pixel on a substrate. An analysis component counts the number of monochrome and composite pixels placed on the substrate by the marking engine, the number of composite pixels that include a designation are counted as monochrome. A billing component calculates the cost for placing each of the monochrome and the composite pixels counted by the analysis component.
    • 系统在成像流水线内计算适当的计费。 输入部件接收被描述为多个像素的图像。 PDL组件接收图像并且确定一个或多个像素中的每一个的位置,颜色和指定。 标记引擎至少部分地基于由PDL组件提供的位置和颜色来修改一个或多个像素,并且将一个或多个像素中的每一个作为单色或复合像素放置在衬底上。 分析组件通过标记引擎计算放置在衬底上的单色和复合像素的数量,包括指定的复合像素的数量被计为单色。 计费组件计算放置由分析组件计数的单色和复合像素中的每一个的成本。
    • 6. 发明授权
    • Binary resolution conversion aparatus and method
    • 二进制分辨率转换装置及方法
    • US07760390B2
    • 2010-07-20
    • US11300835
    • 2005-12-15
    • Zhenhuan WenFrancis Kapo TseXing Li
    • Zhenhuan WenFrancis Kapo TseXing Li
    • G06K15/02G06K9/32
    • G06K15/02G06T3/403H04N1/40068
    • A binary resolution conversion apparatus and method is provided. According to one exemplary embodiment, a binary resolution conversion method includes an image processing method comprising a data processing process comprising a first video data input process receiving a first video data group associated with one or more horizontal and vertical edges of an image, and one or more horizontal and vertical thin lines of the image; a second video data input process receiving a second video data group associated with one or more slanted edges and one or more slanted lines of the image, and one or more objects of the image; a tag data input process receiving tag data associated with image edge and image thin line detection data; and a first video data input providing the video data output to a first video data output if the tag data input indicates an image edge or image thin line, otherwise a second video data input providing the video data output.
    • 提供二进制分辨率转换装置和方法。 根据一个示例性实施例,二进制分辨率转换方法包括图像处理方法,该方法包括数据处理过程,该数据处理过程包括接收与图像的一个或多个水平和垂直边缘相关联的第一视频数据组的第一视频数据输入过程,以及一个或 更多的水平和垂直细线的图像; 第二视频数据输入处理,其接收与图像的一个或多个倾斜边缘和一条或多条倾斜线相关联的第二视频数据组,以及图像的一个或多个对象; 标签数据输入处理接收与图像边缘相关联的标签数据和图像细线检测数据; 以及第一视频数据输入,如果标签数据输入指示图像边缘或图像细线,则将视频数据输出提供给第一视频数据输出,否则提供提供视频数据输出的第二视频数据输入。
    • 8. 发明授权
    • Between-segment discontinuity reduction for text vectorization using dominant point classification
    • 使用优点分类的文本向量化的段间不连续性减少
    • US08441684B2
    • 2013-05-14
    • US12498387
    • 2009-07-07
    • Zhigang FanFrancis Kapo TseBingfeng ZhouYadong MuHe Tao
    • Zhigang FanFrancis Kapo TseBingfeng ZhouYadong MuHe Tao
    • H04N1/387G06K15/00G06K9/34
    • G06K9/4671G06K9/44G06K2209/01
    • What is disclosed is a novel system and method for text vectorization for bitmap images with reduced artificial discontinuities. Dominant points are identified in a bitmap character image. An initial curve is fitted to edge points of the character image in a vicinity of a selected dominant point. A set of boundary parameters in a vicinity of the selected dominant point are estimated based upon the initial curve. The selected dominant point is then classified as one of a sharp dominant point and a smooth dominant point based upon the boundary parameters or alternatively upon predefined classifications produced by an optical character recognition process. Curves are fitted between the selected dominant point and adjacent dominant points. The fitted curves maintain the estimated boundary parameters in the vicinity of smooth dominant points. A vectorized representation of the text character image based upon the fitted curves is produced as output.
    • 公开的是用于具有减少的人造不连续性的位图图像的文本向量化的新颖系统和方法。 主要点在位图字符图像中被识别。 初始曲线拟合到所选择的优势点附近的字符图像的边缘点。 基于初始曲线估计所选优势点附近的一组边界参数。 然后,基于边界参数或者通过光学字符识别处理产生的预定义分类,选择的主点被分类为锐利主要点和平滑主要点之一。 曲线拟合在选定的优势点和相邻优势点之间。 拟合曲线保持平滑优势点附近的估计边界参数。 作为输出,产生基于拟合曲线的文本字符图像的向量化表示。