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    • 141. 发明授权
    • Image display medium, method and system for preparing composite image display data
    • 图像显示介质,制作复合图像显示数据的方法和系统
    • US08045232B2
    • 2011-10-25
    • US11782946
    • 2007-07-25
    • Koji Kinoshita
    • Koji Kinoshita
    • G06K15/00H04N1/405H04N1/407H04N1/50H04N1/54B42D15/00
    • G06T11/60
    • An image display medium displays an image including a first region having a first composite image. The first composite image includes a first display image and a first latent image. The first display image includes at least one of a first halftone dot image and a first line image having a first linearity. The first halftone dot image and the first line image have such densities as are not reproduced by copying. The first latent image includes at least one of a second halftone dot image and a second line image having a second linearity. The second halftone dot image and the second line image have such densities as are not reproduced by copying. The first and second linearities produce different moiré patterns when the first display and the first latent images are enlarged by a first common optical system.
    • 图像显示介质显示包括具有第一合成图像的第一区域的图像。 第一合成图像包括第一显示图像和第一潜像。 第一显示图像包括具有第一线性的第一半色调点图像和第一行图像中的至少一个。 第一半色调点图像和第一行图像具有不被复制复制的密度。 第一潜像包括具有第二线性的第二半色调点图像和第二行图像中的至少一个。 第二半色调点图像和第二行图像具有不被复制复制的密度。 当第一显示和第一潜像被第一公共光学系统放大时,第一和第二线性产生不同的莫尔图案。
    • 142. 发明授权
    • Image-processing device, image-processing method, and recording medium
    • 图像处理装置,图像处理方法和记录介质
    • US08045221B2
    • 2011-10-25
    • US11404763
    • 2006-04-17
    • Toru Chiba
    • Toru Chiba
    • H04N1/60H04N1/62H04N1/54H04N1/56G03F3/10
    • H04N1/6022H04N1/6027
    • An image-processing device includes: a color conversion unit that converts an input image data expressed by a combination of light's primary colors into an intermediate image data in which a color of each pixel is expressed by a combination of basic printing colors; a density correction unit that corrects the intermediate image data so that density of a pixel of the intermediate image data corresponds to that of a corresponding pixel of the input image data; an identifying unit that identifies an area in which the density is close to a prescribed value by analyzing the intermediate image data; and an output unit that corrects a density distribution in a pixel of the intermediate image data contained in the area in accordance with a prescribed distribution function and outputs the result.
    • 一种图像处理装置包括:颜色转换单元,其将由原色组合表示的输入图像数据转换成其中每个像素的颜色由基本打印颜色的组合表示的中间图像数据; 密度校正单元,其校正所述中间图像数据,使得所述中间图像数据的像素的浓度对应于所述输入图像数据的相应像素的浓度; 识别单元,通过分析中间图像数据来识别密度接近规定值的区域; 以及输出单元,其根据规定的分布函数校正包含在该区域中的中间图像数据的像素中的浓度分布,并输出结果。
    • 143. 发明授权
    • Color image forming apparatus
    • 彩色图像形成装置
    • US07940421B2
    • 2011-05-10
    • US11283695
    • 2005-11-22
    • Kouichi Takaki
    • Kouichi Takaki
    • H04N1/60H04N1/54H04N1/56G03G15/01G03G15/04G03G15/23G03G15/24B41J2/47B41J2/455
    • G03G15/238G03G15/0194G03G2215/0119
    • A tandem type color image forming apparatus, which can continuously form color images each containing two or more colors, including: a signal creating section having, for each color, two or more image area setting counters for generating an image valid area signal to set a starting position and a width of an image formation area in a sub-scanning direction; and a control section for executing color image formation control on a predetermined face of paper, based on an image top signal for controlling writing of an image on an image carrier and the image valid area signal for each color, wherein the control section sets each of the outputs of the image area setting counters independently according to a preset image formation mode, and selects and controls one of the image area setting counters for each image formation of each color.
    • 一种串联型彩色图像形成装置,其可以连续地形成每个包含两种或更多种颜色的彩色图像,包括:信号产生部分,其具有用于每种颜色的两个或更多个图像区域设置计数器,用于产生图像有效区域信号以设置 起始位置和副扫描方向上的图像形成区域的宽度; 以及控制部分,用于基于用于控制对图像载体上的图像的写入的图像顶部信号和每种颜色的图像有效区域信号,在纸张的预定面上执行彩色图像形成控制,其中控制部分将每个 图像区域设置计数器的输出根据预设图像形成模式独立地选择并控制每种颜色的每个图像形成的图像区域设置计数器之一。
    • 145. 发明授权
    • Wide gamut mapping method and apparatus
    • 宽色域映射方法和装置
    • US07474438B2
    • 2009-01-06
    • US10632858
    • 2003-07-31
    • Jay S Gondek
    • Jay S Gondek
    • G06K15/02H04N1/54H04N1/56H04N1/60G09G5/02
    • H04N1/6058
    • A method and apparatus is used for gamut mapping to a printer gamut that includes receiving a narrow gamut, a wide gamut, a printer gamut for printing on a printer and a predetermined mapping between the narrow and printer gamuts, identifying overlapping areas in the wide gamut, the narrow and printer gamuts, determining when the narrow gamut overlaps areas of the wide gamut, utilizing the narrow gamut values when the determination provides overlapping areas of the narrow gamut and the wide gamuts, selecting a wide gamut interpolation point corresponding to the surface of the printer gamut when narrow gamut areas do not overlap the wide gamut according to the determination, selecting a narrow gamut interpolation point by mapping the narrow gamut to the printer gamut and interpolating the narrow gamut interpolation point and the wide gamut interpolation point expanding the narrow gamut values into the printer gamut.
    • 一种方法和装置用于对打印机色域进行色域映射,该打印机色域包括接收窄色域,宽色域,用于在打印机上打印的打印机色域以及窄范围和打印机色域之间的预定映射,以识别宽色域中的重叠区域 狭窄和打印机色域,当确定提供窄色域和宽色域的重叠区域时,利用窄色域值确定窄色域与宽色域的区域重叠的位置,选择对应于宽色域的宽色域插值点 当窄色域区域根据确定不与宽色域重叠时,打印机色域,通过将窄色域映射到打印机色域并内插窄色域插值点和扩展窄色域的宽色域插值点来选择窄色域插值点 值进入打印机色域。
    • 147. 发明授权
    • Image processing method and apparatus
    • 图像处理方法和装置
    • US07312891B2
    • 2007-12-25
    • US10115092
    • 2002-04-04
    • Okinori TsuchiyaShigeyasu Nagoshi
    • Okinori TsuchiyaShigeyasu Nagoshi
    • H04N1/60H04N1/54H04N1/56G06K9/00
    • G06K15/02G06K2215/0094H04N1/6033
    • When a color reproduction model of a device is generated, colorimetry of a 9×9×9 grid, for example, is performed utilizing equidistant signal values in the color space of the device. Generally, if the number of grid points is increased, the precision with which the color reproduction model is estimated rises but the time needed for measurement is prolonged because the number of colorimetric measurements is also increased. Accordingly, in a printer system comprising a pre-color-processing table for performing color matching and a post-color-processing table for performing color separation, color patches set non-equidistantly in RGB device color space are printed in accordance with changeover of printer CMYKcm signals in the post-color-processing table and the color reproduction model of the printer is generated using data obtained by measuring the colors of the color patches.
    • 当产生装置的色彩再现模型时,例如使用装置的色彩空间中的等距信号值来执行9×9×9格栅的比色法。 通常,如果增加网格点的数量,则颜色再现模型的估计精度会上升,但由于比色测量的数量也增加,所以测量所需的时间延长。 因此,在包括用于执行颜色匹配的预色处理表和用于执行颜色分离的后色处理表的打印机系统中,根据打印机的切换来打印在RGB设备色彩空间中不等距设置的色标 使用通过测量色标的颜色获得的数据,生成后色处理表中的CMYKcm信号和打印机的颜色再现模型。
    • 148. 发明授权
    • Methods and systems for undercolor reduction
    • 减色法的方法和系统
    • US07110140B1
    • 2006-09-19
    • US09368354
    • 1999-08-05
    • Robert R. BuckleyRandall P. Cole
    • Robert R. BuckleyRandall P. Cole
    • H04N1/54G06F15/00
    • H04N1/6022
    • Undercolor reduction is performed to a color image that is to be marked to reduce an amount of marking material used to mark underlying colors in overmarked pixels where a top color is marked over at least one underlying color. Information is generated to designate the overmarked pixels. This information may be generated as tags. A raster image is created in which both the underlying and top colors are included in the overmarked pixels. The image data of the raster image is modified such that an amount of marking material used to mark the at least one underlying color in each overmarked pixel is reduced.
    • 对要被标记的彩色图像执行底色减少,彩色图像被减少用于标记标记在标记的像素中的底色的标记材料的量,其中顶部颜色被标记在至少一个底层颜色上。 生成信息以指定过标的像素。 该信息可以作为标签生成。 创建光栅图像,其中底层和顶部颜色都包含在标记过的像素中。 修改光栅图像的图像数据,使得用于标记每个过标像素中的至少一个底层颜色的标记材料的量减少。