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    • 11. 发明申请
    • Color space correction circuit in display device
    • 显示设备中的色彩空间校正电路
    • US20060139368A1
    • 2006-06-29
    • US10544685
    • 2004-02-06
    • Shigeo KinoshitaYukio MoriAtsuhiro YamashitaSusumu TanaseMasutaka Inoue
    • Shigeo KinoshitaYukio MoriAtsuhiro YamashitaSusumu TanaseMasutaka Inoue
    • G09G5/02
    • G09G5/02G09G3/3208G09G2360/16H04N9/64H04N9/67
    • A color space correction circuit in a display apparatus comprises: means for holding optimal R, G and B correction values at chromaticity coordinate points corresponding to a white, primary colors and complementary colors, respectively, in a color reproduction region of a display on a chromaticity diagram; means for connecting the respective chromaticity coordinate points corresponding to the primary colors and the complementary colors to the chromaticity coordinate point corresponding to the white in the color reproduction region of the display on the chromaticity diagram, thereby dividing the color reproduction region of the display into a plurality of areas and judging to which area the chromaticity coordinate points corresponding to input signals belong; and means for correcting R, G and B values for the input signals based on optimal R, G and B correction values corresponding to the chromaticity coordinate points that correspond to three vertexes of the area to which the chromaticity coordinate points corresponding to the input signals are judged to belong, and based on the R, G and B values for the input signals.
    • 显示装置中的色彩空间校正电路包括:用于在色度显示的色彩再现区域中分别保持与白色,原色和互补色对应的色度坐标点处的最佳R,G和B校正值的装置 图表 用于将对应于原色和互补色的各个色度坐标点连接到色度图上显示器的色彩再现区域中对应于白色的色度坐标点的装置,从而将显示器的色彩再现区域划分为 判断与输入信号对应的色度坐标点属于哪个区域; 以及用于基于与对应于与输入信号对应的色度坐标点的区域的三个顶点对应的色度坐标点的最佳R,G和B校正值来校正输入信号的R,G和B值的装置 判断为属于,并且基于输入信号的R,G和B值。
    • 12. 发明授权
    • Image signal converting apparatus and image display apparatus
    • 图像信号转换装置和图像显示装置
    • US08487953B2
    • 2013-07-16
    • US12243372
    • 2008-10-01
    • Masutaka InoueSusumu TanaseTakaaki Abe
    • Masutaka InoueSusumu TanaseTakaaki Abe
    • G09G5/02
    • H04N9/3182H04N9/3158
    • The image signal converting apparatus is used in a lighting unit. The lighting unit includes a liquid crystal panel modulating a red component light according to a red image signal, a liquid crystal panel modulating a green component light according to a green image signal, and a liquid crystal panel modulating a blue component light according to a blue image signal. Yellow component light is superimposed on any of the red component light, the green component light and the blue component light. The image signal converting apparatus includes a controlling unit which controls a superimposition amount of yellow component light based on a specific image signal among a red image signal, a green image signal, and a blue image signal. A color corresponding to the specific image signal has a hue adjacent to a hue corresponding to the yellow component light. The controlling unit controls a reduction amount of the specific image signal based on the superimposition amount.
    • 图像信号转换装置用于照明单元。 照明单元包括根据红色图像信号调制红色分量光的液晶面板,根据绿色图像信号调制绿色分量光的液晶面板和根据蓝色调制蓝色分量光的液晶面板 图像信号。 黄色分量光叠加在任何红色分量光,绿色分量光和蓝色分量光。 图像信号转换装置包括控制单元,其控制基于红色图像信号,绿色图像信号和蓝色图像信号中的特定图像信号的黄色分量光的叠加量。 对应于特定图像信号的颜色具有与对应于黄色分量光的色调相邻的色调。 控制单元基于叠加量来控制特定图像信号的减少量。
    • 18. 发明申请
    • IMAGE DATA CONVERSION DEVICE AND IMAGE DISPLAY DEVICE
    • 图像数据转换装置和图像显示装置
    • US20080101692A1
    • 2008-05-01
    • US11923744
    • 2007-10-25
    • Susumu TanaseTakaaki AbeMasutaka Inoue
    • Susumu TanaseTakaaki AbeMasutaka Inoue
    • G06K9/00
    • H04N1/6022H04N9/3179H04N9/67H04N9/77
    • An image data conversion device includes an image data input unit to which image data formed of a plurality of first pixel data, each including values of three basic colors of red, green and blue, is inputted; and a color converter configured to convert first pixel data into second pixel data including at least the values of the three basic colors and a value of a fourth color, by processing each of the plurality of first pixel data forming the image data. The color converter includes a controller configured to control changes in the value of the fourth color included in the second pixel data corresponding to the first pixel data, on the basis of the values of the three basic colors included in the first pixel data.
    • 图像数据转换装置包括:图像数据输入单元,输入由多个第一像素数据形成的图像数据,每个第一像素数据包括红色,绿色和蓝色三种基本颜色的值; 以及颜色转换器,被配置为通过处理形成图像数据的多个第一像素数据中的每一个,将第一像素数据转换成包括至少三个基本颜色的值和第四颜色的值的第二像素数据。 颜色转换器包括:控制器,被配置为基于包括在第一像素数据中的三种基本颜色的值来控制包括在与第一像素数据相对应的第二像素数据中的第四颜色的值的变化。
    • 20. 发明授权
    • Image interpolating method
    • 图像内插方法
    • US07039254B1
    • 2006-05-02
    • US09821452
    • 2000-07-28
    • Akihiro MaenakaMasahiko YoshiyamaSusumu TanaseHaruhiko Murata
    • Akihiro MaenakaMasahiko YoshiyamaSusumu TanaseHaruhiko Murata
    • G06K9/32G06K9/40G09G5/00
    • H04N7/01G06T3/4007G06T3/403H04N5/14H04N7/012H04N7/0135
    • An image interpolating method for interpolating a pixel at an intermediate position between a first original pixel and a second original pixel adjacent to the first original pixel, comprising a first step of calculating an edge component for judging whether or not an interpolated pixel is positioned in the vicinity of an edge position of original image data, a second step of determining a range where pixel data on the interpolated pixel is settable on the basis of the calculated edge component and pixel data on the first and second original pixels, and a third step of selecting a plurality of sets of opposed pixels between which the interpolated pixel is sandwiched diagonally, and determining, for each of the sets, the pixel data on the interpolated pixel in a case where a correlation value represented by the sum of the absolute values of the differences between the pixel data on the interpolated pixel and pixel data on the opposed pixels is the minimum in the range where the pixel data on the interpolated pixel is settable and the minimum correlation value.
    • 一种用于内插第一原始像素和与第一原始像素相邻的第二原始像素之间的中间位置处的像素的图像内插方法,包括:计算用于判断内插像素是否位于第一原始像素的边缘分量的第一步骤 基于所计算的第一和第二原始像素上的边缘分量和像素数据,确定内插像素上的像素数据可设置的范围的第二步骤;以及第三步骤, 选择多个相对像素组,对准像素之间插入对角像素,并且对于每个集合,在由内插像素的绝对值之和表示的相关值的情况下,确定内插像素上的像素数据 内插像素上的像素数据和相对像素上的像素数据之间的差异在像素数据的范围内是最小的 内插像素上的a可以设定为最小相关值。