会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 1. 发明申请
    • GAMUT MAPPING BETWEEN MULTIPLE BOUNDARY REGIONS
    • 多边界区域之间的GAMUT映射
    • WO2005022328A3
    • 2006-12-07
    • PCT/US2004027804
    • 2004-08-27
    • CANON KKNEWMAN TODD DHAIKIN JOHN SHENLEY SHARON A
    • NEWMAN TODD DHAIKIN JOHN SHENLEY SHARON A
    • G06K9/00G06F20060101H04N1/60
    • H04N1/6058
    • Mapping color image data from a source color gamut to a destination color gamut, wherein the mapping includes identifying source color boundary regions in the source color gamut based on descriptor data provided in a source color descriptor data structure, and determining a position of each identified source color boundary region, identifying destination color boundary regions in the destination color gamut based on descriptor data provided in a destination color descriptor data structure, and determining a position of each identified destination color boundary region, and mapping the color image data from the identified source color boundary regions of the identified destination color boundary regions based on a correspondence between the determined positions of the identified source color boundary regions and the determined positions of the identified destination color boundary regions.
    • 将颜色图像数据从源色域映射到目标色域,其中所述映射包括基于源颜色描述符数据结构中提供的描述符数据来识别源色域中的源颜色边界区域,以及确定每个识别源的位置 颜色边界区域,基于目的色彩描述符数据结构中提供的描述符数据识别目的色域中的目的色边界区域,以及确定每个识别的目标色边界区域的位置,以及从所识别的源颜色映射彩色图像数据 基于所确定的源色彩边界区域的确定位置与所确定的目标色彩边界区域的确定位置之间的对应关系,识别的目标色彩边界区域的边界区域。
    • 2. 发明申请
    • COLOR DESCRIPTOR DATA STRUCTURE
    • 颜色描述符数据结构
    • WO2005022442A2
    • 2005-03-10
    • PCT/US2004/027803
    • 2004-08-27
    • CANON KABUSHIKI KAISHANEWMAN, Todd, D.HENLEY, Sharon, A.HAIKIN, John, S.
    • NEWMAN, Todd, D.HENLEY, Sharon, A.HAIKIN, John, S.
    • G06K
    • H04N1/4078H04N1/6033
    • A color descriptor data structure corresponding to a color device, the color descriptor data structure including a reference color data set corresponding to a reference boundary descriptor representing reference colors of the color device based on measured colors from a reference color target, a plausible color data set corresponding to a plausible boundary descriptor representing plausible colors of the color device which are observable, which encompass at least the reference colors of the reference boundary descriptor, and which include a whitest-white color and a blackest-black color, and a neutral color data set corresponding to neutral colors of the color device, the neutral colors extending in range from the whitest-white color to the blackest-black color.
    • 对应于彩色设备的颜色描述符数据结构,所述颜色描述符数据结构包括对应于基于来自参考颜色目标的测量颜色的表示所述颜色设备的参考颜色的参考边界描述符的参考颜色数据集合,合理的颜色数据集 对应于表示可观察到的颜色设备的合理颜色的合理边界描述符,其至少包含参考边界描述符的参考颜色,并且包括最白白色和最黑黑色,以及中性色数据 对应于彩色设备的中性色,中性色从范围从最白白色到最黑黑色。
    • 3. 发明申请
    • GAMUT MAPPING WITH PRIMARY COLOR ROTATION
    • GAMUT映射与主要颜色旋转
    • WO2005109856A2
    • 2005-11-17
    • PCT/US2005015674
    • 2005-05-06
    • CANON KKHENLEY SHARON ASLOAN ROCKLIN J
    • HENLEY SHARON ASLOAN ROCKLIN J
    • G09G5/02H04N1/60
    • H04N1/60H04N1/6058
    • Gamut-mapping from a source device to a destination device is performed in a perceptually linear color space such as CIECAM02 by separating a source image into primary color components and processing each primary component separately by mapping a source primary hue leaf with a destination primary hue leaf. The mapped primary components are then summed and a resultant destination image is obtained. Alternatively, hue rotation is performed by determining a relative position of an input color between the nearest primary and the nearest secondary color in a source hue wheel. The determined relative position in the source hue wheel is used to find a corresponding location in a destination hue wheel so that the hue angle for obtaining the destination hue leaf can be determined. In both processes, the source and destination hue leafs are mapped using a cusp-to cusp mapping with a shear mapping process being used to pull in the remaining colors. Finally, results of the mapping process are converted from device-independent color appearance space values to tristimulus values, and from tristimulus values to a color space of the destination device.
    • 通过将源图像分离成原色分量并通过将源主色调叶与目的主色调叶片相映射来分别处理每个主要成分,在诸如CIECAM02的感知线性颜色空间中执行从源设备到目的地设备的色域映射 。 然后将映射的主要分量相加,并获得合成的目标图像。 或者,通过确定源色调轮中最近的主要和最近的次要颜色之间的输入颜色的相对位置来执行色调旋转。 源色调轮中确定的相对位置用于在目的色调轮中找到对应的位置,从而可以确定用于获得目的色调叶的色调角。 在这两个过程中,使用尖角到尖点映射来映射源和目标色调叶,剪切映射过程用于拉入剩余颜色。 最后,将映射过程的结果从设备无关的颜色外观空间值转换为三刺激值,并从三色值转换为目标设备的颜色空间。
    • 4. 发明申请
    • GAMUT MAPPING BETWEEN MULTIPLE BOUNDARY REGIONS
    • 多边界区域之间的GAMUT映射
    • WO2005022328A2
    • 2005-03-10
    • PCT/US2004/027804
    • 2004-08-27
    • CANON KABUSHIKI KAISHANEWMAN, Todd, D.HAIKIN, John, S.HENLEY, Sharon, A.
    • NEWMAN, Todd, D.HAIKIN, John, S.HENLEY, Sharon, A.
    • G06F
    • H04N1/6058
    • Mapping color image data from a source color gamut to a destination color gamut, wherein the mapping includes identifying source color boundary regions in the source color gamut based on descriptor data provided in a source color descriptor data structure, and determining a position of each identified source color boundary region, identifying destination color boundary regions in the destination color gamut based on descriptor data provided in a destination color descriptor data structure, and determining a position of each identified destination color boundary region, and mapping the color image data from the identified source color boundary regions of the identified destination color boundary regions based on a correspondence between the determined positions of the identified source color boundary regions and the determined positions of the identified destination color boundary regions.
    • 将颜色图像数据从源色域映射到目标色域,其中所述映射包括基于源颜色描述符数据结构中提供的描述符数据来识别源色域中的源颜色边界区域,以及确定每个识别源的位置 颜色边界区域,基于目的色彩描述符数据结构中提供的描述符数据识别目的色域中的目的色边界区域,以及确定每个识别的目标色边界区域的位置,以及从所识别的源颜色映射彩色图像数据 基于所确定的源色彩边界区域的确定位置与所确定的目标色彩边界区域的确定位置之间的对应关系,识别的目标色彩边界区域的边界区域。
    • 5. 发明申请
    • COLOR APPEARANCE SPACE TO CMYK MAPPING USING RELATIVE PURITY
    • 使用相对纯度的彩色外观空间到CMYK映射
    • WO2006036424A3
    • 2009-02-26
    • PCT/US2005030611
    • 2005-08-26
    • CANON KKHAIKIN JOHN SNEWMAN TODD DHENLEY SHARON A
    • HAIKIN JOHN SNEWMAN TODD DHENLEY SHARON A
    • G06K9/00
    • H04N1/6025
    • The present invention relates to a color management method for the conversion of internal color appearance space color values to CMYK device values, by interpolating CMY values from a plurality of CMY to color appearance space lookup tables, wherein each CMY table is associated with a specific value of K. A target internal color value is received and the relative purity of that color is calculated in the CMY space. Next, a black generation value is calculated using the relative purity of the target color. Finally, one of the plurality of CMY lookup tables is selected based on the black generation value, and a CMYK value is provided based on an interpolation from the selected lookup table. In this way, the present invention is able to control the output K value in a color appearance space to CMYK conversion. Accordingly, colors across a wide relative purity range, including natural images, can be reproduced with better accuracy and higher quality.
    • 本发明涉及一种通过将CMY值从多个CMY内插到颜色外观空间查找表来将内部颜色外观空间颜色值转换为CMYK设备值的颜色管理方法,其中每个CMY表与特定值相关联 的K.接收目标内部颜色值,并且在CMY空间中计算该颜色的相对纯度。 接下来,使用目标颜色的相对纯度计算黑色代数值。 最后,基于黑色生成值选择多个CMY查找表中的一个,并且基于来自所选择的查找表的插值提供CMYK值。 以这种方式,本发明能够将颜色外观空间中的输出K值控制为CMYK转换。 因此,可以以更高的精度和更高的质量再现包括自然图像的宽相对纯度范围内的颜色。
    • 7. 发明申请
    • COLOR DESCRIPTOR DATA STRUCTURE
    • 颜色描述符数据结构
    • WO2005022442A3
    • 2007-01-11
    • PCT/US2004027803
    • 2004-08-27
    • CANON KKNEWMAN TODD DHENLEY SHARON AHAIKIN JOHN S
    • NEWMAN TODD DHENLEY SHARON AHAIKIN JOHN S
    • G06K9/00G06K20060101H04N1/407H04N1/60
    • H04N1/4078H04N1/6033
    • A color descriptor data structure corresponding to a color device, the color descriptor data structure including a reference color data set corresponding to a reference boundary descriptor representing reference colors of the color device based on measured colors from a reference color target, a plausible color data set corresponding to a plausible boundary descriptor representing plausible colors of the color device which are observable, which encompass at least the reference colors of the reference boundary descriptor, and which include a whitest-white color and a blackest-black color, and a neutral color data set corresponding to neutral colors of the color device, the neutral colors extending in range from the whitest-white color to the blackest-black color.
    • 对应于彩色设备的颜色描述符数据结构,所述颜色描述符数据结构包括对应于基于来自参考颜色目标的测量颜色的表示所述颜色设备的参考颜色的参考边界描述符的参考颜色数据集合,合理的颜色数据集 对应于表示可观察到的颜色设备的合理颜色的似乎合理的边界描述符,其至少包含参考边界描述符的参考颜色,并且包括最白白色和最黑黑色,以及中性色数据 对应于彩色设备的中性色,中性色从范围从最白白色到最黑黑色。
    • 8. 发明申请
    • COLOR APPEARANCE SPACE TO CMYK MAPPING USING RELATIVE PURITY
    • 使用相对纯度的彩色外观空间到CMYK映射
    • WO2006036424A2
    • 2006-04-06
    • PCT/US2005/030611
    • 2005-08-26
    • CANON KABUSHIKI KAISHAHAIKIN, John, S.NEWMAN, Todd, D.HENLEY, Sharon, A.
    • HAIKIN, John, S.NEWMAN, Todd, D.HENLEY, Sharon, A.
    • H04N1/60
    • H04N1/6025
    • The present invention relates to a color management method for the conversion of internal color appearance space color values to CMYK device values, by interpolating CMY values from a plurality of CMY to color appearance space lookup tables, wherein each CMY table is associated with a specific value of K. A target internal color value is received and the relative purity of that color is calculated in the CMY space. Next, a black generation value is calculated using the relative purity of the target color. Finally, one of the plurality of CMY lookup tables is selected based on the black generation value, and a CMYK value is provided based on an interpolation from the selected lookup table. In this way, the present invention is able to control the output K value in a color appearance space to CMYK conversion. Accordingly, colors across a wide relative purity range, including natural images, can be reproduced with better accuracy and higher quality.
    • 本发明涉及一种通过将CMY值从多个CMY内插到颜色外观空间查找表来将内部颜色外观空间颜色值转换为CMYK设备值的颜色管理方法,其中每个CMY表与特定值相关联 的K.接收目标内部颜色值,并且在CMY空间中计算该颜色的相对纯度。 接下来,使用目标颜色的相对纯度计算黑色代数值。 最后,基于黑色生成值选择多个CMY查找表中的一个,并且基于来自所选择的查找表的插值提供CMYK值。 以这种方式,本发明能够将颜色外观空间中的输出K值控制为CMYK转换。 因此,可以以更高的精度和更高的质量再现包括自然图像的宽相对纯度范围内的颜色。