Abstract:
Pieces of reading frequency information representing the use frequencies of first and second reading units are acquired. Read color information of a color on a document that is read by the first or second reading unit is acquired. Based on the acquired pieces of reading frequency information and the acquired read color information, one of the first and second reading units is decided as a reference reading unit serving as a reference when performing correction to make the reading characteristics of the first and second reading units relatively coincide with each other.
Abstract:
Conventionally, it is not possible to evenly correct a color conversion table of a reading device in the entire color region even with a limited number of patches. In order to correct a color conversion table, a color conversion table from a device-independent color space into a device-independent color space is newly stored. A shift in read data between devices is reflected in a correction 3D-LUT and a color conversion table is corrected using the correction 3D-LUT. Thereby, it is possible to correct the entire color region with a smaller number of pieces of data and with less time and effort than when a color conversion table is newly recreated.
Abstract:
Conventionally, it is not possible to evenly correct a color conversion table of a reading device in the entire color region even with a limited number of patches. In order to correct a color conversion table, a color conversion table from a device-independent color space into a device-independent color space is newly stored. A shift in read data between devices is reflected in a correction 3D-LUT and a color conversion table is corrected using the correction 3D-LUT. Thereby, it is possible to correct the entire color region with a smaller number of pieces of data and with less time and effort than when a color conversion table is newly recreated.
Abstract:
There are provided a first color processing step of performing color processing on an image read from a front side of a document and a second color processing step of performing color processing on an image read from a back side of the document. A color of the image color-processed in the first color processing step is set as an initial target. A color processing parameter used in the second color processing step is adjusted such that a color of the image color-processed in the second color processing step matches the initial target. The color processing parameters used in the first and second color processing steps are adjusted in multiple steps such that both the color obtained by the parameter adjustment and the color of the image color-processed in the first color processing step become closer stepwise to the color of the image color-processed in the second color processing step.
Abstract:
For a read image having reflection of a light source, which occurs when a document is read, the reflection of the light source of the read image is corrected by the steps of: selecting an RGB color component having minimum average values of each RGB color component of a read image among RGB color components of an read image having reflection of a light source that occurs when a document is read; calculating the amount of change of luminance values of pixels of the read image derived from the reflection, from the values of pixels of the color components selected in the read image; and correcting the reflection of the light source in the read image by correcting the luminance values of pixels of the read image using the calculated amount of the change of the luminance values of the pixels.
Abstract:
There are provided a first color processing step of performing color processing on an image read from a front side of a document and a second color processing step of performing color processing on an image read from a back side of the document. A color of the image color-processed in the first color processing step is set as an initial target. A color processing parameter used in the second color processing step is adjusted such that a color of the image color-processed in the second color processing step matches the initial target. The color processing parameters used in the first and second color processing steps are adjusted in multiple steps such that both the color obtained by the parameter adjustment and the color of the image color-processed in the first color processing step become closer stepwise to the color of the image color-processed in the second color processing step.
Abstract:
Pieces of reading frequency information representing the use frequencies of first and second reading units are acquired. Read color information of a color on a document that is read by the first or second reading unit is acquired. Based on the acquired pieces of reading frequency information and the acquired read color information, one of the first and second reading units is decided as a reference reading unit serving as a reference when performing correction to make the reading characteristics of the first and second reading units relatively coincide with each other.
Abstract:
An image forming apparatus capable of outputting an image using a plurality of coloring agents includes a printing unit configured to print patch data to be used for correction of image data to be output by the image forming apparatus using the plurality of coloring agents, a selection unit configured to select a color corresponding to a coloring agent to be used in printing by the printing unit from the plurality of coloring agents, and a change unit configured to change an arrangement of a pattern of patch data which is printed using the coloring agent of the color selected by the selection unit to an arrangement different from an arrangement of a pattern of patch data to be formed using the selected coloring agent in patch data to be printed using the plurality of coloring agents when the patch data is printed by the printing unit.