INFORMATION PROCESSING APPARATUS, IMAGE FORMING APPARATUS, AND IMAGE FORMING SYSTEM
An information processing apparatus includes a processor configured to, in a case where a first color material, a second color material, a third color material, and a fourth color material in which a difference between the first color material and the fourth color material in a color space is less than a threshold value, are capable of being used, output combinations of values of color materials reproducing a first color, which is used for expanding a color gamut of a secondary color of the first color material and the second color material, and a second color, which is used for expanding a color gamut of a secondary color of the first color material and the third color material.
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This application is based on and claims priority under 35 USC 119 from Japanese Patent Application No. 2022-050682 filed Mar. 25, 2022.
BACKGROUND (i) Technical FieldThe present invention relates to an information processing apparatus, an image forming apparatus, and an image forming system.
(ii) Related ArtIn color printing, four colors of C (cyan), M (magenta), Y (yellow), and K (black) are defined as basic colors.
Today, for the purpose of expanding a color gamut, colors other than the four colors (hereinafter, also referred to as “spot colors”) may be used. The spot colors include, for example, O (orange), G (green), R (red), V (violet), and B (blue). Recently, as a spot color, P (fluorescent pink) and other fluorescent colors are also used. By mixing the fluorescent color with a color material, more vivid colors than the basic colors can be reproduced. That is, the color gamut is expanded.
SUMMARYA color space including the color gamut that can be represented by the three colors of C, M, and Y is divided into three areas corresponding to secondary colors.
The secondary colors are colors represented by a mixture of two colors of C, M, and Y. For example, an area corresponding to the secondary color of Y and M is called an O area, an area corresponding to the secondary color of C and M is called a V area, and an area corresponding to the secondary color of C and Y is called a G area.
The P described above belongs to the O area in the color space. In the case of JP2011-10083A, P is used to expand the O area.
By the way, P is a color close to M positioned at a boundary between the O area and the V area. Therefore, P can also be used to expand the V area. However, until now, P has been used only for the expansion of either the O area or the V area. In other words, the technique of simultaneously expanding both the O area and the V area by P has not been established.
Aspects of non-limiting embodiments of the present disclosure relate to an information processing apparatus, an image forming apparatus, and an image forming system that expands a color gamut reproduced by an image forming apparatus as compared with a case where only one of the secondary color areas is expanded with one color material.
Aspects of certain non-limiting embodiments of the present disclosure overcome the above disadvantages and/or other disadvantages not described above. However, aspects of the non-limiting embodiments are not required to overcome the disadvantages described above, and aspects of the non-limiting embodiments of the present disclosure may not overcome any of the disadvantages described above.
According to an aspect of the present disclosure, there is provided an information processing apparatus including a processor configured to, in a case where a first color material, a second color material, a third color material, and a fourth color material in which a difference between the first color material and the fourth color material in a color space is less than a threshold value, are capable of being used, output combinations of values of color materials reproducing a first color, which is used for expanding a color gamut of a secondary color of the first color material and the second color material, and a second color, which is used for expanding a color gamut of a secondary color of the first color material and the third color material.
Exemplary embodiment(s) of the present invention will be described in detail based on the following figures, wherein:
Hereinafter, exemplary embodiments of the present invention will be described with reference to the drawings.
Configuration of SystemThe printing system 1 shown in
Here, the printing system 1 is an example of an image forming system, the printing apparatus 20 and the control apparatus 40 are examples of an image forming apparatus, and the control apparatus 40 is an example of an information processing apparatus.
The printing system 1 shown in
In the printing system 1 shown in
The paper feeding apparatus 10 is an apparatus that supplies paper P to the printing apparatus 20. In the case of the present exemplary embodiment, the paper feeding apparatus 10 accommodates cut paper. The paper feeding apparatus 10 accommodates, for example, 7000 sheets of cut paper. Although the paper P accommodated in the paper feeding apparatus 10 is not limited to the cut paper and may be roll paper. Here, the paper P is an example of a medium.
In the printing system 1 shown in
The printing engine prints the image on the paper P through processes of charging, exposure, development, transfer, and fixing. The printing engine is an example of a formation unit that forms the image on the paper P by using a plurality of color materials.
The printing apparatus 20 uses four types of toner corresponding to basic colors and one or two types of toner corresponding to spot colors for printing. The toner is an example of the color material. The image is not limited to so-called a figure or a photograph and may also include a text.
The printing apparatus 20 in the present exemplary embodiment includes a function of printing the image on both sides of the paper P in addition to a function of printing the image on one side of the paper P. The paper P on which the image is printed is called a printed matter.
In the printing system 1 shown in
The control apparatus 40 is an apparatus that controls the movement of the printing apparatus 20 and the like. The control apparatus 40 controls, for example, the generation or printing of a color chart, generation of a profile for color conversion, management of a printing job, and raster image processer (RIP) processing.
In the case of
The control apparatus 40 shown in
The processor 41 is a device that implements various functions through the execution of a program.
The processor 41 in the present exemplary embodiment implements the various functions described above through the execution of the program. The processor 41, ROM 42, and RAM 43 function as a computer.
The auxiliary storage device 44 is, for example, a hard disk device or a semiconductor storage. Programs, printing jobs, and the like are stored in the auxiliary storage device 44. Programs are used as a general term for an operating system (OS) and an application program.
The user interface 45 is an interface that receives operations of a user who uses the printing apparatus 20. The user interface 45 includes, for example, an input unit such as a button for operation or a touch sensor for detecting an operation by a user's fingertip, and a display unit such as a liquid crystal display or an organic electro-luminescent (EL) display.
The communication interface 46 is an interface for communicating with a terminal or the like (not shown) operated by the user. Wired or wireless is used as a communication method of the communication interface 46. For example, ETHERNET (registered trademark), Wi-Fi (registered trademark), and the like are used as a communication standard of the communication interface 46.
The I/O 47 is a device used for communication among the processor 41 and the printing apparatus 20 and the like.
Processing FunctionHereinafter, a processing function implemented by the processor 41 through the execution of a program will be described. Here, the processing functions are two functions, which are a function of generating a color chart and a function of generating a profile for color conversion.
Function of Generating Color ChartThe function of generating the color chart is started through an operation of the user on the user interface 45.
An input field 452 for information that is related to toner to be used, an “OK” button 453 that is used for confirming the input, and a “Cancel” button 454 that is used for canceling the generation of the color chart are disposed on the operation screen 451.
In the present exemplary embodiment, toner is used as a color material in order to print an image by using the electrophotographic method. In a case where the image is printed by using an ink jet method, information related to ink is input. The ink is also an example of a color material.
Two options are displayed in the input field 452 shown in
Th spot colors include O (orange), G (green), and V (violet), which are secondary colors of the basic colors, as well as fluorescence P (pink), fluorescence Y (yellow), and fluorescence C (cyan), which are fluorescent colors.
Although the operation screen 451 shown in
In the entire configuration shown in
The output of the color chart by the color chart output unit 412 may be output as data or output as a printed matter.
In a case where the color chart is output as the printed matter, the color chart output unit 412 gives data to the printing apparatus 20. As a result, the color chart is printed on the paper P from the printing apparatus 20. The completion of the calibration of the printing apparatus 20 does not matter at the time of printing the color chart.
As shown in
The color gamut expansion area determination unit 411A determines the area for expanding the color gamut in a case where the “basic color and spot color” is selected on the operation screen 451 (see
The color gamut expansion area determination unit 411A may have one color gamut to be expanded or two color gamuts to be expanded depending on the difference in color materials to be used.
The color space is divided into three areas by these three axes.
One is the area between the Y axis and the M axis. The above area is an area that corresponds to the secondary color of Y and M and is called an O (orange) area.
One is the area between the C axis and the M axis. The above area is an area that corresponds to the secondary color of C and M and is called a V (violet) area.
One is the area between the C axis and the Y axis. The above area is an area that corresponds to the secondary color of C and Y and is called a G (green) area.
The color gamut expansion area determination unit 411A determines an area for expanding any one or two of the O area, the V area, and the G area.
Details of ProcessingThe processing procedure shown in
The processing procedure shown in
First, the processor 41 determines whether or not a difference in the color space between the spot color and any of the basic colors is less than a threshold value (step S1). Examples of the difference in color space include a color difference, and a hue difference.
Of the color difference and the hue difference, the color difference is calculated as a distance between two colors. The color difference is not limited to the distance in the plane illustrated in
In the case of
On the other hand, O (orange) is a secondary color in which M and Y are mixed in the same ratio. Therefore, in the case of
For example, in a case where the spot color is O, the processor 41 obtains a negative result in step S1.
In a case where the negative result is obtained in step S1, the processor 41 determines the color gamut to which the spot color belongs (the color gamut of the secondary color) to the color gamut to be expanded by the spot color (step S2).
Of course, in a case where the spot color for which a negative result is obtained in step S1 is another color, the area to be expanded is also a different area of secondary color.
In
Further,
Further,
In a case where the color gamut to be expanded is determined, the processor 41 generates pattern data (hereinafter, also referred to as “expansion pattern data”) corresponding to the combination of three basic colors excluding the complementary colors of the spot color and the representative color of the color gamut to be expanded, and adds the generated pattern data to the CMYK pattern data (hereinafter, also referred to as “basic pattern data”) (step S3).
The pattern data here is a set of combinations of values of four color materials that reproduce colors corresponding to each coordinate point.
That is, at the time step S3 is executed, there are two pattern data, the basic pattern data and the expansion pattern data.
Next, the processor 41 outputs a color chart of basic colors and a color chart corresponding to one color gamut to be expanded (step S4).
Next, a case where the spot color is a fluorescent color will be described. In this case, the processor 41 obtains a positive result in step S1.
In a case where a positive result is obtained in step S1, the processor 41 determines the two color gamuts (color gamuts of the secondary colors), which are adjacent to each other with the color material that has the smallest difference in color space from the spot color among the basic colors, as two color gamuts to be expanded by the spot color (step S5).
In
In the case of
Further, the Y toner, which is a color material that defines the Y axis, is an example of a second color material. In this case, the color used for expanding the O area is an example of a first color.
Further, the C toner, which is a color material that defines the C axis, is an example of a third color material. In this case, the color used for expanding the V area is an example of a second color.
Of course, in a case where the spot color for which a positive result is obtained in step S1 is another color, the combination of the two areas to be expanded is also different.
In
For example, in a case where the color of the color material that is close to the color of the spot color is Y (yellow), the Y toner is an example of the first color material, the M toner is an example of the second color material, and the C toner is an example of the third color material. In this case, the color used for expanding the O area is an example of the first color, and the color used for expanding the G area is an example of the second color.
Further, for example, in a case where the color of the color material that is close to the color of the spot color is C (cyan), the C toner is an example of the first color material, the M toner is an example of the second color material, and the Y toner is an example of the third color material. In this case, the color used for expanding the G area is an example of the first color, and the color used for expanding the V area is an example of the second color.
Referring Back to FIG. 6In a case where the color gamut to be expanded is determined, the processor 41 generates two pattern data (that is, “expansion pattern data”) corresponding to each of the two color gamuts to be expanded and adds the generated pattern data to the CMYK pattern data (that is, “basic pattern data”) (step S6).
That is, at the time step S6 is executed, there are three pattern data, the basic pattern data and the two expansion pattern data.
Next, the processor 41 outputs a color chart of basic colors and a color chart corresponding to two color gamuts to be expanded (step S7).
The color chart shown in
The color chart shown in
The color chart shown in
The color chart shown in
The color chart shown in
As described above, in the color chart corresponding to the expansion pattern data, the color chart is generated by using the color material of the basic color excluding the complementary color of the color gamut to be expanded and the color material corresponding to the spot color capable of expanding the color gamut.
First, in a case where the spot color is not used (in the case of “none”), only the color chart corresponding to the basic pattern data is output.
In a case where the spot color is O (orange), two color charts corresponding to the expansion pattern data, in which C is replaced with the spot color, and the basic pattern data are output.
In
Similarly, in a case where the spot color is G (green), two color charts corresponding to the expansion pattern data, in which M is replaced with the spot color, and the basic pattern data are output. In
Similarly, in a case where the spot color is V (violet), two color charts corresponding to the expansion pattern data, in which Y is replaced with the spot color, and the basic pattern data are output. In
On the other hand, in a case where the spot color is the fluorescence P (pink), three color charts corresponding to the expansion pattern data in which C is replaced with the spot color, the expansion pattern data in which Y is replaced with the spot color, and the basic pattern data, are output. In
Similarly, in a case where the spot color is the fluorescence Y (yellow), three color charts corresponding to the expansion pattern data in which C is replaced with the spot color, the expansion pattern data in which M is replaced with the spot color, and the basic pattern data, are output. In
Similarly, in a case where the spot color is the fluorescence C (cyan), three color charts corresponding to the expansion pattern data in which M is replaced with the spot color, the expansion pattern data in which Y is replaced with the spot color, and the basic pattern data, are output. In
As described above, in the case of the present exemplary embodiment, depending on a difference in phase space between the spot color that can be used for printing and the basic color, up to two expansion pattern data used in a case where the color gamut can be expanded by using the spot color, may be used. For example, as shown in
The function of generating a profile for color conversion is started through an optical reading of the color chart.
The patch color measurement unit 421 is a functional unit that optically measures the colors of the color charts shown in
The profile generation unit 422 is a functional unit that generates a profile for reproducing the measured color with a plurality of toners. The profile here is a combination of toner values used for reproducing a particular color.
As shown in
The color gamut expansion area determination unit 422A here is the same functional unit as the color gamut expansion area determination unit 411A (see
The color gamut design unit 422B is a functional unit that designs the outline of the color gamut after the expansion. In other words, the color gamut design unit 422B is a functional unit that designs a boundary between the two color gamuts after the expansion. In a case where targets of colors (targets of colors designated by Japan Color (registered trademark) 2011 or Pantone (registered trademark)) are colors outside the color gamut of a printer, the design of the boundary of the color gamut is used in a Gamut Mapping in a case where converting to printer-reproducible colors.
In a case where the color gamuts of the secondary colors are expanded individually, the existence of other color gamuts adjacent to each other is not taken into consideration. As a result, the outline portion of the two color gamuts after expansion have to overlap.
In a case where the overlap is not fixed, a color gamut outline is also generated in the color gamut inner area, and the combination of color gamut outlines to be color-converted by the Gamut Mapping is not determined to be one. That is, the profile is not determined.
Therefore, in the present exemplary embodiment, the color gamut design unit 422B is used as a function of addressing the overlap of the outline portions of the two color gamuts after the expansion in a case where the spot color such as the fluorescence P (pink) can be used.
The color separation unit 422C is a functional unit that searches for the combination of values of color materials that reproduce each color in the designed color gamut. The output of the color separation unit 422C is the profile.
Referring back to
The color conversion unit 424 is a functional unit that converts the combination of values of the color materials that reproduce a color designated in the input data given as a printing job into output data.
Details of Processing Color Gamut SettingsThe processing procedure shown in
First, the processor 41 calculates the color gamut of CMYK, which are the basic colors (step S11). Since the colors in the color gamut are reproduced using the C toner, the M toner, the Y toner, and the K toner, the listed toners are excluded from the color gamut after the expansion.
Next, the processor 41 expands one of the two color gamuts to be expanded (for example, the O area) (step S12).
Subsequently, the processor 41 expands the other of the two color gamuts to be expanded (for example, the V area) (step S13).
Thereafter, the processor 41 removes a common face between the two color gamuts after the expansion (step S14). The common face is a color gamut that represents the same color.
Images of the processing corresponding to steps S11 to S14 will be described with reference to
The hexagonal portions shown in
Incidentally, “Y+M” in the figure corresponds to O (orange), “Y+C” corresponds to G (green), and “M+C” corresponds to V (violet).
Further, the “W” at the center of the hexagon indicates white.
As can be seen by comparing
At the vertices of the thick line, M (magenta), M+P(O), M+P(O)+K, M+K, M+P(V)+K, and M+P(V) are positioned clockwise from the position at 12 o'clock.
Specifically, in
The processing procedure shown in
The processing shown in
First, the processor 41 determines a value of K (step S21).
Next, the processor 41 determines whether or not the color to be processed belongs to any one of the two expanded color gamuts (step S22). For example, the processor 41 determines whether or not the color to be processed belongs to any one of the O area and the V area after the expansion described with reference to
In a case where a negative result is obtained in step S22, the processor 41 sets the value of K as a fixed value and searches for each value of CMY that satisfies a Lab value (step S23).
On the other hand, in a case where a positive result is obtained in step S22, the processor 41 determines a value of the spot color for the two expanded color gamuts (step S24). For example, in the case of the color belonging to the O area, a value of the fluorescence P (pink) is determined in the O area surrounded by the broken line in
Next, the processor 41 sets the value of K and the value of the spot color as the fixed values and searches for each value of CMY that satisfies the Lab value (step S25).
The profile is determined by the above processing.
SummaryAs described above, in a case where the control apparatus 40 described in the present exemplary embodiment is used, the expansion of the color gamut that may be reproduced is implemented by the printing apparatus 20 (see
That is, as compared with the method in which only one secondary color gamut is expanded by one spot color toner, bringing out the expressiveness of printing is possible by using the spot color toner.
Other Exemplary Embodiments(1) Although the exemplary embodiment of the present invention has been described above, the technical scope of the exemplary embodiment of the present invention is not limited to the scope described in the exemplary embodiment described above. The fact that the various modifications or improvements to the exemplary embodiment described above are also included in the technical scope of the exemplary embodiment of the present invention, is clearly stated in the claims.
(2) In the exemplary embodiment described above, the generation of a color chart related to the expansion of the color gamut in a case where a fluorescence P (pink) or other fluorescent toner is used by exemplifying the L* a* b* color space has been described, the color space is not limited to the L* a* b* color space.
(3) In the exemplary embodiment described above, the fluorescent color is exemplified as the spot color having a small difference in color space from any of the basic colors except K (black), but the spot color is not necessary to be limited to the fluorescent color. Further, even in a case where the spot color is defined as the fluorescent color, the fluorescent color is not limited to the three colors described above, that is, fluorescence P, fluorescence Y, and fluorescence C.
(4) In the exemplary embodiment described above, the value of the spot color is determined in step S24 (see
(5) In the embodiments above, the term “processor” refers to hardware in a broad sense. Examples of the processor include general processors (e.g., CPU: Central Processing Unit) and dedicated processors (e.g., GPU: Graphics Processing Unit, ASIC: Application Specific Integrated Circuit, FPGA: Field Programmable Gate Array, and programmable logic device).
In the embodiments above, the term “processor” is broad enough to encompass one processor or plural processors in collaboration which are located physically apart from each other but may work cooperatively. The order of operations of the processor is not limited to one described in the embodiments above, and may be changed.
The foregoing description of the exemplary embodiments of the present invention has been provided for the purposes of illustration and description. It is not intended to be exhaustive or to limit the invention to the precise forms disclosed. Obviously, many modifications and variations will be apparent to practitioners skilled in the art. The embodiments were chosen and described in order to best explain the principles of the invention and its practical applications, thereby enabling others skilled in the art to understand the invention for various embodiments and with the various modifications as are suited to the particular use contemplated. It is intended that the scope of the invention be defined by the following claims and their equivalents.
Claims
1. An information processing apparatus comprising:
- a processor configured to: in a case where a first color material, a second color material, a third color material, and a fourth color material in which a difference between the first color material and the fourth color material in a color space is less than a threshold value, are capable of being used, output combinations of values of color materials reproducing a first color, which is used for expanding a color gamut of a secondary color of the first color material and the second color material, and a second color, which is used for expanding a color gamut of a secondary color of the first color material and the third color material.
2. The information processing apparatus according to claim 1, wherein the processor is configured to:
- output a combination of values of the first color material, the second color material, and the fourth color material for the first color, and
- output a combination of values of the first color material, the third color material, and the fourth color material for the second color.
3. The information processing apparatus according to claim 2,
- wherein a color gamut of the first color and a color gamut of the second color are defined as connected color gamuts that do not overlap with each other.
4. The information processing apparatus according to claim 1, wherein the processor is configured to:
- determine a value of the fourth color material reproducing the first color or the second color and then determine a combination of a value of the first color material, a value of the second color material, and a value of the third color material.
5. The information processing apparatus according to claim 4, wherein the processor is configured to:
- in a case where a combination of the color materials reproducing the first color is output,
- first, determine a value of a first neutral color between a color of the first color material and a color of the second color material,
- second, define the value of the first neutral color as a fixed value and determine a combination of the value of the first color material and the value of the second color material, and
- last, determine the value of the first neutral color to the value of the fourth color material.
6. The information processing apparatus according to claim 4, wherein the processor is configured to:
- in a case where a combination of the color materials reproducing the second color is output,
- first, determine a value of a second neutral color between a color of the first color material and a color of the third color material,
- second, define the value of the second neutral color as a fixed value and determine a combination of the value of the first color material and the value of the third color material, and
- last, determine the value of the second neutral color to the value of the fourth color material.
7. The information processing apparatus according to claim 1,
- wherein the first color material, the second color material, and the third color material correspond to basic colors excluding black, and
- the fourth color material corresponds to a fluorescent color.
8. An image forming apparatus comprising:
- a formation unit that forms an image on a medium by using a plurality of color materials; and
- a processor configured to: in a case where a first color material, a second color material, a third color material, and a fourth color material in which a difference between the first color material and the fourth color material in a color space is less than a threshold value, are capable of being used in the formation unit, output combinations of values of color materials reproducing a first color, which is used for expanding a color gamut of a secondary color of the first color material and the second color material, and a second color, which is used for expanding a color gamut of a secondary color of the first color material and the third color material.
9. An image forming system comprising:
- the image forming apparatus according to claim 8 that forms an image on a medium by using at least a first color material, a second color material, a third color material, and a fourth color material; and
- the information processing apparatus according to claim 1.
10. An image forming system comprising:
- the image forming apparatus according to claim 8 that forms an image on a medium by using at least a first color material, a second color material, a third color material, and a fourth color material; and
- the information processing apparatus according to claim 2.
11. An image forming system comprising:
- the image forming apparatus according to claim 8 that forms an image on a medium by using at least a first color material, a second color material, a third color material, and a fourth color material; and
- the information processing apparatus according to claim 3.
12. An image forming system comprising:
- the image forming apparatus according to claim 8 that forms an image on a medium by using at least a first color material, a second color material, a third color material, and a fourth color material; and
- the information processing apparatus according to claim 4.
13. An image forming system comprising:
- the image forming apparatus according to claim 8 that forms an image on a medium by using at least a first color material, a second color material, a third color material, and a fourth color material; and
- the information processing apparatus according to claim 5.
14. An image forming system comprising:
- the image forming apparatus according to claim 8 that forms an image on a medium by using at least a first color material, a second color material, a third color material, and a fourth color material; and
- the information processing apparatus according to claim 6.
15. An information processing apparatus comprising:
- a processor configured to: in a case where a first color material, a second color material, a third color material, and a fourth color material in which a difference between the first color material and the fourth color material in a color space is less than a threshold value, are capable of being used, generate a first color chart in which colors that are reproduced by a combination of a color of the first color material, a color of the second color material, and a color of the third color material are arranged, a second color chart in which colors that are reproduced by a combination of the color of the first color material, the color of the second color material, and a color of the fourth color material are arranged, and a third color chart in which colors that are reproduced by a combination of the color of the first color material, the color of the third color material, and the color of the fourth color material are arranged.
Type: Application
Filed: Jul 20, 2022
Publication Date: Sep 28, 2023
Applicant: FUJIFILM Business Innovation Corp. (Tokyo)
Inventor: Toshihiro IWAFUCHI (Kanagawa)
Application Number: 17/869,760