Color display device, color display object, and color display system

The color display device uses coordinate axes to represent image directionality, enabling easy visualization of color changes by displaying colors like red, green, and blue, addressing the limitations of circular color wheel arrangements.

JP3253595UActive Publication Date: 2025-11-14MEDERU CO LTD
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Patent Information

Application Number
JP2025002346U
Authority / Receiving Office
JP · JP
Patent Type
Utility models
Current Assignee / Owner
Filing Date
2025-07-14
Publication Date
2025-11-14
Estimated Expiration
2035-07-14

AI Technical Summary

Technical Problem

Existing color display devices using color wheels do not allow users to easily grasp the direction of image changes between colors, as colors are arranged in a circular pattern without a fixed rule.

Method used

A color display device that uses coordinate axes to represent the directionality of images, displaying colors such as red, green, yellow, and blue on these axes, allowing for the easy grasping of image changes by storing and processing image directionality and coordinate data, and displaying additional colors based on calculated coordinate data.

Benefits of technology

Enables easy visualization of color image changes by displaying colors like red, green, yellow, and blue on coordinate axes, facilitating detailed color planning and image strategy.

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Abstract

A color display device and a color display object are provided that allow the user to easily grasp the directionality of image changes between colors. [Solution] The color display device 1 has a memory means 3 and a display means 49. The memory means 3 stores the directionality of an image and the coordinate data of the color corresponding to the directionality of the image, and the display means 49 displays one of the coordinate axes as the coordinate axis indicating the directionality of a first image and the other coordinate axis as the coordinate axis indicating the directionality of a second image, displaying black at the origin which is the center of the coordinate axes, displaying red on one side of the one coordinate axis, displaying green on the other side of the one coordinate axis, displaying yellow on one side of the other coordinate axis, and displaying blue on the other side of the other coordinate axis.
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Description

[Technical Field]

[0001] This invention relates to color display devices, color display objects, and color display systems, and more particularly to color display devices, color display objects, and color display systems that use coordinate axes representing the directionality of the image of a color and display colors on the coordinates in correspondence with the directionality of the image. [Background technology]

[0002] Color display devices that display colors have been known for some time, and some of these color display devices use a color wheel. For example, the Munsell color wheel is based on "red," "yellow," "green," "blue," and "purple," and arranges colors in a circular pattern that changes in sequence. This wheel is used for various color planning, taking into account the relationships between colors such as similar colors, analogous colors, complementary colors, and opposing colors.

[0003] For example, the technology disclosed in Patent Document 1 is referred to as an example of a color display device that uses such a color wheel. [Prior art documents] [Patent documents]

[0004] [Patent Document 1] JP 2001-142447 A Summary of the Invention [Problem to be solved by the invention]

[0005] In color planning, in order to create a more effective color effect and to create a more original color plan, users may wish to carry out detailed color planning while grasping the direction of the changes in image between colors.

[0006] However, in the color planning using the color wheel described above, the colors are arranged in a circular pattern with sequential changes, and although it is easy to grasp the direction of the changes between the colors, the image of the colors is not arranged according to a fixed rule, and it is not possible to grasp the direction of the changes in the image between the colors.

[0007] The present invention was made in consideration of the above circumstances, and aims to provide a color display device, a color display object, and a color display system that allow users to easily grasp the direction of image changes between colors. [Means for solving the problem]

[0008] In order to achieve the above object, the invention of claim 1 relating to a color display device is a color display device that takes the directionality of an image possessed by a color as a coordinate axis and displays the color on the coordinate corresponding to the directionality of the image, the color display device having a storage means with memory and a display means in an arithmetic unit having a processor, the directionality of the image includes the directionality of a first image and the directionality of a second image, and further includes a first color as a color to be displayed on the coordinate, the first color including red, green, yellow, and blue, the storage means stores the directionality of the image and coordinate data of the color, the display means displays one of the coordinate axes as a coordinate axis indicating the directionality of the first image and the other coordinate axis as a coordinate axis indicating the directionality of the second image, and further the display means displays the red, green, yellow, and blue on the axes of the coordinate axes.

[0009] According to the present invention, a display device is provided in a storage device having a memory and a processor, and the image directionality includes a first image directionality and a second image directionality, and further includes a first color as a color to be displayed on the coordinates, the first color including red, green, yellow, and blue. The storage device stores the image directionality and coordinate data of the color corresponding to the image directionality. The display device displays one of the coordinate axes as a coordinate axis indicating the first image directionality and the other coordinate axis as a coordinate axis indicating the second image directionality. Furthermore, the display device displays the red, green, yellow, and blue on the coordinate axes, so that red, green, yellow, and blue are displayed on the coordinate axes indicating the first and second image directionality, and the directionality of the image change between these colors can be easily grasped.

[0010] In order to achieve the above object, the invention of claim 2 relating to a color display device is a color display device that takes the directionality of an image of a color as a coordinate axis and displays the color on the coordinate in correspondence with the directionality of the image, the color display device having a storage means with a memory and a display means in an arithmetic unit having a processor, the directionality of the image includes a first image directionality and a second image directionality, and further includes a first color as a color to be displayed on the coordinate, the first color including black, red, green, yellow, and blue, the storage means having a display means in an arithmetic unit having a processor and a storage means for displaying the color on the coordinate in correspondence with the directionality of the image and coordinate data of the colors corresponding to the first and second images, and the display means displays one of the coordinate axes as a coordinate axis indicating the directionality of the first image and the other coordinate axis as a coordinate axis indicating the directionality of the second image, and further the display means displays the black color at the origin which is the center of the coordinate axes, the red color on one side of the one coordinate axis, the green color on the other side of the one coordinate axis, the yellow color on one side of the other coordinate axis, and the blue color on the other side of the other coordinate axis.

[0011] According to the present invention, a display device is provided in a computing device having a processor and a storage device with a memory, and the image directionality includes a first image directionality and a second image directionality, and further includes a first color as a color to be displayed on the coordinates, and the first color includes black, red, green, yellow, and blue, and the storage device stores the image directionality and coordinate data of the color corresponding to the image directionality, and the display device sets one of the coordinate axes as a coordinate axis indicating the first image directionality and the other coordinate axis as a coordinate axis indicating the second image directionality. and further, the display means displays the black at the origin, which is the center of the coordinate axis, the red on one side of the one coordinate axis, the green on the other side of the one coordinate axis, the yellow on one side of the other coordinate axis, and the blue on the other side of the other coordinate axis, so that black, red, green, yellow, and blue are displayed on the coordinate axes indicating the directionality of the first and second images, making it easy to grasp the directionality of the change in image between these colors. Note that the first colors, black, red, green, yellow, and blue, are basic colors from which various colors can be produced.

[0012] The first color includes white, and the display means can display the white at a position on the coordinate axis spaced outward from the positions of the red, yellow, green, and blue (Claim 3).

[0013] More specifically, the first color includes white, and the display device has a line segment generating means for generating line segments that pass through positions on the coordinate axes spaced outward from the positions of the red, yellow, green, and blue colors, and the display device can display the white color on the line segment generated by the line segment generating means. Note that the white color, which is the first color, is a basic color from which various colors can be created (claim 4).

[0014] The device has a second color coordinate data calculation means for calculating coordinate data of a second color based on the coordinate data of the first color, and the display means can display the second color at a position corresponding to the coordinate data calculated by the second color coordinate data calculation means (claim 5).

[0015] That is, the second colors are orange, yellow-green, purple, crimson, khaki, brown, navy blue, and gray, and the system has second color coordinate data calculation means for calculating coordinate data of the second colors, wherein the second color coordinate data calculation means calculates the orange coordinate data based on the red coordinate data and the yellow coordinate data, calculates the yellow-green coordinate data based on the yellow coordinate data and the green coordinate data, calculates the purple coordinate data based on the blue coordinate data and the red coordinate data, calculates the crimson coordinate data based on the black coordinate data and the red coordinate data, calculates the khaki coordinate data based on the yellow coordinate data and the black coordinate data, and The coordinate data for brown is calculated based on the coordinate data for crimson and the coordinate data for khaki, the coordinate data for navy blue is calculated based on the coordinate data for black and the coordinate data for blue, and the coordinate data for gray is calculated based on the coordinate data for crimson, the coordinate data for khaki, the coordinate data for brown, the coordinate data for navy blue, and the coordinate data for black, and the display means displays the orange, the yellow-green, the purple, the crimson, the khaki, the brown, the navy blue, and the gray as the second colors at positions corresponding to the coordinate data calculated by the second color coordinate data calculation means, thereby making it even easier to grasp the direction of the change in image between the colors.

[0016] Furthermore, based on black, red, green, yellow, and blue, orange, yellow-green, purple, crimson, khaki, brown, navy blue, and gray can be automatically displayed at appropriate positions on the coordinate system, and by changing the coordinate data of the basic colors black, red, green, yellow, and blue, orange, yellow-green, purple, crimson, khaki, brown, navy blue, and gray can be automatically displayed corresponding to the positions of the changed coordinate data. Note that orange is a color obtained by fusing red and yellow, yellow-green is a color obtained by fusing yellow and green, purple is a color obtained by fusing blue and red, crimson is a color obtained by fusing black and red, khaki is a color obtained by fusing black and yellow, brown is a color obtained by fusing crimson and khaki, navy blue is a color obtained by fusing black and blue, and gray is a color obtained by fusing crimson, khaki, brown, or navy blue and black (Claim 6).

[0017] If the second colors are further defined as beige, light blue, light purple, and pink, and the second color coordinate data calculation means calculates the coordinate data of the beige color based on the coordinate data of the orange color and the coordinate data of the white color, calculates the coordinate data of the light blue color based on the coordinate data of the blue color and the coordinate data of the white color, calculates the coordinate data of the light purple color based on the coordinate data of the purple color and the coordinate data of the white color, and calculates the coordinate data of the pink color based on the coordinate data of the red color, the coordinate data of the purple color, and the coordinate data of the white color, and the display means displays the beige color, the light blue color, the light purple color, and the pink color as the second colors at positions corresponding to the coordinate data calculated by the second color coordinate data calculation means, the direction of the change in impression between the colors can be grasped even more easily. Furthermore, it is possible to automatically display white, orange obtained by fusing red and yellow, blue, purple obtained by fusing blue and red, and beige, light blue, light purple, and pink at appropriate positions on the coordinate system based on red, and by changing the coordinate data of the basic colors white, red, yellow, and blue, it is possible to automatically display beige, light blue, light purple, and pink in accordance with the positions of the changed coordinate data. Note that beige is a color obtained by fusing orange and white, light blue is a color obtained by fusing blue and white, light purple is a color obtained by fusing purple and white, and pink is a color obtained by fusing red, purple, and white (Claim 7).

[0018] Here, the 18 colors in this invention, namely black, red, green, yellow, blue, and white as the first colors, and orange, yellow-green, purple, crimson, khaki, brown, navy blue, gray, beige, light blue, lilac, and pink as the second colors, are the basic colors in color coordination and color image strategy.

[0019] The storage means stores specific color images of the first color and / or the second color, and has a first specific color image setting means that reads out and sets the specific color image from the storage means, and the display means displays the specific color image set by the first specific color image setting means in correspondence with the first color and / or the second color, so that the direction of image change between colors can be grasped in detail based on the specific color image (Claim 8).

[0020] The storage means stores a third color and coordinate data corresponding to the third color, and has a position designation means, a designated position coordinate data calculation means, a first coordinate data position difference calculation means, a first color coordinate data extraction means, and a designated position color setting means, the position designation means designates an arbitrary position on the coordinate system, the designated position coordinate data calculation means calculates coordinate data at the arbitrary position designated by the position designation means, the first coordinate data position difference calculation means calculates a position difference between the coordinate data calculated by the designated position coordinate data calculation means and the coordinate data corresponding to the third color, and the first color coordinate data extraction means extracts the color from the Based on the position difference calculated by the first coordinate data position difference calculation means, coordinate data corresponding to the third color at the position closest to the coordinate data at the specified arbitrary position is extracted, the specified position color setting means sets the third color corresponding to the coordinate data extracted by the first color coordinate data extraction means as the color at the specified arbitrary position, and the display means displays the set third color as the color at the arbitrary position specified by the position specification means, thereby making it possible to easily display the color at an arbitrary position and also to easily grasp the image that the color has (claim 9).

[0021] The storage means stores a specific color image of the first color and / or the second color, and has a second coordinate data position difference calculation means, a second coordinate data extraction means, and a second specific color image setting means, the second coordinate data position difference calculation means calculates a position difference between the coordinate data at the specified arbitrary position calculated by the specified position coordinate data calculation means and the coordinate data of the first color and / or the second color, and the second coordinate data extraction means extracts the first color and / or the second color at a position closest to the coordinate data at the specified arbitrary position based on the position difference calculated by the second coordinate data position difference calculation means. The coordinate data corresponding to the color is extracted by the second coordinate data extraction means, the second specific color image setting means reads out and sets from the storage means a specific color image of the first color and / or the second color corresponding to the coordinate data extracted by the second coordinate data extraction means, and the display means displays the specific color image set by the second specific color image setting means in correspondence with the color at the specified arbitrary position, thereby making it possible to easily grasp the specific color image of the color at the specified arbitrary position using the specific color images of the first color and the second color which are basic colors in color coordination and color image strategy (Claim 10).

[0022] The storage means stores a specific color image of the first color and / or the second color, and has a second coordinate data position difference calculation means, a second coordinate data extraction means, and a second specific color image setting means, the second coordinate data position difference calculation means calculates a position difference between the coordinate data at the specified arbitrary position calculated by the specified position coordinate data calculation means and the coordinate data of the first color and / or the second color, and the second coordinate data extraction means extracts a specific color image of the first color and / or the second color corresponding to a position relatively close to the coordinate data at the specified arbitrary position based on the position difference calculated by the second coordinate data position difference calculation means. By extracting a plurality of coordinate data, and the second specific color image setting means reading out from the storage means and setting a plurality of specific color images of the first color and / or the second color corresponding to each of the plurality of coordinate data extracted by the second coordinate data extraction means, and the display means displaying the plurality of specific color images set by the second specific color image setting means in correspondence with the color at the specified arbitrary position, it becomes possible to more easily grasp the specific color image of the color at the specified arbitrary position using the specific color images of the first color and second color which are basic colors in color coordination and color image strategy (Claim 11).

[0023] The invention has an influence calculation means for calculating the influence of each of the multiple set specific color images on the color at the specified arbitrary position based on the position difference corresponding to the coordinate data extracted by the second coordinate data extraction means, and the display means displays the influence calculated by the influence calculation means in correspondence with each of the multiple set specific color images by the second specific color image setting means, making it possible to grasp the specific color image of the color at the specified arbitrary position even more easily using the specific color images of the first color and the second color (Claim 12).

[0024] The display means sets one coordinate axis indicating the directionality of the first image as a coordinate axis representing excitement or stability, with one side of the first coordinate axis representing excitement and the other side of the coordinate axis representing stability across the origin, and sets another coordinate axis indicating the directionality of the second image as a coordinate axis representing movement or stillness, with one side of the other coordinate axis representing movement and the other side of the coordinate axis representing stillness across the origin, and displays the red on one side of the first coordinate axis as the color representing excitement, the green on the other side of the first coordinate axis as the color representing stability, the yellow on one side of the other coordinate axis as the color representing movement, and the blue on the other side of the other coordinate axis as the color representing stillness, thereby making it possible to clearly grasp the directionality of the change in image between colors (Claim 13).

[0025] In order to achieve the above object, the invention of claim 14 relating to a color display object is characterized in that it is generated by the color display device according to any one of claims 1 to 13.

[0026] In order to achieve the above-mentioned object, the invention of claim 15 relating to a color display object is a color display object that takes the directionality of the image of a color as a coordinate axis and displays the color on the coordinate corresponding to the directionality of the image, wherein the directionality of the image includes the directionality of a first image and the directionality of a second image, and further includes a first color as a color to be displayed on the coordinate, and the first color includes red, green, yellow, and blue, one of the coordinate axes is a coordinate axis indicating the directionality of the first image, and the other coordinate axis is displayed as a coordinate axis indicating the directionality of the second image, and further characterized in that the red, green, yellow, and blue are displayed on the axes of the coordinate axes.

[0027] According to the present invention, red, green, yellow, and blue are displayed on the coordinate axes indicating the directionality of the first and second images, making it easy to grasp the directionality of the image changes between the colors.

[0028] In order to achieve the above object, the invention of claim 16 relating to a color display object is a color display object that takes the directionality of the image of a color as a coordinate axis and displays the color on the coordinate in accordance with the directionality of the image, wherein the directionality of the image includes the directionality of a first image and the directionality of a second image, and further includes a first color as a color to be displayed on the coordinate, and the first color includes black, red, green, yellow, and blue, one of the coordinate axes is displayed as a coordinate axis indicating the directionality of the first image, and the other coordinate axis is displayed as a coordinate axis indicating the directionality of the second image, and further characterized in that the black is displayed at the origin which is the center of the coordinate axes, the red is displayed on one side of the one coordinate axis, the green is displayed on the other side of the one coordinate axis, the yellow is displayed on one side of the other coordinate axis, and the blue is displayed on the other side of the other coordinate axis.

[0029] According to the present invention, black, red, green, yellow, and blue are displayed on the coordinate axes indicating the directionality of the first and second images, making it easy to grasp the directionality of the image changes between the colors.

[0030] The first color may include white, and the white color may be displayed at a position spaced outward from the positions of the red, yellow, green, and blue colors (claim 17). More specifically, the first color includes white, and line segments are displayed so as to pass through positions on the coordinate axis that are spaced outward from the positions of the red, yellow, green, and blue, and the white color can be displayed on the line segments (Claim 18).

[0031] The second colors are orange, yellow-green, purple, crimson, khaki, brown, navy blue, and gray, and the orange is displayed at a position corresponding to the red coordinate data and the yellow coordinate data, the yellow-green is displayed at a position corresponding to the yellow coordinate data and the green coordinate data, the purple is displayed at a position corresponding to the blue coordinate data and the red coordinate data, the crimson is displayed at a position corresponding to the black coordinate data and the red coordinate data, and the khaki is displayed at a position corresponding to the yellow coordinate data and the black coordinate data. By displaying the color in a position corresponding to the coordinate data of the crimson and the khaki, displaying the color navy blue in a position corresponding to the coordinate data of the black and the blue, and displaying the color gray in a position corresponding to the coordinate data of the crimson, the khaki, the brown, and the navy blue, and the black coordinate data, it becomes even easier to grasp the direction of the change in image between the colors (Claim 19).

[0032] If the second color is further set to beige, light blue, lilac, and pink, and the beige is displayed at a position corresponding to the orange coordinate data and the white coordinate data, the light blue is displayed at a position corresponding to the blue coordinate data and the white coordinate data, the lilac is displayed at a position corresponding to the purple coordinate data and the white coordinate data, and the pink is displayed at a position corresponding to the red coordinate data, the purple coordinate data, and the white coordinate data, the direction of the change in image between the colors can be grasped even more easily (Claim 20).

[0033] By displaying the specific color image in correspondence with the first color and / or the second color, the direction of image change between the colors can be grasped in detail based on the specific color image (Claim 21).

[0034] One coordinate axis showing the directionality of the first image can be a coordinate axis representing excitement or stability, with one side of the first coordinate axis representing excitement and the other side of the first coordinate axis representing stability across the origin; the other coordinate axis showing the directionality of the second image can be a coordinate axis representing movement or stillness, with one side of the other coordinate axis representing movement and the other side of the first coordinate axis representing stillness across the origin; the red can be displayed on one side of the first coordinate axis as the color representing excitement, the green can be displayed on the other side of the first coordinate axis as the color representing stability, the yellow can be displayed on one side of the other coordinate axis as the color representing movement, and the blue can be displayed on the other side of the other coordinate axis as the color representing stillness (Claim 22). In order to achieve the above object, the invention of claim 23 relating to a color display system is a color display system that makes the color display device described in any one of claims 1 to 13 and a terminal device of a user who uses said color display device accessible through a communication line, characterized in that the arithmetic device of said color display device receives a predetermined input from said terminal device via said communication line, and causes said display means to function based on said input, and causes the display device of said terminal device to display. The terminal device can launch a web browser by executing a web browser program, and can further access the color display device via the web browser using a communication protocol to display web pages of a website based on the color display device on the display device of the terminal device (Claim 24). [Effects of the Invention]

[0035] According to the present invention, it is possible to easily grasp the direction of the change in image between colors. [Brief explanation of the drawings]

[0036] [Figure 1] 1 is a block diagram showing the overall configuration of a color display device according to a first embodiment of the present invention; [Figure 2] FIG. 10 is a diagram showing data stored in a storage means in the same color display device. [Figure 3] FIG. 10 is a diagram showing data displayed by a display means in the same color display device. [Figure 4] 4 is a view following FIG. 3 showing data displayed by a display means in the same color display device. [Figure 5] 10 is a flowchart for explaining a display method in a single-color display device. [Figure 6] FIG. 4 is a block diagram showing the overall configuration of a color display device according to a second embodiment of the present invention. [Figure 7] FIG. 10 is a diagram showing data stored in a storage means in the same color display device. [Figure 8] 10 is a flowchart for explaining a display method in a single-color display device. [Figure 9] FIG. 10 is a diagram showing data displayed by a display means in the same color display device. [Figure 10] 10 is a view following FIG. 9 showing data displayed by the display means of the same color display device. [Figure 11] 1 is a block diagram showing the overall configuration of a color display system according to the present invention; [Figure 12] FIG. 10 is a block diagram showing the configuration of a terminal device in the same color display system. DETAILED DESCRIPTION OF THE INVENTION

[0037] DETAILED DESCRIPTION OF THE PREFERRED EMBODIMENTS Hereinafter, embodiments of the present invention will be described in detail with reference to the drawings. [First embodiment] Figure 1 is a block diagram showing the overall configuration of a color display device 1 according to a first embodiment of the present invention. The color display device 1 shown in Figure 1 uses the directionality of the image of a color as a coordinate axis, and can display colors on the coordinate system in accordance with the directionality of the image.

[0038] In this embodiment, the coordinate axes are two-dimensional coordinate axes. The image directionality includes the directionality of the first image and the directionality of the second image, and further includes the first color and the second color as colors to be displayed on the coordinates.

[0039] The first colors include achromatic black and white, and chromatic red, green, yellow, and blue. The second colors include chromatic orange, yellow-green, purple, crimson, khaki, brown, navy blue, gray, beige, light blue, lilac, and pink. The first colors are the basic colors from which various colors can be created.

[0040] The 18 primary and secondary colors are the basic colors used in color coordination and color image strategies.

[0041] The color display device 1 has a general computer configuration and is composed of an input device 2 having a keyboard, mouse, a predetermined input interface, etc. (hereinafter, the input device may be referred to as input means), a storage device 3 having a memory, a hard disk, etc. (hereinafter, the storage device may be referred to as storage means), an arithmetic unit 4 having a processor such as a CPU, DSP, MPU, GPU, etc. (hereinafter, the arithmetic unit may be referred to as arithmetic means), and a display device 5 having a display screen such as a display. The storage means 3 functions as a computer-readable storage medium.

[0042] As shown in Figure 2, the storage means 3 stores a first color 31a, a second color 31b, an image directionality 32 possessed by the first colors 31a and 31b, coordinate data 33a of the first color 31a corresponding to the image directionality 32, a specific color image 34a of the first color 31a, and a specific color image 34b of the second color 31b.

[0043] The specific color images 34a and 34b include, for example, specific emotions and the like as specific color images of the first color 31a and the second color 31b.

[0044] Here, the storage means 3 stores the above-mentioned black, white, red, green, yellow, and blue as first colors 31a, and stores the above-mentioned orange, yellow-green, purple, crimson, khaki, brown, navy blue, gray, beige, light blue, lilac, and pink as second colors 31b.

[0045] In addition, the storage means 3 stores the above-mentioned first image direction and second image direction as image direction 32, and stores the first image direction as "excitement" and "stability" and the second image direction as "motion" and "stillness."

[0046] Furthermore, the storage means 3 stores (0,0) as coordinate data for black, (a,0) as coordinate data for red, (-a,0) as coordinate data for green, (0,a) as coordinate data for yellow, and (0,-a) as coordinate data for blue.

[0047] That is, red, green, blue, and yellow are displayed at positions spaced apart from black by an equal distance a. Red and green are displayed symmetrically across the origin, and yellow and blue are also displayed symmetrically across the origin.

[0048] The storage means 3 stores images of "luxury," "urban," "mysterious," "dignified," "formal," "stylish," "solemn," and "simple" as specific color images 34a of black of the first color 31a, images of "flashy," "vitality," "passion," "dark," "feminine," "strong," "conspicuous," "energy," "joy," "life," "love," "innovation," "strong," "spicy," "tropical," "hot," "heat," "fire," "blood," and "attention" as specific color images 34a of red, and images of "security," "fairness," "safety," "relaxation," "harmony," "nature," "growth," "peace," "fairness," "rest," and "relaxation" as specific color images 34a of green. As the specific color images 34a of yellow, the images of "lively," "active," "child," "free," "innovative," "fun," "sour," "hope," "active," "bright," and "activation" are memorized; as the specific color images 34a of blue, the images of "intellectual," "intellectual," "concentration," "calming," "trust," "ideal," "refreshing," "sense of justice," "sea," "cool," "noble," "international," "masculine," "clean," and "cold" are memorized; and as the specific color images 34a of white, the images of "popular," "pure," "clean," "tidy," "bright," "innocent," "fair," "birth," "possibility," "reset," "start," "wide," and "simple" are memorized.

[0049] Furthermore, the storage means 3 stores the images of "conspicuous," "fun," "friendly," "spicy," "tropical," "warm," "casual," and "approachable" as specific color images 34b of orange of the second color 31b, the images of "youthful," "natural," "growth," "fresh," "youthful," "start," "possibility," "rest," "gentle," and "relaxation" as specific color images 34b of yellow-green, and the images of "meditative," "feminine," "noble," "elegant," "artistic," "individual," "mysterious," and the images of "simple," "simple," "soft," and "relaxed" as specific color images 34b of purple. The specific color images 34b of crimson are memorized as "classy," "rich," "culture," "luxury," "elegance," "formal," "Japanese," "chic," "traditional," and "mature." The specific color images 34b of khaki are memorized as "avant-garde" and "urban." The specific color images 34b of brown are memorized as "Japanese," "chic," "foundational," "stable," "solid," "bitter," "traditional," "mature," "ethnic," "natural," and "nu. For example, the image processing section 34 memorizes the images of "noble," "concentrated," "honest," "calm," "trustworthy," "serious," "sense of justice," "harmony," "theoretical," "scholarly," "international," "masculine," "clean," "calm," and "solid" as specific color images 34b of navy blue, memorizes the images of "calm," "chic," "serene," and "simple" as specific color images 34b of gray, memorizes the images of "warmth," "supporting role," "gentle," "harmony," "harmony," "motherhood," "natural," "rest," and "relaxation" as specific color images 34b of beige, memorizes the images of "clean," "refreshing," "boyish," "youthful," "water," "fresh," "refreshing," and "refreshing" as specific color images 34b of light blue, memorizes the images of "popular with women," "elegant," "grace," "refined," "sexiness," "harmony," "sophisticated," and "gentle" as specific color images 34b of light purple, memorizes the images of "popular with women," "elegant," "grace," "refined," "sexiness," "harmony," "sophisticated," and "gentle" as specific color images 34b of pink, memorizes the images of "feminine," "gentle," "cute," "spoiled," "sweet," "motherhood," "affection," and "romantic."

[0050] As shown in FIG. 1, the calculation means 4 has a first color setting means 41, a first color coordinate data setting means 42, a second color setting means 43, a directionality setting means 44, a line segment generation means 45, a second color coordinate data calculation means 46, a first specific color image setting means 47, and a display means 49.

[0051] The first color setting means 41 reads out the first color 31a stored in the storage means 3 and sets it.

[0052] The first color coordinate data setting means 42 reads out and sets the coordinate data 33a of the first color 31a stored in the storage means 3.

[0053] The second color setting means 43 reads out the second color 31b stored in the storage means 3 and sets it.

[0054] The direction setting means 44 reads out and sets the direction 32 of the image stored in the storage means 3.

[0055] The line segment generating means 45 generates a predetermined line segment L. The line segment L is generated at intervals that correlate with the interval a between each of the red, yellow, green, and blue colors and black, more specifically, at intervals equal to the interval a, so as to pass through positions on the coordinate axis that are spaced apart by the interval a outward from the positions of the red, yellow, green, and blue colors. As will be described later, white is displayed on this line segment L, and the coordinate data of white becomes all the coordinate data included in the line segment L.

[0056] The second color coordinate data calculation means 46 calculates coordinate data 33b of a second color 31b obtained by fusing a plurality of first colors 31a, based on the coordinate data of the plurality of first colors 31a.

[0057] More specifically, the second color coordinate data calculation means 46 calculates coordinate data of orange obtained by fusing red and yellow equally, coordinate data of yellow-green obtained by fusing yellow and green equally, coordinate data of purple obtained by fusing blue and red equally, coordinate data of crimson obtained by fusing black and red equally, coordinate data of khaki obtained by fusing black and yellow equally, coordinate data of brown obtained by fusing crimson and khaki equally (crimson is obtained by fusing black and red equally, and khaki is obtained by fusing black and yellow equally), coordinate data of navy blue obtained by fusing black and blue equally, and coordinate data of gray obtained by fusing crimson, khaki, brown, and navy blue with black equally.

[0058] That is, the second color coordinate data calculation means 46 calculates the coordinate data of orange based on the coordinate data of red and yellow, i.e., by averaging the red coordinate data and the yellow coordinate data; calculates the coordinate data of yellow-green based on the coordinate data of yellow and green, i.e., by averaging the yellow coordinate data and the green coordinate data; calculates the coordinate data of purple based on the coordinate data of blue and red, i.e., by averaging the blue coordinate data and the red coordinate data; calculates the coordinate data of crimson based on the coordinate data of black and red, i.e., by averaging the black coordinate data and the red coordinate data; and calculates the coordinate data of khaki based on the coordinate data of yellow and black. The coordinate data for brown is obtained by calculating the coordinate data for crimson and khaki, i.e., by averaging the coordinate data for crimson and khaki; the coordinate data for navy blue is obtained by calculating the coordinate data for black and blue, i.e., by averaging the coordinate data for black and blue; and the coordinate data for gray is obtained by calculating the coordinate data for crimson, khaki, brown, and navy blue, respectively, and the black coordinate data, i.e., by averaging the coordinate data for crimson, khaki, brown, and navy blue, respectively, and the black coordinate data (note that each gray has a different lightness).

[0059] Furthermore, the second color coordinate data calculation means 46 calculates coordinate data for beige obtained by blending orange and white equally, coordinate data for light blue obtained by blending blue and white equally, coordinate data for light purple obtained by blending purple and white equally (purple is obtained by blending blue and red equally), and coordinate data for pink obtained by blending red, purple, and white equally.

[0060] That is, the second color coordinate data calculation means 46 obtains beige coordinate data by calculating it based on the orange coordinate data and the white coordinate data, i.e., by averaging the orange coordinate data and the white coordinate data; obtains light blue coordinate data by calculating it based on the blue coordinate data and the white coordinate data, i.e., by averaging the blue coordinate data and the white coordinate data; obtains light purple coordinate data by calculating it based on the purple coordinate data and the white coordinate data, i.e., by averaging the purple coordinate data and the white coordinate data; and obtains pink coordinate data by calculating it based on the red coordinate data, purple coordinate data, and white coordinate data, i.e., by averaging the red coordinate data, purple coordinate data, and the white coordinate data (note that the white coordinate data used in the calculation is the coordinate data of the position closest to the position of the color to be fused among the coordinate data included in the line segment L).

[0061] The first specific color image setting means 47 reads out and sets the specific color image 34a of the first color 31a and the specific color image 34b of the second color 31b stored in the storage means 3.

[0062] The display means 49 causes the display device 5 to display a desired image as shown in FIG. 3 based on the first color 31a set by the first color setting means 41, the coordinate data 33a of the first color 31a set by the first color coordinate data setting means 42, the image directionality 32 set by the directionality setting means 44, and the line segment L set by the line segment generating means 45.

[0063] That is, the display means 49 displays one of the coordinate axes, i.e., the x-axis, as the coordinate axis indicating the directionality of the first image, and the other coordinate axis, i.e., the y-axis, as the coordinate axis indicating the directionality of the second image.

[0064] Furthermore, the display means 49 displays black at the origin, which is the center of the coordinate axes, red on one side of one coordinate axis (x-axis), i.e., the positive side, and green on the other side of one coordinate axis (x-axis), i.e., the negative side. Also, the display means 49 displays yellow on one side of another coordinate axis (y-axis), i.e., the positive side, and blue on the other side of another coordinate axis (y-axis), i.e., the negative side.

[0065] The display means 49 sets one coordinate axis (x-axis) indicating the directionality of the first image as the coordinate axis representing excitement or stability, with one side of the first coordinate axis (x-axis), i.e., the positive side, across the origin, representing excitement, and the other side of the first coordinate axis (x-axis), i.e., the negative side, representing stability. The other coordinate axis (y-axis) indicating the directionality of the second image as the coordinate axis representing movement or stillness, with one side of the other coordinate axis (y-axis), i.e., the positive side, across the origin, representing movement, and the other side of the other coordinate axis (y-axis), i.e., the negative side, representing stillness. "Excitement" and "stability," and "movement" and "stillness" each have polar opposite images.

[0066] Furthermore, the display means 49 displays red as a color representing excitement on one side (positive side) of one coordinate axis (x-axis), green as a color representing stability on the other side (negative side) of one coordinate axis (x-axis), yellow as a color representing activity on one side (positive side) of another coordinate axis (y-axis), and blue as a color representing calmness on the other side (negative side) of the other coordinate axis (y-axis).

[0067] In other words, black has an image of "luxury" as a specific color image 34a, and since it has the lowest brightness of all colors, zero, the inventor decided to display black at the origin of the coordinate axis.

[0068] Furthermore, as a specific color image 34a, red has the images of "flashy," "passion," "vitality," "strong," and "blood" as described above, and the inventor displayed red on one side (positive side) of one coordinate axis (x-axis) as a representative color that represents "excitement" on one coordinate axis (x-axis) (the inventor decided to display red as a representative color that represents excitement based on images such as "seeing something flashy makes you excited," "being excited and passionate," and "blood is human energy and is reminiscent of the dynamism that humans have in life, so excitement is derived from it").

[0069] Furthermore, as a specific color image 34a, green has the images of "peace of mind," "safety," "relaxation," and "fairness," as described above, and the inventor displayed green on the other side (negative side) of one coordinate axis (x-axis) as a representative color representing "stability" on one coordinate axis (x-axis) (the inventor decided to display green as a representative color representing stability, based on images such as "feeling at ease and feeling stable," "being in a safe situation and having a stable environment," "relaxed and feeling calm and stable," "being evaluated fairly and having a stable position," and "being in nature and feeling calm and stable").

[0070] Furthermore, as a specific color image 34a, yellow has the images of "active," "lively," and "children" as described above, and the inventor displayed yellow on one side (positive side) of the other coordinate axis (y-axis) as a representative color that represents "activity" on the other coordinate axis (y-axis) (the inventor decided to display yellow as a representative color that represents activity, based on images such as "moving around actively" and "children moving around energetically").

[0071] Furthermore, blue has the image of "calmness," "concentration," "intellect," and "intellect" as a specific color image 34a, and the inventor displayed blue on the other side (negative side) of the other coordinate axis (y-axis) as a representative color that represents "calmness" on the other coordinate axis (y-axis) (the inventor decided to display blue as a representative color that represents calmness, based on images such as "concentrating in a quiet environment and performing intellectual activities").

[0072] Furthermore, the display means 49 displays white on the line segment L generated by the line segment generating means 45.

[0073] That is, the line segment L is generated so as to pass through positions on the coordinate axis that are spaced apart from the red, yellow, green, and blue positions by the distance a, with the same spacing as that between red, yellow, green, and blue and black, and is displayed at the outermost position on the coordinate axis so as to surround the other colors (that is, the display means 49 displays white at a position on the coordinate axis that is spaced apart from the red, yellow, green, and blue positions).

[0074] The white color displayed on this line segment L has the image of "universal appeal" and "purity" as a specific color image 34a. It also has the greatest brightness of all colors and is displayed at the outermost position on the coordinate system (colors are set so that the brightness of the colors increases from the origin to the outermost position). By displaying white at the outermost position on the coordinate system, it creates an image of surrounding and accepting all colors and images in harmony. In this embodiment, as shown in FIGS. 3 and 4, white is displayed at seven points on the coordinate system, but it may also be displayed at any position on the line segment L. That is, as described above, the coordinate data of white is all the coordinate data included in the line segment L.

[0075] The correlation between the arrangement of black, red, yellow, green, blue, and white is also related to the correlation between the wavelength and reflectance of each color. In other words, the wavelength and reflectance of a color are thought to be closely related to the image that the color evokes.

[0076] Furthermore, as shown in Figure 4, the display means 49 displays orange, yellow-green, purple, crimson, khaki, brown, navy blue, and gray set by the second color setting means 43 as second colors 31b at positions corresponding to the coordinate data calculated by the second color coordinate data calculation means 46.

[0077] Furthermore, the display means 49 displays the beige, light blue, light purple, and pink colors set by the second color setting means 43 as second colors 31b at positions corresponding to the coordinate data calculated by the second color coordinate data calculation means 46.

[0078] In other words, orange, which is obtained by fusing red and yellow equally, has the images of "standing out" and "fun" as concrete color image 34b, and has the image of a fusion of red and yellow (red has the image of "standing out" as concrete color image 34a, and yellow has the image of "fun" as concrete color image 34a).

[0079] Furthermore, the yellow-green color obtained by fusing yellow and green equally has the image of "youthful (children are youthful)" and "nature" as concrete color image 34b, and has an image of a fusion of yellow and green (yellow has the image of "children" as concrete color image 34a, and green has the image of "nature" as concrete color image 34a).

[0080] Furthermore, purple, which is obtained by fusing blue and red equally, has the image of "meditation (meditation is done with concentration)" and "feminine" as concrete color image 34b, and has an image of a fusion of blue and red (blue has the image of "concentration" as concrete color image 34a, and red has the image of "feminine" as concrete color image 34a).

[0081] Furthermore, crimson, which is obtained by blending black and red equally, has the image of ``elegance'' and ``richness (dark)'' as specific color image 34b, and has the image of a blend of black and red (black has the image of ``elegance'' as specific color image 34a, and red has the image of ``dark'' as specific color image 34a).

[0082] Furthermore, the color khaki, which is obtained by fusing black and yellow equally, has the image of being "urban" and "avant-garde (ahead of its time)" as specific color image 34b, and has the image of being a fusion of black and yellow (black has the image of being "urban" as specific color image 34a, and yellow has the image of being "innovative" or "ahead of its time" as specific color image 34a).

[0083] Furthermore, the brown obtained by blending crimson and khaki equally has the images of "Japanese" and "Iki" ("Iki" means "refined" and "sophisticated" and is related to the image of an urbane area) as specific color image 34b, and specific color image 34b also has the image of a blend of crimson and khaki (crimson has the images of "Japanese" and "Iki" as specific color image 34b, and khaki has the image of "urban" as specific color image 34b).

[0084] Furthermore, navy blue, which is obtained by fusing black and blue equally, has the images of "concentration" and "nobility" as specific color image 34b, and specific color image 34b also has the image of a fusion of black and blue (black has the image of "luxury" as specific color image 34b, and blue has the image of "concentration" as specific color image 34b).

[0085] Furthermore, gray, which is obtained by equally blending black and crimson, black and khaki, black and brown, and black and navy blue, has the images of ``chic'' and ``calmness'' as specific color image 34b, and specific color image 34b also has an image of a fusion of black with crimson, khaki, brown, or navy blue (black has the image of ``urban'' as specific color image 34a, crimson has the image of ``chic'' as specific color image 34a, khaki has the image of ``avant-garde'' as specific color image 34b, brown has the image of ``chic'' as specific color image 34b, and navy blue has the image of ``calmness'' as specific color image 34b).

[0086] Furthermore, the beige color obtained by fusing orange and white equally has the image of "warmth" as concrete color image 34b, and concrete color image 34b also has the image of a fusion of orange and white (orange has the image of "warmth" as concrete color image 34b, and white has the image of surrounding all colors, accepting them and harmonizing with them, so even when orange and white are fusing, the image of orange is respected and carried over as is).

[0087] Furthermore, light blue, which is obtained by fusing blue and white equally, has the images of "clean," "refreshing," and "boyish (masculine)" as concrete color image 34b, and concrete color image 34b also has an image of fusing blue and white (blue has the images of "clean," "refreshing," and "masculine" as concrete color image 34a, and white respects and inherits that image as described above).

[0088] Furthermore, light purple, which is obtained by fusing purple and white equally, has the images of "popular with women" and "elegant" as specific color image 34b, and specific color image 34b also has an image of fusing purple and white (purple has the image of "elegant" as well as "feminine" as specific color image 34b, and white respects and inherits that image as described above).

[0089] Furthermore, pink, which is obtained by fusing red, purple, and white equally, has a "feminine" image as concrete color image 34b, and concrete color image 34b also has an image of fusing red, purple, and white (red and purple have a "feminine" image as concrete color images 34a, 34b, and white respects and inherits that image as described above).

[0090] Furthermore, the display means 49 displays the specific color images 34a and 34b set by the first specific color image setting means 47 in association with the first color and the second color.

[0091] Next, the processing flow of the color display device 1 will be described in detail with reference to the flowchart of FIG.

[0092] That is, first, in step S10, the first color setting means 41, the first color coordinate data setting means 42, the second color setting means 43, the directionality setting means 44, and the first specific color image setting means 47 read and set the first color 31a, the coordinate data 33a of the first color 31a, the second color 31b, the image directionality 32, and the specific color images 34a, 34b stored in the memory means 3.

[0093] Next, in step S20, the line segment generating means 45 generates a line segment L. Subsequently, in step S30, the second color coordinate data calculation means 46 calculates the coordinate data 33b of the second color 31b based on the coordinate data 33a of the first color 31a set in step S10.

[0094] Next, in step S40, the display means 49 displays the first color 31a and the second color 31b on the coordinates on the display device 5 based on the first color 31a set in step S10, the coordinate data 33a of the first color 31a, the second color 31b, the image directionality 32, and the coordinate data 33b of the second color 31b calculated in step S30.

[0095] Next, in step S50, the display means 49 causes the display device 5 to display the specific color images 34a and 34b set in step S10.

[0096] [Second embodiment] Next, a second embodiment of the present invention will be described. The second embodiment of the present invention shows a configuration in which various means are added to the first embodiment.

[0097] 6, the color display device 1' of the second embodiment includes an input device 2' (hereinafter, the input device may be referred to as input means) having a keyboard, mouse, a predetermined input interface, etc.; a storage device 3' (hereinafter, the storage device may be referred to as storage means) having a memory, a hard disk, etc.; an arithmetic unit 4' (hereinafter, the arithmetic unit may be referred to as arithmetic means) having a processor such as a CPU, DSP, MPU, GPU, etc.; and a display device 5' (hereinafter, the storage device may be referred to as display means) having a display screen, etc. As shown in FIG. 7, the storage device 3' stores a first color 31a, a second color 31b, an image directionality 32, coordinate data 33a of the first color, a specific color image 34a of the first color 31a, a specific color image 34b of the second color 31b, as well as a third color 31c and coordinate data 33c corresponding to the third color 31c. The storage device 3' functions as a computer-readable storage medium.

[0098] As shown in FIG. 6, the calculation device 4′ has, in addition to the means 41 to 49 of the first embodiment, a third color setting means 50, a third color coordinate data setting means 51, a position designation means 53, a designated position coordinate data calculation means 54, a first coordinate data position difference calculation means 55, a first coordinate data extraction means 56, a designated position color setting means 57, a second coordinate data position difference calculation means 58, a second coordinate data extraction means 59, a second specific color image setting means 60, and an influence calculation means 61.

[0099] That is, the third color setting means 50 reads out and sets the third color 31c stored in the storage means 3'.

[0100] The third color coordinate data setting means 51 reads and sets the coordinate data 33c of the third color 31c stored in the storage means 3'.

[0101] The position designation means 53 designates an arbitrary position on the coordinate system on the display device 5' via the input device 2' or the like (the input device 2' is operated by an operator).

[0102] The designated position coordinate data calculation means 54 calculates coordinate data at an arbitrary position designated by the position designation means 53 .

[0103] The first coordinate data position difference means 55 calculates the position difference between the coordinate data at an arbitrary position calculated by the designated position coordinate data calculation means 54 and the coordinate data 33c corresponding to the third color 31c.

[0104] The first coordinate data extraction means 56 extracts coordinate data 33c corresponding to the third color 31c at a position closest to the coordinate data at the arbitrary position based on the position difference calculated by the first coordinate data position difference calculation means 55.

[0105] The designated position color setting means 57 sets the third color 31c corresponding to the coordinate data 33c extracted by the third color coordinate data extraction means 56 as the color at the designated arbitrary position.

[0106] The second coordinate data position difference calculation means 58 calculates the position difference between the coordinate data at a specified arbitrary position calculated by the specified position coordinate data calculation means 54 and the coordinate data 33a, 33b of the first color 31a and / or the second color 31b.

[0107] The second coordinate data extraction means 59 extracts coordinate data 33a, 33b corresponding to the first color 31a and / or the second color 31b at a position closest to the coordinate data at the arbitrary position designated based on the position difference calculated by the second coordinate data position difference calculation means 58. Alternatively, the second coordinate data extraction means 59 extracts a plurality of pieces of coordinate data 33a, 33b corresponding to the first color 31a and / or the second color 31b at a position relatively close to the coordinate data at the arbitrary position designated based on the position difference calculated by the second coordinate data position difference calculation means 58.

[0108] The second specific color image setting means 60 reads out and sets specific color images 34a, 34b of the first color 31a and / or the second color 31b corresponding to the coordinate data extracted by the second coordinate data extraction means 59 from the storage means 3.

[0109] When multiple specific color images 34a, 34b are set by the second specific color image setting means 60 for a color at a specified arbitrary position, the influence calculation means 61 calculates the influence of each of the specific color images 34a, 34b based on the position difference corresponding to the coordinate data extracted by the second coordinate data extraction means 59.

[0110] More specifically, when the position difference corresponding to the multiple set specific color images A is α and the position difference corresponding to the multiple set specific color images B is β, the influence calculation means 61 calculates the influence using the following formula. [Number 1] Influence of specific color image A = 1-α / (α+β) [Number 2] Influence of specific color image B = 1-β / (α+β)

[0111] In the second embodiment, in addition to each display in the first embodiment, the display means 49 displays the third color 31c set by the designated position color setting means 57 as the color at any position designated by the position designation means 53.

[0112] The display means 49 also displays the specific color images 34a and 34b set by the second specific color image setting means 60 in association with the color at any designated position. Furthermore, the display means 49 displays the influence calculated by the influence calculation means 61 in association with the specific color image set by the second specific color image setting means 60.

[0113] Next, the processing flow of the color display device 1' in the second embodiment will be described in detail with reference to the flowchart of FIG.

[0114] That is, in step S100, which follows step S50 in the first embodiment, the third color setting means 50 and the third color coordinate data setting means 51 read out the third color 31c and the coordinate data 33c of the third color 31c from the storage means 3 and set them.

[0115] Next, in step S110, the position designation means 53 designates an arbitrary position on the coordinate system. The position designation by the position designation means 53 can be performed while displaying an arrow 70 on the display device 5' via the input device 2', as shown in Fig. 9. The position of this arrow 70 can be, for example, a midpoint between the green and blue colors.

[0116] Subsequently, in step S120, the designated position coordinate data calculation means 54 calculates the coordinate data of the arbitrary position designated in step S110. Next, in step S130, the coordinate data position difference calculation means 55 calculates the position difference between the coordinate data at the arbitrary position calculated in step S120 and the coordinate data 33c corresponding to the third color 31c set in step S100.

[0117] Then, in step S140, the third color coordinate data extracting means 56 extracts the coordinate data 33c corresponding to the third color 31c at the position closest to the coordinate data at the arbitrary position based on the position difference calculated in step S130.

[0118] Next, in step S150, the designated position color setting means 57 sets the third color 31c corresponding to the coordinate data 33c extracted in step S140 as the color at the designated arbitrary position.

[0119] Next, in step S160, the second coordinate data position difference calculation means 58 calculates the position difference between the coordinate data at the specified arbitrary position calculated in step S120 and the coordinate data 33a, 33b of the first color 31a and / or the second color 31b.

[0120] Next, in step S170, the second coordinate data extraction means 59 extracts coordinate data 33a, 33b corresponding to the first color 31a and / or the second color 31b at a position closest to the coordinate data at the arbitrary position specified based on the position difference calculated in step 160. Alternatively, the second coordinate data extraction means 59 extracts multiple pieces of coordinate data 33a, 33b corresponding to the first color 31a and / or the second color 31b at positions relatively close to the coordinate data at the arbitrary position specified based on the position difference calculated in step 160.

[0121] Then, in step S180, the second specific color image setting means 60 reads out and sets the specific color images 34a, 34b of the first color 31a and / or the second color 31b corresponding to the coordinate data extracted in step S170 from the storage means 3.

[0122] Next, in step S190, when multiple specific color images 34a, 34b are set by the second specific color image setting means 60 for the color at a specified arbitrary position, the influence calculation means 61 calculates the influence of each of the specific color images 34a, 34b based on the position difference corresponding to the coordinate data extracted by the second coordinate data extraction means 59 using equations 1 and 2.

[0123] Next, in step S200, the display means 49 displays the third color 31 set in step S150 as the color at an arbitrary position designated by the position designation means 53, as shown in Fig. 10. This display can display, for example, a cyan color as an intermediate position between green and blue.

[0124] Furthermore, the display means 49 displays the specific color images 34a and 34b set in step S180 as specific color images of the color (blue-green) at any position designated by the position designation means 53.

[0125] Furthermore, the display means 49 displays the influence of the specific color images 34 a and 34 b set in step 190 in correspondence with the specific color image set by the second specific color image setting means 60 .

[0126] [Color display object] A color display object can be generated by the color display device 1, 1' in the first and second embodiments described above. That is, the color display device 1, 1' is provided with a printing means, and the display by the display means 49, 49' described above is printed on paper or the like by the printing means to generate a display object.

[0127] As shown in FIGS. 4 and 10, this color display object is obtained by taking the directionality 32 of the image of the color as the coordinate axis and displaying the color on the coordinate in correspondence with the directionality 32 of the image.

[0128] In other words, the image directionality 32 includes the directionality of the first image and the directionality of the second image, and further includes a first color as a color to be displayed on the coordinates, and the first color includes black as an achromatic color and red, green, yellow, and blue as chromatic colors, and the color display object displays one of the coordinate axes (x-axis) as the coordinate axis that indicates the directionality of the first image and the other coordinate axis (y-axis) as the coordinate axis that indicates the directionality of the second image, and further displays black at the origin, which is the center of the coordinate axes, red is displayed at the (a,0) position on one side of the one coordinate axis (x-axis), i.e., the positive side, green is displayed at the (-a,0) position on the other side of the one coordinate axis (x-axis), i.e., the negative side, yellow is displayed at the (0,a) position on one side of the other coordinate axis (y-axis), i.e., the positive side, and blue is displayed at the (0,-a) position on the other side of the other coordinate axis (y-axis), i.e., the negative side.

[0129] The color display object displays orange, obtained by fusing red and yellow equally, at a position corresponding to the red coordinate data and the yellow coordinate data (a position obtained by averaging the red coordinate data and the yellow coordinate data), yellow-green, obtained by fusing yellow and green equally, at a position corresponding to the yellow coordinate data and the green coordinate data (a position obtained by averaging the yellow coordinate data and the green coordinate data), purple, obtained by fusing blue and red equally, at a position corresponding to the blue coordinate data and the red coordinate data (a position obtained by averaging the blue coordinate data and the red coordinate data), crimson, obtained by fusing black and red equally, at a position corresponding to the black coordinate data and the red coordinate data (a position obtained by averaging the black coordinate data and the red coordinate data), and khaki, obtained by fusing black and yellow equally, at a position corresponding to the yellow coordinate data and the black coordinate data. The brown obtained by equally blending crimson and khaki is displayed at a position corresponding to the coordinate data of crimson and khaki (a position where the coordinate data of crimson and khaki are averaged), the navy blue obtained by equally blending black and blue is displayed at a position corresponding to the coordinate data of black and blue (a position where the coordinate data of black and blue are averaged), and the gray obtained by equally blending crimson, khaki, brown, and navy blue with black is displayed at a position corresponding to the coordinate data of crimson, khaki, brown, and navy blue with black (a position where the coordinate data of crimson, khaki, brown, and navy blue with black are averaged).

[0130] Furthermore, the color display object includes white as an achromatic color in the first color 31a, and displays a line segment L passing through positions on the coordinate axis spaced outward from the positions of red, yellow, green, and blue at intervals correlated with the interval a between each of red, yellow, green, and blue and black, more specifically at intervals equal to the interval a, and displays white on the line segment L.

[0131] In addition, the color display object displays beige, obtained by equally fusing orange and white, at a position corresponding to the coordinate data of orange and white (a position obtained by averaging the coordinate data of orange and white), light blue, obtained by equally fusing blue and white, at a position corresponding to the coordinate data of blue and white (a position obtained by averaging the coordinate data of blue and white), light purple, obtained by equally fusing purple and white, at a position corresponding to the coordinate data of purple and white (a position obtained by averaging the coordinate data of purple and white), and pink, obtained by equally fusing red, purple, and white, at a position corresponding to the coordinate data of red, purple, and white (a position obtained by averaging the coordinate data of red, purple, and white).

[0132] Furthermore, the color display object has one coordinate axis (x-axis) that indicates the directionality of the first image as the coordinate axis representing excitement or stability, with one side of the first coordinate axis (x-axis), i.e., the positive side, across the origin, representing excitement, and the other side of the coordinate axis (x-axis), i.e., the negative side, representing stability; the other coordinate axis (y-axis) that indicates the directionality of the second image as the coordinate axis representing movement or stillness, with one side of the other coordinate axis (y-axis), i.e., the positive side, across the origin, representing movement, and the other side of the coordinate axis (y-axis), i.e., the negative side, representing stillness; red is displayed on one side of the first coordinate axis (x-axis), i.e., the positive side; green is displayed on the other side of the first coordinate axis (x-axis), i.e., the negative side, representing stability; yellow is displayed on one side of the other coordinate axis (y-axis), i.e., the positive side, representing movement, and blue is displayed on the other side of the other coordinate axis (y-axis), i.e., the negative side, representing stillness. The color display object displays specific color images 34a and 34b in association with the first color 31a and / or the second color 31b.

[0133] [program] Each of the means in the color display device 1 described above can realize its function by executing a program.

[0134] That is, the program is stored in a storage device (computer-readable storage medium) of the color display device 1, 1', and causes the computer of the color display device 1, 1', which takes the image directionality 32 of a color as a coordinate axis and displays the color on the coordinate in correspondence with the image directionality 32, to function as the storage means 3, 3' and the display means 4, and the image directionality 32 includes the first image directionality and the second image directionality, and further includes the first color 31a as the color to be displayed on the coordinate, and the first color 31a is red, green, etc. , yellow, and blue, the storage means 3, 3' are caused to function to store image directionality 32 and color coordinate data 33a corresponding to the image directionality 32, the display means 49 is caused to function to display one of the coordinate axes as a coordinate axis indicating the directionality of the first image and the other coordinate axis as a coordinate axis indicating the directionality of the second image, and further the display means 49 is caused to function to display red, green, yellow, and blue on the axes of the coordinate axes, more specifically, The image directionality 32 includes a first image directionality and a second image directionality, and further includes a first color 31a as a color to be displayed on the coordinates, and the first color 31a includes black, red, green, yellow, and blue. The storage means 3, 3' is made to function to store the image directionality 32 and color coordinate data 33a corresponding to the image directionality 32. The display means 49 is made to display one of its coordinate axes as a coordinate axis indicating the first image directionality and the other coordinate axis as a coordinate axis indicating the second image directionality. Further, the display means 49 is configured to display black at the origin, which is the center of the coordinate axes, red on one side of one coordinate axis, green on the other side of one coordinate axis, yellow on one side of another coordinate axis, and blue on the other side of the other coordinate axis. More specifically, the above-mentioned storage means 3, 3', first color setting means 41, first color coordinate data setting means 42, second color setting means 43, third color setting means 50,It can function as a third color coordinate data setting means 51, a direction setting means 44, a line segment generating means 45, a second color coordinate data calculation means 46, a first specific color image setting means 47, a position designation means 53, a designated position coordinate data calculation means 54, a first coordinate data position difference calculation means 55, a first coordinate data extraction means 56, a designated position color setting means 57, a second coordinate data position difference calculation means 58, a second coordinate data extraction means 59, a second specific color image setting means 60, an influence degree calculation means 61, and a display means 49.

[0135] The program may be provided stored in a computer-readable storage medium such as a CD-ROM, DVD, or semiconductor memory, and may be read from the CD-ROM or the like and stored in a storage device.

[0136] As described above, according to the present invention, the display means 49 displays one of the coordinate axes (x-axis) as the coordinate axis indicating the directionality of the first image, and the other coordinate axis (y-axis) as the coordinate axis indicating the directionality of the second image.Furthermore, the display means 49 displays black at the origin, which is the center of the coordinate axes, red on one side (positive side) of one coordinate axis (x-axis), green on the other side (negative side) of one coordinate axis (x-axis), yellow on one side (positive side) of the other coordinate axis (y-axis), and blue on the other side (negative side) of the other coordinate axis (y-axis).Therefore, black, red, green, yellow, and blue are displayed on the coordinate axes indicating the directionality of the first and second images, and the directionality of the change in image between these colors can be easily grasped.

[0137] The second color coordinate data calculation means 46 calculates coordinate data of an orange color obtained by equally fusing red and yellow based on the coordinate data of red and yellow, calculates coordinate data of a yellow-green color obtained by equally fusing yellow and green based on the coordinate data of yellow and green, calculates coordinate data of a purple color obtained by equally fusing blue and red based on the coordinate data of blue and red, calculates coordinate data of a crimson color obtained by equally fusing black and red based on the coordinate data of black and red, calculates coordinate data of a khaki color obtained by equally fusing black and yellow based on the coordinate data of yellow and black, and calculates coordinate data of a brown color obtained by equally fusing crimson and the khaki color based on the coordinate data of crimson. The coordinate data of navy blue, obtained by equally blending black and blue, is calculated based on the coordinate data of black and the coordinate data of blue. The coordinate data of gray, obtained by equally blending crimson, khaki, brown, and navy blue with black, is calculated based on the coordinate data of crimson, the coordinate data of khaki, the coordinate data of brown, the coordinate data of navy blue, and the coordinate data of black. Display means 49 displays orange, yellow-green, purple, crimson, khaki, brown, navy blue, and gray as second colors 31b at positions corresponding to the coordinate data 33b calculated by second color coordinate data calculation means 46, so that the direction of the change in image between colors can be grasped even more easily. Furthermore, based on black, red, green, yellow and blue, orange, yellow-green, purple, crimson, khaki, brown, navy blue and gray can be automatically displayed at appropriate positions on the coordinate system, and by changing the coordinate data of the basic black, red, green, yellow and blue, orange, yellow-green, purple, crimson, khaki, brown, navy blue and gray can be automatically displayed in accordance with the positions of the changed coordinate data.

[0138] Furthermore, the first color includes white, and has a line segment generating means 45 that generates line segments L so that the line segments L pass through positions on the coordinate axis spaced outward from the positions of red, yellow, green, and blue at intervals that correlate with the interval a between red, yellow, green, blue, and black, more specifically, at intervals equal to the interval a, and the display means 49 displays white on the line segment L generated by the line segment generating means 45.Therefore, white can be automatically displayed at an appropriate position on the coordinate system based on black, red, green, yellow, and blue.For example, even if the coordinate data of black, red, green, yellow, and blue is changed, white can be automatically displayed in accordance with the position of the changed coordinate data.

[0139] In addition, the second color coordinate data calculation means 46 calculates coordinate data for beige, obtained by blending orange and white equally, based on the coordinate data for orange and white; calculates coordinate data for light blue, obtained by blending blue and white equally, based on the coordinate data for blue and white; calculates coordinate data for light purple, obtained by blending purple and white equally, based on the coordinate data for purple and white; and calculates coordinate data for pink, obtained by blending red, purple, and white equally, based on the coordinate data for red, purple, and white. The display means 49 displays beige, light blue, light purple, and pink as second colors 31b at positions corresponding to the coordinate data 33b calculated by the second color coordinate data calculation means 46, respectively. This makes it easier to grasp the directionality of the change in image between colors. In addition, it is possible to automatically display orange, obtained by fusing white, red and yellow, blue, purple, obtained by fusing blue and red, and beige, light blue, light purple, and pink at appropriate positions on the coordinate system based on red, and by changing the coordinate data of the basic white, red, yellow, and blue, it is possible to automatically display beige, light blue, light purple, and pink in accordance with the positions of the changed coordinate data.

[0140] In addition, the colors displayed by this embodiment, black, white, red, green, yellow, blue, orange, yellow-green, purple, crimson, khaki, brown, navy blue, gray, beige, light blue, lilac, and pink, are, based on the inventor's experience, colors that are particularly frequently used in the fashion, branding, and interior design fields, and have been adopted as colors to be constantly displayed by the color display device 1, 1'.

[0141] In addition, the display means 49 sets one coordinate axis indicating the directionality of the first image as a coordinate axis representing excitement or stability, with one side of the first coordinate axis representing excitement and the other side of the coordinate axis representing stability across the origin, and sets another coordinate axis indicating the directionality of the second image as a coordinate axis representing movement or stillness, with one side of the other coordinate axis representing movement and the other side of the coordinate axis representing stillness across the origin, and displays red on one side of the first coordinate axis as a color representing excitement, green on the other side of the first coordinate axis as a color representing stability, yellow on one side of the other coordinate axis as a color representing movement, and blue on the other side of the other coordinate axis as a color representing stillness, so that the directionality of the change in image between the colors can be clearly grasped.

[0142] Furthermore, the display means 49 displays the specific color images 34a, 34b set by the first specific color image setting means 47 in correspondence with the first color 31a and / or the second color 31b, so that the direction of image change between the colors can be grasped in detail based on the specific color images 34a, 34b.

[0143] Furthermore, the position designation means 53 designates an arbitrary position on the coordinate system, the designated position coordinate data calculation means 54 calculates coordinate data at the arbitrary position designated by the position designation means 53, the first coordinate data position difference calculation means 55 calculates the position difference between the coordinate data calculated by the designated position coordinate data calculation means 54 and the coordinate data 33c corresponding to the third color 31c, the first coordinate data extraction means 56 extracts the coordinate data 33c corresponding to the third color 31c at a position closest to the coordinate data at the arbitrary position designated based on the position difference calculated by the first coordinate data position difference calculation means 55, the designated position color setting means 57 sets the third color 31c corresponding to the coordinate data extracted by the first coordinate data extraction means 56 as the color at the arbitrary position designated, and the display means 49 displays the set third color 31c as the color at the arbitrary position designated by the position designation means 53. Therefore, it is possible to easily display the color at an arbitrary position and also to easily grasp the image that the color has.

[0144] Further, the second coordinate data position difference calculation means 58 calculates the position difference between the coordinate data at the designated arbitrary position calculated by the designated position coordinate data calculation means 54 and the coordinate data 33a, 33b of the first color 31a and / or the second color 31b, and the second coordinate data extraction means 59 extracts coordinate data corresponding to the first color and / or the second color at a position closest to the coordinate data at the designated arbitrary position based on the position difference calculated by the second coordinate data position difference calculation means 58, or extracts a plurality of coordinate data corresponding to the first color 31a and / or the second color 31b at positions relatively close to the coordinate data at the designated arbitrary position, and The specific color image setting means 60 reads out and sets the specific color images 34a, 34b of the first color 31a and / or second color 31b corresponding to the coordinate data extracted by the second coordinate data extraction means 59 from the storage means 3', and the display means 49 displays the specific color image set by the second specific color image setting means 60 in correspondence with the color at the specified arbitrary position.This makes it possible to easily grasp the specific color image of the color at the specified arbitrary position using the specific color images 34a, 34b of the first color 31a and second color 31b, which are basic colors in color coordination and color image strategy.

[0145] In addition, the device has an influence calculation means 61 that calculates the influence of each of the multiple specific color images set by the second specific color image setting means 60 on the color at a specified arbitrary position based on the position difference calculated by the second coordinate data position difference calculation means 58, which position difference corresponds to the coordinate data extracted by the second coordinate data extraction means 59, and the display means 49 displays the influence calculated by the influence calculation means 61 in correspondence with the specific color image set by the second specific color image setting means 60, so that the specific color image of the color at a specified arbitrary position can be grasped even more easily using the specific color images 34a, 34b of the first color 31a and the second color 31b.

[0146] It should be noted that the present invention is not limited to the above-described embodiment, and various modifications and applications are possible. For example, in the above-described embodiment, the line segment L is generated so as to pass through positions on the coordinate axis that are spaced apart by the distance a from the positions of red, yellow, green, and blue, at intervals equal to the distance a between each of the colors red, yellow, green, and blue and black, but any interval may be used as long as it is correlated, and the interval may be smaller or larger than the distance a, or may even be different for each color.

[0147] Furthermore, as shown in FIG. 11, the color display device 1, 1' and the terminal device 100 of the user who uses the color display device 1, 1' may be made accessible via a wireless or wired communication line 110, more specifically, a network communication line 110, and a color display system 1A may be constituted by the color display device 1, 1', the terminal device 100, and the communication line 110.

[0148] That is, the terminal device 100 has a general configuration as a computer, and as shown in FIG. 12, it comprises an input device 102 having a keyboard, mouse, a predetermined input interface, etc. (hereinafter, the input device may be referred to as input means), a storage device 103 having a memory, a hard disk, etc. (hereinafter, the storage device may be referred to as storage means), an arithmetic device 104 having a processor such as a CPU, DSP, MPU, GPU, etc. (hereinafter, the arithmetic device may be referred to as arithmetic means), and a display device 105 having a display screen such as a display (hereinafter, the display device may be referred to as display means).

[0149] In other words, the calculation devices 4, 4' of the color display devices 1, 1' receive predetermined input from the terminal device 100 via the communication line 110 and the input devices 2, 2', and, based on this input, cause the first color setting means 41, the first color coordinate data setting means 42, the second color setting means 43, the direction setting means 44, the line segment generation means 45, the second color coordinate data calculation means 46, the first specific color image setting means 47, the display means 49, the third color setting means 50, the third color coordinate data setting means 51, the position designation means 53, the designated position coordinate data calculation means 54, the first coordinate data position difference calculation means 55, the first coordinate data extraction means 56, the designated position color setting means 57, the second coordinate data position difference calculation means 58, the second coordinate data extraction means 59, the second specific color image setting means 60, and the influence calculation means 61 to function, thereby enabling various displays to be produced not only on the display devices 5, 5' but also on the display device 105 of the terminal device 100.

[0150] The color display device 1, 1' may be a predetermined web server rather than a server device. That is, the terminal device 100 may store a web browser program in the storage device 103, execute the web browser to start the web browser, and access the color display device 1, 1', which is a web server, via the web browser using a predetermined communication protocol, and display the web page of a website based on the color display device 1, 1' on the display device 105.

[0151] Here, the web browser may include Internet Explorer, Safari, Chrome, Android Browser, Opera, Firefox, etc.

[0152] The communication protocol may be a protocol compatible with HTTP or HTTPS. [Industrial Applicability]

[0153] This invention allows colors to be displayed on a coordinate system in accordance with the direction of an image, making a significant contribution to the development of various industries that use color, including the design industry. [Explanation of symbols]

[0154] a:Spacing L: Line segment 1,1´: Color display device 2,2´: Input device 3,3´: Storage device (storage means) 4,4´: Arithmetic device (arithmetic means) 5,5´:Display device 31a: First Color 31b: Second color 31c: The third color 32: Image direction 33a: Coordinate data of the first color 33b: Second color coordinate data 33c: Coordinate data of the third color 34a: Specific color image of the first color 34b: Specific color image of the second color 41: First color setting means 42: First color coordinate data setting means 43: Second color setting means 44:Direction setting means 45: Line generation method 46: Second color coordinate data calculation means 47: First specific color image setting means 49:Display means 50: Third color setting means 51: Third color coordinate data setting means 53: Position specification means 54: Designated position coordinate data calculation means 55: First coordinate data position difference calculation means 56: First coordinate data extraction means 57: Specified position color selection means 58: second coordinate data position difference calculation means 59: Second coordinate data extraction means 60: Second specific color image setting means 61: Influence calculation means 70: Arrow 100: Terminal device 102: Input device 103:Storage device 104: Arithmetic device 105:Display device 110:Communication line

Claims

1. A color display device that takes the directionality of an image that a color has as a coordinate axis and displays the color on the coordinate in correspondence with the directionality of the image, a display means in a computing device having a processor and a storage means having a memory, wherein the image directionality includes a first image directionality and a second image directionality, and further includes a first color as a color to be displayed on the coordinates, the first color including red, green, yellow, and blue; The storage means stores the directionality of the image and the coordinate data of the color, and the display means displays one of the coordinate axes as a coordinate axis indicating a directionality of the first image, and the other coordinate axis as a coordinate axis indicating a directionality of the second image, Furthermore, the display means displays the red, green, yellow, and blue colors on the coordinate axes.

2. A color display device that takes the directionality of an image that a color has as a coordinate axis and displays the color on the coordinate in correspondence with the directionality of the image, a display means in a computing device having a processor and a storage means having a memory, wherein the directionality of the image includes a directionality of a first image and a directionality of a second image, and further includes a first color as a color to be displayed on the coordinates, the first color including black, red, green, yellow, and blue; The storage means stores the directionality of the image and the coordinate data of the color, and the display means displays one of the coordinate axes as a coordinate axis indicating a directionality of the first image, and the other coordinate axis as a coordinate axis indicating a directionality of the second image, Furthermore, the display means The black color is displayed at the origin, which is the center of the coordinate axis; The red color is displayed on one side of the one coordinate axis; The green color is displayed on the other side of the one coordinate axis, The yellow color is displayed on one side of the axis of the other coordinate axis, A color display device that displays the blue color on the other side of the other coordinate axis.

3. the first color includes white; 3. The color display device according to claim 1, wherein the display means displays the white color at a position spaced outward from the positions of the red, yellow, green, and blue colors.

4. the first color includes white; a line segment generating means for generating line segments so as to pass through positions on the coordinate axes spaced outward from the positions of the red, yellow, green, and blue colors, 3. The color display device according to claim 1, wherein the display means displays the white color on the line segment generated by the line segment generating means.

5. a second color coordinate data calculation means for calculating second color coordinate data based on the first color coordinate data; 5. A color display device according to claim 4, wherein said display means displays said second color at a position corresponding to the coordinate data calculated by said second color coordinate data calculation means.

6. the second color is orange, yellow-green, purple, crimson, khaki, brown, navy blue, or gray, and a second color coordinate data calculation means is provided for calculating coordinate data of the second color; The second color coordinate data calculation means calculating the orange coordinate data based on the red coordinate data and the yellow coordinate data; calculating the coordinate data of the yellow-green color based on the coordinate data of the yellow color and the coordinate data of the green color; calculating the purple coordinate data based on the blue coordinate data and the red coordinate data; calculating the crimson coordinate data based on the black coordinate data and the red coordinate data; calculating the coordinate data of the khaki color based on the coordinate data of the yellow color and the coordinate data of the black color; calculating the coordinate data of the brown color based on the coordinate data of the crimson color and the coordinate data of the khaki color; Calculating the coordinate data of the navy blue color based on the coordinate data of the black color and the coordinate data of the blue color; calculating the gray coordinate data based on the crimson coordinate data, the khaki coordinate data, the brown coordinate data, the navy blue coordinate data, and the black coordinate data; 5. The color display device according to claim 4, wherein the display means displays the orange, yellow-green, purple, crimson, khaki, brown, navy blue, and gray as the second colors at positions corresponding to the coordinate data calculated by the second color coordinate data calculation means.

7. The second color may further be beige, light blue, lilac, or pink; The second color coordinate data calculation means calculating the coordinate data of the beige color based on the coordinate data of the orange color and the coordinate data of the white color; calculating the coordinate data of the light blue color based on the coordinate data of the blue color and the coordinate data of the white color; calculating the coordinate data of the light purple color based on the coordinate data of the purple color and the coordinate data of the white color; calculating the pink coordinate data based on the red coordinate data, the purple coordinate data, and the white coordinate data; 7. The color display device according to claim 6, wherein the display means displays the beige, light blue, light purple, and pink as the second colors at positions corresponding to the coordinate data calculated by the second color coordinate data calculation means.

8. The storage means stores a specific color image of the first color and / or the second color, and a first specific color image setting means for reading and setting the specific color image from the storage means; 8. The color display device according to claim 7, wherein the display means displays the specific color image set by the first specific color image setting means in correspondence with the first color and / or the second color.

9. the storage means stores a third color and coordinate data corresponding to the third color, The device has a position designation means, a designated position coordinate data calculation means, a first coordinate data position difference calculation means, a first coordinate data extraction means, and a designated position color setting means, The position designation means designates an arbitrary position on the coordinate system, the designated position coordinate data calculation means calculates coordinate data at an arbitrary position designated by the position designation means, the first coordinate data position difference calculation means calculates a position difference between the coordinate data calculated by the designated position coordinate data calculation means and the coordinate data corresponding to the third color; the first coordinate data extraction means extracts coordinate data corresponding to the third color at a position closest to the coordinate data at the specified arbitrary position based on the position difference calculated by the first coordinate data position difference calculation means; the designated position color setting means sets the third color corresponding to the coordinate data extracted by the first coordinate data extraction means as a color at the designated arbitrary position; 9. The color display device according to claim 8, wherein said display means displays said set third color as a color at an arbitrary position designated by said position designation means.

10. The storage means stores a specific color image of the first color and / or the second color, and The apparatus has a second coordinate data position difference calculation means, a second coordinate data extraction means, and a second specific color image setting means, the second coordinate data position difference calculation means calculates a position difference between the coordinate data at the designated arbitrary position calculated by the designated position coordinate data calculation means and the coordinate data of the first color and / or the second color; the second coordinate data extraction means extracts coordinate data corresponding to the first color and / or the second color at a position closest to the coordinate data at the specified arbitrary position based on the position difference calculated by the second coordinate data position difference calculation means; the second specific color image setting means reads out from the storage means a specific color image of the first color and / or the second color corresponding to the coordinate data extracted by the second coordinate data extraction means and sets the specific color image; 10. The color display device according to claim 9, wherein said display means displays the specific color image set by said second specific color image setting means in correspondence with the color at said specified arbitrary position.

11. The storage means stores a specific color image of the first color and / or the second color, and The apparatus has a second coordinate data position difference calculation means, a second coordinate data extraction means, and a second specific color image setting means, the second coordinate data position difference calculation means calculates a position difference between the coordinate data at the designated arbitrary position calculated by the designated position coordinate data calculation means and the coordinate data of the first color and / or the second color; the second coordinate data extraction means extracts a plurality of coordinate data corresponding to the first color and / or the second color at positions relatively close to the coordinate data at the specified arbitrary position based on the position difference calculated by the second coordinate data position difference calculation means; the second specific color image setting means reads out from the storage means a specific color image of the first color and / or the second color corresponding to each of the plurality of coordinate data extracted by the second coordinate data extraction means and sets the specific color image; 10. The color display device according to claim 9, wherein said display means displays a plurality of specific color images set by said second specific color image setting means in correspondence with the color at said specified arbitrary position.

12. an influence degree calculation means for calculating the influence degree of each of the plurality of specific color images set on the color at the specified arbitrary position based on the position difference corresponding to the plurality of coordinate data extracted by the second coordinate data extraction means, 12. The color display device according to claim 11, wherein the display means displays the influence calculated by the influence calculation means in correspondence with each of a plurality of specific color images set by the second specific color image setting means.

13. the display means uses one coordinate axis indicating the directionality of the first image as a coordinate axis representing excitement or stability, and represents the excitement on one side of the one coordinate axis across an origin, and represents the stability on the other side of the coordinate axis; Another coordinate axis indicating the directionality of the second image is a coordinate axis representing movement or stillness, with the movement being represented on one side of the other coordinate axis across the origin, and the stillness being represented on the other side of the other coordinate axis, The red color is displayed on one side of the one coordinate axis as a color representing the excitement; The green color is displayed on the other side of the one coordinate axis as the color representing stability, The yellow color is displayed on one side of the other coordinate axis as a color representing the movement, 13. The color display device according to claim 12, wherein the blue color is displayed on the other side of the other coordinate axis as a color representing stillness.

14. A color display object, characterized in that it is generated by the color display device according to any one of claims 1 to 13.

15. A color display object that takes the directionality of an image that a color has as a coordinate axis and displays the color on the coordinate in correspondence with the directionality of the image, the image directionality includes a first image directionality and a second image directionality, and further includes a first color as a color to be displayed on the coordinates, the first color including red, green, yellow, and blue; one of the coordinate axes is displayed as a coordinate axis indicating a directionality of the first image, and the other coordinate axis is displayed as a coordinate axis indicating a directionality of the second image; The color display device further displays the red, green, yellow, and blue colors on the coordinate axes.

16. A color display object that takes the directionality of an image that a color has as a coordinate axis and displays the color on the coordinate in correspondence with the directionality of the image, the image directionality includes a first image directionality and a second image directionality, and further includes a first color as a color to be displayed on the coordinates, the first color including black, red, green, yellow, and blue; one of the coordinate axes is displayed as a coordinate axis indicating a directionality of the first image, and the other coordinate axis is displayed as a coordinate axis indicating a directionality of the second image; Furthermore, The black color is displayed at the origin, which is the center of the coordinate axis; The red color is displayed on one side of the one coordinate axis; The green color is displayed on the other side of the one coordinate axis, The yellow color is displayed on one side of the axis of the other coordinate axis, A color display object characterized in that the blue color is displayed on the other side of the axis of the other coordinate axis.

17. the first color includes white; 17. The color display according to claim 15, wherein the white color is displayed at a position spaced outward from the positions of the red, yellow, green, and blue colors.

18. the first color includes white; 17. A color display object according to claim 15 or claim 16, characterized in that line segments are displayed so as to pass through positions on the coordinate axis that are spaced outward from the positions of the red, yellow, green, and blue, respectively, and the white color is displayed on the line segments.

19. the second color being orange, lime green, purple, crimson, khaki, brown, navy blue, and gray; The orange color is displayed at a position corresponding to the red coordinate data and the yellow coordinate data, displaying the yellow-green color at a position corresponding to the coordinate data of the yellow color and the coordinate data of the green color; displaying the purple color at a position corresponding to the coordinate data of the blue color and the coordinate data of the red color; displaying the crimson color at a position corresponding to the coordinate data of the black color and the coordinate data of the red color; displaying the khaki color at a position corresponding to the coordinate data of the yellow color and the coordinate data of the black color; The brown color is displayed at a position corresponding to the coordinate data of the crimson color and the coordinate data of the khaki color, The navy blue is displayed at a position corresponding to the coordinate data of the black color and the coordinate data of the blue color, The color display object according to claim 18, characterized in that the gray is displayed at a position corresponding to the coordinate data of the crimson, the coordinate data of the khaki, the coordinate data of the brown, the coordinate data of the navy blue, and the coordinate data of the black.

20. The second color may further be beige, light blue, lilac, or pink; displaying the beige color at a position corresponding to the orange coordinate data and the white coordinate data; displaying the light blue color at a position corresponding to the coordinate data of the blue color and the coordinate data of the white color; displaying the light purple color at a position corresponding to the coordinate data of the purple color and the coordinate data of the white color; 20. The color display object according to claim 19, wherein the pink color is displayed at a position corresponding to the coordinate data of the red color, the coordinate data of the purple color, and the coordinate data of the white color.

21. 21. The color display object according to claim 19 or 20, wherein the specific color image is displayed in correspondence with the first color and / or the second color.

22. One coordinate axis showing the directionality of the first image is a coordinate axis representing excitement or stability, and one side of the one coordinate axis across the origin represents the excitement, and the other side of the coordinate axis represents the stability, Another coordinate axis indicating the directionality of the second image is a coordinate axis representing movement or stillness, with the movement being represented on one side of the other coordinate axis across the origin, and the stillness being represented on the other side of the other coordinate axis, The red color is displayed on one side of the one coordinate axis as a color representing the excitement; The green color is displayed on the other side of the one coordinate axis as the color representing stability, The yellow color is displayed on one side of the other coordinate axis as a color representing the movement, 22. The color display object according to claim 21, wherein the blue color is displayed on the other side of the other coordinate axis as a color representing the stillness.

23. A color display system that enables access to the color display device according to any one of claims 1 to 13 and a terminal device of a user who uses the color display device via a communication line, comprising: A color display system characterized in that the arithmetic unit of the color display device receives a predetermined input from the terminal device via the communication line, and causes the display means to function in response to the input and display on the display device of the terminal device.

24. The color display system according to claim 23, characterized in that the terminal device starts a web browser by executing a web browser program, and further accesses the color display device via the web browser using a communication protocol, and displays a web page of a website based on the color display device on the display device of the terminal device.

Citation Information

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