Apparatus and method for analyzing emotions and human relationships using hue, and a computer program for this purpose.
Patent Information
- Application Number
- JP2025136944
- Authority / Receiving Office
- JP · JP
- Patent Type
- Applications
- Current Assignee / Owner
- Priority Date
- 2025-02-17
- Filing Date
- 2025-08-20
- Publication Date
- 2026-08-27
AI Technical Summary
【0012】 本発明は、使用者が自分の色相と、焦り、不安、楽しみ、悲しみ、怒り、喜び、及び充足など感情のそれぞれに対して色相を選択すると、選択した色相によって、使用者の各感情による類似度を分析して、視覚的にアプリケーション上に表示することにより、使用者は、直観的に様々な感情に対する自分の現在状態を把握することができる。
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Figure 2026137637000001_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to an apparatus and method for analyzing emotions and human relationships in terms of hue, and a computer program therefor.
Background Art
[0002] Conventionally, existing analysis methods for analyzing emotions, psychological changes, and human relationships have mainly been based on language. However, such methods may result in different outcomes or reduced analysis accuracy for some users depending on their language expression ability or differences in language understanding.
[0003] A conventional prior art document (Korean Patent Publication No. 10-2024-0083400, June 12, 2024) relates to a psychological analysis and healing information providing system using color and aroma, and discloses enhancing the accuracy of analysis by analyzing the emotional state of a user using color emotion cards of various hues using hue, and recommending an aroma that can heal the analyzed emotional state.
[0004] However, these conventional prior art documents simply output various hue color emotion cards with words related to emotions and let the user select them, thereby only disclosing the content of recommending an aroma. When the user selects their own hue, the hues corresponding to their various emotions, age group, and the hues of people around them, it was not possible to analyze the similarity with respect to the user's emotions, age group, and each emotion with people around them and provide the analysis results in a three-dimensional hue coordinate system.
[0005] Therefore, when the user selects their own hue, the hues corresponding to each emotion, age group, and the hues of people around them, there is a need for a technology that provides a three-dimensional hue coordinate system for each emotion of the user's emotions, age group, and people around them, and enables the user to intuitively confirm their emotional state.
Prior Art Documents
Patent Documents
[0006] [Patent Document 1] Republic of Korea Patent Publication No. 10-2024-0083400 (June 12, 2024) [Overview of the project] [Problems that the invention aims to solve]
[0007] Therefore, the present invention provides an apparatus and method for analyzing emotions and human relationships using hue, and a computer program for this purpose.
[0008] The objectives of the present invention are not limited to those mentioned above. Other objectives and advantages of the present invention not mentioned can be understood from the following description and more clearly from the embodiments of the present invention. Furthermore, it is readily apparent that the objectives and advantages of the present invention can be achieved by the means and combinations thereof described in the claims. [Means for solving the problem]
[0009] To achieve these objectives, an apparatus for analyzing emotions and relationships by hue according to one embodiment of the present invention includes a display unit and a processor electrically connected to the display unit, wherein the processor displays an application for analyzing emotions and relationships by hue via the display unit, identifies the user's hue, the user's age range, the user's emotions, and the hues of people around the user, input via the displayed application, extracts the RGB values of the identified hues, converts them into three-dimensional hue coordinates and displays them on the application, converts the converted three-dimensional hue coordinates into orbits of a three-dimensional solar system and displays them on the application, and can be configured to analyze the user's emotions, the user's age range, and the relationship between the user and the people around them based on the converted orbits of the three-dimensional solar system and display them via the display unit.
[0010] Furthermore, a method for analyzing emotions and relationships using hue according to one embodiment of the present invention may include the steps of: displaying an application for analyzing emotions and relationships using hue; identifying the user's hue, the user's age range, the user's various emotions, and the hues of people around the user, all of which are input through the displayed application; extracting the RGB values of the identified hues, converting them into three-dimensional hue coordinates, and displaying them on the application; converting the converted three-dimensional hue coordinates into orbits of a three-dimensional solar system and displaying them on the application; and analyzing and displaying the user's emotions, the user's age range, and the relationship between the user and the people around them based on the converted orbits of the three-dimensional solar system.
[0011] Furthermore, in order to execute a command for analyzing emotions and human relationships by hue according to one embodiment of the present invention, a computer program stored on a medium may include: a command for displaying an application for analyzing emotions and human relationships by hue; a command for identifying the user's hue, the user's age range, the user's emotions, and the hues of people around the user, all of which are input through the displayed application; a command for extracting the RGB values of the identified hues, converting them into three-dimensional hue coordinates, and displaying them on the application; a command for converting the converted three-dimensional hue coordinates into orbits of a three-dimensional solar system, and displaying them on the application; and a command for analyzing and displaying the user's emotions, the user's age range, and the relationship between the user and the people around them based on the converted orbits of the three-dimensional solar system. [Effects of the Invention]
[0012] This invention allows users to intuitively grasp their current emotional state in relation to various emotions by having them select a hue for themselves and a hue for each of their emotions, such as impatience, anxiety, enjoyment, sadness, anger, joy, and contentment. The system then analyzes the similarity of the user's emotions to the selected hues and displays this similarity visually on the application, enabling the user to grasp their current emotional state intuitively.
[0013] Furthermore, the present invention allows users to select a hue for each of their emotions, such as their age group, impatience, anxiety, enjoyment, sadness, anger, joy, and contentment. The system then analyzes the similarity of the user's emotions to the selected hue and displays it visually on the application, allowing the user to intuitively grasp their current state in relation to various emotions associated with their age group.
[0014] Furthermore, the present invention allows the user to select a hue for each of their emotions, such as impatience, anxiety, enjoyment, sadness, anger, joy, and contentment, as well as the hues of the people around them. Based on the selected hues, the system analyzes the similarity of the user's emotions and displays it visually on the application, allowing the user to intuitively grasp their current emotional state in relation to the people around them.
[0015] The effects described above, as well as the specific effects of the present invention, will be explained and described below in relation to the embodiments for carrying out the invention. [Brief explanation of the drawing]
[0016] [Figure 1] This is a block diagram showing an apparatus for analyzing emotions and human relationships using hue, according to one embodiment of the present invention. [Figure 2] This is a procedure diagram showing the process of analyzing emotions and human relationships using hue according to one embodiment of the present invention. [Figure 3] (a) is an illustrative diagram showing the various emotions of a user represented by hue according to one embodiment of the present invention, (b) is an illustrative diagram showing the age range of a user represented by hue according to one embodiment of the present invention, and (c) is an illustrative diagram showing the hues of people around the user according to one embodiment of the present invention. [Figure 4] This is an illustrative diagram showing a three-dimensional hue coordinate according to one embodiment of the present invention. [Figure 5] This is an illustrative diagram showing the orbit of a three-dimensional solar system according to one embodiment of the present invention. [Figure 6] This is an illustrative diagram showing the degree of a user's own emotions according to one embodiment of the present invention. [Figure 7A] It is an illustrative diagram showing the degree of emotion when the user is in his or her teens according to an embodiment of the present invention. [Figure 7B] It is an illustrative diagram showing the degree of emotion when the user is in his or her twenties according to an embodiment of the present invention. [Figure 7C] It is an illustrative diagram showing the degree of emotion when the user is in his or her thirties according to an embodiment of the present invention. [Figure 7D] It is an illustrative diagram showing the degree of emotion when the user is in his or her forties according to an embodiment of the present invention. [Figure 8A] It is an illustrative diagram showing the degree of emotion between the user and his or her father according to an embodiment of the present invention. [Figure 8B] It is an illustrative diagram showing the degree of emotion between the user and his or her mother according to an embodiment of the present invention. [Figure 8C] It is an illustrative diagram showing the degree of emotion between the user and his or her older sister according to an embodiment of the present invention. [Figure 8D] It is an illustrative diagram showing the degree of emotion between the user and his or her younger brother according to an embodiment of the present invention.
Mode for Carrying Out the Invention
[0017] The above-mentioned objects, features and advantages will be described in detail below with reference to the accompanying drawings, whereby those having ordinary knowledge in the technical field to which the present invention pertains can easily implement the technical idea of the present invention. In the description of the present invention, when a specific description of a known technique related to the present invention is determined to obscure the gist of the present invention, the detailed description will be omitted. Hereinafter, preferred embodiments according to the present invention will be described in detail with reference to the accompanying drawings. The same reference numerals in the drawings are used to indicate the same or similar components.
[0018] For example, terms like "first," "second," etc., are used to indicate various components, but these components are not limited by these terms. These terms are simply used to distinguish one component from another, and unless otherwise specified, the first component may also be the second component.
[0019] Hereinafter, the placement of any configuration on the "upper (or lower)" or "above (or below)" of a component means not only that the configuration is placed in contact with the upper (or lower) surface of the component, but also that other configurations may be interposed between the component and any configuration placed on (or below) it.
[0020] Furthermore, where it is stated that one component is “linked,” “joined,” or “connected” to another component, it should be understood that the components may be directly linked or connected to one another, but may also be “interposed” between each component, or each component may be “linked,” “joined,” or “connected” through other components.
[0021] Throughout the specification, unless otherwise stated, each component may be singular or plural.
[0022] In this specification, singular expressions include plural expressions unless the context clearly indicates otherwise. Terms such as “composed of” or “including” in this application should not be interpreted as necessarily including all of the multiple components or stages described in the specification, but rather as meaning that some of the components or stages may not be included, or that further components or stages may be included.
[0023] Throughout the specification, "A and / or B" means A, B, or A and B unless otherwise specified, and "C to D" means C or greater and D or less unless otherwise specified.
[0024] The following describes an apparatus and method for analyzing emotions and human relationships using hue, according to several embodiments of the present invention.
[0025] Figure 1 is a block diagram showing an apparatus for analyzing emotions and human relationships using hue, according to one embodiment of the present invention.
[0026] Referring to Figure 1, the apparatus 100 for expressing emotions and human relationships using hue according to one embodiment of the present invention may include a display unit 110, an input unit 120, a memory 130, and a processor 140.
[0027] The configuration of the apparatus 100 shown in Figure 1 is one embodiment, and the components of the apparatus 100 are not limited to the embodiment shown in Figure 1. Some components may be added, modified, or deleted as needed.
[0028] According to one embodiment, the display unit 110 can display an application that expresses and analyzes the user's emotions and relationships using hues. The application may receive input from the user via the input unit 120, including the user's hues (i.e., hues corresponding to the user's temperament), the user's age group (e.g., teens, 20s, 30s, 40s, etc.), the hues corresponding to each of the user's emotions (e.g., joy, anger, sorrow, pleasure, anxiety, nervousness, fullness, etc.), and the hues of people around the user (e.g., father, mother, older sister, younger brother, older brother, older sister, younger sister, older brother, etc.) (i.e., hues corresponding to the temperament of the people around the user). For example, the display unit 110 may include a touch sensing circuit that detects touch input.
[0029] According to one embodiment, the display unit 110 can display three-dimensional hue coordinates and / or the orbit of a three-dimensional solar system based on the user's hue, the user's age group, the user's various emotions, and the hues of people around the user, which are input via the application. Furthermore, the display unit 110 can display analysis results that analyze the user's emotions, age group, and the relationship between the user and people around them, based on the orbit of the three-dimensional solar system.
[0030] In one embodiment, the input unit 120 may include a keyboard, mouse, joystick, etc., and the user can input or select via the application the following: the user's age group (e.g., teenagers, 20s, 30s, 40s, etc.), the hue corresponding to each of the user's emotions (e.g., joy, anger, sorrow, pleasure, anxiety, nervousness, fullness, etc.), and the hue of people around the user (e.g., father, mother, older sister, younger brother, older brother, older sister, younger sister, older brother, etc.) (i.e., hues corresponding to the tendencies of the people around the user).
[0031] According to one embodiment, the memory 130 can store an application that expresses and analyzes the user's emotions and relationships using hue. The memory 130 can also store various information input by the user.
[0032] Furthermore, memory 130 can store commands or programs for expressing emotions and relationships using hues.
[0033] According to one embodiment, the processor 140 can control the components of the device 100 (e.g., the display unit 110, the input unit 120, and the memory 130) in general.
[0034] For example, processor 140 can be embodied in at least one of the following physical elements: ASICs (application-specific integrated circuits), DSPs (digital signal processors), DSPDs (digital signal processing devices), PLDs (programmable logic devices), FPGAs (field programmable gate arrays), processors, microcontrollers, or microprocessors.
[0035] The processor 140 may have an artificial intelligence algorithm built into it. These artificial intelligence algorithms can be implemented by the processor 140. The artificial intelligence is a program that mimics the human brain's neural network and, by supporting a deep learning algorithm that analyzes, recognizes, infers, and judges various data on its own, can mathematically calculate, analyze, and express human emotions and relationships expressed by the user in terms of hue.
[0036] According to one embodiment, the processor 140 can display, via the display unit 110, an application that expresses and analyzes the user's various emotions and relationships with the user using hues.
[0037] According to one embodiment, the processor 140 can acquire information about the user's hue, the user's age group, the user's emotions, and the hues of people around the user, which are input via the application.
[0038] According to one embodiment, the processor 140 can extract the RGB values of the hue, convert them into three-dimensional hue coordinates, and display them on the application. The processor 140 can then convert the extracted RGB values into L*, a*, and b* values, respectively, based on the Cielab transformation formula.
[0039] According to one embodiment, the processor 140 calculates the distance between the user's hue and the hues representing each of the user's emotions on a three-dimensional hue coordinate system, and reflects the calculated distances in the three-dimensional hue coordinate system, thereby visually displaying the three-dimensional hue coordinate system on the application.
[0040] According to one embodiment, when the processor 140 receives the hues associated with each of the user's emotions, it calculates the distance between the user's hue and the hues associated with each of the user's emotions, and based on the calculated distances, it can analyze the similarity between the user's hue and each of the emotions associated with the user.
[0041] According to one embodiment, when the user's hue and the user's age group's hue are input to the processor 140, the processor 140 calculates the distance between the user's hue and the user's age group's hue, respectively, and based on the calculated distance, it can analyze the similarity between the user's hue and each emotion associated with the user's age group.
[0042] According to one embodiment, when the processor 140 receives input of the hues of each emotion of the user and the hues of the people around them, it calculates the distance between the hues of each emotion of the user and the hues of the people around them, and based on the calculated distances, it can analyze the similarity between each emotion of the user and the people around them.
[0043] Furthermore, the similarity score may be higher the closer the calculated distance is, and lower the further the calculated distance is. Also, the similarity ratio may be changed according to the number of each emotion entered by the user. For example, the more emotions entered by the user, the lower the ratio for each distance may be, and the fewer emotions entered by the user, the higher the ratio for each distance may be.
[0044] Figure 2 is a procedure diagram showing the process of analyzing emotions and relationships using hue according to one embodiment of the present invention. Figure 3(a) is an example diagram showing each of the user's emotions expressed in hue according to one embodiment of the present invention. Figure 3(b) is an example diagram showing the user's age range expressed in hue according to one embodiment of the present invention. Figure 3(c) is an example diagram showing the hues of people around the user according to one embodiment of the present invention. Figure 4 is an example diagram showing three-dimensional hue coordinates according to one embodiment of the present invention. Figure 5 is an example diagram showing the orbit of the three-dimensional solar system according to one embodiment of the present invention. Figure 6 is an example diagram showing the degree of the user's own emotions according to one embodiment of the present invention. Figure 7A is an example diagram showing the degree of emotions when the user is a teenager according to one embodiment of the present invention. Figure 7B is an example diagram showing the degree of emotions when the user is in their 20s according to one embodiment of the present invention. Figure 7C is an example diagram showing the degree of emotions when the user is in their 30s according to one embodiment of the present invention. Figure 7D is an example diagram showing the degree of emotions when the user is in their 40s according to one embodiment of the present invention. Figure 8A is an illustrative diagram showing the degree of emotional connection between the user and their father according to one embodiment of the present invention. Figure 8B is an illustrative diagram showing the degree of emotional connection between the user and their mother according to one embodiment of the present invention. Figure 8C is an illustrative diagram showing the degree of emotional connection between the user and their older sister according to one embodiment of the present invention. Figure 8D is an illustrative diagram showing the degree of emotional connection between the user and their younger brother according to one embodiment of the present invention.
[0045] The process of analyzing emotions and human relationships using hue according to one embodiment of the present invention will be described in detail below with reference to Figures 2 to 8D.
[0046] According to one embodiment, the processor 140 can identify whether an instruction is input to express and analyze the user's emotions and relationships using hues (S210). The processor 140 can identify whether an instruction is input to execute an application that expresses and analyzes the user's emotions and relationships using hues.
[0047] According to one embodiment, the processor 140 can execute and display an application (S212). When the processor 140 receives a command to execute an application that expresses and analyzes the user's emotions and relationships using hues, it can execute the application and display it on the display unit 110.
[0048] According to one embodiment, the processor 140 can identify whether the user's hue, the hue associated with each emotion, the age range, and the hue associated with each relationship are selected (S214). The processor 140 can identify the user's hue, the hue associated with each emotion, the age range, and the hue associated with each relationship, which the user selects or inputs via the application.
[0049] For example, the user can input or select the user's hue (i.e., the hue corresponding to the user's temperament), the user's age group (e.g., teens, 20s, 30s, 40s, etc.), the hue corresponding to each of the user's emotions (e.g., joy, anger, sorrow, pleasure, anxiety, nervousness, fullness, etc.), and the hues of people around the user (e.g., father, mother, older sister, younger brother, older brother, older sister, younger sister, older brother, etc.) (i.e., the hues corresponding to the temperament of the people around the user) into the application via the input unit 120.
[0050] Referring to Figure 3(a), users can select a hue that they deem to correspond to each of their emotions (e.g., joy, anger, sorrow, pleasure, anxiety, nervousness, fullness, etc.).
[0051] For example, a user can select a first hue 311 which is judged to correspond to joy, a second hue 312 which is judged to correspond to anxiety, a third hue 313 which is judged to correspond to anger, a fourth hue 314 which is judged to correspond to impatience, a fifth hue 315 which is judged to correspond to sadness, a sixth hue 316 which is judged to correspond to contentment, and a seventh hue 317 which is judged to correspond to enjoyment. Figure 3(a) merely illustrates seven user hues, and the present invention is not limited to seven user hues, but may include more user hues or fewer user hues.
[0052] Referring to Figure 3(b), users can select a hue that corresponds to their age group.
[0053] For example, a user can choose the 8th hue 321 if they are in their teens, the 9th hue 322 if they are in their twenties, the 10th hue 323 if they are in their thirties, and the 11th hue 324 if they are in their forties. Figure 3(b) merely illustrates four user age groups, and the present invention is not limited to four user age groups, but may include more or fewer user age groups.
[0054] According to one embodiment, the processor 140 calculates the distance between the hue of each emotion selected by the user in Figure 3(a) and the hue of the user's age group selected in Figure 3(b), reflects the calculated distance in a three-dimensional hue coordinate system, and visually displays the three-dimensional hue coordinate system on the application, allowing the user to intuitively grasp their current state in relation to various emotions across different age groups.
[0055] Referring to Figure 3(c), the user can select their own hue and the hues of the people around them.
[0056] For example, if a user chooses their own hue 331 and wants to express their relationship with their father using hue, they can choose their father's hue 332. Similarly, if the user wants to express their relationship with their mother using hue, they can choose their mother's hue 333. Furthermore, if the user wants to express their relationship with their sister using hue, they can choose their sister's hue 334. And if the user wants to express their relationship with their brother using hue, they can choose their brother's hue 335. Figure 3(c) merely illustrates five hues for the people around you; the present invention is not limited to five hues for the people around you, and may include hues for more or fewer people.
[0057] According to one embodiment, the processor 140 calculates the distance between the hue of each emotion of the user selected in Figure 3(a) and the hues of the people around the user selected in Figure 3(c), reflects the calculated distance in a three-dimensional hue coordinate system, and visually displays the three-dimensional hue coordinate system on the application, so that the user can intuitively grasp the current state of each emotion of the people around them.
[0058] According to one embodiment, the processor 140 can extract the RGB values of the selected hue (S216). The processor 140 can extract RGB values for the user's hue, the user's age group's hue, the user's respective emotions' hues, and the hues of the people around the user (i.e., hues corresponding to the tendencies of the people around the user), and store them in the memory 130. Table 1 below is an example showing a color chart for the user's emotions, age group, the user's own hue, and the hues of the people around the user, as shown in Figure 3.
[0059] [Table 1]
[0060] RGB is pixel-based hue data with a range of 0 to 255.
[0061] According to one embodiment, the processor 140 can convert the extracted RGB values into Cielab hue coordinates (S218). The processor 140 can convert the extracted RGB values into L*, a*, and b* values according to a Cielab conversion formula (e.g., the RGB2lab function). In this case, the processor 140 can convert the Cielab value corresponding to the user's hue to a relative Cielab value for any hue, using the Cielab value corresponding to the user's hue as the reference point (0,0,0).
[0062] In one embodiment, the processor 140 can convert the distance between hue coordinates into three-dimensional hue coordinates and display them (S220). The processor 140 can calculate the distance between hue coordinates using the following [Equation 1]. The processor 140 can also calculate the distance between a reference point (0,0,0) in three dimensions and other hue coordinates.
[0063]
number
[0064] In the above [Equation 1], L* represents the difference in brightness, a* represents the difference between green and red, and b* represents the difference between blue and yellow.
[0065] The processor 140 then maps the X, Y, and Z axes of the three-dimensional space to L*, a*, and b* values, respectively, and then visualizes the transformed Cielab hue coordinates in three-dimensional space according to the ΔE value (i.e., ΔE distance), and displays them on the application.
[0066] The ΔE value (ΔE Distance) is a value calculated using the ΔE Distance formula, which represents the distance between a reference point and other hues using Cielab values. It quantifies the similarity between the reference point (0,0,0) and other hues as a distance (ΔE Distance) and can be used to set up visualizations.
[0067] The ΔE value represents the distance between coordinates; therefore, a smaller value indicates a smaller hue difference, while a larger value indicates a larger difference.
[0068] For example, a low ΔE value means that the brightness (L*) and hue (a*, b*) values of both hues are similar, and that they appear similar to the human eye.
[0069] Table 2 below is an example of converting the RGB values based on the user's emotions, age group, the user's own hue, and the hues of the people around them, as shown in Figure 3, to Cielab values.
[0070] [Table 2]
[0071] Cielab values are composed of L* (brightness), a* (green-red axis), and b* (blue-yellow axis) values, and are hue data that reconstructs the RGB hue to further reflect human visual perception.
[0072] Referring to Figure 4, the processor 140 can display the distance calculated based on [Table 2] above in three-dimensional hue coordinates on the application. The processor 140 uses the user's selected hue Cielab value (0.00, 0.00, 0.00) as the reference point 401, and calculates the distance to each emotion, the user's age group, and the people around them using [Equation 1], and can display the calculated distance in three-dimensional hue coordinates as shown in Figure 4.
[0073] In one embodiment, the processor 140 can visualize and display the converted three-dimensional hue coordinates in the orbits of a three-dimensional solar system and analyze emotions and relationships (S222). The processor 140 can visualize the converted three-dimensional hue coordinates in the orbits of a solar system (i.e., the state in which each planet revolves around the sun) and display them on the application.
[0074] Referring to Figure 5, the processor 140 uses the Cielab values from Table 2 above to convert the user's own hue Cielab value (0.00, 0.00, 0.00) into a solar system orbit (i.e., the state in which each planet revolves around the sun), using the user's own hue Cielab value (0.00, 0.00, 0.00) as the reference point 401, and displays the user's various emotions, age groups, and three-dimensional hue coordinates relative to those around them on the application. For example, the center of the orbit is the reference point corresponding to the user's hue.
[0075] According to one embodiment, the processor 140 can display the analyzed results on the application (S224). The processor 140 can display on the application the results of analyzing the user's emotions, age group, and relationships with those around them in terms of hue and distance (i.e., distance from the center point).
[0076] Referring to Figure 6, the processor 140 can analyze the similarity between each emotion and the user's chosen hue, as well as the hues chosen for each emotion such as impatience, anxiety, enjoyment, sadness, anger, joy, and contentment, and display this similarity visually on the application.
[0077] For example, the similarity between your own hue and the hue you selected for anxiety (nervousness) is 611, which is 28.0%. This allows the user to understand that they are very similar to anxiety, that they are experiencing a prolonged tense situation, are under high stress, and have a high degree of unstable emotions.
[0078] For example, a similarity of 612 between one's own hue and the hue chosen for anxiety is 19.3%. This indicates that the user has a high similarity to anxiety, and that anxiety and tension are likely their dominant emotions at the moment, suggesting that worry and anxiety are dominating their life.
[0079] For example, the similarity between one's own hue and the hue chosen for pleasure is 613, which is 4.3%. This indicates that the user has a very low connection to pleasure, is in a state of having little pleasure or satisfaction, and either lacks the capacity to enjoy themselves or has low satisfaction in their daily life.
[0080] For example, a similarity of 614 between one's own hue and the hue chosen for sadness is 18.4%. This allows the user to understand that their similarity to sadness is about half, that their current emotional state is related to sadness, and that their emotions tend to be heavy and dark.
[0081] For example, a similarity of 615 between one's own hue and the hue chosen for anger is 10.4%. This allows the user to understand that while there is some correlation between themselves and anger, it does not represent a strongly negative or angry state, but rather a state of slight conflict or dissatisfaction that is not at a serious level.
[0082] For example, a similarity of 616 between one's own hue and the hue chosen for joy is 7.1%. This allows the user to understand that there is little correlation between themselves and joy, that they lack joyful emotions, and that they have very little positive energy in their life.
[0083] For example, the similarity between one's own hue and the hue chosen for fullness is 617, which is 12.4%. This allows the user to understand that their similarity to fullness is low, and that they experience more of a sense of lack or deficiency than a feeling of contentment.
[0084] As described above, when the user selects their own hue and a hue for each of their emotions such as impatience, anxiety, enjoyment, sadness, anger, joy, and contentment, the processor 140 analyzes the similarity of the user's emotions to the selected hues and displays it visually on the application, allowing the user to intuitively understand their current state in relation to various emotions.
[0085] The processor 140 can analyze the similarity between different emotions based on the user's chosen age range and the hue selected for each emotion, such as impatience, anxiety, enjoyment, sadness, anger, joy, and contentment, and display this similarity visually on the application.
[0086] Referring to Figure 7A, I can see that as a teenager, I am full of energy and vitality, but the similarity between sadness and anxiety is very small. While I may be emotionally unstable, I am far removed from sadness.
[0087] Referring to Figure 7B, I can see that, as someone in their 20s, the similarity between joy and anger is remarkable, and the challenges and instability of life are my main emotions. In particular, although there is no similarity with anxiety, I can see that I have a certain degree of restlessness.
[0088] Referring to Figure 7C, I can see that, as someone in their 30s, I experience very little joy, anxiety and impatience are very similar, stress and worry are my main emotions, and the high degree of similarity with sadness indicates the heavy sense of responsibility that comes with this age.
[0089] Referring to Figure 7D, I can see that, as someone in their 40s, I am searching for emotional balance, but the similarity between anxiety and impatience remains high, indicating continued emotional burden, while the similarity between joy and anger is at an intermediate level.
[0090] As described above, when the user selects a hue for each of their emotions, such as their age group, impatience, anxiety, enjoyment, sadness, anger, joy, and contentment, the processor 140 analyzes the similarity of the user's emotions to the selected hues and displays it visually on the application, allowing the user to intuitively understand their current state in relation to various emotions for their age group.
[0091] The processor 140 can analyze the similarity between each emotion, such as impatience, anxiety, enjoyment, sadness, anger, joy, and contentment, based on the hues selected by the user for each emotion, as well as the hues of people around them, and display this analysis visually on the application.
[0092] Referring to Figure 8A, the user's relationship with their father is complex, with a very high similarity between joy and anger, and a simultaneous presence of pleasure and conflict. While the relationship with their father can be positive, it also has a strong conflicting element. Furthermore, the similarity to sadness is low, indicating little significant emotional burden, but the connection to anxiety is at an intermediate level, suggesting occasional tension.
[0093] Referring to Figure 8B, it can be seen that the user perceives a very high degree of sadness in their relationship with their mother, indicating an emotionally heavy and burdensome relationship, with little joy or anger, and few positive interactions. The similarity in anxiety and impatience is at an intermediate level, and the relationship is accompanied by instability and tension. Furthermore, it can be seen that the user experiences significant difficulties in their relationship with their mother, which can be a source of stress.
[0094] Referring to Figure 8C, the user can see that in their relationship with their sister, there is a high degree of similarity between enjoyment and anger, indicating a complex relationship of alternating enjoyment and conflict. The degree of similarity with joy is moderate, suggesting that laughter and enjoyment can be felt in the relationship with the sister, but the high degree of similarity with anger indicates that conflict frequently occurs. Furthermore, the user has little connection to anxiety with their sister, but there is some connection to impatience, indicating that tense situations occur occasionally.
[0095] Referring to Figure 8D, the user can see that a variety of emotions are intricately intertwined in their relationship with their younger brother. Joy and anger are balanced, and sadness is also quite high, indicating a relationship with significant emotional fluctuations. Furthermore, although the user frequently argues with their brother, they also spend a lot of time enjoying themselves together. The high similarity to impatience indicates that tension and competition are frequently felt in their relationship with their brother.
[0096] As described above, when the user selects a hue for each of their emotions, such as impatience, anxiety, enjoyment, sadness, anger, joy, and contentment, as well as the hues of the people around them, the processor 140 analyzes the similarity of the user's emotions based on the selected hues and displays it visually on the application, allowing the user to intuitively grasp their current state in relation to various emotions towards the people around them.
[0097] Furthermore, the present invention can visually provide users with information on how close or far apart elements such as emotions, psychological states by age group, and interpersonal relationships are, based on three-dimensional coordinates between hues.
[0098] Furthermore, the present invention focuses on the user's own hue and displays each hue in the form of an orbit in the solar system, like planets orbiting the sun, allowing the user to intuitively recognize elements of emotions, psychological states by age group, and interpersonal relationships. This provides the user with visual information that enables them to understand from multiple perspectives how each element is related to the others.
[0099] As described above, each step in the procedure diagrams can be performed independently of the illustrated order, or may be performed simultaneously. Furthermore, at least one component of the present invention and at least one operation performed by said at least one component can be implemented in hardware and / or software.
[0100] As described above, the present invention has been explained with reference to the illustrative drawings, but it is clear that the present invention is not limited to the embodiments and drawings disclosed herein, and that various modifications can be made by a person skilled in the art within the scope of the technical concept of the present invention. Furthermore, even if the effects of the configuration of the present invention are not explicitly described in the embodiments described above, it is natural that the effects that can be predicted by such configuration should also be recognized. [Explanation of Symbols]
[0101] 100 devices 110 Display section 120 Input section 130 memory
Claims
1. In a device that analyzes emotions and relationships using hue, Display unit and A processor electrically connected to the display unit, Includes, The aforementioned processor, An application that analyzes emotions and relationships using hue is displayed via the aforementioned display unit. The application displays the user's color, the user's color based on their age group, the user's color based on their emotions, and the color of people around the user, and identifies these. The RGB values of the identified hue are extracted, converted into three-dimensional hue coordinates, and displayed on the application. The converted three-dimensional hue coordinates are converted into three-dimensional solar system orbits and displayed on the application. Based on the converted three-dimensional solar system orbit, the user's emotions, the user's age group, and the user's relationship with those around them are analyzed and set to be displayed via the display unit. Device.
2. The aforementioned processor, The extracted RGB values are configured to be converted to L*, a*, and b* values, respectively, based on the Cielab transformation formula. The apparatus according to claim 1.
3. The aforementioned processor, On the three-dimensional hue coordinate system, the distance between the user's hue and the hues associated with each of the user's emotions is calculated. The calculated distance is reflected in the three-dimensional hue coordinates, and the three-dimensional hue coordinates are configured to be visually displayed on the application. The apparatus according to claim 2.
4. The aforementioned processor, When the user's hue and the hues associated with each emotion are input, the distance between the user's hue and the hues associated with each emotion of the user is calculated, Based on the calculated distance, the system is configured to analyze the similarity between the user's hue and each emotion associated with the user. The apparatus according to claim 3.
5. The aforementioned processor, When the hues associated with each of the user's emotions and the hues associated with the user's age range are input, the distance between the hues associated with each of the user's emotions and the hues associated with the user's age range are calculated, respectively. Based on the calculated distance, the system is configured to analyze the similarity between the hue of each emotion of the user and each emotion in relation to the user's age group. The apparatus according to claim 3.
6. The aforementioned processor, When the hue associated with each of the user's emotions and the hue of the people around them are input, the distance between the hue associated with each of the user's emotions and the hue of the people around them is calculated, Based on the calculated distance, the system is configured to analyze the similarity between each of the user's emotions and the people around them. The apparatus according to claim 3.
7. The aforementioned similarity is, The calculated distance is characterized by being higher the closer the distance is and lower the further the distance is. The apparatus according to any one of claims 4 to 6.
8. In a method of analyzing emotions and relationships using hue, The process of displaying an application that analyzes emotions and relationships using hue, A process for identifying the user's hue, the user's age group, the user's emotions, and the hues of people around the user, all of which are input via the displayed application. The process of extracting the RGB values of the identified hue, converting them to three-dimensional hue coordinates, and displaying them on the application, The process of converting the converted three-dimensional hue coordinates into three-dimensional solar system orbits and displaying them on the application, A process of analyzing and displaying the user's emotions, the user's age group, and the relationship between the user and the people around them, based on the converted three-dimensional solar system orbit, including, method.
9. The process of converting to the three-dimensional hue coordinates and displaying them on the application is as follows: A process for calculating the distance between the user's hue and the hues associated with each of the user's emotions on the three-dimensional hue coordinate system, The process of reflecting the calculated distance in the three-dimensional hue coordinates and visually displaying the three-dimensional hue coordinates on the application, including, The method according to claim 8.
10. The aforementioned identification process is, When the user's hue and the hues associated with each emotion are input, the process involves calculating the distance between the user's hue and the hues associated with each emotion of the user, respectively. A process of analyzing the similarity between the user's hue and each emotion associated with the user, based on the calculated distance, including, The method according to claim 9.
11. The aforementioned identification process is, When the hues associated with each of the user's emotions and the hues associated with the user's age range are input, the process involves calculating the distance between the hues associated with each of the user's emotions and the hues associated with the user's age range, respectively. A process of analyzing the similarity between the hue of each emotion of the user and each emotion in relation to the user's age group, based on the calculated distance, including, The method according to claim 9.
12. The aforementioned identification process is, When the user's hue, the user's age group's hue, the hue associated with each emotion, and the surrounding people's hues are input, the process involves calculating the distance between the user's emotion's hue and the surrounding people's hues, respectively. A process of analyzing the user's emotions and their similarity to the people around them, based on the calculated distance, including, The method according to claim 9.
13. In a computer program stored on a medium, in order to execute a command that analyzes emotions and relationships using hue, A command to display an application that analyzes emotions and relationships using hue, Command words that identify the user's hue, the user's age group, the user's various emotions, and the hues of people around the user, which are input via the displayed application. A command to extract the RGB values of the identified hue, convert them into three-dimensional hue coordinates, and display them on the application, A command to convert the converted three-dimensional hue coordinates into a three-dimensional solar system orbit and display it on the application, Based on the converted three-dimensional solar system orbit, the user's emotions, the user's age group, and the relationship between the user and those around them are analyzed and displayed as command words, including, Computer program.
Citation Information
Patent Citations
A Psychology Analysis and Therapy Information Providing System Using Color and Aroma
KR1020240083400A