WO2014109573A1 - 기호 이미지 편집 장치 및 방법과 이를 실행하는 프로그램이 기록된 기록 매체 - Google Patents
기호 이미지 편집 장치 및 방법과 이를 실행하는 프로그램이 기록된 기록 매체 Download PDFInfo
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- WO2014109573A1 WO2014109573A1 PCT/KR2014/000263 KR2014000263W WO2014109573A1 WO 2014109573 A1 WO2014109573 A1 WO 2014109573A1 KR 2014000263 W KR2014000263 W KR 2014000263W WO 2014109573 A1 WO2014109573 A1 WO 2014109573A1
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- symbol image
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06T—IMAGE DATA PROCESSING OR GENERATION, IN GENERAL
- G06T11/00—2D [Two Dimensional] image generation
- G06T11/60—Editing figures and text; Combining figures or text
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F9/00—Arrangements for program control, e.g. control units
- G06F9/06—Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
- G06F9/44—Arrangements for executing specific programs
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F3/00—Input arrangements for transferring data to be processed into a form capable of being handled by the computer; Output arrangements for transferring data from processing unit to output unit, e.g. interface arrangements
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F40/00—Handling natural language data
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06F—ELECTRIC DIGITAL DATA PROCESSING
- G06F40/00—Handling natural language data
- G06F40/10—Text processing
- G06F40/103—Formatting, i.e. changing of presentation of documents
- G06F40/109—Font handling; Temporal or kinetic typography
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- G—PHYSICS
- G06—COMPUTING; CALCULATING OR COUNTING
- G06T—IMAGE DATA PROCESSING OR GENERATION, IN GENERAL
- G06T11/00—2D [Two Dimensional] image generation
- G06T11/001—Texturing; Colouring; Generation of texture or colour
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09B—EDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
- G09B19/00—Teaching not covered by other main groups of this subclass
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- G—PHYSICS
- G09—EDUCATION; CRYPTOGRAPHY; DISPLAY; ADVERTISING; SEALS
- G09B—EDUCATIONAL OR DEMONSTRATION APPLIANCES; APPLIANCES FOR TEACHING, OR COMMUNICATING WITH, THE BLIND, DEAF OR MUTE; MODELS; PLANETARIA; GLOBES; MAPS; DIAGRAMS
- G09B19/00—Teaching not covered by other main groups of this subclass
- G09B19/06—Foreign languages
Definitions
- the present invention relates to a symbol image editing apparatus and method and a recording medium on which a program for executing the same is recorded.
- a character image including numbers
- a language Korean, English, etc.
- the present invention not only facilitates the development of designs in various products, art works, buildings, crafts, urban planning, etc., symbolizing characters such as Korean, English letters, numbers, and the like.
- the present invention relates to a symbol image editing apparatus and method for facilitating the development of industrial products symbolized by letters such as Hangul, English letters and numbers in various fields such as crafts and urban planning, and a recording medium on which programs for executing the same are recorded.
- Hangeul was created by King Sejong in 1443 and has the characteristics of scientific principles and formative arts that no other character in the world has.
- Hangeul is one of the best inventions using Korean cultural heritage and scientific principles, but the reality is that it lacks the proper value recognition and utilization of Hangeul in the fields of industry, art, design, architecture, and crafts.
- an object of the present invention is to provide a symbol image editing apparatus for outputting characters (including numbers) of a language (Hangul, English, etc.) as symbol images, or interpreting the symbol images as characters (including numbers) of the corresponding language. And a recording medium having recorded thereon a method and a program for executing the same.
- the object of the present invention not only facilitates the development of design in various products, art works, buildings, crafts, urban planning, etc., symbolizing characters such as Hangul, English letters, numbers, etc., but also industrial, art, design, architecture, crafts,
- the present invention provides a symbol image editing apparatus and method for facilitating the development of industrial products symbolized by Korean characters, alphabets, numbers, etc. in various fields such as urban planning, and a recording medium on which programs for executing the same are recorded.
- a symbol image editing apparatus for achieving the above object, generation unit for converting characters into a corresponding symbol image; And an output unit for displaying the converted symbol image, wherein the symbol image is generated at a position corresponding to a margin position on the image of the character.
- the symbol image editing apparatus a generation unit for converting the symbol image into a corresponding character; And an output unit for displaying the converted character, wherein the symbol image is formed at a position corresponding to a margin position on the image of the character.
- the character characterized in that it comprises at least one of Hangul characters, English letters, numbers.
- the apparatus may further include an editing unit that adjusts at least one of the size, position, color, and shape of the symbol image.
- the symbol image is characterized in that the shape is determined according to the shape of the margin on the character image.
- the symbol image is characterized by having the shape of a triangle, a square, a circle, each figure.
- the symbol image may include a predetermined partitioned first space representing at least one Hangul character, and the first space is divided into second spaces by dots, lines, planes, or other marks.
- first space representing at least one Hangul character
- second spaces by dots, lines, planes, or other marks.
- spaces that can express Korean characters symbolically by performing any one of the initial, neutral, or finality in 2 spaces, and among the triangles, squares, circles, and straight lines arranged in the second spaces divided into the space spaces. It is characterized by being represented by at least one symbol.
- each of the second spaces is characterized by being configured in a transverse direction or a longitudinal direction or a combination thereof.
- each of the first spaces characterized in that spaced apart in the transverse direction or longitudinal direction.
- the at least two symbol images may be overlapped with each other, and at least one of size, position, color, shape, contrast, brightness, pattern, and texture may be used to distinguish each overlapped symbol image. And an identifier indicating a reading order of each symbol image.
- the symbol image editing method comprises the steps of: a) converting a character into a corresponding symbol image; And b) displaying the converted symbol image, wherein the symbol image is generated at a position corresponding to a margin position on the image of the character.
- the symbol image editing method comprises the steps of: a) converting the symbol image to a corresponding character; And b) displaying the converted character, wherein the symbol image is formed at a position corresponding to a margin position on an image of the character.
- the character at least one of Hangul characters, English letters, numbers.
- the method may further include adjusting at least one of the size, position, color, and shape of the symbol image.
- the symbol image is characterized in that the shape is determined according to the shape of the margin on the letter or number image.
- the symbol image is characterized by having the shape of a triangle, a square, a circle, each figure.
- the symbol image may include a predetermined partitioned first space representing at least one Hangul character, and the first space is divided into second spaces by dots, lines, planes, or other marks.
- first space representing at least one Hangul character
- second spaces by dots, lines, planes, or other marks.
- spaces that can express Korean characters symbolically by performing any one of the initial, neutral, or finality in 2 spaces, and among the triangles, squares, circles, and straight lines arranged in the second spaces divided into the space spaces. It is characterized by being represented by at least one symbol.
- each of the second spaces is characterized by being configured in a transverse direction or a longitudinal direction or a combination thereof.
- each of the first spaces characterized in that spaced apart in the transverse direction or longitudinal direction.
- the at least two symbol images may be overlapped with each other, and at least one of size, position, color, shape, contrast, brightness, pattern, and texture may be used to distinguish each overlapped symbol image. And an identifier indicating a reading order of each symbol image.
- a method for editing a symbol image in a symbol image editing apparatus includes: (a) receiving, by the device, text information; (b) converting, by the device, the input text information into text information of a different language having the same meaning; And (c) generating, by the device, a symbol image at a position corresponding to a margin position on a character image corresponding to the converted foreign language character information.
- step (c) further comprising the step of adjusting at least one of the size, position, color, and shape of the generated symbol image.
- the shape of the symbol image may be determined according to the shape of a margin on the text image.
- the shape of the symbol image is characterized in that any one of a triangle, a square, and a circle.
- the device converts the character information additionally input from the outside into the character information of the heterogeneous language having the same meaning, and the character corresponding to the character information of the converted heterogeneous language
- the method may further include generating a symbol image at a position corresponding to the margin position on the image.
- the device further includes the step of overlapping the additionally generated symbol image on the symbol image generated in the step (c).
- the symbol image generated in the step (c) and the symbol image further generated in the step (d) may be a position, color, contrast, brightness, pattern, texture, size, and Characterized in accordance with at least one of the forms.
- step (c) when the characters of the converted heterogeneous language are Hangul, the symbol image is placed at a position corresponding to the margin position on each image for each of the initial, neutral, and final characters of the Hangul corresponding to the converted Hangul information. It is characterized by generating.
- the symbol image editing method in the symbol image editing apparatus (a) the step of receiving the character information, the device; And (b) converting, by the device, the input text information into text information of a heterogeneous language having the same meaning; And (c) generating, by the apparatus, a symbol image corresponding to character information of the converted heterogeneous language, wherein the symbol image is located at a margin position on the character image corresponding to the character information of the converted heterogeneous language. Characterized in that the symbol is formed in the corresponding position.
- the recording medium according to the present invention is characterized in that a program for executing the above steps is recorded.
- the symbol image editing apparatus the input unit for receiving the character information; A converting unit converting the character information input to the input unit into character information of different languages having the same meaning; And a generation unit generating a symbol image at a position corresponding to the margin position on the character image corresponding to the character information of the heterogeneous language converted by the conversion unit.
- the apparatus further includes an editing unit for adjusting at least one of the size, position, and shape of the symbol image generated by the generation unit.
- the shape of the symbol image may be determined according to the shape of a margin on the text image.
- the shape of the symbol image is characterized in that any one of a triangle, a square, and a circle.
- the converting unit may further convert the character information additionally input from the outside into the character information of the heterogeneous language having the same meaning, and the generating unit may further convert the character information on the character image corresponding to the character information of the heterogeneous language.
- the symbol image may be further generated at a position corresponding to the margin position.
- the editing unit may overlap the additionally generated symbol image on the previously generated symbol image.
- the pre-generated symbol image and the additionally generated symbol image may be classified according to at least one of color, position, contrast, brightness, pattern, texture, size, and shape.
- the generation unit may be configured to generate a symbol image at a position corresponding to the margin position of each image for each of the initial, neutral, and final characters of the Hangul corresponding to the converted Hangul information when the characters of the converted heterogeneous language are Hangul. It features.
- the symbol image editing apparatus the input unit for receiving the character information; And a converting unit converting the input character information into character information of different languages having the same meaning. And a generation unit for generating a symbol image corresponding to the character information of the converted heterogeneous language, wherein the symbol image is a symbol at a position corresponding to a margin position on the character image corresponding to the character information of the converted heterogeneous language. It is characterized in that the formed image.
- the apparatus may further include an editing unit configured to adjust at least one of the size, color, position, and shape of the symbol image generated by the generation unit.
- a symbol image editing method in the symbol image editing apparatus comprises the steps of: (a) inputting a symbol image shaped into a character; (b) converting the input symbol image into a corresponding character; And (c) converting the converted characters into character information of a heterogeneous language having the same meaning, wherein the symbol image is formed at a position corresponding to a margin position on the image of the character.
- the recording medium according to the present invention is characterized in that a program for executing the above steps is recorded.
- the character image editing apparatus an input unit for inputting a symbol image of the character; A generation unit for converting a symbol image input to the input unit into a corresponding character; And a converting unit converting the characters converted by the generating unit into character information of different languages having the same meaning, wherein the symbol image is formed at a position corresponding to the margin position on the image of the character.
- a user who is familiar only with the first language and not familiar with the second language can freely create and edit a symbol image in which a second language having the same meaning as the first language familiar to the user is formed. .
- the user can easily understand the meaning of the symbol image in which the information of the character that he does not understand the meaning is shaped as a language familiar to him.
- FIG. 1 is a diagram showing the configuration of a sign image editing apparatus to which the present invention can be applied.
- FIG. 2 is a view showing a process of extracting a symbol image according to an embodiment of the present invention.
- FIG. 3 is a diagram illustrating a principle of generating a symbol image corresponding to a consonant of Hangul according to an embodiment of the present invention.
- FIG. 4 is a view showing a principle of generating a symbol image corresponding to the neutral of the Hangul according to an embodiment of the present invention.
- FIG. 5 is a view showing a principle of generating a symbol image corresponding to the finality of the Hangul according to an embodiment of the present invention.
- FIG. 6 is a diagram illustrating a principle of transforming and generating a symbol image according to an exemplary embodiment of the present invention.
- FIG. 7 is a diagram illustrating a region in which a symbol image for a consonant, a neutral, and a consonant of Korean is generated, according to an embodiment of the present invention.
- FIG. 8 is a view showing a principle of generating a symbol image corresponding to the Arabic numerals according to an embodiment of the present invention.
- FIG. 9 illustrates a clock design utilizing numbers represented by space compartments and symbols in accordance with an embodiment of the present invention.
- FIG. 10 is a view showing a principle of generating a symbol image corresponding to the English capital letters according to an embodiment of the present invention.
- FIG. 11 is a view illustrating a principle of generating a symbol image corresponding to an English lowercase letter according to an embodiment of the present invention.
- FIG. 12 is a diagram illustrating an example of an Hangul image edited according to an embodiment of the present invention.
- Figure 13 illustrates the use of points in space compartments in accordance with an embodiment of the present invention.
- Figure 14 illustrates the use of lines in space compartments in accordance with an embodiment of the present invention.
- 15 and 16 illustrate the use of faces in space compartments in accordance with embodiments of the present invention.
- FIG. 17 illustrates a mixed use of points, lines, and faces in space compartments in accordance with embodiments of the present invention.
- FIG. 23 is a diagram illustrating an exaggeration and a position change of a symbol according to an embodiment of the present invention.
- 24 is a view illustrating position coordinates defining the position of a symbol in a space compartment according to an embodiment of the present invention.
- 25 is a diagram illustrating the use of the same symbol for the initial, neutral, and final in accordance with an embodiment of the present invention.
- FIG. 26 is a diagram illustrating the use of a symbol, a figure-shaped object, and a character as symbols according to an embodiment of the present invention.
- FIG. 27 is a diagram illustrating a picture placed in a space and using optimism as a symbol according to an embodiment of the present invention.
- FIG. 28 is a view illustrating the use of a space compartment and stained glass as a symbol using a building according to an embodiment of the present invention.
- 29 is a view illustrating a space compartment using a road, a symbol using a building according to an embodiment of the present invention.
- FIG. 30 is a diagram illustrating a space compartment using features such as roads, rivers, trees, bushes, and parks in accordance with an embodiment of the present invention.
- 31 is a view showing an example in which characters are overlapped according to an embodiment of the present invention.
- 33 is a view showing a symbol image editing method according to an embodiment of the present invention.
- 34 through 38 illustrate symbol images for inverted characters according to an embodiment of the present invention.
- Fig. 39 shows a symbol image represented by density and configuration.
- 40 is a view showing an example of using a natural object to implement a symbol image.
- Fig. 41 is a view showing overlapped symbol images in English characters.
- FIG. 42 shows spatial partition types in English characters.
- Fig. 43 is a view showing a symbol image displayed according to a spatial section in English characters.
- 44 is a diagram illustrating a principle of generating a sign image according to the present invention.
- 45 is a functional block diagram illustrating a structure of a text image editing apparatus according to another embodiment of the present invention.
- 46 is a flowchart illustrating a principle of a method of editing a text image according to another embodiment of the present invention.
- 47 is a flowchart illustrating the principle of a method of editing a text image according to another embodiment of the present invention.
- the 'symbol image' is a symbolic representation of a character based on a concept of geometrically representing a character in the form of a triangle, a square, and a circle, which is characteristic of the creation principle of the Korean alphabet and the Hangul alphabet.
- the symbol is arranged in a part of the divided space by dividing the space (for example, a rectangular image frame).
- a symbol image corresponding to an English letter or number is a symbolic representation of an English letter or number, and a symbol is arranged in a part of the space in a predetermined partitioned space (for example, a rectangular image frame).
- the symbol is a letter or number of a language (Hangul, English, etc.) into a certain frame, and the shape figured out from the empty space (margin) is simplified to a point, a line, a face, etc., and the point is a triangle, a square, a circle, etc. It can have a variety of shapes. It may also be defined as a means for indicating the position of the empty space (margin) identified above.
- the symbol image in the present invention is composed of dots of various shapes when a symbol, such as a triangle, a rectangle, a circle, is represented in a small size, and thus, a 'dot image' in the present specification is' Symbol image 'and' symbol '.
- FIG. 44 is a view for explaining the principle of construction of a sign image according to the present invention. Referring to FIG. 44, the principle of constituting a symbol image of the national character 'a' will be described. First, the character 'a' represented by a line as shown in FIG. 44 (a) is shown in FIG. 44 (b). Mark it as a side with area as shown.
- the surface having a width as shown in (c) of FIG. 44 is represented by a solid having a volume and a mass, and an outer edge is provided at the solid having a volume and a mass as shown in (d) of FIG. 44.
- the wastewater is filled in the blank space formed by the outer edge as shown in (e) of FIG. 44, and the wastewater filled in the blank space as shown in (f) of FIG. 44 is solidified.
- the size of the metal body gradually decreases in the outer edge, and when viewed from above, as shown in (j) of FIG.
- a symbol image corresponding to a ' is displayed.
- Other characters, including numbers and alphabets, can be composed of symbol images by the same principle.
- the symbol image editing apparatus 100 may include an input unit 110, a controller 120, a storage unit 130, and an output unit 140.
- the symbol image editing apparatus 100 of the present invention may be self-operating (see the first embodiment below), or may be provided in a communication terminal and may be provided with an external device (the symbol image editing apparatus 100 of the present invention) through a data communication network. The same device may be provided in another communication terminal or linked to another communication terminal) (see the second and third embodiments below).
- Examples of data communication networks include wired / wireless telephone networks, the Internet, and Bluetooth.
- Communication terminals include wired / wireless phones, SIP terminals, mobile phones, PDAs, general PCs, handheld PCs, laptops equipped with wired / wireless modems, smart glasses, smart cameras, smart watches, black boxes, navigation, video recording devices, It may be a communication device capable of wired / wireless data communication such as a smart TV.
- the symbol image editing apparatus 100 converts a character (including a number) of a language (Korean, English, etc.) input through the input unit 110 into a symbol image and outputs the image in real time through the output unit 140.
- the symbol image editing apparatus 100 interprets the symbol image input through the input unit 110 and outputs a character (including a number) of a corresponding language in real time through the output unit 140. That is, the first embodiment performs both input and output processes in the symbol image editing apparatus 100.
- the symbol image editing apparatus 100 transmits character (including numbers) information of a language (Korean, English, etc.) input through the input unit 110 to another external device.
- the symbol image editing apparatus 100 interprets the symbol image input through the input unit 110 and transmits the character (including numbers) information of the corresponding language to another external device. That is, the second embodiment performs an input process in the symbol image editing apparatus 100 and performs an output process through other external devices.
- the symbol image editing apparatus 100 converts a character (including a number) of a language (Hangul, English, etc.) transmitted from an external device into a symbol image and outputs it in real time through the output unit 140. do.
- the external device transmits the character (including numbers) information of the language (Hangul, English, etc.) input through the input unit 110 to the symbol image editing apparatus 100, or the symbol input through the input unit 110.
- the image is interpreted and the character (including numbers) information of the corresponding language is transmitted to the symbol image editing apparatus 100. That is, the third embodiment performs an input process through another external device and performs an output process in the symbol image editing apparatus 100.
- an input process is performed through another external device, but the output process is not performed in the symbol image editing apparatus 100, but through another external device. You can also do the output process.
- the other external device is the same device as the symbol image editing device 100 of the present invention.
- the external device is provided in another communication terminal or driven in conjunction with another communication terminal, and viewed through a data communication network.
- the device communicates with the symbol image editing apparatus 100 of the present invention.
- the symbol image is generated at a position corresponding to the margin position on the character or numeric image, and is determined according to the shape of the margin on the character or numeric image.
- the symbol image corresponding to the Hangul characters is a symbolic representation of the Hangul characters, and is divided into spaces by dividing the spaces so as to distinguish the initial, neutral, and trailing characters of the Hangul in a predetermined space representing at least one Hangul character.
- the symbol is placed in the part.
- the symbol may not be arranged at all.
- a symbol image corresponding to an alphabet or a number is a symbolic representation of an alphabet or a number, and a symbol is disposed in a part of the space in a predetermined partitioned space representing at least one alphabet or a number.
- the control unit 120 converts character (including numbers) information of a language (Korean, English, etc.) input from the input unit 110 according to the first embodiment or from another external device according to the third embodiment into a symbol image. Convert and display through the output unit 140, or serves to output the printer.
- the controller 120 includes a generator 121 and an editor 122.
- the generation unit 121 generates a symbol image at a position corresponding to the margin position on the character / numeric image corresponding to the character or numeric information of the language input through the input unit 110 output unit 140 Display on the display screen or print out.
- the generated symbol image is stored in the storage 130.
- the storage unit 130 is generated in a state in which the symbol images generated according to the symbol image generation principle described below for letters / numbers are mapped to each letter / number and stored.
- the unit 121 may extract a symbol image stored in the storage unit 130 in real time, mapped to letters / numbers input by a user, and display the image on a display screen of the output unit 140 or output the printer.
- the generation unit 121 analyzes a symbol image input through the input unit 110, and maps the letter / number stored in the storage unit 130 in real time by being mapped to the symbol image input by the user. Extract and output the letters / numbers of the language through the output unit 140.
- the editing unit 122 displays the symbol image according to the editing command when the user inputs an editing command for adjusting the size or position of the symbol image displayed on the display screen of the output unit 140 through the input unit 110.
- Perform the editing function image editing function in the output process.
- the editing unit 122 freely edits a predetermined partitioned space (for example, a rectangular image frame) in which a symbol image is expressed and a space section that separates the space (for example, a space division for distinguishing initial, neutral, and final Korean characters). It can be configured (space editing function during input / output process).
- the input unit 110 is used for inputting character or numeric information of a language that the user wants to output as a symbol image (display or printer output, etc.), and also provides an editing command for the generated symbol image. Used to enter
- the input unit 110 is used to input a symbol image that the user wants to output (display or printer output, etc.) in letters or numbers of the language, and inputs an editing command for the symbol image input by the user. It is used to
- the input unit 110 may include a predetermined partitioned space (eg, a rectangular image frame) in which a user's desired symbol image may be expressed, and a space section separating the spaces (eg, Korean initiality, neutrality, and finality). It is used to input the editing command for the space division to separate the.
- a predetermined partitioned space eg, a rectangular image frame
- a space section separating the spaces eg, Korean initiality, neutrality, and finality
- the input unit 110 may include a keypad, a touch screen unit, a mouse pad, a mouse, an optical pen, an electric signal sensor, and the like.
- a keypad a touch screen unit
- a mouse pad a mouse
- an optical pen an electric signal sensor
- the object of the present invention may be a device having only a keypad, a device having only a touch screen unit, or a device having a keypad, a touch screen unit, or an electric signal sensor.
- motion detection by the electric signal sensor may generate a symbol image by inputting an operation signal of a human body, a pupil, or an brain wave with reference to the coordinate where the symbol image is located as shown in FIG. 24.
- the keypad consists of a number of key buttons for entering numbers and special characters or characters.
- a function button and a general button for storing, modifying or loading the inputted letters / numbers are further provided, and perform a function of a medium for transmitting a user's instruction to the control unit 120.
- the keypad is required to recognize the corresponding letter / number when the user applies a certain pressure to the letter (consonant, vowel) / numeric keys using a hand or the like (or applies a minute current or recognizes the user's motion by a sensor).
- Generates data that is, key data, and transmits the generated key data to the controller 120, and the controller 120 checks the alphanumeric code data corresponding to the applied key data in the storage 130 and maps the alphanumeric code data.
- the extracted symbol image is extracted and displayed on the output unit 140 or a printer output. Since a hard key configuration of a keypad for inputting letters or numbers, and a method of recognizing and combining letters / numbers through the keypad may be configured according to a known technique, a detailed description thereof will be omitted.
- the touch screen unit is an object-oriented character / numeric information input means, when the user applies a predetermined pressure to the characters (consonants, vowels) / numbers on the upper surface of the panel using a writing instrument such as a hand or a stylus pen, the corresponding character / Generates data necessary for number recognition, that is, touch screen data, and transmits the generated touch screen data to the control unit 120.
- the control unit 120 checks the text / number code data corresponding to the applied touch screen data in the storage unit 130, The symbol image mapped to the numeric code data is extracted and displayed on the output unit 140 or printed out.
- Soft key configuration of the touch screen unit for inputting letters or numbers, and a method of character / number recognition and combination through the touch screen unit may be configured according to a known technique, and thus a detailed description thereof will be omitted.
- the storage unit 130 stores a program for driving a function processed by the controller 120, a predetermined program for implementing convenience and basic functions of a user, and the like.
- a program for driving a function processed by the controller 120 a predetermined program for implementing convenience and basic functions of a user, and the like.
- it is implemented as a volatile memory such as a RAM or a nonvolatile memory such as a flash memory, and stores a program that collectively controls the overall operation of the device or an operation program that processes data input from the input unit 110.
- the storage unit 130 has alphanumeric code data corresponding to key data or touch screen data input and processed according to an embodiment of the present invention and a symbol image mapped thereto. The symbol image mapped to the alphanumeric code data will be described later.
- the output unit 140 performs a display or printer output operation under the control of the controller 120.
- the symbol image information output to the output unit 140 is information corresponding to character / numeric information input through the input unit 110. That is, when a user inputs a letter / number, the letter / number code data corresponding thereto is extracted and the symbol image mapped thereto is output and displayed on the display screen of the output unit 140 or printed out.
- the letter / number information output to the output unit 140 is information corresponding to the symbol image information input through the input unit 110. That is, when a user inputs a symbol image, the character / numeric code data corresponding to the symbol image is interpreted and the symbol image mapped thereto is output and displayed on the display screen of the output unit 140 or printed out.
- the number of consonants of the first Hangul can be expressed if the total number of consonants is 19. Therefore, the 14 consonants (' ⁇ ', ' ⁇ ', ' ⁇ ', ' ⁇ ', ' ⁇ ', ' ⁇ ') , ' ⁇ ', ' ⁇ ', ' ⁇ ', ' ⁇ ', ' ⁇ ', ' ⁇ ', ' ⁇ ', ' ⁇ ') and 5 consonants (' ⁇ ', ' ⁇ ', ' ⁇ ') , ' ⁇ ', ' ⁇ ') is enough.
- consonants since the total number of consonants is 27, it is possible to express 14 consonants, 5 consonants, and 11 consonants (' ⁇ ', ' ⁇ ', ' ⁇ ', ' ⁇ ', ' ⁇ ', ' ⁇ '). , ' ⁇ ', ' ⁇ ', ' ⁇ ', ' ⁇ ', ' ⁇ ').
- the symbol image editing apparatus 100 outputs characters (including numbers) of languages (Korean, English, etc.) as symbol images, or interprets symbol images as characters (including numbers) of the corresponding language.
- the symbol image corresponding to the Hangul characters is a symbolic representation of a letter or number of the language, and a predetermined partitioned space (eg, a rectangular image frame) representing at least one Hangul character (at least one syllable). At least one symbol is placed in a part of a space separated by spaces.
- This symbol is a simplified version of the shapes identified from the empty space into dots, lines, faces, etc. by putting letters or numbers of languages (Hangul, English, etc.) into a certain frame. Can have.
- a symbol image symbolizing a letter or number in a language defines the letter or number in the language as an object with volume and mass, rather than a flat object used for printing, and puts it in a fixed frame and pours water into an empty space.
- the casting process is based on the letter / number processing technology to express a simple and symbolic representation of letters or numbers with the original framework, and the process of the process of the letters or numbers are illustrated in FIG.
- FIG. In other words, by giving a concept of space to the representation of letters or numbers in the language and expressing them in a simplified space, and extracting triangles, squares, circles, etc., which are symbols that can be simplified and expressed by processing the letters or numbers of the language, This symbol is placed in space to symbolically represent the numbers or letters of the language. At this time, the size, color, shape, and position of the symbol can be changed.
- the symbol image of the Hangul displayed on the display screen of the output unit 140 includes a predetermined partitioned first space representing at least one Hangul character (at least one syllable), and a dot and line representing the first space.
- Hangul can be expressed symbolically by performing any one of the initial, neutral, or finality in the divided second spaces by dividing by a surface or another mark (dividing the first space into a second space). It is represented by a symbol of a triangle, a square, a circle, and a straight line arranged in the space compartment and the second spaces divided into the space compartment.
- each of the second spaces divided into the space compartments may be configured in a transverse direction or a longitudinal direction or a combination thereof, and each of the first spaces may be spaced apart in the transverse direction or the longitudinal direction.
- the symbol may be one of a triangle, a quadrangle, a circle, an object having a shape of each figure or an object configured to have a shape, and a letter associated with each figure.
- the principle of generating a symbol image for a Hangul character is as follows.
- FIG. 3 to 5 are diagrams showing a principle of generating a symbol image corresponding to Hangul according to an embodiment of the present invention
- FIG. 4 illustrates the initial, neutral, and final properties of Hangul using points, lines, and surfaces.
- FIG. 7 is a diagram illustrating the initial, neutral, and final characteristics of Hangul as a space compartment.
- the space compartment means, for example, a space division for dividing the initial, neutral, and finality of Hangul.
- FIG. 3 illustrates a principle of generating a symbol image corresponding to Korean initial consonants.
- (a) is a rectangular symbol image is generated at the bottom left of the margin position at 'b'
- (b) is a rectangular symbol image such as the shape of the margin at the upper right side of the margin position at 'b'
- (C) creates a rectangular symbol image like the shape of the margin at the right middle middle of the margin position at 'c'.
- (d) creates a square symbol image like the shape of a margin at the margin at ' ⁇ '
- (e) creates a square symbol image like the shape of a margin at the center of the margin at ' ⁇ '.
- Created creates a rectangular symbol image with the shape of the margin at the middle and the upper middle of the margin at ' ⁇ ', respectively, and (g) shows the margin at the lower middle of the margin at 's'.
- a triangle symbol image like shape is generated, and (h) is a circular symbol image like a shape of a margin at the center of the margin position at ' ⁇ '.
- a symbol image having the same shape as that of the margin is generated at a position corresponding to the position of the margin only when the shape of the margin on each Hangul image is a rectangle, a triangle, or a circle.
- Some margin symbols may be deleted if they are present.
- Figure 4 illustrates the principle of generating a symbol image corresponding to the letters combined with the initial and neutral of the Hangul. However, instead of expressing vowels alone, they are expressed with consonants ' ⁇ ' for easy identification.
- generating the symbol image corresponding to the letter combined with the initial and the neutral as shown in FIG. 4 first, as shown in (a), (b) and (c) of FIG. The image is divided into a region and a neutral region (referred to as 'spatial partition'), and a symbol image corresponding to the initial and the neutral is generated independently of the initial image frame and the neutral image frame.
- the principle of generating the symbol image corresponding to the initial image in the initial image frame is the same as that described with reference to FIG. 3, and in the present invention, the position of the margin on the neutral image also in the generation of the symbol image corresponding to the neutral image in the neutral image frame.
- a rectangular symbol image with the same shape as the margin was created at the position corresponding to.
- the neutral image frame is divided into two vertically as in (m) and (n) to distinguish it from ' ⁇ ' and ' ⁇ '.
- ' ⁇ ' is written as ' ⁇ + ⁇ ' and ' ⁇ ' is preferably written as ' ⁇ + ⁇ '. Accordingly, (m) is a symbol image corresponding to 'e', and (n) is a symbol image corresponding to 'yes'.
- FIG. 5 illustrates a principle of generating a symbol image corresponding to Hangul finality in a final image frame.
- 14 terminal sounds ('a', 'b', 'c', ' ⁇ ', ' ⁇ ', ' ⁇ ', ' ⁇ ', ' ⁇ ', ' ⁇ ', ' ⁇ ' of the Korean initial consonants (3a) to (3s) in FIG. ',' ⁇ ',' ⁇ ',' ⁇ ',' ⁇ ',' ⁇ ',' ⁇ ') and two consonants (' ⁇ ',' ⁇ ') can all be used as Hanguljong Except for the redundant description, in FIG.
- the two consonants which are not used as a consonant but used only as a final consonant, are divided into two regions in the same state as the other consonants of the Hangul. A symbol image corresponding to each consonant is generated.
- the symbol image may be generated according to the principles of FIGS. 3 to 5, and the image may be generated according to the modified form of the symbol as shown in FIG. 6.
- Examples of deformation generation in FIG. 6 include the possibility of mutual deformation of a circular symbol image, a rhombus symbol image, and a vertical segment symbol image, and mutual deformation of a rectangular symbol image, a triangle symbol image, and a line symbol image.
- the direction of the horizontal, vertical, diagonal, etc. of the line segment symbol image is determined according to the position of the symbol image before deformation.
- a rectangular symbol in the form of a symbol representing a vowel may be replaced with a short vertical segment, and as shown in (d), ' ⁇ ' is displayed.
- the left and right quadrangle symbols, which are the symbol forms, may be generated by replacing the horizontal segments, or the horizontal segments may be connected by diagonal segments, and may be expressed in the form of 'Z' or in the form of 'Z' in the shape of lightning.
- the symbol image of a square or triangle is converted to each other, or replaced with short horizontal segments respectively. You can also create In addition, the symbol image located at the vertex may be generated by replacing the diagonal line segment.
- only the rectangular symbol in the middle of the left end of the symbol representing ' ⁇ ' may be generated by replacing the short horizontal segment, or the symbol image located at the vertex may be generated by replacing the diagonal segment.
- the rectangular symbol at the right end which is a symbol of ' ⁇ ', may be replaced with a long horizontal segment, or an additional segment connecting two horizontal segments generated in this way may be generated.
- only the rectangular symbol in the middle of the symbol representing ' ⁇ ' may be generated by replacing the short line segment, or the quadrangle symbol in the middle of the upper part may be additionally generated.
- the generation unit 121 generates a symbol image at a position corresponding to a margin position on a character image corresponding to a character of Korean input through the input unit 110, that is, a rectangular image.
- the frame is divided into an initial zone and a neutral zone (spatial compartment), and a symbol image corresponding to the initial and neutral stages independently of the initial image frame and the neutral image frame, respectively.
- Each of them independently generates a symbol image corresponding to the initial, neutral, and final images, and displays them on a display screen of the output unit 140 or outputs a printer.
- the generation unit 121 extracts a symbol image mapped to a character input by a user and stored in the storage unit 130, and displays a rectangular image frame in FIGS. 7A, 7B, and 7C.
- the symbol image corresponding to the initial and the neutral or the rectangular image frame are divided into the initial region and the neutral region (spatial compartment) and independently of the initial image frame and the neutral image frame.
- the image is divided into the initial zone, the neutral zone, and the final zone (spatial compartment), and the symbol image corresponding to the initial zone, the neutral zone, and the final zone is independently output to the initial zone image frame, the neutral image frame, and the final image frame. Display on the display screen or print out.
- the user may input a symbol image for output (display or printer output, etc.) as characters of a language.
- Select any one of a), (b) and (c), and select any one of (d), (e) and (f) of FIG. Designate the part to place the symbol.
- enter the step to select the shape of the symbol point, line, face, etc.
- enter the step to select the point shape triangle, rectangle, circle, etc. again. do.
- the generation unit 121 analyzes a symbol image input through the input unit 110 to allow the user to interpret the symbol image. Characters mapped to the input symbol image are stored in the storage unit 130, and the characters of the corresponding languages are output in real time through the output unit 140.
- the user can input the character information of the language that the user wants to output as a symbol image (display or printer output, etc.), on the other hand, the user outputs as the character of the language (display or printer output, etc.) You can also enter the desired symbol image.
- Arabic numerals can be expressed in total of ten.
- Arabic numerals are composed of '0', '1', '2', '3', '4', '5', '6', '7', '8' and '9'.
- the symbol image for the Arabic numeral can be represented by arranging a symbol in a part of the space in a predetermined partitioned space (eg, a rectangular image frame).
- a predetermined partitioned space eg, a rectangular image frame.
- numbers are not divided into primary / neutral / single, so it is not necessary to divide the partitioned space again.
- the symbol is a simplified figure of the shape found from the empty space by putting the Arabic numerals in a predetermined frame to a point, a line, a surface, etc.
- the point may have various shapes such as a triangle, a square, a circle, and the like.
- FIG. 8 illustrates a principle of generating a symbol image corresponding to an Arabic numeral in a numeric image frame.
- (a) is a symbol image corresponding to the number '0'
- (b) is a symbol image corresponding to the number '1'
- (c) is a symbol image corresponding to the number '2'
- (d ) Is a symbol image corresponding to the number '3'
- (e) is a symbol image corresponding to the number '4'
- (f) is a symbol image corresponding to the number '5'
- (g) is a number '6' 'Is a symbol image corresponding to the number' 7 '
- (i) is a symbol image corresponding to the number' 8 '
- (j) is a symbol image corresponding to the number' 9 ' Image.
- the symbol image corresponding to the number may be applied to a clock as shown in FIG. 9 to express the number by the space block and the symbol.
- the number of English alphabets can be represented by 52 in total, 26 each of uppercase and lowercase letters.
- the uppercase English alphabet has 21 consonant alphabets (ie 'B (/ b)', 'C (/ c)', 'D (/ d)', 'F (/ f)', 'G').
- FIG. 10 illustrates a principle of generating a symbol image corresponding to an English uppercase letter in an English image frame
- FIG. 11 illustrates a principle of generating a symbol image corresponding to an English lowercase letter in an English image frame.
- 10 and 11 show respective symbol images corresponding to English upper and lower case letters "A (/ a)" to "Z (/ z)".
- the symbol image of the English letter S may have various application modifications.
- the symbol image can be generated in the same way for the upper and lower case alphabets of English.
- the symbol image for the English alphabet is also represented by placing a symbol in a part of the space in a predetermined partitioned space (eg, a rectangular image frame). It is possible. However, English alphabets are not classified as primary / neutral / final, so it is not necessary to repartition the space except for the uppercase letter 'Q', lowercase letter 'i', 'j' and 'u'. .
- the symbol can put the English alphabet into a certain frame and simplify the shape grasped from the empty space into points, lines, planes, and the like, wherein the points can have various shapes such as triangles, squares, circles, and the like.
- the symbol image of the alphabet or numeral displayed on the display screen of the output unit 140 is a predetermined partitioned space representing at least one alphabetic character or numeral, and is arranged in the space to symbolically represent the alphabetic characters or numerals. It can be represented by symbols such as triangles, squares, circles, and straight lines. Here, each space may be arranged spaced apart in the transverse direction or longitudinal direction. The symbol may be at least one of a triangle, a rectangle, a circle, an object having a shape of each figure, and a letter, an image, or another symbol reminiscent of each figure.
- the method of interpreting and outputting a number or English word or its symbol image is the same as the method of interpreting and outputting a character or its symbol image, and thus a detailed description thereof will be omitted.
- the space partition refers to a space division for dividing the initial, neutral, and finality of Hangul, for example, and may be performed as shown in FIG. 7.
- a symbol image corresponding to a character of Hangeul combined with a consonant and a neutral is divided into a consonant region and a neutral region as shown in (a) to (c), and a symbol image corresponding to the consonant and neutral is represented.
- the initial, neutral, and final zones are divided into the initial zone, the neutral zone, and the final zone, as in any one of (d) to (f). Represents a symbol image corresponding to.
- the ratio of the space compartment for distinguishing the primary, neutral, and longitudinal can be freely modified, and the shape of the outer can also be freely modified.
- the thickness of the edge of the rectangular image frame may be adjusted and the line segment display method may be partially changed to a dotted line.
- symbol images representing 'dan' (a) and 'blue' (b) are represented.
- only the ratio of the spatial compartment and the size of the symbol are defined in the form of a form for clarity of explanation.
- FIG. 12 is a diagram illustrating an example of a Hangul image edited according to an embodiment of the present invention, and illustrates a case where the image is not a closed curve.
- FIG. 13 to 16 show 'bok' as a Korean symbol image
- FIG. 13 shows spatial separation by dots
- FIG. 14 shows spatial separation by lines
- FIGS. 15 and 16 shows spatial separation by faces.
- Figure 17 shows the separation of space by mixing of points, lines, planes. For example, as shown in FIG. 17, when a dot and a line are parallel, convenience can be attained in the finality of a character and the expression of small characters.
- the space or the space compartment can also be freely reconfigured, and thus, in the case of expressing the character "Korea" in the Korean symbol image as shown in FIG.
- Various modifications are possible, including spaces (b, c) sharing boundaries and space compartments (c) where primitive, neutral, and longitudinal species are separated and represented independently.
- FIGS. 19 to 22 By separating the space in the space of the rectangular image frame (spatial compartment), not only the symbol can be placed in a part of the space divided by the spatial compartment, but also the outer form of the image frame and the outer form of the spatial compartment as shown in FIGS. 19 to 22. Can be freely reconstructed.
- the outer shape of the space divided by the space compartment is expressed as landscape, Jangdok, and Hanok.
- FIG. 20 is a diagram illustrating a free deformation of the spatial configuration in the space compartment
- Figure 21 is a diagram illustrating a free deformation of the outer shape of the space compartment.
- Figure 22 is a diagram illustrating the application of the deformation and overlap of the outer shape of the spatial compartment applied to the building of the downtown.
- the symbol placed in the space divided by the space can also be recognized by the change of position and exaggeration, for example, the character can be recognized by the change of position and the exaggeration of the symbol as shown in FIG.
- the same effect can be achieved by ideas and logic.
- FIG. 24 defines coordinates in which the symbol is to be located, and Korean consonants and vowels can be defined only by the position of the symbol, and the coordinates of the symbol can be defined in English, numbers, and other characters. .
- 'a' may be defined as a symbol located at a lower left corner.
- ' ⁇ ' may be defined as the symbol is located at the upper right and lower corners.
- the entire consonants and vowels of Hangeul can be defined only by the location of the coordinates.
- English letters and numbers can be defined.
- FIG. 26 is a diagram illustrating the use of symbols, objects in the shape of figures, and letters as symbols in accordance with an embodiment of the present invention.
- the left figure is an example of converting the initial, neutral, and final characters of Korean into symbols.
- the middle drawing is an example of converting the symbol into an object of a figure shape reminiscent of the symbol, and the right drawing is an example of converting the object into a character pronounced of such a thing. That is, since a pizza box is a square, a pizza is a circle, and a slice of pizza is associated with a lozenge, even if it is expressed as a letter as shown in the right figure of FIG. 26, Korean characters can be recognized by logical inference.
- the space divided by the space compartment may transform the symbol image meaning 'dragon' so that the neutral image frame is widened in the vertical direction as shown in the left figure of FIG. 27, and the center margin as shown in the right figure.
- 27 is an example in which the Hangul 'Yong' letters are combined with a picture, and a dragon figure is inserted into the space of ' ⁇ ' corresponding to the neutral to separate the spaces of the initial and the finality, and the initial and the finality are circled with ' ⁇ '.
- Neutral showed a square optimism and expressed ' ⁇ '.
- the method of character expression becomes more diverse, and it is possible to express characters using natural features such as roads, roadside trees, lakes, rivers, dams, bridges, buildings, and artificial structures. It also consists of the types of trees and the density of plantings, composition, differences in texture (strictly visual or tactile) due to the distinction between rice fields and fields, color changes caused by autumn leaves, light and shadows caused by changes in the position of the sun, and the sun and moon. It is also possible to express characters by using them or their changes.
- FIG. 28 is a diagram illustrating an example of using Korean stained glass for exterior appearance of a building.
- FIG. 29 illustrates the Hangul 'Bokja' using roads and buildings
- FIG. 30 illustrates an example of Hangul 'Hangul' letters using spatial features such as roads, rivers, trees, bushes, and parks through space division and symbol placement. Figure is shown.
- two symbol images may be overlapped to achieve a complicated symbol arrangement and a space partition.
- the 'axis' character is black, and the 'bok' character is grayed out as shown in the second image of (a), and the two symbol images are overlapped (a ) As shown in the third image.
- the shape (the final image) of the second symbol image (layer 2) is the same as the shape of the first symbol image (layer 1).
- the size of the figure (the final image) of the first symbol image (layer 1) is reduced (b) or the size of the second symbol image (the layer 2) is enlarged (c).
- the figure display of the second symbol image may be omitted (d).
- the overlapping two symbol images (layers 1 and 2) are given a unique characteristic so that they can be distinguished, and it is possible to separate each layer by one character by this characteristic.
- the characteristics imparted to a layer include two-dimensional and three-dimensional dimensions in addition to color, size, position, shape, density, composition, texture (strictly visual), brightness, saturation, shape, contrast, and pattern.
- Various methods can be considered, such as space separation.
- a mark (identifier) having the same characteristics as those of each layer is displayed on the overlapped layers to display the order of the overlapped layers. Since the purpose of the identifier is order display and decoration, it can be displayed or different from the same number as the number of layers.
- the order of layers can be identified by the identifier, and the number of layers can be identified by the number of symbol types in the overlapping symbol characters.
- the order of the identifiers is determined from 'up' to 'down' if displayed vertically or 'left' to 'right' if displayed horizontally. Thus, the identifiers located at the top and the left represent the first layer.
- the same identifier (black identifier) as one of the color, size, position, shape, density, composition, contrast, brightness, pattern, and texture of the first symbol image (Layer 1), which is generated first, may be the first of FIG.
- the same identifier as one of the color, size, position, shape, density, composition, contrast, brightness, pattern, and texture of the second symbol image (Layer 2) created later Gray identifier
- Gray identifier is shown later as in the first image (a) of FIG.
- 'one' is read first as in the second image (b) of FIG.
- the 'read' is read later, so that the overlapped first image (a) can be read in 'Hangul'.
- 33 is a diagram illustrating a sign image editing method according to an embodiment of the present invention.
- the symbol image editing apparatus 100 converts a character (including numbers) of a language (Korean, English, etc.) input through the input unit 110 into a symbol image in the controller 120 and outputs the converted image. Output in real time through 140. Specifically, it is as follows.
- an input process is performed in the symbol image editing apparatus 100 and an output process is performed through another external device, or an external process is performed through another external device according to the third embodiment.
- the description of the procedure of performing the output process in the symbol image editing apparatus 100 will be omitted.
- a user inputs letters / numbers desired to be created and edited in a symbol image through the input unit 110 of the symbol image editing apparatus 100 (S331).
- the generation unit 121 generates a symbol / number image at a position corresponding to the margin position on the letter / number image corresponding to the letter / number input through the input unit 110 (S332).
- the rectangular image frame is divided into a primary area and a neutral area as shown in FIGS. 7A, 7B, and 7C (spatial compartment), and the initial image frame according to the method described above with reference to FIGS. 3 and 4.
- Generate a symbol image corresponding to the initial and the neutral independently of the neutral image frame, or divide the rectangular image frame into the initial region, the neutral region, and the final region as shown in FIGS. Spatial Compartment) According to the method described above with reference to FIGS.
- a symbol image corresponding to the initial, neutral, and final images is generated independently of the initial image frame, the neutral image frame, and the final image frame, respectively.
- the generation unit 121 may generate the symbol image according to the modified form of the symbol according to the method described above with reference to FIG. 6.
- a numerical image corresponding to the number may be generated in the rectangular image frame according to the method described above with reference to FIG. 8.
- the English image corresponding to the uppercase or lowercase letters in English may be generated in the rectangular image frame according to the method described above with reference to FIG. 10 or 11.
- the generation unit 121 may extract the symbol image mapped to the character in real time. That is, the generation unit 121 extracts the symbol image mapped to the character input by the user and stored in the storage unit 130, and displays the rectangular image frame in FIGS. 7A, 7B, and 7C. As shown in FIG. 7 (d) to (d), a symbol image corresponding to the initial and the neutral may be composed independently of the initial image frame and the neutral image frame.
- the user may freely edit the shape, color, size or position of the generated symbol image after generating the symbol image corresponding to the letter / number using the symbol image editing apparatus 100 (S333). Specifically, the user adjusts the size or shape of the rectangular image frame in the symbol image through the input unit 110 as necessary, or each size or relative of the initial image frame, the neutral image frame, and the final image frame constituting the rectangular image frame. Enter a command to adjust the ratio, adjust the size of each symbol constituting the symbol image, or change the thickness and line segment display method (dotted line, solid line, etc.) of each image frame.
- the editing unit 122 of 100 may adjust the size or position of the symbol image displayed on the display screen of the output unit 140 (S333).
- the user may input additional character / numeric information through the input unit 110 as needed (S334).
- the generation unit 121 of the symbol image editing apparatus 100 may perform the above-described step S332. According to the method of generating a symbol image for the additional input character / number (S335).
- the user may instruct the editing to superimpose the additionally generated symbol image (second symbol image) on the first generated symbol image (first symbol image), in which case the editing unit of the symbol image editing apparatus 100
- the second symbol image overlaps the first symbol image as shown in FIG.
- an image (identifier) indicating a reading order of two overlapped symbol images may be displayed together (S337).
- the symbol image editing apparatus 100 interprets the symbol image input through the input unit 110 in the control unit 120 to interpret characters (including numbers) of the corresponding language through the output unit 140. Output in real time.
- a user may input a symbol image desired for output (display or printer or frequency output, etc.) as characters of a language.
- Select one of (a), (b) and (c), and select any one of (c) to (f) of FIG. Specifies the part to be placed.
- the user enters the step of selecting the symbol shape (point, line, face, etc.), and if the user selects the "point", the step of selecting the shape of the point (triangle, rectangle, circle, etc.) again. Will enter.
- the generation unit 121 generates letters / numbers corresponding to the letters / number images input through the input unit 110 and displays them on the display screen of the output unit 140 or outputs them to a printer or frequency.
- the frequency output may be utilized when a symbol character is output by causing a wave on the surface of the water.
- the user edits a symbol image input through the editing unit 122, or divides a predetermined partitioned space (eg, a rectangular image frame) and a space compartment that divides the space (eg, partitioning to distinguish Korean's initial, neutral, and finality. ) Can be freely edited.
- a predetermined partitioned space eg, a rectangular image frame
- a space compartment that divides the space (eg, partitioning to distinguish Korean's initial, neutral, and finality. ) Can be freely edited.
- a symbol image to which an inverted image is applied may be configured. Accordingly, the symbol image applying the reverse image for the English capital letter as shown in FIG. 34, the symbol image applying the reverse image for the English lowercase letter as shown in FIG. 35, and the symbol image applying the reverse image to the Korean initials as shown in FIG.
- the symbol image applying the inversion image for the Korean neutral as shown in FIG. 37 and the symbol image applying the inversion image for the Korean finality as shown in FIG. 38 may be configured.
- the symbol image may be configured by density and configuration. That is, the symbol of the symbol character may be represented by the composition, density, or composition, or may be expressed by a combination of composition, density, color, pattern, size, shape, texture, position, and brightness.
- a “shape” character is expressed by the configuration of a circle, and a square shape using dense, dark colors and relatively small circles is used as a symbol. That is, symbol characters can be represented by density and composition of completely different shapes without necessarily having the shapes of squares, triangles and circles.
- a natural design may be utilized as part of a symbol image to plan an urban design in which “dragon” is implemented as a symbol image.
- overlapping display (ONE) in English characters may be implemented.
- “O”, “N”, “E” is overlaid, and the separator is displayed at the top, and the symbols are expressed in black so that the symbols do not overlap. Done.
- the character image editing apparatus 100 according to another exemplary embodiment of the present invention further includes a converter 123 in addition to the configuration of the character image editing apparatus according to the exemplary embodiment of the present invention in FIG. 1. Include.
- the converting unit 123 converts specific character information into character information of different languages having the same meaning.
- the storage unit 130 stores the character information of various languages (Korean, Chinese, Japanese, English, etc.) having the same meaning, and the user can be converted to the language to be input by the user through the input unit 110
- the language can be set as the first language and the second language, respectively.
- the conversion unit 123 stores the corresponding information stored in the storage unit 130.
- the English text information corresponding to the Korean text information is searched for, and the Korean text information input into the searched English text information is converted.
- the converted English text information is transferred to the generation unit 121, the subsequent image generation and editing procedures are performed.
- the input unit 110, the generation unit 121, the storage unit 130, the editing unit 122, and the output unit 140 of FIG. 45 basically perform the same functions as those of FIG. 1.
- FIG. 46 is a flowchart illustrating the principle of a text image editing method according to another embodiment of the present invention.
- a user inputs a first language, which is a language to be input through the input unit 110, into a Korean language, After inputting and setting the two languages as English, the Korean information is input as a character to be created and edited in the dot image through the input unit 110 of the character image editing apparatus 100 (S461).
- FIG. 46 illustrates the first language as Korean and the second language as English
- various languages from around the world may be applied to the first language and the second language.
- the conversion unit 123 retrieves the English character information corresponding to the corresponding Korean character information stored in the storage unit 130, and converts the corresponding Korean character information into the retrieved English character information (S462).
- the generation unit 121 of the character image editing apparatus 100 displays the dot image at the position corresponding to the margin position on the image of the English word converted by the conversion unit 123 as described above with reference to FIGS. 10 and 11.
- the generated dot image is stored in the storage 130.
- a user who is familiar only with the first language and not familiar with the second language has the same meaning as that of the first language. Can freely create and edit the shaped symbol image.
- the user may freely edit the generated dot image after generating a dot image corresponding to English using the character image editing apparatus 100 (S464).
- the user may input additional Hangul information as the first language through the input unit 110 (S465), and the conversion unit 123 may further input English character information corresponding to the input Hangul information. Search through the storage unit 130, and converts the additional input Korean character information into the searched English character information (S466).
- the generation unit 121 of the character image editing apparatus 100 generates a dot image for the English additionally converted according to the method in step S463 described above (S467), and the generated dot image is stored in the storage unit 130. )
- the user may instruct the editing so that the additionally generated dot image (second dot image) is superimposed on the first generated dot image (first dot image), in which case the character image editing apparatus 100
- the editing unit 122 may edit the second dot image to overlap the first dot image (S468).
- the editing unit 122 may change the color, position, contrast, brightness, and pattern of the second dot image. It may be desirable to edit at least one of a texture, a size, and a shape so as to be different from the first dot image, and in implementing the present invention, the user may directly change the color, position of the second dot image through the input unit 110.
- One may input an editing command such that at least one of the contrast, the brightness, the brightness, the pattern, the texture, the size, and the shape is different from the first dot image.
- the editing unit 122 of the character image editing apparatus 100 first displays the color, position, An identifier that is equal to at least one of contrast, brightness, pattern, texture, size, and shape is displayed in front as in the first image of FIG. 9, and the color, position, contrast, brightness, pattern, texture of the second dot image input later.
- An identifier equal to at least one of,, size, and shape is displayed later as in (a) of FIG. 32, thereby allowing third parties to access the second image of FIG. 41 via an edited dot image (ONE), which is the first image of FIG. 41. 'O' in the first image of FIG. 41, and 'E' in the fourth image in FIG. 41 later, so that the edited dot image that is the first image in FIG. It will be desirable to be able to read in (S469).
- the sign image may be input through the input unit 110, the generation unit 121 By interpreting the symbol image, the character corresponding to the symbol image is extracted, and the conversion unit 123 converts the extracted character into a character of a language designated by the user, and the character converted by the conversion unit 123 is output. It may be output in real time through the unit 140.
- the user can easily understand the meaning of the symbol image in which the information of the character whose character information is not understood is formed as a language familiar to him.
- the user may regenerate a symbol image in which the character information converted into a language familiar to the user is shaped.
- a user inputs a first language (eg, Korean), which is a language input to the converter 123, and a second language (eg, English), which is a language converted and generated by the converter 123.
- a first language eg, Korean
- a second language eg, English
- a symbol image in which a character is shaped is input to the input unit 110 of the character image editing apparatus (S471), and the generation unit 121 interprets the symbol image and converts the symbol image into character information corresponding to the symbol image. It is extracted (S472).
- the generation unit 121 analyzes the image and converts and extracts the corresponding character information
- the operation of generating a symbol image from each character in FIG. 2 is reversely applied to convert and extract the character from the symbol image. There will be.
- the conversion unit 123 converts the character information of the first language (eg, a Korean language character) converted and extracted by the generation unit 121 into the character information of the second language corresponding to the character information stored in the storage unit 130 (eg, For example, an English character is searched for, and the character information of the first language is converted into the character information of the searched second language (S473).
- the character information of the first language eg, a Korean language character
- the output unit 140 of the character image editing apparatus 100 outputs the character information converted through the conversion unit 123 in real time (S474).
- a dot image is generated according to the method described above with reference to FIGS. 10 and 11 at a position corresponding to the margin position on the image of the English word converted by the conversion unit 123 of the character image editing apparatus 100 (S475).
- the generated dot image may be stored in the storage 130.
- the method may also be embodied as code readable by the computer and smart device and the smart device on a recording medium readable by the computer and the smart device and the smart device.
- the computer and the smart device and the recording medium readable by the smart device include all kinds of recording devices for storing data that can be read by the computer and the smart device system. Examples of recording media that can be read by computers and smart devices include ROM, RAM, CD-ROM, magnetic tape, floppy disk, optical data storage, flash memory, USB, SD card, and the like. In the form of a transmission via the Internet).
- the recording medium readable by the computer and the smart device may be distributed to the networked computer and the smart device system so that the code readable by the computer and the smart device may be stored and executed in a distributed manner.
- functional programs, codes, and code segments for implementing the above embodiments can be easily inferred by programmers in the art to which the present invention belongs.
- the symbol image (aka dot character) used in the present invention is a symbolic character for the combination and metaphor that promotes the combination of the character and the image in the plane and combines the subject and the character in three dimensions. It can be easily combined with objects and spaces without being easily read by the geometric composition, and can increase the value of objects and spaces by metaphorically including the message intended by the creator.
- mass consumption is made by mass production today, and this consumption pattern emphasizes the value of the product and the price of the product.
- the present invention makes it easier to combine the product with letters, so that a special meaning of purchase such as a birthday or a wedding is applied to the product.
- users will discover new values in addition to prices and brands through the meaning of the letters associated with the product.
- the present invention can be more interesting in the field of crafts, art, architecture, interior, fashion, lighting design, urban planning. Since characters can be expressed metaphorically, it is easy to express characters that do not undermine the essence of the work, so that the characters containing the artist's philosophy, intentions, beliefs, origins and favorite meanings can be easily combined and developed into a new creative genre. .
- the present invention may be proposed as an effective way to impart new features to such buildings.
- the present invention will be more powerful in combination with smart devices. Even those who do not have professional design education can use this technology to create and share new creations with their own special meanings in the space, and to freely choose the object and method of sharing.
- the present invention relates to the use of characters in this era, and can be summarized as related to character expression and interpretation incorporating science and technology.
- science and technology can be used to express characters in a flat or three-dimensional manner or to combine the expression means of the characters with natural phenomena such as light or autumn leaves to extend the range of expression.
- the present invention not only facilitates the development and application of two-dimensional and three-dimensional designs utilizing various arts and crafts symbolizing characters, but also industrial products in which characters are symbolized in various fields such as fashion, architecture, interior, and urban planning. Industrial applicability in the design industry sectors is encouraged to encourage the development of
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Abstract
Description
Claims (43)
- 기호 이미지 편집 장치에 있어서,문자를 대응하는 기호 이미지로 변환하는 생성부; 및상기 변환된 기호 이미지를 디스플레이하는 출력부를 포함하며,상기 기호 이미지는, 상기 문자의 이미지 상의 여백 위치에 대응되는 위치에 생성되는 것인 기호 이미지 편집 장치.
- 기호 이미지 편집 장치에 있어서,기호 이미지를 대응하는 문자로 변환하는 생성부; 및상기 변환된 문자를 디스플레이하는 출력부를 포함하며,상기 기호 이미지는, 상기 문자의 이미지 상의 여백 위치에 대응되는 위치에 형성된 것인 기호 이미지 편집 장치.
- 제1항 또는 제2항에 있어서,상기 문자는, 한글 문자, 영문자, 숫자 중 적어도 하나를 포함하는 것인 기호 이미지 편집 장치.
- 제1항 또는 제2항에 있어서,상기 기호 이미지의 크기, 위치, 색상, 및 형태 중 적어나 하나를 조정하는 편집부를 더 포함하는 기호 이미지 편집 장치.
- 제1항 또는 제2항에 있어서,상기 기호 이미지는 해당 문자 이미지 상의 여백의 모양에 따라 그 모양이 결정되는 것인 기호 이미지 편집 장치.
- 제5항에 있어서,상기 기호 이미지는 삼각형, 사각형, 원, 각 도형의 형상을 갖는 것인 기호 이미지 편집 장치.
- 제1항 또는 제2항에 있어서,상기 기호 이미지는, 적어도 하나의 한글 문자를 표현하는 소정의 구획된 제1 공간과, 상기 제1 공간을 점, 선, 면 또는 다른 표시에 의해 제2 공간들로 분할하며, 분할된 제2 공간들에서 초성, 중성, 종성 중 어느 하나의 기능을 수행하여 한글을 상징적으로 표현할 수 있는 공간구획과, 상기 공간구획으로 구분된 상기 제2 공간들에 배치되는 삼각형, 사각형, 원, 직선 중 적어도 하나의 상징물로 표현되는 것인 기호 이미지 편집 장치.
- 제7항에 있어서,상기 제2 공간 각각은, 횡방향 또는 종방향 또는 그 조합으로 구성되는 것인 기호 이미지 편집 장치.
- 제7항에 있어서,상기 제1 공간 각각은, 횡방향 또는 종방향으로 이격하여 배치되는 것인 기호 이미지 편집 장치.
- 제1항 또는 제2항에 있어서,상기 기호 이미지는, 적어도 2개의 기호 이미지가 오버랩핑되며, 오버랩핑된 각각의 기호 이미지를 구분하기 위해 크기, 위치, 색상, 형태, 명암, 명도, 패턴, 및 질감 중 적어도 하나를 달리하여 표현하며, 각 기호 이미지의 판독 순서를 나타내는 식별자를 구비하는 것인 기호 이미지 편집 장치.
- 기호 이미지 편집 방법으로서,a) 문자를 대응하는 기호 이미지로 변환하는 단계; 및b) 상기 변환된 기호 이미지를 디스플레이하는 단계를 포함하며,상기 기호 이미지는, 상기 문자의 이미지 상의 여백 위치에 대응되는 위치에 생성되는 것인 기호 이미지 편집 방법.
- 기호 이미지 편집 방법으로서,a) 기호 이미지를 대응하는 문자로 변환하는 단계; 및b) 상기 변환된 문자를 디스플레이하는 단계를 포함하며,상기 기호 이미지는, 상기 문자의 이미지 상의 여백 위치에 대응되는 위치에 형성된 것인 기호 이미지 편집 방법.
- 제11항 또는 제12항에 있어서,상기 문자는, 한글 문자, 영문자, 숫자 중 적어도 하나를 포함하는 것인 기호 이미지 편집 방법.
- 제11항 또는 제12항에 있어서,상기 기호 이미지의 크기, 위치, 색상, 및 형태 중 적어도 하나를 조정하는 단계를 더 포함하는 기호 이미지 편집 방법.
- 제11항 또는 제12항에 있어서,상기 기호 이미지는 해당 문자 또는 숫자 이미지 상의 여백의 모양에 따라 그 모양이 결정되는 것인 기호 이미지 편집 방법.
- 제15항에 있어서,상기 기호 이미지는 삼각형, 사각형, 원, 각 도형의 형상을 갖는 것인 기호 이미지 편집 방법.
- 제11항 또는 제12항에 있어서,상기 기호 이미지는, 적어도 하나의 한글 문자를 표현하는 소정의 구획된 제1 공간과, 상기 제1 공간을 점, 선, 면 또는 다른 표시에 의해 제2 공간들로 분할하며, 분할된 제2 공간들에서 초성, 중성, 종성 중 어느 하나의 기능을 수행하여 한글을 상징적으로 표현할 수 있는 공간구획과, 상기 공간구획으로 구분된 상기 제2 공간들에 배치되는 삼각형, 사각형, 원, 직선 중 적어도 하나의 상징물로 표현되는 것인 기호 이미지 편집 방법.
- 제17항에 있어서,상기 제2 공간 각각은, 횡방향 또는 종방향 또는 그 조합으로 구성되는 것인 기호 이미지 편집 방법.
- 제17항에 있어서,상기 제1 공간 각각은, 횡방향 또는 종방향으로 이격하여 배치되는 것인 기호 이미지 편집 방법.
- 제11항 또는 제12항에 있어서,상기 기호 이미지는, 적어도 2개의 기호 이미지가 오버랩핑되며, 오버랩핑된 각각의 기호 이미지를 구분하기 위해 크기, 위치, 색상, 형태, 명암, 명도, 패턴, 및 질감 중 적어도 하나를 달리하여 표현하며, 각 기호 이미지의 판독 순서를 나타내는 식별자를 구비하는 것인 기호 이미지 편집 방법.
- 기호 이미지 편집 장치에서의 기호 이미지 편집 방법에 있어서,(a) 상기 장치가, 문자 정보를 입력받는 단계;(b) 상기 장치가, 상기 입력된 문자 정보를 동일한 의미를 갖는 이종 언어의 문자 정보로 변환하는 단계; 및(c) 상기 장치가, 상기 변환된 이종 언어의 문자 정보에 해당하는 문자 이미지 상의 여백 위치에 대응되는 위치에 기호 이미지를 생성하는 단계;를 포함하는 기호 이미지 편집 방법.
- 제21항에 있어서,상기 (c) 단계 이후에,상기 생성된 기호 이미지의 크기, 위치, 색상, 및 형태 중 적어도 하나를 조정하는 단계를 더 포함하는 기호 이미지 편집 방법.
- 제21항에 있어서,상기 기호 이미지의 모양은, 상기 문자 이미지 상의 여백의 모양에 따라 결정되는 것인 기호 이미지 편집 방법.
- 제21항에 있어서,상기 기호 이미지의 모양은, 삼각형, 사각형, 및 원형 중 어느 하나인 것인 기호 이미지 편집 방법.
- 제21항에 있어서,상기 (c) 단계 이후에,(d) 상기 장치가, 외부로부터 추가로 입력받은 문자 정보를 동일한 의미를 갖는 이종 언어의 문자 정보로 변환하고, 변환된 이종 언어의 문자 정보에 해당하는 문자 이미지 상의 여백 위치에 대응되는 위치에 기호 이미지를 추가로 생성하는 단계를 더 포함하는 기호 이미지 편집 방법.
- 제25항에 있어서,상기 (d) 단계 이후에,(e) 상기 장치가, 상기 추가로 생성된 기호 이미지를 상기 (c) 단계에서 생성된 기호 이미지 상에 오버랩핑하는 단계를 더 포함하는 기호 이미지 편집 방법.
- 제26항에 있어서,상기 (e) 단계에 있어서,상기 (c) 단계에서 생성된 기호 이미지와, 상기 (d) 단계에서 추가로 생성된 기호 이미지는 위치, 색상, 명암, 명도, 패턴, 질감, 크기, 및 형태 중 적어도 하나에 따라 구분되는 것인 기호 이미지 편집 방법.
- 제21항에 있어서,상기 (c) 단계는,상기 변환된 이종 언어의 문자가 한글인 경우에, 변환된 한글 정보에 해당하는 한글의 초성, 중성, 종성별로 각 이미지 상의 여백 위치에 대응되는 위치에 기호 이미지를 생성하는 것인 기호 이미지 편집 방법.
- 기호 이미지 편집 장치에서의 기호 이미지 편집 방법에 있어서,(a) 상기 장치가, 문자 정보를 입력받는 단계; 및(b) 상기 장치가, 상기 입력된 문자 정보를 동일한 의미를 갖는 이종 언어의 문자 정보로 변환하는 단계; 및(c) 상기 장치가, 상기 변환된 이종 언어의 문자 정보에 해당하는 기호 이미지를 생성하는 단계를 포함하며,상기 기호 이미지는 상기 변환된 이종 언어의 문자 정보에 해당하는 문자 이미지 상의 여백 위치에 대응되는 위치에 상징물이 형성된 이미지인 것인 기호 이미지 편집 방법.
- 제11항, 제12항, 제21항 내지 제29항 중 어느 한 항에서의 각 단계를 실행하는 프로그램이 기록된 기록 매체.
- 기호 이미지 편집 장치에 있어서,문자 정보를 입력받는 입력부;상기 입력부에 입력된 문자 정보를 동일한 의미를 갖는 이종 언어의 문자 정보로 변환하는 변환부; 및상기 변환부에 의해 변환된 이종 언어의 문자 정보에 해당하는 문자 이미지 상의 여백 위치에 대응되는 위치에 기호 이미지를 생성하는 생성부;를 포함하는 기호 이미지 편집 장치.
- 제31항에 있어서,상기 생성부에 의해 생성된 상기 기호 이미지의 크기, 위치, 및 형태 중 적어도 하나를 조정하는 편집부를 더 포함하는 기호 이미지 편집 장치.
- 제31항에 있어서,상기 기호 이미지의 모양은, 상기 문자 이미지 상의 여백의 모양에 따라 결정되는 것인 기호 이미지 편집 장치.
- 제31항에 있어서,상기 기호 이미지의 모양은, 삼각형, 사각형, 및 원형 중 어느 하나인 것인 기호 이미지 편집 장치.
- 제31항에 있어서,상기 변환부는, 외부로부터 추가로 입력받은 문자 정보를 동일한 의미를 갖는 이종 언어의 문자 정보로 추가로 변환하고,상기 생성부는, 추가로 변환된 상기 이종 언어의 문자 정보에 해당하는 문자 이미지 상의 여백 위치에 대응되는 위치에 기호 이미지를 추가로 생성하는 것인 기호 이미지 편집 장치.
- 제35항에 있어서,상기 편집부는, 상기 추가로 생성된 기호 이미지를 기 생성된 기호 이미지 상에 오버랩핑 처리하는 것인 기호 이미지 편집 장치.
- 제36항에 있어서,상기 기 생성된 기호 이미지와, 상기 추가로 생성된 기호 이미지는 색상, 위치, 명암, 명도, 패턴, 질감, 크기, 및 형태 중 적어도 하나에 따라 구분되는 것인 기호 이미지 편집 장치.
- 제31항에 있어서,상기 생성부는, 상기 변환된 이종 언어의 문자가 한글인 경우에, 변환된 한글 정보에 해당하는 한글의 초성, 중성, 종성별로 각 이미지 상의 여백 위치에 대응되는 위치에 기호 이미지를 생성하는 것인 기호 이미지 편집 장치.
- 기호 이미지 편집 장치에 있어서,문자 정보를 입력받는 입력부; 및상기 입력된 문자 정보를 동일한 의미를 갖는 이종 언어의 문자 정보로 변환하는 변환부;상기 변환된 이종 언어의 문자 정보에 해당하는 기호 이미지를 생성하는 생성부;를 포함하며,상기 기호 이미지는 상기 변환된 이종 언어의 문자 정보에 해당하는 문자 이미지 상의 여백 위치에 대응되는 위치에 상징물이 형성된 이미지인 것인 기호 이미지 편집 장치.
- 제39항에 있어서,상기 생성부에 의해 생성된 상기 기호 이미지의 크기, 색상, 위치, 및 형태 중 적어도 하나를 조정하는 편집부를 더 포함하는 문자 이미지 편집 장치.
- 기호 이미지 편집 장치에서의 기호 이미지 편집 방법에 있어서,(a) 문자를 형상화한 기호 이미지가 입력되는 단계;(b) 상기 입력된 기호 이미지를 대응하는 문자로 전환시키는 단계; 및(c) 상기 전환된 문자를 동일한 의미를 갖는 이종 언어의 문자 정보로 변환하는 단계;를 포함하며,상기 기호 이미지는, 상기 문자의 이미지상의 여백 위치에 대응되는 위치에 형성된 것인 문자 이미지 편집 방법.
- 제41항에서의 상기 각 단계를 실행하는 프로그램이 기록된 기록 매체.
- 문자 이미지 편집 장치에 있어서,문자를 형상화한 기호 이미지가 입력되는 입력부;상기 입력부에 입력된 기호 이미지를 대응하는 문자로 전환하는 생성부; 및상기 생성부에 의해 전환된 문자를 동일한 의미를 갖는 이종 언어의 문자 정보로 변환하는 변환부를 포함하며,상기 기호 이미지는, 상기 문자의 이미지상의 여백 위치에 대응되는 위치에 형성된 것인 기호 이미지 편집 장치.
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CN201480013168.4A CN105027178A (zh) | 2013-01-09 | 2014-01-09 | 符号图像编辑装置、方法及记录有用以执行该方法的程序的记录介质 |
EP14737862.4A EP2945142A4 (en) | 2013-01-09 | 2014-01-09 | DEVICE AND METHOD FOR EDITING SYMBOL IMAGES AND RECORDING MEDIUM WITH A RECORDED PROGRAM FOR IMPLEMENTING THEREOF |
JP2015552580A JP6461814B2 (ja) | 2013-01-09 | 2014-01-09 | 記号イメージ編集装置及び方法並びにこれを実行するプログラムが記録された記録媒体 |
US14/795,870 US9721367B2 (en) | 2013-01-09 | 2015-07-09 | Apparatus, method and medium for editing symbol images |
HK16105088.4A HK1217137A1 (zh) | 2013-01-09 | 2016-05-04 | 符號圖像編輯裝置、方法及記錄有用以執行該方法的程序的記錄介質 |
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KR10-2013-0002691 | 2013-01-09 | ||
KR20130011657A KR101478647B1 (ko) | 2012-02-02 | 2013-02-01 | 문자 이미지 편집 장치에서의 문자 이미지 편집 방법, 및 이를 실행하는 프로그램이 기록된 기록 매체 |
KR10-2013-0011657 | 2013-02-01 | ||
KR1020130080577A KR20150006740A (ko) | 2013-07-09 | 2013-07-09 | 문자에 대한 기호 이미지 구성 방법, 및 기호 이미지에 대한 대응되는 문자의 분석 방법 |
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US11093038B2 (en) | 2019-05-14 | 2021-08-17 | Synchron Australia Pty Limited | Systems and methods for generic control using a neural signal |
WO2021086972A1 (en) | 2019-10-29 | 2021-05-06 | Synchron Australia Pty Limited | Systems and methods for configuring a brain control interface using data from deployed systems |
KR102329116B1 (ko) * | 2019-12-09 | 2021-11-19 | 숭실대학교 산학협력단 | 부분 글자 스타일 변경이 가능한 폰트 생성 장치 및 방법 |
AU2021246506A1 (en) * | 2020-04-01 | 2022-10-20 | Synchron Australia Pty Limited | Systems and methods for controlling a device using detected changes in a neural-related signal |
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EP2945142A4 (en) | 2016-07-13 |
HK1217137A1 (zh) | 2016-12-23 |
JP6461814B2 (ja) | 2019-01-30 |
US20150317817A1 (en) | 2015-11-05 |
EP2945142A1 (en) | 2015-11-18 |
JP2016512608A (ja) | 2016-04-28 |
KR20150006740A (ko) | 2015-01-19 |
CN105027178A (zh) | 2015-11-04 |
US9721367B2 (en) | 2017-08-01 |
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