Hen code table meaning character alphabet and Chinese character keyboard input method

By combining the semantic and glyphic alphabet with the Chinese character keyboard input method, the problem of the universality of Chinese characters in a multilingual environment is solved, realizing the linear representation of Chinese characters and a multilingual information sharing system, thereby improving the learning efficiency of Chinese characters and the multilingual compatibility of computer information systems.

CN120805899APending Publication Date: 2025-10-17SHENZHEN HEMA TECH DEV INST (LLP)
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Patent Information

Application Number
CN202510905011.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-06-30
Publication Date
2025-10-17

AI Technical Summary

Technical Problem

Existing technologies make it difficult to achieve the objectivity and universality of Chinese characters, resulting in limited use of Chinese characters in multilingual environments and a lack of multilingual sharing capabilities in computer information systems.

Method used

By adopting the he-code table semantic glyph alphabet and Chinese character keyboard input method, increasing the number of letters, optimizing the radical encoding rules, linearizing Chinese characters through 30 glyph letters, and inputting the encoded characters on the computer keyboard, a multilingual shared information system is established.

Benefits of technology

It has improved the efficiency of learning and using Chinese characters, realized the universality of Chinese characters in different language environments, broken the monopoly of English information systems, and promoted the development of multilingual information sharing systems.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention belongs to the technical field of Chinese character input methods and keyboards, and relates to a code table meaning character alphabet and Chinese character keyboard input method. The thirty Chinese character letters are divided into four classes of horizontal, vertical, left-falling and right-falling and five regions of horizontal, vertical and 10-falling points, and six letters in each region are arranged in a sequence from simple to complex. The sum code expansion etymon table has 183 etymons which are similar according to fonts and meanings and are classified into 30 font letters. The folding and expansion of single strokes are important basis for etymon classification, etymons are classified according to character meanings, and the shape and meaning uniformity of etymon codes is enhanced. Chinese characters are divided into simple characters and complex characters, the complex characters are divided into three blocks and four codes are taken, and the codes of core etymons in the derived etymons are preferentially taken. Chinese characters can be linearly represented by table meaning font letters after being coded, so that the Chinese characters have two characteristics and advantages of two-dimensional square blocks and one-dimensional linearity. The 30 codes are input by 26 English letter keys and 4 punctuation keys on a large keyboard of a computer, and the 30 codes are input by the combination of six keys of 1, 2, 3, 4, 5 and 6 on a numeric keyboard. The patent technology is a basis for creating a general meaning character set and multi-character sharing information system.
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Description

TECHNICAL FIELD

[0001] And code table meaning word form alphabet and Chinese character keyboard input method, belong to Chinese character form technology, table meaning word, Chinese character input method and keyboard technical field, involve a table meaning word form alphabet symbol, analysis and understanding of Chinese character form, and input use method. BACKGROUND

[0002] I. Phonic alphabet and pictographic table meaning word

[0003] There are many languages and characters in the world, but most of them are composed of a certain number of phonetic alphabets. The characters are written as they are read. This type of character is called phonetic alphabet character. Phonetic alphabet characters have their advantages, such as easy writing and easy reading. However, they also have the subjective disadvantage that phonetics is subjective and has no objective basis. The same concept will have different pronunciations in different languages. Phonetic alphabet characters bind characters and phonetics together, making them subjective characters and phonetics.

[0004] Chinese characters are the only surviving pictographic table meaning characters in the world. Chinese characters have objective meaning, such as "door earth wood man woman fire, up, down, China, rain, grass, seedling", etc. The meaning of the characters can be basically understood from the character form. The objectivity of the character form meaning is the reason why Chinese characters can be used in many dialects and have become a commonly used character in Japanese, Korean, and Vietnamese.

[0005] In the information age, people live in a world of interconnection, and convergence is the general trend. Some small languages in the world are disappearing, and large languages are expanding. The long-term development of human language will still be in the direction of unification.

[0006] Phonetic characters are subjective characters with strong exclusivity. There is no objective standard for the unification of phonetics, so phonetic alphabet characters are not suitable for the unification of human language.

[0007] Table meaning characters have objectivity, universality, easy learning, and compatibility, which should be the reasonable direction of world character unification.

[0008] Table meaning Chinese characters have a history of about 3,000 years, but in the face of unlimited future, Chinese characters should also develop. The development direction is to have better objectivity of meaning, better universality and compatibility.

[0009] Chinese characters are composed of radicals. Establishing a universal table meaning character form alphabet gives Chinese characters the dual characteristics of alphabet characters and square block characters, with two advantages. Based on the table meaning character form alphabet, and based on tens of thousands of Chinese characters, a universal table meaning character set (2,000 characters) is purified and reconstructed, providing a table meaning character solution for the unification of human language.

[0010] II. Multi-language shared computer information system

[0011] Information technology should not have special text, need to create a shared information system for all mankind, to give the people of a platform to participate in information and technology innovation and development.

[0012] "Information instruction system without text features" is an information technology instruction system invented by Ouyang Guilin, which obtained the China national invention patent certificate on June 22, 2018, with the patent number ZL 201510468093.5. The patent has been transferred to the company Shenzhen He Ma Technology Development Institute (Limited Partnership) founded by Ouyang Guilin.

[0013] The patent "information instruction system without text features" provides a path to create "multilingual shared information system".

[0014] 1. No word information instruction set, including from primary to advanced, rich in function instruction set or function set;

[0015] 2. On the basis of no word information instruction set, each country establishes the corresponding information instruction set of its own language;

[0016] 3. Programmers in each country use the information instruction set of their own language to write programs in their own language;

[0017] Through the He Ma semantic character form alphabet, the linear representation of Chinese characters can be defined, and the Chinese information instruction set corresponding to the no word information instruction set can be established, so that Chinese people can use the Chinese information instruction set to write Chinese programs.

[0018] Use English code to establish a new English information instruction set corresponding to the no word information instruction set, and programmers in English-speaking countries can use the English instruction set to write programs.

[0019] 4. Different language programs developed by each country can be run in the multilingual shared information system because they share the no word information instruction set.

[0020] 5. Programs in the multilingual shared information system can also be converted to programs written in a specific language information instruction set because they share the no word information instruction set.

[0021] In this way, Chinese characters and Chinese can be built into a Chinese information system through a multilingual shared system, avoiding the fate of being marginalized by the "English information system".

[0022] Three, the general semantic character form alphabet

[0023] Chinese characters are composed of character roots and strokes, and all Chinese character codes (Wubi, semantic code, Zheng code, and He Ma code) are composed of Chinese character roots. These character roots and strokes have objective regularity.

[0024] There are four basic strokes in flat writing: horizontal, vertical, left-falling, and right-falling strokes (一丨丿`) and seven basic glyphs (十匸コ口凵门乂), for a total of 11 glyph elements.

[0025] Both phonetic and ideographic Chinese characters are two-dimensional linear symbols, composed of relatively stable components. For example, English has 26 letters, Hebrew (Israelite) has 22 letters, Russian has 33 letters, and Korean has 40 letters. Chinese characters are composed of a limited number of about 200 fixed-shaped radicals. However, these letters or radicals are composed of 11 two-dimensional glyph elements in terms of strokes and structure.

[0026] For example, in English: 匸(CE), コ(DPb), 口(OQ), 凵(UV), 门(nM), 十乂(X), etc.

[0027] In Russian: コ(PЬ), 口(OΦ), 凵(ЦЧШЩ), 门(∏МЛД),十乂(XЖ), etc.

[0028] In Korean: etc.

[0029] It can be seen that the 11 elements of "一丨十丿`匸コ口凵门乂" are the basis of multiple letter shapes and are also the basic components of Chinese characters.

[0030] Based on 11 basic glyph elements and some commonly used radicals, a set of 30 glyph letters are determined for Chinese character roots. Establishing the glyph theory and technology of Chinese characters based on this set of glyph letters plays an important role in improving the learning and use (input) efficiency of Chinese character glyphs. Using this set of glyph letters to linearly represent Chinese characters will have an impact on the future development of Chinese characters and Chinese character informatization.

[0031] Based on the ideographic alphabet, tens of thousands of Chinese characters have been refined and recreated to create a universal ideographic script set of over 2,000. Many languages ​​in the world still lack written forms, and these can be written using this set of ideographic scripts. This universal ideographic script set provides a new solution for the unification of the world's written languages.

[0032] "Hema Horizontal and Vertical Fonts and Input Method" is a Chinese character font encoding input technology invented by Ouyang Guilin. On February 8, 2017, it was granted a Chinese national invention patent, patent number: ZL 201310731020.1. The patent has been transferred to Shenzhen Hema Technology Development Institute (Limited Partnership), a company founded by Ouyang Guilin.

[0033] The Hema Chinese character alphabet and keyboard input method are new developments based on our company's existing Hema Chinese character font technology patents and more than 10 years of research and practice under the new artificial intelligence technology conditions. Summary of the Invention

[0034] 1. Purpose of the invention of the Chinese character alphabet table and Chinese character keyboard input method

[0035] The Hema Table Character Alphabet and Chinese Character Keyboard Input Method is an improvement of my previous invention patent "Hema Horizontal and Vertical Plus Stroke Character Technology and Input Method", and the invention content and purpose are as follows.

[0036] 1. The number of code points increased from 25 to 30, which increased the number of semantic letters and the encoding capacity.

[0037] 2. The folding and expansion of single strokes is the basic factor in the richness and variation of Chinese character roots. Mastering the folding and expansion of single strokes will make it much easier to classify and remember the roots.

[0038] 3. There are two ways to classify radicals: one is to classify according to the first stroke and the shape of the character, and the other is to classify according to similar meanings. The radical table has undergone major adjustments, with 35% of the radical codes changed and 86% of the single-word codes changed accordingly. The radical table is easier to remember.

[0039] 4. Chinese characters are divided into simple characters and complex characters according to the number of radicals, which greatly simplifies the encoding rules of Chinese characters.

[0040] 5. Use the he-code ideographic alphabet to perform a one-dimensional linear representation of square Chinese characters. This way, Chinese characters have the characteristics of both square Chinese characters and linear Chinese characters, and have two advantages. This is the first step in laying the foundation for the creation of a universal ideographic character set and a Chinese information system.

[0041] 2. Technical Solutions for the Hema Character Alphabet and Chinese Character Input Method

[0042] (1) 30 ideographic characters of the code

[0043] Four basic strokes, horizontal, vertical, left-falling and right-falling strokes (一丨丿丶), 7 basic glyph elements (十匚コ口凵冂乂), plus 19 commonly used radicals with clear meanings and easy-to-recognize and write characters, make a total of 30 semantic glyph letters: 一コ匚厂工王丨凵冂口日目十土艹木米车丿亻人女犭牛丶冫氵火心疒.

[0044] These 30 letters are divided into four categories based on their first stroke: horizontal, vertical, left-stroke, and dot. These four categories are further divided into five zones: horizontal, vertical, left-stroke, and dot. The horizontal radicals occupy two zones, and '米' (rice) and '木' (wood) are placed in the same zone due to their similarity in form and meaning. The six letters in each zone are arranged from simple to complex. The order of the zones facilitates sorting and memorization, as shown in Table 1.

[0045]

[0046] The glyph letters are arranged in an orderly manner in 30 matrix grids of 5 areas × 6 positions. The area number where the letter is located is the code name of the letter input code. For example, the code name of the letter '丿' is 41, the code name of the letter '目' is 25, and the code name of the letter '疒' is 56.

[0047] 1. The more strokes a radical has, the more restrictive its meaning is. For example: 冂口日目, 艹木米车, 丿亻人女犭牛, 冫氵火心疒. The meaning of radicals becomes narrower from top to bottom.

[0048] 2. Alphabet sorting: The 30 letters in the He code alphabet are divided into five areas with the order of '一1丨2十3丿4丶5', and are arranged from simple to complex from top to bottom in the area, making the He code alphabet easy to remember and use.

[0049] The letters of other characters have only two features, "shape" and "sound", while the Chinese characters have four features, "shape", "sound", "meaning" and "sequence".

[0050] 30 ideographic glyphs, which are linear representations of Chinese characters. For example, the letter representation of "国" is: 口王丶, 草: 卄日十, 闷: 丶冂心.

[0051] (2) 30 code and code extended radical table

[0052] The Hema extended radical table contains 183 radicals, which is an extension of the 30 semantic glyph alphabet. The radicals are grouped and arranged into 30 radical codes according to the similarity between the strokes and the glyphs and meanings of the radicals, as shown in Table 2.

[0053]

[0054] (Table 2)

[0055] Single-stroke folding expansion: Single horizontal, vertical, and left-falling strokes, such as 丨丿, have multiple folding strokes, such as code 11: 一乛乁乙フ, code 21: 丨亅乚, and code 41: 丿く厶壹. This folding expansion also occurs in the expansion and variation of core semantic radicals, revealing the origins of the single-stroke components of many core radicals. For example, code 13丅: 丁了丂匸卩; code 14厂: 刀乃; code 15干: 于子; code 31十: 七乜寸; code 32: 力九; code 42亻: 儿匕; code 44几: 勹, etc., and is an important basis for radical classification and encoding memory.

[0056] There are two ways to classify root characters:

[0057] 1. Strokes and radicals are grouped together because of similarity in shape or structure, or because of the folding and extension of strokes, such as:

[0058] Code 11: horizontal (一) and horizontal fold (乛乁乙);

[0059] Code 21: vertical (丨) and vertical fold (亅乚);

[0060] Code 41: left-falling stroke (丿) and left-falling stroke (く); Code 51: dot (丶) and right-falling stroke (捺勾);

[0061] Code 13: combination of horizontal (horizontal fold) and vertical (vertical fold) strokes (丅丁了丂匚卩);

[0062] Code 14: combination of horizontal stroke and left stroke (厂刀乃), combination of horizontal stroke and right stroke (又廴);

[0063] Code 15: Root '工干' and related roots (工干于子);

[0064] Code 16: Root '王' and related roots (王耳);

[0065] Code 23: Root '冂' and related roots (冂冖);

[0066] Code 26: Root '目' and related roots (目罒田);

[0067] Code 31: The radical of a character where a horizontal stroke intersects with other single strokes (10-7);

[0068] Code 32: A radical where a horizontal stroke intersects with other single strokes (乜力九);

[0069] Code 42: A radical formed by a stroke and a vertical stroke, or a stroke and a vertical stroke (亻儿匕);

[0070] Code 43: The radical formed by the combination of left and right strokes (人八入乂);

[0071] Code 44: A radical formed by a stroke and a horizontal stroke, or a stroke and a horizontal stroke (几勹);

[0072] Code 52: Each radical composed of two dots (冫丷ン).

[0073] 2. Roots are grouped together because of similar or similar meanings, such as:

[0074] Code 23: '冖' and '冂';

[0075] Code 26: '见' and '见', '貝' and '貝';

[0076] Code 32: '土' and '阝'; Code 33: '艹' and '';

[0077] Code 35: '金钅矢石'; Code 36: '車' and '車';

[0078] Code 46: 'niu ma la hu'; Code 53:'shui'.

[0079] Code 56:'shi'.

[0080] (Three), single word code rule

[0081] And code word shape coding, single word is divided into simple word and complex word.

[0082] Simple word: the most only three radicals of Chinese characters, simple word takes all radical code according to the writing order.

[0083] Number of codes Radical Radical Encoding 1 One One 11 1 Mouth Mouth 24 2 Record Earth 32 55 2 Heaven One big 11 34 2 Fruit Sun wood 25 34 3 Same Kung one mouth 23 11 24 3 Occupation Radical one earth 21 11 24 3 Radical Divide into three blocks 41 11 32

[0084] Complex word: contains 4 or more than 4 radicals, takes 4 codes, the taking code method is, first, the complex single word is divided into three blocks, each block takes a main code, the core radical code is preferred, the three main codes are sorted according to the writing order, the fourth code is auxiliary code, which is selected from the remaining radicals after the three main codes are taken. The auxiliary code is selected from the largest code value of the radical. Therefore, the complex single word has 4 codes, 3 main codes + 1 auxiliary code.

[0085] Complex word is divided into three blocks, each block takes a main code, which is sorted according to the writing order.

[0086] Take one code from each block Three main codes Fourth auxiliary code Banana Shu live Shu live Wang 15 Respect 33 42 54 Shu sentence Shu Mouth 24 Barrier 33 44 45 Stand early Stand six days Ten 31 Plant 32 55 25 Earth wood Earth wood Comma 51 Drama 32 34 34 Corpse ancient Ko ten radical Mouth 24 Follow 12 31 21 Stand have Stand Month 23 Reflect 32 32 53 Sun call Mouth 24 Radical Divide into three blocks 25 14 54 Derived radical

[0087] In complex word, the core radical is preferred when taking code of derived radical. That is, when only one code is taken on the derived radical, the core radical code is taken. For example:

[0088] Three main codes Fourth auxiliary code Bie Wang white stone White Radical 41 Kuang Heavens pig 15 25 35 Heavens pig Comma 51 Ming Water water water 34 23 45 Water water water Heng 21 Create Ren mouth 53 53 53 Gate Comma 51 Type Open earth 32 24 53 Open One 11 Look Wang 23 42 34 Comma 51 ​ ​ ​ 33 21 32 ​ ​ ​ ​ 13 23 15 ​

[0089] (Four), linear representation of square Chinese characters

[0090] Using the code table of Chinese characters, the square Chinese characters are represented in one dimension. In this way, Chinese characters have two characteristics, square Chinese characters and linear Chinese characters, and two advantages.

[0091] For example: zhong (kou ji), guo (kou wang), kuai (tu ko ren), han (shui you), xian (ren kou), shu (mu kou), xiang (shui mu) and so on.

[0092] Linear representation of square Chinese characters lays the foundation for the creation of general table of Chinese characters and Chinese information system.

[0093] (Five), arrangement of 30 radical codes on computer keyboard

[0094] The 30 radical codes of and code are arranged on the computer Qwerty keyboard in the order of code name as shown in the following table three:

[0095]

[0096] (Table III)

[0097] The 26 English letter keys plus 4 punctuation mark keys correspond to 30 glyph letters and their code names, as shown in Table IV.

[0098]

[0099] (Table IV)

[0100] On a small numeric keypad and a mobile phone keypad, the code names of 30 input codes are inputted by two-by-two combination of 123456 six keys, to perform Chinese character input.

[0101] Three, the beneficial effects of the and code table meaning glyph alphabet and Chinese character keyboard input method

[0102] The ordered arrangement of 30 glyph letters in 5 areas of 6 bits, and the merging of the radical in each radical code according to the similarity and proximity of glyph or meaning, make the and code extended radical table easy to remember. The core meaning radical, the derived radical of the core radical, make the and code extended radical table maximize the summary of Chinese character glyph and meaning information, and each radical code has better glyph and meaning purity and unity.

[0103] Single characters are divided into simple characters and complex characters, and simple characters take all radical codes in writing order. Complex characters are divided into three blocks, and each block takes one main code, with core radical first. The three main codes are sorted in writing order, and single character code taking is simple.

[0104] Using the and code extended radical table and single character code taking method, all Chinese characters are glyph coded, and the 30 code glyph codes have good resolution for Chinese character coding, less code duplication, and fast input speed.

[0105] On a computer standard keyboard, 30 codes are inputted by 26 letter keys plus 4 punctuation mark keys, and on a numeric keypad, 30 codes are inputted by two-by-two combination of 123456 six keys. The and code Chinese character input method is a unified and universal input method for computers and mobile phones.

[0106] Two, Chinese character Chinese teaching

[0107] The and code table meaning glyph alphabet and Chinese character keyboard input method, in the application of international Chinese teaching and children's literacy teaching, is the and code Chinese teaching method, which has the following characteristics in glyph teaching: starting from glyph, focusing on glyph, paying attention to glyph writing, and using glyph input. The and code Chinese teaching method makes Chinese character glyph easy to learn and master, can overcome the difficulty of Chinese character "difficult to learn and use", and can greatly improve the efficiency of Chinese character learning and use, opening the door to fast learning of Chinese characters.

[0108] Using Pinyin to input Chinese words, users only use the Pinyin information of the word, without using the character form and stroke information of Chinese characters. Therefore, Pinyin input cannot refresh and consolidate the character form memory of Chinese characters well. If learners do not often refresh and consolidate the character form memory of Chinese characters, these memories will gradually fade away. In contrast to Pinyin input, the character form input method deals with the composition and stroke information of Chinese characters, which makes users pay attention to the details of the character form, helping to refresh and consolidate the character form memory of Chinese characters. Therefore, in order to effectively learn Chinese characters in Chinese, learners should learn character form input and use it daily. And code character form input, which is very helpful for learning and remembering Chinese characters.

[0109] And code Chinese teaching method can improve the learning efficiency of Chinese characters, and character form input can maintain the long-term effect of Chinese character teaching, which is an effective method to overcome the problem of "difficult to learn and difficult to use" of Chinese characters at home and abroad. It is suitable for children to learn to read quickly and read early, and suitable for foreign beginners to learn Chinese quickly.

[0110] (Three), the development of semantic Chinese characters, and the set of common semantic characters

[0111] Encoding Chinese characters with and code, and then representing them with and code semantic character form letters, is the linearization of the letter of square Chinese characters. Two-dimensional square Chinese characters can be represented in one dimension.

[0112] For example: Zhong (Kou Yi), Guo (Kou Wang), Kuai (Tu Ren), Han (Dui You), Jian (Dui Gong Mu), Shu (Mu Kou), Xiang (Dui Mu Mu) and so on.

[0113] In this way, Chinese characters have two forms of representation, square Chinese characters and linear Chinese characters, and two characteristics and advantages.

[0114] Semantic characters are the unified direction of world characters. Based on the existing tens of thousands of Chinese characters, purify and create a set of 2,000 semantic Chinese characters, and semantic characters have two forms of representation, two-dimensional square and one-dimensional letter. Semantic character form letters are linear representations of semantic characters.

[0115] 2,000 sets of common semantic characters, different dialects, and languages in different countries can use common semantic characters to record their languages, just like Japanese and Vietnamese using Chinese characters to record their languages. In this way, they can share the achievements of 3,000 years of semantic Chinese civilization and create a future civilization of semantic characters. Provide a semantic character solution for the unification of world characters.

[0116] (Four), multi-character information sharing system

[0117] Chinese characters are the only surviving semantic characters. Chinese characters are composed of radicals. With semantic character forms, Chinese characters have linear representation, two features, and two advantages, which can better adapt to the information age and the future requirements of human beings for characters.

[0118] Humans have entered the AI era. The practice of language models such as ChatGPT and DeepSeek has shown that in multi-layer reasoning models, semantic Chinese characters have higher efficiency than phonetic alphabetic English, saving a lot of computing power and energy. The large-scale application of artificial intelligence and robots in the future will determine the choice of semantic characters.

[0119] ChatGPT, DeepSeek and other language models have strong ability to generate computer programs. Combined with the "information instruction system without character features" invention patent, patent number: ZL 2015 1 0468093.5, it is possible and necessary to rewrite the English code in existing computer operating systems and programming languages into "non-character instruction system" to create a multi-language shared information system. People all over the world can use their own national characters to write programs and develop information systems to participate in the innovation and development of world information and technology, while promoting the development of their national characters in the information age.

[0120] With semantic character forms and a universal set of semantic characters (2,000 characters), multi-language shared information systems and Chinese information systems can be realized. This can change the current information technology, which is dominated by English information systems, and avoid the marginalization of Chinese characters in the information technology field. DETAILED DESCRIPTION

[0121] Specific implementation method of code character form alphabet and Chinese character input method:

[0122] I. And code Chinese character input method on computers and mobile phones

[0123] 1. For the standard keyboard of the computer, use 26 English letter keys and 4 punctuation symbol keys to input the 30 radical codes of and code, and the and code semantic character form alphabet can be used for input display.

[0124] 2. Mobile phones and other digital keyboards have ten number keys 0, 1, 2, 3, 4, 5, 6, 7, 8, 9. And code uses the combination of 1, 2, 3, 4, 5, 6 to input the code name of the 30 radical codes of and code, realizing Chinese character input. 0, 7, 8, 9 four keys can be used to input punctuation symbols, numerical operation symbols, numerical symbols and English letters.

[0125] 3. There are HeCode Chinese input and practice software on Microsoft computer system and Apple computer system, on Apple mobile phone system iOS, and on Android system Android. The input software of each system can be downloaded for free (www.HeChinese.net / Resource / Software).

[0126] II. In the field of Chinese teaching with Chinese characters, HeCode Chinese Teaching Method is developed with HeCode character technology as the core. It has the main characteristics of "character technology + rainbow pronunciation + short sentence recitation". It has a systematic teaching theory, a series of HeCode Chinese course and teaching software, and rich audio and video materials and websites. In more than 10 years of international Chinese teaching practice, it has achieved remarkable teaching results.

[0127] 1. HeCode character input teaching and practice software:

[0128] www.HeChinese.net / HeInput / Lesson01

[0129] 2. HeCode Chinese Book 1 teaching and practice software:

[0130] www.HeChinese.net / HeBook1 / Lesson01

[0131] The HSK HeCode Chinese fast course of HeCode Chinese Teaching Method is divided into three stages, each stage for 40 class hours, a total of 120 class hours.

[0132] After completing all the HeCode Chinese courses of four books, you will have learned 900 Chinese characters in listening, speaking, reading, writing and character input, and will have the ability to read and apply Chinese daily, and will have the ability to learn Chinese independently, reaching HSK Level 4. Then you can learn Chinese by yourself.

[0133] HeCode Chinese Teaching Method website: http: / / www.hechinese.com / HeMethod

[0134] HeCode character technology English website: https: / / www.hechinese.net / HeComponent

[0135] III. Creation of general semantic character set

[0136] Article published on WeChat public number: "Semantic characters should be the direction of world character unification"

[0137] https: / / mp.weixin.qq.com / s / IChTgeug_hHoWRS7cKy-mw

[0138] http: / / www.hechinese.com / HeZi / Mission

[0139] Based on the shape of the character, the universal set of characters (2,000) has been theoretically prepared, and the preliminary standard of the universal character has been proposed: http: / / www.hechinese.com / HeZi / HeZi_Rules

[0140] 1. Shape-based meaning: see the shape and understand the meaning, or with simple explanation, you can understand the meaning of the word;

[0141] 2. Shape does not represent sound: users can give the word a sound, and the same word can have different pronunciations in different countries;

[0142] 3. Two types of representation: new and created words can be represented by block diagrams first;

[0143] 4. Up to three core roots: each word can contain up to three core roots, plus three single strokes;

[0144] 5. Micro-expression: three core roots can form a micro-expression relationship.

[0145] The character-based character does not represent sound, can see the shape and understand the meaning, and has the characteristics of micro-expression, which is a universal character symbol. The goal is to communicate with the world and move towards the future.

[0146] Based on Chinese characters, the first 100 characters are determined: www.hechinese.com / HeZi / Set1

[0147] The development of world characters has a unified trend, and the shape-based character is the unified direction of world characters due to its objectivity, universality and compatibility. In the AI era, it is possible to use the super programming ability of artificial intelligence to replace English with a universal character and rewrite existing computer information systems and programming languages.

[0148] According to the path described in "Information instruction system without character features", from the character-free assembly instruction set to the programming language, and in the multi-language shared computer information system project, has begun, and with the early days, there will be progress.

[0149] Four, three stages of and code character shape technology

[0150] Since 2003, the existing 22 years have experienced several stages:

[0151] 1、From 2003 to 2009, and code word shape coding input technology stage, formed in multiple platforms and code word shape input method.

[0152] 2、From 2009 to 2023, and code word shape technology is applied to the field of Chinese teaching of Chinese characters, forming "and code Chinese teaching method", which has been practiced for more than 10 years, and has achieved good results.

[0153] 3、From 2024, the view of "objectivity and compatibility VS subjectivity and exclusivity of characters" is put forward: https: / / mp.weixin.qq.com / s / 6bTfQoTfu3sNHAwU28JpIw, which believes that the semantic character is the unified direction of world characters: https: / / mp.weixin.qq.com / s / IChTgeug_hHoWRS7cKy-mw

[0154] Based on Chinese characters, create a set of universal semantic characters (2,000 semantic characters), and propose a universal semantic character language scheme for the unity of human characters. Rewrite the computer information system with semantic character symbols, and create a human multi-language shared information system with computer programming language.

[0155] Starting from the technology of Chinese character shape, we have solved the problem of "difficult to learn and use" of Chinese characters, opened the door to fast learning of Chinese, and proposed a semantic character shape scheme for the unity of human characters, and provided a scheme for human shared information system.

[0156] The and code word shape technology is based on objective facts and is scientific. The discussion of "and code is the best and final code of Chinese characters": https: / / mp.weixin.qq.com / s / aYKyCaD-rrpJNwZm5oVMug

[0157] The first and second stages of and code word shape technology are successful, practical and feasible, and have great practical significance. The development of the third stage has just begun. As long as we work hard, we will make progress. As long as the direction is correct, we will be able to gather wisdom and achieve final success.

Claims

1. Hema Semantic Glyph Alphabet: There are 30 semantic glyph letters in total: 一コ匚厂工王丨凵门口日目十土艹木米车丿亻人女犭牛、冫氵火心疒. Each letter is divided into four categories of horizontal, vertical, left-falling, and dot according to its first stroke, and further divided into 5 zones of horizontal, vertical, cross, left-falling, and dot. The horizontal category occupies two zones. '米' and '木' are arranged in the same zone due to their similar shapes and meanings. The 6 letters in each zone are arranged in the order from top to bottom and from simple to complex. The Hema Semantic Glyph Alphabet is shown in Table 1 below: Table 1 The glyph letters are orderly arranged in 30 matrix grids of 5 zones × 6 positions. The zone and position number of the letter is the code name of the letter input code. The code name of the letter '丿' is 41, the code name of the letter '日' is 25, and the code name of the letter '疒' is 56.

2. Hema Extended Radicals Table: The Hema extended radicals table of 183 radicals is an extension of the semantic glyph alphabet. The radicals are grouped and arranged together according to the similarity of their glyphs and meanings with the letters, forming a radicals table of 30 code positions. Among them, the four single strokes and their fold extensions are grouped together, namely Code 11: horizontal and horizontal fold, Code 21: vertical and vertical fold, Code 41: left-falling and left-falling fold, Code 51: dot and right-falling stroke. The rest are core shape-meaning radicals with certain semantic meanings. The Hema Extended Radicals Table is shown in Table 2. Table 2.

3. Fold Extensions of Single Strokes: Each of the single strokes of horizontal, vertical, left-falling, and dot (一丨丿) has multiple fold strokes, and the fold extensions of single strokes also exist in the extended changes of core shape-meaning radicals. From this, the origin of the single-stroke composition of many core radicals can be found. For example, Code 13丅: 丁了丂匸卩; Code 14厂: 刀乃; Code 15干: 于子; Code 31十: 七乜寸; Code 32: 力九; Code 42亻: 儿匕; Code 44几: 勹, etc. The fold extensions of single strokes are an important basis for the glyph classification of radicals.

4. Grouping Radicals by Similar Meanings: Radicals with similar semantic meanings are grouped together, enhancing the purity and unity of the radical code's semantic representation. For example, Code 32: '阝' and '土' are both related to soil; Code 33: '' and '艹' are both plants; Code 35: 米钅金矢石 are all related to soil; Code 46: 马虍鹿虫 are all animals.

5. Classification of Chinese Characters into Simple and Complex Characters: Simple characters are Chinese characters that contain 1 - 3 radicals. The code extraction of simple characters is to take the codes of all their radicals according to the writing order. Complex characters are Chinese characters that contain 4 or more radicals. Four codes are taken. The code extraction method is to first divide the complex character into three-character blocks, and take one main code for each character block. The core radical code is preferred. The three main codes are sorted in the writing order. The fourth code is the auxiliary code, selected from the remaining radicals after the three main codes are taken, and the radical code with the largest code value among them is selected as the auxiliary code. ​ ​ ​ 8. One-handed keyboard with 30 ideographic letters: The 30 letters are arranged in a 5-column, 6-row input key matrix. The touch mouse and input control keys are arranged on the left, right, or top of the keyboard. This keyboard is suitable for one-handed operation, as shown in Table 4 below. Table 4.

Citation Information

Patent Citations

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