Illumination control panel interaction method and system based on Chinese character elements

Through a multi-dimensional mapping system based on Chinese characters, the existing lighting control system's interaction abstraction and cultural adaptation are solved, and intuitive and culturally fit human-computer interaction is realized to meet the needs of a diverse light environment and improve user experience.

CN120282354APending Publication Date: 2025-07-08GUANGZHOU SMARTHOME TECH CO LTD
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Patent Information

Application Number
CN202510659975.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-22
Publication Date
2025-07-08

AI Technical Summary

Technical Problem

The existing lighting control system has abstract interaction, insufficient cultural adaptation, single scenes, and high user operation threshold, making it difficult to meet the needs of a diverse light environment.

Method used

A multi-dimensional mapping system based on Chinese characters is introduced, and dynamic mapping of illumination and color temperature parameters through character shapes, vocabulary, short sentences and artistic design, combined with user-defined and preset mapping, realize intuitive and culturally fit human-computer interaction.

Benefits of technology

Reduce user cognitive load, meet the needs of diversified light environments, improve operation experience, enhance cultural adaptation, and support multi-scene applications.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses an illumination control interaction method and system based on Chinese character elements, which dynamically maps illumination and color temperature parameters through Chinese character patterns, vocabularies, short sentences and artistic design, and realizes visual and cultural-fitting man-machine interaction. The core scheme comprises Chinese character element multi-dimensional mapping (font / vocabulary / short sentence / artistic design), dynamic scene adaptation (home / hotel / exhibition hall) and culture and aesthetics fusion (calligraphy font + light and shadow effect). The system supports 4-12 grades of parameter grading and interpolation adjustment, the operation complexity is remarkably reduced, the multi-scene adaptation capability is improved, and the system is suitable for illumination upgrading of smart home, commercial space and culture display scenes.
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Description

Technical Field

[0001] The present invention relates to the technical field of smart home control, and particularly to an air conditioner control panel interaction method and system based on Chinese character elements. By dynamically mapping parameters such as temperature, humidity, and wind speed through Chinese character glyphs, vocabulary, short sentences, and artistic designs, intuitive and culturally appropriate human-computer interaction is achieved, which is suitable for optimizing the air conditioner control in scenarios such as homes, hotels, and offices. Background Art

[0002] The existing lighting control systems have the following problems: 1) Abstract interaction: relying on numerical values (such as 500 lux, 4500 K) or icons, users need to understand professional terms, and the operation threshold is high; 2) Insufficient cultural adaptation: The interfaces of international brands mostly use general symbols and lack emotional design in the Chinese context; 3) Single scene: Fixed modes are difficult to meet the diverse light environment requirements (such as reading, gathering, display).

[0003] In the prior art, the patent "A Lighting Control Method and System Based on Illuminance Grading and Color Temperature Classification" (with the same applicant) with the application number CN2025106523133 discloses a standardized parameter system for graded illuminance (4 - 12 grades) and classified color temperature (4 - 12 levels), but its interaction still relies on numerical values or icons. Based on the grading architecture of this patent, the present invention further introduces a dynamic mapping mechanism between Chinese character elements and grading parameters to achieve the following improvements: 1) Semantic interpretability: Chinese character elements (such as "dawn" and "night reading") are directly associated with the combination of graded illuminance + classified color temperature (such as "dawn = 200 lux + 3500 K"), and users can operate without memorizing numerical values; 2) Compatibility and expansion: Support users to directly bind any illuminance / color temperature value to a custom Chinese character element (such as "my mode = 700 lux + 3800 K"), breaking through the grading and classification limitations; 3) Deep cultural adaptation: Strengthen the parameter perception through the aesthetic design of Chinese characters (such as calligraphy font + light effect gradient) to make up for the lack of emotional expression in pure technical grading. Summary of the Invention

[0004] The present invention discloses a lighting control interaction method and system based on Chinese character elements, which dynamically map illuminance and color temperature parameters through Chinese character glyphs, vocabulary, short sentences, and artistic designs to achieve intuitive and culturally appropriate human-computer interaction.

[0005] The core innovative content of the present invention includes six aspects: a multi-dimensional basic mapping system of Chinese character elements, preset mapping, custom mapping, dual-mode compatibility, dynamic adaptation logic, and culturally appropriate design.

[0006] The multi-dimensional basic mapping system of Chinese character elements consists of glyph mapping, vocabulary mapping, short sentence mapping, and artistic mapping; 1) Glyph mapping: A single Chinese character (such as “bright”, “dark”, “warm”, and “cold”) expresses illumination and color temperature levels through brightness and color gradients; 2) Vocabulary mapping: strongly associate words (such as "morning light" and "night reading") with preset illumination and color temperature combinations, and users can customize vocabulary (such as "study mode = 300lux+3500K"); 3) Short sentence mapping: contextual short sentences (such as "the bright moon shines among the pines") trigger complex light effect combinations; 4) Artistic mapping: Chinese characters are combined with light and shadow effects (such as the dynamic gradient of the character “光”) to enhance visual semantic associations.

[0007] The characteristics of the preset mapping are binding the binned illumination + graded color temperature combination, the visibility of the binned color level parameters ( Figure 1 ): 1) Binding of binned illumination + graded color temperature combination: Chinese character elements are strictly associated with binned illumination + graded color temperature combination in CN2025106523133, and Chinese character words / short sentences are bound to binned illumination + graded color temperature combination, for example: "Morning light" → "Comfortable level (200 lux) + Morning light level (3500K)" in standard bins; "Night light" → interpolation level "Dimest 30 lux + Warm light level (2700K)"; 2) Visibility of classification and grading parameters: The interactive interface is marked with Chinese characters corresponding to the classification and grading names (such as "Morning light = Comfort grade + Morning light level").

[0008] Custom Mapping ( Figure 4 ): Users can bypass the grading system and directly assign any lux / K value to Chinese character elements (such as "extreme darkness = 20lux+1800K"); the system automatically records custom parameters to form a "user vocabulary" independent of the grading.

[0009] Dual-mode compatibility: In the grading mode, the Chinese character elements are strictly associated with the grading logic of CN2025106523133 to ensure that the parameters can be interpreted; in the free mode, user-defined parameters are not restricted by grading and classification to meet the needs of special scenarios.

[0010] Dynamic adaptation logic involves user profile matching and parameter decoupling and coupling: 1) User portrait matching: Automatically switch the interaction mode according to the scene (for example, the home mode displays "reading" and "rest", and the exhibition hall mode displays "focus" and "atmosphere") Figure 2 ); 2) Parameter decoupling and coupling ( Figure 3 ): Supports one-key scene mode (parameter binding) and manual fine-tuning (parameter unbinding).

[0011] Cultural fit design includes font aesthetics and semantic association: 1) Calligraphy fonts such as regular script and running script are adapted to high-end scenarios; 2) Semantic association: The vocabulary is strongly bound to the light environment (e.g., "quiet" corresponds to low illuminance + warm color temperature).

[0012] Combined with the above description, the system architecture of the present invention is introduced. It consists of three core modules ( Figure 5 ) to achieve intelligent mapping between Chinese character elements and lighting parameters: 1) Graded database: Stores preset illuminance levels of 4 - 12 grades (e.g., "comfortable level = 200 lux") and color temperature grading parameters (e.g., "dawn level = 4500 K"), compatible with the standardized grading system of patent CN2025106523133 to ensure parameter traceability and interpretability; 2) Chinese character mapping engine: Dynamically analyzes the correspondence between Chinese character elements (vocabulary / short sentences / glyphs) and graded parameters or user-defined values. For example, maps "dawn light" to "comfortable level illuminance + dawn level color temperature", or user-defined "study mode = 300 lux + 3500 K"; 3) User-defined library: Independently stores non-graded parameter combinations, supports free definition (e.g., "extremely dark = 20 lux + 1800 K"), and is isolated from graded data to avoid conflicts.

[0013] User operation process: 1) Select Chinese character elements through a physical panel, touch screen, or voice assistant (e.g., click on "dawn light"); 2) The system calls corresponding parameters from the graded database or user library, processes them through the mapping engine, and issues commands; 3) Lighting devices respond in real-time, and the interface synchronously updates the parameter status (e.g., displays "comfortable level illuminance 200 lux + dawn level color temperature 3500 K").

[0014] This system has compatibility, seamlessly docks with existing grading standards, and reduces upgrade costs; flexibility, with dual modes of graded binding and free definition to adapt to diverse needs; scalability, supports API access to the smart home platform to expand control scenarios (e.g., link with curtain switches). This architecture ensures that users can intuitively interact with complex lighting parameters through Chinese characters, while reserving technical interfaces for system upgrades and third-party integration.

[0015] The technical advantages of the present invention are reflected in: 1) Reducing cognitive load: Users can intuitively understand the lighting effects through words such as "dawn" and "night reading", without the need to memorize grading values; 2) Flexible scalability: Dual modes of graded binding and free definition adapt to standardized and personalized needs; 3) Data interconnection: The Chinese character - parameter mapping relationship provides a structured data set for AI training (e.g., the user preference data of 200 lux + 3500K corresponding to "Chenguang"). Description of the Drawings

[0016] Figure 1 : The mapping logic of Chinese character elements and grading parameters.

[0017] Figure 2 : Dynamically adapted interactive interface.

[0018] Figure 3 : Parameter decoupling and coupling process.

[0019] Figure 4 : Schematic diagram of the user-defined interface.

[0020] Figure 5 : System architecture diagram.

[0021] Figure 6 : Schematic diagram of the main interface of multi-scenario lighting in the home. On the left in the figure are the interactive interfaces of three Chinese character buttons "Reading", "Resting", and "Gathering", and on the right in the figure is the interactive interface of the "Reading" Chinese character button.

[0022] Figure 7 : Schematic diagram of the main interface of standardized lighting in hotel rooms. On the left in the figure are the interactive interfaces of three Chinese character buttons "Welcome", "Sleep", and "Work", and on the right in the figure is the interactive interface of the "Welcome" Chinese character button.

[0023] Figure 8 : Schematic diagram of the main interface of intelligent lighting in office spaces. On the left in the figure are the interactive interfaces of three Chinese character buttons "Focus", "Meeting", and "Energy Saving", and on the right in the figure is the interactive interface of the "Meeting" Chinese character button.

[0024] Figure 9 : Interactive design of artistic lighting in commercial exhibition halls, the interactive interface of the Chinese character button "Water Ink Jiangnan".

[0025] Figure 10 : Interactive interface of the "Zen" character button in high-end customized scenarios. Detailed Implementation Modes

[0026] Example 1: Multi-scenario lighting in the home. Interactive design: 1) The main interface displays three buttons "Reading", "Resting", and "Gathering" (big bold Chinese characters) ( Figure 6 on the left); 2) Clicking on "Reading" automatically switches to 200 lux (comfortable) + 4500K (neutral light) ( Figure 6 on the right), and long pressing allows fine-tuning to 100 lux ("soft"); 3) Voice command: "Turn on the cinema mode" triggers 100 lux (soft) + 2700 K (warm light; Technical effect: Meets the differentiated needs of family members, with an operation response time < 0.3 seconds.

[0027] Example 2: Standardized lighting in hotel rooms. Interaction design: 1) Preset "Welcome", "Sleep", and "Work" modes (running script font) on the home page; 2) "Welcome" mode: 500 lux (bright) + 4500 K (neutral light), automatically starts after detecting occupancy ( Figure 7 left); 3) After check-out, reset to the default mode of 200 lux (comfortable) + 3500 K (dawn light) ( Figure 7 right); Technical effect: Reduces room service requests and improves guest satisfaction.

[0028] Example 3: Intelligent lighting in office spaces. Interaction design: 1) Displays "Focus", "Meeting", and "Energy Saving" modes (simple black bold design) on the home page ( Figure 8 left); 2) Human body induction linkage: Automatically switches to 50 lux (minimum energy consumption) when no one is present; 3) Parameter decoupling: Long press the "Meeting" button ( Figure 8 right), and the illuminance can be individually increased to 800 lux; Technical effect: Reduces office energy consumption and employee fatigue.

[0029] Example 4: Artistic lighting in commercial exhibition halls. Interaction design: 1) Dynamic Chinese character art wall: The three characters "Light", "Shadow", and "Color" gradually change as the exhibits move ( Figure 4 ); 2) Short sentence mode: Clicking on "Jiangnan in Ink" triggers 500 lux (bright) + 3500 K (dawn light) + local spotlight ( Figure 9 ); 3) Data statistics: Records the duration of audience stay and light effect preferences; Technical effect: Greatly improves the attention to exhibits and doubles the interaction rate.

[0030] Example 5: High-end customization scenario. Interaction design: 1) Calligraphy font light effect: The character "Zen" (clerical script) corresponds to 200 lux (comfortable level) + 2700 K (warm light), with a bamboo shadow animation as the background ( Figure 10 ); 2) Tactile feedback: Simulates the texture vibration of rice paper when clicked; 3) Custom binding: The user records "Meditation Moment" associated with 150 lux + 2200K; Technical effect: The satisfaction of customer customization requirements is significantly improved, and the premium ability is enhanced.

Claims

1. A lighting control interaction method and system based on Chinese character elements, characterized in that Including: a) Combining Chinese character elements (glyphs, vocabulary, short sentences, artistic designs) with segmented illuminance (4 - 12 segments) and graded color temperature (4 - 12 levels) to form a preset mapping relationship; b) Supporting users to directly assign non - segmented illuminance values and color temperature values to Chinese character elements; c) The interaction interface synchronously displays the parameter association method of Chinese character elements (segmented and graded binding or free definition).

2. The method according to claim 1, wherein the segmented and graded binding logic includes: 1) Chinese character elements are associated with segmented and graded names (such as "comfortable level + morning light level") and corresponding values (200 lux + 3500 K); 2) The interpolation level is named as "low - level name + difference" (such as "warm light + 25").

3. The method according to claim 1, wherein the free - definition logic includes: 1) Users can input any lux / K value and bind it to Chinese character elements; 2) The custom parameters are stored independently without interfering with the segmented system.

4. The system according to claim 1, wherein the interaction interface dynamically marks the mapping type: 1) Chinese character elements with segmented and graded binding display segmented illuminance and graded color temperature labels (such as "comfortable level + morning light level"); 2) Chinese character elements with free definition display a "customized" identifier.

5. An illumination control system, characterized in that: 1) It is compatible with the segmented illuminance and graded color temperature parameter system of the application number CN2025106523133; 2) Synchronize the mapping relationship between segmented data and Chinese character elements to a third - party platform through the API.