Multifunctional portable intelligent interaction system having ai glasses mode

By designing a multifunctional portable intelligent interactive system with an AI glasses mode, integrating multiple functions such as environmental recognition, health monitoring, and voice dialogue, the system solves the problems of high cost and inconvenience of carrying AI devices, realizing a low-cost, portable, multifunctional AI device suitable for more scenarios, and enhancing human-computer interaction experience and environmental protection capabilities.

WO2026025838A1PCT designated stage Publication Date: 2026-02-05REN ZAN
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Patent Information

Application Number
PCT/CN2025/073499
Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
Priority Date
2024-08-01
Filing Date
2025-01-21
Publication Date
2026-02-05

AI Technical Summary

Technical Problem

Existing AI devices such as robots and smart cars are limited in their application in more scenarios due to their high cost and inconvenience.

Method used

A multifunctional portable intelligent interactive system with AI glasses mode was designed, including an AI main body, AI glasses, headband, gyroscope stabilizer, camera, microphone and environmental sensor. It integrates a variety of functional modules such as environmental recognition, health monitoring, voice dialogue, information projection, etc., and analyzes user needs and provides solutions through AI technology.

Benefits of technology

The system has low cost, is easy to carry, can accurately analyze user needs, provides multiple functions, enhances the human-computer interaction experience, is applicable to more scenarios, and has environmental protection and credit rating services.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present application relates to the technical field of intelligent interaction, and discloses a multifunctional portable intelligent interaction system having an AI glasses mode. The multifunctional portable intelligent interaction system comprises: a device body, comprising a brain module and used for executing an AI processing task; a recognition module, connected to the brain module and used for performing environment recognition and user demand analysis; a front camera, connected to the brain module and used for image acquisition and environment monitoring; a voice intercom module, connected to the brain module and used for voice recognition and dialogue; a projection module, connected to the brain module and used for projecting a simulated result of a user demand; and AI glasses, connected to the brain module and used for displaying information, thereby addressing defects of projection technology. A plurality of functional modules are integrated such that a single device can implement multiple functions such as environment recognition, health monitoring, voice dialogue, and information projection, thereby greatly improving operational efficiency and convenience. Compared with robots and intelligent vehicles, the present system has lower manufacturing costs, is easy to carry, and is applicable to more scenarios.
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Description

Multifunctional portable smart interaction system with AI glasses mode Technical Field

[0001] This invention relates to the field of intelligent interaction technology, specifically a multifunctional portable intelligent interaction system with an AI glasses mode. Background Technology

[0002] With the rapid development of technology, smart devices have gradually permeated people's daily lives, providing unprecedented convenience and efficiency. Smart devices are widely used in daily life and work. As the control center of the system, the AI ​​core integrates powerful processors and artificial intelligence algorithms. It can process data from cameras, microphones, and sensors, and generate feedback and augmented reality information in real time.

[0003] Existing AI devices such as robots and smart cars are limited in their application in many scenarios due to their high cost and inconvenience. To address these issues, this invention proposes a multifunctional portable intelligent interaction system with an AI glasses mode. Summary of the Invention

[0004] To address the shortcomings of existing technologies, this invention provides a multifunctional portable intelligent interactive system with an AI glasses mode, solving the problems of high cost and inconvenience in carrying existing AI devices such as robots and smart cars.

[0005] To achieve the above objectives, the present invention provides the following technical solution: a multifunctional portable intelligent interactive device with an AI glasses mode, comprising an AI main body, AI glasses mounted on the bottom of the AI ​​main body, a headband fixedly connected to the top of the AI ​​main body, multiple gyroscope stabilizers mounted on the outside of the AI ​​main body, a camera mounted in the middle of the gyroscope stabilizers, microphones mounted on both sides of the AI ​​main body, and an environmental sensor mounted on the top of the AI ​​main body.

[0006] An intelligent interactive system based on the above-mentioned intelligent interactive device includes:

[0007] The main body of the device includes a brain module, which is used to perform AI processing tasks;

[0008] The recognition module, connected to the brain module, is used for environmental recognition and user needs analysis;

[0009] A front-facing camera, connected to the brain module, is used for image acquisition and environmental monitoring;

[0010] A voice intercom module, connected to the brain module, is used for voice recognition and dialogue;

[0011] A projection module, connected to the brain module, is used to project simulation results of user needs;

[0012] AI glasses, connected to the brain module, are used to display information, overcoming the shortcomings of projection technology;

[0013] A health monitoring module, connected to the brain module, is used to detect the user's physical condition and provide health reminders;

[0014] A connection module, connected to the brain module, is used to enable the system to connect with mobile phones, Bluetooth headsets, tablets, smartwatches, and smart home devices;

[0015] The scoring mechanism module, connected to the brain module, is used to evaluate enterprise-related information, e-commerce platform product reviews, and personal credit information.

[0016] The model simulation module, connected to the brain module, is used to simulate and predict the migration, transformation, and fate of pollutants based on the principles of environmental science and mathematical models.

[0017] Preferably, the connection module includes:

[0018] The communication unit is used to enable wireless connectivity with mobile phones, Bluetooth headsets, tablets, smartwatches, and smart home devices.

[0019] The protocol conversion unit is used to convert data transmission protocols between different devices and systems;

[0020] The pairing management unit is used to manage and maintain pairing relationships with multiple external devices;

[0021] A data synchronization unit is used to synchronize data between the brain module and external devices.

[0022] Preferably, the identification module includes:

[0023] The physical monitoring unit is used to monitor physical indicators in the environment, including temperature, humidity, wind speed, and wind direction;

[0024] A biomonitoring unit is used to observe the reactions and changes of organisms in a polluted environment and to analyze the amount of pollutants accumulated in the organisms.

[0025] Remote sensing monitoring unit, used to acquire surface information using satellite remote sensing and airborne remote sensing technologies;

[0026] Online monitoring units are used to install continuous monitoring equipment in pollution sources or environmentally sensitive areas to acquire pollutant emission data and environmental quality data in real time.

[0027] The chemical monitoring unit is used to collect air, water, and soil samples and determine the type and concentration of pollutants through chemical analysis methods.

[0028] Preferably, the health monitoring module includes:

[0029] The diet monitoring unit is used to record and analyze users' eating habits;

[0030] The daily routine monitoring unit is used to record and analyze the user's daily routine.

[0031] The health reminder unit is used to provide health tips and warnings based on dietary and lifestyle data.

[0032] Preferably, the voice intercom module includes:

[0033] The language translation unit is used for real-time translation of various languages ​​to overcome language barriers.

[0034] The technical support unit is used to identify technical problems and provide optimal solutions through real-time scanning and monitoring.

[0035] Preferably, the projection module includes:

[0036] An environmental scanning unit is used to scan and analyze information about the user's surrounding environment.

[0037] The projection simulation unit is a specific solution used to simulate the projection needs of users.

[0038] Preferably, the scoring mechanism module includes:

[0039] Enterprise assessment unit, used to assess relevant enterprise information;

[0040] The product evaluation unit is used to record and evaluate the quality of products and after-sales service on e-commerce platforms.

[0041] The personal credit unit is used to obtain personal credit information through facial recognition scanning.

[0042] Preferably, the model simulation module includes:

[0043] Migration simulation unit, used to simulate the migration path of pollutants in the environment;

[0044] The transformation simulation unit is used to simulate the transformation process of pollutants in the environment;

[0045] Fate simulation unit is used to predict the final fate of pollutants in the environment.

[0046] Preferably, it also includes:

[0047] The memo module, connected to the brain module, is used to record the time, location, and content of to-do items through AI voice dialogue and provides intelligent reminder functions.

[0048] This invention provides a multifunctional portable intelligent interaction system with an AI glasses mode. It has the following beneficial effects:

[0049] 1. The present invention integrates multiple functional modules, realizing multiple functions such as environmental recognition, health monitoring, voice dialogue, and information projection through a single device, which greatly improves the efficiency and convenience of use.

[0050] 2. Compared with robots and smart cars, the system of this invention has a lower manufacturing cost, is more portable, and is suitable for more scenarios.

[0051] 3. By applying AI technology, the system can accurately analyze user needs and provide corresponding solutions, thus enhancing the human-computer interaction experience.

[0052] 4. The rating mechanism module provides comprehensive credit rating and product evaluation services to help users make more informed decisions. The model simulation module assists in environmental protection work by simulating and predicting pollutants, making the system's functionality more integrated and diversified. Attached Figure Description

[0053] Figure 1 is a perspective view of the present invention;

[0054] Figure 2 is a system architecture diagram of the present invention;

[0055] Figure 3 is a schematic diagram of the identification module structure of the present invention;

[0056] Figure 4 is a schematic diagram of the connection module structure of the present invention;

[0057] Figure 5 is a schematic diagram of the voice intercom module structure of the present invention;

[0058] Figure 6 is a schematic diagram of the projection module structure of the present invention;

[0059] Figure 7 is a schematic diagram of the scoring mechanism module structure of the present invention;

[0060] Figure 8 is a schematic diagram of the model simulation module structure of the present invention.

[0061] The components include: 1. AI main body; 2. AI glasses; 3. Headband; 4. Gyroscope stabilizer; 5. Camera; 6. Microphone; and 7. Environmental sensor. Detailed Implementation

[0062] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.

[0063] Example:

[0064] Please refer to Figures 1-8. This embodiment of the invention provides a multifunctional portable intelligent interactive device with an AI glasses mode, including an AI main body 1, which is the core part of the device and integrates powerful artificial intelligence processing capabilities. It is responsible for processing data from various sensors and cameras, and generating real-time feedback and augmented reality information. AI glasses 2 are installed at the bottom of the AI ​​main body 1. These are smart glasses capable of displaying augmented reality content. Through the AI ​​glasses, users can see virtual information processed by the AI ​​main body superimposed on the real world. A headband 3 is fixedly connected to the top of the AI ​​main body 1, providing wearing stability. The headband 3 adopts an adjustable design to adapt to different users' head sizes, ensuring comfort and stability during use. Multiple gyroscope stabilizers 4 are installed on the outer side of the AI ​​main body 1. A camera 5 is installed in the center of each gyroscope stabilizer 4, capable of capturing images and videos of the user's surrounding environment. These images and videos can be used for real-time analysis and processing, and the gyroscope stabilizers 4 ensure the stability of the camera 5. Microphones 6 are installed on both sides of the AI ​​main body 1 for receiving user voice commands and ambient sounds. The dual-microphone design (6) helps achieve noise reduction and stereo sound effects, thereby improving the accuracy and clarity of speech recognition. An environmental sensor (7) is mounted on the top of the AI ​​unit (1) to detect various parameters of the surrounding environment, such as light intensity, temperature, and humidity. This data can be used to adjust the device's display brightness, calculate environmental comfort, or provide appropriate feedback and suggestions in specific scenarios.

[0065] An intelligent interactive system based on the above-mentioned intelligent interactive device includes:

[0066] 1. The main body of the equipment is the core part of the system, including the brain module, which is responsible for executing various AI processing tasks and realizing the overall coordination and control of the system functions.

[0067] In this embodiment, the main body of the device includes a high-performance processor and a storage unit. The processor executes various AI algorithms and data processing tasks, while the storage unit stores system data and user information. The "brain" module connects to various functional modules, coordinating their operation to achieve intelligent interaction. The processor uses a multi-core ARM architecture, and the storage unit uses NAND flash memory to ensure efficient system operation and data security.

[0068] 2. The identification module is used for environmental identification and user needs analysis, and includes physical monitoring units, biological monitoring units, remote sensing monitoring units, online monitoring units, and chemical monitoring units.

[0069] In this embodiment, the physical monitoring unit integrates temperature, humidity, wind speed, and wind direction sensors to monitor physical parameters in the environment in real time; the biological monitoring unit observes the state of plants and animals in the environment using high-definition cameras and image processing algorithms; the remote sensing monitoring unit uses hyperspectral imaging equipment mounted on a drone to acquire large-scale surface information; the online monitoring unit installs PM2.5 sensors, gas analyzers, and other equipment in pollution sources or environmentally sensitive areas to acquire pollutant emission data in real time; and the chemical monitoring unit collects air, water, and soil samples through on-site sampling equipment and performs laboratory analysis using spectrophotometry and gas chromatography.

[0070] 3. The front-facing camera is used for image acquisition and environmental monitoring, and provides visual information to the system through the analysis of image data.

[0071] In this embodiment, the front-facing camera uses a high-definition CMOS sensor, supporting 1080p video recording and shooting. Through image recognition algorithms, the front-facing camera can detect and identify objects and environmental information around the user. The image data is processed by the "brain module" and combined with the analysis results of the recognition module to provide the user with accurate environmental recognition and demand analysis.

[0072] 4. The voice intercom module is used for voice recognition and dialogue, and includes a language translation unit and a technical support unit.

[0073] In this embodiment, the voice intercom module employs far-field speech recognition technology, using multiple microphone arrays to achieve 360-degree voice pickup. The language translation unit, through an integrated AI translation engine, supports real-time translation of multiple languages. The technical support unit provides targeted technical solutions by monitoring the user's voice input in real time and combining it with the knowledge base of the brain module. Specifically, the Google Translate API translation service can be used for language translation.

[0074] 5. The projection module is used to project the simulation results of user requirements, and includes an environment scanning unit and a projection simulation unit.

[0075] In this embodiment, the environmental scanning unit collects information about the user's surroundings using LiDAR and a high-definition camera. The projection simulation unit employs DLP projection technology to project the analysis results as images or videos onto a wall or other surface. The high brightness and high resolution of the projection module ensure the clarity and visibility of the projection effect.

[0076] 6. AI glasses serve as a supplementary device to projection, used to display information and address the shortcomings of projection technology. They include a display unit and a visual processing unit.

[0077] In this embodiment, the display unit uses an OLED microdisplay to directly display information on the eyeglass lenses. The visual processing unit uses augmented reality (AR) technology to process and enhance the image, enabling the user to clearly view the information under different lighting conditions.

[0078] 7. The health monitoring module is used to detect the user's physical condition and provide health reminders. It includes a diet monitoring unit, a rest monitoring unit, and a health reminder unit.

[0079] In this embodiment, the diet monitoring unit records the user's eating habits and calculates calorie intake using a front-facing camera and food recognition algorithms; the sleep monitoring unit records the user's physiological data such as sleep, exercise, and heart rate using a wristband or smartwatch; and the health reminder unit, combined with the brain module's health algorithm, provides personalized health tips and warnings based on the user's diet and sleep data. For example, the system can remind the user to increase exercise or adjust their diet to maintain health.

[0080] 8. The connection module is used to enable the system to connect with mobile phones, Bluetooth headsets, tablets, smartwatches and smart home devices. It includes a communication unit, a protocol conversion unit, a pairing management unit and a data synchronization unit.

[0081] In this embodiment, the communication unit employs wireless communication technologies such as Bluetooth 5.0 and Wi-Fi 6 to achieve efficient connection with external devices; the protocol conversion unit supports the conversion of multiple data transmission protocols through an integrated protocol stack; the pairing management unit uses NFC technology to achieve rapid device pairing; and the data synchronization unit achieves real-time data synchronization and backup through a cloud server or local storage device. When the user's smartwatch or mobile phone records new health data, the data synchronization unit transmits the data to the device's main processing module for processing and analysis.

[0082] 9. The scoring mechanism module is used to evaluate enterprise-related information, e-commerce platform product reviews, and personal credit information, and includes enterprise evaluation units, product evaluation units, and personal credit units.

[0083] In this embodiment, the enterprise evaluation unit analyzes the credit score and operating status of enterprises through an integrated enterprise database and AI algorithms; the product evaluation unit generates a comprehensive evaluation of products by combining users' shopping history and evaluation data with natural language processing (NLP) technology; and the personal credit unit scans users' facial features through facial recognition technology to obtain personal credit information and generates a detailed credit report by combining the credit evaluation algorithm of the brain module.

[0084] The enterprise assessment unit uses a credit scoring algorithm based on multi-indicator analysis, primarily considering factors such as the enterprise's financial condition, operating status, and credit history. The scoring formula is as follows: CreditS core = α1·Financial S core+α2·Operational S core+α3·Credit H istory S core

[0085] Where α1, α2, and α3 are weight coefficients, obtained through training with historical data. S Core is calculated based on a company's financial statement metrics (such as debt-to-equity ratio and profit margin). S Core calculates Credit based on a company's operational data (such as production efficiency and market share). H istory S Core is calculated based on a company's credit history (such as the number of overdue payments and credit default records).

[0086] The product rating unit uses a Natural Language Processing (NLP) algorithm based on user reviews to extract sentiment from user reviews and generate a comprehensive product rating score. The scoring formula is as follows:

[0087] Where N is the total number of evaluations, Ri is the i-th evaluation, β1 and β2 are weight coefficients obtained through training with historical data, and Sentiment S core(Ri) is the sentiment score of the i-th review, extracted using an NLP algorithm. L ength(Ri) is the length of the i-th evaluation;

[0088] The personal credit unit uses a multi-factor analysis-based credit scoring algorithm, comprehensively considering factors such as an individual's credit history, income, and debt situation. The scoring formula is as follows: Personal C redit S core = γ1·Income S core+γ2·Debt S core+γ3·Credit H istory S core +γ4·Behavioral S core

[0089] Where γ1, γ2, γ3, and γ4 are weight coefficients, obtained through training with historical data. S Core is calculated based on individual income level, Debt S Credit is calculated based on an individual's debt situation.H istory S Core calculates behavioral data based on an individual's credit history. S Core is calculated based on an individual's spending and repayment behavior.

[0090] 10. The model simulation module is used to simulate and predict the migration, transformation, and fate of pollutants based on the principles and mathematical models of environmental science. It includes a migration simulation unit, a transformation simulation unit, and a fate simulation unit.

[0091] In this embodiment, the migration simulation unit simulates the migration paths of pollutants in air and water using a fluid dynamics model; the transformation simulation unit simulates the transformation process of pollutants under different environmental conditions using a chemical reaction model; and the fate simulation unit predicts the final fate of pollutants in the environment using an ecological model.

[0092] Migration in the air:

[0093] The spatiotemporal distribution of pollutant concentrations can be described by the convection-diffusion equation:

[0094] Where C is the pollutant concentration; t is time; u is the wind speed vector; D is the diffusion coefficient; and S is the pollutant source term.

[0095] Migration in water:

[0096] The migration of pollutants in water can also be described by the convection-diffusion equation:

[0097] Where v is the water flow velocity vector; D w S is the diffusion coefficient in water; w For water pollutant sources;

[0098] The transformation simulation unit simulates the transformation process of pollutants under different environmental conditions using chemical reaction models. The main formulas are as follows:

[0099] For a simple first-order reaction:

[0100] Where C is the reactant concentration; k is the reaction rate constant;

[0101] For complex multi-step reactions, a system of differential equations can be used to describe them:

[0102] Among them, C i k is the concentration of the i-th substance; i Let k be the reaction rate constant of the i-th substance; ij Let be the reaction rate constant between the i-th and j-th substances;

[0103] The fate simulation unit predicts the final fate of pollutants in the environment using an ecological model. The main formulas are as follows:

[0104] The distribution of pollutants in an ecosystem can be described using a food chain model:

[0105] Among them, C p Let k be the concentration of the contaminant at the p-th level of the food chain; p k is the absorption rate constant of the p-th level; p+1 is the transmission rate constant of the (p+1)th level.

[0106] 11. The memo module is used to record the time, location, and content of to-do items through AI voice dialogue and provides intelligent reminder functions.

[0107] In this embodiment, the memo module uses an integrated speech recognition engine to record the user's voice input and convert it into text, storing it in the device's main unit. Combined with the brain module's schedule management algorithm, the memo module can provide reminders to the user at appropriate times, helping the user efficiently manage daily tasks.

[0108] Although embodiments of the invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the invention, the scope of which is defined by the appended claims and their equivalents.

Claims

Multifunctional portable intelligent interactive device with AI glasses mode, comprising an AI main body (1), characterized in that, The bottom of the AI body (1) is installed with AI glasses (2), the top of the AI body (1) is fixedly connected with a headband (3), the outer side of the AI body (1) is installed with a plurality of gyro stabilizers (4), the middle of the gyro stabilizer (4) is installed with a camera (5), the both sides of the AI body (1) are installed with microphones (6), and the top of the AI body (1) is installed with an environmental sensor (7). The intelligent interaction system based on the intelligent interaction device according to claim 1, characterized in that, It comprises: A device body containing a brain module for performing AI processing tasks; An identification module connected to the brain module for environmental identification and user demand analysis; A front camera connected to the brain module for image acquisition and environmental monitoring; A voice intercom module connected to the brain module for voice recognition and conversation; A projection module connected to the brain module for projecting simulation results of user demands; AI glasses connected to the brain module for displaying information to solve the defects of projection technology; A health monitoring module connected to the brain module for detecting user physical conditions and providing health reminders; A connection module connected to the brain module for connecting the system with a mobile phone, Bluetooth headset, tablet, smartwatch, and smart home; A scoring mechanism module connected to the brain module for evaluating enterprise-related information, e-commerce platform product reviews, and personal credit information; A model simulation module connected to the brain module for simulating and predicting the migration, transformation, and fate of pollutants based on environmental science principles and mathematical models. The intelligent interactive system according to claim 2, characterized in that, The connection module comprises: A communication unit for wireless connection with a mobile phone, Bluetooth headset, tablet, smartwatch, and smart home; A protocol conversion unit for converting data transmission protocols between different devices and systems; A pairing management unit for managing and maintaining pairing relationships with multiple external devices; A data synchronization unit for synchronizing data between the brain module and external devices. The intelligent interactive system according to claim 2, characterized in that, The identification module comprises: A physical monitoring unit for monitoring physical indicators in the environment, including temperature, humidity, wind speed, and wind direction; A biological monitoring unit for observing the reactions and changes of organisms in a polluted environment and analyzing the accumulation of pollutants in the organisms; A remote sensing monitoring unit for obtaining ground information using satellite remote sensing and aerial remote sensing technology; An online monitoring unit for installing continuous monitoring equipment at pollution sources or environmentally sensitive areas to obtain real-time pollution emission data and environmental quality data; A chemical monitoring unit for collecting air, water, and soil samples and determining the types and concentrations of pollutants through chemical analysis methods. The intelligent interactive system according to claim 2, characterized in that, The health monitoring module comprises: A diet monitoring unit for recording and analyzing user eating habits; A work and rest monitoring unit for recording and analyzing user daily work and rest; A health reminder unit for providing health tips and warnings based on diet and rest data. The intelligent interactive system according to claim 2, characterized in that, The voice intercom module comprises: A language translation unit for real-time translation of languages from different countries to overcome language barriers; A technical support unit for discovering technical difficulties through real-time scanning and monitoring functions and providing optimal solutions. The intelligent interactive system according to claim 2, characterized in that, The projection module comprises: An environmental scanning unit for scanning and analyzing information about the environment around the user; A projection simulation unit for simulating a specific solution to the user's needs. The intelligent interactive system according to claim 2, characterized in that, The scoring mechanism module includes: A business evaluation unit for evaluating business-related information; A commodity evaluation unit for recording and evaluating the quality and after-sales service of e-commerce platform goods; A personal credit unit for obtaining personal credit information through face recognition scanning. The intelligent interactive system according to claim 2, characterized in that, The model simulation module includes: A migration simulation unit for simulating the migration path of pollutants in the environment; A conversion simulation unit for simulating the conversion process of pollutants in the environment; A destination simulation unit for predicting the final destination of pollutants in the environment. The intelligent interactive system according to claim 2, characterized in that, It also includes: A memo module connected to the brain module for recording the time, place and content of to-do items through AI voice dialogue and providing intelligent reminder functions.

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