Method for providing health management service based on central equipment and related device

By connecting central equipment with home medical devices and applying artificial intelligence, the problems of data sharing and intelligent services for home medical devices are solved, achieving personalized health management and consultation.

CN120823980APending Publication Date: 2025-10-21BIOLAND TECH (SHENZHEN) CO LTD
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Patent Information

Application Number
CN202511008529.2
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-22
Publication Date
2025-10-21

AI Technical Summary

Technical Problem

Existing home medical devices struggle to achieve cross-device data resource sharing and intelligent services, making it difficult to effectively provide personalized health management and consultation.

Method used

By establishing connections with multiple home medical devices through a central device, data communication and transmission can be achieved. Combined with artificial intelligence applications, user intentions can be identified and corresponding tasks can be executed to provide health management services.

Benefits of technology

It enables cross-device resource sharing of home medical devices, provides personalized health education and consultation, and enhances the user's health management experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a method for providing health management service based on central equipment and a related device. Belongs to the technical field of health management equipment, in the method, a central device is provided with a plurality of independent spaces used for containing specific devices respectively, the specific devices are household medical devices, and data communication and / or data transmission are / is carried out between the central device and the specific devices; and the central equipment detects a specific event, analyzes a user intention represented by the specific event, determines a corresponding to-be-executed task, and executes the to-be-executed task. And the central equipment uniformly manages specific equipment, so that cross-equipment resource sharing is realized, and services are provided for users. The household medical equipment is enabled, so that when a user uses the household medical equipment, information such as measured values and user symptoms of the user is acquired, and AI services such as personalized health propaganda and education and health consultation are provided for the user.
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Description

Technical Field

[0001] The present application relates to the technical field of health management equipment, and in particular to a method and related apparatus for providing health management services to users based on home medical equipment. Background Art

[0002] With the increasing prevalence of home medical devices, households now have a variety of them, including blood glucose meters, blood pressure monitors, uric acid meters, oximeters, electrocardiogram (ECG) monitors, and home medicine cabinets. Leveraging these devices to provide users with intelligent services, including data upload, health education, and health consultation, is a current and future research direction. Summary of the Invention

[0003] This application can realize cross-device resource sharing and provide intelligent services for users.

[0004] A device for providing health management services based on a central device, the device comprising a central device and at least one specific device, the central device performing data communication and / or data transmission with the specific device; The central device has multiple independent spaces for respectively accommodating the specific devices, and the specific devices are home medical devices. The central device can identify the user intention represented based on the state change of the specific device; or identify the user intention represented based on the user's input operation; and determine the corresponding task to be executed.

[0005] Preferably, part or all of the resources of the central device and the specific device are used to execute the task to be executed.

[0006] Preferably, before the central device performs data communication and / or data transmission with the specific device, the specific device establishes a connection with the central device through user triggering.

[0007] Preferably, the user trigger operation includes touching, pressing, clicking or long pressing.

[0008] Preferably, before the central device performs data communication and / or data transmission with the specific device, the central device actively manages the specific device.

[0009] Preferably, the central device establishes an association relationship with the specific device through a perception module.

[0010] Preferably, the sensing module includes a distance sensor, a pressure sensor, a micro switch, a photoelectric switch, a magnetic switch or a safety grating sensor.

[0011] Preferably, the central device directly establishes communication with the specific device, and the method of directly establishing communication includes wireless local area network, Bluetooth, NFC near-field communication, infrared, cellular data or wired technology.

[0012] Preferably, the central device indirectly establishes a connection with the specific device for data transmission, and the indirect data transmission method includes speaker / microphone, active input or data scanning.

[0013] Preferably, the central device is installed with an application built based on artificial intelligence.

[0014] Preferably, the specific equipment includes a blood glucose meter, a blood pressure meter, a uric acid meter, a blood oximeter, an electrocardiogram monitoring instrument or a household medicine box.

[0015] The present application also proposes a method for providing health management services based on a central device, the method being applied to the central device and a specific device, the central device having multiple independent spaces for respectively accommodating the specific devices, the specific devices being home medical devices, the central device performing data communication and / or data transmission with the specific devices; the method comprising: The central device detects a specific event, analyzes the user intention represented by the specific event, determines a corresponding task to be performed, and executes the task to be performed.

[0016] Preferably, the specific event includes a status change of a specific device.

[0017] Preferably, the state change of the specific device includes a position change, a switch state change, or a data interface disconnection state change.

[0018] Preferably, the specific events include daily information events executed by the central device.

[0019] Preferably, the specific event includes an intended event of the user.

[0020] Preferably, the user's intended event includes input operation, touch, voice or key press.

[0021] Preferably, part or all of the processor, communication module, perception module, audio module, display screen, buttons, and camera of the central device are used to identify user intentions and determine corresponding tasks to be performed.

[0022] Preferably, part or all of the processor, communication module, perception module, audio module, display screen, buttons, and camera of the central device are used to execute the task to be executed.

[0023] The present application also proposes a computer-readable storage medium storing computer program instructions, which, when executed, enables a device to implement the above method.

[0024] The present application also proposes a computer program product, comprising a computer-readable code, characterized in that when the computer-readable code runs in a device, a processor in the device implements the above method.

[0025] By implementing the technical solution of this application, the central device can centrally manage specific devices, realize cross-device resource sharing, and provide services to users. It can also empower home medical devices, allowing users to collect information such as user measurements and symptoms when using home medical devices, and provide users with personalized health education, health consultation and other AI services. BRIEF DESCRIPTION OF THE DRAWINGS

[0026] Figure 1 Schematic diagram of a device for providing health management services based on a central device according to an embodiment of the present invention; Figure 2 Schematic diagram of the hardware structure of the relevant devices involved in the embodiment of the present invention; Figures 3a-3d A graphical user interface according to an embodiment of the present application; Figure 4 This is a flow chart of providing health management services based on central equipment according to an embodiment of the present invention. DETAILED DESCRIPTION

[0027] To make the purpose, technical solutions, and advantages of the embodiments of the present disclosure more clear, the technical solutions of the embodiments of the present disclosure will be clearly and completely described below in conjunction with the accompanying drawings of the embodiments of the present disclosure. Obviously, the described embodiments are part of the embodiments of the present disclosure, not all of the embodiments. Based on the described embodiments of the present disclosure, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of the present disclosure.

[0028] See also Figure 1 The storage cabinet involved in this application refers to a cabinet having multiple independent spaces for storing household medical devices (hereinafter referred to as "medical devices"), such as blood glucose meters 21, blood pressure meters 22, uric acid meters, blood oximeters, electrocardiogram monitoring instruments, and household medicine boxes, etc., and has an interface (device) that can establish information interaction and / or data transmission with medical devices, as well as an interface (device) that can interact with users.

[0029] For the sake of convenience of description, the storage cabinet may also be referred to as a central device 10 .

[0030] The medical devices, such as the blood glucose meter 21 , the blood pressure meter 22 , the uric acid meter, the oximeter, the electrocardiogram monitor, and the home medicine box, are respectively referred to as the first device 21 , the second device 22 , the third device 23 , the fourth device 24 , the fifth device 25 , and the sixth device 26 . These devices may also be referred to as specific devices 20 .

[0031] The above-mentioned specific devices can be the same device or different devices; can be one device or multiple devices. These specific devices can be placed or stored separately in the independent space provided by the central device (storage cabinet) 10.

[0032] The central device 10 can be set to a drawer type to provide an independent storage space. Each drawer can accommodate a specific device 20. The specific device can be bound to the central device and perform independent information interaction and / or data transmission; the central device can also be set to a cabinet type, with an independent space opened on the cabinet and drawers or doors set up for storing or accommodating specific devices.

[0033] In some embodiments, each independent space corresponds to a label, which is a unique identifier. The content of the label can be the name, model, serial number of the corresponding specific device. The label can also be a QR code, barcode, etc. The QR code or barcode corresponds to the information of the specific device stored in the independent space, including but not limited to product name, model, serial number, production number, etc.

[0034] The specific device 20 is used to detect the user's physiological health indicators such as blood pressure, blood sugar, uric acid, blood lipids, body temperature, electrocardiogram, etc. The specific device is a common household medical device in life, among which some devices have the function of voice broadcasting of physiological indicators, some devices have the function of displaying physiological indicators, and some devices have the function of intelligent voice interaction. The detection data of various medical devices (specific devices) are integrated together to form data resources. Through parameter models, health consultation and daily care services are provided to users based on data resources, which will become a reality in future life. The technical concept of the present invention is to integrate existing specific devices with different functions (voice broadcast, digital display, intelligent interaction) without modification, establish connections between a central device and multiple specific devices, realize cross-device data resource sharing, and provide users with AI services such as health education and health consultation.

[0035] In the present application, data communication and / or data transmission can be performed between the central device 10 and the specific device 20, and the central device 10 interacts with the user, providing the user with a coherent interactive experience.

[0036] The central device 10 and at least one specific device 20 form a communication system. The central device establishes a connection with at least one specific device. The central device can detect the status of the specific device in the communication system, analyze the user intention represented by the specific device, and perform corresponding tasks to provide health management services for the user and meet the user's needs.

[0037] The above-mentioned data communication and / or data transmission includes direct connection between the central device and the specific device and data transmission, and indirect data transmission through an intermediate medium. No data communication and / or data transmission is performed between the specific devices.

[0038] For example, a specific device can communicate directly with a central device, or it can establish a connection with the central device through an intermediate medium, such as a speaker or receiver / microphone, for indirect data transmission. Intermediary media can also include other forms to enable communication between the specific device and the central device. The central device communicates directly with a blood pressure monitor and indirectly with a blood glucose meter. Blood pressure monitors do not communicate with each other, nor with each other.

[0039] Methods for establishing direct communication between the central device 10 and the specific device 20 include: wireless local area network, Bluetooth, NFC (Near Field Communication), infrared, cellular data 31, wired or wireless network connection, etc. For example, the specific device can communicate with a central device within the same wireless local area network via wireless communication 30, such as a wireless local area network. For another example, the specific device can communicate with a nearby central device via Bluetooth or NFC. For another example, the specific device and the central device can communicate with a server 40 or a cloud server via a cellular network 31 or a wired or wireless network to establish a family account. The specific device and the central device can log in to the family account or a sub-account under the family account, that is, they can communicate by logging in to the same family account or family sub-account.

[0040] Methods for establishing indirect data transmission between the central device 10 and the specific device 20 include: speaker / microphone, active input, data scanning, etc. For example, the specific device may have a voice broadcast function, and the detection data may be broadcasted through the speaker. The central device may pick up the voice signal through the microphone and transmit the data information of the specific device to the central device. In another example, the specific device may only have a detection data display function, and the user may input the detection data value into the central device to achieve data transmission. Alternatively, the user may read aloud, and the central device may pick up the voice signal through the microphone and transmit the data information of the specific device to the central device. In another example, the central device may have a scanning window, which can scan and identify the detection data displayed on the display screen of the specific device to achieve data transmission.

[0041] The central device 10 can be installed with an AI-based application that, through voice and semantic recognition algorithms, enables instant question-and-answer voice interaction with the user, helping the user complete operations such as information search, health consultation, and emergency guidance. For example, this functionality is achieved through a phased cascade process involving voice wake-up, voice front-end processing, automatic speech recognition, natural language understanding, dialogue management, natural language production, text-to-speech, and response output.

[0042] In some embodiments, the aforementioned AI-based applications can be deployed on a central device or on a server 40, which may include physical (blade) servers, cloud servers, cloud-native microservers, serverless servers, etc. The server is also used to provide services such as authentication / authorization, information storage, and account management.

[0043] The central device 10 and the specific device 20 can establish a communication connection in various ways, such as through the device status of the specific device, user triggering, etc.

[0044] For example, the central device senses the device status of a specific device, including the location of the specific device, the switch status of the specific device, and the switch status of the drawer. For example, if a user takes out a specific device from the independent space of the central device, the central device can start working after sensing it. After the specific device is powered on, if the specific device and the central device have the function of establishing direct communication, the central device establishes a communication connection with the specific device; if the specific device and the central device can only establish indirect data transmission, the central device is in an active state, for example, the microphone / receiver is turned on, the input function of the input interface of the central device and the scanning function of the scanning window are in an active state, waiting to pick up voice signals, input detection data values, and / or scan monitoring data on the display screen of the specific device.

[0045] In some embodiments, the specific devices involved above establish an indirect data transmission mode state with the central device. The auxiliary functions of the central device include microphone pickup, input function of the input interface, scanning function of the scanning window, etc., and can also be started according to user triggers, including buttons, touch screens, etc.

[0046] The central device 10 and the specific device 20 need to be authenticated before a communication connection can be established, and the central device 10 and the user can interact only after the authorization is authenticated. That is, before the specific device and the central device communicate, the central device authenticates and authorizes the user using the specific device.

[0047] For example, authentication and authorization methods include device binding and user binding.

[0048] Device binding involves binding a specific device to a central device, establishing a corresponding relationship between the two devices. During the initial device binding process, the central device stores the bound device's information, including its device identifier and type. For example, if a blood glucose meter 21 is bound to a central device, the central device will store the meter's name, model, serial number, and production number. The central device associates the independent storage space for the blood glucose meter with the meter itself. For more information, refer to the following embodiments.

[0049] User binding refers to the binding of user identity information with a central device, where the user identity information is consistent with the personal account stored in the central device or server. The user identity information is identified through identity authentication, for example, including a password and / or biometrics (fingerprint, face, voice, etc.). That is, after the user enters the correct account and password on the input interface of the central device, the user obtains permission; the user obtains permission by completing authentication through biometrics; the user can also enter a password and then perform biometric authentication to obtain permission, so as to ensure the data security of the device and the user.

[0050] Exemplarily, the central device 10 is provided with a display screen 101 for displaying a user operation interface. For example, similar to logging into an email account, a dialog box for entering an account and password is displayed, and the user enters the account and password to log in. For another example, after entering the account and password, facial recognition is performed on the display screen to complete the authentication and authorization of the central device.

[0051] The permissions in the above embodiment include usage permissions and other permissions. Usage permissions refer to the user's permission to use a specific device to complete health indicator testing and interact with the central device. Other permissions refer to permissions other than usage permissions, including permissions to modify, delete, download, and share data.

[0052] In some embodiments, the specific device and the central device establish communication after authentication, and the user and the central device can interact after the authority authentication is passed. This method can ensure that the specific device is trusted, the user identity is unique, and the security of the physiological health indicator information of the specific device and the user can be guaranteed.

[0053] In some embodiments, after a specific device successfully binds to a central device, the central device records the specific device's information. Subsequently, when the specific device connects to the central device again, authentication and communication can be automatically established based on the usage history. For example, after a user removes a blood glucose meter 21 and turns it on to test their blood glucose, the central device senses the change in the meter's status and begins operating. It then directly establishes a communication connection with the central device within the same wireless LAN via the wireless LAN, improving the efficiency of establishing communication connections.

[0054] In some embodiments, users of specific devices may have different levels of permissions relative to the central device. The higher the permission level, the more privileged the user is. For example, if a user uses a specific device as a guest, the central device does not store the guest's account information, and the user can only receive general health advice and emergency guidance. For another example, the central device stores the user's account information and can provide health guidance based on the user's historical health indicator data, covering aspects such as diet, exercise patterns, and daily routines.

[0055] See also Figure 2 , Figure 2 A schematic diagram of the hardware structure of the central device 10 provided in an embodiment of the present application is shown.

[0056] The hardware structure of the central device 10 may include a processor 110, a communication module 120, a perception module 130, an audio module 140, a display screen 150, a button 160, a camera 170, etc., wherein the perception module 130 may include a distance sensor 131, a pressure sensor 132, a fingerprint sensor 133, etc.; the audio module 140 may include a speaker 141, a receiver 142, a microphone 143, etc.

[0057] It should be noted that the hardware structure of the central device 10 also includes other components such as a USB interface, a power interface, and a data storage interface.

[0058] It is known that the central device 10 may add some modules or reduce some modules. For example, a memory interface may be added to store instructions and data information; a power management module may be added to supply and control the internal power supply; and the display screen, buttons, and camera may be reduced.

[0059] Processor 110 includes one or more processors, including processors that perform large amounts of data operations and have high performance requirements, as well as processors that perform operations that do not require complex calculations and processing and have lower performance requirements, such as high-performance ARM processors, GPUs, DSPs, or controllers such as single-chip microcomputers. The processors may also include memory for storing instructions and data.

[0060] The wireless communication function of the central device 10 is implemented through the communication module 120 , which includes a mobile communication module 121 and / or a wireless communication module 122 .

[0061] The mobile communication module 121 may include wireless communication units such as cellular data, 2G, 3G, 4G, and 5G. Specifically, it includes at least one antenna, an input matching circuit module, an amplification circuit module, and a filtering module. The antenna receives electromagnetic waves and processes them through filtering, amplification, modulation / demodulation, and other processes to obtain corresponding data information. Accordingly, the mobile communication module 121 can also perform the reverse process, converting the data information into electromagnetic waves for transmission.

[0062] The wireless communication module 122 can be a wireless LAN, Bluetooth, NFC, infrared, or other communication unit. Specifically, it includes at least one antenna, an input matching circuit module, an amplification circuit module, a filtering module, etc. The antenna receives electromagnetic waves and processes them through filtering, amplification, modulation / demodulation, etc. to obtain corresponding data information. Correspondingly, the wireless communication module 122 can also perform the reverse processing, converting the data information into electromagnetic waves for transmission.

[0063] The mobile communication module 121 and / or wireless communication module 122 are used to support communication between the central device and specific devices to enable data uploading and sharing. At the same time, the mobile communication module 121 and / or wireless communication module 122 are used to support interaction between the central device and the user to enable operations such as data calling, reading, and receiving.

[0064] The central device 10 may sense the status of the specific device 20 through the sensing module 130 .

[0065] The distance sensor 131 is used to measure distance. The central device 10 can measure distance by infrared or laser. The distance sensor detects whether the distance of a specific device changes within a certain period of time.

[0066] The pressure sensor 132 is used to measure pressure. The central device 10 can use the pressure sensor to measure whether the pressure of a specific device stored in an independent space changes.

[0067] The fingerprint sensor 133 is used to collect fingerprints. The central device 10 can use the collected fingerprint characteristics to implement fingerprint unlocking, access unlocking, start-up fingerprint unlocking, smart interactive unlocking, etc.

[0068] The central device 10 can implement audio functions through the audio module 140 , such as a speaker 141 , a receiver 142 , a microphone 143 and other processors, including, for example, voice playback and recording functions.

[0069] The audio module 140 is used to convert digital audio signal input into analog audio signal output, and vice versa. The audio module encodes and decodes audio signals. The audio module is electrically connected (communicatively connected) to the processor. In some embodiments, some or all of the audio module may be incorporated into the processor.

[0070] The speaker 141 is used to convert the audio signal into a sound signal. The central device can play the voice through the speaker.

[0071] The receiver 142 is used to convert electrical signals into sound signals.

[0072] The microphone 143 is used to convert sound signals into audio signals. When a specific device plays voice or a user speaks, the sound signal is input into the microphone. The central device includes at least one microphone for collecting sound signals, recognizing sounds or recording sounds.

[0073] The display screen 150 is used to display the user interface, which is an interface for the application or system to interact and exchange information with the user. The user can input information data or touch the screen to start the corresponding function; it can also display information, such as in the form of a graphical user interface.

[0074] The central device 10 can turn on and off the device, start work, start intelligent interaction, upload data, etc. through the button 160.

[0075] Camera 170 is used to capture still images and, in conjunction with a graphics processing unit (GPU) and an application processor, extracts key information from these images, such as identifying and extracting corresponding blood sugar levels, blood pressure, pulse, heart rate, uric acid levels, blood oxygen levels, and electrocardiogram (ECG) data. The camera's photosensitive element includes a charge-coupled device (CCD) or complementary metal oxide semiconductor (CMOS) phototransistor. The photosensitive element converts light signals into electrical signals, and then into digital image signals. These signals are then processed using algorithms, such as optical character recognition (OCR), to identify and extract text, numbers, and symbols from the digital image signals.

[0076] The above-mentioned perception module 130 is also called a wake-up module, which includes establishing a communication connection between the central device and a specific device, starting the central device to work, intelligent interaction between the central device and the user, and uploading data by the central device.

[0077] Figure 2 The central device in the figure may include more or fewer components than shown, or combine some components, or separate some components, or include components different from those shown. The components shown in the figure may be implemented in hardware, software, or a combination of software and hardware.

[0078] Figure 3 shows the process of the method for providing health management services based on central equipment. Specifically, it includes the following steps: S101: A specific device establishes a connection with a central device.

[0079] The central device 10 refers to a storage cabinet, that is, a device having multiple independent spaces for storing medical devices respectively.

[0080] Specific devices 20 refer to home medical devices, including blood glucose meters 21, blood pressure meters 22, uric acid meters, oximeters, electrocardiogram monitors, home medicine boxes, etc. Specific devices can be the same or different; there can be one or more specific devices.

[0081] Specific devices are home medical devices that have both hardware and software resources. For example, a blood glucose meter 21 includes a blood glucose meter main unit, a lancet, and test strips. The main unit includes hardware such as a detector, a display, a Bluetooth module, and a communication module. The software in the main unit performs services such as test data calculation, device connection, data transmission, voice broadcast, and voice interaction. A blood pressure monitor 22 includes hardware such as a blood pressure monitor main unit, a cuff, a pressure pump, a valve, a display module, a pressure sensor, and a circuit control module. The software in the main unit performs services such as test data calculation, device connection, data transmission, voice broadcast, and voice interaction.

[0082] Central devices also have hardware and software resources. For example, they include processors, communication modules, sensor modules, audio modules, displays, buttons, cameras, and more. They also have memory resources, network connections, device connections, and data transmission to enable functions like recording, voice playback, intelligent interaction, and voice recognition. Software resources also include system resources and other third-party applications.

[0083] The central device can establish communication and perform data communication and / or data transmission based on the different functions of specific devices (some devices have physiological indicator voice broadcast function, some devices have physiological indicator display function, and some devices have intelligent voice interaction function).

[0084] After the central device establishes a connection with at least one specific device, data communication and / or data transmission can be carried out, forming a communication system.

[0085] In the embodiment of the present application, the central device can establish a connection with a specific device in any of the following ways: Method 1: A specific device establishes a connection with a central device through user triggering.

[0086] In some embodiments, the user's triggering operation includes touching, pressing, clicking or long pressing. Figure 3a , multiple wireless networks are found in the user interface of the specific device and the central device 301. The user clicks on one of them and selects "Connect". After being prompted to enter the password, the user can join the wireless network. Before selecting "Connect", the user can also check the "Auto Connect" option. After entering the password, the user can automatically connect to the wireless network next time. Figure 3b The connection is established after the specific device and the central device are connected to the wireless network.

[0087] Specific devices and central devices can also discover and establish communication connections through short-range communication technologies such as Bluetooth and NFC.

[0088] Method 2: The central device actively manages specific devices.

[0089] The specific device does not have the communication function, the central device has the communication function, and the central device can actively manage the specific device, such as Figure 3c As shown, the central device's application displays a user interface, including an associated device interface 501, an associated device option 502, and an add control option 503. The associated device interface 501 indicates the association between the central device and a specific device stored in its independent space. Associated devices can be managed, such as monitoring specific device status, uploading data, and providing timer reminders.

[0090] The central device establishes an association relationship with a specific device through the perception module 130 set in an independent space. Figure 3c As shown, the options corresponding to any specific device can be triggered in the associated device 501 page. For example, the associated options corresponding to the blood glucose meter, blood pressure meter, uric acid meter, blood oximeter, electrocardiogram monitoring instrument, home medicine box, etc. stored in the central device are associated.

[0091] The add control option 503 can be used to trigger the addition of a specific device to the central device. The add control can edit the name corresponding to the specific device name and the status indication such as working|off, used|unused, etc.

[0092] The device option 502 is used to display specific specific devices (glucose meter, blood pressure meter, uric acid meter, blood oximeter, electrocardiogram monitoring instrument, home medicine box, etc.), including the status of the specific device (working / off, used / not used), and the associated function of the reminder (home medicine box option 504).

[0093] It should be noted that the association operation in method 2 can also be used in method 1.

[0094] In some embodiments, when any of the distance sensors 131, pressure sensors 132, micro switches, photoelectric switches, magnetic switches, pressure switches, and safety light barriers in the sensing module 130 senses a change in the position of a specific device 20, the central device 10 proactively associates with the corresponding specific device 20. For example, if a blood glucose meter with voice notification is removed from an independent space, the central device associates with the corresponding blood glucose meter option module and activates blood glucose data collection functions, including microphone and scanning functions. If a blood pressure monitor with a display is removed from an independent space, the central device associates with the corresponding blood pressure monitor option module and activates blood pressure data collection functions, including scanning functions and microphone functions.

[0095] In some embodiments, after the central device establishes a connection with a specific device through method 1 or method 2, it can also perform authentication and only allow the specific device to communicate and / or transmit data with the central device after the authentication is passed, thereby ensuring the data security of the specific device and the detection data.

[0096] S102: User binds to central device.

[0097] Users register a family account or personal account in the central device, and the cross-device data resources obtained by the central device are stored under the corresponding account.

[0098] See also Figure 3d The user enters the account number 602 and password 603 under the home account 601 of the central device. After logging in to the account, the user can interact with the central device and access data resources.

[0099] In some embodiments, the user can trigger interactive operations, for example, through touch, press, click, long press, etc.; the user can also trigger interactive operations through voice, using the microphone or receiver on the central device to collect the user's voice instructions to trigger interactive operations; through micro switches, photoelectric switches, magnetic switches, pressure switches, safety light barriers, etc., to sense the movement of specific devices stored in an independent space in the central device to trigger events, so that the sensing perception component can perceive.

[0100] S103: Detect a specific event.

[0101] A specific event may be a state change of a specific device, such as a position change, a switch state change, etc.

[0102] In some embodiments, the status of a device includes changes in location of a specific device, power on and off, changes in data interface connection and disconnection, and executed schedule information events (timing events).

[0103] Schedule events can be executed by applications on the central device or by applications deployed on the server. For example, a home medicine box stored in a separate space on the central device can send notifications (voice broadcast, screen display) to remind users to take, apply, or inject medications on time.

[0104] Schedule information refers to the plans and arrangements for a certain time or time period, including timing statistics and information broadcasting.

[0105] A specific event may also be an intended event of the user, such as the user's input operation, touch, voice, etc.

[0106] In some embodiments, the user's input operation includes voice instructions, key operations, touch operations, other operations, etc.

[0107] After receiving the wake-up word, the central device starts detecting voice commands, including detection association commands, data upload commands, emergency guidance, health consultation and other interactive commands.

[0108] The voice command is played by the speaker 141, the receiver 142 and the microphone 143 in the audio module 141 to play the audio signal and pick up the voice signal.

[0109] S104: Analyze the user intention represented by the specific event and determine the corresponding task to be executed.

[0110] The central device analyzes the user intention represented by the specific event through the processor 110 and determines the corresponding task to be executed.

[0111] The central device recognizes the user's intention and the task to be performed through some or all of the components such as the communication module 120, the perception module 130, the audio module 140, the display screen 150, the button 160, and the camera 170.

[0112] For example, when a user takes out a blood glucose meter, the sensor in the sensing module 130 senses that the position of the specific device has changed. The central device recognizes the user's intention to perform a blood glucose test and generates a task to establish a connection with the specific device. If the blood glucose meter has a communication function, the central device generates a communication connection task; if the blood glucose meter only has a voice broadcast or display function, the central device actively manages the specific device.

[0113] In some embodiments, after the monitoring indicator detection is completed, the user enters character instructions and selects the upload data function in the graphical user interface of the display screen of the central device, and the central device generates a task to upload the detection data to the corresponding account.

[0114] S105: Execute the pending task.

[0115] The central device can select some or all of the components such as the processor 110, the communication module 120, the perception module 130, the audio module 140, the display screen 150, the button 160, the camera 170 to execute the task to be executed.

[0116] For example, a user takes out a blood pressure monitor. The central device recognizes the user's intention to perform a blood pressure test and generates a task to establish a connection with the blood pressure monitor. The blood pressure monitor has a communication function. After the blood pressure monitor is powered on and connected to a local area network, such as WLAN, the central device can communicate with the blood pressure monitor and upload the measured blood pressure data to the corresponding account according to the blood pressure monitor's option function. For another example, if the blood pressure monitor does not have a communication function, the central device will actively manage the blood pressure monitor based on the task to be executed. It can obtain the blood pressure monitor's detection data by scanning or pick up the voice signal of the blood pressure monitor's detection data through the microphone. The processor will then execute the subsequent tasks.

[0117] If the user says to the central device "How is your blood pressure?", the central device recognizes the intention of "analyzing the blood pressure test data" and breaks it down into: the size of the systolic and diastolic blood pressure values, and compares them with the preset range of systolic pressure less than 120mmHg and diastolic pressure less than 80mmHg, and recommends waiting to execute the task.

[0118] The central device performs related tasks. For example, the speaker or receiver plays the systolic and diastolic blood pressure values ​​(your systolic blood pressure is 110 mmHg, your diastolic blood pressure is 80 mmHg), indicates whether it is normal (your systolic blood pressure is normal, your diastolic blood pressure is normal), and possible advice (your blood pressure is stable, continue to maintain it).

[0119] When your blood pressure is abnormal, the central device will play the abnormal information through the speaker or receiver. For example, your systolic blood pressure is 88mmHg, which is low; your diastolic blood pressure is 90mmHg, which is high. Based on the abnormal situation, the device will provide advice. (Generally, low systolic blood pressure and high diastolic blood pressure may be caused by myocarditis, atherosclerosis, a high-salt diet, etc. Based on your historical blood pressure data analysis, your blood pressure is normal. We recommend that you retest. Precautions before the test: Sit still and rest for 5-10 minutes. Avoid exercise, smoking, drinking alcohol, or consuming caffeine. Maintain a quiet and comfortable environment, keep your arm level with your heart, empty your bladder, and avoid holding urine. Avoid strenuous activities or a heavy meal 30 minutes before the measurement. Keep calm and avoid talking.) The applications involved in this application include model algorithms, such as deep learning models, ChatGPT, LLaMA, DeepSeek and other existing deep learning models. The model can be deployed in a central device or server.

[0120] In some embodiments, the user can directly jump to step S103 for health knowledge consultation or emergency guidance as a visitor. The user can start by pressing a button, touching the screen, or speaking.

[0121] The present application also provides a computer-readable storage medium, which stores a computer program. When the computer program is run, the computer executes the above-mentioned devices such as the central device, the specific device, etc. to respectively execute the relevant steps to implement the method of providing services based on the device provided in the above embodiment.

[0122] The present application also provides a computer program product, which, when executed on a computer, enables the computer to execute the above-mentioned devices, such as a central device, a specific device, etc., to respectively execute the relevant steps, thereby realizing the method for providing services based on devices provided in the above-mentioned embodiment.

Claims

1. A device for providing health management services based on central equipment, characterized in that: The apparatus includes a central device and at least one specific device, wherein the central device performs data communication and / or data transmission with the specific device; The central device has multiple independent spaces for respectively accommodating the specific devices, wherein the specific devices are home medical devices. The central device can identify the user intention represented by the state change of the specific device; or identify the user intention represented by the user's input operation; And determine the corresponding tasks to be performed.

2. The device according to claim 1, characterized in that Part or all of the resources of the central device and the specific device are used to execute the task to be executed.

3. The device according to claim 1, characterized in that Before the central device performs data communication and / or data transmission with the specific device, the specific device establishes a connection with the central device through user triggering.

4. The device according to claim 3, characterized in that The user trigger operation includes touching, pressing, clicking or long pressing.

5. The device according to claim 1, characterized in that Before the central device performs data communication and / or data transmission with the specific device, the central device actively manages the specific device.

6. The device according to claim 5, characterized in that The central device establishes an association relationship with the specific device through the perception module.

7. The device according to claim 6, characterized in that The sensing module includes a distance sensor, a pressure sensor, a micro switch, a photoelectric switch, a magnetic switch or a safety grating sensor.

8. The device according to claim 1, characterized in that The central device directly establishes communication with the specific device, and the method of directly establishing communication includes wireless local area network, Bluetooth, NFC near-field communication, infrared, cellular data or wired technology.

9. The device according to claim 1, characterized in that The central device indirectly establishes a connection with the specific device for data transmission, and the indirect data transmission method includes a speaker / microphone, active input or data scanning.

10. The device according to claim 1, characterized in that The central device is installed with an application program built based on artificial intelligence.

11. The device according to any one of claims 1 to 10, characterized in that: The specific equipment includes a blood glucose meter, a blood pressure monitor, a uric acid meter, a blood oximeter, an electrocardiogram monitoring device or a home medicine box.

12. A method for providing health management services based on central equipment, characterized in that: The method is applied to a central device and a specific device, wherein the central device has multiple independent spaces for accommodating the specific devices respectively, and the specific devices are home medical devices. The central device performs data communication and / or data transmission with the specific devices. The method includes: The central device detects a specific event, analyzes the user intention represented by the specific event, determines a corresponding task to be performed, and executes the task to be performed.

13. The method according to claim 12, characterized in that The specific event includes a status change of a specific device.

14. The method according to claim 13, characterized in that The state change of the specific device includes a position change, a switch state change, or a data interface disconnection state change.

15. The method according to claim 12, characterized in that The specific events include daily information events executed by the central device.

16. The method according to claim 12, characterized in that The specific event includes an intention event of the user.

17. The method according to claim 16, characterized in that The user's intended event includes input operation, touch, voice or key press.

18. The method according to claim 12, characterized in that Part or all of the processor, communication module, perception module, audio module, display screen, buttons, and camera components of the central device are used to identify user intentions and determine corresponding tasks to be performed.

19. The method according to claim 12, wherein: Part or all of the processor, communication module, perception module, audio module, display screen, buttons, and camera components of the central device are used to execute the tasks to be executed.

20. A computer-readable storage medium storing computer program instructions, characterized in that: When the computer program instructions are executed, the device is caused to implement the method according to any one of claims 12 to 19.

21. A computer program product comprising computer readable code, characterized in that When the computer-readable code runs in a device, a processor in the device implements the method according to any one of claims 12 to 19.

Citation Information

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