Method for realizing intelligent unlocking of Bluetooth lock based on mobile terminal

The Bluetooth lock on the hydrogen-rich water generator is intelligently unlocked via a mobile terminal, solving the problems of lost cards and compatibility, improving user experience and security, and enabling convenient remote control and data synchronization.

CN120913306AInactive Publication Date: 2025-11-07HEBEI YICHENGDA TECHNOLOGY INFORMATION GROUP CO LTD
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Patent Information

Application Number
CN202410551373.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-05-06
Publication Date
2025-11-07
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

Existing hydrogen-rich water generators that dispense water via card have risks of card loss, compatibility issues, and leakage of user information, making them unusable for users.

Method used

The method of smart unlocking using Bluetooth locks based on mobile terminals is adopted. Through Bluetooth communication module, control module, lock mechanism module, user authentication module and data recording and cloud synchronization module, a secure connection and identity verification between mobile terminal and hydrogen-rich water generator is achieved, enabling remote unlocking operation.

Benefits of technology

It improves the convenience and security of unlocking, enhances the flexibility and security of identity verification, allows users to monitor the lock status in real time and control it remotely via mobile terminals, and improves the user experience by synchronizing data records with the cloud.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a method for realizing intelligent unlocking of a Bluetooth lock based on a mobile terminal, and relates to the technical field of water production machines. The Bluetooth communication module is responsible for Bluetooth communication between the hydrogen-rich water generator and a mobile terminal, comprises a Bluetooth adapter or a chip, enables the hydrogen-rich water generator to have Bluetooth connection capability, and is responsible for establishing and maintaining stable Bluetooth connection. A user can unlock the Bluetooth lock through the APP without carrying an additional card, the unlocking convenience and flexibility are improved, meanwhile, the user verification module can verify the identity of the user in multiple modes, the unlocking safety is enhanced, illegal invasion is prevented, the mobile terminal APP module can monitor the state of the lock in real time, and the user experience is improved. When remote control is carried out, the perception and control ability of a user to family safety is improved, the data recording and cloud synchronization module can synchronize unlocking record data to a cloud end in real time, some intelligent functions are set through the mobile terminal APP module, and the use experience of the user is improved.
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Description

TECHNICAL FIELD

[0001] The application relates to the technical field of water making machines, in particular to a method for realizing intelligent unlocking of a Bluetooth lock based on a mobile terminal. BACKGROUND

[0002] Hydrogen-rich water refers to water containing trace hydrogen molecules. In a natural state, natural hydrogen-rich water is difficult to obtain, and is generally obtained by an artificial method. The method includes a hydrogen rod capable of generating hydrogen water by being placed in a water bottle, a method of electrolyzing water to generate hydrogen water, and the like. The hydrogen concentration of the former is low, and hydrogen is gradually not generated or rarely generated over time. The hydrogen rod is discarded and a new hydrogen rod is purchased every time.

[0003] Existing hydrogen-rich water making machines are mostly used for taking water by user card swiping. However, when the card is used for a long time, the water making machine may not be able to read the chip, and the card may be lost, which may cause user balance and personal information leakage. In addition, different cards may have compatibility problems, causing the user to be unable to normally use. Therefore, the application provides a method for realizing intelligent unlocking of a Bluetooth lock based on a mobile terminal to solve the above problems. SUMMARY

[0004] The application aims to provide a method for realizing intelligent unlocking of a Bluetooth lock based on a mobile terminal to solve the problems in the background.

[0005] To achieve the above-mentioned purpose, the application provides the following technical scheme: a method for realizing intelligent unlocking of a Bluetooth lock based on a mobile terminal, comprising:

[0006] A Bluetooth communication module is responsible for Bluetooth communication between the hydrogen-rich water making machine and the mobile terminal. The module includes a Bluetooth adapter or a chip to enable the hydrogen-rich water making machine to have Bluetooth connection capability, and is responsible for establishing and maintaining stable Bluetooth connection.

[0007] A control module receives an unlocking instruction from the mobile terminal and controls the lock mechanism of the hydrogen-rich water making machine to perform an unlocking operation. The module is a microcontroller or a controller to analyze the instruction from the Bluetooth communication module and convert it into a corresponding control signal to drive the lock mechanism to open.

[0008] A lock mechanism module is used for physical locking and unlocking of the hydrogen-rich water making machine. The lock mechanism module performs corresponding actions to unlock and lock the hydrogen-rich water making machine by sending an unlocking signal through the control module.

[0009] A user verification module verifies whether the unlocking request sent by the mobile terminal is from a legal user. The module verifies based on a password and a biological recognition method, accepts verification information from the mobile terminal, and compares it with pre-stored user information to confirm the user identity before allowing unlocking.

[0010] Mobile terminal APP module: for the interaction interface between the user and the hydrogen-rich water machine, the APP provides a user interface, allowing the user to input the unlocking instruction, verification information, the APP is responsible for communication with the Bluetooth communication module of the hydrogen-rich water machine, sends the unlocking request, and receives the unlocking result;

[0011] Data recording and cloud synchronization module: for recording the historical data of the unlocking operation, and synchronizing with the cloud server, and responsible for collecting the unlocking record, and uploading the data to the cloud server through a secure network channel.

[0012] Further, the Bluetooth communication module includes the following steps:

[0013] Step 1: Device discovery and pairing: activate the Bluetooth function of the mobile terminal, search for the nearby hydrogen-rich water machine Bluetooth device, and perform pairing operation with the hydrogen-rich water machine Bluetooth device;

[0014] Step 2: Establish Bluetooth connection: the Bluetooth communication module establishes a stable connection between the mobile terminal and the hydrogen-rich water machine Bluetooth lock device, and transmits subsequent data;

[0015] Step 3: Data transmission and instruction receiving: after the Bluetooth connection is established, the mobile terminal sends the unlocking instruction or related data to the Bluetooth lock device of the hydrogen-rich water machine through the Bluetooth communication module, and receives the feedback information from the hydrogen-rich water machine through the Bluetooth communication module;

[0016] Step 4: Disconnect Bluetooth connection: after the unlocking operation is completed, disconnect the connection through the mobile terminal, and the Bluetooth communication module disconnects the connection with the hydrogen-rich water machine Bluetooth lock device, and releases the related resources.

[0017] Further, the control module includes the following steps:

[0018] Step 1: Initialization setting: initialize the control module, ensure that the control module is in the correct working state when it is ready to receive instructions from the mobile terminal;

[0019] Step 2: Receive unlocking instruction: the mobile terminal sends the unlocking instruction through the Bluetooth communication module, the control module receives the instruction, and analyzes and verifies the instruction;

[0020] Step 3: Verify user identity: the control module verifies the identity of the user sending the unlocking instruction, and completes the identity information verification by checking the password or biometric identification input by the user;

[0021] Step 4: Control the unlocking mechanism: based on the success of the identity verification information, the control module sends a control signal to the unlocking mechanism of the hydrogen-rich water machine to execute the unlocking operation;

[0022] Step 5: Monitor the unlocking state: During the unlocking process, the control module monitors the state of the unlocking mechanism in real time and monitors possible abnormal situations;

[0023] Step 6: Result feedback: The control module feeds back the unlocking result to the mobile terminal and understands the result of the unlocking operation through the mobile terminal.

[0024] Further, the lock mechanism module includes the following steps:

[0025] S1: Receive the unlocking signal: The lock mechanism module receives the unlocking signal from the control module, and sends the unlocking instruction through the mobile terminal and is verified by the control module;

[0026] S2: Initialize the unlocking mechanism: After receiving the unlocking signal, the lock mechanism module initializes the unlocking mechanism to ensure that the unlocking mechanism is in a state that can perform operations;

[0027] S3: Perform the unlocking action: After initialization, the lock mechanism module controls the unlocking mechanism to perform the unlocking action;

[0028] S4: Monitor the unlocking state: During the unlocking execution process, the lock mechanism module monitors the unlocking state in real time;

[0029] S5: Result feedback: The lock mechanism module feeds back the unlocking structure to the control module.

[0030] Further, the user verification module includes the following steps:

[0031] M1: Receive user information: The user verification module receives user information from the mobile terminal;

[0032] M2: Information verification: The user verification module verifies the validity of the received user information;

[0033] M3: Compare authentication information: The user verification module compares the information with the authentication information stored in the system, and retrieves and compares the user's authentication data;

[0034] M4: Perform identity verification: The user verification module performs the corresponding identity verification;

[0035] M5: Verification result judgment: Based on the identity verification of the user verification module, the user verification module will judge whether the user passes the identity verification.

[0036] Further, the mobile terminal APP module includes the following steps:

[0037] A1: User login and registration: used to provide user login and registration functions to ensure that users can use the APP;

[0038] A2: Bluetooth connection establishment: the APP searches for nearby hydrogen-rich water making machine devices through Bluetooth function, and establishes Bluetooth connection with the devices through the APP;

[0039] A3: Lock opening instruction sending: the user initiates a lock opening requirement through the APP interface, and the APP sends the lock opening instruction to the hydrogen-rich water making machine through Bluetooth connection;

[0040] A4: Lock opening state monitoring: the APP receives the lock opening state information from the hydrogen-rich water making machine in real time;

[0041] A5: Device information management: the APP displays the list of connected hydrogen-rich water making machine devices, and the user can view the state, power and water quality information of the device.

[0042] Further, the data recording and cloud synchronization module comprises the following steps:

[0043] B1: Data collection: the module collects the use data of the hydrogen-rich water making machine in real time, and the data is transmitted from the water making machine to the mobile terminal of the user through Bluetooth technology;

[0044] B2: Cloud synchronization: the processed data is uploaded to the cloud server through the secure gateway connection.

[0045] A hydrogen-rich water making machine using the method for realizing intelligent lock opening of Bluetooth lock based on a mobile terminal according to any one of claims 1-7.

[0046] Compared with the prior art, the beneficial effects of the present application are:

[0047] The method for realizing intelligent lock opening of Bluetooth lock based on a mobile terminal, the user can realize the lock opening operation of the Bluetooth lock through the APP, without carrying additional cards, improving the convenience and flexibility of the lock opening, the user verification module can verify the user identity through multiple ways, enhancing the security of the lock opening, preventing illegal intrusion, and the mobile terminal APP module can monitor the state of the lock in real time, and when remotely controlling, improving the user's perception and control ability of home security, the data recording and cloud synchronization module can synchronize the lock opening record data to the cloud in real time, the user can set some intelligent functions through the mobile terminal APP module, improving the user experience. BRIEF DESCRIPTION OF DRAWINGS

[0048] Fig. 1 The Bluetooth lock opening flowchart of the present application;

[0049] Fig. 2 The Bluetooth connection module flowchart of the present application;

[0050] Fig. 3 The lock mechanism module flowchart of the present application. DETAILED DESCRIPTION

[0051] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by a person of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0052] The hydrogen-rich water machine is installed in the family, and the remote water making function is realized through the mobile terminal App, so that the family members can obtain healthy hydrogen-rich water at any time. The hydrogen-rich water machine is installed in the office or other working place, and the staff can remotely control the water making through the mobile phone, so as to improve the working efficiency and the staff health. The hydrogen-rich water machine is installed in the gym, restaurant, coffee shop and other commercial places, and the customers can enjoy the convenient water making service through the mobile terminal App. The hydrogen-rich water machine needs to be powered to ensure normal work. The mobile terminal needs to be connected with the hydrogen-rich water machine through Bluetooth to realize remote control. The hydrogen-rich water machine needs to be in the network coverage range to communicate with the mobile terminal. The mobile terminal needs to have Bluetooth function and network connection function. The Bluetooth connection stability and safety between the mobile terminal and the hydrogen-rich water machine. The user needs to install and log in the corresponding mobile terminal App to realize remote control. The user needs to understand the operation interface and function setting of the mobile terminal App, such as starting water making, setting water making time, etc. The Bluetooth connection of the hydrogen-rich water machine needs to take safety measures to prevent illegal access and tampering. The mobile terminal App needs to ensure the safety of user data to prevent user privacy leakage or misuse.

[0053] As shown in Figs. 1-3 The present application provides a technical solution: a method for realizing intelligent unlocking of a Bluetooth lock based on a mobile terminal, comprising:

[0054] The Bluetooth communication module is responsible for the Bluetooth communication between the hydrogen-rich water machine and the mobile terminal. The module contains a Bluetooth adapter or chip to enable the hydrogen-rich water machine to have Bluetooth connection capability and is responsible for establishing and maintaining stable Bluetooth connection.

[0055] The control module receives the unlocking instruction from the mobile terminal and controls the lock mechanism of the hydrogen-rich water machine to execute the unlocking operation. The module is a microcontroller or controller to analyze the instruction from the Bluetooth communication module and convert it into a corresponding control signal to drive the lock mechanism to open.

[0056] The lock mechanism module is used for physical locking and unlocking of the hydrogen-rich water machine. The lock mechanism module executes corresponding actions to unlock and unlock the hydrogen-rich water machine through the unlocking signal sent by the control module.

[0057] User authentication module: verify whether the unlocking request sent by the mobile terminal is from a legal user, the module verifies based on password and biometric identification, and accepts the authentication information from the mobile terminal, and compares with the pre-stored user information, confirms the user identity, and then allows unlocking;

[0058] Mobile terminal APP module: used for the interaction interface between the user and the hydrogen-rich water machine, the APP provides a user interface, allowing the user to input unlocking instructions and authentication information, the APP is responsible for communication with the Bluetooth communication module of the hydrogen-rich water machine, sending an unlocking request, and receiving an unlocking result;

[0059] Data recording and cloud synchronization module: used for recording the historical data of unlocking operation, and synchronizing with the cloud server, and responsible for collecting unlocking records, and uploading data to the cloud server through a secure network channel.

[0060] The Bluetooth communication module includes the following steps:

[0061] Step 1: Device discovery and pairing: activate the Bluetooth function of the mobile terminal, search for the hydrogen-rich water machine Bluetooth device nearby, and perform pairing operation with the hydrogen-rich water machine Bluetooth device, during the pairing process, the mobile terminal will prompt the user to input the pairing code or confirm the pairing request;

[0062] Step 2: Establish Bluetooth connection: the Bluetooth communication module establishes a stable connection between the mobile terminal and the hydrogen-rich water machine Bluetooth lock device, and transmits subsequent data, after the connection is established, the preset Bluetooth protocol transmits data;

[0063] Step 3: Data transmission and instruction receiving: after the Bluetooth connection is established, the mobile terminal sends unlocking instructions or related data to the hydrogen-rich water machine Bluetooth lock device through the Bluetooth communication module, and receives feedback information from the hydrogen-rich water machine through the Bluetooth communication module, after the instruction execution and feedback information receiving, the Bluetooth connection remains open to facilitate subsequent data transmission or instruction sending, when there is no need for communication, the Bluetooth connection is directly disconnected;

[0064] Step 4: Disconnect Bluetooth connection: after the unlocking operation is completed, disconnect the connection through the mobile terminal, the Bluetooth communication module disconnects the connection with the hydrogen-rich water machine Bluetooth lock device, and releases the related resources, if unlocking fails or an exception occurs, the mobile terminal will perform corresponding error processing and prompt the user to try again.

[0065] The control module includes the following steps:

[0066] Step 1: Initialization setting: initialize the control module to ensure that the control module is in the correct working state when preparing to receive instructions from the mobile terminal;

[0067] Step 2: Receive the unlocking instruction: The mobile terminal sends the unlocking instruction through the Bluetooth communication module, and the control module receives the instruction and analyzes and verifies it;

[0068] Step 3: Verify user identity: The control module verifies the identity of the user sending the unlocking instruction, and completes the identity verification by checking the password or biometric identification input by the user;

[0069] Step 4: Control the unlocking mechanism: Based on the success of identity verification information, the control module sends a control signal to the unlocking mechanism of the hydrogen-rich water machine to execute the unlocking operation. After the identity verification information is successful, the control module will receive the unlocking instruction from the identity verification system. The control module generates a corresponding control signal according to the received unlocking instruction. This control signal is specifically used to control the operation of the unlocking mechanism of the hydrogen-rich water machine. After the unlocking mechanism of the hydrogen-rich water machine receives the control signal, it starts to execute the unlocking operation;

[0070] Step 5: Monitor the unlocking state: During the unlocking process, the control module monitors the state of the unlocking mechanism in real time and monitors possible abnormal situations. When the control module detects an abnormal situation, it will trigger an alarm mechanism and notify the user or administrator to handle it. At the same time, the control module can also automatically attempt to repair the problem or take emergency measures according to the pre-set error handling process. If the problem cannot be automatically solved, the user or administrator needs to manually intervene to check and repair the unlocking mechanism;

[0071] Step 6: Result feedback: The control module feeds back the unlocking result to the mobile terminal, and the user can understand the result of the unlocking operation through the mobile terminal.

[0072] The lock mechanism module includes the following steps:

[0073] S1: Receive the unlocking signal: The lock mechanism module receives the unlocking signal from the control module, and sends the unlocking instruction through the mobile terminal and is verified by the control module. The control module sends the unlocking signal to the lock mechanism module through the internal communication bus or wireless communication method;

[0074] S2: Initialize the unlocking mechanism: After receiving the unlocking signal, the lock mechanism module will initialize the unlocking mechanism to ensure that the unlocking mechanism is in a state that can execute the operation. The lock mechanism module will perform a self-checking program to check whether each component of the unlocking mechanism is normal. According to the requirements of the unlocking signal and the characteristics of the unlocking mechanism, the lock mechanism module will set the corresponding unlocking parameters, including the movement speed, force of the unlocking mechanism and the timing of the unlocking process;

[0075] S3: Execute the unlocking action: After initialization, the lock mechanism module controls the unlocking mechanism to execute the unlocking action;

[0076] S4: Monitoring the unlocking state: During the unlocking execution process, the lock mechanism module monitors the unlocking state in real time;

[0077] S5: Result feedback: The lock mechanism module feeds back the unlocking structure to the control module.

[0078] The user verification module includes the following steps:

[0079] M1: Receiving user information: The user verification module receives user information from the mobile terminal;

[0080] M2: Information verification: The user verification module verifies the validity of the received user information;

[0081] M3: Compare authentication information: The user verification module compares the information with the authentication information stored in the system, and retrieves and compares the user's authentication data;

[0082] M4: Perform identity verification: The user verification module performs the corresponding identity verification;

[0083] M5: Verification result judgment: Based on the identity verification of the user verification module, the user verification module will determine whether the user has passed the identity verification.

[0084] The mobile terminal APP module includes the following steps:

[0085] A1: User login and registration: used to provide user login and registration functions to ensure that users can use the APP;

[0086] A2: Bluetooth connection establishment: the APP searches for nearby hydrogen-rich water machine devices through Bluetooth function, and establishes Bluetooth connection with the device through the APP. During the search process, the APP will specially look for Bluetooth devices matched with the hydrogen-rich water machine;

[0087] A3: Unlocking instruction sending: the user initiates the unlocking requirement through the APP interface, and the APP sends the unlocking instruction to the hydrogen-rich water machine through Bluetooth connection;

[0088] A4: Unlocking state monitoring: the APP receives the unlocking state information from the hydrogen-rich water machine in real time;

[0089] A5: Device information management: the APP displays the list of connected hydrogen-rich water machine devices, and the user can view the device status, power and water quality information.

[0090] The data recording and cloud synchronization module includes the following steps:

[0091] B1: Data collection: the module collects the use data of the hydrogen-rich water machine in real time, and the data is transmitted from the water machine to the user's mobile terminal through Bluetooth technology;

[0092] B2: Cloud synchronization: upload the processed data to the cloud server through the secure gateway connection.

[0093] A hydrogen-rich water machine uses the method for realizing intelligent unlocking of a Bluetooth lock based on a mobile terminal according to any one of claims 1-7.

[0094] Although embodiments of the present application have been shown and described, it is to be understood that various modifications, substitutions, replacements and changes can be made to these embodiments without departing from the principles and spirit of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A method for implementing intelligent unlocking of a Bluetooth lock based on a mobile terminal, characterized in that, Comprise: Bluetooth communication module: responsible for the rich hydrogen water machine and mobile terminal between the Bluetooth communication, module contains Bluetooth adapter or chip makes rich hydrogen water machine has Bluetooth connection ability, and is responsible for establishing and maintaining stable Bluetooth connection; Control module: receive the open lock instruction from mobile terminal, and control the rich hydrogen water machine lock mechanism to execute open lock operation, the module is a microcontroller or controller, to parse the instruction from the Bluetooth communication module, and convert into corresponding control signal, drive lock mechanism to open; Lock mechanism module: for the physical locking and unlocking of rich hydrogen water machine, through the control module sends open lock signal, lock mechanism module executes corresponding action, and opens the lock and unlocks the rich hydrogen water machine; User authentication module: verify whether the open lock request sent by mobile terminal is from a legal user, the module verifies based on password and biological identification, and accepts the verification information from mobile terminal, and compares with the pre stored user information, confirms the user identity, and then allows to unlock; Mobile terminal APP module: for the interactive interface between user and rich hydrogen water machine, APP provides user interface, allows user to input open lock instruction, verification information, and APP is responsible for communication with the Bluetooth communication module of rich hydrogen water machine, sends open lock request, and receives open lock result; Data record and cloud synchronization module: for recording the historical data of open lock operation, and synchronizing with cloud server, and responsible for collecting open lock record, and uploading data to cloud server through safe network channel.

2. The method for realizing intelligent unlocking of a Bluetooth lock based on a mobile terminal according to claim 1, characterized in that: The Bluetooth communication module comprises the following steps: Step 1: device discovery and pairing: activate the Bluetooth function of mobile terminal, search the rich hydrogen water machine Bluetooth device nearby, and perform pairing operation with the rich hydrogen water machine Bluetooth device; Step 2: establish Bluetooth connection: the Bluetooth communication module establishes stable connection between mobile terminal and rich hydrogen water machine Bluetooth device lock device, and transmits subsequent data; Step 3: data transmission and instruction receiving: after the Bluetooth connection is established, the mobile terminal sends open lock instruction or related data to the Bluetooth lock device of rich hydrogen water machine through the Bluetooth communication module, and receives feedback information from the rich hydrogen water machine through the Bluetooth communication module; Step 4: disconnect Bluetooth connection: after the open lock operation is completed, disconnect through mobile terminal, and the Bluetooth communication module disconnects with the rich hydrogen water machine Bluetooth lock device, and releases related resources.

3. The method for realizing intelligent unlocking of a Bluetooth lock based on a mobile terminal according to claim 1, characterized in that: The control module comprises the following steps: Step 1: initialization setting: initialize the control module, ensure that the control module is in correct working state when preparing to receive the instruction from mobile terminal; Step 2: receive open lock instruction: mobile terminal sends open lock instruction through Bluetooth communication module, control module receives instruction, and analyzes and verifies the instruction; Step 3: verify user identity: control module verifies the user identity of sending open lock instruction, and completes identity information verification through checking the password or biological identification input by user; Step 4: control open lock mechanism: based on the success of identity verification information, control module sends control signal to the open lock mechanism of rich hydrogen water machine to execute open lock operation; Step 5: Monitor the unlocking state: During the unlocking process, the control module monitors the state of the unlocking mechanism in real time and monitors possible abnormal situations; Step 6: Result feedback: The control module feeds back the unlocking result to the mobile terminal and understands the result of the unlocking operation through the mobile terminal.

4. The method for realizing intelligent unlocking of a Bluetooth lock based on a mobile terminal according to claim 1, characterized in that: The lock mechanism module includes the following steps: S1: Receive the unlocking signal: The lock mechanism module receives the unlocking signal from the control module, and sends the unlocking instruction through the mobile terminal and is verified by the control module; S2: Unlocking mechanism initialization: After receiving the unlocking signal, the unlocking mechanism module initializes the unlocking mechanism to ensure that the unlocking mechanism is in a state that can perform operations; S3: Perform the unlocking action: After initialization, the lock mechanism module controls the unlocking mechanism to perform the unlocking action; S4: Monitor the unlocking state: During the unlocking execution process, the lock mechanism module monitors the unlocking state in real time; S5: Result feedback: The lock mechanism module feeds back the unlocking structure to the control module.

5. The method for realizing intelligent unlocking of a Bluetooth lock based on a mobile terminal according to claim 1, characterized in that: The user verification module includes the following steps: M1: Receive user information: The user verification module receives user information from the mobile terminal; M2: Information verification: The user verification module verifies the validity of the received user information; M3: Compare authentication information: The user verification module compares the information with the authentication information stored in the system and retrieves and compares the user's authentication data; M4: Perform identity verification: The user verification module performs the corresponding identity verification; M5: Verification result judgment: Based on the identity verification of the user verification module, the user verification module will judge whether the user passes the identity verification.

6. The method for realizing intelligent unlocking of a Bluetooth lock based on a mobile terminal according to claim 1, characterized in that: The mobile terminal APP module includes the following steps: A1: User login and registration: used to provide user login and registration functions to ensure that users can use the APP; A2: Bluetooth connection establishment: the APP searches for nearby hydrogen-rich water machine devices through Bluetooth function and establishes Bluetooth connection between the APP and the device; A3: Send the unlocking instruction: the user initiates the unlocking requirement through the APP interface, and the APP sends the unlocking instruction to the hydrogen-rich water machine through Bluetooth connection; A4: Unlocking state monitoring: the APP receives the unlocking state information from the hydrogen-rich water machine in real time; A5: Device information management: the APP displays the list of connected hydrogen-rich water machine devices, and the user can view the state, power and water quality information of the device.

7. The method for realizing intelligent unlocking of a Bluetooth lock based on a mobile terminal according to claim 1, characterized in that: The data recording and cloud synchronization module includes the following steps: B1: Data collection: the module collects the use data of the hydrogen-rich water machine in real time, and the data is transmitted from the water machine to the user's mobile terminal through Bluetooth technology; B2: Cloud synchronization: upload the processed data to the cloud server through the secure gateway connection.

8. A hydrogen-rich water maker, characterized by: The method for realizing intelligent unlocking of the Bluetooth lock based on the mobile terminal is used.