Smart door lock control method, smart door lock and computer-readable storage medium

By setting the first energy storage module and the second energy storage module in the smart door lock, using wireless signals to convert electrical energy and distributing electrical energy according to identity information, the problem of the door lock not being able to work in the absence of power is solved, and normal door opening and communication functions are realized in the absence of power, thereby improving ease of use.

CN116645743BActive Publication Date: 2025-09-23SHENZHEN KAICONN INNOVATIVE TECH CO LTD
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Patent Information

Application Number
CN202310363540.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-03-31
Publication Date
2025-09-23
Estimated Expiration
2043-03-31

AI Technical Summary

Technical Problem

Existing smart door locks cannot work properly without power, resulting in users being unable to open the door and unable to connect to cloud services, affecting ease of use.

Method used

The smart door lock is equipped with a first energy storage module and a second energy storage module. It converts the wireless signal received from the external device into initial electrical energy and distributes the electrical energy to the corresponding module according to the identity information to realize the unlocking and communication functions.

Benefits of technology

In the absence of power, the smart door lock can perform different operations, improving usability and ensuring that users can open the door normally and communicate with terminal devices.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present application discloses a smart door lock control method, a smart door lock, and a computer-readable storage medium. The method includes: the smart door lock includes a first energy storage module and a second energy storage module, the first energy storage module is used to store electrical energy and provide electrical energy for communication between the smart door lock and a terminal device, and the second energy storage module is used to store electrical energy and provide power for unlocking the smart door lock. When the smart door lock receives a wireless signal sent by an external device, it converts the wireless signal into initial electrical energy and confirms the identity information of the external device based on the wireless signal; determines whether the identity information is preset identity information; if the identity information is preset identity information, distributes electrical energy to the first energy storage module and the second energy storage module according to the initial electrical energy; if the identity information is not preset identity information, distributes electrical energy to the first energy storage module according to the initial electrical energy. This allows the smart door lock to perform different operations without power.
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Description

Technical Field

[0001] The present application relates to the technical field of household electrical appliances, and in particular to a smart door lock control method, a smart door lock, and a computer-readable storage medium. Background Art

[0002] With the development of technology, many smart door locks have appeared on the market. Users can unlock the door through biometric identification such as fingerprints and faces, or through card recognition, which makes it convenient for users to go out without carrying keys.

[0003] However, most smart door locks need to be connected to a power source, such as plugging in or installing batteries. When the smart door lock is out of power, the user will not be able to open the door, and the smart door lock will not be able to connect to the cloud service. Summary of the Invention

[0004] The embodiments of the present application provide a smart door lock control method, a smart door lock, and a computer-readable storage medium. The smart door lock control method can control the smart door lock to perform different operations without power, thereby improving the usability of the smart door lock.

[0005] In a first aspect, an embodiment of the present application provides a method for controlling a smart door lock, wherein the smart door lock includes a first energy storage module and a second energy storage module, the first energy storage module is used to store electrical energy and provide electrical energy for communication between the smart door lock and the terminal device, and the second energy storage module is used to store electrical energy and provide power for unlocking the smart door lock, the method comprising:

[0006] When the smart door lock receives a wireless signal sent by an external device, it converts the wireless signal into initial electrical energy and confirms the identity information of the external device based on the wireless signal;

[0007] Determining whether the identity information is the preset identity information;

[0008] If the identity information is preset identity information, allocating electric energy to the first energy storage module and the second energy storage module according to the initial electric energy;

[0009] If the identity information is not the preset identity information, the electric energy is distributed to the first energy storage module according to the initial electric energy.

[0010] In a second aspect, an embodiment of the present application provides a smart door lock, wherein the smart door lock includes a first energy storage module and a second energy storage module, the first energy storage module is used to store electrical energy and provide electrical energy for communication between the smart door lock and the terminal device, and the second energy storage module is used to store electrical energy and provide power for unlocking the smart door lock. The smart door lock also includes:

[0011] A wireless sensing module is used to receive wireless signals sent by external devices and convert the wireless signals into initial electrical energy;

[0012] A control module, configured to confirm the identity information of an external device based on a wireless signal;

[0013] The control module is further configured to determine whether the identity information is preset identity information, and if so, distribute the electric energy to the first energy storage module and the second energy storage module according to the initial electric energy; if the identity information is not preset identity information, distribute the electric energy to the first energy storage module according to the initial electric energy;

[0014] An unlocking module, which is connected to the second energy storage module and is used to open or close the smart door lock;

[0015] The communication module is connected to the first energy storage module and is used to communicate with the terminal device.

[0016] In a third aspect, an embodiment of the present application provides a computer-readable storage medium, which stores multiple instructions, and the instructions are suitable for a processor to load to execute the smart door lock control method provided in the embodiment of the present application.

[0017] In an embodiment of the present application, the smart door lock includes a first energy storage module and a second energy storage module. The first energy storage module is used to store electrical energy and provide electrical energy for communication between the smart door lock and the terminal device, and the second energy storage module is used to store electrical energy and provide power for unlocking the smart door lock. When the smart door lock receives a wireless signal sent by an external device, it converts the wireless signal into initial electrical energy and confirms the identity information of the external device based on the wireless signal; determines whether the identity information is preset identity information; if the identity information is preset identity information, the electrical energy is distributed to the first energy storage module and the second energy storage module based on the initial electrical energy; if the identity information is not preset identity information, the electrical energy is distributed to the first energy storage module based on the initial electrical energy. This allows the smart door lock to perform different operations without power, improving the ease of use of the smart door lock. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present application. For those skilled in the art, other drawings can be obtained based on these drawings without creative work.

[0019] Figure 1 This is a schematic diagram of the usage scenario of the smart door lock provided in an embodiment of the present application.

[0020] Figure 2 This is a first flow chart of the smart door lock control method provided in an embodiment of the present application.

[0021] Figure 3This is a second flow chart of the smart door lock control method provided in an embodiment of the present application.

[0022] Figure 4 This is the third flow chart of the smart door lock control method provided in the embodiment of the present application.

[0023] Figure 5 This is a first structural diagram of the smart door lock provided in an embodiment of the present application.

[0024] Figure 6 This is a second structural diagram of the smart door lock provided in an embodiment of the present application. DETAILED DESCRIPTION

[0025] The following will be combined with the drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by those skilled in the art without making creative efforts are within the scope of protection of this application.

[0026] With the development of technology, many smart door locks have appeared on the market. Users can unlock the door through biometric identification such as fingerprints and faces, or through card recognition, which makes it convenient for users to go out without carrying keys.

[0027] However, most smart door locks need to be connected to a power source, such as plugging in or installing batteries. When the smart door lock is out of power, the user will not be able to open the door, and the smart door lock will not be able to connect to the cloud service.

[0028] See also Figure 1 , Figure 1 This is a schematic diagram of the usage scenario of the smart door lock provided in an embodiment of the present application.

[0029] During use, smart door locks can perform identity authentication through card recognition to determine whether to unlock the door. For example, identity authentication is performed through near field communication (NFC) signals to determine whether to unlock the door.

[0030] Smart door locks can also perform identity authentication through biometrics to determine whether to unlock the door, such as identifying at least one of the user's biometric information such as fingerprint, face, iris, voice, etc. to determine whether to unlock the door.

[0031] In the embodiment of this application, it mainly involves the scenario where the smart door lock is unlocked through the near field communication signal. Figure 1As shown, when an external device is close to the smart door lock, it can transmit a wireless signal to the smart door lock. The smart door lock generates the power required for operation based on the wireless signal. At the same time, the smart door lock can also identify the external device based on the wireless signal.

[0032] In some embodiments, the smart door lock can be connected to a server, and the smart door lock can send stored data to the server and receive data returned by the server. If the smart door lock needs to send data to the terminal device, the smart door lock can send the data to the server, and the server can then send the data to the terminal device.

[0033] In some embodiments, a smart door lock includes a first energy storage module and a second energy storage module. The first energy storage module is used to store electrical energy and provide electrical energy for communication between the smart door lock and a terminal device, while the second energy storage module is used to store electrical energy and provide power for unlocking the smart door lock. When the smart door lock receives a wireless signal from an external device, it converts the wireless signal into initial electrical energy, confirms the identity information of the external device based on the wireless signal, and determines whether the identity information is preset. If the identity information is preset, the electrical energy is distributed to the first and second energy storage modules based on the initial electrical energy. If the identity information is not preset, the electrical energy is distributed to the first energy storage module based on the initial electrical energy. This allows the smart door lock to perform different operations even without power, improving its usability.

[0034] Please continue reading Figure 2 , Figure 2 This is a first flow chart of the smart door lock control method provided by an embodiment of the present application. The smart door lock control method may include the following steps:

[0035] 110. When the smart door lock receives a wireless signal sent by an external device, it converts the wireless signal into initial electrical energy and confirms the identity information of the external device based on the wireless signal.

[0036] In some embodiments, when the smart door lock receives a wireless signal sent by an external device, the smart door lock can convert the wireless signal to obtain initial electrical energy, and then use the initial electrical energy to power the smart door lock.

[0037] For example, the wireless signal is a near-field communication signal. The smart door lock converts the near-field communication signal into an electric current through the principle of electromagnetic induction, thereby obtaining initial electrical energy using the electric current.

[0038] While obtaining initial power, the smart door lock can identify wireless signals, such as the frequency band and frequency of the wireless signal, the waveform of the wireless signal, and the high-frequency and low-frequency signals of the wireless signal, thereby determining the identity information of the external device corresponding to the wireless signal.

[0039] In some embodiments, the wireless signal contains data transmitted by the external device, and the data contains the identity information of the external device. The smart door lock can decrypt the wireless signal to obtain the data contained therein, and finally determine the identity information of the external device based on the data.

[0040] For example, the data is one or more data packets. The smart door lock can input the corresponding decompression password for each data packet to obtain the data in each data packet, and finally determine the identity information of the external device based on the data.

[0041] 120. Determine whether the identity information is preset identity information.

[0042] In some embodiments, when using a smart door lock, users often set multiple preset identity information in the smart door lock, such as determining the identity information corresponding to family members as the preset identity information. For example, the terminal device used by the family members has a corresponding device identification code, and the preset identity information can be set according to the device identification code.

[0043] For another example, you can connect your family's terminal devices to the smart door lock to register each terminal device, and then the smart door lock will determine the registered identity information as the preset identity information.

[0044] In some embodiments, after obtaining the identity information of the external device, the smart door lock can compare the identity information with each preset identity information to determine whether the identity information is the preset identity information.

[0045] 130. If the identity information is preset identity information, distribute the electric energy to the first energy storage module and the second energy storage module according to the initial electric energy.

[0046] In some embodiments, if the identity information of the external device is the preset identity information, it indicates that the user is a legitimate user and the smart door lock can unlock the door. At this time, the smart door lock can distribute the initial power to the first energy storage module and the second energy storage module.

[0047] Among them, the first energy storage module is used to store electrical energy and provide electrical energy for communication between the smart door lock and the terminal device, and the second energy storage module is used to store electrical energy and provide power for unlocking the smart door lock.

[0048] For example, when a smart door lock needs to unlock based on a wireless signal from an external device, it can allocate power to the first and second energy storage modules in a certain proportion. The smart door lock can unlock using power from the second energy storage module and communicate with the terminal device using power from the first energy storage module.

[0049] In some embodiments, a first target amount of power required for communication between the smart door lock and the terminal device can be determined, and the first target amount of power in the initial power can be allocated to the first energy storage module. A second target amount of power required for unlocking the smart door lock can be determined, and the second target amount of power in the initial power can be allocated to the second energy storage module.

[0050] It should be noted that the first target power and the second target power may be part of the initial power. As long as the smart door lock can always receive the wireless signal provided by the external device, the smart door lock can always obtain power according to the wireless signal.

[0051] 140. If the identity information is not the preset identity information, distribute the electric energy to the first energy storage module according to the initial electric energy.

[0052] In some implementations, if the identity information is not the preset identity information, it means that the external device is not a legitimate device, and the smart door lock can refuse to unlock it.

[0053] If the identity information is not the preset identity information, the electric energy is allocated to the first energy storage module according to the initial electric energy, and the smart door lock sends corresponding data to the terminal device according to the electric energy stored in the first energy storage module, for example, notifying the terminal device that an illegal device is trying to unlock the door.

[0054] In some embodiments, the smart door lock can also provide power through the first energy storage module, send the identity information of the external device to the terminal device, and receive control information returned by the terminal device.

[0055] For example, a smart door lock can send the identity information of an external device to a terminal device. The user can view the identity information of the external device on the terminal device and then issue corresponding instructions to generate control information. The terminal device then sends the control information to the smart door lock, and the smart door lock can perform corresponding operations based on the control information.

[0056] In an embodiment of the present application, the smart door lock includes a first energy storage module and a second energy storage module. The first energy storage module is used to store electrical energy and provide electrical energy for communication between the smart door lock and the terminal device, and the second energy storage module is used to store electrical energy and provide power for unlocking the smart door lock. When the smart door lock receives a wireless signal sent by an external device, it converts the wireless signal into initial electrical energy and confirms the identity information of the external device based on the wireless signal; determines whether the identity information is preset identity information; if the identity information is preset identity information, the electrical energy is distributed to the first energy storage module and the second energy storage module based on the initial electrical energy; if the identity information is not preset identity information, the electrical energy is distributed to the first energy storage module based on the initial electrical energy. This allows the smart door lock to perform different operations without power, improving the ease of use of the smart door lock.

[0057] Please continue reading Figure 3 , Figure 3 This is a second flow chart of the smart door lock control method provided by an embodiment of the present application. The smart door lock control method may include the following steps:

[0058] 201. When the smart door lock receives a wireless signal sent by an external device, it converts the wireless signal into initial electrical energy and confirms the identity information of the external device based on the wireless signal.

[0059] In some embodiments, when the smart door lock receives a wireless signal sent by an external device, the smart door lock can convert the wireless signal to obtain initial electrical energy, and then use the initial electrical energy to power the smart door lock.

[0060] For example, the wireless signal is a near-field communication signal. The smart door lock converts the near-field communication signal into an electric current through the principle of electromagnetic induction, thereby obtaining initial electrical energy using the electric current.

[0061] While obtaining initial power, the smart door lock can identify wireless signals, such as the frequency band and frequency of the wireless signal, the waveform of the wireless signal, and the high-frequency and low-frequency signals of the wireless signal, thereby determining the identity information of the external device corresponding to the wireless signal.

[0062] In some embodiments, the wireless signal contains data transmitted by the external device, and the data contains the identity information of the external device. The smart door lock can decrypt the wireless signal to obtain the data contained therein, and finally determine the identity information of the external device based on the data.

[0063] For example, the data is one or more data packets. The smart door lock can input the corresponding decompression password for each data packet to obtain the data in each data packet, and finally determine the identity information of the external device based on the data.

[0064] 202. Determine whether the identity information is preset identity information.

[0065] In some embodiments, when using a smart door lock, users often set multiple preset identity information in the smart door lock, such as determining the identity information corresponding to family members as the preset identity information. For example, the terminal device used by the family members has a corresponding device identification code, and the preset identity information can be set according to the device identification code.

[0066] For another example, you can connect your family's terminal devices to the smart door lock to register each terminal device, and then the smart door lock will determine the registered identity information as the preset identity information.

[0067] In some embodiments, after obtaining the identity information of the external device, the smart door lock can compare the identity information with each preset identity information to determine whether the identity information is the preset identity information.

[0068] In some embodiments, if the identity information is administrator identity information, a key modification instruction for the smart door lock is determined based on the wireless signal; the key of the smart door lock is modified according to the key modification instruction until the smart door lock can be unlocked normally according to the wireless signal.

[0069] For example, if the external device's identity information is that of an administrator, the frequency of the smart door lock's corresponding near-field communication signal can be modified based on the wireless signal, thereby changing the smart door lock's key. Once the smart door lock's key has been changed, the external device can unlock the smart door lock. If the smart door lock can be unlocked normally based on the wireless signal, it means the key has been successfully modified.

[0070] 203. If the identity information is preset identity information, determine the first target power required for the smart door lock to communicate with the terminal device, and distribute the first target power in the initial power to the first energy storage module.

[0071] In some embodiments, if the identity information is preset, the smart door lock can determine a first target amount of power required for communication between the smart door lock and the terminal device, and then allocate the first target amount of power from the initial power to the first energy storage module. In allocating the first target amount of power to the first energy storage module, the smart door lock can allocate additional power based on the first target amount of power, taking into account energy loss during transmission, to ensure that the first energy storage module can store sufficient power to provide communication between the smart door lock and the terminal device.

[0072] 204. Determine the second target electric energy required for unlocking the smart door lock, and distribute the second target electric energy in the initial electric energy to the second energy storage module.

[0073] In some embodiments, in some embodiments, if the identity information is preset identity information, the smart door lock can determine the second target electric energy required for unlocking the smart door lock, and then allocate the second target electric energy in the initial electric energy to the second energy storage module. In the process of allocating the second target electric energy to the second energy storage module, considering the energy loss during the transmission process, the smart door lock can allocate more electric energy on the basis of the second target electric energy to ensure that the second energy storage module can store enough electric energy to provide the smart door lock for unlocking.

[0074] 205. Control the smart door lock to unlock using the second target electric energy and record the log.

[0075] In some embodiments, the second energy storage module releases the second target electrical energy, and then the smart door lock drives the internal mechanism according to the second target electrical energy to achieve unlocking. After the smart door lock is unlocked, the log corresponding to the unlocking process can be recorded.

[0076] 206. Control the smart door lock to communicate with the terminal device through the first target power, and send the log to the terminal device.

[0077] The smart door lock can also release the first target electrical energy through the first energy storage module, thereby sending signals for communication, such as communicating with the terminal device through signals, thereby sending the log of the smart door lock to the terminal device.

[0078] The terminal device can analyze the real-time status of the smart door lock based on the log, and try to remind the user of the status of the smart door lock in time.

[0079] Please also refer to Figure 4 , Figure 4 This is a third flow chart of the smart door lock control method provided in an embodiment of the present application. The smart door lock control method may include the following steps:

[0080] 301. If the identity information is not the preset identity information, distribute electric energy to the first energy storage module according to the initial electric energy.

[0081] In some implementations, if the identity information is not the preset identity information, it means that the external device is not a legitimate device, and the smart door lock can refuse to unlock it.

[0082] If the identity information is not the preset identity information, the electric energy is allocated to the first energy storage module according to the initial electric energy, and the smart door lock sends corresponding data to the terminal device according to the electric energy stored in the first energy storage module, for example, notifying the terminal device that an illegal device is trying to unlock the door.

[0083] 302. Provide power through the first energy storage module and send the identity information of the external device to the terminal device.

[0084] For example, the smart door lock can use the power of the first energy storage module to send the identity information of the external device to the terminal device, and the user can view the identity information of the external device on the terminal device.

[0085] 303. Receive control information returned by the terminal device.

[0086] After the user views the identity information of the external device on the terminal device, he can control it according to actual needs, and then issue corresponding instructions to generate control information. The terminal device then sends the control information to the smart door lock, and the smart door lock can perform corresponding operations based on the control information.

[0087] 304. If the control information is to set the identity information of the external device to the preset identity information, the smart door lock is controlled to send a write wireless signal corresponding to the preset identity information to the external device.

[0088] In some embodiments, the user wants to set the identity information corresponding to the external device to the preset identity information, so that the user of the external device can directly open the smart door lock later. At this time, the smart door lock can be controlled to send a write wireless signal corresponding to the preset identity information to the external device.

[0089] For example, the external device enters the read-write mode, and the smart door lock enters the read-write mode, thereby reading and writing the external device's entry communication chip, and then writing the card information of the smart door lock. Finally, the external device can unlock the smart door lock according to the card information.

[0090] In some embodiments, determining whether a wireless signal emitted by an external device changes within a preset time period;

[0091] If the wireless signal does not change, the initial power is used to drive the smart door lock to issue a prompt message indicating that the write failed.

[0092] 305. Receive a wireless signal regenerated by an external device according to the written wireless signal.

[0093] In some embodiments, after the corresponding data is written to the external device, a wireless signal can be regenerated based on the written data. The smart door lock receives the wireless signal regenerated by the external device based on the written wireless signal, and the regenerated wireless signal can be used to unlock the smart door lock.

[0094] 306. Generate a third target electric energy according to the regenerated wireless signal, and distribute electric energy to the second energy storage module and the first energy storage module according to the third target electric energy to control the unlocking of the smart door lock and communication with the terminal device.

[0095] The smart door lock can generate a third target electric energy according to the regenerated wireless signal, and distribute electric energy to the second energy storage module and the first energy storage module according to the third target electric energy to control the unlocking of the smart door lock and communication with the terminal device.

[0096] For example, the target electric energy is generated by the regenerated wireless signal, and the third target electric energy is distributed to the second energy storage module and the first energy storage module according to a certain proportion, so as to control the unlocking of the smart door lock through the electric energy of the second energy storage module, and control the communication between the smart door lock and the terminal device through the electric energy of the first energy storage module.

[0097] 307. If the control information sets the identity information of the external device as illegal identity information, the smart door lock is driven by the initial electric energy to capture external image information and sound information.

[0098] In some embodiments, if the user does not want an external device to open the smart door lock, the user can control the smart door lock to take pictures and record the outside world by controlling the phone.

[0099] At this time, the initial electric energy can be used to drive the smart door lock to capture external image and sound information.

[0100] 308, and provide power through the first energy storage module to send the image information and sound information to the terminal device.

[0101] After obtaining the image information and the sound information, the smart door lock then provides electric energy through the first energy storage module and sends the image information and the sound information to the terminal device.

[0102] As can be seen from the above, in an embodiment of the present application, when the smart door lock receives a wireless signal sent by an external device, it converts the wireless signal into initial electric energy and confirms the identity information of the external device based on the wireless signal. Determine whether the identity information is the preset identity information. If the identity information is the preset identity information, determine the first target electric energy required for the smart door lock to communicate with the terminal device, and allocate the first target electric energy in the initial electric energy to the first energy storage module. Determine the second target electric energy required for unlocking the smart door lock, and allocate the second target electric energy in the initial electric energy to the second energy storage module. Control the unlocking of the smart door lock through the second target electric energy and record the log. Control the communication between the smart door lock and the terminal device through the first target electric energy, and send the log to the terminal device.

[0103] If the identity information is not the preset identity information, the electric energy is distributed to the first energy storage module according to the initial electric energy. The electric energy is provided by the first energy storage module, and the identity information of the external device is sent to the terminal device. The control information returned by the terminal device is received. If the control information is to set the identity information of the external device to the preset identity information, the smart door lock is controlled to send a write wireless signal corresponding to the preset identity information to the external device. The wireless signal regenerated by the external device according to the write wireless signal is received. The third target electric energy is generated according to the regenerated wireless signal, and the electric energy is distributed to the second energy storage module and the first energy storage module according to the third target electric energy to control the unlocking of the smart door lock and communication with the terminal device.

[0104] If the control information sets the identity information of the external device as illegal identity information, the smart door lock is driven by initial electric energy to capture external image information and sound information; and the first energy storage module provides electric energy to send the image information and sound information to the terminal device.

[0105] In the embodiment of the present application, the smart door lock is controlled to perform different operations without power supply, thereby improving the usability of the smart door lock.

[0106] Please continue reading Figure 5 . Figure 5 This is a first structural diagram of the smart door lock provided in an embodiment of the present application.

[0107] The smart door lock includes a control module 404 , a wireless sensing module 401 , an unlocking module 406 , a communication module 405 , a first energy storage module 402 , and a second energy storage module 403 .

[0108] The control module 404 is respectively connected to the wireless sensing module 401 , the unlocking module 406 , the communication module 405 , the first energy storage module 402 , and the second energy storage module 403 .

[0109] The wireless sensing module 401 is connected to the first energy storage module 402 and the second energy storage module 403 .

[0110] The first energy storage module 402 is connected to the communication module 405 .

[0111] The second energy storage module 403 is connected to the unlocking module 406 .

[0112] Among them, the first energy storage module 402 is used to store electrical energy and provide electrical energy for communication between the smart door lock and the terminal device, and the second energy storage module 403 is used to store electrical energy and provide power for unlocking the smart door lock.

[0113] The wireless sensing module 401 is used to receive wireless signals sent by external devices and convert the wireless signals into initial electrical energy;

[0114] A control module 404 is configured to confirm the identity information of the external device based on the wireless signal;

[0115] The control module 404 is further configured to determine whether the identity information is preset identity information. If the identity information is preset identity information, the electric energy is distributed to the first energy storage module 402 and the second energy storage module 403 according to the initial electric energy; if the identity information is not preset identity information, the electric energy is distributed to the first energy storage module 402 according to the initial electric energy;

[0116] Unlocking module 406, which is connected to the second energy storage module 403 and is used to open or close the smart door lock;

[0117] The communication module 405 is connected to the first energy storage module 402 and is used to communicate with the terminal device.

[0118] In an embodiment of the present application, the smart door lock includes a first energy storage module and a second energy storage module. The first energy storage module is used to store electrical energy and provide electrical energy for communication between the smart door lock and the terminal device. The second energy storage module is used to store electrical energy and provide power for unlocking the smart door lock. When the smart door lock receives a wireless signal sent by an external device, it converts the wireless signal into initial electrical energy and confirms the identity information of the external device based on the wireless signal; determines whether the identity information is preset identity information; if the identity information is preset identity information, the electrical energy is distributed to the first energy storage module and the second energy storage module based on the initial electrical energy; if the identity information is not preset identity information, the electrical energy is distributed to the first energy storage module based on the initial electrical energy. This allows the smart door lock to perform different operations without power, improving the ease of use of the smart door lock.

[0119] Accordingly, the present application also provides a smart door lock, such as Figure 6 As shown, Figure 6 This is a second structural diagram of a smart door lock provided in an embodiment of the present application. The smart door lock 500 includes a processor 501 having one or more processing cores, a memory 502 having one or more computer-readable storage media, and a computer program stored in the memory 502 and executable on the processor. The processor 501 is electrically connected to the memory 502. Those skilled in the art will appreciate that the computer device structure shown in the figure does not constitute a limitation on the computer device, and may include more or fewer components than shown, or combine certain components, or arrange the components differently.

[0120] The processor 501 is the control center of the smart door lock 500. It uses various interfaces and lines to connect the various parts of the entire smart door lock 500. By running or loading software programs and / or modules stored in the memory 502, and calling data stored in the memory 502, it executes various functions of the smart door lock 500 and processes data, thereby monitoring the smart door lock 500 as a whole.

[0121] In the embodiment of the present application, the processor 501 in the smart door lock 500 loads instructions corresponding to one or more application processes into the memory 502 according to the following steps, and the processor 501 runs the application stored in the memory 502 to implement various functions:

[0122] When the smart door lock receives a wireless signal sent by an external device, it converts the wireless signal into initial electrical energy and confirms the identity information of the external device based on the wireless signal;

[0123] Determining whether the identity information is the preset identity information;

[0124] If the identity information is preset identity information, allocating electric energy to the first energy storage module and the second energy storage module according to the initial electric energy;

[0125] If the identity information is not the preset identity information, the electric energy is distributed to the first energy storage module according to the initial electric energy.

[0126] The specific implementation of the above operations can be found in the previous embodiments and will not be repeated here.

[0127] Optional, such as Figure 6 As shown, the smart door lock 500 further includes: a touch screen 503, a radio frequency circuit 504, an audio circuit 505, an input unit 506, and a power supply 507. Among them, the processor 501 is electrically connected to the touch screen 503, the radio frequency circuit 504, the audio circuit 505, the input unit 506, and the power supply 507 respectively. Those skilled in the art will understand that Figure 6 The computer device structure shown in the figure does not constitute a limitation to the computer device, and may include more or fewer components than shown in the figure, or combine certain components, or arrange the components differently.

[0128] The touch display screen 503 can be used for displaying a graphical user interface and receiving the operation instructions generated by the user acting on the graphical user interface. The touch display screen 503 can include a display panel and a touch panel. Among them, the display panel can be used for displaying the information input by the user or the information provided to the user and various graphical user interfaces of the computer device, and these graphical user interfaces can be composed of graphics, text, icons, videos and any combination thereof. Optionally, the display panel can be configured in the form of a liquid crystal display (LCD, Liquid Crystal Display), an organic light emitting diode (OLED, Organic Light-Emitting Diode) and the like. The touch panel can be used for collecting the touch operation of the user thereon or near it (such as the user uses any suitable object or accessory such as a finger, a stylus on the touch panel or near the touch panel), and generates corresponding operation instructions, and the operation instructions execute corresponding programs. Optionally, the touch panel may include two parts: a touch detection device and a touch controller. Among them, the touch detection device detects the user's touch direction, detects the signal brought by the touch operation, and transmits the signal to the touch controller; the touch controller receives the touch information from the touch detection device, converts it into the touch point coordinates, and then sends it to the processor 501, and can receive the command sent by the processor 501 and execute it. The touch panel can cover the display panel. When the touch panel detects a touch operation on or near it, it is transmitted to the processor 501 to determine the type of touch event, and then the processor 501 provides a corresponding visual output on the display panel according to the type of touch event. In an embodiment of the present application, the touch panel and the display panel can be integrated into the touch display screen 503 to realize input and output functions. However, in some embodiments, the touch panel and the touch panel can be used as two independent components to realize input and output functions. That is, the touch display screen 503 can also be used as part of the input unit 506 to realize the input function.

[0129] In the embodiment of the present application, the processor 501 executes the application program to generate a graphical user interface on the touch screen 503. The touch screen 503 is used to present the graphical user interface and receive operation instructions generated by the user acting on the graphical user interface.

[0130] The radio frequency circuit 504 may be used to transmit and receive radio frequency signals, so as to establish wireless communication with a network device or other computer device through wireless communication, and to transmit and receive signals between the network device or other computer device.

[0131] Audio circuit 505 can be used to provide an audio interface between the user and the computer device through a speaker and microphone. Audio circuit 505 can convert received audio data into electrical signals and transmit them to the speaker, which then converts them into sound signals for output. Conversely, the microphone converts collected sound signals into electrical signals, which are then received by audio circuit 505 and converted into audio data. The audio data is then output to processor 501 for processing, then transmitted via RF circuit 504 to, for example, another computer device, or to memory 502 for further processing. Audio circuit 505 may also include an earphone jack to allow communication between external headphones and the computer device.

[0132] The input unit 506 may be configured to receive input digital, character information, or user feature information (such as fingerprint, iris, or facial information), and to generate keyboard, mouse, joystick, optical, or trackball signal inputs related to user settings and function control.

[0133] The power supply 507 is used to power the various components of the smart door lock 500. Optionally, the power supply 507 can be logically connected to the processor 501 through a power management system, thereby enabling the power management system to manage charging, discharging, and power consumption. The power supply 507 can also include one or more DC or AC power supplies, a recharging system, a power failure detection circuit, a power converter or inverter, a power status indicator, and other arbitrary components.

[0134] although Figure 6 Not shown in the figure, the smart door lock 500 may also include a camera, a sensor, a wireless fidelity module, a Bluetooth module, etc., which will not be repeated here.

[0135] In the above embodiments, the description of each embodiment has its own focus. For parts that are not described in detail in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.

[0136] Those skilled in the art will appreciate that all or part of the steps in the various methods of the above embodiments may be accomplished by instructions, or by controlling related hardware through instructions. The instructions may be stored in a computer-readable storage medium and loaded and executed by a processor.

[0137] To this end, an embodiment of the present application provides a computer-readable storage medium storing a plurality of computer programs, which can be loaded by a processor to execute the steps of any of the smart door lock control methods provided in the embodiments of the present application. For example, the computer program can execute the following steps:

[0138] When the smart door lock receives a wireless signal sent by an external device, it converts the wireless signal into initial electrical energy and confirms the identity information of the external device based on the wireless signal;

[0139] Determining whether the identity information is the preset identity information;

[0140] If the identity information is preset identity information, allocating electric energy to the first energy storage module and the second energy storage module according to the initial electric energy;

[0141] If the identity information is not the preset identity information, the electric energy is distributed to the first energy storage module according to the initial electric energy.

[0142] The storage medium may include a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, etc.

[0143] Since the computer program stored in the storage medium can execute the steps in any one of the smart door lock control methods provided in the embodiments of the present application, the beneficial effects that can be achieved by any one of the smart door lock control methods provided in the embodiments of the present application can be achieved. Please see the previous embodiments for details and will not be repeated here.

[0144] The above is a detailed introduction to a smart door lock control method, a smart door lock and a computer-readable storage medium provided in the embodiments of the present application. Specific examples are used in this article to illustrate the principles and implementation methods of the present application. The description of the above embodiments is only used to help understand the method of the present application and its core idea; at the same time, for technical personnel in this field, based on the ideas of the present application, there will be changes in the specific implementation methods and application scope. In summary, the content of this specification should not be understood as a limitation on the present application.

Claims

1. A smart door lock control method, characterized in that: The smart door lock includes a first energy storage module and a second energy storage module, the first energy storage module is used to store electrical energy and provide electrical energy for communication between the smart door lock and the terminal device, and the second energy storage module is used to store electrical energy and provide power for unlocking the smart door lock. The method includes: When the smart door lock receives a wireless signal sent by an external device, it converts the wireless signal into initial electrical energy and confirms the identity information of the external device based on the wireless signal; Determining whether the identity information is preset identity information; If the identity information is the preset identity information, allocating electric energy to the first energy storage module and the second energy storage module according to the initial electric energy; If the identity information is not the preset identity information, allocating electric energy to the first energy storage module according to the initial electric energy; After allocating electric energy to the first energy storage module according to the initial electric energy if the identity information is not the preset identity information, the method further includes: Providing electrical energy through the first energy storage module, and sending the identity information of the external device to the terminal device; receiving control information returned by the terminal device; If the control information is to set the identity information of the external device to the preset identity information, the smart door lock is controlled to send a write wireless signal corresponding to the preset identity information to the external device; receiving a wireless signal regenerated by the external device according to the written wireless signal; A third target electric energy is generated according to the regenerated wireless signal, and electric energy is distributed to the second energy storage module and the first energy storage module according to the third target electric energy to control the unlocking of the smart door lock and communication with the terminal device.

2. The intelligent door lock control method according to claim 1, characterized in that: If the identity information is the preset identity information, allocating electric energy to the first energy storage module and the second energy storage module according to the initial electric energy includes: Determine a first target electric energy required when the smart door lock communicates with the terminal device, and distribute the first target electric energy in the initial electric energy to the first energy storage module; Determine the second target electric energy required for unlocking the smart door lock, and distribute the second target electric energy in the initial electric energy to the second energy storage module.

3. The intelligent door lock control method according to claim 2, characterized in that: After distributing the electric energy to the first energy storage module and the second energy storage module according to the initial electric energy if the identity information is the preset identity information, the method further includes: Controlling the smart door lock to unlock using the second target electric energy and recording a log; The smart door lock is controlled to communicate with the terminal device through the first target electric energy, and the log is sent to the terminal device.

4. The intelligent door lock control method according to claim 1, characterized in that: After receiving the control information returned by the terminal device, the method further includes: If the control information sets the identity information of the external device as illegal identity information, the initial electric energy is used to drive the smart door lock to capture image information and sound information from the outside world; The first energy storage module provides electrical energy to send the image information and the sound information to the terminal device.

5. The intelligent door lock control method according to claim 1, characterized in that: After controlling the smart door lock to send a write wireless signal corresponding to the preset identity information to the external device, the method further includes: Determining whether the wireless signal emitted by the external device changes within a preset time period; If the wireless signal does not change, the initial electric energy is used to drive the smart door lock to issue a prompt message indicating that the writing has failed.

6. The smart door lock control method according to any one of claims 1 to 5, characterized in that: After confirming the identity information of the external device according to the wireless signal, the method further includes: If the identity information is administrator identity information, determining a key modification instruction for the smart door lock according to the wireless signal; The key of the smart door lock is modified according to the key modification instruction until the smart door lock can be unlocked normally according to the wireless signal.

7. A smart door lock, characterized in that: The smart door lock includes a first energy storage module and a second energy storage module. The first energy storage module is used to store electrical energy and provide electrical energy for communication between the smart door lock and the terminal device. The second energy storage module is used to store electrical energy and provide power for unlocking the smart door lock. The smart door lock also includes: A wireless sensing module, configured to receive wireless signals sent by an external device and convert the wireless signals into initial electrical energy; A control module, configured to confirm identity information of an external device based on the wireless signal; The control module is further configured to determine whether the identity information is preset identity information, and if so, distribute the electric energy to the first energy storage module and the second energy storage module according to the initial electric energy; if not, distribute the electric energy to the first energy storage module according to the initial electric energy; The control module is further configured to provide electrical energy through the first energy storage module, send the identity information of the external device to the terminal device; receive control information returned by the terminal device; if the control information is to set the identity information of the external device to the preset identity information, control the smart door lock to send a write wireless signal corresponding to the preset identity information to the external device; receive a wireless signal regenerated by the external device based on the write wireless signal; generate a third target electrical energy based on the regenerated wireless signal, and distribute electrical energy to the second energy storage module and the first energy storage module based on the third target electrical energy, so as to control the smart door lock to unlock and communicate with the terminal device; An unlocking module, connected to the second energy storage module, for opening or closing the smart door lock; A communication module, connected to the first energy storage module, is used to communicate with a terminal device.

8. A computer-readable storage medium, characterized in that The storage medium stores a plurality of instructions, which are suitable for loading by a processor to execute the smart door lock control method according to any one of claims 1 to 6.

Citation Information

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