Speech recognition child lock, control method thereof and atomization device
By using the children's lock module with voice recognition technology in the atomization device, the problems of high production cost and low usage efficiency of the atomization device in the prior art are solved, and a safe and convenient usage experience is achieved.
Patent Information
- Application Number
- CN202510192537.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-20
- Publication Date
- 2025-06-13
AI Technical Summary
In the existing atomization device, the implementation method of the child lock leads to problems such as high production cost and low usage efficiency.
The voice recognition technology is adopted to achieve locking and unlocking of the atomization device through the combination of the control module, the child lock module, the voice recognition module and the receiving module, and avoid children's accidental touch and start-up.
It effectively avoids children's mistaken touch and starts the atomization device, reduces production costs, improves usage efficiency, and optimizes the use of aerosols through the duration monitoring module and the suction detection module.
Smart Images

Figure CN120148503A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of atomization device control, and more specifically, to a voice recognition child lock, its control method, and an atomization device. Background Art
[0002] With the development of atomization device technology, the existing atomization devices are becoming more and more popular, and they are gradually entering ordinary families. At home, while children are curious about atomization devices, they may accidentally touch and start the atomization device, resulting in the consumption of the atomization liquid in the atomization device or the inhalation of the aerosol by children. To prevent the atomization device from being accidentally started by minors, the prior art commonly uses a mechanical structure to limit the start of the atomization device. For example, a baffle is provided in the suction channel of the atomization device, and the baffle needs to be moved before suction to allow the aerosol to be suctioned; alternatively, fingerprint unlocking is used to limit the start of the atomization device.
[0003] However, in the above methods for implementing the child lock, the mechanical structure method will increase the volume of the atomization device, and lead to an increase in the production cost and a decrease in the use efficiency of the atomization device. At the same time, it is still easily accidentally unlocked by children; using methods such as fingerprint unlocking will increase the cost of the atomization device and require the fingerprint to be complete to use the atomization device, thereby resulting in low use efficiency of the atomization device.
[0004] In summary, in the existing atomization devices, the methods for implementing the child lock lead to problems of high production cost and low use efficiency of the atomization device. Summary of the Invention
[0005] The technical problem to be solved by the embodiments of the present application is that in the existing atomization devices, the methods for implementing the child lock lead to problems of high production cost and low use efficiency of the atomization device.
[0006] To solve the above technical problem, the embodiments of the present application adopt the following solutions:
[0007] A voice recognition child lock includes:
[0008] A control module, a child lock module, a voice recognition module, and a receiving module;
[0009] The control module is electrically connected to the child lock module and the voice recognition module, and is used to control the opening and closing of the child lock module;
[0010] The receiving module is electrically connected to the voice recognition module, and is used to receive external sounds, and the voice recognition module is used to recognize external sounds.
[0011] Further, the control module group includes a control module and an atomizer output module. The control module is electrically connected to the atomizer control module and the voice recognition module, and is used to lock or unlock the atomizer output control unit, and the atomizer output control unit is used to control the opening and closing of the atomizer.
[0012] Further, the control module is a micro-control unit; and / or,
[0013] The receiving module is a microphone.
[0014] Further, the voice recognition child lock further includes a duration monitoring module and a suction detection module. The suction detection module is used to detect whether there is a suction action. If so, a suction signal is generated;
[0015] The duration monitoring module is electrically connected to the suction detection module and the control module group, and is used to detect the receiving time of adjacent suction signals, and the control module group.
[0016] Further, the voice recognition child lock further includes a display module. The display module is electrically connected to the child lock module and is used to display the current state of the child lock module.
[0017] Correspondingly, the present application provides an atomization device, and the atomization device includes the voice recognition child lock according to any one of the above embodiments.
[0018] Correspondingly, the present application further provides a method for controlling a voice recognition child lock, and the method includes:
[0019] Set an unlocking instruction;
[0020] Receive external voice;
[0021] Judge whether the external voice matches the unlocking instruction;
[0022] If so, unlock or lock the atomization device.
[0023] Further, the step of judging whether the external voice matches the unlocking instruction includes:
[0024] Judge whether the number of voice information in the external voice per unit time is the same as the number of voice signals in the unlocking instruction; and / or,
[0025] Judge whether the voiceprint of the external voice is the same as the voiceprint of the unlocking instruction; and / or,
[0026] Convert the external voice into text information, and judge whether the text information is the same as the unlocking instruction.
[0027] Further, the step of unlocking or locking the atomizing device specifically includes: unlocking the atomizing device;
[0028] After the step of unlocking the atomizing device, the following steps are further included:
[0029] Set a preset time;
[0030] Continuously record the cumulative value of the time after the atomizing device is unlocked, denoted as the first time;
[0031] Detect whether the atomizing device is being puffed;
[0032] If not, determine whether the first time is greater than or equal to the preset time;
[0033] If the first time is greater than or equal to the preset time, lock the atomizing device.
[0034] Further, before the step of detecting whether the atomizing device is being puffed, the following steps are further included: clearing the first time; and / or,
[0035] The step of detecting whether the atomizing device is being puffed further includes:
[0036] If so, clear the first time, and re - execute the step of continuously recording the cumulative value of the time after the atomizing device is unlocked, denoted as the first time; and / or,
[0037] The step of determining whether the first time is greater than or equal to the preset time further includes:
[0038] If not, re - execute the step of continuously recording the cumulative value of the time after the atomizing device is unlocked, denoted as the first time.
[0039] Compared with the prior art, the embodiments of the present application mainly have the following beneficial effects:
[0040] The present application can receive external sounds through a receiving module, and identify whether the external sounds meet the conditions for starting / closing the child lock through a voice recognition module, and then transmit the judgment result to a control module through an electrical signal. The control module directly controls the child lock module to start or close the child lock. When the child lock is open, the atomizing device can be used normally; when the child lock is closed, the atomizing device cannot be used. Description of the Drawings
[0041] To more clearly illustrate the solutions in the present application or the prior art, the following will give a brief introduction to the drawings required for the description of the embodiments or the prior art. Obviously, the drawings in the following description are some embodiments of the present application. For those of ordinary skill in the art, without creative efforts, other drawings can also be obtained based on these drawings.
[0042] Figure 1 is a schematic structural diagram of the atomization device according to an embodiment of the present application;
[0043] Figure 2 is a schematic module diagram of the voice recognition child lock;
[0044] Figure 3 is a flowchart of the voice recognition child lock control method according to an embodiment of the present application;
[0045] Figure 4 is another flowchart of the voice recognition child lock control method according to an embodiment of the present application.
[0046] Reference numerals:
[0047] Atomization device 10, microphone 100. Detailed implementation manners
[0048] The following will clearly and completely describe the technical solutions in the embodiments of the present application with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only some embodiments of the present application, rather than all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative efforts belong to the scope of protection of the present application. In addition, it should be understood that the specific implementation manners described herein are only used to illustrate and explain the present application, and are not used to limit the present application.
[0049] In the present application, unless otherwise stated, the orientation terms such as "upper" and "lower" generally refer to the upper and lower in the actual use or working state of the device, specifically the drawing direction in the drawings; and "inner" and "outer" refer to the outline of the device. In addition, in the description of the present application, the term "comprising" means "including but not limited to". The terms first, second, third, etc. are only used as labels and do not impose numerical requirements or establish an order.
[0050] In the present application, "and / or" describes the association relationship of associated objects, indicating that three relationships can exist. For example, A and / or B can represent: A exists alone, A and B exist simultaneously, and B exists alone. Where A and B can be singular or plural.
[0051] In this application, "at least one" means one or more, and "a plurality" means two or more. "At least one kind", "at least one of the following items (pieces)" or similar expressions refer to any combination of these items, including any combination of single item (piece) or plural items (pieces). For example, "at least one of a, b, or c", or "at least one of a, b, and c" can both represent: a, b, c, a - b (i.e., a and b), a - c, b - c, or a - b - c, where a, b, and c can be single or multiple respectively.
[0052] Various embodiments of this application may exist in the form of a range; it should be understood that the description in the form of a range is only for convenience and brevity, and should not be construed as a rigid limitation on the scope of this application; therefore, it should be considered that the range description has specifically disclosed all possible sub - ranges and single values within that range. For example, it should be considered that the range description from 1 to 6 has specifically disclosed sub - ranges such as from 1 to 3, from 1 to 4, from 1 to 5, from 2 to 4, from 2 to 6, from 3 to 6, etc., and single numbers within the range, such as 1, 2, 3, 4, 5, and 6, and this applies regardless of the range. Additionally, whenever a numerical range is indicated herein, it means including any cited number (fraction or integer) within the indicated range.
[0053] Please refer to Figures 1 to 3 , a voice - recognition child lock, comprising:
[0054] A control module, a child - lock module, a voice - recognition module, and a receiving module;
[0055] The control module is electrically connected to the child - lock module and the voice - recognition module, and is used to control the opening and closing of the child - lock module;
[0056] The receiving module is electrically connected to the voice - recognition module, and is used to receive external sounds, and the voice - recognition module is used to recognize external sounds.
[0057] In this embodiment, when the voice - recognition child lock is in use, it can receive external sounds through the receiving module, and the voice - recognition module can recognize whether the external sounds meet the conditions for starting / closing the child lock, and then transmit the judgment result to the control module through an electrical signal. The control module directly controls the child - lock module to start or close the child lock. When the child lock is open, the atomizing device 10 can be used normally; when the child lock is closed, the atomizing device 10 cannot be used.
[0058] When a child is playing with the atomization device 10, the voice recognition child lock will not control the module to start when no sound is received (the child does not make a sound), or when the voice recognition module recognizes that the sound does not meet the conditions for starting the child lock (the child has made a sound), thus avoiding the child accidentally touching and starting the atomization device 10. At the same time, when the user needs to use the atomization device 10, they only need to make a specific sound. By passing the judgment of the voice recognition module, the child lock module can be turned off, and then the atomization device 10 can be sucked. Similarly, when the user does not need to suck the atomization device 10, they can make another specific sound to pass the judgment of the voice recognition module, and then turn on the child lock module to avoid the child accidentally touching the atomization device 10.
[0059] In summary, the child lock recognition of the embodiment of the present application can avoid the child accidentally touching and starting the atomization device 10, and the operation is convenient. There is no need to use fingerprint and face recognition related devices, and the production cost is low.
[0060] It should be understood that the external sounds recognized by the voice recognition module include pitch, audio, sound volume, the number of sound signals (the number of words in the sound or the number of undulations of the sound wave), etc. When the voice recognition module recognizes whether the external sound meets the conditions for starting the child lock, it can match at least one of the pitch, audio, sound volume, and the number of sound signals of the sound received by the receiving module with the pre-stored information. If the match is successful, the closing information will be sent to the control module, and the child lock module will be closed through the control module. If the match is unsuccessful, the starting information will be sent to the control module, and the child lock module will be opened through the control module (before this, the child lock module is in the closed state, and the user can suck the atomization device 10).
[0061] When the child lock module locks the atomization device 10, it includes but is not limited to controlling the start and stop of the atomization core by voltage, controlling the battery power off by digital information, and controlling the internal air flow path to close by digital information (to avoid the generation of aerosol and being taken away by the sucking action from the atomization device 10), etc.
[0062] Further, please refer to Figures 1 to 3 , the control module includes a control module and an atomization core output module. The control module is electrically connected to the atomization core control module and the voice recognition module, and is used to lock or unlock the atomization core output control unit. The atomization core output control unit is used to control the opening and closing of the atomization core.
[0063] In this embodiment, the atomization core control module can directly control the atomization core output module in the atomization device 10. The atomization core output module restricts the output of the atomization core to lock the atomization core and avoid the generation of aerosol, thereby avoiding the child sucking the aerosol.
[0064] Further, please refer to Figures 1 to 3 , the control module is a micro control unit; and / or,
[0065] The receiving module is an atomization device 100 .
[0066] In this embodiment, the microcontroller unit can reduce the space occupied by the voice recognition child lock while playing the role of accurately controlling the activation / deactivation of the child lock. The atomizing device 100 can well receive external sounds.
[0067] In the prior art, after the child lock module of the atomizer 10 is closed, the user can inhale the aerosol. However, in some cases, the user often ignores the step of opening the child lock module, causing the atomizer 10 to continue to generate aerosol, thereby causing a waste of aerosol.
[0068] To solve the above problems, please refer to Figures 1 to 3 ,The voice recognition child lock also includes a duration monitoring module and a suction detection module, the suction detection module is used to detect whether there is a suction action, and if so, a suction signal is generated;
[0069] The duration monitoring module is electrically connected to the puff detection module and the control module, and is used to detect the reception time of adjacent puff signals and the control module.
[0070] In this embodiment, the duration monitoring module can detect the time that has passed since the last puff. For example, if the last puff was at 16:12 and the next puff was taken 5 seconds later, the duration monitoring module would record the time as 5 seconds. If there is no puffing action, the duration monitoring module would continue to accumulate the time and record it as the first time.
[0071] When the user turns off the child lock module and finishes the first puffing action, the duration monitoring module will detect the time period when the user does not puff. At this time, the first time represents the total time after the user has no puffing action; when the first time exceeds a certain threshold (the threshold can be set in advance), the duration monitoring module will transmit a signal to the control module, which will drive the child lock module to start. At this time, the atomizer 10 is locked, thereby reducing the loss of aerosol.
[0072] It should be understood that if the user performs a second puff action within the threshold range, the duration monitoring module can recalculate the first time; at the same time, before the duration monitoring module starts recording the first time, the stored first time can also be reset to avoid the first time remaining after the last atomization device 10 was started, affecting the first time record of this time by the duration monitoring module.
[0073] Furthermore, the voice recognition child lock also includes a display module, which is electrically connected to the child lock module and is used to display the current state of the child lock module.
[0074] In this embodiment, the voice recognition child lock may further include a display module, which is capable of displaying the current state (activated / closed) of the voice recognition child lock and / or the overall state (unlocked / locked) of the atomizing device 10. It should be understood that the display module includes but is not limited to a display screen, lights, etc.
[0075] Correspondingly, please refer to Figures 1 to 3 , this application provides an atomizing device 10, which includes the voice recognition child lock of any one of the above embodiments.
[0076] In this embodiment, since the atomizing device 10 includes the voice recognition child lock of any one of the above embodiments, the atomizing device 10 can receive external sounds through the receiving module, and identify whether the external sounds meet the conditions for activating / closing the child lock through the voice recognition module, and then transmit the judgment result to the control module through an electrical signal. The control module directly controls the child lock module to activate or deactivate the child lock. When the child lock is opened, the atomizing device 10 can be used normally; when the child lock is closed, the atomizing device 10 cannot be used.
[0077] Correspondingly, this application also provides a method for controlling a voice recognition child lock, and the method includes:
[0078] S100, set an unlocking instruction;
[0079] S200, receive external voice;
[0080] S300, determine whether the external voice matches the voice instruction;
[0081] If so, unlock or lock the atomizing device 10.
[0082] In this embodiment, by determining whether the external voice matches the voice instruction, it can be identified whether the atomizing device 10 should be locked or unlocked. If the external voice does not match the voice instruction, no operation is performed on the atomizing device 10 to implement the control of the voice recognition child lock. The voice instruction can be a sound or voice.
[0083] Further, please refer to Figures 1 to 3 , the step of determining whether the external voice matches the voice instruction includes:
[0084] Determine whether the number of sound information of the external voice in a unit time is the same as the number of sound signals of the unlocking instruction; and / or,
[0085] Determine whether the voiceprint of the external voice is the same as the voiceprint of the unlocking instruction; and / or,
[0086] Convert the external voice into text information, and determine whether the text information is the same as the unlocking instruction.
[0087] In this embodiment, the number of voice messages can be understood as the smallest voice messages such as characters or letters in a passage of text; or a specific number of tapping sounds. When unlocking through voiceprint, since the voiceprints of different people are different, it can also play a role in preventing theft of the atomizing device 10. When the unlocking instruction is a text message, the text message after external voice conversion needs to be the same as the voice instruction.
[0088] Further, please refer to Figure 4 , the steps for unlocking or locking the atomizing device 10 are specifically as follows: unlocking the atomizing device 10;
[0089] After the step of unlocking the atomizing device 10, the following steps are further included:
[0090] Setting a preset time;
[0091] Continuously recording the cumulative value of the time after the atomizing device 10 is unlocked, denoted as the first time;
[0092] Detecting whether the atomizing device 10 is being puffed;
[0093] If not, determining whether the first time is greater than or equal to the preset time;
[0094] If the first time is greater than or equal to the preset time, locking the atomizing device 10.
[0095] In this embodiment, when the first time is greater than or equal to the preset time, it indicates that after the atomizing device 10 is unlocked, the interval during which the user does not puff the atomizing device 10 exceeds the threshold. At this time, the atomizing device 10 can be directly locked to avoid waste and loss of the aerosol in the atomizing device 10. The cumulative value of the first time can be continuously accumulated from 0 seconds. For example, if 10 seconds have passed after the user does not puff, the cumulative value of the first time is 10 seconds.
[0096] Further, before the step of detecting whether the atomizing device 10 is being puffed, the following steps are further included: clearing the first time; and / or,
[0097] The step of detecting whether the atomizing device 10 is being puffed further includes:
[0098] If so, clearing the first time and re-executing the step of continuously recording the cumulative value of the time after the atomizing device 10 is unlocked, denoted as the first time; and / or,
[0099] The step of determining whether the first time is greater than or equal to the preset time further includes:
[0100] If not, re-executing the step of continuously recording the cumulative value of the time after the atomizing device 10 is unlocked, denoted as the first time.
[0101] In this embodiment, clearing the first time before each detection of whether the atomizing device 10 is puffed can avoid the influence of the remaining first time from the previous time on the current calculation. After detecting that the atomizing device 10 is puffed, it is also necessary to clear the time accumulation value again and start recording the first time anew. When the first time is less than the preset time, the aerosol has not been excessively consumed at this time, so there is no need to lock the atomizing device 10.
[0102] Obviously, the embodiments described above are only a part of the embodiments of the present application, rather than all of them. The drawings show the preferred embodiments of the present application, but do not limit the patent scope of the present application. The present application can be implemented in many different forms. On the contrary, the purpose of providing these embodiments is to make the understanding of the disclosed content of the present application more thorough and comprehensive. Although the present application has been described in detail with reference to the foregoing embodiments, for those skilled in the art, they can still modify the technical solutions recorded in the foregoing specific embodiments, or perform equivalent replacements on some of the technical features. Any equivalent structure directly or indirectly using the content of the specification and drawings of the present application in other related technical fields is similarly within the scope of the patent protection of the present application.
[0103] Although the embodiments of the present application have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, combinations, substitutions, and variations can be made to these embodiments without departing from the principles and purposes of the present application. The scope of the present invention is defined by the claims and their equivalents.
Claims
1. A voice recognition child lock, characterized in that: include: Control module, child lock module, voice recognition module and receiving module; The control module is electrically connected to the child lock module and the voice recognition module, and is used to control the opening and closing of the child lock module; The receiving module is electrically connected to the voice recognition module and is used to receive external sounds. The voice recognition module is used to recognize external sounds.
2. The voice recognition child lock according to claim 1, characterized in that: The control module includes a control module and an atomizer core output module. The control module is electrically connected to the atomizer core control module and the voice recognition module, and is used to lock or unlock the atomizer core output control unit. The atomizer core output control unit is used to control the opening and closing of the atomizer core.
3. The voice recognition child lock according to claim 2, characterized in that: The control module is a micro control unit; and / or, The receiving module is a microphone.
4. The voice recognition child lock according to claim 1, characterized in that: The voice recognition child lock also includes a duration monitoring module and a suction detection module, wherein the suction detection module is used to detect whether there is a suction action, and if so, generates a suction signal; The duration monitoring module is electrically connected to the puff detection module and the control module, and is used to detect the reception time of adjacent puff signals, the control module.
5. The voice recognition child lock according to claim 1, characterized in that: The voice recognition child lock also includes a display module, which is electrically connected to the child lock module and is used to display the current state of the child lock module.
6. An atomizing device, characterized in that: The atomization device includes the voice recognition child lock according to any one of claims 1 to 5.
7. A voice recognition child lock control method, characterized in that: The method comprises: Set unlock command; Receive external voice; Determining whether the external voice matches the unlocking instruction; If so, unlock or lock the atomizer.
8. The voice recognition child lock control method according to claim 7, characterized in that: The step of determining whether the external voice matches the unlocking instruction comprises: Determining whether the amount of sound information of the external voice per unit time is the same as the amount of sound signals of the unlocking instruction; and / or, Determining whether the voiceprint of the external voice is the same as the voiceprint of the unlocking instruction; and / or, The external voice is converted into text information, and it is determined whether the text information is the same as the unlocking instruction.
9. The voice recognition child lock control method according to claim 7, characterized in that: The step of unlocking or locking the atomizing device specifically comprises: unlocking the atomizing device; After the step of unlocking the atomizing device, the following steps are also included: Set a preset time; Continuously record the accumulated time after the atomization device is unlocked, and record it as the first time; Detect whether the atomizing device is being sucked; If not, determining whether the first time is greater than or equal to the preset time; If the first time is greater than or equal to the preset time, the atomization device is locked.
10. The voice recognition child lock control method according to claim 9, characterized in that: Before the step of detecting whether the atomizing device is being sucked, the following steps are also included: clearing the first time; and / or, The step of detecting whether the atomizing device is sucked also includes: If yes, clear the first time, and re-execute the step of continuously recording the accumulated time after the atomization device is unlocked and recording it as the first time; and / or, The step of determining whether the first time is greater than or equal to a preset time further includes: If not, the step of continuously recording the accumulated time after the atomization device is unlocked and recording it as the first time is executed again.