A multi-mode atomizer working method, system and storage medium

By integrating multiple atomization modules into the nebulizer and automatically switching atomization modes based on liquid bullet recognition information, the problem of single-mode operation of existing nebulizers is solved. This allows a single nebulizer to adapt to the treatment needs of multiple liquid medications, improving the flexibility and effectiveness of treatment.

CN116531618BActive Publication Date: 2026-07-21GUANGXI BULU MEDICAL INSTR CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
GUANGXI BULU MEDICAL INSTR CO LTD
Filing Date
2023-04-15
Publication Date
2026-07-21

AI Technical Summary

Technical Problem

Existing nebulizers can only operate in one nebulization mode and cannot be switched to different nebulization modes according to different types of liquid medications, resulting in significant limitations in treatment and failing to meet the treatment needs of various types of respiratory diseases.

Method used

Multiple atomization modules are integrated into the nebulizer. The target working mode is obtained through liquid bullet recognition information, and the corresponding atomization module is switched to achieve different atomization methods, including high-frequency ultrasound, screen type, compression and heating atomization. The atomization mode is automatically switched according to the type of liquid bullet and the treatment object.

Benefits of technology

This invention enables a nebulizer to adapt to different types of liquid bullets and switch nebulization modes according to the treatment target and purpose, thereby improving the applicability and treatment effect of the nebulizer.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application relates to the technical field of electronic atomizers, in particular to a multi-mode atomizer working method and system and a storage medium, which comprises the following steps: acquiring liquid bullet identification information; obtaining a corresponding target working mode according to the liquid bullet identification information; judging whether the target working mode exists in working modes on the atomizer, wherein the working modes on the atomizer include at least two of high-frequency ultrasonic atomization, screen mesh atomization, compression atomization and heating atomization; if the target working mode exists, judging whether the working mode on the current atomizer is the target working mode; if yes, starting the working mode to atomize base liquid in a liquid bullet; if not, switching the working mode on the atomizer according to the target working mode, so that the working mode on the current atomizer is the same as the target working mode, and the base liquid in the liquid bullet is atomized; if the target working mode does not exist, outputting a corresponding abnormal prompt signal. The application has the effect of improving the applicability of the atomizer.
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Description

Technical Field

[0001] This application relates to the technical field of electronic atomizers, and in particular to a multi-mode atomizer operating method, system, and storage medium. Background Technology

[0002] Atomizers are devices that atomize a base liquid for human inhalation. They are widely used in the medical, home humidifier, and e-cigarette industries.

[0003] There are many nebulizer nebulizers currently available, including high-frequency ultrasonic nebulization, screen nebulization, compression nebulization, and heating nebulization. Different nebulization methods produce different sizes of drug particles after nebulizing the base liquid.

[0004] In the medical field, the particle size of drugs affects the treatment effect for nebulizer users. Generally speaking, when the nebulizer particles are 10-15um, they mainly act on the oropharynx; when the nebulizer particles are 5-10um, they mainly act on the upper respiratory tract; when the nebulizer particles are 1-5um, they mainly act on the lower respiratory tract; and when the nebulizer particles are smaller than 1um, most of them will be exhaled from the lungs.

[0005] Currently, nebulizers can only atomize medications using one nebulization mode. For example, a nebulizer can only atomize medications using ultrasonic nebulization. Therefore, when a user has multiple types of respiratory diseases or needs nebulization therapy with liquid cartridges for specific therapeutic effects, they need to purchase different types of nebulizers to match the corresponding liquid cartridges to achieve different nebulization modes. Many current general-purpose nebulizers can only install different types of liquid cartridges on one nebulizer, but they cannot allow a single nebulizer to select and change to different nebulization modes based on different types of liquid cartridges, resulting in significant limitations in treatment. Summary of the Invention

[0006] To improve the applicability of atomizers, this application provides a multi-mode atomizer operating method, system, and storage medium.

[0007] Firstly, this application provides a multi-mode atomizer operating method, which adopts the following technical solution:

[0008] A method for operating a multi-mode atomizer includes the following steps:

[0009] Obtain liquid bullet identification information, which includes at least the type and name of the liquid bullet;

[0010] The corresponding target operating mode is obtained based on the liquid bullet identification information;

[0011] Determine whether the target working mode exists among the working modes on the atomizer, wherein the working modes on the atomizer include at least two of the following: high-frequency ultrasonic atomization, screen atomization, compression atomization, and heating atomization;

[0012] If it exists, determine whether the current working mode on the atomizer is the target working mode;

[0013] If so, then activate this working mode to atomize the liquid base fluid inside the liquid bomb;

[0014] If not, the working mode on the atomizer is switched according to the target working module so that the current working mode on the atomizer is the same as the target working mode, and the switched working mode is activated to atomize the liquid in the liquid bullet.

[0015] If it does not exist, the corresponding error message signal will be output.

[0016] Preferably, obtaining liquid bullet identification information further includes the following steps:

[0017] Determine whether a connection trigger signal exists, wherein the connection trigger signal is characterized as a connection signal generated when the liquid bullet is loaded into the atomizer;

[0018] If the connection trigger signal exists, it indicates that the liquid bullet has been loaded into the atomizer, and it is determined whether the liquid bullet identification information can be obtained.

[0019] If possible, acquire the liquid bullet identification information; if not, output the corresponding identification anomaly signal.

[0020] If the connection trigger signal is not present, it indicates that the liquid bullet is not installed in the atomizer, and the system waits to acquire the liquid bullet identification information.

[0021] Preferably, obtaining the corresponding target operating mode based on the liquid bullet identification information includes the following steps:

[0022] The efficacy information is obtained based on the type and name of the liquid bullet;

[0023] The treatment target area is generated based on the efficacy information;

[0024] The treatment sites are classified according to a preset classification method to obtain several classification groups, including the nasal cavity group, the upper respiratory tract group, and the lower respiratory tract group.

[0025] Select the corresponding target working mode based on the classification group.

[0026] Preferably, selecting the corresponding target working mode according to the classification group further includes the following steps:

[0027] Determine whether the number of the classification groups is greater than 1;

[0028] If the value is not greater than 1, the corresponding target working mode will be generated directly based on the classification group;

[0029] If it is greater than 1, then the historical liquid bullet usage record is obtained, and the historical target count of each category group is obtained based on the historical liquid bullet usage record. The historical target count represents the number of times a certain category group is used as a treatment target in the user's historical usage record.

[0030] Determine if the number of classification groups with a non-zero historical target count is 1;

[0031] If the value is 1, then the corresponding target working mode is obtained according to the classification group;

[0032] If it is not 1, then a combined atomization scheme is generated based on several classification groups, and several atomization scheme options are generated and displayed based on the combined atomization scheme.

[0033] Preferably, after generating and displaying several atomization scheme options based on the combined atomization scheme, the method further includes:

[0034] Determine whether a user's selection feedback signal based on the atomization scheme option has been obtained within a preset time period;

[0035] If a selection feedback signal is obtained, the corresponding target working mode is obtained according to the combined atomization scheme corresponding to the selection feedback signal;

[0036] If no selection feedback signal is obtained, the priority target coefficient of each combination atomization scheme is obtained based on the historical target count of each classification group, and the combination atomization scheme with the largest priority target coefficient is selected and the corresponding target working mode is obtained.

[0037] Secondly, this application provides a multi-mode atomizer system, which adopts the following technical solution:

[0038] A multi-mode atomizer system includes an atomizer body, a liquid cartridge, a liquid cartridge recognition module, an atomization module group, a switching module, a power supply, a processing module, and an error indication module.

[0039] The power supply is used to provide the operating voltage, and the atomizer body includes a detachable cartridge for installing liquid cartridges;

[0040] The liquid bullet identification module is installed inside the magazine. The liquid bullet identification module is used to identify liquid bullet information to generate corresponding liquid bullet identification information. The liquid bullet identification information includes at least the type and name of the liquid bullet.

[0041] Both the atomization module group and the switching module are located in the magazine. The atomization module group includes at least two of the following: a high-frequency ultrasonic atomization module, a screen atomization module, a compression atomization module, and a heating atomization module. Each atomization module has a corresponding working mode. The switching module is used to switch between several atomization modules in the atomization module group.

[0042] The processing module is disposed within the atomizer body. The processing module is used to acquire the liquid bullet identification information and obtain the corresponding target operating mode based on the liquid bullet identification information; determine whether the target operating mode exists among the operating modes on the atomizer; if it exists, determine whether the current operating mode on the atomizer is the target operating mode; if yes, activate the operating mode to atomize the base liquid in the liquid bullet; if no, switch the operating mode on the atomizer according to the target operating module so that the current operating mode on the atomizer is the same as the target operating mode, and activate the switched operating mode to atomize the base liquid in the liquid bullet; if it does not exist, cause the abnormality prompt module to output a corresponding abnormality prompt signal.

[0043] Preferably, the liquid bullet identification module is an I / O port identification module, and the liquid bullet is provided with a corresponding I / O port docking cable. The I / O port identification module contacts the I / O port docking cable to obtain liquid bullet identification information.

[0044] Preferably, the liquid bullet identification module is a radio frequency identification module. The liquid bullet is equipped with a radio frequency transmitter, which stores corresponding liquid bullet information. The radio frequency identification module receives the radio frequency signal emitted by the radio frequency transmitter to obtain the corresponding liquid bullet identification information.

[0045] Preferably, it also includes a Bluetooth module, which is disposed within the atomizer body to enable external Bluetooth communication transmission and reception.

[0046] Thirdly, this application provides a computer storage medium, which adopts the following technical solution:

[0047] A computer storage medium storing a computer program, which, when executed by a processor, implements the above-described multi-mode atomizer operation method.

[0048] In summary, this application includes the following beneficial technical effects:

[0049] 1. By integrating multiple atomization modules into the nebulizer, the target working mode corresponding to different liquid bullet types is obtained through the analysis of the identification information of the liquid bullets. Different atomization modes are generated according to different target working modes, and different atomization modules are switched according to different atomization modes to obtain atomized particles of different sizes. In this way, a single nebulizer can not only change different types, flavors, and formulas of liquid bullets, but also switch different atomization modes according to the treatment target and treatment purpose of the liquid bullets. The nebulizer has stronger applicability and better effect. Attached Figure Description

[0050] Figure 1 This is a schematic diagram of the overall structure of an embodiment of this application. Detailed Implementation

[0051] The following is in conjunction with the appendix Figure 1 This application will be described in further detail.

[0052] This application discloses a method for operating a multi-mode atomizer.

[0053] like Figure 1 As shown, a multi-mode atomizer operation method includes the following steps:

[0054] S100, acquires liquid bullet identification information.

[0055] Liquid bullet identification information includes at least the type and name of the liquid bullet, and may also include information such as the flavor, formula, date, manufacturer and batch number of the liquid bullet. It is mainly used to identify information about each liquid bullet.

[0056] Specifically, it includes the following steps:

[0057] S110, determine whether a connection trigger signal exists.

[0058] The connection trigger signal is characterized as the connection signal generated when the liquid bullet is loaded into the atomizer.

[0059] S120, if a connection trigger signal exists, it indicates that the liquid bullet has been loaded into the atomizer, and it is determined whether the liquid bullet identification signal can be obtained.

[0060] In other words, the liquid cartridge identification information can only be acquired when it is inserted into the atomizer and a connection trigger signal is generated. This is because if the liquid cartridge is not inserted into the atomizer, it is useless for the processing module to continuously acquire the liquid cartridge identification signal, which would also increase the workload of the processing module. On the other hand, some liquid cartridges have their information written by the manufacturer before leaving the factory via NFC or RFID, and the radio frequency signal is read by the radio frequency reader on the atomizer. However, since both NFC and RFID are contactless communication modules, when the liquid cartridge is close to the atomizer but is not inserted into the atomizer, the atomizer may mistakenly receive the radio frequency signal, which would cause the processing module to malfunction. To avoid this situation, it is necessary to ensure that the liquid cartridge identification information can only be acquired after it is confirmed that the liquid cartridge is inserted into the atomizer.

[0061] S130: If possible, acquire the liquid bullet identification information; if not, output the corresponding identification anomaly signal.

[0062] If the liquid cartridge identification information cannot be obtained, it may be due to damage to the liquid cartridge identification component or damage to the device on the atomizer used to identify liquid cartridge information. In this case, a corresponding identification abnormality signal will be output to prompt the user to re-plug or check the liquid cartridge and atomizer.

[0063] S140, if there is no connection trigger signal, it indicates that the liquid bullet is not installed in the atomizer and waits to obtain liquid bullet identification information.

[0064] S200 obtains the corresponding target operating mode based on the liquid bullet identification information.

[0065] Specifically, the following steps are included:

[0066] S210 obtains its effectiveness information based on the type and name of the liquid bullet.

[0067] The types and names of liquid bullets are specific, and their corresponding effects can be obtained from the type and name of the liquid bullet. The effect information corresponding to different liquid bullet types and names is pre-stored in the corresponding processing modules. When the processing module receives the liquid bullet identification signal, it can find the corresponding effect information based on the type and name.

[0068] S220 generates the treatment target area based on efficacy information.

[0069] The efficacy information indicates what problems the drug can treat in what parts of the body and what effects it can achieve. Based on the efficacy information, you can find out the target parts that the liquid bullet can treat, such as the throat, lungs, etc.

[0070] S230, classify the treatment site according to a preset classification method to obtain several classification groups, including the nasal cavity group, the upper respiratory tract group and the lower respiratory tract group.

[0071] Because the particle size of different liquid atomizing agents affects the treatment effect at different locations, for example, if the atomized particles are large, most of them will only deposit in the upper respiratory tract such as the mouth and throat, while the amount deposited in the lungs will be less, thus failing to effectively treat lower respiratory tract diseases. Therefore, it is necessary to group the liquid atomizing agents according to their treatment locations, mainly into nasal cavity group, upper respiratory tract group, and lower respiratory tract group. After classifying into different groups, appropriate atomization modes can be selected according to different groups, thereby changing the corresponding particle size.

[0072] S240, select the corresponding target working mode according to the classification group.

[0073] Specifically, it includes:

[0074] S241, determine whether the number of classification groups is greater than 1.

[0075] Some liquid nebulizers treat a wide range of subjects. By atomizing particles of varying sizes using different methods, they can treat different conditions, such as lung diseases or sore throats. In this case, the nebulizer would correspond to at least two treatment groups: an upper respiratory tract group and a lower respiratory tract group. When a single liquid nebulizer can treat multiple treatment groups, a user might use it to treat a specific patient in one group, or simultaneously treat multiple patients in multiple groups. These two scenarios correspond to different treatment plans, thus requiring the determination of the number of treatment groups.

[0076] S242, if not greater than 1, then the corresponding target working mode is directly generated based on the classification group.

[0077] If the classification group is not greater than 1, it means that the liquid bullet can only be used to treat the treatment target parts within a classification group. Since the corresponding positions and particle sizes of several treatment target parts in a classification group are similar, the corresponding target working mode can be directly generated according to the classification group.

[0078] S243, if greater than 1, then obtain the historical liquid bullet usage record, and obtain the historical target count for each category group based on the historical liquid bullet usage record.

[0079] If the number of classification groups is greater than 1, it means that the liquid bullet can be used to treat the treatment target parts corresponding to multiple classification groups. Then, the historical liquid bullet usage record is obtained. The historical liquid bullet usage record stores the usage records of all liquid bullets used by the atomizer, and the historical target count of each classification group is obtained based on the historical liquid bullet usage record.

[0080] The liquid cartridges used in the history of this atomizer must contain the corresponding classification groups. By adding up these classification groups, it can be determined which classification groups of liquid cartridges had the most therapeutic effects on the user in the past.

[0081] S244, determine whether the number of classification groups with a non-zero historical target count is 1.

[0082] S245, if it is 1, then obtain the corresponding target working mode according to the classification group.

[0083] A historical target count of 0 means the user has never used liquid ammunition to treat this category group. If the number of categories with a non-zero historical target count is 1, it means the user previously used the nebulizer only to treat a specific category group. Therefore, the corresponding target working mode can be obtained based on that category group.

[0084] S246, if not 1, generates a combined atomization scheme based on several classification groups, and generates and displays several atomization scheme options based on the combined atomization scheme.

[0085] If the number of classification groups with a non-zero historical target count is not 1, then it is either 0 or greater than 1. A classification group count of 0 means that the atomizer has not used any liquid bullets, because the historical target count of all classification groups is 0. In this case, we can ignore it, because we can directly obtain the corresponding target working mode based on the liquid bullet identification information.

[0086] If the number is greater than 1, it means that the liquid bullet can treat diseases in multiple locations at the same time. Then, a combination nebulization scheme is generated according to several classification groups, so that the treatment sites of several classification groups can be nebulized by changing different nebulization methods.

[0087] To make it easier for users to choose, the combined atomization scheme can be displayed by generating several atomization scheme options, making it convenient for users to select.

[0088] After generating and displaying several atomization scheme options, the following steps are also included:

[0089] S247, determine whether a user's selection feedback signal based on the atomization scheme option has been obtained within a preset time.

[0090] It determines whether the user has selected the appropriate atomization scheme within a certain time period. If the user has made a selection, it outputs the corresponding selection feedback signal.

[0091] S248, if a selection feedback signal is obtained, the corresponding target working mode is obtained according to the combined atomization scheme corresponding to the selection feedback signal.

[0092] If a selection feedback signal is obtained, the corresponding composition scheme is selected based on the selection result, and the corresponding target working mode is generated.

[0093] S249, if no selection feedback signal is obtained, the priority target coefficient of each combination atomization scheme is obtained according to the historical target count of each classification group, and the combination atomization scheme with the largest priority target coefficient is selected and the corresponding target working mode is obtained.

[0094] If no selection feedback signal is obtained within a certain period, then the priority target coefficient for each component atomization scheme is obtained based on the historical target frequency of each category group. The priority target coefficient represents the probability that the category group is likely to be selected or is the atomization mode that the user wants to use. Theoretically, the larger the priority target coefficient, the greater the probability that it is likely to be selected or is the atomization mode that the user wants to use.

[0095] The rules for setting priority target coefficients can be modified and improved through actual use. Generally speaking, the higher the priority target coefficient of the combination nebulization scheme corresponding to the category group with more historical target counts, the more times the user has performed treatments for the treatment target within that category group.

[0096] After obtaining the priority target coefficients of each combined atomization scheme, select the combined atomization scheme with the highest priority target coefficient and obtain the corresponding target working mode.

[0097] S300, determine whether the target working mode exists in the working modes on the atomizer, wherein the working modes on the atomizer include at least two of the following: high-frequency ultrasonic atomization, screen atomization, compression atomization, and heating atomization.

[0098] The atomizer integrates atomization modules corresponding to various atomization modes, and different atomization modules correspond to different atomization modes.

[0099] After obtaining the target working mode through the above method, since some atomizers do not integrate all atomization modules, there may be a situation where the atomizer cannot match the target working mode. Therefore, it is necessary to further determine whether the working modes available on the atomizer include the target working mode.

[0100] If S400 exists, determine whether the current working mode on the atomizer is the target working mode.

[0101] If it exists, it means that the atomizer can achieve the target working mode. Then, we need to further determine whether the current working mode of the atomizer is the target working mode.

[0102] If S500 is selected, this operating mode will be activated to atomize the liquid base fluid inside the liquid bomb.

[0103] S600, if not, then switch the working mode on the atomizer according to the target working module so that the current working mode on the atomizer is the same as the target working mode, and start the switched working mode to atomize the base liquid in the liquid bullet.

[0104] If the current working mode of the atomizer is the target working mode, then you can directly turn it on to perform atomization; if the current working mode of the atomizer is not the target working mode, then the atomizer needs to switch its current working mode to a working mode that matches the target working mode. After the switch is completed, start the switched working mode to atomize the base liquid in the liquid cartridge.

[0105] If S700 does not exist, the corresponding error message signal will be output.

[0106] If the atomizer does not have the target working mode, then the atomizer cannot meet the atomization requirements and will output a corresponding abnormal prompt signal. The user can replace the corresponding atomizer according to the abnormal prompt signal, or choose other atomization methods to atomize the liquid bullet.

[0107] This application also discloses a multi-mode atomizer system, including an atomizer body, a liquid cartridge, a liquid cartridge recognition module, an atomization module group, a switching module, a power supply, a processing module, and an error indication module, wherein...

[0108] The power supply provides the operating voltage, and the atomizer body includes a detachable cartridge for installing liquid cartridges;

[0109] The liquid bullet identification module is installed inside the magazine. The liquid bullet identification module is used to identify liquid bullet information to generate corresponding liquid bullet identification information. The liquid bullet identification information includes at least the type and name of the liquid bullet.

[0110] Both the atomizing module group and the switching module are located inside the magazine. The atomizing module group includes at least two of the following: a high-frequency ultrasonic atomizing module, a screen-type atomizing module, a compression atomizing module, and a heating atomizing module. Each atomizing module has a corresponding working mode. The switching module is used to switch between several atomizing modules in the atomizing module group. In addition, in the ultrasonic atomizing module, it can also replace the vibrating plate between high frequency and low frequency. The specific structure of the atomizer body, the atomizing module group, and the switching module can be modified and designed according to the actual situation and customer requirements.

[0111] The processing module is an MCU chip, located inside the atomizer body. It acquires liquid cartridge identification information and determines the corresponding target operating mode based on this information. It then checks if the target operating mode exists among the atomizer's operating modes. If it does, it checks if the current operating mode is the target mode. If yes, it activates that mode to atomize the base liquid within the liquid cartridge. If not, it switches the atomizer's operating mode according to the target mode to match it, and activates the switched mode to atomize the base liquid within the liquid cartridge. If the target mode is not present, the error message module outputs a corresponding error message signal.

[0112] In other embodiments, the liquid bullet identification module is an I / O port identification module. The liquid bullet is equipped with a corresponding I / O port docking cable. The I / O port identification module contacts the I / O port docking cable to achieve electrical connection and obtain liquid bullet identification information. The above method belongs to hardware identification.

[0113] In other embodiments, the liquid bullet identification module is a radio frequency identification (RFID) module. The liquid bullet is equipped with an RFID transmitter, which stores corresponding liquid bullet information. The RFID module receives the radio frequency signal emitted by the transmitter to obtain the corresponding liquid bullet identification information. The RFID module can be an NFC reader / writer or an RFID reader / writer, and the RFID transmitter can be NFC or RFID. The above method belongs to software identification.

[0114] In other embodiments, a Bluetooth module is also included, which is disposed within the atomizer body to enable external Bluetooth communication transmission and reception.

[0115] This application also discloses a computer storage medium storing a computer program, which, when executed by a processor, implements the above-described multi-mode atomizer working method.

[0116] The implementation principle is as follows:

[0117] By integrating multiple atomization modules into the nebulizer, the target working mode corresponding to different liquid bullet types is obtained through the analysis of the identification information of the liquid bullets. Different atomization modes are generated according to different target working modes, and different atomization modules are switched according to different atomization modes to obtain atomized particles of different sizes. In this way, a single nebulizer can not only change different types, flavors, and formulas of liquid bullets, but also switch different atomization modes according to the treatment target and treatment purpose of the liquid bullets. The nebulizer has stronger applicability and better effect.

[0118] The above are all preferred embodiments of this application, and are not intended to limit the scope of protection of this application. Therefore, all equivalent changes made in accordance with the structure, shape and principle of this application should be covered within the scope of protection of this application.

Claims

1. A method for operating a multi-mode atomizer, characterized in that, Includes the following steps: Obtain liquid bullet identification information, which includes at least the type and name of the liquid bullet; Based on the liquid bullet identification information, corresponding efficacy information is obtained, and the applicable site of the liquid bullet is determined based on the efficacy information. The applicable site is classified according to a preset classification method to obtain several classification groups, including nasal cavity, upper respiratory tract, and lower respiratory tract groups. A corresponding target working mode is obtained based on the classification group. It is determined whether the target working mode exists in the working modes on the nebulizer, wherein the working modes on the nebulizer include at least two of high-frequency ultrasonic nebulization, screen nebulization, compression nebulization, and heating nebulization. If it exists, it is determined whether the current working mode on the nebulizer is the target working mode. If yes, the working mode is activated to atomize the base liquid inside the liquid bullet; if not, the target working mode is determined. The mode switches the working mode on the atomizer to make the current working mode on the atomizer the same as the target working mode, and starts the switched working mode to atomize the base liquid in the liquid cartridge; if it does not exist, the corresponding abnormal prompt signal is output; the corresponding target working mode is obtained according to the classification group, including the following steps: determine whether the number of classification groups is greater than 1; if it is not greater than 1, the corresponding target working mode is directly generated according to the classification group; if it is greater than 1, the historical liquid cartridge usage record is obtained, and the historical target count of each classification group is obtained according to the historical liquid cartridge usage record, the historical target count represents the number of times a certain classification group is used as the applicable target in the user's historical usage record; determine whether the number of classification groups with a historical target count of not 0 is 1; if it is 1, the corresponding target working mode is obtained according to the classification group; if it is not 1, a combined atomization scheme is generated according to several classification groups, and several atomization scheme options are generated and displayed according to the combined atomization scheme.

2. The multi-mode atomizer operating method according to claim 1, characterized in that: Acquiring liquid bullet identification information further includes the following steps: determining whether a connection trigger signal exists, wherein the connection trigger signal is a connection signal generated when the liquid bullet is inserted into the atomizer; if the connection trigger signal exists, it indicates that the liquid bullet has been inserted into the atomizer, and determining whether liquid bullet identification information can be acquired; if it can, the liquid bullet identification information is acquired; if it cannot, a corresponding identification anomaly signal is output; if the connection trigger signal does not exist, it indicates that the liquid bullet has not been inserted into the atomizer, and waiting to acquire the liquid bullet identification information.

3. The multi-mode atomizer operating method according to claim 1, characterized in that: After generating and displaying several atomization scheme options based on the combined atomization scheme, the method further includes: determining whether a user selection feedback signal based on the atomization scheme option is obtained within a preset time; if a selection feedback signal is obtained, obtaining the corresponding target working mode based on the combined atomization scheme corresponding to the selection feedback signal; if no selection feedback signal is obtained, obtaining the priority target coefficient of each combined atomization scheme based on the target usage frequency of each category group, selecting the combined atomization scheme with the largest priority target coefficient, and obtaining the corresponding target working mode.

4. The multi-mode atomizer operating method according to claim 1, characterized in that: The preset classification method is as follows: the applicable parts corresponding to the nasal cavity are divided into the nasal cavity group, the applicable parts corresponding to the oral cavity and larynx are divided into the upper respiratory tract group, and the applicable parts corresponding to the trachea and lungs are divided into the lower respiratory tract group.

5. A multi-mode atomizer system, applied to the multi-mode atomizer operating method described in claim 1, characterized in that: The device includes an atomizer body, a liquid cartridge, a liquid cartridge identification module, an atomization module group, a switching module, a power supply, a processing module, and an error indication module. The power supply provides the operating voltage. The atomizer body includes a detachable cartridge compartment for housing the liquid cartridge. The liquid cartridge identification module is located within the cartridge compartment and identifies the liquid cartridge information to generate corresponding liquid cartridge identification information, which includes at least the type and name of the liquid cartridge. The atomization module group and the switching module are both located within the cartridge compartment. The atomization module group includes at least two of the following: a high-frequency ultrasonic atomization module, a screen-type atomization module, a compression atomization module, and a heated atomization module, with each atomization module corresponding to a specific operating mode. The switching module allows switching between several atomization modules within the atomization module group. The processing module is located within the atomizer body and performs the following operations: The process involves: acquiring the liquid bullet identification information; obtaining corresponding efficacy information based on the liquid bullet identification information; determining the applicable site of the liquid bullet based on the efficacy information; classifying the applicable site according to a preset classification method to obtain several classification groups, including nasal cavity group, upper respiratory tract group, and lower respiratory tract group; obtaining the corresponding target working mode based on the classification group; determining whether the target working mode exists in the working modes on the nebulizer; if it exists, determining whether the current working mode on the nebulizer is the target working mode; if it is, activating the working mode to atomize the base liquid in the liquid bullet; if not, switching the working mode on the nebulizer according to the target working mode so that the current working mode on the nebulizer is the same as the target working mode, and activating the switched working mode to atomize the base liquid in the liquid bullet; if it does not exist, causing the abnormal prompt module to output a corresponding abnormal prompt signal.

6. A multi-mode atomizer system according to claim 5, characterized in that: The liquid bullet identification module is an I / O port identification module. The liquid bullet is equipped with a corresponding I / O port docking cable. The I / O port identification module contacts the I / O port docking cable to obtain liquid bullet identification information.

7. A multi-mode atomizer system according to claim 5, characterized in that: The liquid bullet identification module is a radio frequency identification module. The liquid bullet is equipped with a radio frequency transmitter, which stores the corresponding liquid bullet information. The radio frequency identification module receives the radio frequency signal emitted by the radio frequency transmitter to obtain the corresponding liquid bullet identification information.

8. A multi-mode atomizer system according to claim 5, characterized in that: It also includes a Bluetooth module, which is located inside the atomizer body to enable external Bluetooth communication transmission and reception.

9. A computer storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by the processor, it implements the multi-mode atomizer operating method according to any one of claims 1 to 4.