Humidifying component, control method for humidification, and related equipment

By obtaining the speed information of the driving component of the humidification component, the working status of the humidification component is automatically judged, and the problem of low fault identification efficiency caused by the misalignment of the humidification curtain is solved, and automatic fault identification and efficient humidification of the humidification component are realized.

CN115875769BActive Publication Date: 2025-06-10FOSHAN SHUNDE MIDEA ELECTRONICS TECH CO LTD +1
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Patent Information

Application Number
CN202111152817.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-09-29
Publication Date
2025-06-10
Estimated Expiration
2041-09-29

AI Technical Summary

Technical Problem

During the use of existing humidification components, the humidification curtain is prone to misalignment, resulting in the humidification curtain being stuck or disconnected from the driving components, making it impossible to achieve humidification effect. Fault detection depends on user's own identification, and fault identification efficiency is low.

Method used

By opening the drive assembly that drives the rotating humidification curtain, the speed information of the driving assembly is obtained, the working state of the humidification assembly is judged based on the speed information, and the installation abnormality of the humidification curtain and the abnormality of the driving part are identified.

Benefits of technology

Automatic fault identification of humidification components is realized, reducing dependence on users, and improving humidification efficiency and user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

An embodiment of the present application discloses a humidifying component, a control method for humidification, and related devices. The humidifying component includes a driving component that drives a humidifying curtain to rotate, and obtains the rotation speed information of the driving component; based on the rotation speed information, the working state of the humidifying component is determined. The control method for the humidifying component provided by the embodiment of the present application determines the working state of the humidifying component based on the rotation speed information. When the humidifying curtain of the humidifying component is misaligned, resulting in the humidifying curtain being stuck with the driving component, the wet curtain being separated from the driving component, or the driving component being unable to work properly, it will cause abnormalities or changes in the rotation speed information. Further, based on the abnormalities or changes in the rotation speed information, the working state of the humidifying component can be determined, which can quickly detect the abnormalities of the humidifying component, is beneficial to ensuring the humidifying efficiency of the humidifying component, and does not require the user to repeatedly check the operating state of the humidifying component, improving the user experience.
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Description

Technical Field

[0001] The embodiments of the present application relate to the technical field of household appliances, and in particular, to a control method for a humidifying component, a computer-readable storage medium, a control device, a humidifying component, and an air conditioner. Background Art

[0002] In the current technology, when the air environment is relatively dry, a humidifying component is usually used to increase the air humidity. In the current technology, most humidifying components humidify by driving a humidifying curtain to rotate through a driving component. However, during the use of the current humidifying component, the humidifying curtain of the humidifying component is prone to dislocation, resulting in the humidifying curtain being stuck with the driving component or the humidifying curtain being separated from the driving component, and the humidifying component cannot achieve the humidifying effect. Moreover, in the current technology, the fault detection of the humidifying component can only rely on the user's independent identification, resulting in a low fault identification efficiency of the humidifying component, which will affect the humidifying efficiency of the humidifying component and the user experience. Summary of the Invention

[0003] The present invention aims to at least solve one of the technical problems existing in the prior art or related technologies.

[0004] To this end, the first aspect of the present invention provides a control method for a humidifying component.

[0005] The second aspect of the present invention provides a computer-readable storage medium.

[0006] The third aspect of the present invention provides a control device.

[0007] The fourth aspect of the present invention provides a humidifying component.

[0008] The fifth aspect of the present invention provides an air conditioner.

[0009] In view of this, according to the first aspect of the embodiments of the present application, a control method for a humidifying component is proposed, including:

[0010] Turn on a driving component that drives a humidifying curtain to rotate, and obtain the rotation speed information of the driving component;

[0011] Based on the rotation speed information, determine the working state of the humidifying component.

[0012] In a feasible implementation manner, the step of turning on a driving component that drives a humidifying curtain to rotate and obtaining the rotation speed information of the driving component includes:

[0013] Turn on a driving member of the driving component at a first frequency, and obtain the first rotation speed information of the driving member, where the value of the first frequency is greater than a target frequency, and the target frequency is the highest frequency at which the driving component can drive the humidifying curtain to rotate;

[0014] The step of obtaining the working state of the humidifying component based on the rotational speed information includes:

[0015] When the first rotational speed information is greater than the first threshold, determine that the working state of the humidifying component is an abnormal state of humidifying curtain installation.

[0016] In a feasible implementation manner, the step of turning on the driving component that drives the humidifying curtain to rotate and obtaining the rotational speed information of the driving component further includes:

[0017] Turn on the driving member of the driving component at a second frequency, and obtain the second rotational speed information of the driving member;

[0018] Wherein, the value of the second frequency is less than or equal to the target frequency;

[0019] The step of obtaining the working state of the humidifying component based on the rotational speed information includes:

[0020] When the second rotational speed information is less than or equal to the second threshold, determine that the working state of the humidifying component is an abnormal state of humidifying curtain installation and / or an abnormal state of the driving member.

[0021] In a feasible implementation manner, the step of turning on the driving component that drives the humidifying curtain to rotate and obtaining the rotational speed information of the driving component further includes:

[0022] In response to a humidifying start instruction, control the driving component to drive the humidifying curtain to rotate;

[0023] Obtain the third rotational speed information when the driving component executes the humidifying start instruction;

[0024] The step of obtaining the working state of the humidifying component based on the rotational speed information includes:

[0025] When the third rotational speed information is less than or equal to the third threshold, determine that the working state of the humidifying component is an abnormal state of humidifying curtain installation and / or an abnormal state of the driving member;

[0026] Wherein, the value of the third threshold is greater than the values of the first threshold and the second threshold.

[0027] In a feasible implementation manner, the control method further includes:

[0028] Obtain the liquid level information of the liquid in the tank;

[0029] When the liquid level information is less than or equal to the fourth threshold, determine that the working state of the humidifying component is a low water level working state.

[0030] In a feasible implementation manner, the control method further includes:

[0031] Turn on the air supply component and obtain the fourth rotation speed information of the air supply component;

[0032] When the fourth rotation speed information is less than or equal to the fifth threshold, determine that the working state of the humidification component is an abnormal state of the air supply component.

[0033] In a feasible implementation manner, the control method further includes:

[0034] In response to the humidification off instruction, control the drive component to turn off, and when the duration of the continuous operation of the air supply component reaches the first duration, control the air supply component to turn off.

[0035] In a feasible implementation manner, the control method further includes:

[0036] Generate a prompt message corresponding to the working state.

[0037] According to the second aspect of the embodiments of the present application, a computer-readable storage medium is provided.

[0038] The computer-readable storage medium stores a computer program for implementing the control method of the humidification component according to any of the above technical solutions.

[0039] According to the third aspect of the embodiments of the present application, a control device is provided, including:

[0040] A memory storing a computer program;

[0041] A processor executing the computer program;

[0042] Wherein, when the processor executes the computer program, it implements the control method of the humidification component according to any of the above technical solutions.

[0043] According to the fourth aspect of the embodiments of the present application, a humidification component is provided, including:

[0044] A receiving part, a groove body is formed in the receiving part;

[0045] A drive component;

[0046] A humidification curtain sleeved on the drive component, the drive component is used to drive the humidification curtain to rotate, and part of the humidification curtain is located in the groove body;

[0047] A first rotation speed detection module for detecting the rotation speed information of the drive component;

[0048] The control device according to the above technical solution, the control device obtains the rotation speed information based on the first rotation speed detection module.

[0049] In a feasible implementation, the driving assembly includes:

[0050] A first rotating shaft;

[0051] A driving member connected to the first rotating shaft, and the driving member is used to drive the first rotating shaft to rotate;

[0052] A second rotating shaft located in the groove body;

[0053] A bracket, and the first rotating shaft and the second rotating shaft are rotatably arranged on the bracket;

[0054] Wherein, the humidifying curtain is sleeved on the first rotating shaft and the second rotating shaft, and the first rotation speed detection module is connected to the driving member for detecting the rotation speed of the driving member.

[0055] In a feasible implementation, it further includes:

[0056] An air supply member, and the air supply direction of the air supply member faces the humidifying curtain;

[0057] A second rotation speed detection module connected to the air supply member for detecting the fourth rotation speed information of the air supply member, and the control device obtains the fourth rotation speed information based on the second rotation speed detection module;

[0058] A water level switch arranged in the groove body for detecting the liquid level height in the groove body;

[0059] An electrolysis module arranged in the groove body for electrolyzing the liquid in the groove body.

[0060] In a feasible implementation, the water level switch includes:

[0061] A cylinder body arranged on the groove wall of the accommodating part;

[0062] A reed switch arranged in the cylinder body;

[0063] A floating ball for being arranged in the groove body;

[0064] A magnetic part arranged in the floating ball.

[0065] According to the fifth aspect of the embodiments of the present application, an air conditioner is provided, including the humidifying assembly described in any of the above technical solutions.

[0066] Compared with the prior art, the present invention has at least the following beneficial effects: For the control method of the humidifying component provided in the embodiments of the present application, after starting the driving component for driving the rotation of the humidifying curtain, the rotation speed information of the driving component is obtained, and the working state of the humidifying component is judged based on the rotation speed information. When the humidifying curtain of the humidifying component is misaligned, resulting in the humidifying curtain being stuck with the driving component, the wet curtain being separated from the driving component, or the driving component being unable to work properly, it will cause abnormalities or changes in the rotation speed information. Further, based on the abnormalities or changes in the rotation speed information, the working state of the humidifying component can be determined, and the abnormal working state of the humidifying component can be identified, so that the abnormal state of the humidifying component does not completely depend on the manual identification of the user, the abnormality of the humidifying component can be discovered as soon as possible, which is beneficial to ensuring the humidifying efficiency of the humidifying component, without the user repeatedly checking the operating state of the humidifying component, and improving the user experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0067] By reading the following detailed description of the preferred embodiments, various other advantages and benefits will become clear to those of ordinary skill in the art. The drawings are only for the purpose of showing the preferred embodiments and are not considered to be a limitation of the present application. Moreover, throughout the drawings, the same reference numerals are used to represent the same components. In the drawings:

[0068] Figure 1 It is a schematic step flow chart of a control method for a humidifying component according to an embodiment provided by the present application;

[0069] Figure 2 It is a schematic diagram of the corresponding relationship between the frequency and torque of a driving component according to an embodiment provided by the present application;

[0070] Figure 3 It is a schematic step flow chart of a control method for a humidifying component according to another embodiment provided by the present application;

[0071] Figure 4 It is a structural block diagram of a computer-readable storage medium according to an embodiment provided by the present application;

[0072] Figure 5 It is a structural block diagram of a control device according to an embodiment provided by the present application;

[0073] Figure 6 It is a structural block diagram of a humidifying component according to an embodiment provided by the present application;

[0074] Figure 7 It is a schematic structural diagram of a humidifying component according to an embodiment provided by the present application;

[0075] Figure 8 It is a schematic structural diagram of a humidifying component according to an embodiment provided by the present application with the accommodating part hidden;

[0076] Figure 9 Schematic structural diagram of the decomposition state of the humidifying component of an embodiment provided for this application, with the accommodation part hidden

[0077] Figure 10 Schematic structural diagram of the humidifying component of another embodiment provided for this application

[0078] Figure 11 Schematic structural diagram of the air supply state of the humidifying component of another embodiment provided for this application

[0079] Among them, Figures 6 to 10 The corresponding relationship between the reference numerals and the component names in the figure is as follows:

[0080] 110 Accommodation part, 120 Driving component, 130 Humidifying curtain, 140 First rotation speed detection module, 150 Air supply part, 160 Second rotation speed detection module, 170 Water level switch, 180 Electrolysis module, 190 Filter screen, 200 Housing, 210 Electric control box

[0081] 121 First rotating shaft, 122 Driving part, 123 Second rotating shaft, 124 Bracket Detailed implementation manners

[0082] In order to better understand the above technical solution, the technical solution of the embodiment of this application will be described in detail below through the accompanying drawings and specific embodiments. It should be understood that the specific features in the embodiments of this application and the embodiments are detailed descriptions of the technical solution of the embodiment of this application, rather than limitations on the technical solution of this application. Without conflict, the technical features in the embodiments of this application and the embodiments can be combined with each other.

[0083] As Figure 1 shown, according to the first aspect of the embodiment of this application, a control method for a humidifying component is proposed, including:

[0084] Step 101: Turn on the driving component that drives the humidifying curtain to rotate, and obtain the rotation speed information of the driving component. It can be understood that after the humidifying component receives the humidifying start instruction, the driving component can be directly controlled to start to drive the humidifying curtain to rotate, so that the humidifying component enters the humidifying mode, and the rotation speed information is collected during the humidifying mode; or after the humidifying component receives the humidifying start instruction, the driving component can be controlled to drive the humidifying curtain at different frequencies, and the rotation speed information of the driving component can be obtained at different frequencies.

[0085] Step 102: Determine the working state of the humidifying component based on the rotational speed information. In the embodiment of the present application, the rotational speed information of the driving component is used as the basis for judging the working state of the humidifying component. On the one hand, the rotational speed information is easy to collect, and the rotational speed information can be directly detected by connecting a sensor to the driving component. On the other hand, when an abnormality occurs in the humidifying component, whether it is a problem with the installation position of the humidifying curtain or the working state of the driving component, it will cause a change in the rotational speed of the driving component. Therefore, based on the rotational speed information, the abnormal state of the humidifying component can be accurately captured, which is beneficial for the humidifying component to realize automatic identification of the fault state.

[0086] It can be understood that when the humidifying curtain is misaligned or the driving component fails, the humidifying curtain will not be able to rotate normally, which will cause the humidifying component to lose its humidifying function. The humidifying curtain and the driving component of the humidifying component are usually inside the humidifying component, and it is only possible to find the fault of the humidifying component when the user carefully observes the humidifying component, resulting in low fault identification efficiency of the humidifying component. When the fault of the humidifying component cannot be detected in time, the driving component of the humidifying component may be idling or locked, and in this case, it may even cause damage to the driving component. In the embodiment of the present application, by obtaining the rotational speed information of the humidifying component and further determining the working state of the humidifying component based on the rotational speed information, automatic identification of the fault state of the humidifying component can be realized, greatly improving the fault identification efficiency. After identifying the abnormal state of the humidifying component, only a prompt message needs to be sent to prompt the user, and the user can know that the humidifying component has a fault, and then the fault can be maintained. For example, when the abnormality of the humidifying component is only caused by the misalignment of the humidifying curtain, the user only needs to reinstall the humidifying curtain to eliminate the fault, and the humidifying component can work normally.

[0087] It can be understood that the humidifying start instruction can be issued by the user or an automatically generated humidifying start instruction based on the environmental humidity information of the environment where the humidifying component is located, such as setting the start humidity information. When the environmental humidity information detected by the humidifying component is lower than the start humidity information, the humidifying component automatically generates a humidifying start instruction, and the humidifying component enters the humidifying mode.

[0088] It can be understood that the starting humidity information can be at least one of air humidity, absolute humidity, and relative humidity, and the type of the environmental humidity information detected by the humidifying component should be the same as that of the starting humidity information. Among them, air humidity is a meteorological element indicating the water vapor content and humidity level in the air. Ground air humidity refers to the air humidity at the height specified for ground meteorological observations. It is measured by instruments such as dry and wet bulb thermometers and hygrometers installed in a Stevenson screen; absolute humidity is the mass of water vapor contained in a certain volume of air, and its unit is generally grams per cubic meter. The maximum limit of absolute humidity is the highest humidity in the saturated state. Absolute humidity only makes sense together with temperature because the amount of humidity that air can contain varies with temperature, and the absolute humidity is different at different temperatures because the volume of air changes with temperature changes. However, the closer the absolute humidity is to the highest humidity, the smaller its change with temperature; relative humidity is the ratio between absolute humidity and the highest humidity, and its value indicates how saturated the water vapor is. Air with a relative humidity of 100% is saturated air. Air with a relative humidity of 50% contains half the amount of water vapor that reaches the saturation point of air at the same temperature. Water vapor in air with a relative humidity exceeding 100% generally condenses. As the temperature increases, the amount of water that air can contain increases, that is, at the same amount of water vapor, the relative humidity will decrease as the temperature rises. Therefore, data on temperature must also be provided when providing relative humidity. Generally, people feel most comfortable at a relative humidity of 40 - 60%.

[0089] It can be understood that when the humidifying curtain is misaligned or the driving component malfunctions, both will cause changes in the rotational speed information of the driving component. Therefore, a threshold range corresponding to the rotational speed information can be set. When the abnormal change in the transmitted rotational speed information exceeds the threshold range, it can be considered that there is an abnormality in the humidifying curtain or the driving component of the humidifying component, and then it can be determined that the working state of the humidifying component is an abnormal state. When the rotational speed information is within the set threshold range, it can be considered that the humidifying component is in a normal working state.

[0090] In some examples, the steps of turning on the driving component that drives the humidifying curtain to rotate and obtaining the rotational speed information of the driving component include: turning on the driving part of the driving component at a first frequency and obtaining the first rotational speed information of the driving part, where the value of the first frequency is greater than the target frequency, and the target frequency is the highest frequency at which the driving component can drive the humidifying curtain to rotate; the steps of obtaining the working state of the humidifying component based on the rotational speed information include: when the first rotational speed information is greater than the first threshold, determining that the working state of the humidifying component is an abnormal state of the humidifying curtain installation.

[0091] Such as Figure 2As shown, there is a correlation between the frequency of the driving component and the output torque. The greater the frequency of the driving component, the smaller the output torque. Only when the torque is large enough can the driving component drive the humidifying curtain to rotate. The highest frequency at which the humidifying curtain can be driven to rotate is the target frequency.

[0092] The driving part of the driving component is turned on at a first frequency greater than the target frequency. In this case, if the humidifying curtain is normally installed, the torque provided by the driving part is not sufficient to drive the humidifying curtain to rotate. Therefore, normally when the driving part is turned on at the first frequency, the rotational speed of the driving part should be lower than or equal to the first threshold. If, at the first frequency, the obtained first rotational speed information is greater than the first threshold, it indicates that the driving part can rotate and the rotational speed is relatively high. In this case, it shows that the installation of the humidifying curtain is abnormal, the humidifying curtain is not in full contact with the driving component, and the driving component is in an idling state. Therefore, it can be determined that the humidifying component is in an abnormal state of the humidifying curtain installation.

[0093] It can be understood that, in the case of determining that the humidifying component is in an abnormal state of the humidifying curtain installation, a humidifying curtain fault prompt message can be generated, which can be displayed through the display component of the humidifying component, and can also be sent to the user terminal through the communication module of the humidifying component. Similarly, the humidifying curtain fault prompt message can be broadcast through the voice broadcast system of the humidifying module. The user can learn about the fault state of the humidifying component through the humidifying curtain fault prompt message, and then the user can intervene to adjust the installation position of the humidifying curtain.

[0094] It can be understood that the value of the first threshold can be from 0 to 5 rpm.

[0095] In some examples, the step of turning on the driving component that drives the humidifying curtain to rotate and obtaining the rotational speed information of the driving component further includes: turning on the driving part of the driving component at a second frequency and obtaining the second rotational speed information of the driving part; wherein, the value of the second frequency is less than or equal to the target frequency; the step of obtaining the working state of the humidifying component based on the rotational speed information includes: when the second rotational speed information is less than or equal to the second threshold, determining that the working state of the humidifying component is an abnormal state of the humidifying curtain installation and / or an abnormal state of the driving part.

[0096] As Figure 2 shown, there is a correlation between the frequency of the driving component and the output torque. The smaller the frequency of the driving component, the greater the output torque. Only when the torque is large enough can the driving component drive the humidifying curtain to rotate. The highest frequency at which the humidifying curtain can be driven to rotate is the target frequency.

[0097] The driving member of the driving assembly is turned on by a second frequency less than or equal to the target frequency. In this case, if the humidifying curtain is normally installed, the torque provided by the driving member is sufficient to drive the humidifying curtain to rotate. Therefore, under normal circumstances, when the driving member is turned on at the second frequency, the rotational speed of the driving member should be greater than the second threshold. If, at the second frequency, the obtained second rotational speed information is less than or equal to the second threshold, it indicates that the driving member is not rotating normally. In this case, it means that at least one of the humidifying curtain and the driving assembly has a problem. It may be that the humidifying curtain jams the driving assembly, causing the driving assembly to not rotate normally, or it may be that the driving assembly has a fault and cannot perform normal driving. Therefore, it can be determined that the working state of the humidifying assembly is an abnormal humidifying curtain installation state and / or an abnormal driving member state.

[0098] It can be understood that when it is determined that the humidifying assembly is in an abnormal humidifying curtain installation state and / or an abnormal driving member state, a fault prompt message for the humidifying curtain and the driving assembly can be generated. The fault prompt message for the humidifying curtain and the driving assembly can be displayed through the display assembly of the humidifying assembly, and can also be sent to the user terminal through the communication module of the humidifying assembly. Similarly, the fault prompt message for the humidifying curtain and the driving assembly can be broadcast through the voice broadcast system of the humidifying module. The user can learn about the fault state of the humidifying assembly through the fault prompt message for the humidifying curtain and the driving assembly, and then the user can intervene in the maintenance of the humidifying assembly. When the fault is a humidifying curtain fault, the user can adjust the installation position of the humidifying curtain. When the fault is a driving assembly fault, the user can report for repair.

[0099] It can be understood that the value of the second threshold can be the same as or slightly greater than the value of the first threshold, and the value of the second threshold can be from 0 to 10 rpm.

[0100] It can be understood that the driving member of the driving assembly can be a motor, such as Figure 2As shown, the torque of the motor has a relatively large relationship with the driving frequency. At a low driving frequency of f2 (such as 100 Hz), the motor outputs a torque of T2 (such as 200 mN·m), and at a high driving frequency of f1 (such as 500 Hz), the motor outputs a torque of T1 (such as 100 mN·m). Assume that the torque of the humidifying curtain is 170 - 180 mN·m under normal conditions, 20 - 30 mN·m when the humidifying curtain slips, and 1000 - 1500 mN·m when the humidifying curtain jams. Then, when driving the motor with f1, if the humidifying curtain is in a normal state, the torque required by the humidifying curtain is 170 - 180 mN·m, but the motor can only output 100 mN·m, which is less than the actual required torque. The motor loses steps and cannot drive the humidifying curtain to rotate, and the output speed of the motor is approximately 0. If the humidifying curtain is not installed in place or not installed at all, or the humidifying curtain slips, the required torque is less than or equal to 20 - 30 mN·m, but the motor can output 100 mN·m, so the motor can run normally, and the motor speed is greater than 0. For the motor with a step angle of 0.125 degrees (driven by 4 phases and 8 beats) actually used in the project, the speed is greater than 2 rpm. When we drive the motor with f2, if the humidifying curtain is in a normal state, the torque required by the humidifying curtain is 170 - 180 mN·m, but the motor can output 200 mN·m, the motor can drive the humidifying curtain to rotate, and the output speed of the motor is greater than 0. For the motor with a step angle of 0.125 degrees (driven by 4 phases and 8 beats) actually used in the project, the speed is greater than 1 rpm. If the humidifying curtain jams or the humidifying curtain motor is damaged, the motor speed is less than 1 rpm.

[0101] In some examples, the step of turning on the driving component that drives the humidifying curtain to rotate and obtaining the speed information of the driving component further includes: in response to a humidification start instruction, controlling the driving component to drive the humidifying curtain to rotate; obtaining the third speed information when the driving component executes the humidification start instruction; based on the speed information, the step of obtaining the working state of the humidifying component includes: in the case where the third speed information is less than or equal to the third threshold, determining that the working state of the humidifying component is an abnormal humidifying curtain installation state and / or an abnormal driving part state; wherein, the value of the third threshold is greater than the values of the first threshold and the second threshold.

[0102] The speed information of the driving component can be collected when the humidifying component humidifies the environment. If the third speed information during the humidification process of the humidifying component is less than or equal to the third threshold, it indicates that the humidifying curtain of the humidifying component may be misaligned during the humidification process, or the driving part may be abnormal. In this case, the working state of the humidifying component can be determined as an abnormal humidifying curtain installation state and / or an abnormal driving part state.

[0103] It can be understood that, when it is determined that the humidifying component is in an abnormal state of the humidifying curtain installation and / or an abnormal state of the driving component, a fault prompt message for the humidifying curtain and the driving component can be generated, the fault prompt message for the humidifying curtain and the driving component can be displayed through the display component of the humidifying component, and the fault prompt message for the humidifying curtain and the driving component can also be sent to the user terminal through the communication module of the humidifying component. Similarly, the fault prompt message for the humidifying curtain and the driving component can be broadcast through the voice broadcast system of the humidifying module. Through the fault prompt message for the humidifying curtain and the driving component, the user can learn about the fault state of the humidifying component, and then the user can intervene in the maintenance of the humidifying component. When the fault is a humidifying curtain fault, the user can adjust the installation position of the humidifying curtain. When the fault is a driving component fault, the user can report for repair.

[0104] It can be understood that the value of the third threshold can be related to the working parameters of the humidifying component. For example, the value of the third threshold can be positively correlated with the rotational speed of the driving component when the humidifying component is operating normally, and the value of the third threshold can be 10 to 20 rpm.

[0105] In some examples, the control method further includes: obtaining the liquid level information of the liquid in the tank; when the liquid level information is less than or equal to the fourth threshold, determining that the working state of the humidifying component is the low water level working state.

[0106] During the humidifying process of the humidifying component, it is necessary for the humidifying curtain to pass through the tank so that the humidifying curtain adsorbs liquid, and then the air is humidified through the evaporation of the liquid.

[0107] The liquid level of the liquid in the tank for storing the humidifying medium can be detected to obtain the liquid level information. If the liquid level information is less than or equal to the fourth threshold, it means that there is less liquid stored in the tank of the humidifying component. In this case, the humidifying curtain may not be able to adsorb liquid or the adsorbed liquid amount is too small to achieve the humidifying effect, and it can be determined that the working state of the humidifying component is the low water level working state.

[0108] It can be understood that, when it is determined that the humidifying component is in the low water level working state, a low water level prompt message can be generated, the low water level prompt message can be displayed through the display component of the humidifying component, and the low water level prompt message can also be sent to the user terminal through the communication module of the humidifying component. Similarly, the low water level prompt message can be broadcast through the voice broadcast system of the humidifying module. Through the low water level prompt message, the user can learn that the liquid level in the tank of the humidifying component is low, and then the user can add the liquid medium for humidification to the tank.

[0109] It can be understood that the liquid medium can be water, a solution dissolved with a disinfectant substance, or an electrolyte.

[0110] In some examples, the value of the fourth threshold can be 5 mm to 10 mm.

[0111] In some examples, the control method further includes: turning on the air supply component and obtaining the fourth rotation speed information of the air supply component; when the fourth rotation speed information is less than or equal to the fifth threshold, determining that the working state of the humidification component is an abnormal state of the air supply component.

[0112] The air supply component can be turned on to supply air to the humidifying curtain. On the one hand, it can accelerate the evaporation of the liquid adsorbed on the humidifying curtain, and on the other hand, it can transport the gas evaporated from the liquid to a distance, which can improve the humidification effect. By obtaining the fourth rotation speed information of the air supply component, if the fourth rotation speed information is less than or equal to the fifth threshold, it indicates that the wind force output by the air supply component is insufficient. In this case, it can be determined that the working state of the humidification component is an abnormal state of the air supply component.

[0113] It can be understood that when it is determined that the working state of the humidification component is an abnormal state of the air supply component, an abnormal state prompt information of the air supply component can be generated. The abnormal state prompt information of the air supply component can be displayed through the display component of the humidification component, and can also be sent to the user terminal through the communication module of the humidification component. Similarly, the abnormal state prompt information of the air supply component can be broadcast through the voice broadcast system of the humidification module. Through the abnormal state prompt information of the air supply component, the user can know that there may be a problem with the air supply component, and the user can then detect the state of the air supply component. If the air supply component does have a fault, the air supply component can be replaced or repaired.

[0114] In some examples, the control method further includes: in response to a humidification off command, controlling the drive component to turn off, and when the duration of the air supply component continuing to work reaches the first duration, controlling the air supply component to turn off.

[0115] When the humidification component receives the humidification off command, the drive component can be controlled to turn off to stop driving the humidifying curtain to rotate. In this case, the air supply component can be controlled to continue working until the duration of the air supply component continuing to work reaches the first duration, and then the air supply component is controlled to stop working. This can make the air supply component accelerate the evaporation of the liquid on the humidifying curtain, make the humidifying curtain in a relatively dry state, reduce the probability of bacteria breeding or mildew on the humidifying curtain, improve the service life of the humidifying curtain, and make the humidification safer and more hygienic.

[0116] It can be understood that the humidification off command can be issued by the user based on actual needs, or can be actively generated by the humidification component after detecting that the environmental humidity where the humidification component is located is higher than the preset range.

[0117] In some examples, the control method further includes: generating prompt information corresponding to the working state.

[0118] After determining the working state of the humidification component, a prompt message corresponding to the working state can be generated, and the user can learn about the state of the humidification component through the prompt message, which is conducive to the user promptly discovering that the humidification component is in a faulty state and promptly dealing with the faults of the humidification component.

[0119] It can be understood that in the case where it is determined that the humidification component is in an abnormal state of humidification curtain installation, a humidification curtain fault prompt message can be generated, the humidification curtain fault prompt message can be displayed through the display component of the humidification component, and the humidification curtain fault prompt message can also be sent to the user terminal through the communication module of the humidification component. Similarly, the humidification curtain fault prompt message can be broadcast through the voice broadcast system of the humidification module. The user can learn about the fault state of the humidification component through the humidification curtain fault prompt message, and the user can intervene to adjust the installation position of the humidification curtain.

[0120] It can be understood that in the case where it is determined that the humidification component is in an abnormal state of humidification curtain installation and / or an abnormal state of the driving part, a humidification curtain and driving component fault prompt message can be generated, the humidification curtain and driving component fault prompt message can be displayed through the display component of the humidification component, and the humidification curtain and driving component fault prompt message can also be sent to the user terminal through the communication module of the humidification component. Similarly, the humidification curtain and driving component fault prompt message can be broadcast through the voice broadcast system of the humidification module. The user can learn about the fault state of the humidification component through the humidification curtain and driving component fault prompt message, and the user can intervene to maintain the humidification component. When the fault is a humidification curtain fault, the user can adjust the installation position of the humidification curtain. When the fault is a driving component fault, the user can report for repair.

[0121] It can be understood that in the case where it is determined that the humidification component is in a low water level working state, a low water level prompt message can be generated, the low water level prompt message can be displayed through the display component of the humidification component, and the low water level prompt message can also be sent to the user terminal through the communication module of the humidification component. Similarly, the low water level prompt message can be broadcast through the voice broadcast system of the humidification module. The user can learn that the liquid level in the tank of the humidification component is low through the low water level prompt message, and the user can add a liquid medium for humidification to the tank.

[0122] It can be understood that in the case where it is determined that the humidification component is in an abnormal state of the air supply part, an air supply part abnormal state prompt message can be generated, the air supply part abnormal state prompt message can be displayed through the display component of the humidification component, and the air supply part abnormal state prompt message can also be sent to the user terminal through the communication module of the humidification component. Similarly, the air supply part abnormal state prompt message can be broadcast through the voice broadcast system of the humidification module. The user can learn that the air supply part may exist through the air supply part abnormal state prompt message, and the user can detect the state of the air supply part. If the air supply part is indeed faulty, the air supply part can be replaced or reported for repair.

[0123] As shown Figure 3 in some examples, the control method of the humidifying component includes:

[0124] Step 301: Turn on the driving part of the driving component at the first frequency, and obtain the first rotational speed information of the driving part;

[0125] Step 302: Determine whether the first rotational speed information is greater than or equal to the first threshold. If so, execute Step 303; if not, execute Step 305;

[0126] Step 303: Determine that the working state of the humidifying component is the abnormal state of the humidifying curtain installation;

[0127] Step 304: Generate a fault prompt message for the humidifying curtain;

[0128] Step 305: Turn on the driving part of the driving component at the second frequency, and obtain the second rotational speed information of the driving part;

[0129] Step 306: Determine whether the second rotational speed information is greater than or equal to the second threshold. If not, execute Step 307; if so, execute Step 309;

[0130] Step 307: Determine that the working state of the humidifying component is the abnormal state of the humidifying curtain installation and / or the abnormal state of the driving part;

[0131] Step 308: Generate a fault prompt message for the humidifying curtain and the driving component;

[0132] Step 309: Obtain the liquid level information of the liquid in the tank;

[0133] Step 310: Determine whether the liquid level information is greater than or equal to the fourth threshold. If not, execute Step 311; if so, execute Step 313;

[0134] Step 311: Determine that the working state of the humidifying component is the low water level working state;

[0135] Step 312: Generate a low water level prompt message;

[0136] Step 313: In response to the humidifying start instruction, control the driving component to drive the humidifying curtain to rotate; obtain the third rotational speed information when the driving component executes the humidifying start instruction;

[0137] Step 314: Determine whether the third rotational speed information is greater than or equal to the third threshold. If not, execute Step 315; if so, execute Step 317;

[0138] Step 315: Determine that the working state of the humidifying component is the abnormal state of the humidifying curtain installation and / or the abnormal state of the driving part;

[0139] Step 316: Generate a failure prompt message for the humidifying curtain and the drive component;

[0140] Step 317: Turn on the air supply component and obtain the fourth rotation speed information of the air supply component;

[0141] Step 318: Determine whether the fourth rotation speed information is greater than or equal to the fifth threshold. If so, execute Step 319; if not, execute Step 321;

[0142] Step 319: Determine the working state of the humidifying component as the abnormal state of the air supply component;

[0143] Step 320: Generate a prompt message for the abnormal state of the air supply component;

[0144] Step 321: Obtain the liquid level information of the liquid in the tank again;

[0145] Step 322: Determine whether the liquid level information is greater than or equal to the fourth threshold. If not, execute Step 323; if so, execute Step 325;

[0146] Step 323: Determine the working state of the humidifying component as the low water level working state;

[0147] Step 324: Generate a low water level prompt message;

[0148] Step 325: Control the humidifying component to humidify in response to the humidification start instruction;

[0149] Step 326: In response to the humidification off instruction, control the drive component to turn off, and control the air supply component to turn off when the continuous working duration of the air supply component reaches the first duration.

[0150] Through the control method provided by the embodiments of the present application, the abnormal working state of the humidifying component can be identified, so that the abnormal state of the humidifying component does not completely depend on the user's manual identification, the abnormality of the humidifying component can be discovered as soon as possible, which is beneficial to ensuring the humidification efficiency of the humidifying component, and there is no need for the user to repeatedly check the operating state of the humidifying component, improving the user experience.

[0151] As Figure 2 shown, there is a correlation between the frequency of the drive component and the output torque. The greater the frequency of the drive component, the smaller the output torque. And only when the torque is large enough can the drive component drive the humidifying curtain to rotate. The highest frequency that can drive the humidifying curtain to rotate is the target frequency.

[0152] The driving part of the driving component is turned on by a first frequency greater than the target frequency. In this case, if the humidifying curtain is properly installed, the torque provided by the driving part is not sufficient to drive the humidifying curtain to rotate. Therefore, under normal circumstances, when the driving part is turned on at the first frequency, the rotational speed of the driving part should be lower than the first threshold. If, at the first frequency, the obtained first rotational speed information is greater than the first threshold, it indicates that the driving part can rotate and the rotational speed is relatively high. In this case, it shows that the installation of the humidifying curtain is abnormal, the humidifying curtain is not in full contact with the driving component, and the driving component is in an idling state. Therefore, it can be determined that the humidifying component is in an abnormal state of the humidifying curtain installation.

[0153] It can be understood that when it is determined that the humidifying component is in an abnormal state of the humidifying curtain installation, a humidifying curtain fault prompt message can be sent. The humidifying curtain fault prompt message can be displayed through the display component of the humidifying component, and can also be sent to the user terminal through the communication module of the humidifying component. Similarly, the humidifying curtain fault prompt message can be broadcast through the voice broadcast system of the humidifying module. Through the humidifying curtain fault prompt message, the user can learn about the fault state of the humidifying component, and then the user can intervene to adjust the installation position of the humidifying curtain.

[0154] The driving part of the driving component is turned on by a second frequency less than or equal to the target frequency. In this case, if the humidifying curtain is properly installed, the torque provided by the driving part is sufficient to drive the humidifying curtain to rotate. Therefore, under normal circumstances, when the driving part is turned on at the second frequency, the rotational speed of the driving part should be greater than the second threshold. If, at the second frequency, the obtained second rotational speed information is less than or equal to the second threshold, it indicates that the driving part is not rotating normally. In this case, it shows that there is a problem with at least one of the humidifying curtain and the driving component. It may be that the humidifying curtain jams the driving component, making the driving component unable to rotate normally, or it may be that the driving component has a fault and cannot perform normal driving. Therefore, it can be determined that the working state of the humidifying component is an abnormal state of the humidifying curtain installation and / or an abnormal state of the driving part.

[0155] It can be understood that when it is determined that the humidifying component is in an abnormal state of the humidifying curtain installation and / or an abnormal state of the driving part, a fault prompt message for the humidifying curtain and the driving component can be generated. The fault prompt message for the humidifying curtain and the driving component can be displayed through the display component of the humidifying component, and can also be sent to the user terminal through the communication module of the humidifying component. Similarly, the fault prompt message for the humidifying curtain and the driving component can be broadcast through the voice broadcast system of the humidifying module. Through the fault prompt message for the humidifying curtain and the driving component, the user can learn about the fault state of the humidifying component, and then the user can intervene to maintain the humidifying component. When the fault is a humidifying curtain fault, the user can adjust the installation position of the humidifying curtain. When the fault is a driving component fault, the user can report for repair.

[0156] It can be understood that the humidification start instruction can be issued by the user, or it can be a humidification start instruction actively generated based on the ambient humidity information of the environment where the humidification component is located. For example, when the start humidity information is set, when the ambient humidity information detected by the humidification component is lower than the start humidity information, the humidification component automatically generates a humidification start instruction, and the humidification component enters the humidification mode.

[0157] When the humidification component receives a humidification shutdown command, the driving component can be controlled to shut down to stop driving the humidification curtain to rotate. In this case, the air supply component can be controlled to continue working until the air supply component continues to work for a first period of time and then controls the air supply component to stop working. The air supply component can accelerate the liquid adsorbed on the humidification curtain, making the humidification curtain in a relatively dry state, which can reduce the chance of bacteria or mold growing on the humidification curtain, increase the service life of the humidification curtain, and make humidification safer and more hygienic.

[0158] It is understandable that the humidification shut-off instruction may be issued by the user based on actual needs, or may be actively generated after the humidification component detects that the humidity of the environment where the humidification component is located is higher than a preset range.

[0159] like Figure 4 As shown, according to the second aspect of the embodiment of the present application, a computer-readable storage medium 401 is proposed, and the computer-readable storage medium 401 stores a computer program 402 to implement the control method of the humidification component of any of the above technical solutions.

[0160] The computer-readable storage medium 401 provided in the embodiment of the present application obtains the rotational speed information of the driving component after turning on the driving component for driving the humidifying curtain to rotate, and determines the working state of the humidifying component based on the rotational speed information. When the humidifying curtain of the humidifying component is misaligned, resulting in the humidifying curtain being stuck with the driving component, the wet curtain being detached from the driving component, or the driving component failing to work properly, it will cause an abnormality or change in the rotational speed information. The working state of the humidifying component can be further determined based on the abnormality or change in the rotational speed information, and the abnormal working state of the humidifying component can be identified, so that the abnormal state of the humidifying component does not need to rely entirely on manual identification by the user, and the abnormality of the humidifying component can be discovered as soon as possible, which is beneficial to ensuring the humidification efficiency of the humidifying component. The user does not need to repeatedly check the operating state of the humidifying component, thereby improving the user experience.

[0161] Based on this understanding, the technical solution of the present application can be embodied in the form of a software product, which can be stored in a non-volatile storage medium (which can be a CD-ROM, a USB flash drive, a mobile hard disk, etc.), and includes a number of instructions for enabling a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods described in each implementation scenario of the present application.

[0162] likeFigure 5 As shown in Figure 5 , according to the third aspect of the embodiments of the present application, a control device 500 is provided, including: a memory 501 storing a computer program; a processor 502 executing the computer program; wherein, when the processor 502 executes the computer program, it implements the control method of the humidifying component in any of the above technical solutions.

[0163] For the control device 500 provided by the embodiments of the present application, after starting the driving component for driving the humidifying curtain to rotate, the rotational speed information of the driving component is obtained, and based on the rotational speed information, the working state of the humidifying component is judged. When the humidifying curtain of the humidifying component is misaligned, resulting in the humidifying curtain being stuck with the driving component, the wet curtain being separated from the driving component, or the driving component being unable to work properly, it will cause abnormalities or changes in the rotational speed information. Further, based on the abnormalities or changes in the rotational speed information, the working state of the humidifying component can be determined, and the abnormal working state of the humidifying component can be identified, so that the abnormal state of the humidifying component does not completely rely on the user's manual identification, the abnormality of the humidifying component can be discovered as soon as possible, which is beneficial to ensuring the humidifying efficiency of the humidifying component, and there is no need for the user to repeatedly check the operating state of the humidifying component, improving the user experience.

[0164] In some examples, the control device 500 may further include a user interface, a network interface, a camera, a radio frequency (RF) circuit, sensors, an audio circuit, a WI-FI module, etc. The user interface may include a display screen (Display), an input unit such as a keyboard (Keyboard), etc. Optionally, the user interface may further include a USB interface, a card reader interface, etc. The network interface may optionally include a standard wired interface, a wireless interface (such as a WI-FI interface), etc.

[0165] In an exemplary embodiment, the control device 500 may further include an input / output interface and a display device. Among them, each functional unit can complete mutual communication through a bus. The memory stores a computer program, and the processor is used to execute the program stored on the memory and execute the method in the above embodiments.

[0166] The above storage medium may further include an operating system and a network communication module. The operating system is a program for managing the hardware and software resources of the above-mentioned physical device, supporting the information processing program and the operation of other software and / or programs. The network communication module is used to realize the communication between the components inside the storage medium and the communication between other hardware and software in the information processing physical device.

[0167] Through the description of the above embodiments, those skilled in the art can clearly understand that the present application can be implemented by means of software plus a necessary general hardware platform, or can also be implemented by hardware.

[0168] As Figures 6 to 11 shown, according to the fourth aspect of the embodiments of the present application, a humidifying component is provided, including: a receiving part 110, a groove is formed in the receiving part 110; a driving component 120; a humidifying curtain 130, sleeved on the driving component 120, the driving component 120 is used to drive the humidifying curtain 130 to rotate, and a part of the humidifying curtain 130 is located in the groove; a first rotation speed detection module 140, configured to detect the rotation speed information of the driving component 120; a control device 500 of the above technical solution, the control device 500 obtains the rotation speed information based on the first rotation speed detection module 140.

[0169] The humidifying component provided by the embodiments of the present application includes the control device 500 of the above technical solution. Therefore, the humidifying component has all the beneficial effects of the control device 500, which will not be elaborated here.

[0170] In the process of using the humidifying component provided by the embodiments of the present application, a liquid for humidification can be added to the groove of the receiving part 110, and the driving component 120 is used to drive the humidifying curtain 130 to rotate. During the rotation of the humidifying curtain 130, the humidifying curtain 130 can be wetted by the liquid in the groove. After the humidifying curtain 130 is wetted by the liquid, it can be separated from the groove, and the evaporation of the liquid on the humidifying curtain 130 can play a role in humidifying the environment where the humidifying component is located, making the environment where the humidifying component is located more suitable for users to live. In particular, it can prevent users from experiencing phenomena such as dry skin, irritation of nasal mucosa, chapped and even bleeding lips. Especially when dry and cold air invades in autumn and winter, it can reduce the probability of users suffering from respiratory diseases.

[0171] It can be understood that the liquid provided in the groove can be water or a solution with a disinfection function. When the liquid stored in the groove is a solution with a disinfection function, the humidifying component can play a bactericidal effect while changing the environmental humidity through the evaporation of the liquid.

[0172] It can be understood that through the setting of the first rotation speed detection module 140, the rotation speed information of the driving component 120 can be detected and obtained. The rotation speed information can be independently sent by the first rotation speed detection component to the control device 500, or the control device 500 can collect the detection results of the first rotation speed detection module 140.

[0173] As Figure 8 and Figure 9As shown, in some examples, the driving assembly 120 includes: a first rotating shaft 121; a driving member 122 connected to the first rotating shaft 121, the driving member 122 being configured to drive the first rotating shaft 121 to rotate; a second rotating shaft 123 located within the groove body; a bracket 124, the first rotating shaft 121 and the second rotating shaft 123 being rotatably provided on the bracket 124; wherein, the humidifying curtain 130 is sleeved on the first rotating shaft 121 and the second rotating shaft 123, and the first rotation speed detection module 140 is connected to the driving member 122 for detecting the rotation speed of the driving member 122.

[0174] The driving assembly 120 includes the first rotating shaft 121 and the second rotating shaft 123. The first rotating shaft 121 serves as a power shaft to drive the humidifying curtain 130 to rotate, and the second rotating shaft 123 can play a role in positioning and supporting the humidifying curtain 130. The second rotating shaft 123 is located within the groove body. Then, by sleeving the humidifying curtain 130 on the first rotating shaft 121 and the second rotating shaft 123, a part of the humidifying curtain 130 can be located within the groove. Moreover, the second rotating shaft 123 is a driven shaft and will not cause a short circuit of the driving assembly 120 due to the liquid within the groove.

[0175] The driving assembly 120 further includes a bracket 124. Through the arrangement of the bracket 124, it can play a role in supporting and limiting the humidifying curtain 130. When the humidifying assembly is turned on, the probability of the humidifying curtain 130 being misaligned can be reduced, and the probability of the humidifying curtain 130 slipping or getting stuck with the driving assembly 120 can be decreased.

[0176] It can be understood that the driving member 122 can be a motor.

[0177] As Figure 10 and Figure 11 shown, wherein Figure 11 the arrow direction in

[0178] The humidifying assembly further includes a blowing member 150. When the blowing member 150 is turned on, the blowing member 150 can blow air in the direction of the humidifying curtain 130. By forming the air flow, it is beneficial to the evaporation of the liquid on the humidifying curtain 130, and the gas formed by evaporation can be sent to areas farther away from the humidifying assembly, which is beneficial to improving the humidifying effect.

[0179] As Figure 6As shown, the humidifying component further includes a second rotation speed detection module 160. Through the setting of the second rotation speed module, the control device 500 can obtain the fourth rotation speed information of the air supply member 150, and further can determine the working state of the air supply member 150. It can be understood that after the second rotation speed detection module 160 obtains the fourth rotation speed information, the second rotation speed detection module 160 can actively send the fourth rotation speed information to the control device 500; the control device 500 can also directly collect the detection result of the second rotation speed detection module 160 by means of information acquisition.

[0180] As Figure 6 shown, the humidifying component further includes a water level switch 170. Through the setting of the water level switch, the liquid level information in the tank can be detected and obtained, and the control device 500 can determine the water level state of the humidifying component through the liquid level information. It can be understood that after the water level switch 170 obtains the liquid level information, the water level switch 170 can actively send the liquid level information to the control device 500, and the control device 500 can also directly collect the detection result of the water level switch 170.

[0181] It can be understood that the air supply member 150 can be a fan.

[0182] The humidifying component further includes an electrolysis module 180. Through the setting of the electrolysis module 180, the liquid filled in the tank can be electrolyzed. For example, the user can set NaCl solution in the tank, and by electrolyzing the NaCl solution through the electrolysis module 180, hypochlorous acid water can be formed, and the evaporation of the hypochlorous acid water can have a disinfection effect.

[0183] It can be understood that hypochlorous acid is an oxyacid of chlorine element, with the chemical formula HClO, the structural formula H-O-Cl, in which the valence of chlorine element is +1. It only exists in solution, its concentrated solution is yellow, its dilute solution is colorless, has a very pungent smell similar to chlorine, and is extremely unstable. It is a very weak acid, weaker than carbonic acid and comparable to hydrosulfuric acid. Hypochlorous acid also has extremely strong bleaching effect, and its salts can be used as bleaching agents and disinfectants. Hypochlorous acid is mainly used as a disinfectant and is widely used for the disinfection of contaminated items such as the surface of objects, fabrics, as well as water, fruits and vegetables, tableware, etc. In addition to the above uses, hypochlorous acid can also be used for the disinfection of indoor air, the surface of secondary water supply equipment and facilities, hands, skin and mucous membranes.

[0184] In some examples, the water level switch 170 includes: a cylinder body provided on the tank wall of the accommodating portion 110; a reed switch provided inside the cylinder body; a floating ball for being arranged in the tank; and a magnetic part provided inside the floating ball.

[0185] The water level switch 170 includes a cylinder body, a reed switch, a floating ball, and a magnetic member disposed inside the floating ball. The tank body is used to fill with liquid, and the floating ball is used to float on the surface of the liquid. The floating ball moves along with the change of the liquid level, thereby causing the magnetic field generated by the magnetic member to move. The change in the magnetic field position of the magnetic member may cause the on / off state of the reed switch to switch. Thus, the liquid level information can be determined by the on / off of the reed switch, making the detection of the liquid level information more accurate and rapid. Moreover, the detection means does not require excessive investment in electronic devices, which can extend the service life of the water level switch 170 and help reduce costs.

[0186] In some examples, the electrolysis module 180 includes: an electrode for being disposed in the tank body; and a cable connected to the electrode, with at least part of the cable extending out of the tank body.

[0187] The electrolysis module 180 includes an electrode and a cable. Just by powering on the electrode through the cable, the electrode can electrolyze the solution in the tank body.

[0188] Such as Figure 10 and Figure 11 As shown in

[0189] In some examples, the humidifying component further includes: a filter screen 190 disposed on both sides of the bracket 124, and a humidifying curtain 130 located between the filter screen 190 and the bracket 124. The arrangement of the filter screen 190 can prevent dust in the air from invading the humidifying curtain 130, making the humidifying curtain 130 cleaner and the humidifying safer. Figure 10 and Figure 11 As shown in

[0190] In some examples, the humidifying component further includes a housing 200. The accommodating part 110, the driving component 120, and the humidifying curtain 130 are disposed inside the housing 200; an air outlet is formed on the housing 200, and the air outlet is disposed opposite to the air supply member 150; an electric control box 210 is connected to the housing 200; and a power supply is connected to the air supply member 150 and the driving component 120 and is disposed inside the electric control box 210.

[0191] The humidifying component further includes a housing 200. The housing 200 serves to accommodate the accommodating part 110, the driving component 120, and the humidifying curtain 130. The formation of the air outlet serves to direct the gas that has completed evaporation; the arrangement of the power supply can supply power to the air supply member 150 and the driving component 120, and the power supply is disposed inside the electric control box 210, which can achieve the functions of fire prevention, waterproofing, and leakage prevention, making the use of the humidifying component safer.

[0192] The air conditioner provided by the embodiment of the present application includes the humidifying component of any of the above technical solutions. Therefore, the air conditioner has all the beneficial effects of the humidifying component of the above technical solutions, which will not be elaborated here.

[0193] In some examples, the air conditioner further includes a compressor, an outdoor unit, and an indoor unit. The compressor is connected to the outdoor unit and the indoor unit, and the humidifying component is connected to the indoor unit or disposed inside the indoor unit.

[0194] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", "front", "rear", etc. is based on the orientation or positional relationship shown in the drawings. It is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or unit referred to must have a specific direction, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present invention.

[0195] In the description of this specification, the descriptions of the terms "one embodiment", "some embodiments", "specific embodiments", etc. mean that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or instance. Moreover, the specific features, structures, materials, or characteristics described can be combined in any one or more embodiments or examples in a suitable manner.

[0196] The above are only the preferred embodiments of the present invention and are not used to limit the present invention. For those skilled in the art, the present invention can have various changes and modifications. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention shall be included within the protection scope of the present invention.

Claims

1. A control method for a humidifying component, characterized in that, it includes: Turn on the driving component that drives the humidifying curtain to rotate, and obtain the rotation speed information of the driving component; Based on the rotation speed information, determine the working state of the humidifying component; The step of turning on the driving component that drives the humidifying curtain to rotate and obtaining the rotation speed information of the driving component includes: Turn on the driving part of the driving component at a first frequency, and obtain the first rotation speed information of the driving part, where the value of the first frequency is greater than the target frequency, and the target frequency is the highest frequency at which the driving component can drive the humidifying curtain to rotate; The step of obtaining the working state of the humidifying component based on the rotation speed information includes: When the first rotation speed information is greater than the first threshold, determine that the working state of the humidifying component is an abnormal state of humidifying curtain installation; The step of turning on the driving component that drives the humidifying curtain to rotate and obtaining the rotation speed information of the driving component further includes: Turn on the driving part of the driving component at a second frequency, and obtain the second rotation speed information of the driving part; wherein, the value of the second frequency is less than or equal to the target frequency; The step of obtaining the working state of the humidifying component based on the rotation speed information includes: When the second rotation speed information is less than or equal to the second threshold, determine that the working state of the humidifying component is an abnormal state of humidifying curtain installation and / or an abnormal state of the driving part.

2. The control method according to claim 1, characterized in that, The step of turning on the driving component that drives the humidifying curtain to rotate and obtaining the rotation speed information of the driving component further includes: In response to a humidifying start instruction, control the driving component to drive the humidifying curtain to rotate; Obtain the third rotation speed information when the driving component executes the humidifying start instruction; The step of obtaining the working state of the humidifying component based on the rotation speed information includes: When the third rotation speed information is less than or equal to the third threshold, determine that the working state of the humidifying component is an abnormal state of humidifying curtain installation and / or an abnormal state of the driving part; wherein, the value of the third threshold is greater than the values of the first threshold and the second threshold.

3. The control method according to any one of claims 1 to 2, characterized in that, it further includes: Obtain the liquid level information of the liquid in the tank; When the liquid level information is less than or equal to the fourth threshold, determine that the working state of the humidifying component is a low water level working state.

4. The control method according to any one of claims 1 to 2, characterized in that, it further includes: Turn on the air supply part, and obtain the fourth rotation speed information of the air supply part; When the fourth rotation speed information is less than or equal to the fifth threshold, determine that the working state of the humidifying component is an abnormal state of the air supply part.

5. The control method according to any one of claims 1 to 2, characterized in that, it further includes: In response to a humidifying off instruction, control the driving component to turn off, and when the duration of the continuous operation of the air supply part reaches the first duration, control the air supply part to turn off.

6. The control method according to any one of claims 1 to 2, characterized in that, it further includes: Generate a prompt message corresponding to the working state.

7. A computer-readable storage medium, characterized in that, the computer-readable storage medium stores a computer program for implementing the control method of the humidifying component according to any one of claims 1 to 6.

8. A control device, characterized in that, comprising: a memory storing a computer program; a processor for executing the computer program; wherein, when the processor executes the computer program, it implements the control method of the humidifying component according to any one of claims 1 to 6.

9. A humidifying component, characterized in that, comprising: a receiving part, a groove body is formed in the receiving part; a driving component; a humidifying curtain sleeved on the driving component, the driving component is used to drive the humidifying curtain to rotate, and part of the humidifying curtain is located in the groove body; a first rotation speed detection module for detecting the rotation speed information of the driving component; the control device according to claim 8, the control device obtains the rotation speed information based on the first rotation speed detection module.

10. The humidifying component according to claim 9, characterized in that, the driving component comprises: a first rotating shaft; a driving member connected to the first rotating shaft, the driving member is used to drive the first rotating shaft to rotate; a second rotating shaft, the second rotating shaft is located in the groove body; a bracket, the first rotating shaft and the second rotating shaft are rotatably arranged on the bracket; wherein, the humidifying curtain is sleeved on the first rotating shaft and the second rotating shaft, and the first rotation speed detection module is connected to the driving member for detecting the rotation speed of the driving member.

11. The humidifying component according to claim 9, characterized in that, further comprising: a blowing member, the blowing direction of the blowing member faces the humidifying curtain; a second rotation speed detection module connected to the blowing member for detecting the fourth rotation speed information of the blowing member, and the control device obtains the fourth rotation speed information based on the second rotation speed detection module; a water level switch arranged in the groove body for detecting the liquid level height in the groove body; an electrolysis module arranged in the groove body for electrolyzing the liquid in the groove body.

12. The humidifying component according to claim 11, characterized in that, the water level switch comprises: a cylinder body arranged on the groove wall of the receiving part; a reed switch arranged in the cylinder body; a floating ball for being arranged in the groove body; a magnetic part arranged in the floating ball.

13. An air conditioner, characterized in that, comprising the humidifying component according to any one of claims 9 to 12.

Citation Information

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