Control method, device, equipment and system of air treatment equipment and storage medium

By detecting the user's action and voice information in the air treatment equipment and using different air conditioning standards to adjust the equipment operating parameters, the problem of reduced comfort and safety when the air treatment equipment adjusts the user's attention concentration is solved, achieving more reasonable control and better user experience.

CN120232113APending Publication Date: 2025-07-01DAIKIN INDUSTRIES LTD
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Patent Information

Application Number
CN202311852902.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-12-29
Publication Date
2025-07-01

AI Technical Summary

Technical Problem

Existing air treatment equipment tends to lead to a decrease in comfort and safety when adjusting operating parameters to improve user concentration.

Method used

The first type of sound information and the second type of sound information related to attention are detected by sound monitoring, and the operating parameters of the air processing equipment are adjusted using different air conditioning standards, including adjusting the temperature and ventilation operations according to the keywords in the user's actions and voice.

Benefits of technology

It improves the rationality of air treatment equipment, improves user attention concentration, and improves user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a control method, device, equipment and system of air treatment equipment and a storage medium. A first type of sound information and a second type of sound information related to attention are detected through sound monitoring, under the condition that the first type of sound information is detected, operation parameters of the air treatment equipment are adjusted according to a first air adjusting standard, and under the condition that the second type of sound information is detected, operation parameters of the air treatment equipment are adjusted according to a second air adjusting standard. The operation parameters of the air treatment equipment are adjusted according to a second air conditioning standard, and therefore different types of attention-related sound information can be further distinguished through detection of multiple dimensions and multiple logics; and the air treatment equipment can be correspondingly controlled according to different types of attention-related sound information, so that the control reasonability can be improved, the attention state of the user can be improved, and the user experience is improved.
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Description

Technical Field

[0001] The present application relates to the field of air treatment, and particularly to a control method, device, equipment, system and storage medium for air treatment equipment. Background Art

[0002] With the continuous progress of science and technology and the improvement of living standards, air treatment equipment has been widely used. In order to ensure the safety and comfort of the target space, the air quality data of the target space can be adjusted within a preset range by the air treatment equipment.

[0003] It should be noted that the above introduction of the technical background is only for the convenience of clearly and completely explaining the technical solutions of the present application and facilitating the understanding of those skilled in the art. It cannot be considered that the above technical solutions are well-known to those skilled in the art just because these solutions are described in the background art part of the present application. Summary of the Invention

[0004] The inventors found that the air quality data of the target space will also affect the user's attention concentration (i.e., the degree of attention concentration). For example, if the indoor temperature is relatively high, the user is prone to doze off or feel fatigued, and the attention concentration will decrease. The operation parameters of the air treatment equipment can be controlled to adjust the air quality data of the target space so as to achieve the purpose of improving the user's attention concentration. However, when adjusting the operation parameters, inappropriate adjustment not only cannot improve the attention concentration, but may also reduce the comfort and safety.

[0005] In order to solve at least one of the above problems, embodiments of the present application provide a control method, device, equipment, system and storage medium for air treatment equipment.

[0006] According to the first aspect of the embodiments of the present application, a control method for air treatment equipment is provided. By sound monitoring, first type sound information and second type sound information related to attention are detected; when the first type sound information is detected, the operation parameters of the air treatment equipment are adjusted according to the first air conditioning standard, and when the second type sound information is detected, the operation parameters of the air treatment equipment are adjusted according to the second air conditioning standard.

[0007] According to a second aspect of the embodiments of the present application, an air treatment system is provided. The air treatment system includes at least one air treatment device, a control device, and a sound collection device. The sound collection device detects first-type sound information and second-type sound information related to attention through sound monitoring. When the first-type sound information is detected, the control device adjusts the operating parameters of the air treatment device according to a first air conditioning standard. When the second-type sound information is detected, the control device adjusts the operating parameters of the air treatment device according to a second air conditioning standard.

[0008] According to a third aspect of the embodiments of the present application, a control device for an air treatment device is provided. The device includes a monitoring unit that detects first-type sound information and second-type sound information related to attention through sound monitoring, and a control unit that adjusts the operating parameters of the air treatment device according to a first air conditioning standard when the first-type sound information is detected, and adjusts the operating parameters of the air treatment device according to a second air conditioning standard when the second-type sound information is detected.

[0009] According to a fourth aspect of the embodiments of the present application, an electronic device is provided. The electronic device includes a memory that stores a computer program, and a processor that implements the method described in the first aspect when executing the computer program.

[0010] According to a fifth aspect of the embodiments of the present application, a computer-readable storage medium is provided, on which a computer program is stored. The computer program implements the method described in the first aspect when executed by a processor.

[0011] One of the beneficial effects of the embodiments of the present application is that: through sound monitoring, first-type sound information and second-type sound information related to attention are detected. When the first-type sound information is detected, the operating parameters of the air treatment device are adjusted according to a first air conditioning standard. When the second-type sound information is detected, the operating parameters of the air treatment device are adjusted according to a second air conditioning standard. Thus, through detection in multiple dimensions and multiple logics, different types of attention-related sound information can be further distinguished; and the air treatment device can be controlled accordingly based on different types of attention-related sound information, thereby improving the rationality of control, helping to improve the user's attention concentration, and enhancing the user experience.

[0012] Referring to the following description and drawings, specific embodiments of the present application are disclosed in detail, indicating the ways in which the principles of the present application can be adopted. It should be understood that the embodiments of the present application are not limited in scope thereby. Within the spirit and terms of the appended claims, the embodiments of the present application include many changes, modifications, and equivalents.

[0013] The feature information described and illustrated for one embodiment can be used in the same or similar manner in one or more other embodiments, combined with the feature information in other embodiments, or replace the feature information in other embodiments.

[0014] It should be emphasized that the term "including / comprising" as used herein refers to the presence of feature information, whole parts, steps or components, but does not exclude the presence or addition of one or more other feature information, whole parts, steps or components. Brief Description of the Drawings

[0015] Many aspects of the present application can be better understood with reference to the following drawings. The components in the drawings are not drawn to scale, but are only for showing the principles of the present application. For the convenience of showing and describing some parts of the present application, the corresponding parts in the drawings may be enlarged or reduced. The elements and feature information described in one drawing or one embodiment of the present application can be combined with the elements and feature information shown in one or more other drawings or embodiments. In addition, in the drawings, like reference numerals denote corresponding components in several drawings and can be used to indicate corresponding components used in more than one embodiment.

[0016] In the drawings:

[0017] Figure 1 is a schematic diagram of a control method of an air handling device according to an embodiment of the present application;

[0018] Figure 2 is another schematic diagram of a control method of an air handling device according to an embodiment of the present application;

[0019] Figure 3 is another schematic diagram of a control method of an air handling device according to an embodiment of the present application;

[0020] Figure 4 is another schematic diagram of a control method of an air handling device according to an embodiment of the present application;

[0021] Figure 5 is a schematic diagram of an air handling system according to an embodiment of the present application;

[0022] Figure 6 is a schematic diagram of a control device of an air handling device according to an embodiment of the present application;

[0023] Figure 7 is a schematic diagram of the system configuration of an electronic device according to an embodiment of the present application. Detailed Embodiments

[0024] The preferred embodiments of the present application will be described below with reference to the drawings.

[0025] Example 1

[0026] Example 1 of the present application provides a control method for an air handling device.

[0027] Figure 1 It is a schematic diagram of the control method for the air handling device according to the embodiment of the present application. As Figure 1 shown, the method includes:

[0028] Step 101: Detect first-type sound information and second-type sound information related to attention through sound monitoring; and

[0029] Step 102: When the first-type sound information is detected, adjust the operating parameters of the air handling device according to the first air conditioning standard, and when the second-type sound information is detected, adjust the operating parameters of the air handling device according to the second air conditioning standard.

[0030] According to the above embodiment, through sound monitoring, first-type sound information and second-type sound information related to attention are detected. When the first-type sound information is detected, the operating parameters of the air handling device are adjusted according to the first air conditioning standard, and when the second-type sound information is detected, the operating parameters of the air handling device are adjusted according to the second air conditioning standard. Thus, through detection in multiple dimensions and multiple logics, different types of attention-related sound information can be further distinguished; and the air handling device can be controlled accordingly according to different types of attention-related sound information, thereby improving the rationality of control, helping to improve the user's attention concentration, and enhancing the user experience.

[0031] In some embodiments, in step 101, sound monitoring can be performed through a sound collection device. The sound collection device can be various devices with sound collection functions, such as at least one of a central controller, a wired controller, a remote controller, an indoor unit, an air quality sensor, a user terminal, and a smart speaker in an air handling system. The specific method of obtaining sound data through sound monitoring can refer to related technologies and will not be elaborated here.

[0032] In some embodiments, the sound information obtained through sound monitoring includes the sound information of the target space where the air handling device is located. Among them, the target space can include at least one room, or at least one area in the room.

[0033] In some embodiments, in step 101, it can be detected whether the obtained sound information includes attention-related sound information. Among them, the attention-related sound information can be divided into different types, such as first-type sound information and second-type sound information.

[0034] The first type of voice information may include voice information related to user actions. Among them, user actions may include yawning or stretching. When the user makes such an action, it indicates that the user's attention concentration may have decreased.

[0035] The second type of voice information may include keywords related to attention. For example, the second type of voice information includes voice information issued by the user, and the voice information includes keywords related to attention. When the user says such a keyword, it indicates that the user's attention concentration may have decreased.

[0036] Among them, the keywords related to attention can be pre-set, and they can include various types of words. For example, words related to comfort, words expressing mood, etc. Words related to comfort include, for example, tired, sleepy, exhausted, fatigued, weary, listless, etc.; words expressing mood include, for example, words expressing moods such as anger, sadness, irritability, etc., annoyed, irritable, angry, sad, etc.

[0037] The voice acquisition device can detect the first type of voice information and the second type of voice information through traditional voice detection algorithms or deep learning models, etc. For specific detection methods, reference can be made to related technologies, which will not be elaborated here.

[0038] In some embodiments, different types of voice information may correspond to different attention concentrations. For example, the attention concentration corresponding to the second type of voice information is lower than the attention concentration corresponding to the first type of voice information. For example, when the user says the sentence "too sleepy", the attention concentration is lower than when the user makes a yawning action.

[0039] In some embodiments, in step 102, the air handling device can be controlled accordingly according to the type of voice information related to attention. For example, in the case of detecting the first type of voice information, the operating parameters of the air handling device are adjusted according to the first air conditioning standard, and in the case of detecting the second type of voice information, the operating parameters of the air handling device are adjusted according to the second air conditioning standard.

[0040] Since different types of voice information correspond to different attention concentrations, controlling the air handling device according to the type of voice information related to attention can improve the rationality of control and avoid being unable to improve the user's attention concentration or reducing the safety and comfort of the target space due to inappropriate control.

[0041] In some embodiments, in step 102, the air handling device can be controlled by a control device. The control device may include at least one of a server, a gateway device, a central controller, a line controller, a remote controller, and a control board.

[0042] The air handling equipment in the embodiments of the present application can be various equipment related to air handling. For example, the air handling equipment includes at least one of a temperature regulating device, a air supply device, an exhaust device, a humidity regulating device, and an air purification device.

[0043] The air handling equipment can adjust various air quality data of the target space. For example, the air quality data includes at least one of the following: air temperature, air humidity, carbon dioxide concentration, fine particulate matter (PM2.5) concentration, inhalable particulate matter (PM10) concentration, volatile organic compound (VOC) concentration, total volatile organic compounds (TVOC) concentration, nitrogen oxide concentration, ozone concentration, etc.

[0044] In some embodiments, the temperature regulating device includes at least one of an indoor unit and a floor heating device.

[0045] In some embodiments, the indoor unit is an indoor unit in an air conditioning system, and the air conditioning system can be a commercial air conditioning system or a household air conditioning system.

[0046] In some embodiments, the air conditioning system can include at least one set of outdoor units and at least one indoor unit connected to each set of outdoor units. That is to say, in the air conditioning system, one set or multiple sets of outdoor units can be included, and each set of outdoor units includes at least one outdoor unit; for one set of outdoor units, the set of outdoor units is connected to at least one indoor unit.

[0047] For example, the air conditioning system includes one outdoor unit and one indoor unit connected to the outdoor unit.

[0048] For example, the air conditioning system includes one outdoor unit and at least two indoor units connected to the outdoor unit.

[0049] For example, the air conditioning system includes at least two outdoor units and at least two indoor units connected to the at least two outdoor units.

[0050] For example, one set of outdoor units and at least one indoor unit connected to the one set of outdoor units form a refrigerant system, or multiple sets of outdoor units and at least one indoor unit respectively connected to the multiple sets of outdoor units form multiple refrigerant systems. Thus, the air conditioning system can include one refrigerant system or multiple refrigerant systems.

[0051] In some embodiments, the outdoor unit and the indoor unit can be air conditioning equipment of various models, types, forms, and capacities. For example, the form of the indoor unit can be all-round air outlet, two-sided air outlet, duct machine, floor air outlet, or skirting air outlet, etc.; the form of the outdoor unit can be single-fan top air outlet, double-fan top air outlet, single-fan front air outlet, or double-fan front air outlet, etc.

[0052] In some embodiments, the floor heating device is connected to the outdoor unit through a refrigerant pipeline, and the floor heating device is connected to the floor heating pipeline in the indoor space through a floor heating water pipeline. For example, the outdoor unit and the floor heating device form an air source heat pump water heater, which uses the heat in the air and the operation of the compressor to heat water; the floor heating device may include a water heat exchange unit, and the refrigerant flowing out of the compressor of the outdoor unit enters the water heat exchange unit of the floor heating device through the refrigerant pipeline and exchanges heat with water, so as to achieve the purpose of heating water, and the heated water is introduced into the floor heating pipeline in the indoor space through the floor heating water pipeline to supply heat to the indoor space. In some embodiments, the outdoor unit and the floor heating device are separate or integrated.

[0053] In some embodiments, the air supply device includes at least one of a fresh air treatment device, a total heat exchange device (for example, having an internal circulation and an external circulation function, or having an external circulation function and not having an internal circulation function), and a ventilation device (for example, having an internal circulation and an external circulation function, or having an external circulation function and not having an internal circulation function).

[0054] In some embodiments, the exhaust device is used to suck the air in the indoor space so that the sucked air is discharged from the indoor space.

[0055] In some embodiments, the humidity control device has at least one of a humidifying function and a dehumidifying function. For example, the humidity control device is arranged on the output side of the air supply device to adjust the humidity of the air output by the air supply device. For example, the air output by the air supply device is humidified or dehumidified, and the humidified or dehumidified air is introduced into the indoor space.

[0056] In some embodiments, the air purification device is used to adjust the concentration of the corresponding air components introduced into the indoor space. For example, reducing the concentration of carbon dioxide, fine particulate matter (PM2.5), inhalable particulate matter (PM10), volatile organic compounds (VOC), total volatile organic compounds (TVOC), nitrogen oxides, ozone, the concentration of other dust or impurities, etc. in the air by at least one. The air purification device can be set separately, or can also be integrated in the air supply device, the temperature control device or the humidity control device, etc.

[0057] Hereinafter, the first air conditioning standard and the second air conditioning standard will be described separately.

[0058] (1) Taking the first air conditioning standard as an example:

[0059] In some embodiments, the first air conditioning standard includes adjusting the operating parameters of the air treatment device according to the first number of times of detecting the first type of sound information within the first preset time.

[0060] The number of attention-related actions made by a user within a period of time can reflect the user's attention concentration. For example, the more yawns the user makes within 5 minutes, the lower the attention concentration. Adjusting the operating parameters of the air handling device according to the first number can further improve the rationality of control, effectively avoiding the inability to improve the user's attention concentration due to inappropriate control, or reducing the safety and comfort of the target space.

[0061] In some embodiments, when the first number of detections of the first type of sound information within the first preset time exceeds the first preset value, the target temperature of the air handling device can be lowered.

[0062] Since users usually yawn or stretch frequently within a period of time when they are in a state of low attention concentration. In this case, by lowering the target temperature of the air handling device and sending cooler air into the target space, it helps the user to concentrate and relieve the user's fatigue.

[0063] In some embodiments, when the current target temperature (i.e., the lowered target temperature) is different from the initial target temperature, the ventilation operation can be turned on. Thereby, the oxygen content in the target space can be increased, which further helps the user to concentrate and relieve the user's fatigue.

[0064] For example, the first preset time is 5 minutes and the first preset number is 2 times. If 3 yawns are detected within 5 minutes, the target temperature of the air handling device is lowered. Since the lowered target temperature is different from the initial target temperature, the ventilation operation is further turned on.

[0065] In some embodiments, when the first type of sound information detected within the first preset time reaches the first preset value, the target temperature can be lowered in real time or the ventilation operation can be turned on; alternatively, the target temperature can be lowered or the ventilation operation can be turned on after the first preset time ends.

[0066] For example, the first preset time is 5 minutes and the first preset number is 2 times. If 3 yawns are detected at 3 minutes, the target temperature of the air handling device can be lowered or the ventilation operation can be turned on; or, after 5 minutes end, the target temperature of the air handling device can be lowered or the ventilation operation can be turned on.

[0067] In some embodiments, the ventilation operation can be a ventilation operation in the external circulation mode, that is, introducing outdoor air into the indoor space (target space).

[0068] In some embodiments, the first count of the first type of sound information may be obtained by separately counting different actions. For example, the number of yawns and the number of stretches are separately counted within a first preset time. When the number of yawns within the first preset time exceeds a first preset value, the target temperature is lowered; or, when the number of stretches within the first preset time exceeds the first preset value, the target temperature is lowered.

[0069] This application is not limited thereto. The first count of the first type of sound information may also be obtained by uniformly counting multiple actions. For example, the total number of yawns and stretches within a first preset time is counted. When the total number of yawns and stretches within the first preset time exceeds the first preset value, the target temperature is lowered.

[0070] In some embodiments, the reduction amplitude of the target temperature of the air handling device may be determined in various ways.

[0071] For example, the reduction amplitude of the target temperature may be a preset amplitude, that is, if the first count exceeds the first preset value, the target temperature is lowered by the preset amplitude.

[0072] Again, for example, the reduction amplitude of the target temperature may be determined according to the first count. Thus, the target temperature can be appropriately lowered according to the user's attention concentration.

[0073] For example, the reduction amplitude of the target temperature may be proportional to the first count. The more the first count, the lower the user's attention concentration, and the greater the reduction amplitude of the target temperature, so that air at a lower temperature can be introduced into the target space, which helps the user to improve the attention concentration. For example, the reduction amplitude of the target temperature may be the product of the first count and the first temperature adjustment step. For example, the first temperature adjustment step is 0.5 °C, the first count is 3, and the reduction amplitude of the target temperature of the air handling device is 1.5 °C.

[0074] For another example, different value ranges of the first count may correspond to different reduction amplitudes of the target temperature, that is, when the first count is greater than or equal to the first value and less than the second value, it corresponds to the first reduction amplitude; when the first count is greater than or equal to the second value and less than the third value, it corresponds to the second reduction amplitude; and so on. Table 1 is an example of the value range of the first count and the reduction amplitude of the target temperature. As shown in Table 1, when the first count is 2 or 3, the reduction amplitude is 1 °C; when the first count is 4 or 5, the reduction amplitude is 2 °C, and so on.

[0075] Table 1 Example of the value range of the first count and the reduction amplitude of the target temperature

[0076] First number Reduction amplitude 2-3 1℃ 4-5 2℃ …

[0077] In some embodiments, the air volume of the ventilation operation of the air handling device can be determined in various ways.

[0078] For example, the air volume of the ventilation operation can be a preset air volume, that is, if the first number exceeds the first preset value, then the ventilation operation is performed with the preset air volume.

[0079] Again, for example, the air volume of the ventilation operation can be determined according to the first number. Thus, the air volume can be appropriately set according to the user's attention concentration.

[0080] For example, the air volume of the ventilation operation can be positively correlated with the first number. The more the first number, the greater the air volume of the ventilation operation, so that more external air can be introduced into the target space, which helps to increase the oxygen content in the target space and thus improve the user's attention concentration.

[0081] For example, the relationship between the air volume of the ventilation operation and the first number can be shown by the following formula:

[0082] Q = A + i×D (Formula 1)

[0083] Where Q is the air volume of the ventilation operation, A is the base air volume, i is the first number, and D is the first air volume adjustment step.

[0084] Taking the air volume of the ventilation operation represented by the rotational speed of the fan as an example, with A = 1000 revolutions per second, D = 200 revolutions per second, and i = 3 times as an example, the air volume Q of the ventilation operation = 1600 revolutions per second.

[0085] For another example, different value ranges of the first number can correspond to different air volumes of the ventilation operation, that is, when the first number is greater than or equal to the fourth value and less than the fifth value, it corresponds to the first air volume; when the first number is greater than or equal to the fifth value and less than the sixth value, it corresponds to the second air volume; and so on.

[0086] Table 2 is an example of the value range of the first number and the air volume of the ventilation operation. Taking the air volume of the ventilation operation represented by the fan speed as an example, as shown in Table 2, when the first number is 2 or 3, the air volume is low gear; when the first number is 4 or 5, the air volume is medium gear; when the first number is 6 or 7, the air volume is high gear, and so on.

[0087] Table 2 Example of the value range of the first number and the air volume of the ventilation operation

[0088] First number Air volume 2-3 Low 4-5 Medium 6-7 High …

[0089] In some embodiments, when the first number of the first type of sound information detected within the first preset time does not exceed the first preset value and the current target temperature is different from the initial target temperature, the target temperature of the air handling device can be increased.

[0090] If the number of times a user yawns or stretches decreases within a period of time, it indicates that the user's attention concentration has improved. In this case, if the current target temperature (actual target temperature) is different from the initial target temperature (e.g., the target temperature set by the user), the current target temperature can be increased to restore it to the initial target temperature. Thus, the air handling device can operate with the parameters set by the user, ensuring the safety and comfort of the target space, avoiding the user's confusion (the actual target temperature is different from the set target temperature), and improving the user experience.

[0091] In some embodiments, when the first number of times of detecting the first type of sound information within the first preset time does not exceed the first preset value and the current target temperature is different from the initial target temperature, the target temperature of the air handling device can also be determined whether to be increased according to the second number of times of the first type of sound information detected within the second preset time. Thus, it is possible to more reliably control according to the user's attention concentration and avoid frequent adjustment of the target temperature.

[0092] For example, when the first number of times of detecting the first type of sound information within the first preset time does not exceed the first preset value, the current target temperature is different from the initial target temperature, and the second number of times of the first type of sound information detected within the second preset time does not exceed the second preset value, the target temperature of the air handling device is increased.

[0093] Wherein, the second preset time can be a period of time after the first preset time, or the second preset time can also be a period of time including the first preset time.

[0094] For example, the first preset value is 2, the second preset value is 0, the initial target temperature is 26 °C, and the current target temperature is 24 °C. If 1 yawn is detected within 5 minutes (the first preset time), and no yawn is detected within 10 minutes (the second preset time) after the end of the 5 minutes, the target temperature of the air handling device is increased.

[0095] In some embodiments, the target temperature of the air handling device can be increased in various ways. For example, the target temperature of the air handling device can be gradually increased, so that it is possible to avoid too large an increase in the target temperature and affect the user experience. This application is not limited to this. When the difference between the current target temperature and the initial target temperature is less than the specified threshold, the current target temperature can also be increased to the initial target temperature at one time.

[0096] Below, an example of gradually increasing the target temperature will be used for illustration.

[0097] In some embodiments, the increase in the target temperature can be a preset magnitude. When the difference between the current target temperature and the initial target temperature is greater than the preset magnitude, the current target temperature can be gradually increased to the initial target temperature through multiple adjustments.

[0098] For example, the preset magnitude is 1°C. When the current target temperature is 4°C lower than the initial target temperature, the target temperature can be adjusted back to the initial target temperature through four adjustments; when the current target temperature is 3.5°C lower than the initial target temperature, the target temperature can also be adjusted back to the initial target temperature through four adjustments. Among them, the magnitude of the last adjustment (0.5°C) can be different from the preset magnitude.

[0099] In some embodiments, the increase in the target temperature can be determined according to the difference between the initial target temperature and the first target temperature after the last reduction of the target temperature and the preset number of adjustment times. Thus, the target temperature can be adjusted back to the initial target temperature within the preset number of adjustment times. For example, the increase in the target temperature each time can be the quotient of the difference between the initial target temperature and the first target temperature and the preset number of adjustment times.

[0100] Table 3 is an example of the target temperature adjustment method. Assume that the preset number of adjustment times is 4 times. As shown in Table 3, at time T1, the initial target temperature and the actual target temperature are the same, both 24°C.

[0101] The sound of yawning is detected 4 times within 5 minutes. At time T2 when 5 minutes end, the target temperature is reduced by 4 * the first temperature adjustment step = 4 * 0.5°C = 2°C. At this time, the difference between the initial target temperature and the actual target temperature is 2°C.

[0102] From time T2, no sound of yawning is detected within 10 minutes. At time T3 (= T2 + 10 minutes), the target temperature can be increased. The increase in the target temperature is related to the difference between the first target temperature and the initial target temperature after the last reduction of the target temperature. The last reduction of the target temperature before time T3 is at time T2. Therefore, the first target temperature is 22°C, the difference is 2°C, and the increase is the difference / the preset number of adjustment times = 2°C / 4 = 0.5°C.

[0103] From time T3, no sound of yawning is detected within 10 minutes. At time T4 (= T3 + 10 minutes), the target temperature is increased by 0.5°C.

[0104] From time T4, the sound of yawning is detected 4 times within 5 minutes. At time T5 (= T4 + 5 minutes), the target temperature is reduced by 4 * 0.5°C = 2°C.

[0105] No yawning sound is detected within 10 minutes starting from time T5. The last time the target temperature was decreased before time T6 ( = T5 + 10 minutes) was at time T5. Therefore, the first target temperature is 21°C, the difference is 3°C, and the increase rate is 3°C / 4 = 0.75°C.

[0106] No yawning sound is detected from time T6 to time T7 ( = T6 + 10 minutes). At time T7, the target temperature continues to increase by 0.75°C. Similarly, the target temperature continues to increase at times T8 and T9, thereby raising the target temperature to the initial target temperature.

[0107]

[0108]

[0109] In some embodiments, when the increased target temperature is the same as the initial target temperature, the ventilation operation can be turned off, thereby reducing energy consumption.

[0110] In some embodiments, when the first number of detections of the first type of sound information within the first preset time does not exceed the first preset value and the current target temperature is the same as the initial target temperature, the air handling device can continue to operate with the current parameters.

[0111] Figure 2 It is another schematic diagram of the control method of the air handling device according to the embodiments of the present application. As Figure 2 shown, the control method may include:

[0112] Step 201: Determine whether the first type of sound information is detected through sound monitoring. If the determination is yes, execute step 202; otherwise, continue to execute step 201;

[0113] Step 202: Determine whether the first number of detections of the first type of sound information within the first preset time exceeds the first preset value. If the determination is yes, execute step 203; otherwise, execute step 204;

[0114] Step 203: Decrease the target temperature;

[0115] Among them, the method of decreasing the target temperature can refer to the foregoing content and will not be elaborated here.

[0116] In addition, in step 203, it can also be determined whether the current target temperature is the same as the initial target temperature. If it is different, turn on the ventilation operation; if it is the same, do not turn on the ventilation operation.

[0117] Step 204: Determine whether the current target temperature is the same as the initial target temperature. If the determination is yes, return to step 201; otherwise, execute step 205;

[0118] Among them, when the current target temperature is the same as the initial target temperature, there is no need to increase the target temperature.

[0119] Step 205: Determine whether the second number of times of detecting the first type of sound information within the second preset time exceeds the second preset value. If the determination result is yes, return to step 202; otherwise, execute step 206.

[0120] Among them, when the second number of times of detecting the first type of sound information within the second preset time exceeds the second preset value, do not increase the target temperature, and further determine whether it is necessary to decrease the target temperature.

[0121] Step 206: Increase the target temperature.

[0122] Among them, the method of increasing the target temperature can refer to the foregoing content and will not be elaborated here.

[0123] In addition, in step 206, it can also be determined whether the increased target temperature is the same as the initial target temperature. If they are the same, turn off the ventilation operation; if they are different, do not turn off the ventilation operation.

[0124] (2) Taking the second air conditioning standard as an example:

[0125] In some embodiments, the second air conditioning standard includes reducing the target temperature of the air handling device when the second type of sound information is detected. That is, as long as the second type of sound information is detected once, the target temperature of the air handling device is reduced.

[0126] Since the user's attention concentration is already at a low level when the user utters keywords related to attention, through the above-mentioned second air conditioning standard, the operating parameters of the air handling device can be adjusted in a timely manner, so as to improve the user's attention concentration in a timely manner.

[0127] In some embodiments, the second air conditioning standard may further include turning on the ventilation operation when the current target temperature is different from the initial target temperature. Thereby, the user's attention concentration can be further improved.

[0128] In some embodiments, the reduction amplitude of the target temperature of the air handling device can be determined in various ways.

[0129] For example, the reduction amplitude of the target temperature can be a preset amplitude. That is, when the second type of sound information is detected, the target temperature is reduced by the preset amplitude. For example, the preset amplitude is 0.5 °C, and each time the second type of sound information is detected, the target temperature is reduced by 0.5 °C based on the current target temperature.

[0130] For another example, the reduction range of the target temperature can be determined according to the attention-related keywords in the second type of sound information. Thereby, the user's attention concentration can be improved more effectively, and the comfort and safety can be avoided from being affected. For example, the keywords in the second type of sound information can correspond to different attention concentrations. For example, the attention concentration corresponding to "too tired" can be lower than that corresponding to "a little tired". Therefore, the reduction range of the target temperature corresponding to "too tired" can be made larger than that corresponding to "a little tired". For example, the reduction range corresponding to "a little tired" is 0.5 °C, and the reduction range corresponding to "too tired" is 1 °C.

[0131] In some embodiments, the air volume of the ventilation operation of the air handling device can be determined in various ways.

[0132] For example, the air volume of the ventilation operation can be a preset air volume, that is, when the second type of sound information is detected, the air supply operation is performed at the preset air volume.

[0133] For another example, the air volume of the ventilation operation can be determined according to the attention-related keywords in the second type of sound information. Thereby, the user's attention concentration can be improved more effectively, and the comfort and safety can be avoided from being affected. For example, the air volume corresponding to "a little tired" is low gear, and the air volume corresponding to "too tired" is high gear.

[0134] In some embodiments, the second air conditioning standard may include: when the second type of sound information is not detected within a third preset time after the second type of sound information is detected and the current target temperature is different from the initial target temperature, the target temperature of the air handling device is increased.

[0135] That is to say, after the target temperature is reduced, if the user does not say the attention-related keywords within the third preset time, it means that the user's attention concentration has improved. In this case, if the current target temperature (actual target temperature) is different from the initial target temperature (for example, the target temperature set by the user), the current target temperature can be increased. Thus, the air handling device can operate with the parameters set by the user, ensuring the safety and comfort of the target space, avoiding the user's confusion (the actual target temperature is different from the set target temperature), and improving the user experience.

[0136] In some embodiments, the second air conditioning standard may include: when the second type of sound information is not detected within a third preset time after the target temperature of the air handling device is increased and the current target temperature is different from the initial target temperature, the target temperature of the air handling device is continuously increased.

[0137] That is to say, after the target temperature is increased, if no keyword related to attention is detected from the user within the third preset time, it indicates that the user's attention concentration has improved. In this case, if the current target temperature (actual target temperature) is different from the initial target temperature (for example, the target temperature set by the user), the current target temperature can be further increased to restore it to the initial target temperature. Thus, the air handling device can operate with the parameters set by the user, ensuring the safety and comfort of the target space, avoiding the user's confusion (the actual target temperature is different from the set target temperature), and improving the user experience.

[0138] In some embodiments, the target temperature of the air handling device can be increased in various ways. The specific ways to increase the target temperature can refer to the first air conditioning standard and will not be elaborated here.

[0139] In some embodiments, when the increased target temperature is the same as the initial target temperature, the ventilation operation can be turned off, thereby reducing energy consumption.

[0140] Figure 3 It is another schematic diagram of the control method of the air handling device according to the embodiments of the present application. As Figure 3 shown, the control method may include:

[0141] Step 301: Determine whether the second type of sound information is detected through sound monitoring. If the determination is yes, execute Step 302; otherwise, execute Step 303;

[0142] Step 302: Reduce the target temperature;

[0143] Among them, the way to reduce the target temperature can refer to the foregoing content and will not be elaborated here.

[0144] In addition, in Step 302, it can also be determined whether the current target temperature is the same as the initial target temperature. If it is different, turn on the ventilation operation; if it is the same, do not turn on the ventilation operation.

[0145] Step 303: Determine whether the current target temperature is the same as the initial target temperature. If the determination is yes, return to Step 301; otherwise, execute Step 304;

[0146] Among them, when the current target temperature is the same as the initial target temperature, there is no need to increase the target temperature.

[0147] Step 304: Determine whether the third preset time has elapsed since the last adjustment of the target temperature. If the determination is yes, execute Step 305; otherwise, return to Step 301;

[0148] Among them, the adjusted target temperature can be to lower the target temperature or to raise the target temperature. That is, the target temperature can be raised when the second type of sound information is not detected within the third preset time after detecting the second type of sound information (step 301) or after lowering the target temperature (step 302); or the target temperature can continue to be raised when the second type of sound information is not detected within the third preset time after raising the target temperature of the air handling device (step 305).

[0149] Step 305: Raise the target temperature.

[0150] Among them, the way to raise the target temperature can refer to the foregoing content and will not be elaborated here.

[0151] In addition, in step 305, it can also be determined whether the raised target temperature is the same as the initial target temperature. If it is the same, the ventilation operation is closed; if it is different, the ventilation operation is not closed.

[0152] In some embodiments, when the first type of sound information and the second type of sound information are detected, the operating parameters of the air handling device can be preferentially adjusted according to the second air conditioning standard. Thus, the timeliness of adjusting the operating parameters can be ensured, and furthermore, the user's attention concentration can be improved in a timely manner.

[0153] Figure 4 It is another schematic diagram of the control method of the air handling device according to the embodiment of the present application. Figure 4 Taking the first type of sound information including the sound information of yawning and stretching, and the second type of sound information including words related to comfort and expressing mood as an example, an exemplary description of the control method of the present application is given.

[0154] As Figure 4 shown, the control method can include 4 parallel branches, corresponding to the sound information of yawning, stretching, comfort, and mood respectively. The 4 branches can be executed in parallel and have different priorities. For example, the priorities of the comfort and mood branches are higher than those of the yawning and stretching branches.

[0155] The method includes:

[0156] Step 4011: Determine whether the sound of yawning is detected. If it is determined to be yes, execute step 4012; otherwise, continue to execute step 4011;

[0157] Step 4012: Determine whether the number of times of yawning detected within 5 minutes exceeds 2 times. If it is determined to be yes, execute step 4013; otherwise, continue to execute step 4014;

[0158] Step 4013: Lower the target temperature;

[0159] Step 4014: Determine whether the current target temperature is equal to the initial target temperature. If the determination result is yes, return to Step 4011; otherwise, execute Step 4015;

[0160] Step 4015: Determine whether yawning is detected within 10 minutes. If the determination result is yes, return to Step 4012; otherwise, execute Step 4016;

[0161] Step 4016: Increase the target temperature.

[0162] Steps 4021 to 4026 are controlled according to the number of stretching movements, which is similar to Steps 4011 to 4016 and will not be elaborated here.

[0163] Step 4031: Determine whether words related to comfort are detected. If the determination result is yes, execute Step 4032; otherwise, continue to execute Step 4033;

[0164] Step 4032: Decrease the target temperature;

[0165] Step 4033: Determine whether the current target temperature is equal to the initial target temperature. If the determination result is yes, return to Step 4031; otherwise, execute Step 4034;

[0166] Step 4034: Determine whether 10 minutes have passed since the last adjustment of the target temperature. If the determination result is yes, execute Step 4035; otherwise, return to Step 4031;

[0167] Step 4035: Increase the target temperature.

[0168] Steps 4041 to 4045 are controlled according to the words expressing mood, which is similar to Steps 4031 to 4035 and will not be elaborated here.

[0169] It should be noted that the above drawings only schematically illustrate the embodiments of the present application, but the present application is not limited thereto. For example, the execution order between various operations can be appropriately adjusted. In addition, some other operations can be added or some of the operations can be reduced (for example, the operations or steps corresponding to the dashed boxes in the drawings). Those skilled in the art can make appropriate modifications based on the above content, not limited to the records in the above drawings.

[0170] Each of the above embodiments only exemplarily illustrates the embodiments of the present application, but the present application is not limited thereto, and appropriate modifications can also be made based on each of the above embodiments. For example, each of the above embodiments can be used alone, or one or more of the above embodiments can be combined.

[0171] According to the above embodiments, by listening to sounds, the first type of sound information and the second type of sound information related to attention are detected. When the first type of sound information is detected, the operating parameters of the air handling device are adjusted according to the first air conditioning standard. When the second type of sound information is detected, the operating parameters of the air handling device are adjusted according to the second air conditioning standard. Thus, through detection in multiple dimensions and multiple logics, different types of sound information related to attention can be further distinguished; and the air handling device can be controlled accordingly according to different types of sound information related to attention, thereby improving the rationality of control, helping to improve the user's attention state, and enhancing the user experience.

[0172] Embodiment 2

[0173] Embodiment 2 of the present application provides an air handling system, which corresponds to the method described in Embodiment 1, and the specific content can refer to the description in Embodiment 1.

[0174] Figure 5 is a schematic diagram of the air handling system according to the embodiment of the present application. As Figure 5 shown, the air handling system 500 includes a sound collection device 510, a control device 520, and at least one air handling device 530. The sound collection device 510 detects the first type of sound information and the second type of sound information related to attention through sound listening; when the first type of sound information is detected, the control device 520 adjusts the operating parameters of the air handling device 530 according to the first air conditioning standard, and when the second type of sound information is detected, the control device 520 adjusts the operating parameters of the air handling device 530 according to the second air conditioning standard.

[0175] In some embodiments, the air handling device 530 includes at least one of a temperature adjustment device, a air supply device, an exhaust device, a humidity adjustment device, and an air purification device.

[0176] In some embodiments, the control device 520 includes at least one of a server, a gateway device, a central controller, a line controller, a remote controller, and a control board.

[0177] In some embodiments, the sound collection device 510 includes at least one of a central controller, a line controller, a remote controller, an indoor unit, an air quality sensor, a user terminal, and a smart speaker.

[0178] The air quality sensor can be used to obtain detection results related to air quality. For example, the air quality sensor can detect various air quality data, which includes but is not limited to at least one of the following: air temperature, air humidity, carbon dioxide concentration, fine particulate matter (PM2.5) concentration, inhalable particulate matter (PM10) concentration, volatile organic compound (VOC) concentration, total volatile organic compounds (TVOC) concentration, nitrogen oxide concentration, ozone concentration, etc.

[0179] The specific processing procedures of the above-mentioned various devices can refer to the relevant descriptions in Embodiment 1, which will not be elaborated here.

[0180] The above-mentioned various embodiments only exemplarily illustrate the embodiments of the present application, but the present application is not limited thereto, and appropriate modifications can also be made on the basis of the above-mentioned various embodiments. For example, the above-mentioned various embodiments can be used alone, or one or more of the above-mentioned various embodiments can be combined.

[0181] It should be noted that only the components or modules related to the present application are described above, but the present application is not limited thereto. The air treatment system can also add other components or modules or reduce the shown components or modules (for example, the components or modules corresponding to the dashed boxes in the drawings). For the specific content of these components or modules, reference can be made to the related art. In addition, for the sake of simplicity, only the connection relationships between the various components or modules are exemplarily shown in the drawings, but those skilled in the art should clearly understand that other connection relationships can also be adopted.

[0182] According to the above embodiments, by sound monitoring, the first type of sound information and the second type of sound information related to attention are detected. When the first type of sound information is detected, the operating parameters of the air treatment device are adjusted according to the first air conditioning standard. When the second type of sound information is detected, the operating parameters of the air treatment device are adjusted according to the second air conditioning standard. Thus, through detection in multiple dimensions and multiple logics, different types of attention-related sound information can be further distinguished; and the air treatment device can be controlled accordingly according to different types of attention-related sound information, thereby improving the rationality of control, helping to improve the user's attention state, and enhancing the user experience.

[0183] Embodiment 3

[0184] Embodiment 3 of the present application provides a control device for an air treatment device. The control device of the air treatment device corresponds to the control method of the air treatment device described in Embodiment 1, and the specific content can refer to the description in Embodiment 1.

[0185] Figure 6It is a schematic diagram of a control device of an air treatment device according to an embodiment of the present application. As Figure 6 shown, the device 600 includes:

[0186] A listening unit 601, which detects first-type sound information and second-type sound information related to attention through sound listening;

[0187] A control unit 602, which adjusts the operating parameters of the air treatment device according to a first air conditioning standard when the first-type sound information is detected, and adjusts the operating parameters of the air treatment device according to a second air conditioning standard when the second-type sound information is detected.

[0188] For the specific functions of the above-mentioned respective units, reference may be made to the relevant steps in Embodiment 1, which will not be elaborated here.

[0189] The above-mentioned respective embodiments only exemplarily illustrate the embodiments of the present application, but the present application is not limited thereto, and appropriate modifications can also be made on the basis of the above-mentioned respective embodiments. For example, the above-mentioned respective embodiments can be used alone, or one or more of the above-mentioned respective embodiments can be combined.

[0190] It should be noted that only the components or modules related to the present application are described above, but the present application is not limited thereto. The air treatment system can also add other components or modules or reduce the shown components or modules (for example, the components or modules corresponding to the dashed boxes in the drawings). For the specific content of these components or modules, reference can be made to the related art. In addition, for the sake of simplicity, only the connection relationships between the respective components or modules are exemplarily shown in the drawings, but those skilled in the art should clearly understand that other connection relationships can also be adopted.

[0191] According to the above embodiment, through sound listening, first-type sound information and second-type sound information related to attention are detected. When the first-type sound information is detected, the operating parameters of the air treatment device are adjusted according to a first air conditioning standard. When the second-type sound information is detected, the operating parameters of the air treatment device are adjusted according to a second air conditioning standard. Thus, through detections in multiple dimensions and multiple logics, different types of attention-related sound information can be further distinguished; and the air treatment device can be correspondingly controlled according to different types of attention-related sound information, thereby improving the rationality of control, helping to improve the user's attention state, and enhancing the user experience.

[0192] Embodiment 4

[0193] Embodiment 4 of the present application provides an electronic device. The steps executed by the processor of the electronic device correspond to all or part of the steps of the control method of the air treatment device described in Embodiment 1, and the specific content can be referred to the description in Embodiment 1.

[0194] Figure 7 It is a schematic diagram of the system composition of the electronic device according to an embodiment of the present application. As Figure 7 shown, the electronic device 700 may include a processor 710 and a memory 720; the memory 720 is coupled to the processor 710. It should be noted that this figure is exemplary; other types of structures can also be used to supplement or replace this structure to achieve telecommunication functions or other functions.

[0195] In one embodiment, the processor 710 may be configured to: detect first-type sound information and second-type sound information related to attention through sound listening; in the case of detecting the first-type sound information, adjust the operating parameters of the air treatment device according to the first air conditioning standard, and in the case of detecting the second-type sound information, adjust the operating parameters of the air treatment device according to the second air conditioning standard.

[0196] As Figure 7 shown, the electronic device 700 may further include: a communication module 730, an input unit 740, a display 750, a speaker 760, a microphone 770, and a power supply 780. It should be noted that the electronic device 700 does not necessarily have to include Figure 7 all the components shown in; in addition, the electronic device 700 may further include Figure 7 components not shown in, and reference can be made to related technologies.

[0197] As Figure 7 shown, the processor 710 is sometimes also referred to as a controller or an operation control, and may include a microprocessor or other processor devices and / or logic devices. The processor 710 receives inputs and controls the operations of the various components of the electronic device 700.

[0198] Among them, the memory 720 may be, for example, one or more of a buffer, a flash memory, a hard drive, a removable medium, a volatile memory, a non-volatile memory, or other suitable devices. Various data can be stored, and in addition, programs for executing relevant information can also be stored. And the processor 710 can execute the programs stored in the memory 720 to achieve information storage or processing, etc. The functions of other components are similar to those in the prior art and will not be described in detail here. The various components of the electronic device 700 can be implemented by dedicated hardware, firmware, software, or a combination thereof without departing from the scope of the present invention.

[0199] According to the above embodiments, by listening to sounds, the first type of sound information and the second type of sound information related to attention are detected. When the first type of sound information is detected, the operating parameters of the air handling device are adjusted according to the first air conditioning standard. When the second type of sound information is detected, the operating parameters of the air handling device are adjusted according to the second air conditioning standard. Thus, through detection in multiple dimensions and multiple logics, different types of sound information related to attention can be further distinguished; and the air handling device can be controlled accordingly based on different types of sound information related to attention, thereby improving the rationality of control, helping to improve the user's attention state, and enhancing the user experience.

[0200] The embodiment of the present application also provides a computer-readable program, which, when executed, causes the computer to execute the control method of the air handling device according to the embodiment of the present application.

[0201] The embodiment of the present application also provides a computer-readable storage medium, wherein the storage medium stores a computer program, and the computer-readable program causes the computer to execute the control method of the air handling device according to the embodiment of the present application.

[0202] The devices and methods above the embodiments of the present application can be implemented by hardware or by a combination of hardware and software. The present application relates to such a computer-readable program, which, when executed by a logic component, can cause the logic component to implement the above device or component, or cause the logic component to implement the above various methods or steps.

[0203] The embodiment of the present application also relates to a storage medium for storing the above program, such as a hard disk, a magnetic disk, an optical disk, a DVD, a flash memory, etc.

[0204] It should be noted that the limitations on the steps involved in the present application do not, on the premise of not affecting the implementation of the specific solution, determine the sequence of the steps. The steps written in front can be executed first, or can be executed later, or even can be executed simultaneously. As long as the solution can be implemented, it should be regarded as falling within the protection scope of the present application.

[0205] The above describes the present application in combination with specific implementation manners, but those skilled in the art should understand that these descriptions are exemplary and do not limit the protection scope of the present application. Those skilled in the art can make various variations and modifications to the present application according to the spirit and principle of the present application, and these variations and modifications are also within the scope of the present application.

Claims

1. A control method for an air treatment device, characterized in that, The method includes: Detecting first-type sound information and second-type sound information related to attention through sound monitoring; When the first-type sound information is detected, adjusting the operating parameters of the air handling device according to a first air conditioning standard, and when the second-type sound information is detected, adjusting the operating parameters of the air handling device according to a second air conditioning standard.

2. The method according to claim 1, wherein: The first-type sound information includes sound information related to user actions, or The second-type sound information includes keywords related to attention.

3. The method according to claim 1, characterized in that The first air conditioning standard includes: Adjusting the operating parameters of the air handling device according to the first number of times the first-type sound information is detected within a first preset time.

4. The method according to claim 3, wherein Adjusting the operating parameters of the air handling device according to the first number of times the first-type sound information is detected within a first preset time includes: When the first number of times the first-type sound information is detected within the first preset time exceeds a first preset value, reducing the target temperature of the air handling device.

5. The method according to claim 4, wherein: The reduction amplitude of the target temperature is determined according to the first number of times.

6. The method according to claim 4, wherein Adjusting the operating parameters of the air handling device according to the first number of times the first-type sound information is detected within a first preset time further includes: When the current target temperature is different from the initial target temperature, turning on the ventilation operation.

7. The method according to claim 3, wherein Adjusting the operating parameters of the air handling device according to the first number of times the first-type sound information is detected within a first preset time includes: When the first number of times the first-type sound information is detected within the first preset time does not exceed the first preset value and the current target temperature is different from the initial target temperature, increasing the target temperature of the air handling device; or When the first number of times the first-type sound information is detected within the first preset time does not exceed the first preset value, the current target temperature is different from the initial target temperature, and the number of times the first-type sound information is detected within a second preset time does not exceed a second preset value, increasing the target temperature of the air handling device.

8. The method according to claim 7, wherein Adjusting the operating parameters of the air handling device according to the first number of times the first-type sound information is detected within a first preset time further includes: When the increased target temperature is the same as the initial target temperature, turning off the ventilation operation.

9. The method according to claim 1, characterized in that, The second air conditioning standard includes: When the second-type sound information is detected, reducing the target temperature of the air handling device.

10. The method according to claim 9, wherein: The reduction amplitude of the target temperature is a preset amplitude; or The reduction amplitude of the target temperature is determined according to the keywords in the second-type sound information.

11. The method according to claim 9, wherein The second air conditioning standard further includes: When the current target temperature is different from the initial target temperature, turning on the ventilation operation.

12. The method according to claim 1, characterized in that The second air conditioning standard includes: If the second type of sound information is not detected within a third preset time after the detection of the second type of sound information, and the current target temperature is different from the initial target temperature, increase the target temperature of the air handling device; or If the second type of sound information is not detected within a third preset time after the increase of the target temperature of the air handling device, and the current target temperature is different from the initial target temperature, continue to increase the target temperature of the air handling device.

13. The method according to claim 12, wherein The second air conditioning standard further includes: When the increased target temperature is the same as the initial target temperature, turn off the ventilation operation.

14. The method according to claim 7 or 12, wherein The increase range of the target temperature is determined according to the difference between the initial target temperature and the first target temperature after the last reduction of the target temperature and the preset number of adjustment times.

15. The method according to claim 1, wherein The method further includes: When the first type of sound information and the second type of sound information are detected, preferentially adjust the operating parameters of the air handling device according to the second air conditioning standard.

16. An air treatment system, characterized in that, The air handling system includes at least one air handling device, a control device, and a sound collection device, The sound collection device detects the first type of sound information and the second type of sound information related to attention through sound monitoring; When the first type of sound information is detected, the control device adjusts the operating parameters of the air handling device according to the first air conditioning standard. When the second type of sound information is detected, the control device adjusts the operating parameters of the air handling device according to the second air conditioning standard.

17. The air handling system according to claim 16, wherein The air handling device includes at least one of a temperature adjustment device, a air supply device, an exhaust device, a humidity adjustment device, and an air purification device; or The control device includes at least one of a server, a gateway device, a centralized controller, a wired controller, a remote controller, and a control board; or The sound collection device includes at least one of a centralized controller, a wired controller, a remote controller, an indoor unit, an air quality sensor, a user terminal, and a smart speaker.

18. A control device for an air treatment device, characterized in that, The device includes: A monitoring unit that detects the first type of sound information and the second type of sound information related to attention through sound monitoring; A control unit that, when the first type of sound information is detected, adjusts the operating parameters of the air handling device according to the first air conditioning standard, and when the second type of sound information is detected, adjusts the operating parameters of the air handling device according to the second air conditioning standard.

19. An electronic device, characterized in that, The electronic device includes: A memory that stores a computer program; and A processor that, when executing the computer program, implements the method according to any one of claims 1-15.

20. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by the processor, it implements the method according to any one of claims 1-15.