A control method and device of an air conditioner, the air conditioner, and a storage medium

CN117722758BActive Publication Date: 2026-08-11ZHUHAI GREE REFRIGERATION TECH CENT OF ENERGY SAVING & ENVIRONMENTAL PROTECTION
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-12-11
Publication Date
2026-08-11

AI Technical Summary

Technical Problem

[0004]本发明的目的在于,提供一种空调的控制方法、装置、空调和存储介质,以解决相关方案中母婴空调都是以成年人的舒适性体验评价作为选择空调运行模式的主要参考依据,没有考虑到婴儿的体感舒适性,导致不能准确满足婴儿的需求的问题,达到通过依据婴儿的成长阶段将空调的母婴模式划分为不同的运行逻辑,在运行母婴模式时根据与婴儿实际成长阶段对应的运行逻辑控制空调运行,从而在空调运行过程中以婴儿的舒适性作为控制标准,实现了精细化的控制,满足了婴儿对室内环境的需求的效果

Benefits of technology

[0013] In conjunction with the above-described device, the present invention further provides an air conditioner, comprising: the control device for the air conditioner described above.

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Abstract

This invention discloses a control method, device, air conditioner, and storage medium for an air conditioner. The air conditioner has a mother-infant mode and other operating modes; each of the other operating modes has at least one operating logic; the mother-infant mode has at least two operating logics divided according to the infant's growth stage; the method includes: after the air conditioner is turned on, determining the current operating mode and the operating logic of the current operating mode based on the interval between the air conditioner's last shutdown, the operating mode of the air conditioner before the last shutdown, and the duration of the air conditioner's last operation in mother-infant mode; and controlling the air conditioner to operate according to the operating logic of the current operating mode. This solution, by dividing the mother-infant mode into different operating logics and controlling the air conditioner's operation according to the operating logic corresponding to the infant's actual growth stage, uses the infant's comfort as the control standard during air conditioner operation, achieving refined control and meeting the infant's needs for the indoor environment.
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Description

Technical Field

[0001] This invention belongs to the field of air conditioning technology, specifically relating to an air conditioning control method, device, air conditioner and storage medium, and more particularly to an air conditioning operation mode control method, device, air conditioner and storage medium. Background Technology

[0002] As air conditioners become more widely used, there are now dedicated air conditioners for mothers and babies. However, the internal comfort control methods of these air conditioners are relatively simple. Most of them use the comfort experience evaluation of adults as the main reference for selecting the air conditioner's operating mode, without taking into account the comfort of infants, which results in an inability to accurately meet the needs of infants.

[0003] The above content is only used to help understand the technical solution of the present invention and does not represent an admission that the above content is prior art. Summary of the Invention

[0004] The purpose of this invention is to provide a control method, device, air conditioner, and storage medium for an air conditioner, in order to solve the problem that related solutions for mother-and-baby air conditioners primarily use the comfort experience evaluation of adults as the main reference for selecting the air conditioner's operating mode, without considering the physical comfort of infants, thus failing to accurately meet the needs of infants. This invention achieves this by dividing the mother-and-baby mode of the air conditioner into different operating logics according to the infant's growth stage. When operating the mother-and-baby mode, the air conditioner is controlled according to the operating logic corresponding to the infant's actual growth stage, thereby using the infant's comfort as the control standard during air conditioner operation, achieving refined control, and meeting the infant's needs for the indoor environment.

[0005] This invention provides a control method for an air conditioner, wherein the air conditioner has a mother-infant mode and other operating modes applicable to an infant scenario; each of the other operating modes has at least one operating logic; the mother-infant mode has at least two operating logics divided according to the infant's growth stage; the at least two operating logics of the mother-infant mode correspond one-to-one with the infant's growth stage; the method includes: after the air conditioner is turned on, acquiring the interval time since the air conditioner was last turned off, the operating mode of the air conditioner before the last turn-off, and the duration of the last operation of the mother-infant mode; determining the current operating mode of the air conditioner and the operating logic of the current operating mode based on the interval time since the air conditioner was last turned off, the operating mode of the air conditioner before the last turn-off, and the duration of the last operation of the mother-infant mode; and controlling the air conditioner to operate according to the operating logic of the current operating mode.

[0006] In some implementations, the method further includes: after the air conditioner is turned on for the first time, obtaining the operating mode of the air conditioner selected by the user; determining whether the operating mode of the air conditioner selected by the user is the mother and baby mode; if the operating mode selected by the user is the mother and baby mode, determining the first operating logic of the mother and baby mode from at least two operating logics of the mother and baby mode based on the infant growth stage information input by the user; and controlling the air conditioner to operate the mother and baby mode with the first operating logic.

[0007] In some implementations, the current operating mode of the air conditioner and its operating logic are determined based on the interval since the last shutdown, the operating mode of the air conditioner before the last shutdown, and the duration of the last operation of the mother-and-baby mode. This includes: determining the relationship between the interval since the last shutdown and a set first interval; if the interval is greater than or equal to the set first interval, then determining the user-selected operating mode of the air conditioner as the current operating mode; then determining whether the current operating mode is the mother-and-baby mode; if the current operating mode is the mother-and-baby mode, then based on the infant's growth information input by the user... The system uses phase information to determine a second operating logic for the mother-and-baby mode from at least two operating logics, and sets the second operating logic as the operating logic for the current operating mode; or, if the interval time is less than a set first interval time, it determines whether the operating mode of the air conditioner before the last shutdown was the mother-and-baby mode; if the operating mode of the air conditioner before the last shutdown was the mother-and-baby mode, it sets the mother-and-baby mode as the current operating mode of the air conditioner; and based on the interval time between the last shutdown of the air conditioner and the duration of the last operation of the mother-and-baby mode, it determines a third operating logic for the mother-and-baby mode, and sets the third operating logic as the operating logic for the current operating mode.

[0008] In some implementations, determining the third operating logic of the mother-and-baby mode based on the interval since the air conditioner was last turned off and the duration of the air conditioner's last operation of the mother-and-baby mode includes: determining the relationship between the interval since the air conditioner was last turned off and a set second interval; if the interval since the air conditioner was last turned off is less than the set second interval, then the operating logic of the air conditioner during its last operation of the mother-and-baby mode is determined as the third operating logic of the mother-and-baby mode; or, if the interval since the air conditioner was last turned off is greater than or equal to the set second interval, then the duration of the air conditioner's last operation of the mother-and-baby mode is determined by the relationship between the interval since the air conditioner was last turned off and the duration of the air conditioner's last operation of the mother-and-baby mode. The relationship between the sum of the intervals since the last shutdown and the set third interval is determined. If the sum of the last running time of the air conditioner in the mother-and-baby mode and the interval since the last shutdown is less than the set third interval, then the operating logic of the air conditioner during the last operation of the mother-and-baby mode is determined as the third operating logic of the mother-and-baby mode. If the sum of the last running time of the air conditioner in the mother-and-baby mode and the interval since the last shutdown is greater than or equal to the set third interval, then the third operating logic of the mother-and-baby mode is determined from at least two operating logics of the mother-and-baby mode based on the infant's growth stage information input by the user.

[0009] In conjunction with the above method, another aspect of the present invention provides an air conditioner control device, wherein the air conditioner has a mother-infant mode and other operating modes applicable to an infant scenario; each of the other operating modes has at least one operating logic; the mother-infant mode has at least two operating logics divided according to the infant's growth stage; the at least two operating logics of the mother-infant mode correspond one-to-one with the infant's growth stage; the device includes: an acquisition unit configured to acquire, after the air conditioner is turned on, the interval time since the air conditioner was last turned off, the operating mode of the air conditioner before the last turn-off, and the duration of the last operation of the mother-infant mode; a control unit configured to determine the current operating mode of the air conditioner and the operating logic of the current operating mode based on the interval time since the air conditioner was last turned off, the operating mode of the air conditioner before the last turn-off, and the duration of the last operation of the mother-infant mode; the control unit is further configured to control the air conditioner to operate according to the operating logic of the current operating mode.

[0010] In some embodiments, the system further includes: the acquisition unit is further configured to acquire the operating mode of the air conditioner selected by the user after the air conditioner is turned on for the first time; the control unit is further configured to determine whether the operating mode of the air conditioner selected by the user is the mother-infant mode; the control unit is further configured to determine the first operating logic of the mother-infant mode from at least two operating logics of the mother-infant mode based on the infant growth stage information input by the user if the operating mode selected by the user is the mother-infant mode; the control unit is further configured to control the air conditioner to operate the mother-infant mode with the first operating logic.

[0011] In some implementations, the control unit determines the current operating mode of the air conditioner and the operating logic of the current operating mode based on the interval since the air conditioner was last turned off, the operating mode of the air conditioner before the last turn-off, and the duration of the last operation of the mother-and-baby mode. This includes: determining the relationship between the interval since the last turn-off and a set first interval; if the interval is greater than or equal to the set first interval, then determining the user-selected operating mode of the air conditioner as the current operating mode; then determining whether the current operating mode of the air conditioner is the mother-and-baby mode; if the current operating mode of the air conditioner is the mother-and-baby mode, then based on the baby information input by the user... Information on the child's growth stage is collected. From at least two operating logics of the mother-infant mode, a second operating logic of the mother-infant mode is determined, and the second operating logic is determined as the operating logic of the current operating mode; or, if the interval time is less than a set first interval time, it is determined whether the operating mode of the air conditioner before the last shutdown was the mother-infant mode; if the operating mode of the air conditioner before the last shutdown was the mother-infant mode, the mother-infant mode is determined as the current operating mode of the air conditioner; and based on the interval time between the last shutdown of the air conditioner and the duration of the last operation of the mother-infant mode, a third operating logic of the mother-infant mode is determined, and the third operating logic is determined as the operating logic of the current operating mode.

[0012] In some implementations, the control unit determines a third operating logic for the mother-and-baby mode based on the interval since the air conditioner was last turned off and the duration of the last operation of the mother-and-baby mode. This includes: determining the relationship between the interval since the air conditioner was last turned off and a set second interval; if the interval since the air conditioner was last turned off is less than the set second interval, then the operating logic of the air conditioner during its last operation of the mother-and-baby mode is determined as the third operating logic for the mother-and-baby mode; or, if the interval since the air conditioner was last turned off is greater than or equal to the set second interval, then the duration of the last operation of the mother-and-baby mode is determined. The relationship between the sum of the intervals between the last time the air conditioner was turned off and the set third interval time is as follows: If the sum of the last time the air conditioner ran in the mother-infant mode and the interval between the last time the air conditioner was turned off is less than the set third interval time, then the operating logic of the air conditioner when it last ran in the mother-infant mode is determined as the third operating logic of the mother-infant mode; if the sum of the last time the air conditioner ran in the mother-infant mode and the interval between the last time the air conditioner was turned off is greater than or equal to the set third interval time, then the third operating logic of the mother-infant mode is determined from at least two operating logics of the mother-infant mode based on the infant growth stage information input by the user.

[0013] In conjunction with the above-described device, the present invention further provides an air conditioner, comprising: the control device for the air conditioner described above.

[0014] In conjunction with the above method, the present invention further provides a storage medium comprising a stored program, wherein, when the program is executed, the device on which the storage medium is located controls the air conditioner control method described above to be performed.

[0015] The present invention divides the operating logic of the air conditioner's mother-and-baby mode according to the infant's growth stages. Based on the interval since the air conditioner was last turned off, the operating mode before the last shutdown, and the duration of the last operation in mother-and-baby mode, the current operating mode and its operating logic are determined, and the air conditioner is controlled to operate according to the current mode's logic. Therefore, when the air conditioner operates in mother-and-baby mode, the infant's growth stage is used as the standard for air conditioner operation, fully considering the infant's comfort, achieving refined control, and meeting the infant's needs for the indoor environment.

[0016] Other features and advantages of the invention will be set forth in the description which follows, and will be apparent in part from the description, or may be learned by practicing the invention.

[0017] The technical solution of the present invention will be further described in detail below with reference to the accompanying drawings and embodiments. Attached Figure Description

[0018] Figure 1 This is a flowchart illustrating an embodiment of the air conditioner control method of the present invention;

[0019] Figure 2 This is a flowchart illustrating an embodiment of the control method after the air conditioner is first turned on in the present invention;

[0020] Figure 3 This is a flowchart illustrating an embodiment of the method for determining the operating mode and operating logic in the present invention;

[0021] Figure 4 This is a flowchart illustrating an embodiment of the method of the present invention for determining the operating logic of the mother-infant mode;

[0022] Figure 5 This is a schematic diagram of the structure of an embodiment of the air conditioner control device of the present invention;

[0023] Figure 6 A schematic diagram of a structural embodiment of the functional module layout of the air conditioner of the present invention;

[0024] Figure 7 This is a schematic block diagram illustrating one embodiment of the operating mode of the air conditioner in the method of the present invention;

[0025] Figure 8 This is a flowchart illustrating an embodiment of the air conditioner operation mode control method of the present invention.

[0026] Referring to the accompanying drawings, the reference numerals in the embodiments of the present invention are as follows:

[0027] 102 - Acquisition unit; 104 - Control unit. Detailed Implementation

[0028] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of this invention will be clearly and completely described below in conjunction with specific embodiments and corresponding drawings. Obviously, the described embodiments are only a part of the embodiments of this invention, and not all of them. Based on the embodiments of this invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this invention.

[0029] According to an embodiment of the present invention, an air conditioner control method is provided. The air conditioner has a mother-infant mode and other operating modes applicable to infant scenarios. Each of the other operating modes has at least one operating logic. The mother-infant mode has at least two operating logics divided according to the infant's growth stage. The differences between the operating logics mainly include the set temperature and the air conditioner operation control method. The at least two operating logics of the mother-infant mode correspond one-to-one with the infant's growth stage. The infant's growth stage can be divided according to the infant's month of birth, the infant's physical health status, or by the user, and is not limited herein. Figure 7 As shown, the infant stage is divided according to months, from birth to two years of age. Infants under one year old are more sensitive to temperature changes and have less independent activity; therefore, the time intervals between these stages are short, allowing for precise time-based control, primarily focusing on temperature, humidity, and air purification. As infants grow, their immunity strengthens, and their independent activity increases, leading to longer time intervals. During this stage, while maintaining environmental comfort, adaptability and control tailored to their activity levels are considered, resulting in enhanced fresh air and temperature fluctuation control. As infants continue to grow, after 18 months, the time intervals for environmental air quality control are further lengthened, helping them adapt to their new living environment.

[0030] This air conditioner also has other operating modes, such as Figure 7 As shown, it includes a child mode and an adult mode, each with its own corresponding air conditioning operation logic.

[0031] The structure and functional modules of this air conditioner, such as Figure 6 As shown, the indoor unit of this air conditioner includes an air conditioning panel, an air conditioning casing, an air distribution structure, and an air guide plate. The indoor unit also includes a purification module for purifying the air, a sterilization module for eliminating indoor bacteria, a fresh air module and a humidification module providing fresh air and humidification functions, a monitoring module and a voice module providing indoor monitoring and voice prompt functions. It can effectively process indoor air according to different operating modes and can switch between operating modes based on real-time user feedback.

[0032] like Figure 1 The diagram shows a flowchart of an embodiment of the method of the present invention. The air conditioner control method may include steps S110 to S130.

[0033] In step S110, after the air conditioner is turned on, the interval time between the last time the air conditioner was turned off, the operating mode of the air conditioner before the last time it was turned off, and the duration of the last time the air conditioner ran the mother and baby mode are obtained.

[0034] In step S120, the current operating mode of the air conditioner and the operating logic of the current operating mode are determined based on the interval between the last time the air conditioner was turned off, the operating mode of the air conditioner before the last time it was turned off, and the duration of the last time the air conditioner operated the mother and baby mode.

[0035] In step S130, the air conditioner is controlled to operate according to the operating logic of the current operating mode.

[0036] This solution divides the air conditioner's mother-and-baby mode according to the baby's growth stage. In mother-and-baby mode, the air conditioner's operation is controlled according to the determined operating logic. Thus, the baby's comfort is used as the control standard during the air conditioner's operation, achieving refined control and meeting the baby's needs for the indoor environment.

[0037] In some implementations, the process also includes determining the operating mode and operating logic and controlling the operation of the air conditioner upon initial startup and operation. For example... Figure 2 As shown, the process specifically includes steps S210 to S240.

[0038] Step S210: After the air conditioner is turned on for the first time, obtain the operating mode of the air conditioner selected by the user.

[0039] If the interval since the air conditioner was last turned off is not recorded after it is turned on, it is considered to be the first time the air conditioner has been turned on, and therefore there is no historical data to infer the current operating mode. Therefore, the user needs to manually select the desired operating mode.

[0040] Step S220: Determine whether the operating mode of the air conditioner selected by the user is the mother and baby mode.

[0041] Step S230: If the user selects the mother-infant mode as the operating mode, then based on the infant growth stage information input by the user, the first operating logic of the mother-infant mode is determined from at least two operating logics of the mother-infant mode.

[0042] Information about an infant's developmental stage can include their month of birth or their health status. Since child mode and adult mode each correspond to a single operational logic, while mother-infant mode involves multiple operational logics, the operational logic for mother-infant mode needs to be determined when the user selects it. The operational logic of mother-infant mode corresponds one-to-one with the infant's developmental stage; therefore, the corresponding operational logic can be determined based on the infant's developmental stage information entered by the user.

[0043] Step S240: Control the air conditioner to run the mother and baby mode according to the first operating logic.

[0044] Figure 8This is a flowchart illustrating an embodiment of the air conditioner operation mode control method of the present invention, as shown below. Figure 8 As shown, the control method of the present invention includes:

[0045] Step 1: After the air conditioner is turned on, determine whether it is the first time it is running. If it is the first time, proceed to Step 2. If it is not the first time, calculate the interval Δt between the last time it was turned off and proceed to Step 3.

[0046] Step 2: The user is prompted by voice to select the air conditioner's operating mode. If the user selects child mode or adult mode, the air conditioner's memory directly loads the corresponding mode, the compressor starts, the air conditioner begins to run, and the start time of the first run is recorded. Then, step 6 is executed. If the user selects mother and baby mode, the user is prompted to enter the baby's stage information. The air conditioner's memory loads the corresponding operating logic of the mother and baby mode based on the baby's stage information, the compressor starts, the air conditioner begins to run, and the start time of the first run is recorded. Then, step 6 is executed.

[0047] In some implementations, step S120 involves determining the current operating mode of the air conditioner and the specific process of its operating logic based on the interval since the last shutdown, the operating mode of the air conditioner before the last shutdown, and the duration of the last operation of the mother-and-baby mode. Figure 3 As shown, it includes steps S310 to S350.

[0048] Step S310: Determine the relationship between the interval time since the last shutdown of the air conditioner and the set first interval time.

[0049] Step S320: If the interval time is greater than or equal to the set first interval time, then the operating mode of the air conditioner selected by the user is determined as the current operating mode of the air conditioner; then, it is determined whether the current operating mode of the air conditioner is the mother and baby mode.

[0050] Step S330: If the current operating mode of the air conditioner is the mother and baby mode, then based on the infant growth stage information input by the user, the second operating logic of the mother and baby mode is determined from at least two operating logics of the mother and baby mode, and the second operating logic is determined as the operating logic of the current operating mode.

[0051] Specifically, if the interval between the last time the air conditioner was turned off is too long, such as half a month or a month, it is determined that the air conditioner has not been used for a long time. Therefore, the air conditioner's operating mode used before the last time it was turned off is not suitable for the current condition, and the user needs to reset the air conditioner's operating mode.

[0052] If the user resets the operating mode to a child mode or adult mode, which has a single control logic, then the corresponding control logic is recognized as the operating logic of the current operating mode. If the user resets the operating mode to mother and baby mode, since mother and baby mode has multiple operating logics, the operating logic of mother and baby mode needs to be determined when the user selects to execute it. The operating logic of mother and baby mode corresponds one-to-one with the infant's developmental stages, so the corresponding operating logic can be determined based on the infant's developmental stage information input by the user.

[0053] Step S340: If the interval time is less than the set first interval time, determine whether the operating mode of the air conditioner before it was last turned off was the mother and baby mode.

[0054] Step S350: If the operating mode of the air conditioner before the last shutdown was the mother and baby mode, then the mother and baby mode is determined as the current operating mode of the air conditioner; and based on the interval between the last shutdown of the air conditioner and the duration of the last operation of the mother and baby mode, the third operating logic of the mother and baby mode is determined, and the third operating logic is determined as the operating logic of the current operating mode.

[0055] Specifically, if the last operating mode was the mother and baby mode, it means that the air conditioner is more likely to operate in the mother and baby mode this time. Therefore, the mother and baby mode is directly used as the operating mode for this air conditioner.

[0056] If the air conditioner was not in the Mother & Baby mode before it was last turned off, the user will be prompted by voice to switch to Mother & Baby mode. If the user chooses to switch, the operating logic of Mother & Baby mode will be determined based on the time elapsed since the last shutdown and the duration of the last operation in Mother & Baby mode. If the user chooses not to switch, the air conditioner will continue operating in the last running mode. If the user makes the same choice three times in the same situation, the system will directly enter the corresponding mode without prompting the user to switch modes again. For example, if the user chooses to switch to Mother & Baby mode three times in a row, subsequent similar situations will not prompt the user again and the system will directly switch to Mother & Baby mode. If the user chooses not to switch three times in a row, subsequent similar situations will not prompt the user again and the system will directly operate in the last running mode.

[0057] In some implementations, in step S350, the specific process of determining the third operating logic of the mother-infant mode is based on the interval between the air conditioner's last shutdown and the duration of the air conditioner's last operation of the mother-infant mode, such as... Figure 4 As shown, it includes steps S410 to S450.

[0058] Step S410: Determine the relationship between the interval since the air conditioner last turned off and the set second interval. The set second interval is less than the set first interval.

[0059] Step S420: If the interval between the last time the air conditioner was turned off is less than the set second interval time, then the operating logic of the air conditioner when it last ran the mother and baby mode is determined as the third operating logic of the mother and baby mode.

[0060] The air conditioner was in the mother and baby mode last time, and the time since then has been short, so the baby's condition has not changed much. Therefore, it can continue to run according to the operating logic of the last mother and baby mode.

[0061] Step S430: If the interval between the last time the air conditioner was turned off is greater than or equal to the set second interval time, then determine the relationship between the sum of the last time the air conditioner ran in the mother and baby mode and the interval between the last time the air conditioner was turned off, and the set third interval time.

[0062] Since the interval between the last use of the air conditioner in the mother-infant mode is relatively long, the baby's condition may have changed, so it is necessary to further determine the operating logic of the mother-infant mode.

[0063] Step S440: If the sum of the running time of the air conditioner when it last ran the mother and baby mode and the interval time between the last shutdown of the air conditioner is less than the set third interval time, then the running logic of the air conditioner when it last ran the mother and baby mode is determined as the third running logic of the mother and baby mode.

[0064] The sum of the air conditioner's last run time in Mother & Baby mode and the interval since the last time it was turned off represents the time elapsed since the last activation of Mother & Baby mode. This time interval allows for more accurate assessment of changes in the baby's condition. Therefore, setting a third interval could represent the interval between stages of the baby's development, such as... Figure 7 As shown, the third interval can be set to one month or three months. By comparing the interval since the last start of the mother-infant mode with the interval between the baby's developmental stages, it is possible to more accurately determine the baby's developmental changes and thus decide whether to adjust the operating logic of the mother-infant mode.

[0065] If the sum of the last running time of the air conditioner in the mother-infant mode and the interval since the air conditioner was last turned off is less than the set third interval, it means that the baby's condition has not changed much and has not entered the next stage of growth. Therefore, the air conditioner will continue to run according to the operating logic of the last mother-infant mode.

[0066] Step S450: If the sum of the running time of the last time the air conditioner ran the mother-infant mode and the interval time between the last time the air conditioner was turned off is greater than or equal to the set third interval time, then the third running logic of the mother-infant mode is determined from at least two running logics of the mother-infant mode based on the infant growth stage information input by the user.

[0067] If the sum of the last running time of the air conditioner in the mother-baby mode and the time since the air conditioner was last turned off is greater than or equal to the set third interval, it indicates that the baby's condition has changed significantly and has entered the next growth stage or other stages. Therefore, the user can be prompted to enter the baby's growth stage information, and the operating logic of the mother-baby mode can be determined based on the growth stage information.

[0068] Optionally, if the sum of the last running time of the air conditioner in the mother-infant mode and the interval between the last time the air conditioner was turned off is greater than or equal to the set third interval time, then the mother-infant mode will be run according to the operating logic corresponding to the next growth stage.

[0069] The control method of the present invention, such as Figure 8 As shown, it also includes:

[0070] Step 3: Determine the relationship between the interval time Δt and the set time t2. If Δt ≥ t2, proceed to step 2; if Δt < t2, determine whether the air conditioner was in the mother-and-baby mode during its last operation; if the last operating mode was child mode or adult mode, prompt the user via voice to switch to mother-and-baby mode. If the user selects no, proceed to step 2; if the user selects yes, switch to mother-and-baby mode, start the air conditioner, and then proceed to step 6; if the last operating mode was mother-and-baby mode, proceed to step 4.

[0071] Step 4: Determine the relationship between the interval time Δt and the set time t1. If Δt < t1, load the operating logic from the last run of the mother-infant mode, control the air conditioner to start running, and then execute step 6; if t2 > Δt ≥ t1, then execute step 5.

[0072] Step 5: Calculate the cumulative duration t0 of the last stable operation of the air conditioner in the mother-infant mode, and determine whether t0 + Δt is greater than the segmented control duration. If t0 + Δt ≤ segmented control duration, load the operating logic from the last operation of the mother-infant mode, control the air conditioner to start running, and then execute Step 6; if t0 + Δt > segmented control duration, load the corresponding mother-infant mode operating logic according to the baby's growth stage, control the air conditioner to start running, and then execute Step 6.

[0073] Step 6: After the air conditioner is turned off, calculate the time when the air conditioner was turned off; if the air conditioner is running in the mother and baby mode this time, calculate and store the running time of the mother and baby mode this time.

[0074] The technical solution of this embodiment divides the operating logic of the air conditioner's mother-and-baby mode according to the infant's growth stages. Based on the interval since the air conditioner was last turned off, the operating mode before the last shutdown, and the duration of the last operation in mother-and-baby mode, the current operating mode and its operating logic are determined, and the air conditioner is controlled to operate according to this logic. Therefore, when the air conditioner operates in mother-and-baby mode, the infant's growth stage is used as the standard for operation, fully considering the infant's comfort, achieving refined control, and meeting the infant's needs for the indoor environment.

[0075] According to an embodiment of the present invention, an air conditioner control device corresponding to the air conditioner control method is also provided. The air conditioner has a mother-infant mode applied to an infant scenario and other operating modes; each of the other operating modes has at least one operating logic; the mother-infant mode has at least two operating logics divided according to the infant's growth stage; the differences between the operating logics mainly include the set temperature and the air conditioner operation control method, etc. The at least two operating logics of the mother-infant mode correspond one-to-one with the infant's growth stage; the infant's growth stage can be divided according to the infant's month of birth, or according to the infant's physical health status, or can be divided by the user, without limitation. Figure 7 As shown, the infant stage is divided according to months, from birth to two years of age. Infants under one year old are more sensitive to temperature changes and have less independent activity; therefore, the time intervals between these stages are short, allowing for precise time-based control, primarily focusing on temperature, humidity, and air purification. As infants grow, their immunity strengthens, and their independent activity increases, leading to longer time intervals. During this stage, while maintaining environmental comfort, adaptability and control tailored to their activity levels are considered, resulting in enhanced fresh air and temperature fluctuation control. As infants continue to grow, after 18 months, the time intervals for environmental air quality control are further lengthened, helping them adapt to their new living environment.

[0076] This air conditioner also has other operating modes, such as Figure 7 As shown, it includes a child mode and an adult mode, each with its own corresponding air conditioning operation logic.

[0077] The structure and functional modules of this air conditioner, such as Figure 6As shown, the indoor unit of this air conditioner includes an air conditioning panel, an air conditioning casing, an air distribution structure, and an air guide plate. The indoor unit also includes a purification module for purifying the air, a sterilization module for eliminating indoor bacteria, a fresh air module and a humidification module providing fresh air and humidification functions, a monitoring module and a voice module providing indoor monitoring and voice prompt functions. It can effectively process indoor air according to different operating modes and can switch between operating modes based on real-time user feedback.

[0078] See Figure 5 The diagram shows a structural schematic of an embodiment of the device of the present invention. The control device for the air conditioner may include: an acquisition unit 102 and a control unit 104.

[0079] The acquisition unit 102 is configured to acquire, after the air conditioner is turned on, the interval time since the air conditioner was last turned off, the operating mode of the air conditioner before the last turn-off, and the duration of the last operation of the mother-and-baby mode. For the specific functions and processing of this acquisition unit 102, please refer to step S110.

[0080] Control unit 104 is configured to determine the current operating mode of the air conditioner and the operating logic of the current operating mode based on the interval since the air conditioner was last turned off, the operating mode of the air conditioner before the last turn-off, and the duration of the last operation of the mother-and-baby mode. The specific functions and processing of this control unit 104 are described in step S120.

[0081] The control unit 104 is also configured to control the air conditioner to operate according to the operating logic of the current operating mode. For the specific functions and processing of the control unit 104, please refer to step S130.

[0082] This solution divides the air conditioner's mother-and-baby mode according to the baby's growth stage. In mother-and-baby mode, the air conditioner's operation is controlled according to the determined operating logic. Thus, the baby's comfort is used as the control standard during the air conditioner's operation, achieving refined control and meeting the baby's needs for the indoor environment.

[0083] In some embodiments, the control device further includes:

[0084] The acquisition unit 102 is further configured to acquire the operating mode of the air conditioner selected by the user after the air conditioner is turned on for the first time. For the specific functions and processing of the acquisition unit 102, please refer to step S210.

[0085] If the interval since the air conditioner was last turned off is not recorded after it is turned on, it is considered to be the first time the air conditioner has been turned on, and therefore there is no historical data to infer the current operating mode. Therefore, the user needs to manually select the desired operating mode.

[0086] The control unit 104 is also configured to determine whether the operating mode of the air conditioner selected by the user is the mother-and-baby mode. The specific functions and processing of the control unit 104 are described in step S220.

[0087] The control unit 104 is further configured to, if the user selects the mother-infant mode as the operating mode, determine the first operating logic of the mother-infant mode from at least two operating logics of the mother-infant mode based on the infant developmental stage information input by the user. The specific functions and processing of this control unit 104 are described in step S230.

[0088] Information about an infant's developmental stage can include their month of birth or their health status. Since child mode and adult mode each correspond to a single operational logic, while mother-infant mode involves multiple operational logics, the operational logic for mother-infant mode needs to be determined when the user selects it. The operational logic of mother-infant mode corresponds one-to-one with the infant's developmental stage; therefore, the corresponding operational logic can be determined based on the infant's developmental stage information entered by the user.

[0089] The control unit 104 is also configured to control the air conditioner to operate the mother-and-baby mode according to the first operating logic. The specific functions and processing of the control unit 104 are described in step S240.

[0090] Figure 8 This is a flowchart illustrating an embodiment of the air conditioner operation mode control method of the present invention, as shown below. Figure 8 As shown, the control method of the present invention includes:

[0091] Step 1: After the air conditioner is turned on, determine whether it is the first time it is running. If it is the first time, proceed to Step 2. If it is not the first time, calculate the interval Δt between the last time it was turned off and proceed to Step 3.

[0092] Step 2: The user is prompted by voice to select the air conditioner's operating mode. If the user selects child mode or adult mode, the air conditioner's memory directly loads the corresponding mode, the compressor starts, the air conditioner begins to run, and the start time of the first run is recorded. Then, step 6 is executed. If the user selects mother and baby mode, the user is prompted to enter the baby's stage information. The air conditioner's memory loads the corresponding operating logic of the mother and baby mode based on the baby's stage information, the compressor starts, the air conditioner begins to run, and the start time of the first run is recorded. Then, step 6 is executed.

[0093] In some embodiments, the control unit 104 determines the current operating mode of the air conditioner and the operating logic of the current operating mode based on the interval since the air conditioner was last turned off, the operating mode of the air conditioner before the last turn-off, and the duration of the last operation of the mother-and-baby mode, including:

[0094] The control unit 104 is further configured to determine the relationship between the interval since the air conditioner was last turned off and a set first interval. The specific functions and processing of this control unit 104 are described in step S310.

[0095] The control unit 104 is further configured to, if the interval time is greater than or equal to a set first interval time, determine the operating mode of the air conditioner selected by the user as the current operating mode of the air conditioner; then, determine whether the current operating mode of the air conditioner is the mother-infant mode. The specific functions and processing of this control unit 104 are described in step S320.

[0096] The control unit 104 is further configured to, if the current operating mode of the air conditioner is the mother-infant mode, determine the second operating logic of the mother-infant mode from at least two operating logics of the mother-infant mode based on the infant's growth stage information input by the user, and determine the second operating logic as the operating logic of the current operating mode. The specific functions and processing of this control unit 104 are described in step S330.

[0097] Specifically, if the interval between the last time the air conditioner was turned off is too long, such as half a month or a month, it is determined that the air conditioner has not been used for a long time. Therefore, the air conditioner's operating mode used before the last time it was turned off is not suitable for the current condition, and the user needs to reset the air conditioner's operating mode.

[0098] If the user resets the operating mode to a child mode or adult mode, which has a single control logic, then the corresponding control logic is recognized as the operating logic of the current operating mode. If the user resets the operating mode to mother and baby mode, since mother and baby mode has multiple operating logics, the operating logic of mother and baby mode needs to be determined when the user selects to execute it. The operating logic of mother and baby mode corresponds one-to-one with the infant's developmental stages, so the corresponding operating logic can be determined based on the infant's developmental stage information input by the user.

[0099] The control unit 104 is further configured to determine whether the operating mode of the air conditioner before its last shutdown was the mother-and-baby mode if the interval time is less than a set first interval time. The specific functions and processing of this control unit 104 are described in step S340.

[0100] The control unit 104 is further configured to, if the air conditioner's operating mode before the last shutdown was the mother-and-baby mode, determine the mother-and-baby mode as the current operating mode of the air conditioner; and, based on the interval between the last shutdown and the last time the air conditioner operated in the mother-and-baby mode, determine a third operating logic for the mother-and-baby mode, and set the third operating logic as the operating logic for the current operating mode. The specific functions and processing of this control unit 104 are described in step S350.

[0101] Specifically, if the last operating mode was the mother and baby mode, it means that the air conditioner is more likely to operate in the mother and baby mode this time. Therefore, the mother and baby mode is directly used as the operating mode for this air conditioner.

[0102] If the air conditioner was not in the Mother & Baby mode before it was last turned off, the user will be prompted by voice to switch to Mother & Baby mode. If the user chooses to switch, the operating logic of Mother & Baby mode will be determined based on the time elapsed since the last shutdown and the duration of the last operation in Mother & Baby mode. If the user chooses not to switch, the air conditioner will continue operating in the last running mode. If the user makes the same choice three times in the same situation, the system will directly enter the corresponding mode without prompting the user to switch modes again. For example, if the user chooses to switch to Mother & Baby mode three times in a row, subsequent similar situations will not prompt the user again and the system will directly switch to Mother & Baby mode. If the user chooses not to switch three times in a row, subsequent similar situations will not prompt the user again and the system will directly operate in the last running mode.

[0103] In some embodiments, the control unit 104 determines a third operating logic for the mother-infant mode based on the interval since the air conditioner was last turned off and the duration of the last operation of the mother-infant mode, including:

[0104] The control unit 104 is further configured to determine the relationship between the interval since the air conditioner last shut down and a set second interval. The set second interval is less than the set first interval. The specific functions and processing of this control unit 104 are described in step S410.

[0105] The control unit 104 is further configured to, if the interval between the last shutdown of the air conditioner and its last operation is less than a set second interval, determine the operating logic of the air conditioner during its last operation of the mother-and-baby mode as the third operating logic of the mother-and-baby mode. The specific functions and processing of this control unit 104 are described in step S420.

[0106] The air conditioner was in the mother and baby mode last time, and the time since then has been short, so the baby's condition has not changed much. Therefore, it can continue to run according to the operating logic of the last mother and baby mode.

[0107] The control unit 104 is further configured to determine the relationship between the sum of the air conditioner's last operation time in the mother-and-baby mode and the air conditioner's last shutdown time and the set third interval time if the interval between the last shutdown time and the air conditioner's last operation time is greater than or equal to a set second interval time. The specific functions and processing of this control unit 104 are described in step S430.

[0108] Since the interval between the last use of the air conditioner in the mother-infant mode is relatively long, the baby's condition may have changed, so it is necessary to further determine the operating logic of the mother-infant mode.

[0109] The control unit 104 is further configured to, if the sum of the duration of the last operation of the mother-infant mode by the air conditioner and the interval since the last shutdown of the air conditioner is less than a set third interval, then determine the operating logic of the air conditioner during its last operation of the mother-infant mode as the third operating logic of the mother-infant mode. The specific functions and processing of this control unit 104 are described in step S440.

[0110] The sum of the air conditioner's last run time in Mother & Baby mode and the interval since the last time it was turned off represents the time elapsed since the last activation of Mother & Baby mode. This time interval allows for more accurate assessment of changes in the baby's condition. Therefore, setting a third interval could represent the interval between stages of the baby's development, such as... Figure 7 As shown, the third interval can be set to one month or three months. By comparing the interval since the last start of the mother-infant mode with the interval between the baby's developmental stages, it is possible to more accurately determine the baby's developmental changes and thus decide whether to adjust the operating logic of the mother-infant mode.

[0111] If the sum of the last running time of the air conditioner in the mother-infant mode and the interval since the air conditioner was last turned off is less than the set third interval, it means that the baby's condition has not changed much and has not entered the next stage of growth. Therefore, the air conditioner will continue to run according to the operating logic of the last mother-infant mode.

[0112] The control unit 104 is further configured to determine a third operating logic for the mother-infant mode from at least two operating logics based on the infant growth stage information input by the user if the sum of the duration of the last operation of the mother-infant mode by the air conditioner and the interval between the last shutdown of the air conditioner is greater than or equal to a set third interval. The specific functions and processing of this control unit 104 are described in step S450.

[0113] If the sum of the last running time of the air conditioner in the mother-baby mode and the time since the air conditioner was last turned off is greater than or equal to the set third interval, it indicates that the baby's condition has changed significantly and has entered the next growth stage or other stages. Therefore, the user can be prompted to enter the baby's growth stage information, and the operating logic of the mother-baby mode can be determined based on the growth stage information.

[0114] Optionally, if the sum of the last running time of the air conditioner in the mother-infant mode and the interval between the last time the air conditioner was turned off is greater than or equal to the set third interval time, then the mother-infant mode will be run according to the operating logic corresponding to the next growth stage.

[0115] The control method of the present invention, such as Figure 8 As shown, it also includes:

[0116] Step 3: Determine the relationship between the interval time Δt and the set time t2. If Δt ≥ t2, proceed to step 2; if Δt < t2, determine whether the air conditioner was in the mother-and-baby mode during its last operation; if the last operating mode was child mode or adult mode, prompt the user via voice to switch to mother-and-baby mode. If the user selects no, proceed to step 2; if the user selects yes, switch to mother-and-baby mode, start the air conditioner, and then proceed to step 6; if the last operating mode was mother-and-baby mode, proceed to step 4.

[0117] Step 4: Determine the relationship between the interval time Δt and the set time t1. If Δt < t1, load the operating logic from the last run of the mother-infant mode, control the air conditioner to start running, and then execute step 6; if t2 > Δt ≥ t1, then execute step 5.

[0118] Step 5: Calculate the cumulative duration t0 of the last stable operation of the air conditioner in the mother-infant mode, and determine whether t0 + Δt is greater than the segmented control duration. If t0 + Δt ≤ segmented control duration, load the operating logic from the last operation of the mother-infant mode, control the air conditioner to start running, and then execute Step 6; if t0 + Δt > segmented control duration, load the corresponding mother-infant mode operating logic according to the baby's growth stage, control the air conditioner to start running, and then execute Step 6.

[0119] Step 6: After the air conditioner is turned off, calculate the time when the air conditioner was turned off; if the air conditioner is running in the mother and baby mode this time, calculate and store the running time of the mother and baby mode this time.

[0120] Since the processing and functions implemented by the device in this embodiment are basically the same as the embodiments, principles and examples of the aforementioned methods, any details not covered in the description of this embodiment can be found in the relevant descriptions in the aforementioned embodiments, and will not be repeated here.

[0121] The technical solution of this invention divides the operating logic of the air conditioner's mother-and-baby mode according to the infant's growth stages. Based on the interval since the air conditioner was last turned off, the operating mode before the last shutdown, and the duration of the last operation in mother-and-baby mode, the current operating mode and its operating logic are determined, and the air conditioner is controlled to operate according to this logic. Therefore, when the air conditioner operates in mother-and-baby mode, the infant's growth stage is used as the standard for operation, fully considering the infant's comfort, achieving refined control, and meeting the infant's needs for the indoor environment.

[0122] According to an embodiment of the present invention, an air conditioner corresponding to an air conditioner control device is also provided. This air conditioner may include the air conditioner control device described above.

[0123] Since the processing and functions implemented by the air conditioner in this embodiment are basically the same as the embodiments, principles and examples of the aforementioned device, any details not covered in the description of this embodiment can be found in the relevant descriptions in the aforementioned embodiments, and will not be repeated here.

[0124] The technical solution of this invention divides the operating logic of the air conditioner's mother-and-baby mode according to the infant's growth stages. Based on the interval since the air conditioner was last turned off, the operating mode before the last shutdown, and the duration of the last operation in mother-and-baby mode, the current operating mode and its operating logic are determined, and the air conditioner is controlled to operate according to this logic. Therefore, when the air conditioner operates in mother-and-baby mode, the infant's growth stage is used as the standard for operation, fully considering the infant's comfort, achieving refined control, and meeting the infant's needs for the indoor environment.

[0125] According to an embodiment of the present invention, a storage medium corresponding to an air conditioner control method is also provided, the storage medium including a stored program, wherein the program controls the device where the storage medium is located to execute the air conditioner control method described above when it is executed.

[0126] Since the processing and functions implemented by the storage medium in this embodiment are basically the same as the embodiments, principles and examples of the aforementioned methods, any details not covered in this embodiment can be found in the relevant descriptions in the aforementioned embodiments, and will not be repeated here.

[0127] The technical solution of this invention divides the operating logic of the air conditioner's mother-and-baby mode according to the infant's growth stages. Based on the interval since the air conditioner was last turned off, the operating mode before the last shutdown, and the duration of the last operation in mother-and-baby mode, the current operating mode and its operating logic are determined, and the air conditioner is controlled to operate according to this logic. Therefore, when the air conditioner operates in mother-and-baby mode, the infant's growth stage is used as the standard for operation, fully considering the infant's comfort, achieving refined control, and meeting the infant's needs for the indoor environment.

[0128] In summary, it is readily understood by those skilled in the art that, without conflict, the aforementioned advantageous methods can be freely combined and superimposed.

[0129] The above description is merely an embodiment of the present invention and is not intended to limit the invention. Various modifications and variations can be made to the present invention by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the scope of the claims of the present invention.

Claims

1. A method for controlling an air conditioner, characterized in that, The air conditioner has a mother-and-baby mode for infant scenarios and other operating modes; each of the other operating modes has at least one operating logic; the mother-and-baby mode has at least two operating logics based on the infant's growth stage; The mother-infant mode has at least two operating logics that correspond one-to-one with the infant's developmental stages; the method includes: After the air conditioner is turned on, the interval time between the last time the air conditioner was turned off, the operating mode of the air conditioner before the last time it was turned off, and the duration of the last time the air conditioner ran the mother and baby mode are obtained. Based on the interval between the last time the air conditioner was turned off, the operating mode of the air conditioner before the last time it was turned off, and the duration of the last time the air conditioner was in the mother and baby mode, the current operating mode of the air conditioner and the operating logic of the current operating mode are determined. Control the air conditioner to operate according to the operating logic of the current operating mode; The process involves determining the current operating mode and its logic based on the interval since the air conditioner was last turned off, the operating mode before the last shutdown, and the duration of the last operation of the mother-and-baby mode. This includes: determining the relationship between the interval since the last shutdown and a set first interval; if the interval is greater than or equal to the set first interval, then determining the user-selected operating mode as the current operating mode; subsequently, determining whether the current operating mode is the mother-and-baby mode; and if the current operating mode is the mother-and-baby mode, then based on the infant's developmental stage information input by the user... The system determines the second operating logic of the mother-and-baby mode from at least two operating logics of the mother-and-baby mode, and sets the second operating logic as the operating logic of the current operating mode; or, if the interval time is less than a set first interval time, it determines whether the operating mode of the air conditioner before the last shutdown was the mother-and-baby mode; if the operating mode of the air conditioner before the last shutdown was the mother-and-baby mode, it sets the mother-and-baby mode as the current operating mode of the air conditioner; and based on the interval time between the last shutdown of the air conditioner and the duration of the last operation of the mother-and-baby mode, it determines the third operating logic of the mother-and-baby mode, and sets the third operating logic as the operating logic of the current operating mode. The third operating logic of the mother-and-baby mode is determined based on the interval since the air conditioner was last turned off and the duration of the last operation of the mother-and-baby mode. This includes: determining the relationship between the interval since the air conditioner was last turned off and a set second interval; if the interval since the air conditioner was last turned off is greater than or equal to the set second interval, then determining the relationship between the sum of the duration of the last operation of the mother-and-baby mode and the interval since the air conditioner was last turned off, and a set third interval; if the sum of the duration of the last operation of the mother-and-baby mode and the interval since the air conditioner was last turned off is less than the set third interval. If the operating logic of the air conditioner when it last ran the mother-infant mode is determined as the third operating logic of the mother-infant mode, and if the sum of the running time of the air conditioner when it last ran the mother-infant mode and the interval time between the last shutdown of the air conditioner is greater than or equal to the set third interval time, then the third operating logic of the mother-infant mode is determined from at least two operating logics of the mother-infant mode based on the infant growth stage information input by the user; wherein, the sum of the running time of the air conditioner when it last ran the mother-infant mode and the interval time between the last shutdown of the air conditioner represents the interval time since the start time of the last running of the mother-infant mode, and this time can be used to more accurately judge the changes in the infant's state.

2. The air conditioning control method according to claim 1, characterized in that, Also includes: After the air conditioner is turned on for the first time, the operating mode of the air conditioner selected by the user is obtained; Determine whether the operating mode of the air conditioner selected by the user is the mother and baby mode; If the user selects the mother-infant mode as the operating mode, then based on the infant growth stage information input by the user, the first operating logic of the mother-infant mode is determined from at least two operating logics of the mother-infant mode. The air conditioner is controlled to operate the mother-and-baby mode according to the first operating logic.

3. A control device for an air conditioner, characterized in that, The air conditioner has a mother-and-baby mode for infant scenarios and other operating modes; each of the other operating modes has at least one operating logic; the mother-and-baby mode has at least two operating logics based on the infant's growth stage; The mother-infant mode has at least two operating logics that correspond one-to-one with the infant's developmental stages; the device includes: The acquisition unit is configured to acquire, after the air conditioner is turned on, the interval time between the last time the air conditioner was turned off, the operating mode of the air conditioner before the last time it was turned off, and the duration of the last time the air conditioner operated the mother and baby mode. The control unit is configured to determine the current operating mode of the air conditioner and the operating logic of the current operating mode based on the interval between the last time the air conditioner was turned off, the operating mode of the air conditioner before the last time it was turned off, and the duration of the last time the air conditioner operated the mother and baby mode. The control unit is also configured to control the air conditioner to operate according to the operating logic of the current operating mode; The control unit determines the current operating mode and its operating logic based on the interval since the air conditioner was last turned off, the operating mode before the last shutdown, and the duration of the last operation of the mother-and-baby mode. This includes: determining the relationship between the interval since the last shutdown and a set first interval; if the interval is greater than or equal to the set first interval, then determining the user-selected operating mode as the current operating mode; subsequently, determining whether the current operating mode is the mother-and-baby mode; if the current operating mode is the mother-and-baby mode, then based on the baby's growth information input by the user... The system uses phase information to determine a second operating logic for the mother-and-baby mode from at least two operating logics, and sets the second operating logic as the operating logic for the current operating mode; or, if the interval time is less than a set first interval time, it determines whether the operating mode of the air conditioner before the last shutdown was the mother-and-baby mode; if the operating mode of the air conditioner before the last shutdown was the mother-and-baby mode, it sets the mother-and-baby mode as the current operating mode of the air conditioner; and based on the interval time between the last shutdown of the air conditioner and the duration of the last operation of the mother-and-baby mode, it determines a third operating logic for the mother-and-baby mode, and sets the third operating logic as the operating logic for the current operating mode. The control unit determines the third operating logic of the mother-and-baby mode based on the interval since the air conditioner was last turned off and the duration of the air conditioner's last operation of the mother-and-baby mode. This includes: determining the relationship between the interval since the air conditioner was last turned off and a set second interval; if the interval since the air conditioner was last turned off is greater than or equal to the set second interval, then determining the relationship between the sum of the duration of the air conditioner's last operation of the mother-and-baby mode and the interval since the air conditioner was last turned off, and a set third interval; if the sum of the duration of the air conditioner's last operation of the mother-and-baby mode and the interval since the air conditioner was last turned off is less than the set third interval... If the operating logic of the air conditioner during its last operation of the mother-and-baby mode is determined as the third operating logic of the mother-and-baby mode, and if the sum of the operating duration of the air conditioner during its last operation of the mother-and-baby mode and the interval between the last shutdown of the air conditioner is greater than or equal to the set third interval, then the third operating logic of the mother-and-baby mode is determined from at least two operating logics of the mother-and-baby mode based on the infant's growth stage information input by the user. The sum of the operating duration of the air conditioner during its last operation of the mother-and-baby mode and the interval between the last shutdown of the air conditioner represents the interval since the start of the last operation of the mother-and-baby mode, and this time can be used to more accurately judge changes in the infant's state.

4. The air conditioner control device according to claim 3, characterized in that, Also includes: The acquisition unit is further configured to acquire the operating mode of the air conditioner selected by the user after the air conditioner is turned on for the first time; The control unit is also configured to determine whether the operating mode of the air conditioner selected by the user is the mother and baby mode; The control unit is further configured to, if the user selects the mother-infant mode as the operating mode, determine the first operating logic of the mother-infant mode from at least two operating logics of the mother-infant mode based on the infant growth stage information input by the user. The control unit is also configured to control the air conditioner to operate the mother-and-baby mode according to the first operating logic.

5. An air conditioner, characterized in that, include: The air conditioning control device as described in claim 3 or 4.

6. A storage medium, characterized in that, The storage medium includes a stored program, wherein, when the program is executed, it controls the device containing the storage medium to perform the air conditioner control method of claim 1 or 2.

Citation Information

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