Control method of air conditioner, air conditioner and machine readable storage medium

By receiving trigger signals, monitoring user location and human body information, and automatically adjusting the operating status of the air conditioner, the problem of low intelligence of the air conditioner is solved and the user experience is improved.

CN120292674APending Publication Date: 2025-07-11QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD +1
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Patent Information

Application Number
CN202510552506.1
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-28
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

The existing air conditioners have simple and single operation modes and low intelligence. Users need to operate and adjust manually, which has poor user experience.

Method used

By receiving trigger signals, monitoring user position changes, obtaining personnel and human body information, and automatically adjusting the operating status of the air conditioner, including turning on or off and setting operating parameters.

Benefits of technology

It improves the intelligence of the air conditioner, saves users' time and energy, meets users' usage needs, and improves user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a control method of an air conditioner, the air conditioner and a machine readable storage medium. The control method of the air conditioner comprises the steps that a trigger signal for starting intelligent control of the air conditioner is received, the change condition of the actual position of a user is monitored, personnel information and human body information of the user are obtained, and the operation state of the air conditioner is determined according to the change condition of the actual position, the personnel information and the human body information. And the air conditioner is controlled to work according to the determined operation state. According to the scheme, the operation state of the air conditioner can be automatically adjusted according to the actual situation, the intelligent degree of the air conditioner is improved, and time and energy of a user are saved; the operation state of the air conditioner can meet the current actual condition, the use requirement of a user is fully met, and the use experience of the user is improved.
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Description

Technical Field

[0001] The present invention relates to the technical field of household appliances, and particularly to a control method for an air conditioner, an air conditioner, and a machine-readable storage medium. Background Art

[0002] With the development of society and the continuous improvement of people's living standards, various air conditioning devices have become one of the indispensable electrical appliances in people's daily lives. Various air conditioning devices can help people achieve an adaptable temperature and humidity when the environmental temperature and humidity are too high or too low. Currently, the air conditioning devices mainly include various types of air conditioners and fans.

[0003] With the continuous improvement of people's demands for the home environment, the demand for air conditioners is increasing, and the problems existing in the use process are becoming more and more prominent. For example, the existing operation modes of air conditioners are relatively simple and single, and cannot fully meet the user's usage requirements. In addition, the operating states of the existing air conditioners often need to be set and adjusted manually by the user, with low intelligence, which takes the user's time and energy and results in a poor user experience. Summary of the Invention

[0004] An object of the present invention is to automatically adjust the operating state of the air conditioner according to the actual situation and improve the intelligence of the air conditioner.

[0005] A further object of the present invention is to fully meet the user's usage requirements and improve the user experience.

[0006] Specifically, the present invention provides a control method for an air conditioner, including: receiving a trigger signal for enabling intelligent control of the air conditioner; monitoring the change in the actual position of the user; obtaining the personnel information and body information of the user; determining the operating state of the air conditioner according to the change in the actual position, the personnel information, and the body information; and controlling the air conditioner to operate according to the determined operating state.

[0007] Optionally, the step of determining the operating state of the air conditioner according to the change in the actual position, the personnel information, and the body information includes: determining whether the actual position is gradually approaching the air conditioner; and if so, when the distance between the actual position and the air conditioner is less than or equal to a first preset distance, determining to turn on the air conditioner and determining the operating parameters of the air conditioner according to the personnel information and the body information.

[0008] Optionally, the body information includes the breathing rate, and the step of determining the operating parameters of the air conditioner according to the personnel information and the body information includes: determining the current season according to the personnel information and the breathing rate, and determining the operating mode and set temperature of the air conditioner according to the current season and the breathing rate.

[0009] Optionally, the step of determining the current season according to the personnel information and the breathing frequency includes: querying a preset information table to obtain the current season corresponding to the personnel information and the breathing frequency, where the information table prestores the breathing frequencies corresponding to different personnel in different seasons.

[0010] Optionally, the step of determining the operating mode and the set temperature of the air conditioner according to the current season and the breathing frequency includes: when the current season is spring and summer, determining that the operating mode is the cooling mode; when the current season is autumn and winter, determining that the operating mode is the heating mode, and the breathing frequency is negatively correlated with the set temperature.

[0011] Optionally, when the actual position gradually moves away from the air conditioner, when the distance between the actual position and the air conditioner is greater than or equal to a second preset distance, it is determined to turn off the air conditioner.

[0012] Optionally, the step of monitoring the change of the user's actual position includes: using a WiFi signal or a mobile terminal interconnected with the air conditioner to monitor the change of the user's actual position.

[0013] Optionally, the step of receiving a trigger signal for enabling intelligent control of the air conditioner includes: receiving a trigger signal sent by a display device, a voice device, a remote controller or a mobile terminal of the air conditioner.

[0014] According to another aspect of the present invention, there is also provided an air conditioner, including: a controller, the controller includes a memory and a processor, where the memory stores a machine-executable program, and when the machine-executable program is executed by the processor, the control method of the air conditioner described in any one of the above is implemented.

[0015] According to still another aspect of the present invention, there is also provided a machine-readable storage medium, on which a machine-executable program is stored, and when the machine-executable program is executed by the processor, the control method of the air conditioner described in any one of the above is implemented.

[0016] The control method of the air conditioner, the air conditioner and the machine-readable storage medium of the present invention, by receiving a trigger signal for enabling intelligent control of the air conditioner, monitoring the change of the user's actual position, obtaining the user's personnel information and body information, determining the operating state of the air conditioner according to the change of the actual position, the personnel information and the body information, and controlling the air conditioner to work according to the determined operating state, can automatically adjust the operating state of the air conditioner according to the actual situation, improve the intelligence level of the air conditioner, save the user's time and energy, and improve the user's use experience.

[0017] Further, for the control method of the air conditioner, the air conditioner, and the machine-readable storage medium according to the present invention, when the actual position gradually approaches the air conditioner and the distance between the actual position and the air conditioner is less than or equal to the first preset distance, it is determined to turn on the air conditioner, and the operating parameters of the air conditioner are determined according to the personnel information and the human body information; in the case where the actual position gradually moves away from the air conditioner, when the distance between the actual position and the air conditioner is greater than or equal to the second preset distance, it is determined to turn off the air conditioner, which can make the operating state of the air conditioner conform to the current actual situation, fully meet the user's usage requirements, and further improve the user's usage experience.

[0018] Those skilled in the art will better understand the above and other objects, advantages, and features of the present invention from the following detailed description of specific embodiments of the present invention in conjunction with the accompanying drawings. BRIEF DESCRIPTION OF THE DRAWINGS

[0019] Some specific embodiments of the present invention will be described in detail hereinafter with reference to the accompanying drawings in an exemplary but non-limiting manner. The same reference numerals in the drawings denote the same or similar components or parts. Those skilled in the art should understand that these drawings are not necessarily drawn to scale. In the drawings:

[0020] Figure 1 is a schematic diagram of a control method of an air conditioner according to an embodiment of the present invention;

[0021] Figure 2 is a detailed flowchart of a control method of an air conditioner according to an embodiment of the present invention;

[0022] Figure 3 is a schematic block diagram of a controller of an air conditioner according to an embodiment of the present invention; and

[0023] Figure 4 is a schematic diagram of a machine-readable storage medium according to an embodiment of the present invention. DETAILED DESCRIPTION OF THE EMBODIMENTS

[0024] This embodiment first provides a control method for an air conditioner, which can automatically adjust the operating state of the air conditioner according to the actual situation, improve the intelligence level of the air conditioner, save the user's time and energy, and improve the user's usage experience. Figure 1 is a schematic diagram of a control method of an air conditioner according to an embodiment of the present invention. As Figure 1 shown, the control method of the air conditioner may include the following steps:

[0025] Step S102, receiving a trigger signal for turning on the intelligent control of the air conditioner;

[0026] Step S104, monitoring the change of the actual position of the user;

[0027] Step S106: Obtain the user's personal information and body information;

[0028] Step S108: Determine the operating state of the air conditioner according to the change of the actual position, personal information and body information;

[0029] Step S110: Control the air conditioner to work according to the determined operating state.

[0030] In the above steps, step S102 receiving the trigger signal for enabling the intelligent control of the air conditioner may specifically include: receiving the trigger signal sent by the display device, voice device, remote control of the air conditioner or the mobile terminal bound to the air conditioner. The mobile terminal may be a portable intelligent device, such as a smart phone, a tablet computer, etc.

[0031] It should be noted that receiving the trigger signal for enabling the intelligent control of the air conditioner means that the user is not beside the air conditioner, that is, it is not convenient to manually operate and adjust the operating state of the air conditioner. The control method of the air conditioner adopting this embodiment can automatically adjust the operating state of the air conditioner according to the actual situation, improve the intelligence level of the air conditioner, save the user's time and energy, and improve the user experience.

[0032] After receiving the trigger signal for enabling the intelligent control of the air conditioner, step S104 can be executed to monitor the change of the user's actual position. Specifically, the change of the user's actual position can be monitored by using the WiFi signal or the mobile terminal interconnected with the air conditioner. Step S106 obtains the user's personal information and body information. Specifically, the personal information can also be determined by using the mobile terminal or the WiFi signal, and the body information can be determined according to the WiFi signal, where the body information includes the breathing rate. In a preferred embodiment, the personal information and the breathing rate can be determined by the channel state information (CSI) of the WiFi signal.

[0033] Step S108 determines the operating state of the air conditioner according to the change of the actual position, personal information and body information. In fact, it mainly considers whether the user's actual position is gradually approaching or gradually moving away from the air conditioner, so as to first determine the on / off state of the air conditioner, and further determine the operating parameters of the air conditioner on the premise of turning on the air conditioner. Automatically determining the operating state of the air conditioner through the change of the actual position, personal information and body information for subsequent adjustment of the air conditioner effectively saves the time and energy of the user for manual setting and adjustment, and greatly improves the intelligence level of the air conditioner.

[0034] Specifically, determining the operating state of the air conditioner according to the change of the actual position, personnel information, and human body information may include: determining whether the actual position is gradually approaching the air conditioner; and if so, when the distance between the actual position and the air conditioner is less than or equal to the first preset distance, turning on the air conditioner, and determining the operating parameters of the air conditioner according to the personnel information and the human body information. In the case where the actual position is gradually moving away from the air conditioner, when the distance between the actual position and the air conditioner is greater than or equal to the second preset distance, turning off the air conditioner.

[0035] In addition, determining the operating parameters of the air conditioner according to the personnel information and the human body information may include: determining the current season according to the personnel information and the breathing frequency, and determining the operating mode and the set temperature of the air conditioner according to the current season and the breathing frequency. Determining the current season according to the personnel information and the breathing frequency may include: querying a preset information table to obtain the current season corresponding to the personnel information and the breathing frequency, where the information table pre-stores the breathing frequencies corresponding to different personnel in different seasons.

[0036] In a preferred embodiment, determining the operating mode and the set temperature of the air conditioner according to the current season and the breathing frequency may include: when the current season is summer, determining the operating mode as the cooling mode; when the current season is winter, determining the operating mode as the heating mode; when the current season is spring or autumn, determining the operating mode as the fresh air mode, and the breathing frequency is negatively correlated with the set temperature.

[0037] After determining the operating state of the air conditioner according to the change of the actual position, personnel information, and human body information in step S108, step S110 may be executed to control the air conditioner to operate according to the determined operating state. In a specific embodiment, in the case of determining to turn off the air conditioner, the air conditioner may be controlled to turn off. In the case of determining to turn on the air conditioner, the air conditioner may be controlled to turn on. And on the premise of turning on the air conditioner, if the operating mode and the set temperature of the air conditioner are determined, the air conditioner may be controlled to operate according to the determined operating mode and the set temperature. Making the air conditioner operate according to the determined operating state can fully ensure that the operating state of the air conditioner conforms to the current actual situation and meets the user's usage requirements.

[0038] In summary, the control method of the air conditioner in this embodiment, by receiving the trigger signal for enabling intelligent control of the air conditioner, monitoring the change of the user's actual position, obtaining the user's personnel information and human body information, determining the operating state of the air conditioner according to the change of the actual position, personnel information, and human body information, and controlling the air conditioner to operate according to the determined operating state, can automatically adjust the operating state of the air conditioner according to the actual situation, improve the intelligence level of the air conditioner, save the user's time and energy, and improve the user's usage experience.

[0039] In some alternative embodiments, higher technical effects can be achieved by further optimizing and configuring the above steps. The following details the control method of the air conditioner in this embodiment in conjunction with the introduction of an alternative execution process of this embodiment. This embodiment is only an example of the execution process. During specific implementation, the execution order and operating conditions of some steps can be modified according to specific implementation requirements. Figure 2 FIG. Figure 2 is a detailed flowchart of the control method of an air conditioner according to an embodiment of the present invention. The control method of the air conditioner includes the following steps:

[0040] Step S202, receiving a trigger signal for enabling intelligent control of the air conditioner;

[0041] Step S204, monitoring the change in the actual position of the user using a WiFi signal or a mobile terminal interconnected with the air conditioner;

[0042] Step S206, obtaining the personal information and body information of the user;

[0043] Step S208, determining whether the actual position is gradually approaching the air conditioner. If so, execute Step S210; if not, execute Step S218;

[0044] Step S210, when the distance between the actual position and the air conditioner is less than or equal to a first preset distance, determining to turn on the air conditioner;

[0045] Step S212, querying a preset information table to obtain the current season corresponding to the personal information and respiratory rate;

[0046] Step S214, determining the operating mode and set temperature of the air conditioner according to the current season and respiratory rate;

[0047] Step S216, controlling the air conditioner to operate according to the determined operating state;

[0048] Step S218, when the actual position is gradually moving away from the air conditioner and the distance between the actual position and the air conditioner is greater than or equal to a second preset distance, determining to turn off the air conditioner.

[0049] In the above steps, Step S202 receiving a trigger signal for enabling intelligent control of the air conditioner may specifically include: receiving a trigger signal sent by a display device, a voice device, a remote control of the air conditioner, or a mobile terminal bound to the air conditioner. The mobile terminal may be a portable intelligent device, such as a smart phone, a tablet computer, etc.

[0050] It should be noted that receiving the trigger signal for the intelligent control of the air conditioner means that the user is not beside the air conditioner, that is, it is inconvenient to manually operate and adjust the operating state of the air conditioner. The control method of the air conditioner in this embodiment can automatically adjust the operating state of the air conditioner according to the actual situation, improve the intelligence level of the air conditioner, save the user's time and energy, and improve the user experience.

[0051] Step S204: Monitor the change of the user's actual position by using the WiFi signal or the mobile terminal interconnected with the air conditioner. In a preferred embodiment, monitoring the change of the user's actual position by using the mobile terminal interconnected with the air conditioner can be specifically carried out through positioning technologies such as GPS. Monitoring the change of the user's actual position by using the WiFi signal can be specifically carried out as follows: A monitoring domain for establishing a channel state information connection is formed between homes through WiFi. The user's current actual position is determined through this monitoring domain. By monitoring whether the user's actual position is approaching or moving away from the air conditioner, it can be determined whether the user is about to go home or leave home.

[0052] Step S206: Obtain the user's personnel information and human body information. Specifically, the personnel information can also be determined by using the mobile terminal or the WiFi signal, and the human body information can be determined according to the WiFi signal, where the human body information includes the breathing rate. In a preferred embodiment, the personnel information and the breathing rate can be determined through the CSI of the WiFi signal.

[0053] In a specific embodiment, by checking the CSI signal, the signal change caused by human breathing can be monitored. In addition, when a human body moves within the area covered by the WiFi signal, the signal will come into contact with the human body and change, and even be reflected to other people. Therefore, this phenomenon can be used to complete the monitoring of the personnel information and the breathing rate through the WiFi signal.

[0054] Step S208: Determine whether the actual position is gradually approaching the air conditioner. If the judgment result in step S208 is yes, that is, when the actual position is gradually approaching the air conditioner, execute step S210. When the distance between the actual position and the air conditioner is less than or equal to the first preset distance, determine to turn on the air conditioner. Then execute step S212 and step S214, query the preset information table to obtain the current season corresponding to the personnel information and the breathing rate, and determine the operating mode and the set temperature of the air conditioner according to the current season and the breathing rate.

[0055] The actual position gradually approaches the air conditioner, indicating that the user is about to arrive home. When the distance between the actual position and the air conditioner is less than or equal to the first preset distance, the air conditioner is turned on in a timely manner, and the operating mode and set temperature of the air conditioner are determined according to the specific personnel information and breathing frequency of the user, which can ensure that the user can immediately feel a comfortable indoor environment after arriving home, and the operating state of the air conditioner meets the current actual needs of the user.

[0056] The human breathing frequency is affected by various factors, and seasonal changes are one of the environmental factors that cannot be ignored. Differences in temperature, humidity, air pressure, and air quality in different seasons may indirectly cause changes in breathing frequency by affecting the human physiological state, such as metabolic rate, body temperature regulation, and respiratory system stress response. That is, the breathing frequency of the same person is also different in different seasons. By pre-storing the breathing frequencies corresponding to different people in different seasons in an information table, the current season can be accurately determined by combining the personnel information after detecting the breathing frequency.

[0057] For example, the following information is stored in the information table: The breathing frequency of person A in spring is from A1 to A2, in summer is from A3 to A4, in autumn is from A5 to A6, and in winter is from A7 to A8. The breathing frequency of person B in spring is from B1 to B2, in summer is from B3 to B4, in autumn is from B5 to B6, and in winter is from B7 to B8. The breathing frequency of person C in spring is from C1 to C2, in summer is from C3 to C4, in autumn is from C5 to C6, and in winter is from C7 to C8. The breathing frequency of person D in spring is from D1 to D2, in summer is from D3 to D4, in autumn is from D5 to D6, and in winter is from D7 to D8.

[0058] Then, when the detected personnel information is A and the breathing frequency is A2, it can be determined that the current season is spring. When the detected personnel information is B and the breathing frequency is B8, it can be determined that the current season is winter. When the detected personnel information is C and the breathing frequency is C3, it can be determined that the current season is summer. When the detected personnel information is D and the breathing frequency is D6, it can be determined that the current season is autumn.

[0059] It should be noted that in some other embodiments, the human body information may also include other information, such as body temperature, heart rate, blood pressure, etc. By monitoring the specific information of these parameters, the current season can be determined in a similar way of pre-storing the information table as described above.

[0060] That is to say, after determining the current season, the operation mode can be determined according to the current season, and then the set temperature can be determined according to the breathing rate. When the current season is summer, the indoor environment is generally warm, and the operation mode is determined to be the cooling mode, which can provide cold for the indoor environment and make the user feel cool when they get home. When the current season is winter, the indoor environment is generally cold, and the operation mode is determined to be the heating mode, which can provide heat for the indoor environment and make the user feel warm when they get home. When the current season is spring or autumn, the indoor temperature is generally suitable, and the operation mode is determined to be the fresh air mode, which can introduce outdoor fresh air into the indoor environment and make the user feel the air is fresh when they get home.

[0061] Regardless of whether the operation mode is the cooling mode, the heating mode or the fresh air mode, the breathing rate can be negatively correlated with the set temperature. That is, the higher the breathing rate, the lower the set temperature; the lower the breathing rate, the higher the set temperature. Specifically, regardless of whether it is the cooling mode, the heating mode or the fresh air mode, the higher the breathing rate, the more it is necessary to lower the set temperature to provide more cold or less heat, so that the user's breathing rate becomes moderate; the lower the breathing rate, the more it is necessary to raise the set temperature to provide less cold or more heat, so that the user's breathing rate becomes moderate.

[0062] The high or low breathing rate is evaluated relative to the breathing rate range of the user in the same season. For example, the breathing rates of user A are A3 and A4. In the same summer, A3 can be evaluated as a low breathing rate, and A4 can be evaluated as a high breathing rate. Another example is that the breathing rates of user C are C7 and C8. In the same winter, C7 can be evaluated as a low breathing rate, and C8 can be evaluated as a high breathing rate.

[0063] As mentioned above, receiving the trigger signal for the intelligent control of the air conditioner means that the user is not next to the air conditioner. Therefore, the user's actual position is either gradually approaching the air conditioner or gradually moving away from the air conditioner. When the judgment result in step S208 is no, that is, when the actual position is not gradually approaching the air conditioner, step S218 can be executed, and the actual position gradually moves away from the air conditioner. When the distance between the actual position and the air conditioner is greater than or equal to the second preset distance, it is determined to turn off the air conditioner.

[0064] When the actual position gradually moves away from the air conditioner, when the distance between the actual position and the air conditioner is greater than or equal to the second preset distance, turn off the air conditioner. The actual position gradually moving away from the air conditioner indicates that the user is about to leave home. Turning off the air conditioner in time when the distance between the actual position and the air conditioner is greater than or equal to the second preset distance can avoid wasting electricity of the air conditioner. And turning off the air conditioner only when the distance between the actual position and the air conditioner is greater than or equal to the second preset distance, rather than turning it off as soon as it moves away, can rule out the situation where the user just goes downstairs to take out the trash and leaves briefly.

[0065] Among them, the specific values of the first preset distance and the second preset distance can be set according to the actual situation, and there is no definite size relationship between the two, and they can be the same or different. In a specific embodiment, the first preset distance can be less than the second preset distance. The first preset distance can reflect that the user is almost home and relatively close to home, and the second preset distance can reflect that the user leaves home and is relatively far from home.

[0066] After steps S214 and S218, step S216 is executed to control the air conditioner to operate according to the determined operating state. That is to say, in the case of determining to turn off the air conditioner, the air conditioner can be controlled to turn off. In the case of determining to turn on the air conditioner, the air conditioner can be controlled to turn on. And on the premise of turning on the air conditioner, if the operating mode and set temperature of the air conditioner are determined, the air conditioner can be controlled to operate according to the determined operating mode and set temperature. Making the air conditioner operate according to the determined operating state can fully ensure that the operating state of the air conditioner conforms to the current actual situation and meets the user's usage requirements.

[0067] It should be noted that in the case of determining to turn on the air conditioner, the compressor can be controlled to increase the frequency slowly. Specifically, first, the time for the user to reach the indoor environment can be judged according to the speed at which the user's actual position gradually approaches the air conditioner and the first preset distance, and then the slow frequency increase amplitude of the compressor can be controlled, taking into account the comfort of the user after reaching the indoor environment while saving electric energy and prolonging the service life of the compressor. In the case where the user's actual position gradually moves away from the air conditioner, the compressor can also be controlled to decrease the frequency slowly until the air conditioner is turned off in time when the distance between the actual position and the air conditioner is greater than or equal to the second preset distance, which can effectively save electric energy and prolong the service life of the compressor.

[0068] In addition, the application scenario of the control method of the air conditioner in this embodiment is mainly explained by receiving the trigger signal for intelligent control of the air conditioner to turn on, for example, it is defaulted that the user is not beside the air conditioner as mentioned above. In addition, it can also be defaulted that there is no one in the indoor environment when the user gradually moves away from the air conditioner, or the indoor environment does not need to turn on the air conditioner after the user leaves, so that the subsequent turning off of the air conditioner is more reasonable. That is to say, unreasonable situations can be excluded by receiving the trigger signal for intelligent control of the air conditioner to turn on. As long as this trigger signal is received, it is considered that unreasonable situations are excluded.

[0069] In summary, the control method of the air conditioner in this embodiment turns on the air conditioner when the actual position gradually approaches the air conditioner and the distance between the actual position and the air conditioner is less than or equal to a first preset distance, and determines the operating parameters of the air conditioner based on the personal information and body information; when the actual position gradually moves away from the air conditioner and the distance between the actual position and the air conditioner is greater than or equal to a second preset distance, turns off the air conditioner, which can make the operating state of the air conditioner conform to the current actual situation, fully meet the user's usage needs, and further enhance the user's usage experience.

[0070] This embodiment further provides an air conditioner, which may include a controller 300 . Figure 3 FIG. 3 is a schematic block diagram of a controller 300 of an air conditioner according to an embodiment of the present invention. Figure 3 As shown, the controller 300 may include: a processor 310 and a memory 320 , wherein the memory 320 stores a machine executable program 321 , and when the machine executable program 321 is executed by the processor 310 , it is used to implement any of the above-mentioned air conditioner control methods.

[0071] The processor 310 may be a central processing unit (CPU) or a digital processing unit, etc. The processor 310 sends and receives data through a communication interface. The memory 320 is used to store a machine executable program 321 executed by the processor 310. The memory 320 is any medium that can be used to carry or store a desired program code in the form of an instruction or data structure and can be accessed by a computer, and may also be a combination of multiple memories 320.

[0072] The machine executable program 321 can be downloaded from a computer-readable storage medium to a corresponding computing / processing device or downloaded via a network (e.g., the Internet, a local area network, a wide area network, and / or a wireless network) and installed in the controller 300. The controller 300 can be used to control the operation of the air conditioner itself, and also to receive signals from other devices and send signals to other devices, for example, it can send signals to a mobile terminal and receive signals sent by the mobile terminal.

[0073] It should be noted that the control method of the air conditioner implemented by the air conditioner in this embodiment receives a trigger signal for turning on intelligent control of the air conditioner, monitors changes in the actual location of the user, obtains the user's personal information and body information, determines the operating status of the air conditioner according to the changes in the actual location, personal information and body information, controls the air conditioner to operate according to the determined operating status, and can automatically adjust the operating status of the air conditioner according to actual conditions, thereby improving the intelligence of the air conditioner, saving the user's time and energy, and improving the user's experience.

[0074] In addition, for the control method of the air conditioner implemented by the air conditioner in this embodiment, when the actual position gradually approaches the air conditioner and the distance between the actual position and the air conditioner is less than or equal to the first preset distance, the air conditioner is turned on, and the operating parameters of the air conditioner are determined according to the personnel information and the human body information; in the case where the actual position gradually moves away from the air conditioner, when the distance between the actual position and the air conditioner is greater than or equal to the second preset distance, the air conditioner is turned off, which can make the operating state of the air conditioner conform to the current actual situation, fully meet the user's usage requirements, and further improve the user experience.

[0075] This embodiment also provides a machine-readable storage medium 400, Figure 4 which is a schematic diagram of the machine-readable storage medium 400 according to an embodiment of the present invention. The machine-readable storage medium 400 stores a machine-executable program 321, and when the machine-executable program 321 is executed by a processor 310, it implements the control method of the air conditioner in any of the above embodiments.

[0076] The machine-readable storage medium 400 of this embodiment can be an electronic memory such as a flash memory, EEPROM (electrically erasable programmable read-only memory), EPROM, hard disk, or ROM. The machine-readable storage medium 400 has a storage space for the machine-executable program 321 for executing any method steps in the above methods. These machine-executable programs 321 can be read out from or written into one or more computer program products.

[0077] These computer program products include program code carriers such as hard disks, compact discs (CDs), memory cards, or floppy disks. When the device where the machine-readable storage medium 400 is located runs the above machine-executable program 321, it can execute each step in the method described above.

[0078] In the description of this embodiment, the descriptions with reference to terms such as "one embodiment", "some embodiments", "schematic embodiments", "examples", "specific examples", or "some examples" mean that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic descriptions of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples.

[0079] At this point, those skilled in the art should recognize that although numerous exemplary embodiments of the present invention have been shown and described in detail herein, many other variations or modifications that conform to the principles of the present invention can still be directly determined or derived from the disclosed content of the present invention without departing from the spirit and scope of the present invention. Therefore, the scope of the present invention should be understood and recognized as covering all such other variations or modifications.

Claims

1. A control method for an air conditioner, comprising: Receiving a trigger signal for enabling intelligent control of the air conditioner; Monitoring the change in the actual position of the user; Obtaining the personal information and body information of the user; Determining the operating state of the air conditioner according to the change in the actual position, the personal information, and the body information; And Controlling the air conditioner to operate according to the determined operating state.

2. The method according to claim 1, wherein the step of determining the operating state of the air conditioner according to the change in the actual position, the personal information, and the body information comprises: Judging whether the actual position is gradually approaching the air conditioner; And If so, when the distance between the actual position and the air conditioner is less than or equal to a first preset distance, determining to turn on the air conditioner, and determining the operating parameters of the air conditioner according to the personal information and the body information.

3. The method according to claim 2, wherein The body information includes the breathing rate, and The step of determining the operating parameters of the air conditioner according to the personal information and the body information comprises: determining the current season according to the personal information and the breathing rate, and determining the operating mode and set temperature of the air conditioner according to the current season and the breathing rate.

4. The method according to claim 3, wherein the step of determining the current season according to the personal information and the breathing rate comprises: Querying a preset information table to obtain the current season corresponding to the personal information and the breathing rate, wherein the information table pre-stores the breathing rates corresponding to different people in different seasons.

5. The method according to claim 3, wherein the step of determining the operating mode and set temperature of the air conditioner according to the current season and the breathing rate comprises: When the current season is summer, determining the operating mode to be the cooling mode; When the current season is winter, determining the operating mode to be the heating mode; When the current season is spring or autumn, determining the operating mode to be the fresh air mode, and The breathing rate is negatively correlated with the set temperature.

6. The method according to claim 2, wherein In the case where the actual position is gradually moving away from the air conditioner, when the distance between the actual position and the air conditioner is greater than or equal to a second preset distance, determining to turn off the air conditioner.

7. The method according to claim 1, wherein the step of monitoring the change in the actual position of the user comprises: Monitoring the change in the actual position of the user by using a WiFi signal or a mobile terminal interconnected with the air conditioner.

8. The method according to claim 7, wherein the step of receiving the trigger signal for enabling intelligent control of the air conditioner comprises: Receiving the trigger signal sent by the display device, voice device, remote controller or the mobile terminal of the air conditioner.

9. An air conditioner, comprising: A controller, the controller comprising a memory and a processor, wherein the memory stores a machine-executable program, and when the machine-executable program is executed by the processor, it implements the control method of the air conditioner according to any one of claims 1 to 8.

10. A machine-readable storage medium storing a machine-executable program, which when executed by a processor, implements the control method of the air conditioner according to any one of claims 1 to 8.