Control method and control device of air conditioner and air conditioner
By adding a health detection module to the air conditioner remote control, the oxygen generation module and the air conditioner's operating status are controlled based on the user's health information, solving the problems of poor air circulation and inaccurate oxygen generation control during air conditioner use, thus improving user comfort and experience.
Patent Information
- Application Number
- CN202310613893.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-29
- Publication Date
- 2026-01-09
- Estimated Expiration
- 2043-05-29
AI Technical Summary
Existing air conditioners cause discomfort such as stuffiness and dizziness due to poor air circulation caused by closed doors and windows. Furthermore, existing oxygen generation control methods cannot accurately control the airflow according to the user's actual situation, thus affecting the user experience.
A health monitoring module is added to the air conditioner remote control to obtain the user's health monitoring information. Based on the monitoring information, the system controls whether the oxygen generation module is turned on or off, and adjusts the air conditioner's working status, including oxygen generation mode, airflow direction, and temperature, to meet the user's oxygen needs and physical condition.
It enables precise control of oxygen concentration and air conditioning operation based on the user's health status, improving user comfort and experience, avoiding discomfort caused by poor air circulation, and reducing maintenance costs.
Smart Images

Figure CN119042777B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of electrical appliances, in particular to a control method and device of an air conditioner and the air conditioner. BACKGROUND
[0002] In the related art, in a room using an air conditioner, in order to make the air conditioner achieve the best heat exchange effect, the doors and windows in the room are usually closed, but long time will cause the indoor air not to circulate, thereby causing the human body to be stuffy and dizzy and other uncomfortable conditions to appear, which will affect the user's health over a long period of time. In the prior art, a fresh air module is usually installed in the air conditioner or a separate fresh air machine is directly used to ventilate indoor and outdoor, thereby introducing fresh outdoor air to solve the problem of physical discomfort caused by air not circulating during the use of the air conditioner. However, the fresh air module needs to replace filter elements and other consumables frequently, and the maintenance cost is high in the later period. In addition, the separate fresh air machine will also increase the floor area of the room. In addition, the introduction of fresh air may also cause local overcooling or overheating problems.
[0003] In addition, by increasing an oxygen production module on the air conditioner, the indoor oxygen concentration can be effectively improved, thereby improving the indoor air quality. However, the existing oxygen production control method of the air conditioner cannot accurately control the oxygen production logic of the air conditioner according to the actual situation of the indoor user, which affects the user experience. SUMMARY
[0004] The present application provides a control method and device of an air conditioner and the air conditioner to solve the defects in the prior art and achieve the following technical effects: the oxygen production control logic of the air conditioner is refined, and the oxygen concentration in the indoor environment meets the current physical state of the user, thereby ensuring the comfort and experience of the user in the indoor environment.
[0005] According to the control method of the air conditioner of the first aspect of the present application, the controller of the air conditioner is connected to a health detection module, and the indoor unit of the air conditioner is also provided with an oxygen production module.
[0006] The control method comprises:
[0007] Obtaining health detection information of the user, the health detection information being information sent by the health detection module after detecting the user;
[0008] According to the health detection information of the user, the opening or closing of the oxygen production module is controlled, and the working state of the air conditioner is adjusted after the oxygen production module is opened.
[0009] According to an embodiment of the present application, the health detection information includes the actual blood oxygen value of the user.
[0010] The step of controlling the oxygen generation module to open or close according to the health detection information of the user, and adjusting the working state of the air conditioner after the oxygen generation module is opened, comprises:
[0011] According to the actual blood oxygen value being less than or equal to the first blood oxygen value, the oxygen generation module is controlled to open, and the working mode of the oxygen generation module is adjusted according to the interval range in which the actual blood oxygen value is located.
[0012] According to an embodiment of the present application, the step of adjusting the working mode of the oxygen generation module according to the interval range in which the actual blood oxygen value is located specifically comprises:
[0013] According to the actual blood oxygen value being less than or equal to the first blood oxygen value and greater than or equal to a second blood oxygen value, the oxygen generation module is controlled to enter a normal oxygen generation mode, wherein in the normal oxygen generation mode, oxygen enters the indoor environment along the air outlet of the indoor unit;
[0014] According to the actual blood oxygen value being less than the second blood oxygen value and greater than a third blood oxygen value, the oxygen generation module is controlled to enter a special oxygen generation mode, wherein in the special oxygen generation mode, oxygen is delivered to the respiratory tract of the user through an oxygen delivery device;
[0015] According to the actual blood oxygen value being less than or equal to the third blood oxygen value, the oxygen generation module is controlled to enter the special oxygen generation mode, and the indoor unit is controlled to issue an alarm reminder.
[0016] According to an embodiment of the present application, after the step of controlling the oxygen generation module to open according to the actual blood oxygen value being less than or equal to the first blood oxygen value, the control method of the air conditioner further comprises:
[0017] According to the interval range in which the actual blood oxygen value is located, the oxygen generation rate of the oxygen generation module is adjusted, wherein the actual blood oxygen value and the oxygen generation rate are negatively correlated.
[0018] According to an embodiment of the present application, the health detection information comprises an actual heart rate or an actual pulse rate of the user;
[0019] The step of controlling the oxygen generation module to open or close according to the health detection information of the user, and adjusting the working state of the air conditioner after the oxygen generation module is opened, comprises:
[0020] According to the actual heart rate being greater than a first preset heart rate, or the actual pulse rate being greater than a first preset pulse rate, the oxygen generation module is controlled to open;
[0021] It is determined that the oxygen generation module is opened, and the air conditioner is controlled to enter a user exercise mode;
[0022] In the user motion mode, the air deflector of the indoor unit is adjusted to the uppermost position or the lowermost position to avoid air outlet from the user.
[0023] According to one embodiment of the present application, after the step of determining that the oxygen production module is turned on and controlling the air conditioner to enter the user motion mode, the control method of the air conditioner further comprises:
[0024] In the user motion mode, if it is determined that the air conditioner is in the heating mode, the heating temperature of the air conditioner is controlled to decrease by a heating change temperature based on the original heating temperature;
[0025] Alternatively, in the user motion mode, if it is determined that the air conditioner is in the cooling mode, the cooling temperature of the air conditioner is controlled to increase by a cooling change temperature based on the original cooling temperature.
[0026] The heating change temperature or the cooling change temperature is obtained according to the actual heart rate or the actual pulse rate.
[0027] According to one embodiment of the present application, after the step of determining that the oxygen production module is turned on and controlling the air conditioner to enter the user motion mode, the control method of the air conditioner further comprises:
[0028] In the user motion mode, the oxygen production rate of the oxygen production module is adjusted according to the interval range of the actual heart rate or the actual pulse rate, wherein the actual heart rate and the actual pulse rate are positively correlated with the oxygen production rate.
[0029] According to one embodiment of the present application, the control method of the air conditioner further comprises:
[0030] It is determined that the oxygen production module is turned on, and the oxygen concentration in the indoor environment where the indoor unit is located is obtained.
[0031] According to the oxygen concentration being greater than the highest set concentration, the oxygen production module is controlled to be turned off.
[0032] According to one embodiment of the present application, the control method of the air conditioner further comprises:
[0033] It is determined that the oxygen production module is turned on, and the indoor area of the indoor environment where the indoor unit is located, the number of users in the indoor environment, and the health detection information corresponding to each user are obtained.
[0034] According to the indoor area, the number of users, and the health detection information, the oxygen production rate and the oxygen production duration of the oxygen production module are adjusted.
[0035] According to the air conditioner control device of the second embodiment of the present application, the controller of the air conditioner is connected to the health detection module, and the indoor unit of the air conditioner is further provided with an oxygen production module.
[0036] The control device comprises:
[0037] The acquisition module is configured to acquire health detection information of the user, the health detection information being information sent by the health detection module after detecting the user;
[0038] The execution module is configured to control the oxygen generation module to be turned on or turned off according to the health detection information of the user, and adjust the working state of the air conditioner after the oxygen generation module is turned on.
[0039] The air conditioner according to the third aspect of the present application comprises:
[0040] The air conditioner remote controller is provided with a health detection module connected with the air conditioner controller;
[0041] The indoor unit and the outdoor unit, the indoor unit is provided with an oxygen generation module;
[0042] The controller is configured to execute the control method of the air conditioner according to the first aspect of the present application.
[0043] The present application provides a control method of an air conditioner, the method is characterized in that: a health detection module is additionally arranged on the air conditioner remote controller, and health detection information of the user is acquired based on the health detection module, so as to determine whether the oxygen generation module is turned on or not according to the health detection information, and the oxygen generation module is controlled and adjusted after being turned on, thus, the oxygen generation effect and the refrigeration or heating effect of the air conditioner are adjusted according to different health information of the user, the oxygen generation control logic of the air conditioner is refined, and the oxygen concentration in the indoor environment meets the current physical state of the user, so as to ensure the comfort and experience of the user in the indoor environment. BRIEF DESCRIPTION OF DRAWINGS
[0044] In order to more clearly illustrate the technical solutions of the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or the prior art description. Obviously, the drawings described below are some embodiments of the present application, and other drawings can also be obtained by those skilled in the art without creative labor.
[0045] Figure 1 is a flowchart of the control method of the air conditioner provided by the present application;
[0046] Figure 2 is a structural schematic diagram of the control device of the air conditioner provided by the present application;
[0047] Figure 3 is one of the structural schematic diagrams of the air conditioner remote controller provided by the present application;
[0048] Figure 4Figure 2 is a structural schematic diagram of the air conditioner remote controller provided by the present application;
[0049] Figure 5 Figure 3 is a structural schematic diagram of the air conditioner remote controller provided by the present application;
[0050] Figure 6 Figure 4 is a structural schematic diagram of the indoor unit provided by the present application;
[0051] Figure 7 Figure 5 is a structural schematic diagram of the indoor unit provided by the present application;
[0052] Figure 8 Figure 6 is a structural schematic diagram of the electronic device provided by the present application.
[0053] Reference signs:
[0054] 10, indoor unit; 20, oxygen production module; 30, oxygen sensor; 1, air conditioner remote controller; 11, remote control upper cover; 12, remote control lower cover; 13, battery; 14, battery back cover; 15, mounting cover; 2, display screen; 3, button; 4, remote control computer board; 5, blood oxygen detection module; 51, detection position; 110, acquisition module; 120, execution module. DETAILED DESCRIPTION
[0055] In order to make the objects, technical solutions and advantages of the present application clearer, the technical solutions in the present application will be described clearly and completely below in combination with the drawings in the present application. Obviously, the described embodiments are only some of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0056] The control method, control device and air conditioner provided by the present application will be described below with reference to the drawings. Before the embodiments of the present application are described in detail, the entire application scenario will be described first. The control method, control device, electronic device and computer readable storage medium of the air conditioner in the embodiments of the present application can be applied to the local air conditioner, the cloud platform in the Internet field, or the cloud platform in other kinds of Internet field, or can also be applied to third-party devices. The third-party devices can include mobile phones, tablet computers, notebook computers, vehicle-mounted computers and other smart terminals, etc.
[0057] The control method suitable for the air conditioner will be described below as an example. It should be understood that the control method in the embodiments of the present application can also be applied to the cloud platform and third-party devices.
[0058] It also needs to be explained that the control method of the air conditioner has universality, that is, the method is suitable for the air conditioner to carry out refrigeration or heating in low temperature environment or high temperature environment. In addition, the air conditioner based on the control method has the following structure: the controller of the air conditioner is connected to the health detection module, and the indoor unit 10 of the air conditioner is also provided with an oxygen generating module 20.
[0059] Specifically, the health detection module can be a smart device such as a smart bracelet, and the health detection module can also be a detection module installed on the air conditioner or the air conditioner remote controller 1. The present application does not make special limitation here, as long as the health detection module can detect the health detection information of the user. The following will be described by taking the health detection module provided on the air conditioner remote controller 1 as an example, without losing generality.
[0060] As shown in the control method of the air conditioner according to the first embodiment of the present application, Figure 1
[0061] Step S1, obtaining the health detection information of the user, the health detection information being the information sent by the health detection module after detecting the user;
[0062] Step S2, controlling the opening or closing of the oxygen generating module 20 according to the health detection information of the user, and adjusting the working state of the air conditioner after the oxygen generating module 20 is opened.
[0063] The specific working process of the control method of the air conditioner according to the embodiment of the present application is as follows: the health detection module is provided on the air conditioner remote controller 1, when the user holds the remote controller, or when the user directly places the finger on the detection position 51 of the health detection module, the health detection module on the air conditioner remote controller 1 can detect the health detection information of the current user. After detecting the health detection information, the health detection module sends the health detection information to the controller of the air conditioner, so that the controller can determine whether the oxygen generating module 20 is opened or not according to the health detection information of the user, and open the oxygen generating module 20 to generate oxygen when the health detection information of the user is abnormal, thereby ensuring the comfort and experience of the user. In addition, when the controller determines that the oxygen generating module 20 is opened, the controller will further adjust the working state of the air conditioner according to the use information including the health detection information.
[0064] Specifically, the health detection information detected by the health detection module can include the actual blood oxygen value, actual heart rate, actual pulse rate and body surface temperature of the user, and the present application does not make special limitation here, and the health detection information can also include other body information of the user. In addition, for the step of adjusting the working state of the air conditioner after the oxygen generating module 20 is opened, the working state of the air conditioner includes but is not limited to the working state of the oxygen generating module 20, the working state of the indoor fan, the working state of the compressor or the working state of the electronic expansion valve, etc.
[0065] For example, after the oxygen generating module 20 is turned on, the controller can adjust the oxygen generating rate and the oxygen generating time length of the oxygen generating module 20 according to the actual blood oxygen value, the actual heart rate or the actual pulse rate of the user and the like information.
[0066] In the related art, in a room using an air conditioner, in order to make the air conditioner achieve the best heat exchange effect, the doors and windows in the room are usually closed, but long time will cause the indoor air not to circulate, thereby causing the human body to be stuffy and dizzy and other uncomfortable conditions to appear, which will affect the user's health over a long period of time. In the prior art, a fresh air module is usually installed in the air conditioner or a separate fresh air machine is directly used to ventilate indoor and outdoor, thereby solving the problem of physical discomfort caused by air not circulating during the use of the air conditioner by introducing fresh outdoor air, but the fresh air module needs to replace filter elements and other consumables frequently, and the maintenance cost is high in the later period. In addition, the separate fresh air machine will also increase the floor area of the room, and in addition, the introduction of fresh air may also cause local overcooling or overheating problems.
[0067] In addition, by increasing the oxygen generating module 20 on the air conditioner, the indoor oxygen concentration can be effectively improved, thereby improving the indoor air quality, but the oxygen generating control method of the existing air conditioner cannot accurately control the oxygen generating logic of the air conditioner according to the actual situation of the indoor user, which affects the user's experience.
[0068] In summary, in order to solve the technical problems existing in the related art, the present application provides a control method of an air conditioner, which adds a health detection module on the air conditioner remote controller 1, and obtains the health detection information of the user based on the health detection module, so as to decide whether to open the oxygen generating module 20 according to the health detection information, and control and adjust the oxygen generating module 20 after it is opened. In this way, the present application adjusts the oxygen generating effect and the cooling or heating effect of the air conditioner according to different user health information, refines the oxygen generating control logic of the air conditioner, and makes the oxygen concentration in the indoor environment meet the current physical state of the user, thereby ensuring the comfort and experience of the user in the indoor environment.
[0069] According to some embodiments of the present application, the health detection information includes the actual blood oxygen value of the user, and the step of controlling the opening or closing of the oxygen generating module 20 and adjusting the working state of the air conditioner according to the health detection information of the user includes:
[0070] According to the actual blood oxygen value being less than or equal to the first blood oxygen value, the oxygen generating module 20 is controlled to be turned on, and the working mode of the oxygen generating module 20 is adjusted according to the interval range in which the actual blood oxygen value is located.
[0071] It can be understood that when the actual blood oxygen value of the user is less than or equal to the first blood oxygen value, it indicates that the blood oxygen concentration in the user's body is low at present, which may be caused by diseases or not eating, etc. In order to ensure the physical condition of the user, the controller controls the oxygen generating module 20 to start oxygen generation, so as to provide sufficient oxygen for the user and ensure that the physical condition of the user returns to normal.
[0072] In addition, under the premise that the actual blood oxygen value is less than or equal to the first blood oxygen value, when the actual blood oxygen value of the user is in different interval ranges, the user's demand for oxygen is also different, therefore, the controller will further adjust the working state and working parameters of the oxygen generating module 20, the compressor and the indoor fan and the like, so that the current oxygen generating amount of the air conditioner can meet the current oxygen demand of the user, and the automatic adjustment of the air conditioner state is realized.
[0073] For example, when the actual blood oxygen value of the user is less than or equal to 98, the controller controls the oxygen generating module 20 to start, so that the air conditioner delivers oxygen to the indoor environment or directly to the user, to meet the oxygen demand of the user.
[0074] In one specific embodiment of the present application, the step of adjusting the working mode of the oxygen generating module 20 according to the interval range in which the actual blood oxygen value is located specifically comprises:
[0075] According to the actual blood oxygen value being less than or equal to the first blood oxygen value and greater than or equal to the second blood oxygen value, the oxygen generating module 20 is controlled to enter a normal oxygen generating mode, wherein in the normal oxygen generating mode, oxygen enters the indoor environment along the air outlet of the indoor unit 10.
[0076] In this embodiment, when the actual blood oxygen value is less than or equal to the first blood oxygen value and greater than or equal to the second blood oxygen value, it indicates that the current blood oxygen concentration of the user is lower than the normal blood oxygen concentration but not too low, at this time the user's demand for oxygen is general, therefore, the oxygen generating module 20 will enter the normal oxygen generating mode, in which mode the oxygen generated by the oxygen generating module 20 enters the indoor environment along the air outlet, increasing the oxygen concentration in the indoor environment, so as to meet the user's demand and avoid excessive energy consumption.
[0077] For example, when the actual blood oxygen value of the user is less than or equal to 98 and greater than or equal to 94, the oxygen generating module 20 is started and enters the normal oxygen generating mode, at this time oxygen is directly discharged into the indoor environment.
[0078] In another specific embodiment of the present application, the step of adjusting the working mode of the oxygen generating module 20 according to the interval range in which the actual blood oxygen value is located specifically comprises:
[0079] According to the actual blood oxygen value being less than or equal to the second blood oxygen value and greater than the third blood oxygen value, the oxygen generating module 20 is controlled to enter a special oxygen generating mode, in which oxygen is directly delivered into the respiratory tract of the user through the oxygen delivery device.
[0080] In the embodiment, when the actual blood oxygen value is less than the second blood oxygen value and greater than the third blood oxygen value, it indicates that the current blood oxygen concentration of the user is too low, and the user has a high demand for oxygen. Therefore, in order to ensure sufficient use of oxygen and the health of the user, the oxygen generating module 20 enters the special oxygen generating mode, in which oxygen is directly delivered into the respiratory tract of the user through the oxygen delivery device, so as to timely deliver oxygen to the user and avoid the oxygen from being unable to be inhaled into the body due to unstable breathing of the user.
[0081] For example, when the actual blood oxygen value of the user is less than 94 and greater than 90, oxygen is directly delivered into the respiratory tract of the human body through the oxygen delivery device such as the nasal oxygen tube or the oxygen mask.
[0082] In another specific embodiment of the present application, the step of adjusting the working mode of the oxygen generating module 20 according to the interval range in which the actual blood oxygen value is located specifically includes:
[0083] According to the actual blood oxygen value being less than or equal to the third blood oxygen value, the oxygen generating module 20 is controlled to enter the special oxygen generating mode, and the indoor unit 10 is controlled to issue an alarm reminder.
[0084] In the embodiment, when the actual blood oxygen value is less than or equal to the third blood oxygen value, it indicates that the current blood oxygen concentration of the user is extremely low, and the user may be in danger. Therefore, in order to ensure the safety of the user, the oxygen generating module 20 enters the special oxygen generating mode, oxygen is delivered into the respiratory tract of the user through the oxygen delivery device, and the indoor unit 10 is timely controlled to issue an alarm reminder, so as to remind the user or the family of the user and ensure that the user can be timely treated and cured.
[0085] For example, when the actual blood oxygen value of the user is less than or equal to 90, oxygen is directly delivered into the respiratory tract of the human body through the oxygen delivery device such as the nasal oxygen tube or the oxygen mask, and the indoor unit 10 issues an alarm reminder, so as to remind the user to seek medical treatment in time.
[0086] According to some embodiments of the present application, after the step of controlling the oxygen generating module 20 to be turned on according to the actual blood oxygen value being less than or equal to the first blood oxygen value, the control method of the air conditioner further includes:
[0087] According to the interval range in which the actual blood oxygen value is located, the oxygen generating rate of the oxygen generating module 20 is adjusted, wherein the actual blood oxygen value and the oxygen generating rate are negatively correlated.
[0088] Specifically, the step of adjusting the oxygen generating rate of the oxygen generating module 20 according to the interval range in which the actual blood oxygen value is located specifically includes:
[0089] When the actual blood oxygen value is in the first blood oxygen interval, the oxygen generating module 20 is controlled to generate oxygen at a first oxygen generating rate;
[0090] When the actual blood oxygen value is in the second blood oxygen interval, the oxygen generating module 20 is controlled to generate oxygen at a second oxygen generating rate;
[0091] When the actual blood oxygen value is in the third blood oxygen interval, the oxygen generating module 20 is controlled to generate oxygen at a third oxygen generating rate.
[0092] The first blood oxygen interval is greater than the second blood oxygen interval, the second blood oxygen interval is greater than the third blood oxygen interval, and the first oxygen generating rate is less than the second oxygen generating rate, and the second oxygen generating rate is less than the third oxygen generating rate.
[0093] According to some embodiments of the present application, the health detection information includes the actual heart rate or the actual pulse rate of the user, and then, according to the health detection information of the user, the opening or closing of the oxygen generating module 20 is controlled, and after the oxygen generating module 20 is opened, the working state of the air conditioner is adjusted, which includes:
[0094] According to the actual heart rate being greater than a first preset heart rate, or the actual pulse rate being greater than a first preset pulse rate, the oxygen generating module 20 is controlled to be opened;
[0095] When the oxygen generating module 20 is determined to be opened, the air conditioner is controlled to enter a user exercise mode, wherein, in the user exercise mode, the air deflector of the indoor unit 10 is adjusted to the uppermost position or the lowermost position so as to avoid the air flow to the user.
[0096] It can be understood that the actual heart rate and the actual pulse rate can reflect the current condition of a person, when the actual heart rate or the actual pulse rate is too high, it indicates that the user is performing or has completed a vigorous aerobic exercise, in the above case, the user often has a high oxygen demand, therefore, after the controller detects that the actual heart rate or the actual pulse rate meets the condition, the oxygen generating module 20 is directly controlled to be opened, so as to provide sufficient oxygen for the user who is exercising or has completed the exercise, thereby avoiding the user from fainting due to hypoxia after vigorous exercise and other dangerous situations.
[0097] Further, the air conditioner further opens the user exercise mode, it can be understood that since a large amount of sweat will appear on the user's body when the user is exercising or has completed the exercise, if the air flow of the air conditioner directly blows to the user's body full of sweat, the user may catch a cold and have symptoms such as cold, therefore, in the user exercise mode, the air conditioner controls the air deflector to swing to the uppermost position or the lowermost position, so that the air flow flowing out of the air outlet blows upward or downward, thereby avoiding the area where the user is located, that is, in the user exercise mode, the air flow flowing out of the air outlet avoids the human body, thereby avoiding directly blowing to the user and causing the user to catch a cold, which ensures the user's demand and also ensures the use comfort of the air conditioner.
[0098] In some embodiments, after the step of determining that the oxygen production module 20 is turned on and controlling the air conditioner to enter the user exercise mode, the control method of the air conditioner further comprises:
[0099] In the user exercise mode, it is determined that the air conditioner is in the heating mode, and then the heating temperature of the air conditioner is controlled to be reduced by a heating change temperature based on the original heating temperature.
[0100] In this embodiment, in the user exercise mode, since the user is in the exercise state or has just finished the exercise, at this time, the user's body is heated due to the intense exercise. In order to make the user feel good body temperature, the controller will control the heating temperature of the air conditioner in the heating mode to be reduced, that is, the heating temperature of the air conditioner is controlled to be reduced by a heating change temperature based on the original heating temperature, thereby avoiding the adverse effects on the user in the exercise state due to the too high heating temperature, avoiding the user experiencing the adverse feeling of heat, and ensuring that the user has a good body temperature experience when exercising or after exercising.
[0101] Further, the heating change temperature is obtained according to the actual heart rate or the actual pulse rate. That is, the higher the actual heart rate or the actual pulse rate of the user is, the greater the amplitude of the reduction of the heating temperature is. In this way, the heating temperature of the air conditioner is adapted to the current physical condition of the user, and the user's experience is further improved.
[0102] In some embodiments, after the step of determining that the oxygen production module 20 is turned on and controlling the air conditioner to enter the user exercise mode, the control method of the air conditioner further comprises: in the user exercise mode, it is determined that the air conditioner is in the cooling mode, and then the cooling temperature of the air conditioner is controlled to be increased by a cooling change temperature based on the original cooling temperature.
[0103] In this embodiment, in the user exercise mode, since the user is in the exercise state or has just finished the exercise, at this time, the user's body sweats due to the intense exercise. Too low indoor temperature will cause the user's sweat to evaporate too fast, and then may cause the user to have the risk of catching a cold or getting a cold. Therefore, in order to avoid the user from catching a cold or getting a cold when exercising or after exercising, the controller will control the cooling temperature of the air conditioner in the cooling mode to be increased, that is, the cooling temperature of the air conditioner is controlled to be increased by a cooling change temperature based on the original cooling temperature, thereby avoiding the adverse effects on the user in the exercise state due to the too low cooling temperature, avoiding the user from catching a cold or getting a cold due to the too low temperature, and ensuring that the user has a good body temperature experience when exercising or after exercising.
[0104] Further, the cooling change temperature is obtained according to the actual heart rate or the actual pulse rate. That is, the higher the actual heart rate or the actual pulse rate of the user is, the greater the amplitude of the increase of the cooling temperature is. In this way, the cooling temperature of the air conditioner is adapted to the current physical condition of the user, and the user's experience is further improved.
[0105] According to some embodiments of the present application, after determining that the oxygen generating module 20 is turned on, the control method of the air conditioner further comprises:
[0106] In the user exercise mode, the oxygen generating rate of the oxygen generating module 20 is adjusted according to the actual heart rate or the actual pulse rate, wherein the actual heart rate and the actual pulse rate are positively correlated with the oxygen generating rate.
[0107] It can be understood that the greater the actual heart rate or the actual pulse rate of the user, the more intense the exercise of the user, and the more oxygen the user needs. At this time, the controller increases the oxygen generating rate of the oxygen generating module 20 to meet the oxygen demand of the user, thereby ensuring sufficient oxygen supply and providing a good experience for the user.
[0108] According to some embodiments of the present application, the control method of the air conditioner further comprises:
[0109] determining that the oxygen generating module 20 is turned on, and obtaining the oxygen concentration in the indoor environment in which the indoor unit 10 is located;
[0110] controlling the oxygen generating module 20 to be turned off according to the oxygen concentration being greater than the highest set concentration.
[0111] In this embodiment, during the process of turning on the oxygen generating module 20, the oxygen concentration in the indoor environment will gradually increase. Appropriate oxygen concentration is beneficial to the human body, but excessive oxygen may cause oxygen poisoning and the like. Therefore, the controller will always obtain and monitor the oxygen concentration in the indoor environment, and turn off the oxygen generating module 20 when the oxygen concentration is greater than the highest set concentration, thereby avoiding excessive oxygen concentration in the indoor environment and ensuring the use safety of the equipment and the personal safety of the user.
[0112] According to some embodiments of the present application, the control method of the air conditioner further comprises:
[0113] determining that the oxygen generating module 20 is turned on, and obtaining the indoor area in the indoor environment in which the indoor unit 10 is located, the number of users in the indoor environment, and health detection information corresponding to each user;
[0114] adjusting the oxygen generating rate and the oxygen generating duration of the oxygen generating module 20 according to the indoor area, the number of users, and the health detection information.
[0115] In this way, after the oxygen generating module 20 is turned on, the working parameters of the oxygen generating module 20 are adjusted by comprehensively considering the indoor area, the number of users, and the health detection information and the like, thereby realizing targeted and accurate oxygen generating control to cope with oxygen use in different scenarios.
[0116] A specific embodiment of the control method of the air conditioner according to the present application will be described below.
[0117] When the air conditioner is turned on, the oxygen generator module has two modes to choose from: normal oxygen generation mode and oxygen generation mode according to user blood oxygen value.
[0118] (1) Select normal oxygen generation mode with air conditioner remote control 1, and the air conditioner oxygen generator is turned on. The oxygen generator located in the outdoor unit produces oxygen, which is delivered to the oxygen generator module 20 of the indoor unit 10 and discharged into the indoor air. The specific structure is shown in Figure 1 After half an hour of operation, the oxygen sensor 30 in the indoor unit is started to detect the oxygen content in the air. If the oxygen content is less than 35%, the oxygen generator continues to operate. If the oxygen content is greater than 35%, the oxygen generator enters a dormant mode. After 30 minutes of dormancy, the oxygen sensor 30 in the indoor unit is started again to detect the oxygen content in the air. If the oxygen content is less than 35%, the oxygen generator continues to operate. If the oxygen content is greater than 35%, the oxygen generator enters a dormant mode. This cycle continues until the user turns off the normal oxygen generation mode and then turns off the oxygen generator.
[0119] (2) Select oxygen generation mode according to user blood oxygen value with air conditioner remote control 1. Detect the user's blood oxygen saturation with the blood oxygen detection module 5 located on the air conditioner remote control. Determine the operation of the oxygen generator based on the user's blood oxygen saturation value. ① If "blood oxygen value > 98", the oxygen generator is not turned on. ② If "94 ≤ blood oxygen value ≤ 98", enter normal oxygen generation mode, and the specific operation process is the same as the first item above. ③ If "blood oxygen value ≤ 90", alert the user to seek medical treatment to avoid delaying the disease. ④ If "90 < blood oxygen value < 94", remind the user to wear a nasal oxygen tube or oxygen mask, as the oxygen saturation at this value represents a severe lack of oxygen. Relying on increasing the oxygen content in the air cannot solve the problem of hypoxia. High-concentration oxygen is needed to solve the problem of hypoxia. After detecting the wearing of a nasal oxygen tube or oxygen mask, the air conditioner oxygen generator is turned on, and oxygen is inhaled by the user through the nasal oxygen tube or oxygen mask. After 1 hour of oxygen inhalation, re-detect the user's blood oxygen value. If "90 < blood oxygen value < 94", re-detect the user's blood oxygen value after 1 hour of oxygen inhalation. If the repeated oxygen inhalation blood oxygen value is still not more than 94, the user is advised to seek medical treatment to avoid delaying the disease. If the blood oxygen value is ≥ 94 after oxygen inhalation, the oxygen generator can be turned off, and the user can rest for 1-2 hours before inhaling oxygen again.
[0120] The control device of the air conditioner provided by the present application is described below. The control device of the air conditioner described below can be referred to in conjunction with the control method of the air conditioner described above.
[0121] According to the control device of the air conditioner of the second embodiment of the present application, the air conditioner remote control 1 of the air conditioner is provided with a health detection module connected with the air conditioner controller, and the indoor unit 10 of the air conditioner is further provided with an oxygen generator module 20.
[0122] As shown in Figure 2 The control device comprises:
[0123] The acquisition module 110 is configured to acquire health detection information of the user, the health detection information being information sent by a health detection module after detecting the user;
[0124] The execution module 120 is configured to control the oxygen production module 20 to be turned on or turned off according to the health detection information of the user, and adjust the working state of the air conditioner after the oxygen production module 20 is turned on.
[0125] As shown in Figures 3 to 7 The air conditioner according to the third aspect of the present application comprises an air conditioner remote controller 1, an indoor unit 10, an outdoor unit and a controller.
[0126] The air conditioner remote controller 1 is provided with a health detection module connected with the air conditioner controller; the indoor unit 10 is provided with an oxygen production module 20; and the controller is configured to execute the control method of the air conditioner described in the first aspect of the present application.
[0127] As shown in Figures 3 to 5 According to some embodiments of the present application, the air conditioner remote controller 1 comprises a remote control shell, a display screen 2, a key 3 and a health detection module.
[0128] Specifically, the remote control shell comprises a remote control upper cover 11 and a remote control lower cover 12, the display screen 2 and the key 3 are arranged on the operation surface of the remote control upper cover 11, the remote control lower cover 12 is provided with an inner recessed battery compartment, the battery compartment is configured to install a battery 13, and the battery compartment is opened and closed through a battery back cover 14, and a remote control computer board 4 is clamped and installed between the remote control upper cover 11 and the remote control lower cover 12.
[0129] The health detection module is a blood oxygen detection module 5, the blood oxygen detection module 5 is installed on the remote control lower cover 12 through a detachable installation cover 15, and the blood oxygen detection module 5 is provided with a detection position 51 for the user to place a finger.
[0130] As shown in Figure 7 Further, the indoor unit 20 of the air conditioner is provided with an oxygen sensor 30, and the oxygen sensor 30 is configured to detect the oxygen concentration in the indoor environment.
[0131] Figure 8 An example of an electronic device is shown in the physical structure schematic diagram, as Figure 8As shown, the electronic device can include a processor 810, a communications interface 820, a memory 830, and a communications bus 840, wherein the processor 810, the communications interface 820, and the memory 830 complete mutual communication through the communications bus 840. The processor 810 can invoke a logic instruction in the memory 830 to execute a control method of the air conditioner, the method including: obtaining health detection information of a user, the health detection information being information sent by a health detection module after detecting the user; controlling opening or closing of an oxygen production module 20 according to the health detection information of the user, and adjusting a working state of the air conditioner after the oxygen production module 20 is opened.
[0132] In addition, the logic instruction in the memory 830 described above can be implemented in the form of a software function unit and sold or used as an independent product, and can be stored in a computer-readable storage medium. Based on such understanding, the technical solutions of the present application essentially or the part that contributes to the prior art or part of the technical solutions can be embodied in the form of a software product. The computer software product is stored in a storage medium, includes several instructions to make a computer device (which can be a personal computer, a server, or a network device, etc.) execute all or part of the steps of the embodiments of the method of the present application. The foregoing storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM, Read-Only Memory), a random access memory (RAM, Random Access Memory), a magnetic disk or an optical disk, and various media that can store program codes.
[0133] On the other hand, the present application also provides a computer program product, the computer program product includes a computer program, the computer program can be stored on a non-transitory computer readable storage medium, and the computer program is executed by a processor, and the computer can execute a control method of an air conditioner, the method including: obtaining health detection information of a user, the health detection information being information sent by a health detection module after detecting the user; controlling opening or closing of an oxygen production module 20 according to the health detection information of the user, and adjusting a working state of the air conditioner after the oxygen production module 20 is opened.
[0134] In another aspect, the present application also provides a non-transitory computer readable storage medium having a computer program stored thereon, the computer program being executed by a processor to implement a control method of an air conditioner, the method including: obtaining health detection information of a user, the health detection information being information sent by a health detection module after detecting the user; controlling opening or closing of an oxygen production module 20 according to the health detection information of the user, and adjusting a working state of the air conditioner after the oxygen production module 20 is opened.
[0135] The apparatus embodiments described above are merely illustrative, wherein the units shown as separate components can or can not be physically separate, and the components shown as units can or can not be physical units, i.e., can be located in one place, or can be distributed to multiple network units. Part or all of the modules can be selected to achieve the purposes of the embodiments according to actual needs. Those skilled in the art can understand and implement without creative labor.
[0136] Through the description of the above embodiments, those skilled in the art can clearly understand that the embodiments can be realized by means of software and necessary universal hardware platforms, and of course can also be realized by hardware. Based on such understanding, the above technical solutions can be embodied in the form of software products, and the computer software products can be stored in a computer readable storage medium, such as ROM / RAM, magnetic disk, optical disk, etc., and include a plurality of instructions to make a computer device (which can be a personal computer, a server, or a network device, etc.) execute the methods described in each embodiment or some parts of the embodiments.
[0137] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the present application, and not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent replacement to part of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A control method of an air conditioner, characterized by, The controller of the air conditioner is connected with the health detection module, and the indoor unit of the air conditioner is further provided with an oxygen production module; The control method comprises: obtaining health detection information of a user, the health detection information being information sent by the health detection module after detecting the user; controlling the opening or closing of the oxygen production module according to the health detection information of the user, and adjusting the working state of the air conditioner after the oxygen production module is opened; the health detection information comprises an actual heart rate or an actual pulse rate of the user; the step of controlling the opening or closing of the oxygen production module according to the health detection information of the user, and adjusting the working state of the air conditioner after the oxygen production module is opened, comprises: controlling the oxygen production module to be opened according to the actual heart rate being greater than a first preset heart rate, or the actual pulse rate being greater than a first preset pulse rate; determining that the oxygen production module is opened, and controlling the air conditioner to enter a user exercise mode; in the user exercise mode, a wind deflector of the indoor unit is adjusted to an uppermost position or a lowermost position to avoid air outlet from the user; after the step of determining that the oxygen production module is opened, and controlling the air conditioner to enter the user exercise mode, the method further comprises: in the user exercise mode, determining that the air conditioner is in a heating mode, and then controlling the heating temperature of the air conditioner to be reduced by a heating change temperature based on an original heating temperature; or, in the user exercise mode, determining that the air conditioner is in a cooling mode, and then controlling the cooling temperature of the air conditioner to be increased by a cooling change temperature based on an original cooling temperature; wherein the heating change temperature or the cooling change temperature is obtained according to the actual heart rate or the actual pulse rate.
2. The control method of the air conditioner according to claim 1, characterized by, the health detection information comprises an actual blood oxygen value of the user; the step of controlling the opening or closing of the oxygen production module according to the health detection information of the user, and adjusting the working state of the air conditioner after the oxygen production module is opened, comprises: controlling the oxygen production module to be opened according to the actual blood oxygen value being less than or equal to a first blood oxygen value, and adjusting the working mode of the oxygen production module according to an interval range in which the actual blood oxygen value is located.
3. The control method of the air conditioner according to claim 2, characterized by, the step of adjusting the working mode of the oxygen production module according to the interval range in which the actual blood oxygen value is located, specifically comprises: controlling the oxygen production module to enter a normal oxygen production mode according to the actual blood oxygen value being less than or equal to the first blood oxygen value and greater than or equal to a second blood oxygen value, wherein in the normal oxygen production mode, oxygen enters an indoor environment along an air outlet of the indoor unit; controlling the oxygen production module to enter a special oxygen production mode according to the actual blood oxygen value being less than the second blood oxygen value and greater than a third blood oxygen value, wherein in the special oxygen production mode, oxygen is delivered to a respiratory tract of the user by an oxygen delivery device; controlling the oxygen production module to enter the special oxygen production mode and controlling the indoor unit to issue an alarm according to the actual blood oxygen value being less than or equal to the third blood oxygen value.
4. The control method of the air conditioner according to claim 2, characterized by, after the step of controlling the oxygen production module to be opened according to the actual blood oxygen value being less than or equal to the first blood oxygen value, the method further comprises: Adjust an oxygen production rate of the oxygen production module according to an interval range in which the actual blood oxygen value is located, wherein the actual blood oxygen value is negatively correlated with the oxygen production rate.
5. The control method of the air conditioner according to claim 1, characterized by, After the step of determining that the oxygen production module is turned on, the air conditioner is controlled to enter a user exercise mode, the method further comprises: In the user exercise mode, adjust the oxygen production rate of the oxygen production module according to an interval range in which the actual heart rate or the actual pulse rate is located, wherein the actual heart rate and the actual pulse rate are positively correlated with the oxygen production rate.
6. The control method of the air conditioner according to any one of claims 1 to 5, characterized by, The method further comprises: Determine that the oxygen production module is turned on, and obtain an oxygen concentration in an indoor environment in which an indoor unit is located; According to the oxygen concentration being greater than a highest set concentration, control the oxygen production module to be turned off.
7. The control method of the air conditioner according to any one of claims 1 to 5, characterized by, The method further comprises: Determine that the oxygen production module is turned on, and obtain an indoor area in the indoor environment in which the indoor unit is located, a number of users in the indoor environment, and the health detection information corresponding to each user; According to the indoor area, the number of users, and the health detection information, adjust the oxygen production rate and an oxygen production time length of the oxygen production module.
8. A control device of an air conditioner, characterized by comprising: The controller of the air conditioner is connected to a health detection module, and the indoor unit of the air conditioner is further provided with an oxygen production module; The control device comprises: An obtaining module is configured to obtain health detection information of a user, the health detection information being information sent by the health detection module after detecting the user; An executing module is configured to control turning on or turning off of the oxygen production module according to the health detection information of the user, and adjust a working state of the air conditioner after the oxygen production module is turned on; The health detection information comprises an actual heart rate or an actual pulse rate of the user; The step of controlling turning on or turning off of the oxygen production module according to the health detection information of the user, and adjusting the working state of the air conditioner after the oxygen production module is turned on, comprises: According to the actual heart rate being greater than a first preset heart rate, or the actual pulse rate being greater than a first preset pulse rate, control the oxygen production module to be turned on; Determine that the oxygen production module is turned on, and control the air conditioner to enter a user exercise mode; In the user exercise mode, an air deflector of the indoor unit is adjusted to an uppermost position or a lowermost position to avoid air outlet from the user; After the step of determining that the oxygen production module is turned on, the air conditioner is controlled to enter the user exercise mode, the method further comprises: In the user exercise mode, if it is determined that the air conditioner is in a heating mode, a heating temperature of the air conditioner is controlled to be reduced by a heating change temperature on the basis of an original heating temperature; Or, in the user exercise mode, if it is determined that the air conditioner is in a cooling mode, a cooling temperature of the air conditioner is controlled to be increased by a cooling change temperature on the basis of an original cooling temperature; The heating change temperature or the cooling change temperature is obtained according to the actual heart rate or the actual pulse rate.
9. An air conditioner characterized by comprising: The method comprises: An air conditioner remote controller is provided with a health detection module connected to a controller of the air conditioner; An indoor unit and an outdoor unit, the indoor unit is provided with an oxygen production module; A controller is configured to execute the control method of the air conditioner in any one of claims 1 to 7.
Citation Information
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