Air conditioner control method, device and air conditioner
By obtaining user characteristics and identity information, combining the air conditioner status, and determining the regulation mode, the problem that the air conditioner cannot adjust the ambient temperature according to the user's health needs is solved, real-time monitoring and adjustment of the ambient temperature is achieved, and user health and experience is improved.
Patent Information
- Application Number
- CN202211033444.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-08-26
- Publication Date
- 2025-08-19
- Estimated Expiration
- 2042-08-26
AI Technical Summary
Existing air conditioners cannot adjust the ambient temperature according to the user's health needs and cannot meet the comfort needs of different life modes.
By obtaining user's characteristic information and identity information, combining the current operating status of the air conditioner, determine the control mode, and control the air conditioner to perform the corresponding control mode, including the settings of wind temperature, wind speed and wind direction, to achieve real-time monitoring and regulation of ambient temperature.
Real-time monitoring and adjustment of ambient temperature under different life modes is achieved, improving the user's physical health and experience.
Smart Images

Figure CN115523649B_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of air conditioners, and in particular to a control method and device for an air conditioner, and the air conditioner. Background Art
[0002] Traditional air conditioning control is aimed at temperature control, but since there are many factors that affect human thermal comfort and users have increasingly higher requirements for their living environment, the home experience is not just about simple cooling and heating, but also about meeting the health and comfort requirements of people in different lifestyles. Existing air conditioners can no longer meet users' high demands for air conditioners. Summary of the Invention
[0003] The present invention provides a control method and device for an air conditioner, and an air conditioner, for overcoming the defect in the prior art that air conditioners cannot adjust the ambient temperature according to the health needs of users, and realizing real-time monitoring and adjustment of the ambient temperature of users in different life modes.
[0004] On the one hand, the present invention provides a method for controlling an air conditioner, comprising: obtaining characteristic information and identity information of a user, as well as the current operating status of the air conditioner; determining a control mode of the air conditioner based on the characteristic information, the identity information and the current operating status, and controlling the air conditioner to execute the control mode.
[0005] Furthermore, the step of obtaining the user's characteristic information specifically includes: obtaining the real-time heart rates of M users with a first preset time interval as the acquisition interval; obtaining the average real-time heart rates of N users with a second preset time interval; wherein M is greater than or equal to N, and both M and N are positive integers.
[0006] Furthermore, determining the control mode of the air conditioner based on the characteristic information, the identity information and the current operating status includes: obtaining the resting heart rate and the reserve heart rate, and determining a preset heart rate threshold based on the resting heart rate and the reserve heart rate; and determining the corresponding control mode based on the real-time heart rate average and the preset heart rate threshold.
[0007] Furthermore, the identity information includes user gender and user age, and the reserve heart rate is determined by the resting heart rate and the user age.
[0008] Furthermore, the step of determining the control mode of the air conditioner based on the characteristic information, the identity information and the current operating status specifically includes: obtaining a real-time heart rate offset value of N real-time heart rate average values at intervals of a third preset time length; if it is determined that the real-time heart rate offset value is greater than the preset heart rate offset value, then adjusting the resting heart rate according to the real-time heart rate offset value.
[0009] Furthermore, the step of determining the control mode of the air conditioner based on the characteristic information, the identity information and the current operating status specifically includes: obtaining the instant time and the cycle time set by the user; when the instant time is within the cycle time range, determining the resting heart rate to be a first preset resting heart rate; determining the reserve heart rate based on the user's gender, the user's age and the first preset resting heart rate.
[0010] Furthermore, the corresponding control mode is determined based on the real-time heart rate average value and the preset heart rate threshold, including: if the real-time heart rate average value is less than the first heart rate threshold, the control mode is determined to be the first preset control mode; if the real-time heart rate average value is greater than the first heart rate threshold and less than the second heart rate threshold, the control mode is determined to be the second control mode; if the real-time heart rate average value is greater than the second heart rate threshold and less than the third heart rate threshold, the control mode is determined to be the third preset control mode; if the real-time heart rate average value is greater than the third heart rate threshold and less than the fourth heart rate threshold, the control mode is determined to be the fourth preset control mode; if the real-time heart rate average value is greater than the fourth heart rate threshold, the control mode is determined to be the fifth preset control mode.
[0011] Furthermore, the method further includes: controlling the air conditioner to sound an alarm if the real-time heart rate average value is less than the first heart rate threshold, or the difference between the real-time heart rate average value and the fourth heart rate threshold exceeds a preset range.
[0012] In the second aspect, the present invention also provides a control device for an air conditioner, comprising: an acquisition module for acquiring characteristic information and identity information of a user, as well as the current operating status of the air conditioner; a control module for determining a control mode of the air conditioner based on the characteristic information, the identity information and the current operating status, and controlling the air conditioner to execute the control mode.
[0013] In a third aspect, the present invention further provides an air conditioner which, when in operation, adopts any of the above-mentioned air conditioner control methods, or includes the above-mentioned air conditioner control device.
[0014] The present invention provides a method for controlling an air conditioner, which obtains the user's characteristic information, identity information and the current operating status of the air conditioner, and determines the control mode of the air conditioner based on the obtained characteristic information, identity information and current operating status, and controls the air conditioner to execute the control mode. This method incorporates the user's health needs into the consideration of environmental regulation, overcomes the defect in the prior art that the air conditioner cannot adjust the ambient temperature according to the user's health needs, and realizes real-time monitoring and adjustment of the ambient temperature of the user under different life modes, which is beneficial to the user's physical health and effectively improves the user's experience. BRIEF DESCRIPTION OF THE DRAWINGS
[0015] In order to more clearly illustrate the technical solutions in the present invention or the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.
[0016] Figure 1 A schematic flow chart of a method for controlling an air conditioner provided by the present invention;
[0017] Figure 2 This is one of the control schematic diagrams of the air conditioner control method provided by the present invention;
[0018] Figure 3 This is a second control diagram of the air conditioner control method provided by the present invention;
[0019] Figure 4 This is a structural schematic diagram of the control device of the air conditioner provided by the present invention. DETAILED DESCRIPTION
[0020] To make the objectives, technical solutions, and advantages of the present invention more clear, the technical solutions of the present invention will be clearly and completely described below in conjunction with the accompanying drawings. Obviously, the embodiments described are only some embodiments of the present invention, not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts shall fall within the scope of protection of the present invention.
[0021] Figure 1 FIG. 1 is a flow chart showing a method for controlling an air conditioner according to the present invention. Figure 1 As shown, the method includes:
[0022] S101, obtaining characteristic information and identity information of the user, and the current operating status of the air conditioner.
[0023] It should be noted that in order for the air conditioner to adjust the ambient temperature according to the user's health needs, it is necessary to obtain the user's characteristic information, identity information and the current operating status of the air conditioner.
[0024] Among them, characteristic information refers to information related to the user's physical health, including but not limited to the user's heart rate data, blood pressure data, respiratory rate data and electrocardiogram, and can specifically be a combination of one or more of the aforementioned data; identity information refers to information that can distinguish the user from other users, such as the user's gender, age and residential location.
[0025] The current operating state of the air conditioner refers to the current operating mode of the air conditioner, including but not limited to whether the air conditioner is in heating mode, cooling mode, and dehumidification mode.
[0026] The user's characteristic information, identity information and the current operating status of the air conditioner are obtained. Specifically, the acquisition can be performed in real time or at intervals of a preset time, which is not specifically limited here.
[0027] In a specific embodiment, the user characteristic information is the user's heart rate data. The specific steps of obtaining the user characteristic information include: obtaining the real-time heart rates of M users at intervals of a first preset duration, and obtaining the average real-time heart rates of N users at intervals of a second preset duration. Where M and N are both positive integers, and M is greater than N, which indirectly indicates that the first preset duration is less than the second preset duration.
[0028] It should be noted that the preset duration, the first preset duration, and the second preset duration can be set according to actual conditions and are not specifically limited here. In a specific embodiment, the first preset duration is 5 seconds and the second preset duration is 20 seconds.
[0029] S102: Determine a control mode of the air conditioner according to the feature information, the identity information and the current operating state, and control the air conditioner to execute the control mode.
[0030] It can be understood that based on the user's characteristic information, identity information and the current operating status of the air conditioner obtained in the above step S101, the corresponding air conditioner control mode can be determined according to the obtained characteristic information, identity information and the current operating status of the air conditioner, and the air conditioner can be controlled to execute the control mode.
[0031] The control mode of an air conditioner refers to the control mode obtained by setting the air temperature, wind speed and wind direction of the air supplied by the air conditioner accordingly.
[0032] Specifically, the user's characteristic information can reflect the user's physical condition or current state to a certain extent. For example, if the user's real-time heart rate is high, it means that the user may be in a state of exercise. The user's identity information can also affect the determination of the control mode to a certain extent. For example, if the user is already eighty years old, he may pay more attention to keeping warm. The current operating status of the air conditioner can indicate the objective ambient temperature. Different objective ambient temperatures will affect the user's perceived temperature. For example, the user's perceived temperature in summer and winter is significantly different.
[0033] It should be noted that, during the preset time period of the control mode in step S102, a group command will be issued first, and then the user's characteristic information will be adjusted based on the feedback of the issued group command to ensure that the adjusted ambient temperature is suitable for the user's current physical condition.
[0034] It should also be noted that the air conditioner control method provided in this embodiment is applicable to all people, especially women.
[0035] In this embodiment, by obtaining the user's characteristic information, identity information and the current operating status of the air conditioner, and determining the control mode of the air conditioner based on the obtained characteristic information, identity information and current operating status, and controlling the air conditioner to execute the control mode, this method incorporates the user's health needs into the consideration of environmental regulation, overcomes the defect in the prior art that the air conditioner cannot adjust the ambient temperature according to the user's health needs, and realizes real-time monitoring and adjustment of the ambient temperature of the user in different life modes, which is beneficial to the user's physical health and effectively improves the user's experience.
[0036] On the basis of the above embodiment, further, the control mode of the air conditioner is determined according to the characteristic information, identity information and current operating status, including: obtaining the resting heart rate and reserve heart rate, and determining the preset heart rate threshold based on the resting heart rate and reserve heart rate; determining the corresponding control mode according to the real-time heart rate average and the preset heart rate threshold.
[0037] It can be understood that the control mode of the air conditioner is determined based on the characteristic information, identity information and current operating status. Specifically, the user's resting heart rate and reserve heart rate are obtained, and the preset heart rate threshold is determined based on the resting heart rate and reserve heart rate, so as to determine the corresponding control mode based on the real-time heart rate average and the preset heart rate threshold.
[0038] The resting heart rate refers to the number of heartbeats per minute when the user is awake and inactive. Typically, the resting heart rate is 60-100 beats per minute. In this embodiment, the default resting heart rate is 70 beats per minute.
[0039] Heart rate reserve is the difference between the measured maximum heart rate and the resting heart rate. It indicates the potential for the human heart rate to increase during work or exercise. Maximum heart rate refers to the heart's maximum heart rate. As mentioned above, user identity information may include the user's gender and age, and the aforementioned heart rate reserve can be determined based on the user's gender and age.
[0040] Specifically, the relationship between the reserve heart rate, the user's resting heart rate, and age is as follows:
[0041] b=220-ca
[0042] In the above formula, a is the user's resting heart rate, b is the user's reserve heart rate, and c is the user's age. The default reserve heart rate is 30 beats / minute.
[0043] It should also be noted that the preset heart rate threshold is set based on the resting heart rate and reserve heart rate.
[0044] When determining the current operating status of the air conditioner, the corresponding control mode is determined according to the real-time heart rate average value and the preset heart rate threshold. Specifically, if the real-time heart rate average value is less than the first heart rate threshold, the control mode is determined to be the first preset control mode; if the real-time heart rate average value is greater than the first heart rate threshold and less than the second heart rate threshold, the control mode is determined to be the second control mode; if the real-time heart rate average value is greater than the second heart rate threshold and less than the third heart rate threshold, the control mode is determined to be the third preset control mode; if the real-time heart rate average value is greater than the third heart rate threshold and less than the fourth heart rate threshold, the control mode is determined to be the fourth preset control mode; if the real-time heart rate average value is greater than the fourth heart rate threshold, the control mode is determined to be the fifth preset control mode.
[0045] Specifically, the settings of the first heart rate threshold, the second heart rate threshold, the third heart rate threshold, and the fourth heart rate threshold are shown in the following table:
[0046]
[0047] In the table above, x represents the average real-time heart rate. The table also shows that the range of the average real-time heart rate corresponds to the corresponding metabolic rate and state. Based on this, the control mode corresponding to the average heart rate, metabolic rate, and state is determined.
[0048] It should be noted that the control mode of the air conditioner is different when it is in different operating states, that is, the control mode is different when the air conditioner is in heating mode, cooling mode or dehumidification mode.
[0049] In a specific embodiment, when the smart scene is turned on, the air conditioner cloud is connected to a smart watch or smart bracelet to obtain real-time heart rate data from the smart watch or smart bracelet every 5 seconds, and calculates the real-time heart rate average every 20 seconds. A group command is issued within 5 seconds of the smart scene being turned on, and the resting heart rate is adjusted according to the feedback of the group command.
[0050] Figure 2 The figure shows one of the control flow diagrams of the air conditioner control method provided by the present invention.
[0051] like Figure 2 As shown, the current operating state of the air conditioner is cooling or dehumidification mode. When the real-time average heart rate obtained is within the range of x≤a+0.3b, it is determined that the user is in a leisure state. The controller of the air conditioner will issue an instruction to determine the control mode: temperature 23℃ + automatic left and right swing + automatic up and down swing + low wind speed + low fresh air.
[0052] When the real-time average heart rate is within the range of a+0.3b<x≤a+0.5b, it is determined that the user is in a walking state. The air conditioner controller will issue an instruction to determine the control mode: temperature 22℃ + automatic left and right swing + automatic up and down swing + low wind speed + high fresh air.
[0053] When the real-time average heart rate is within the range of a+0.5b<x≤a+0.7b, the user is judged to be in a jogging state, and the air conditioner controller will issue an instruction to determine the control mode: temperature 21℃ + automatic swinging air + up and down direct blowing protection + medium wind speed + high fresh air.
[0054] When the real-time average heart rate is within the range of a+0.7b<x≤a+0.8b, the user is judged to be in a fitness state, and the air conditioner controller will issue an instruction to determine the control mode: temperature 20℃ + automatic swinging air + up and down direct blowing protection + high wind speed + high fresh air.
[0055] When the real-time average heart rate is within the range of x>a+0.8b, the user is judged to be in a jogging state, and the air conditioner controller will issue an instruction to determine the control mode: temperature 18℃ + automatic swinging air + up and down direct blowing protection + high wind speed + strong opening + high fresh air.
[0056] Above, the environmental adjustment of the air conditioner in the cooling mode or the dehumidification mode is completed.
[0057] In another specific embodiment, Figure 3 The second control flow diagram of the air conditioner control method provided by the present invention is shown.
[0058] like Figure 3As shown, the current operating state of the air conditioner is heating mode. When the real-time average heart rate obtained is within the range of x≤a+0.3b, it is determined that the user is in a leisure state. The controller of the air conditioner will issue an instruction to determine the control mode: temperature 27℃ + automatic swing left and right + automatic swing up and down + low wind speed + low fresh air.
[0059] When the real-time average heart rate is within the range of a+0.3b<x≤a+0.5b, it is determined that the user is in a walking state. The air conditioner controller will issue an instruction to determine the control mode: temperature 26℃ + automatic left and right swing + automatic up and down swing + low wind speed + high fresh air.
[0060] When the real-time average heart rate is within the range of a+0.5b<x≤a+0.7b, the user is judged to be in a jogging state, and the air conditioner controller will issue an instruction to determine the control mode: temperature 25℃ + automatic swinging air + up and down direct blowing protection + medium wind speed + high fresh air.
[0061] When the real-time average heart rate is within the range of a+0.7b<x≤a+0.8b, the user is judged to be in a fitness state, and the air conditioner controller will issue an instruction to determine the control mode: temperature 24℃ + automatic swinging air left and right + protection against direct blowing up and down + high wind speed + high fresh air.
[0062] When the real-time average heart rate is within the range of x>a+0.8b, the user is judged to be in a jogging state, and the air conditioner controller will issue an instruction to determine the control mode: temperature 23℃ + automatic swinging air + up and down direct blowing protection + high wind speed + strong opening + high fresh air.
[0063] Above, the environmental adjustment of the air conditioner in the heating mode is completed.
[0064] In this embodiment, the preset heart rate threshold is determined by obtaining the resting heart rate and reserve heart rate, and the corresponding control mode is determined based on the real-time heart rate average and the preset heart rate threshold. By incorporating the user's health needs into the consideration of environmental regulation, the defect in the existing technology that the air conditioner cannot adjust the ambient temperature according to the user's health needs is overcome, and real-time monitoring and adjustment of the ambient temperature of the user in different life modes is achieved, which is beneficial to the user's physical health and effectively improves the user's experience.
[0065] Furthermore, the step of determining the control mode of the air conditioner based on the characteristic information, identity information and current operating status specifically includes: obtaining a real-time heart rate offset value of N real-time heart rate averages at intervals of a third preset time length; if it is determined that the real-time heart rate offset value is greater than the preset heart rate offset value, then adjusting the resting heart rate according to the real-time heart rate offset value.
[0066] Heart rate excursion refers to the situation where the user's heart rate continues to rise when performing certain exercises due to reasons such as increased body temperature, decreased body water, and physical fatigue.
[0067] In this case, every third preset time interval, the real-time heart rate offset value of N real-time heart rate averages is obtained, that is, it is obtained by dividing the current real-time heart rate average by the previous real-time heart rate average. When the obtained real-time heart rate offset value is greater than the preset heart rate offset value, the resting heart rate is adjusted according to the real-time heart rate offset value to determine the corresponding control mode.
[0068] It should be noted that the preset heart rate offset value is set according to the user's normal heart rate deviation. For example, in a specific embodiment, the preset heart rate offset value is 5%.
[0069] It should also be noted that the third preset duration can be set according to actual conditions and is not specifically limited here.
[0070] In this embodiment, the real-time heart rate offset value of N real-time heart rate average values is obtained every third preset time interval, and when it is determined that the real-time heart rate offset value is greater than the preset heart rate offset value, the resting heart rate is adjusted according to the real-time heart rate offset value, thereby determining a control mode that is suitable for the user's current state, which can effectively improve the user experience.
[0071] Furthermore, the step of determining the control mode of the air conditioner based on the characteristic information, identity information and current operating status specifically includes: obtaining the instantaneous time and the cycle time set by the user; when the instantaneous time is within the cycle time range, determining the resting heart rate as the first preset resting heart rate; determining the reserve heart rate based on the user's gender, user age and the first preset resting heart rate.
[0072] It is understood that determining the corresponding control mode based on the characteristic information, identity information, and current operating state specifically includes obtaining the current time and the user-set cycle time. Here, the current time is the current date, and the user-set cycle time is a specific time set by the user, such as a time period for recuperation. In one specific embodiment, the user-set cycle time is a woman's menstrual cycle.
[0073] When the acquired instant time is within the preset cycle time range, the resting heart rate is determined to be the first preset resting heart rate. Then, the reserve heart rate is determined based on the user's gender, user age and the first preset resting heart rate, thereby determining the corresponding control mode.
[0074] In this embodiment, by obtaining the instantaneous time and the cycle time pre-set by the user, and when the obtained instantaneous time is within the cycle time range, the resting heart rate is determined to be the first preset resting heart rate, and then the reserve heart rate is determined based on the user's gender, user age and the first preset resting heart rate, so as to further determine the control mode that is suitable for the cycle time.
[0075] Furthermore, the method further includes: if the real-time heart rate average value is less than the first heart rate threshold, or the difference between the real-time heart rate average value and the fourth heart rate threshold value exceeds a preset range, controlling the air conditioner to issue an alarm.
[0076] It can be understood that the first heart rate threshold and the fourth heart rate threshold are the limit values of the normal human heart rate. If the heart rate is lower than the first heart rate threshold or much higher than the fourth heart rate threshold, it can be reasonably inferred that the user may be sick. In this case, the user should be reminded.
[0077] Specifically, if the acquired real-time heart rate average value is less than the first heart rate threshold, or the difference between the real-time heart rate average value and the fourth heart rate threshold exceeds a preset range, the air conditioner is controlled to issue an alarm.
[0078] It should be noted that the first heart rate threshold, the fourth heart rate threshold, and the preset range are all set according to the normal heart rate of the human body. In a specific embodiment, the first heart rate threshold is 50 beats / minute, the fourth heart rate threshold is 120 beats / minute, and the preset range is 30 beats / minute.
[0079] It should also be noted that the alarm issued by the air conditioner can be one or more combinations of voice alarms, ringing alarms and light flashing alarms, which are not specifically limited here.
[0080] In this embodiment, when the real-time heart rate average is less than the first heart rate threshold, or the difference between the real-time heart rate average and the fourth heart rate threshold exceeds a preset range, the air conditioner will issue an alarm to remind the user to pay attention to the body, or undergo a physical examination to avoid unnecessary danger.
[0081] Figure 4 FIG. 1 shows a schematic diagram of the structure of the control device of the air conditioner provided by the present invention. Figure 4 As shown, the device includes: an acquisition module 401, which is used to obtain the user's characteristic information and identity information, as well as the current operating status of the air conditioner; a control module 402, which is used to determine the control mode of the air conditioner based on the characteristic information, identity information and current operating status, and control the air conditioner to execute the control mode.
[0082] In this embodiment, the user's characteristic information, identity information and the current operating status of the air conditioner are obtained through the acquisition module 401. The control module 402 determines the control mode of the air conditioner based on the acquired characteristic information, identity information and current operating status, and controls the air conditioner to execute the control mode. The device incorporates the user's health needs into the consideration of environmental regulation, overcomes the defect in the prior art that the air conditioner cannot adjust the ambient temperature according to the user's health needs, and realizes real-time monitoring and adjustment of the ambient temperature of the user under different life modes, which is beneficial to the user's physical health and effectively improves the user's experience.
[0083] The control device for the air conditioner provided by the present invention and the control method for the air conditioner described above can be referred to each other, and will not be described in detail here.
[0084] In addition, an embodiment of the present invention further provides an air conditioner, which adopts any of the above-mentioned air conditioner control methods during operation, or includes the above-mentioned air conditioner control device.
[0085] In this embodiment, the air conditioner adopts any of the above-mentioned air conditioner control methods when working, or includes the above-mentioned air conditioner control device. The air conditioner incorporates the user's health needs into the scope of environmental adjustment considerations, overcomes the defect in the prior art that the air conditioner cannot adjust the ambient temperature according to the user's health needs, and realizes real-time monitoring and adjustment of the ambient temperature of the user in different life modes, which is beneficial to the user's physical health and effectively improves the user's experience.
[0086] The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separate, and the components shown as units may or may not be physical units, i.e., they may be located in one location or distributed across multiple network units. Some or all of the modules may be selected based on actual needs to achieve the objectives of the present embodiment. Persons of ordinary skill in the art will be able to understand and implement the present invention without inventive effort.
[0087] Through the description of the above embodiments, those skilled in the art can clearly understand that each embodiment can be implemented by means of software plus a necessary general hardware platform, or of course, by hardware. Based on this understanding, the essence of the above technical solution or the part that contributes to the existing technology can be embodied in the form of a software product. The computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, a magnetic disk, an optical disk, etc., and includes a number of instructions for enabling a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods described in each embodiment or certain parts of the embodiments.
[0088] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, rather than to limit it. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or make equivalent replacements for some of the technical features therein. However, these modifications or replacements do not deviate the essence of the corresponding technical solutions from the spirit and scope of the technical solutions of the various embodiments of the present invention.
Claims
1. A method for controlling an air conditioner, characterized in that: include: Obtaining user's characteristic information and identity information, as well as the current operating status of the air conditioner; determining a control mode of the air conditioner according to the feature information, the identity information, and the current operating state, and controlling the air conditioner to execute the control mode; The step of obtaining the user's characteristic information specifically includes: Acquire the real-time heart rates of the M users at a first preset time interval; Obtaining the real-time average heart rate of N users at a second preset time interval; Wherein, M is greater than or equal to N, and both M and N are positive integers; The determining the control mode of the air conditioner according to the feature information, the identity information and the current operating state includes: Obtaining a resting heart rate and a reserve heart rate, and determining a preset heart rate threshold based on the resting heart rate and the reserve heart rate; Determining a corresponding control mode according to the real-time heart rate average value and the preset heart rate threshold; The step of determining the control mode of the air conditioner according to the feature information, the identity information and the current operating state specifically includes: Obtaining real-time heart rate offset values of N real-time heart rate averages at intervals of a third preset time length; If it is determined that the real-time heart rate offset value is greater than a preset heart rate offset value, the resting heart rate is adjusted according to the real-time heart rate offset value.
2. The air conditioner control method according to claim 1, characterized in that: The identity information includes user gender and user age, and the reserve heart rate is determined by the resting heart rate and the user age.
3. The air conditioner control method according to claim 2, characterized in that: The step of determining the control mode of the air conditioner according to the feature information, the identity information and the current operating state further includes: Obtaining the instant time and the cycle time set by the user; When the instantaneous time is within the periodic time range, determining the resting heart rate to be a first preset resting heart rate; The reserve heart rate is determined according to the user's gender, the user's age, and the first preset resting heart rate.
4. The air conditioner control method according to any one of claims 1 to 3, characterized in that: The determining of the corresponding control mode according to the real-time heart rate average value and the preset heart rate threshold includes: If the real-time heart rate average value is less than the first heart rate threshold, determining that the control mode is the first preset control mode; If the real-time heart rate average value is greater than the first heart rate threshold and less than the second heart rate threshold, determining that the control mode is the second control mode; If the real-time heart rate average value is greater than the second heart rate threshold and less than the third heart rate threshold, determining that the control mode is the third preset control mode; If the real-time heart rate average value is greater than the third heart rate threshold and less than the fourth heart rate threshold, determining that the control mode is the fourth preset control mode; If the real-time heart rate average value is greater than the fourth heart rate threshold, the control mode is determined to be the fifth preset control mode.
5. The air conditioner control method according to claim 4, characterized in that: Also includes: If the real-time heart rate average value is less than the first heart rate threshold, or the difference between the real-time heart rate average value and the fourth heart rate threshold exceeds a preset range, the air conditioner is controlled to issue an alarm.
6. A control device for an air conditioner, applying the control method for an air conditioner according to any one of claims 1 to 5, characterized in that: include: an acquisition module, for acquiring characteristic information and identity information of the user, and the current operating status of the air conditioner; The control module is used to determine the control mode of the air conditioner according to the characteristic information, the identity information and the current operating state, and control the air conditioner to execute the control mode.
7. An air conditioner, characterized in that: During operation, the air conditioner control method according to any one of claims 1 to 5 is adopted, or the air conditioner control device according to claim 6 is included.
Citation Information
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