Air conditioner control method, device and equipment based on onset of rhinitis and air conditioner

By detecting the number of sneezes and the amount of sweat produced by users through smart wearable devices, the air conditioner adjusts its operating mode, solving the problem that air conditioners cannot reduce the irritation caused by nasal allergens, and improving the user's comfort and health.

CN119085076BActive Publication Date: 2025-12-19QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD +3
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Patent Information

Application Number
CN202310664481.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-06
Publication Date
2025-12-19
Estimated Expiration
2043-06-06

AI Technical Summary

Technical Problem

Existing air conditioners cannot effectively reduce the irritation of substances in the air that trigger rhinitis when regulating temperature and humidity, causing users with rhinitis to feel uncomfortable in the indoor environment and resulting in a poor user experience.

Method used

By detecting the number of sneezes and the amount of sweat produced by users through smart wearable devices, the operating mode of the air conditioner can be adjusted using the air conditioner's control module, including cooling, heating, sterilization, and fresh air functions, to improve the indoor environment and reduce the risk of rhinitis attacks.

Benefits of technology

It can effectively detect when a user is experiencing a rhinitis attack, and by adjusting temperature, wind speed, and air quality, reduce the sensitivity of users to environmental factors, reduce the risk of rhinitis attacks, and improve the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides an air conditioner control method and device based on onset of rhinitis, an air conditioner and an air conditioner, and relates to the technical field of air conditioners. The method comprises the following steps: acquiring the number of sneezes of a user within a preset time length, and comparing the number of sneezes with a preset sneeze number threshold; in the case that the number of sneezes is greater than the sneeze number threshold, determining that the user has onset of rhinitis; based on the situation of onset of rhinitis of the user, detecting the perspiration amount of the user by using a sweat detection component of a smart wearable device; and controlling the air conditioner to execute a target operation mode according to the situation of onset of rhinitis and the perspiration amount. The embodiments provided by the application can determine whether the user has onset of rhinitis, improve the indoor environment, regulate the indoor temperature, wind speed and air quality and other environmental factors, reduce the sensitive stimulation of environmental factors on the user, reduce the risk of continuous onset of rhinitis of the user, and improve the user experience.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of air conditioners, and in particular to an air conditioner control method and device based on onset of rhinitis, an air conditioner control equipment and an air conditioner. BACKGROUND

[0002] Allergic rhinitis (AR) is one of the most common allergic diseases. Rhinitis is an inflammatory disease of the nasal cavity caused by viruses, bacteria, allergens, various physical and chemical factors, and certain systemic diseases. There are a large number of substances in the air that can induce users to develop rhinitis, such as fungi, pollen, dust mites, dander, and dust.

[0003] An air conditioner is an air conditioning appliance for directly providing treated air to a closed room, space or area.

[0004] With the development of smart homes, air conditioners are designed to be more energy-efficient and environmentally friendly, and their functions are also developing in a diversified direction. Users adjust the temperature and humidity through air conditioners to improve the indoor environment, which can make them more comfortable in the indoor environment to some extent. However, since there are a large number of substances in the air that can induce rhinitis, users with rhinitis will still feel uncomfortable when staying in an indoor environment with adjusted temperature and humidity by an air conditioner, resulting in insufficient functionality of the air conditioner and poor user experience. SUMMARY

[0005] The present application provides an air conditioner control method and device based on onset of rhinitis, an air conditioner control equipment and an air conditioner, which can determine whether a user's rhinitis has onset, and reduce the risk of the user's rhinitis continuing to onset by improving the indoor environment and regulating environmental factors such as indoor temperature, wind speed and air quality, thereby improving the user experience.

[0006] In a first aspect, the present application provides an air conditioner control method based on onset of rhinitis, comprising:

[0007] Obtaining the number of sneezes of a user within a preset time period, and comparing the number of sneezes with a preset sneeze number threshold value;

[0008] If the number of sneezes is greater than the sneeze number threshold value, determining that the user's rhinitis has onset;

[0009] Based on the situation of the user's rhinitis onset, detecting the amount of sweat of the user using a sweat detection component of a smart wearable device;

[0010] According to the situation of the rhinitis onset and the amount of sweat, controlling the air conditioner to execute a target operation mode.

[0011] Preferably, the method for controlling an air conditioner based on the onset of rhinitis provided by the present application, the number of sneezes of the user within a preset time period is obtained, comprising:

[0012] In the case of sneezing of the user, a detection signal is emitted to the user by using the radar detection component of the smart wearable device;

[0013] The reflected signal returned according to the detection signal is received, and the reflected signal is analyzed and processed, the onset state of rhinitis of the user is analyzed, and the number of sneezes of the user within the preset time period is counted according to the onset state of rhinitis.

[0014] Preferably, the method for controlling an air conditioner based on the onset of rhinitis provided by the present application, the amount of sweat of the user is detected by using the sweat detection component of the smart wearable device, comprising:

[0015] The sweat exuded from the skin surface of the user is collected by using the flow-through channel of the sweat detection component;

[0016] The flow rate of the sweat exuded from the skin surface of the flow-through channel is monitored by using the flow sensor of the sweat detection component, and the amount of sweat of the user is obtained.

[0017] Preferably, the method for controlling an air conditioner based on the onset of rhinitis provided by the present application, the target operation mode of the air conditioner is controlled according to the situation of the onset of rhinitis and the amount of sweat, comprising:

[0018] In the case of determining that the onset of rhinitis is mild rhinitis, the amount of sweat is compared and processed with a preset standard sweat range, and a comparison result is obtained;

[0019] The target operation mode of the air conditioner is controlled according to the comparison result.

[0020] Preferably, the method for controlling an air conditioner based on the onset of rhinitis provided by the present application, the target operation mode at least includes: cooling mode, heating mode;

[0021] The target operation mode of the air conditioner is controlled according to the comparison result, comprising:

[0022] In the case where the comparison result indicates that the amount of sweat is greater than the upper limit value of the standard sweat range, the air conditioner is controlled to run in cooling mode, and the sterilization function and fresh air function of the air conditioner are started, wherein the cooling mode is to lower the indoor environment temperature by a preset temperature;

[0023] start the sterilization function and the fresh air function of the air conditioner in a case where the comparison result indicates that the amount of sweat is within the standard sweat range;

[0024] control the air conditioner to run in a heating mode and start the sterilization function and the fresh air function of the air conditioner in a case where the comparison result indicates that the amount of sweat is less than a lower limit value of the standard sweat range, wherein the heating mode is to increase the indoor environment temperature by the preset temperature.

[0025] Preferably, according to the air conditioner control method based on the onset of rhinitis provided by the present application, after the step of determining the onset of rhinitis of the user, the method further comprises:

[0026] in a case where the type of the onset of rhinitis of the user is determined to be severe allergic rhinitis, sending early warning information to the intelligent terminal of the user to enable the user to perform treatment according to the early warning information; and

[0027] obtaining user information of a priority user associated with the user, and synchronously sending the early warning information to the priority user according to the user information to enable the priority user to perform rescue to the user according to the early warning information.

[0028] In a second aspect, the present application further provides an air conditioner control device based on the onset of rhinitis, comprising:

[0029] an obtaining module configured to obtain the number of sneezes of a user within a preset time length, and compare the number of sneezes with a preset sneeze number threshold value;

[0030] a determining module configured to determine the onset of rhinitis of the user in a case where the number of sneezes is greater than the sneeze number threshold value;

[0031] a detecting module configured to detect the amount of sweat of the user by using a sweat detection component of a smart wearable device based on the situation of the onset of rhinitis of the user;

[0032] a control module configured to control an air conditioner to perform a target operation mode according to the situation of the onset of rhinitis and the amount of sweat.

[0033] In a third aspect, the present application further provides an electronic device, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor implements the steps of the air conditioner control method based on the onset of rhinitis according to any one of the above aspects when executing the program.

[0034] In a fourth aspect, the present application further provides a non-transitory computer-readable storage medium having stored thereon a computer program, which, when executed by a processor, implements the steps of any of the above-mentioned air conditioner control methods based on onset of rhinitis.

[0035] In a fifth aspect, the present application further provides a computer program product comprising a computer program, which, when executed by a processor, implements the steps of any of the above-mentioned air conditioner control methods based on onset of rhinitis.

[0036] In a sixth aspect, the present application further provides an air conditioner comprising a controller, which is wirelessly connected to a smart wearable device, the smart wearable device comprising at least a radar detection component and a sweat detection component, and the controller, when executed, implements the steps of any of the above-mentioned air conditioner control methods based on onset of rhinitis.

[0037] The present application provides an air conditioner control method, device, equipment and air conditioner based on onset of rhinitis, which acquires the number of sneezes of a user within a preset time length, and compares the number of sneezes with a preset sneeze number threshold value; in the case that the number of sneezes is greater than the sneeze number threshold value, it is determined that the user has onset of rhinitis; based on the situation of onset of rhinitis of the user, the sweat detection component of the smart wearable device is used to detect the amount of sweat of the user; and according to the situation of onset of rhinitis and the amount of sweat, the air conditioner is controlled to execute a target operation mode. It can be determined whether the user has onset of rhinitis, and by improving the indoor environment, based on the regulation and control of environmental factors such as indoor temperature, wind speed and air quality, the sensitive stimulation of environmental factors on the user is reduced, the risk of continuous onset of rhinitis of the user is reduced, and the user experience is improved. BRIEF DESCRIPTION OF DRAWINGS

[0038] In order to more clearly illustrate the technical solutions in the present application or the prior art, the following will briefly introduce the drawings needed to be used in the embodiments or prior art description. Obviously, the drawings in the following description are some embodiments of the present application, and for those skilled in the art, other drawings can also be obtained without creative labor.

[0039] Figure 1 is one of the flowcharts of the air conditioner control method based on onset of rhinitis provided by the present application;

[0040] Figure 2 is the second flowchart of the air conditioner control method based on onset of rhinitis provided by the present application;

[0041] Figure 3 is the structural schematic diagram of the air conditioner control device based on onset of rhinitis provided by the present application;

[0042] Figure 4 Fig. 1 is a structural schematic diagram of an electronic device provided by the present application. DETAILED DESCRIPTION

[0043] 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 with reference to the drawings in the present application. Obviously, the described embodiments are some but not all of the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative work fall within the protection scope of the present application.

[0044] The present application will be described below with reference to the drawings. Figures 1-4 The present application provides an air conditioner control method and device based on onset of rhinitis, and an air conditioner. The number of sneezes of a user within a preset time period is obtained, and the number of sneezes is compared with a preset sneeze threshold. If the number of sneezes is greater than the sneeze threshold, it is determined that the user has onset of rhinitis. Based on the onset of rhinitis of the user, a sweat detection component of a smart wearable device is used to detect the amount of sweat of the user. Based on the onset of rhinitis and the amount of sweat, the air conditioner is controlled to execute a target operation mode. Whether the user has onset of rhinitis can be determined, and by improving the indoor environment, based on the regulation of environmental factors such as indoor temperature, wind speed and air quality, the sensitive stimulation of the user by environmental factors is reduced, the risk of continuous onset of rhinitis of the user is reduced, and the user experience is improved.

[0045] As shown in Figure 1 Fig. 1 is one of the implementation flowcharts of an air conditioner control method based on onset of rhinitis provided by an embodiment of the present application. The air conditioner control method based on onset of rhinitis can include but is not limited to steps S100 to S400.

[0046] S100, the number of sneezes of a user within a preset time period is obtained, and the number of sneezes is compared with a preset sneeze threshold.

[0047] S200, if the number of sneezes is greater than the sneeze threshold, it is determined that the user has onset of rhinitis.

[0048] S300, based on the onset of rhinitis of the user, a sweat detection component of a smart wearable device is used to detect the amount of sweat of the user.

[0049] S400, based on the onset of rhinitis and the amount of sweat, the air conditioner is controlled to execute a target operation mode.

[0050] It should be noted that the execution subject of the air conditioner control method based on the onset of rhinitis in the embodiments of the present application can be a hardware device with data information processing capability and / or necessary software required to drive the hardware device to work.

[0051] Optionally, the execution subject can include but is not limited to a workstation, a server, a computer, a user terminal and other intelligent devices. The user terminal includes but is not limited to a mobile phone, a computer, an intelligent voice interactive device, a smart home appliance, a vehicle-mounted terminal and the like.

[0052] It should be further noted that the present application also provides an air conditioner comprising a controller, wherein the controller is wirelessly connected to a smart wearable device, the smart wearable device at least comprises a radar detection component and a sweat detection component, and the controller implements the steps of the air conditioner control method based on the onset of rhinitis.

[0053] It should be noted that the smart wearable device at least includes but is not limited to a smart bracelet, a smart watch and the like.

[0054] The radar detection component further comprises a transmitter and a receiver. The transmitter can emit a detection signal to the human body, and the receiver is used to receive a reflected signal. The radar detection component is used to analyze the onset state of rhinitis of the user based on the reflected signal.

[0055] The sweat detection component of the smart wearable device comprises a flow channel for capturing sweat and a flow sensor separated from the flow channel. When the human body skin surface exudes sweat, the sweat passes through the flow channel. At this time, an electric current is applied to the flow sensor. The flow sensor transmits heat to the flowing sweat through thermal diffusion. The electric current downwardly transports heat, so that a temperature difference can be generated at the location of the thermistor. By analyzing the temperature difference, the amount of sweat of the human body is determined.

[0056] In step S100 of some embodiments, the number of sneezes of the user within a preset time length is acquired, and the number of sneezes is compared with a preset sneeze number threshold.

[0057] It can be understood that the number of sneezes M of the user within a preset time length is first acquired. The specific execution steps can be that, in the case that the user sneezes, a detection signal is emitted to the user by using the radar detection component of the smart wearable device;

[0058] The reflected signal returned according to the detection signal is received, and the reflected signal is analyzed and processed. The onset state of rhinitis of the user is analyzed, and the number of sneezes of the user within the preset time length is counted according to the onset state of rhinitis.

[0059] In the case of monitoring the user sneezing, the radar detection component of the smart wearable device emits a detection signal to the user to determine the onset state of the user's rhinitis according to the reflected signal returned by the detection signal, and finally to count the number of sneezing of the user within the preset time length according to the onset state of the rhinitis.

[0060] When the user sneezes, the user's whole body will shake, so only the number of regular large movements of the user is counted by the smart wearable device, and the number of sneezing is the number of regular large movements. The sneezing movement of the user is matched with the preset movement, and if the matching is successful, it is considered that the user is sneezing.

[0061] It should be noted that the sneezing movement at least includes but is not limited to: bending movement, covering nose movement, head shaking movement.

[0062] When the user has a movement or reaches the preset collection time length, the image collection terminal is triggered to collect the image of the user, and the image is analyzed and processed to determine whether the bending movement, covering nose movement and head shaking movement of the user are generated at the same time. If so, it is determined that the whole body shaking of the user is sneezing, and it is determined that this sneezing is effective sneezing, which is counted in the number of sneezing.

[0063] If any of the bending movement, covering nose movement and head shaking movement does not meet the preset movement posture, it is determined that the whole body shaking of the user is not a sneezing movement, and it is determined that this is invalid sneezing, which is not counted in the number of sneezing. In this way, the accuracy of the number of sneezing can be improved, and the air conditioner can be more accurately controlled to achieve accurate adjustment of the indoor environment gas.

[0064] Further, the number of sneezing threshold is N, and the number of sneezing of the user is compared with the number of sneezing threshold to obtain a sneezing comparison result.

[0065] The sneezing comparison result at least includes but is not limited to the comparison result that the number of sneezing is greater than the number of sneezing threshold, and the comparison result that the number of sneezing is less than or equal to the number of sneezing threshold.

[0066] In step S200 of some embodiments, in the case that the number of sneezing is greater than the number of sneezing threshold, it is determined that the user's rhinitis is on.

[0067] It can be understood that after the step of obtaining the number of sneezing of the user within the preset time length and comparing the number of sneezing with the preset number of sneezing threshold is executed, the specific execution step can be: according to the sneezing comparison result that the number of sneezing is greater than the number of sneezing threshold, it is determined that the user's rhinitis is on.

[0068] Of course, according to the comparison result that the sneezing frequency is less than or equal to the sneezing frequency threshold, it is determined that the user's rhinitis does not attack.

[0069] In step S300 of some embodiments, based on the situation of the user's rhinitis attack, the sweat amount of the user is detected by using the sweat detection component of the smart wearable device.

[0070] It can be understood that after the step of determining that the user's rhinitis attacks in the case that the sneezing frequency is greater than the sneezing frequency threshold in step S200 is executed, the specific execution step can be: based on the situation of the user's rhinitis attack, the sweat exuded from the skin surface of the user is collected by using the flow-through channel of the sweat detection component.

[0071] The flow rate of the sweat exuded from the skin surface of the flow-through channel is monitored by using the flow sensor of the sweat detection component, and the sweat amount of the user is obtained.

[0072] It should be noted that when the human skin surface exudes sweat, the sweat passes through the flow-through channel, at this time, the current is applied to the flow sensor, the flow sensor transmits heat to the flowing sweat through thermal diffusion, the current downwardly transports heat, and a temperature difference can be generated at the location of the thermistor, by analyzing the temperature difference, the sweat amount of the human body is determined.

[0073] In step S400 of some embodiments, according to the situation of the rhinitis attack and the sweat amount, the air conditioner is controlled to execute a target operation mode.

[0074] It can be understood that after the step of detecting the sweat amount of the user by using the sweat detection component of the smart wearable device based on the situation of the user's rhinitis attack in step S300 is executed, the specific execution step can be: first, the situation of the rhinitis attack is judged, whether it is a mild rhinitis attack or a severe allergic rhinitis attack.

[0075] In the case that the rhinitis attack is determined to be a mild rhinitis, the sweat amount is compared with a preset standard sweat range, and a comparison result is obtained.

[0076] According to the comparison result, the air conditioner is controlled to execute the target operation mode.

[0077] First, it is further noted that the target operation mode at least includes: a cooling mode, a heating mode.

[0078] The step of controlling the air conditioner to execute the target operation mode according to the comparison result can be specifically: in a case where the comparison result indicates that the amount of sweating is greater than the upper limit value of the standard sweating range, controlling the air conditioner to operate in a cooling mode, and starting a sterilization function and a fresh air function of the air conditioner, wherein the cooling mode is to lower the indoor environment temperature by a preset temperature;

[0079] In a case where the comparison result indicates that the amount of sweating is within the standard sweating range, starting the sterilization function and the fresh air function of the air conditioner;

[0080] In a case where the comparison result indicates that the amount of sweating is less than the lower limit value of the standard sweating range, controlling the air conditioner to operate in a heating mode, and starting the sterilization function and the fresh air function of the air conditioner, wherein the heating mode is to raise the indoor environment temperature by the preset temperature.

[0081] According to the comparison result that the amount of sweating is greater than the upper limit value of the standard sweating range, the air conditioner is controlled to operate in a cooling mode, and a sterilization function and a fresh air function of the air conditioner are started to adjust and improve the environment to relieve the user's rhinitis attack situation.

[0082] According to the comparison result that the amount of sweating is within the standard sweating range, the indoor environment temperature does not need to be adjusted, and only the sterilization function and the fresh air function of the air conditioner need to be started to adjust and improve the environment.

[0083] According to the comparison result that the amount of sweating is less than the lower limit value of the standard sweating range, it indicates that the user feels cold when the rhinitis attacks, therefore, the air conditioner is controlled to operate in a heating mode to increase the indoor environment temperature, and the sterilization function and the fresh air function of the air conditioner are started to relieve the environment gas.

[0084] It is further explained that the indoor environment temperature can be obtained by an indoor temperature sensor, and the preset temperature of lowering or raising can be 2 degrees Celsius.

[0085] In some embodiments of the present application, after the step of determining the rhinitis attack of the user, the method further comprises:

[0086] In a case where the type of the rhinitis attack of the user is determined to be severe allergic rhinitis, sending early warning information to a smart terminal of the user to enable the user to treat according to the early warning information; and

[0087] Obtaining user information of a priority user associated with the user, and synchronously sending the early warning information to the priority user according to the user information to enable the priority user to rescue the user according to the early warning information.

[0088] It can also be understood that, in the case of determining that the type of the onset of rhinitis of the user is severe allergic rhinitis, sending early warning information to the smart terminal of the user, so that the user takes medicine or goes to a doctor in time according to the early warning information.

[0089] In the case of determining that the type of the onset of rhinitis of the user is severe allergic rhinitis, the user information of a priority user associated with the user is obtained at the same time, and the early warning information is synchronously sent to the priority user according to the user information, so that the priority user rescues the user according to the early warning information.

[0090] It should be noted that, before obtaining the user information of the priority user, the user information of the priority user is decrypted according to the severe allergic rhinitis information.

[0091] The user information of the priority user is encrypted by a public key in advance, and when the encrypted user information needs to be decrypted, the encrypted user information is decrypted by a private key.

[0092] In the case of determining that the user has severe allergic rhinitis, a decryption mechanism is automatically triggered to obtain a private key, and the encrypted user information is decrypted by the private key to obtain the user information of the priority user associated with the user.

[0093] For example, the user with the onset of rhinitis is a child, and the priority user is the parent.

[0094] As shown in Figure 2 The flowchart of the air conditioner control method based on the onset of rhinitis provided by the application is shown in FIG. 2. The number of sneezes M of the user in a preset time length is detected, and the number of sneezes M is compared with a preset sneeze threshold N. In the case of the number of sneezes being greater than the sneeze threshold, the amount of sweat T of the user is detected, and the amount of sweat of the user is compared with a preset standard sweat range. According to different comparison results, the indoor environment temperature is adjusted, and the sterilization function and the fresh air function of the air conditioner are started, so as to improve the environment gas and relieve the further development of the rhinitis of the user, thereby improving the experience of the user.

[0095] The application provides an air conditioner control method and device based on rhinitis attack, an air conditioner and an air conditioner control equipment. The number of sneezes of a user within a preset time period is obtained, and the number of sneezes is compared with a preset sneeze number threshold. If the number of sneezes is greater than the sneeze number threshold, it is determined that the user has rhinitis attack. Based on the situation of the user's rhinitis attack, the sweat amount of the user is detected by using a sweat detection component of a smart wearable device. According to the situation of the rhinitis attack and the sweat amount, the air conditioner is controlled to execute a target operation mode. Whether the user has rhinitis attack can be determined, the indoor environment is improved, environmental factors such as indoor temperature, air speed and air quality are regulated, the sensitive stimulation of the user to the environmental factors is reduced, the risk of continuous rhinitis attack of the user is reduced, and the user experience is improved.

[0096] The air conditioner control device based on rhinitis attack provided by the application is described below. The air conditioner control device based on rhinitis attack described below can be referred to the air conditioner control method based on rhinitis attack described above.

[0097] Figure 3 FIG. 1 is a structural schematic diagram of the air conditioner control device based on rhinitis attack provided by the application. The air conditioner control device based on rhinitis attack comprises:

[0098] The acquisition module 310 is configured to acquire the number of sneezes of a user within a preset time period, and compare the number of sneezes with a preset sneeze number threshold.

[0099] The determination module 320 is configured to determine that the user has rhinitis attack if the number of sneezes is greater than the sneeze number threshold.

[0100] The detection module 330 is configured to detect the sweat amount of the user by using a sweat detection component of a smart wearable device based on the situation of the rhinitis attack of the user.

[0101] The control module 340 is configured to control the air conditioner to execute a target operation mode according to the situation of the rhinitis attack and the sweat amount.

[0102] Preferably, according to the air conditioner control device based on rhinitis attack provided by the application, the acquisition module 310 is configured to emit a detection signal to the user by using a radar detection component of the smart wearable device if the user sneezes.

[0103] The reflected signal returned according to the detection signal is received, and the reflected signal is analyzed and processed to analyze the rhinitis attack state of the user, and the number of sneezes of the user within the preset time period is counted according to the rhinitis attack state.

[0104] Preferably, the air conditioner control device based on the onset of rhinitis provided by the present application, the detection module 330 is used to collect the sweat exuded from the skin surface of the user by using the flow channel of the sweat detection assembly.

[0105] The flow sensor of the sweat detection assembly is used to monitor the flow of the sweat exuded from the skin surface of the flow channel, and the amount of sweating of the user is obtained.

[0106] Preferably, the air conditioner control device based on the onset of rhinitis provided by the present application, the control module 340 is used to compare the amount of sweating with the preset standard sweating range when it is determined that the onset of rhinitis is mild rhinitis, and a comparison result is obtained.

[0107] The air conditioner is controlled to execute the target operation mode according to the comparison result.

[0108] Preferably, the air conditioner control device based on the onset of rhinitis provided by the present application, the control module 340 is used to control the air conditioner to operate in a cooling mode and start the sterilization function and fresh air function of the air conditioner when the comparison result indicates that the amount of sweating is greater than the upper limit value of the standard sweating range, wherein the cooling mode is to lower the indoor environment temperature by a preset temperature.

[0109] When the comparison result indicates that the amount of sweating is within the standard sweating range, the sterilization function and the fresh air function of the air conditioner are started.

[0110] When the comparison result indicates that the amount of sweating is less than the lower limit value of the standard sweating range, the air conditioner is controlled to operate in a heating mode, and the sterilization function and the fresh air function of the air conditioner are started, wherein the heating mode is to raise the indoor environment temperature by the preset temperature.

[0111] Preferably, the air conditioner control device based on the onset of rhinitis provided by the present application, after the step of determining the onset of rhinitis of the user, the device is specifically further used to send warning information to the intelligent terminal of the user when it is determined that the type of the onset of rhinitis of the user is severe allergic rhinitis, so that the user can be treated according to the warning information; and

[0112] Obtain the user information of the priority user associated with the user, and synchronize the warning information to the priority user according to the user information, so that the priority user can rescue the user according to the warning information.

[0113] The application provides a control method and device for an air conditioner based on onset of rhinitis, an air conditioner and an electronic device.

[0114] Figure 4 An example of a schematic diagram of a physical structure of an electronic device is shown in Figure 4 The electronic device can include a processor 410, a communications interface 420, a memory 430 and a communications bus 440, wherein the processor 410, the communications interface 420 and the memory 430 can communicate with each other through the communications bus 440. The processor 410 can call logical instructions in the memory 430 to execute a control method for an air conditioner based on onset of rhinitis, which includes: obtaining a sneezing frequency of a user within a preset time length, and comparing the sneezing frequency with a preset sneezing frequency threshold; in a case where the sneezing frequency is greater than the sneezing frequency threshold, determining that the user has onset of rhinitis; based on a situation of the onset of rhinitis of the user, detecting a perspiration amount of the user by using a sweat detection component of a smart wearable device; and controlling the air conditioner to execute a target operation mode according to the situation of the onset of rhinitis and the perspiration amount.

[0115] Further, the logic instructions in the memory 430 described above can be implemented in the form of software functional units and sold or used as independent products, and can be stored in a computer readable storage medium. Based on such understanding, the technical solutions of the present application essentially or the parts that make contributions to the prior art or parts of the technical solutions can be embodied in the form of a software product. The computer software product is stored in a storage medium, and includes a number of instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of the present application. The aforementioned 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.

[0116] In another aspect, the present application also provides a computer program product, which comprises 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, so that the computer can execute the air conditioner control method based on the onset of rhinitis provided by the above-mentioned methods. The method comprises: acquiring the sneezing frequency of a user within a preset time length, and comparing the sneezing frequency with a preset sneezing frequency threshold value; in the case that the sneezing frequency is greater than the sneezing frequency threshold value, determining that the user has an onset of rhinitis; based on the situation of the onset of rhinitis of the user, using a sweat detection component of a smart wearable device to detect the sweat amount of the user; and controlling the air conditioner to execute a target operation mode according to the situation of the onset of rhinitis and the sweat amount.

[0117] In yet another aspect, the present application also provides a non-transitory computer readable storage medium, which stores a computer program, and the computer program is executed by a processor to implement the air conditioner control method based on the onset of rhinitis provided by the above-mentioned methods. The method comprises: acquiring the sneezing frequency of a user within a preset time length, and comparing the sneezing frequency with a preset sneezing frequency threshold value; in the case that the sneezing frequency is greater than the sneezing frequency threshold value, determining that the user has an onset of rhinitis; based on the situation of the onset of rhinitis of the user, using a sweat detection component of a smart wearable device to detect the sweat amount of the user; and controlling the air conditioner to execute a target operation mode according to the situation of the onset of rhinitis and the sweat amount.

[0118] The device embodiments described above are merely illustrative, wherein the units described as separate components can or can not be physically separate, and the components displayed 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.

[0119] 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 the necessary general hardware platform, and of course can also be realized by hardware. Based on such understanding, the above technical solutions can be embodied in the form of a software product, which can be stored in a computer readable storage medium, such as a ROM / RAM, a magnetic disk, an optical disk, etc., and includes a number 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.

[0120] 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 for 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. An air conditioner control method based on onset of rhinitis, characterized by, The method comprises: acquiring the number of sneezes of a user within a preset time length, and comparing the number of sneezes with a preset sneeze number threshold; in a case where the number of sneezes is greater than the sneeze number threshold, determining that the user has a rhinitis attack; based on the situation of the rhinitis attack of the user, detecting the sweat amount of the user by using a sweat detection component of a smart wearable device; controlling an air conditioner to execute a target operation mode according to the situation of the rhinitis attack and the sweat amount; the controlling the air conditioner to execute the target operation mode according to the situation of the rhinitis attack and the sweat amount comprises: in a case where it is determined that the rhinitis attack is mild rhinitis, comparing the sweat amount with a preset standard sweat range to obtain a comparison result; controlling the air conditioner to execute the target operation mode according to the comparison result; the target operation mode at least comprises a cooling mode and a heating mode; the controlling the air conditioner to execute the target operation mode according to the comparison result comprises: in a case where the comparison result indicates that the sweat amount is greater than an upper limit value of the standard sweat range, controlling the air conditioner to operate in the cooling mode, and starting a sterilization function and a fresh air function of the air conditioner, wherein the cooling mode is to lower the indoor environment temperature by a preset temperature; in a case where the comparison result indicates that the sweat amount is within the standard sweat range, starting the sterilization function and the fresh air function of the air conditioner; in a case where the comparison result indicates that the sweat amount is less than a lower limit value of the standard sweat range, controlling the air conditioner to operate in the heating mode, and starting the sterilization function and the fresh air function of the air conditioner, wherein the heating mode is to raise the indoor environment temperature by the preset temperature.

2. The air conditioner control method based on rhinitis attack according to claim 1, wherein the acquiring the number of sneezes of a user within a preset time length comprises: in a case where the user sneezes, emitting a detection signal to the user by using a radar detection component of the smart wearable device; receiving a reflection signal returned according to the detection signal, and analyzing and processing the reflection signal to analyze the rhinitis attack state of the user, and counting the number of sneezes of the user within the preset time length according to the rhinitis attack state.

3. The air conditioner control method based on rhinitis attack according to claim 1, wherein the detecting the sweat amount of the user by using a sweat detection component of a smart wearable device comprises: collecting sweat exuded from the skin surface of the user by using a flow-through channel of the sweat detection component; monitoring the flow of the sweat exuded from the skin surface of the flow-through channel by using a flow sensor of the sweat detection component to obtain the sweat amount of the user.

4. The air conditioner control method based on rhinitis attack according to any one of claims 1 to 3, wherein after the step of determining the rhinitis attack of the user, the method further comprises: In a case where the type of the user's rhinitis attack is determined to be severe allergic rhinitis, a warning message is sent to the user's smart terminal to enable the user to perform treatment according to the warning message; and User information of a priority user associated with the user is acquired, and the warning message is synchronously sent to the priority user according to the user information to enable the priority user to perform rescue for the user according to the warning message.

5. An air conditioner control device based on onset of rhinitis, characterized by, The device is applied to the air conditioner control method based on a rhinitis attack according to any one of claims 1 to 4, and the device comprises: An acquisition module is configured to acquire the sneezing frequency of a user within a preset time length, and compare the sneezing frequency with a preset sneezing frequency threshold value; A determination module is configured to determine the rhinitis attack of the user in a case where the sneezing frequency is greater than the sneezing frequency threshold value; A detection module is configured to detect the perspiration amount of the user by using a sweat detection component of a smart wearable device based on the situation of the user's rhinitis attack; A control module is configured to control an air conditioner to perform a target operation mode according to the situation of the rhinitis attack and the perspiration amount.

6. An electronic device comprising a memory, a processor, and a computer program stored on the memory and executable on the processor, characterized in that, The processor implements the steps of the air conditioner control method based on a rhinitis attack according to any one of claims 1 to 4 when executing the program.

7. A non-transitory computer-readable storage medium having stored thereon a computer program, characterized in that, The computer program implements the steps of the air conditioner control method based on a rhinitis attack according to any one of claims 1 to 4 when executed by the processor.

8. An air conditioner comprising a controller, characterized by The controller is wirelessly connected with a smart wearable device, the smart wearable device at least comprises a radar detection component and a sweat detection component, and the controller implements the steps of the air conditioner control method based on a rhinitis attack according to any one of claims 1 to 4 when executed.

Citation Information

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