A wearable controller, air conditioner control method and device

By automatically collecting health information and adjusting the air conditioner using a wearable controller, the problem of expensive and manually adjustable existing medical equipment is solved, achieving low-cost, automated air conditioner adjustment and improving the user experience.

CN115540234BActive Publication Date: 2025-11-18QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD +1
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Patent Information

Application Number
CN202211041357.5
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2022-08-29
Publication Date
2025-11-18
Estimated Expiration
2042-08-29

AI Technical Summary

Technical Problem

Existing medical equipment is expensive in places such as hospitals and nursing homes and requires manual air conditioning adjustment, resulting in a poor user experience. It is not possible to automatically adjust the air conditioning based on the user's health information at a low cost.

Method used

Design a wearable controller, including a health information collection device and an air conditioner controller, which can automatically collect relevant health information and generate air conditioner operating parameters after the user selects the type of illness, and send them to the air conditioner for automatic adjustment through a preset method.

Benefits of technology

It achieves low-cost, automatic adjustment of air conditioners to meet users' health needs, improves user experience, and simplifies equipment structure.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The application provides a wearable controller, an air conditioner control method and device, the wearable controller comprises a health information acquisition device and an air conditioner controller, the air conditioner controller is used for receiving a user-selected disease type after the user wears the wearable controller, the health information acquisition device is used for acquiring health information corresponding to the disease type, and the air conditioner controller is further used for generating operation parameters of an air conditioner according to the health information corresponding to the disease type, and sending the operation parameters to the air conditioner through a preset mode, so that the air conditioner operates according to the operation parameters. It can be seen that the wearable controller provided by the application can collect health information corresponding to the disease type of the user, and can automatically adjust the air conditioner based on the operation parameters generated based on the health information, the user experience is better, and the structure of the wearable controller is simple and the cost is lower.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of air conditioners, and in particular to a wearable controller, an air conditioner control method and device. BACKGROUND

[0002] At present, for places with many users such as hospitals and nursing homes, health information of users is usually collected by medical devices, and then the air conditioners in the place are manually adjusted based on the health information, so that the air environment in the place is more suitable for the physical condition of the user.

[0003] However, the existing medical devices are generally expensive and need to manually adjust the air conditioner, which results in poor user experience. Therefore, there is an urgent need for a low-cost device that can collect health information of users and automatically adjust the air conditioner in the place based on the health information. SUMMARY

[0004] Therefore, the present application provides a wearable controller, an air conditioner control method and device to solve the above technical problems, and the technical solutions are as follows:

[0005] A wearable controller comprises a health information collection device and an air conditioner controller.

[0006] The air conditioner controller is configured to receive a selected disease type of a user after the user wears the wearable controller.

[0007] The health collection device is configured to collect health information corresponding to the disease type.

[0008] The air conditioner controller is further configured to generate operation parameters of an air conditioner based on the health information corresponding to the disease type, and send the operation parameters to the air conditioner through a preset mode, so that the air conditioner operates according to the operation parameters.

[0009] Optionally, the wearable controller further comprises an environment collection device.

[0010] The environment collection device is configured to collect environment information of the user when the disease type is a target disease type.

[0011] The air conditioner controller generates operation parameters of the air conditioner based on the health information corresponding to the disease type, and specifically for:

[0012] Generating operation parameters of the air conditioner based on the health information corresponding to the target disease type and the environment information.

[0013] Optionally, the health collection device comprises at least one of a blood glucose collection device, a blood pressure collection device, a heart rate collection device and a body temperature collection device, and the environment information collection device comprises an air conditioner feeling device and / or a humidity collection device.

[0014] The blood glucose collection device is used for collecting blood glucose information of a user;

[0015] The blood pressure collection device is used for collecting blood pressure information of a user;

[0016] The heart rate collection device is used for collecting heart rate information of a user;

[0017] The body temperature collection device is used for collecting body temperature information of a user;

[0018] The air conditioner feeling device is used for positioning a position of a user, and collecting indoor temperature information around the user based on the position;

[0019] The humidity collection device is used for collecting indoor humidity information where the user is located.

[0020] Optionally, the blood glucose collection device is composed of a slide rail, a motion motor, a blood glucose collection device and a blood glucose analysis device, a side surface of the slide rail is a slope surface, and a blood glucose measurement head is arranged on the blood glucose collection device;

[0021] The motion motor drives the blood glucose collection device to move to the slide rail through the slope surface after detecting a remote controller signal, so as to collect a blood sample of the user after the blood glucose measurement head protrudes the wearable controller, and drives the blood glucose collection device to return to an initial position after the collection is completed;

[0022] The blood glucose analysis device analyzes the blood sample to obtain blood glucose information.

[0023] Optionally, if the disease type is a diabetes type, the health information corresponding to the disease type includes blood glucose information;

[0024] The operation parameters of the air conditioner are generated according to the health information corresponding to the disease type, including:

[0025] It is judged whether the blood glucose information is less than a preset first blood glucose threshold value;

[0026] If the blood glucose information is less than the first blood glucose threshold value, a wind speed adjustment parameter and a first temperature adjustment parameter are generated, wherein the wind speed adjustment parameter is used for controlling the air conditioner to blow at a low speed, and the first temperature adjustment parameter is used for controlling the air conditioner to keep the current indoor temperature not lower than a preset first temperature threshold value;

[0027] If the blood glucose information is greater than or equal to the first blood glucose threshold value, it is judged whether the blood glucose information is less than or equal to a preset second blood glucose threshold value;

[0028] If yes, a second temperature adjustment parameter and a first alarm parameter are generated, wherein the second temperature adjustment parameter is used for controlling the air conditioner to keep the current indoor temperature not higher than a preset second temperature threshold value, and the first alarm parameter is used for controlling the air conditioner to send a voice alarm to a nursing staff to inform the nursing staff to inject insulin for the user.

[0029] Optionally, if the disease type is a respiratory type, the health information corresponding to the disease type includes blood pressure information, body temperature information, and heart rate information.

[0030] The operation parameter of the air conditioner is generated according to the health information corresponding to the disease type, including:

[0031] It is judged whether the health information meets a first condition, wherein the first condition is that the blood pressure information is greater than a preset blood pressure threshold, the body temperature information is greater than a preset first body temperature threshold, and the heart rate information is greater than a preset first heart rate threshold.

[0032] If yes, a second alarm parameter and an oxygen increasing parameter are generated, wherein the second alarm parameter is used to control the air conditioner to issue a voice alarm to a caregiver, and the oxygen increasing parameter is used to control the air conditioner to deliver oxygen to the user through an oxygen increasing module, the oxygen increasing module being located above an outdoor unit of the air conditioner and being connected to an indoor unit through an oxygen delivery pipe connected to a power line and an online line.

[0033] Optionally, the target disease type includes a fever type, the health information corresponding to the fever type includes body temperature information and / or heart rate information, and the environmental information includes indoor temperature information.

[0034] If the target disease type is the fever type, the operation parameter of the air conditioner is generated according to the health information and the environmental information corresponding to the target disease type, including:

[0035] It is judged whether the body temperature information is greater than a preset second body temperature threshold, if yes, a fresh air opening parameter and a wind direction and speed adjusting parameter are generated, wherein the fresh air opening parameter is used to control the air conditioner to open a fresh air function, and the wind direction and speed adjusting parameter is used to control the air conditioner to locate the user and adjust a deflector and a small louver to blow low-speed air to the user after locating.

[0036] It is judged whether the indoor temperature information is greater than a preset indoor temperature threshold, if yes, a third temperature adjusting parameter is generated, wherein the third temperature adjusting parameter is used to control the air conditioner to reduce the current indoor temperature to the indoor temperature threshold.

[0037] and / or,

[0038] It is judged whether the body temperature information is greater than a preset third body temperature threshold or the heart rate information is greater than or equal to a preset second heart rate threshold.

[0039] If the body temperature information is greater than the third body temperature threshold or the heart rate information is greater than or equal to the second heart rate threshold, a third alarm parameter is generated, wherein the third alarm parameter is used to control the air conditioner to issue a voice alarm to the caregiver to inform the caregiver to perform a health check on the user.

[0040] Optionally, the target disease type includes a skin disease type, the health information corresponding to the skin disease type includes body temperature information, and the environmental information includes indoor humidity information.

[0041] If the target disease type is the skin disease type, the operation parameter of the air conditioner is generated according to the health information corresponding to the target disease type and the environmental information, and the operation parameter of the air conditioner includes:

[0042] It is determined whether the body temperature information is greater than a fourth preset body temperature threshold value and whether the indoor humidity information is greater than a first preset humidity threshold value.

[0043] If the body temperature information is greater than the fourth body temperature threshold value and the indoor humidity information is greater than the first humidity threshold value, a dehumidification parameter and a fourth temperature adjustment parameter are generated, wherein the dehumidification parameter is used to control the air conditioner to keep the current indoor humidity at a second preset humidity threshold value, the second humidity threshold value is less than the first humidity threshold value, and the fourth temperature adjustment parameter is used to control the air conditioner to keep the current indoor temperature at a third preset temperature threshold value.

[0044] An air conditioner control method is applied to the wearable controller in any of the above, and the method includes:

[0045] After the user wears the wearable controller, the user-selected disease type is received.

[0046] The health information corresponding to the disease type is collected.

[0047] The operation parameter of the air conditioner is generated according to the health information corresponding to the disease type.

[0048] The operation parameter is sent to the air conditioner in a preset manner, so that the air conditioner operates according to the operation parameter.

[0049] An air conditioner control device is applied to the wearable controller in any of the above, and the device includes a disease type determination module, a health information collection module, an operation parameter generation module, and an air conditioner control module.

[0050] The disease type determination module is used to receive the user-selected disease type after the user wears the wearable controller.

[0051] The health information collection module is used to collect the health information corresponding to the disease type.

[0052] The operation parameter generation module is used to generate the operation parameter of the air conditioner according to the health information corresponding to the disease type.

[0053] The air conditioner control module is used to send the operation parameter to the air conditioner in a preset manner, so that the air conditioner operates according to the operation parameter.

[0054] Via the technical solution, the wearable controller comprises a health information collection device and an air conditioner controller. The air conditioner controller is configured to receive a selected disease type of a user after the user wears the wearable controller. The health information collection device is configured to collect health information corresponding to the disease type. The air conditioner controller is further configured to generate operation parameters of an air conditioner according to the health information corresponding to the disease type, and send the operation parameters to the air conditioner through a preset mode, so that the air conditioner operates according to the operation parameters. Therefore, the wearable controller can collect health information corresponding to the disease type of the user, and automatically adjust the air conditioner based on the operation parameters generated based on the health information, thereby providing a better user experience. Compared with the existing medical equipment, the wearable controller has a simple structure and a lower cost. BRIEF DESCRIPTION OF DRAWINGS

[0055] In order to more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the drawings needed to be used in the embodiments or the prior art description will be briefly introduced. Obviously, the drawings in the following description are only embodiments of the present application, and other drawings can be obtained by the provided drawings without creative labor for those skilled in the art.

[0056] Figure 1 A structural schematic diagram of a wearable controller provided by an embodiment of the present application;

[0057] Figure 2 A structural schematic diagram of a wearable controller provided by an embodiment of the present application;

[0058] Figure 3 A structural schematic diagram of another wearable controller provided by an embodiment of the present application;

[0059] Figure 4a A schematic diagram of a blood glucose measurement head provided by an embodiment of the present application;

[0060] Figure 4b A partial view of a blood glucose measurement head provided by an embodiment of the present application;

[0061] Figure 4c A schematic diagram of a blood glucose collection device in an initial position provided by an embodiment of the present application;

[0062] Figure 4d A partial view of a blood glucose collection device in an initial position provided by an embodiment of the present application;

[0063] Figure 5 An exploded view of a wearable controller provided by an embodiment of the present application;

[0064] Figure 6A connection structure diagram of an oxygen-increasing module of an air conditioner provided in an embodiment of the present application is shown in the figure.

[0065] Figure 7 A structure diagram of a wearable controller provided in an embodiment of the present application is shown in the figure.

[0066] Figure 8 A structure diagram of a wearable controller provided in an embodiment of the present application is shown in the figure.

[0067] Figure 9 A flow diagram of an air conditioner control method provided in an embodiment of the present application is shown in the figure.

[0068] Figure 10 A structure diagram of an air conditioner control device provided in an embodiment of the present application is shown in the figure. DETAILED DESCRIPTION

[0069] The technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all 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 any creative work fall within the scope of protection of the present application.

[0070] The present application provides a wearable controller. Next, the wearable controller provided in the present application will be described in detail through the following embodiments.

[0071] Please refer to Figure 1 , a structure diagram of a wearable controller provided in an embodiment of the present application is shown in the figure. The wearable controller 1 can include a health information acquisition device 11 and an air conditioner controller 12.

[0072] The air conditioner controller 12 is configured to receive a selected disease type of a user after the user wears the wearable controller.

[0073] The health information acquisition device 11 is configured to acquire health information corresponding to the disease type.

[0074] The air conditioner controller 12 is configured to generate operation parameters of an air conditioner according to the health information corresponding to the disease type, and send the operation parameters to the air conditioner through a preset mode, so that the air conditioner operates according to the operation parameters.

[0075] Specifically, the user specifically refers to a patient user, and the patient user can select a disease type according to a disease condition of the patient user, for example, input the disease type through various manners such as a button (which can be a virtual button or a physical button, and the virtual button can be a button on a touch screen or other buttons) or voice or gesture provided on the wearable controller, and the air conditioner controller 12 can send the disease type to the health information collection device 11, so that the health information collection device 11 can collect health information corresponding to the disease type, and then the air conditioner controller 12 generates operation parameters according to the collected health information of the user, and sends the operation parameters to the air conditioner, so as to adjust the environment where the user is located through the air conditioner.

[0076] Optionally, a control table in which operation parameters corresponding to different health information (or interval ranges of health information) under different disease types are stored in advance can be stored in the air conditioner controller 12, when the health information of a user is collected, the operation parameters corresponding to the collected health information can be searched from the control table corresponding to the disease type input by the user, and the operation parameters are taken as the operation parameters of the air conditioner; optionally, the operation parameters calculated in real time according to the health information can also be obtained.

[0077] In this embodiment, the wearable controller 1 can be taken as a control device of the air conditioner, and then the air conditioner controller 12 can encapsulate the operation parameters into a control instruction after generating the operation parameters of the air conditioner according to the health information, and then send the control instruction to the air conditioner through a preset manner, and the air conditioner can parse the operation parameters from the control instruction after receiving the control instruction, and then operate according to the operation parameters, so as to realize the adjustment of the air conditioner based on the collected health information by the wearable controller 1.

[0078] Here, the preset manner includes at least one of a Bluetooth manner, an infrared manner and a wireless manner; the health information includes but is not limited to the following information: body temperature information, blood pressure information, blood sugar information and heart rate information. Of course, the preset information and the health information can also be other, which are not limited here.

[0079] It is worth noting that the specific health information collected is slightly different when the disease type is different, for example, if the disease type is a fever type, at least one of the body temperature information and the heart rate information of the patient user is included in the health information corresponding to the fever type; if the disease type is a diabetes type, the blood sugar information of the patient user is included in the health information corresponding to the diabetes type; if the disease type is a skin disease type, the body temperature information of the patient user is included in the health information corresponding to the skin disease type; if the disease type is a respiratory tract type, the blood pressure information, the body temperature information and the heart rate information of the patient user are included in the health information corresponding to the respiratory tract type, and so on.

[0080] Of course, the above health information is only an example, and can also be adjusted and set according to actual conditions.

[0081] The wearable controller provided in this application includes a health information collection device and an air conditioner controller. The air conditioner controller receives the user's selected disease type after the user wears the wearable controller. The health information collection device collects health information corresponding to the disease type. The air conditioner controller also generates operating parameters for the air conditioner based on the health information corresponding to the disease type and sends these operating parameters to the air conditioner via a preset method, so that the air conditioner operates according to the operating parameters. Therefore, the wearable controller provided in this application can collect health information corresponding to the user's disease type and automatically adjust the air conditioner based on the operating parameters generated from the health information, resulting in a better user experience. Furthermore, compared to existing medical devices, the wearable controller provided in this application has a simpler structure and lower cost.

[0082] In an alternative embodiment, the wearable controller may specifically be a wristband controller, for example, see [link to relevant documentation]. Figure 2 The diagram shows the overall structure of the wearable controller. The wearable controller 1 has a wristband 13 on its back, which can be used to fix the wearable controller 1 to the user's wrist.

[0083] Of course, the structure of the wearable controller can also be other, and this application does not limit it.

[0084] In another alternative embodiment, see Figure 3 As shown, the health data collection device 11 includes at least one of a blood glucose collection device 111, a blood pressure collection device 112, a heart rate collection device 113, and a body temperature collection device 114. Specifically, the blood glucose collection device 111 is used to collect the user's blood glucose information; the blood pressure collection device 112 is used to collect the user's blood pressure information; the heart rate collection device 113 is used to collect the user's heart rate information; and the body temperature collection device 114 is used to collect the user's body temperature information.

[0085] Optionally, the blood glucose collection device 111 consists of a slide rail 1111, a motion motor 1112, a blood glucose collection device 1113, and a blood glucose analysis device 1114. One side of the slide rail 1111 is a slope, and a blood glucose measurement head is provided on the blood glucose collection device 1113.

[0086] In this embodiment, after detecting the remote control signal, the motion motor 1112 can drive the blood glucose collection device 1113 to move along the slope to the slide rail 1111, so as to collect the user's blood sample after the wearable controller 1 is placed on the top of the blood glucose measuring head. After the collection is completed, the blood glucose collection device 1113 is driven back to the initial position. See details below. Figures 4a-4b The diagram shown is of the blood glucose meter protruding from the top of the head, and Figures 4c-4d The diagram shown illustrates the blood glucose collection device in its initial position. Figures 4a-4d(Motor 1112 is not shown).

[0087] The blood sample collected by the blood glucose meter can be sent to the blood glucose analyzer 1114, which will analyze the blood glucose and obtain blood glucose information.

[0088] Here, the remote control signal can be a signal triggered by the user through various means such as buttons, voice, or gestures set on the wearable controller 1, or it can be a signal automatically generated based on a pre-set collection cycle, thereby realizing automatic or manual collection of blood glucose signals.

[0089] See Figure 5 The exploded view of the wearable controller shown shows that the wearable controller 1 also includes: a front shell 14, a back shell 15, a battery cover 16, buttons and an LCD screen 17, a computer board 18, a baffle 19, and other components 10.

[0090] In this embodiment, a fixing device is provided on the inner surface of the rear shell 15, which includes a blood pressure acquisition device 112 and a heart rate acquisition device 113; a body temperature acquisition device 114 is provided on the inner surface of the battery cover 14 of the wearable controller 1, and an air conditioner controller 12 is provided on the computer board 18.

[0091] It should be noted that, Figure 5 The exploded view shown is for illustrative purposes only and is not intended to limit this application.

[0092] In one embodiment of this application, in order to enable those skilled in the art to better understand the process by which the air conditioner controller 12 "generates operating parameters of the air conditioner based on health information corresponding to the disease type", the following two control logics are provided, but not limited to.

[0093] The first type of control logic: control logic for the disease type of diabetes.

[0094] Optionally, when the disease type is a diabetes type, the health information corresponding to the disease type includes blood glucose information. Then, the process of the air conditioner controller 12 "generating the operation parameters of the air conditioner according to the health information corresponding to the disease type" can include: judging whether the blood glucose information is less than a preset first blood glucose threshold; if the blood glucose information is less than the first blood glucose threshold, generating a wind speed adjustment parameter and a first temperature adjustment parameter, wherein the wind speed adjustment parameter is used to control the air conditioner to blow at a low speed, and the first temperature adjustment parameter is used to control the air conditioner to keep the current indoor temperature not lower than a preset first temperature threshold; if the blood glucose information is greater than or equal to the first blood glucose threshold, judging whether the blood glucose information is less than or equal to a preset second blood glucose threshold; if yes, generating a second temperature adjustment parameter and a first alarm parameter, wherein the second temperature adjustment parameter is used to control the air conditioner to keep the current indoor temperature not higher than a preset second temperature threshold, and the first alarm parameter is used to control the air conditioner to send a voice alarm to the caregiver to inform the caregiver to inject insulin for the user.

[0095] For example, the first blood glucose threshold is 6 mmol / L, the second blood glucose threshold is 9 mmol / L, the first temperature threshold is 26°C, and the second temperature threshold is 24°C. When the health collection module 11 collects the blood glucose information of a diabetes patient, if the air conditioner controller 12 judges that the blood glucose information is lower than 6 mmol / L, the air conditioner controller 12 sends the wind speed adjustment parameter and the first temperature adjustment parameter to the air conditioner, so that the air conditioner blows at a low speed and the temperature is not lower than 26°C to help the patient to pass through the physical cold discomfort caused by low blood sugar. When the air conditioner controller 12 judges that the blood glucose information is between 6 mmol / L and 9 mmol / L, the air conditioner controller 12 sends the second temperature adjustment parameter and the first alarm parameter to the air conditioner, so that the air conditioner reduces the current indoor temperature to below 24°C, and alarms through the voice module to prompt the caregiver to inject insulin for the patient in time.

[0096] The second control logic is a control logic under a respiratory type disease.

[0097] Optionally, when the disease type is a respiratory type (such as asthma, etc.), the health information corresponding to the disease type includes blood pressure information, body temperature information, and heart rate information. Then, the process of the air conditioner controller 12 "generating the operation parameters of the air conditioner according to the health information corresponding to the disease type" can include: judging whether the health information satisfies a first condition, wherein the first condition is that the blood pressure information is greater than a preset blood pressure threshold, the body temperature information is greater than a preset first body temperature threshold, and the heart rate information is greater than a preset first heart rate threshold; if yes, generating a second alarm parameter and an oxygen increasing parameter, wherein the second alarm parameter is used to control the air conditioner to send a voice alarm to the caregiver, and the oxygen increasing parameter is used to control the air conditioner to deliver oxygen to the user through the oxygen increasing module.

[0098] Referring to Figure 6The connection structure of the air conditioner oxygen increasing module is shown. In the embodiment, the oxygen increasing module is located above the outdoor unit of the air conditioner, and is connected to the indoor unit through the oxygen supply pipe connected to the power line and the online line, specifically, connected to the preset hole on the rear baffle of the indoor unit.

[0099] For example, the first body temperature threshold is 37℃, the first heart rate threshold is 100 times per minute, and the blood pressure threshold is 120mmHg. When the health collection module 11 collects the blood pressure, heart rate and body temperature information of the asthma patient, if the air conditioner controller 12 judges that the body temperature information is greater than 37℃, the blood pressure information is greater than 120mmHg, and the heart rate information is greater than 100 times per minute, it is judged that the patient has an asthma attack. At this time, the second alarm parameter and the oxygen increasing parameter are sent to the air conditioner, so that the air conditioner alarms through the voice module, and the oxygen increasing module is started to accurately deliver oxygen to the patient.

[0100] It should be noted that the above two control logics are only examples, and in addition thereto, the embodiments of the present application can also include other control logics, which are not specifically limited herein.

[0101] By adjusting the air conditioner through the embodiment, the environment in which the user is located can be more suitable for the user's physical condition, and is more friendly to the user.

[0102] In another embodiment of the present application, considering that for some patients with a certain type of disease, the environmental information in which they are located can also cause the user to be uncomfortable, for example, a hot and humid or dry and cold indoor environment can also affect the patient experience. In order to make the patient in a more comfortable environment, the influence of the environmental information can also be considered when generating the running parameter.

[0103] Based on this, referring to Figure 7 As shown, the wearable controller 1 can further include an environment collection device 20.

[0104] In the embodiment, the environment collection device 20 is used to collect environmental information of the user when the disease type is the target disease type.

[0105] Optionally, referring to Figure 8 As shown, the environment collection device 20 can include an air conditioner sensing device 201 and / or a humidity collection device 202. The air conditioner sensing device 201 is used to locate the position of the user and collect the indoor temperature information around the user based on the position; the humidity collection device 202 is used to collect the indoor humidity information in which the user is located.

[0106] Optionally, an environmental temperature sensor is arranged on the air conditioner sensing device 201, and the indoor temperature information around the user can be collected through the environmental temperature sensor; similarly, an environmental humidity sensor is arranged on the humidity collection device 202, and the indoor humidity information in which the user is located can be collected through the environmental humidity sensor.

[0107] On the basis that the wearable controller 1 comprises the environment acquisition device 20, optionally, the process that the air conditioner controller 12 "generates the operation parameter of the air conditioner according to the health information corresponding to the target illness type" can comprise: generating the operation parameter of the air conditioner according to the health information corresponding to the target illness type and the environment information.

[0108] In order to make those skilled in the art more understand the process that the air conditioner controller 12 "generates the operation parameter of the air conditioner according to the health information corresponding to the target illness type and the environment information", the following two control logics are provided but not limited to.

[0109] The first control logic: the control logic under the illness type of fever type.

[0110] Optionally, the target illness type comprises the fever type, the health information corresponding to the fever type comprises the body temperature information and / or the heart rate information, and the environment information comprises the indoor temperature information.

[0111] Then optionally, if the target illness type is the fever type, the process that the air conditioner controller 12 "generates the operation parameter of the air conditioner according to the health information corresponding to the target illness type and the environment information" can comprise: judging whether the body temperature information is greater than a preset second body temperature threshold, if yes, generating the fresh air opening parameter and the wind direction and speed adjustment parameter, wherein the fresh air opening parameter is used to control the air conditioner to open the fresh air function, and the wind direction and speed adjustment parameter is used to control the air conditioner to locate the user and adjust the air deflector and the small louver to blow low-speed air to the user after locating; judging whether the indoor temperature information is greater than a preset indoor temperature threshold, if yes, generating the third temperature adjustment parameter, wherein the third temperature adjustment parameter is used to control the air conditioner to reduce the current indoor temperature to the indoor temperature threshold.

[0112] For example, the second body temperature threshold is 37℃, and the indoor temperature threshold is 22℃, then if the air conditioner controller 12 judges that the body temperature information is greater than 37℃, it is determined that the patient may be infected with the virus, and the fresh air opening parameter and the wind direction and speed adjustment parameter are sent to the air conditioner, so that the air conditioner opens the fresh air function to replace the indoor air and prevent other people in the room from being infected, at the same time, the air conditioner receives the wind direction and speed adjustment parameter, accurately locates the position of the patient user through the radar sensor, and adjusts the air deflector and the small louver to blow low-speed air to the patient user. At the same time, the air conditioner controller will also judge whether the indoor temperature is greater than 22℃, if yes, the current indoor temperature will be reduced to 22℃ to help the patient user reduce the body temperature.

[0113] Optionally, if the target disease type is the fever type, the process of the air conditioner controller 12 "generating the operation parameters of the air conditioner according to the health information and the environmental information corresponding to the target disease type" can further include: determining whether the body temperature information is greater than a preset third body temperature threshold or whether the heart rate information is greater than or equal to a preset second heart rate threshold; if the body temperature information is greater than the third body temperature threshold or the heart rate information is greater than or equal to the second heart rate threshold, a third alarm parameter is generated, wherein the third alarm parameter is used to control the air conditioner to issue a voice alarm to the caregiver to inform the caregiver to conduct a health check on the user.

[0114] For example, the third body temperature threshold is 38°C, and the second heart rate threshold is 100 times / minute. If the air conditioner controller 12 determines that the body temperature information is greater than 38°C or the heart rate reaches 100 times / minute, the third alarm parameter is sent to the air conditioner, so that the air conditioner starts the voice function and issues an alarm to inform the caregiver to come for inspection.

[0115] The second control logic: the control logic under the skin disease type.

[0116] Optionally, the target disease type includes a skin disease type (such as eczema, urticaria, etc.), and the health information corresponding to the skin disease type includes body temperature information, and the environmental information includes indoor humidity information.

[0117] Optionally, if the target disease type is the skin disease type, the process of the air conditioner controller 12 "generating the operation parameters of the air conditioner according to the health information and the environmental information corresponding to the target disease type" can include: determining whether the body temperature information is greater than a preset fourth body temperature threshold and whether the indoor humidity information is greater than a preset first humidity threshold; if the body temperature information is greater than the fourth body temperature threshold and the indoor humidity information is greater than the first humidity threshold, a dehumidification parameter and a fourth temperature adjustment parameter are generated, wherein the dehumidification parameter is used to control the air conditioner to keep the current indoor humidity at a preset second humidity threshold, the second humidity threshold is less than the first humidity threshold, and the fourth temperature adjustment parameter is used to control the air conditioner to keep the current indoor temperature at a preset third temperature threshold.

[0118] For example, the fourth body temperature threshold is 36.8°C, the first humidity threshold is 70%, the second humidity threshold is 40%, and the third temperature threshold is 22°C. For a patient with skin disease, the temperature and humidity in summer will cause redness and swelling on the skin, and the body temperature will rise. If the air conditioner controller 12 determines that the body temperature information is higher than 36.8°C and the indoor humidity information is greater than 70%, it is determined that the skin of the patient user has a lesion, and the dehumidification parameter and the fourth temperature adjustment parameter are sent to the air conditioner, so that the air conditioner dehumidifies the current indoor humidity to 40% and reduces the current indoor temperature to 22°C, thereby reducing the harm of the disease.

[0119] It should be noted that the specific values of the thresholds in the above control logic can be determined according to actual conditions, and the present application is not limited.

[0120] It should also be noted that the above two control logics are only examples, and in addition thereto, the embodiments of the present application can also include other control logics, which are not specifically limited here.

[0121] By adjusting the air conditioner through the embodiment, the environment in which the user is located can be more suitable for the user's physical condition, so that the user can be in a relatively comfortable environment, reducing the harm of the disease to the user.

[0122] The present application also provides an air conditioner control method, which can be applied to any of the wearable controllers described above, and the air conditioner control method provided by the present application will be described in detail through the following embodiments.

[0123] Please refer to Figure 9 , which shows the flowchart of the air conditioner control method provided by the embodiment of the present application, which can include:

[0124] Step S901, after the user wears the wearable controller, receiving the user-selected disease type.

[0125] Step S902, collecting health information corresponding to the disease type.

[0126] Step S903, generating the operation parameters of the air conditioner according to the health information corresponding to the disease type.

[0127] Step S904, sending the operation parameters to the air conditioner in a preset manner, so that the air conditioner operates according to the operation parameters.

[0128] The working principle of the air conditioner control method provided by the present application is the same as that of the above-mentioned wearable controller 1, and the details can be referred to the above-mentioned description of the wearable controller 1, which will not be repeated here.

[0129] The embodiment of the present application also provides an air conditioner control device, which will be described below.

[0130] Please refer to Figure 10 , which shows the structure diagram of the air conditioner control device provided by the embodiment of the present application, as shown in Figure 10 , the air conditioner control device can include: a disease type determination module 1001, a health information collection module 1002, an operation parameter generation module 1003 and an air conditioner control module 1004.

[0131] The disease type determination module 1001 is configured to receive the user-selected disease type after the user wears the wearable controller.

[0132] The health information collection module 1002 is configured to collect health information corresponding to the disease type.

[0133] The operation parameter generation module 1003 is configured to generate an operation parameter of the air conditioner according to the health information corresponding to the disease type.

[0134] The air conditioner control module 1004 is configured to send the operation parameter to the air conditioner in a preset mode, so that the air conditioner operates according to the operation parameter.

[0135] The working principle of the air conditioner control device provided in the present application is the same as that of the air conditioner control method and the wearable controller 1, and details can be referred to the foregoing description of the wearable controller 1, which will not be repeated here.

[0136] Finally, it should be noted that in this document, relational terms such as and, second, and the like are used solely to distinguish one entity or action from another entity or action, without necessarily requiring or implying any actual such relationship or order between or among such entities or actions. Moreover, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element preceded by "comprises a" does not, without more constraints, foreclose the existence of additional identical elements in the process, method, article, or apparatus that comprises the recited element.

[0137] The various embodiments in the specification are described in a progressive manner, and each embodiment focuses on the difference from other embodiments. The same or similar parts between the various embodiments can be mutually referred to.

[0138] The above description of the disclosed embodiments enables a person skilled in the art to implement or use the present application. Various modifications to these embodiments will be apparent to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to the embodiments shown herein, but will conform to the widest scope consistent with the principles and novel features disclosed herein.

Claims

1. A wearable controller, characterized in that, include: Health information collection device and air conditioning controller; The air conditioning controller is used to receive the disease type selected by the user after the user wears the wearable controller; The health information collection device is used to collect health information corresponding to the disease type. When the disease type is different, the specific health information collected will be different. The air conditioner controller is also used to generate operating parameters of the air conditioner based on the health information corresponding to the disease type, and send the operating parameters to the air conditioner through a preset method so that the air conditioner can operate according to the operating parameters. The preset method includes at least one of Bluetooth, infrared and wireless methods. The wearable controller also includes an environmental information acquisition device. The environmental information collection device is used to collect environmental information of the user when the disease type is the target disease type; The air conditioner controller generates operating parameters for the air conditioner based on the health information corresponding to the disease type, specifically for: The operating parameters of the air conditioner are generated based on the health information corresponding to the target disease type and the environmental information. The health information collection device includes at least one of a blood glucose collection device, a blood pressure collection device, a heart rate collection device, and a body temperature collection device; the environmental information collection device includes an air conditioning sensor and / or a humidity collection device. The blood glucose collection device is used to collect the user's blood glucose information; The blood pressure monitoring device is used to collect the user's blood pressure information; The heart rate acquisition device is used to collect the user's heart rate information; The body temperature acquisition device is used to collect the user's body temperature information; The air conditioning sensor is used to locate the user's position and collect indoor temperature information around the user based on the location. The humidity acquisition device is used to collect indoor humidity information where the user is located; Wherein, if the disease type is diabetes, then the health information corresponding to the disease type includes the blood glucose information; The step of generating the air conditioner's operating parameters based on the health information corresponding to the disease type includes: Determine whether the blood glucose information is less than a preset first blood glucose threshold; If the blood glucose information is less than the first blood glucose threshold, then a wind speed adjustment parameter and a first temperature adjustment parameter are generated. The wind speed adjustment parameter is used to control the air conditioner to blow air at a low speed, and the first temperature adjustment parameter is used to control the air conditioner to maintain the current indoor temperature at no less than a preset first temperature threshold. Wherein, if the disease type is a respiratory type, the health information corresponding to the disease type includes the blood pressure information, the body temperature information, and the heart rate information; The step of generating the air conditioner's operating parameters based on the health information corresponding to the disease type includes: Determine whether the health information meets a first condition, wherein the first condition is: the blood pressure information is greater than a preset blood pressure threshold, the body temperature information is greater than a preset first body temperature threshold, and the heart rate information is greater than a preset first heart rate threshold. If so, a second alarm parameter and an oxygenation parameter are generated. The second alarm parameter is used to control the air conditioner to issue a voice alarm to the caregiver. The oxygenation parameter is used to control the air conditioner to deliver oxygen to the user through the oxygenation module. The oxygenation module is located above the outdoor unit of the air conditioner and is connected to the indoor unit through an oxygen delivery pipe connected to the power cord and the connection line.

2. The wearable controller according to claim 1, characterized in that, The blood glucose collection device consists of a slide rail, a motion motor, a blood glucose collection device, and a blood glucose analysis device. One side of the slide rail is a slope, and the blood glucose collection device is equipped with a blood glucose measuring head. After detecting the remote control signal, the motion motor drives the blood glucose collection device to move across the slope to the slide rail, so as to collect the user's blood sample after the wearable controller is pushed out of the blood glucose measurement head, and drive the blood glucose collection device back to the initial position after the collection is completed. The blood glucose analyzer performs blood glucose analysis on the blood sample to obtain the blood glucose information.

3. The wearable controller according to claim 2, characterized in that, The step of generating the air conditioner's operating parameters based on the health information corresponding to the disease type also includes: If the blood glucose information is greater than or equal to the first blood glucose threshold, then determine whether the blood glucose information is less than or equal to a preset second blood glucose threshold; If so, a second temperature adjustment parameter and a first alarm parameter are generated. The second temperature adjustment parameter is used to control the air conditioner to maintain the current indoor temperature at a level not higher than a preset second temperature threshold. The first alarm parameter is used to control the air conditioner to issue a voice alarm to the caregiver to notify the caregiver to inject insulin into the user.

4. The wearable controller according to claim 1, characterized in that, The target disease type includes fever type, the health information corresponding to the fever type includes the body temperature information and / or the heart rate information, and the environmental information includes the indoor temperature information; If the target illness type is the fever type, then generating the operating parameters of the air conditioner based on the health information corresponding to the target illness type and the environmental information includes: Determine whether the body temperature information is greater than a preset second body temperature threshold. If so, generate fresh air activation parameters and airflow direction and speed adjustment parameters. The fresh air activation parameters are used to control the air conditioner to activate the fresh air function, and the airflow direction and speed adjustment parameters are used to control the air conditioner to locate the user and adjust the air guide plate and louvers to blow air at low speed to the user after locating them. Determine whether the indoor temperature information is greater than a preset indoor temperature threshold. If so, generate a third temperature adjustment parameter, wherein the third temperature adjustment parameter is used to control the air conditioner to reduce the current indoor temperature to the indoor temperature threshold. And / or, Determine whether the body temperature information is greater than a preset third body temperature threshold, or whether the heart rate information is greater than or equal to a preset second heart rate threshold; If the body temperature information is greater than the third body temperature threshold, or the heart rate information is greater than or equal to the second heart rate threshold, a third alarm parameter is generated. The third alarm parameter is used to control the air conditioner to issue a voice alarm to the caregiver to notify the caregiver to conduct a health check on the user.

5. The wearable controller according to claim 1, characterized in that, The target disease type includes skin disease types, the health information corresponding to the skin disease type includes the body temperature information, and the environmental information includes the indoor humidity information; If the target disease type is the skin disease type, then generating the operating parameters of the air conditioner based on the health information corresponding to the target disease type and the environmental information includes: Determine whether the body temperature information is greater than a preset fourth body temperature threshold, and whether the indoor humidity information is greater than a preset first humidity threshold; If the body temperature information is greater than the fourth body temperature threshold and the indoor humidity information is greater than the first humidity threshold, then a dehumidification parameter and a fourth temperature adjustment parameter are generated. The dehumidification parameter is used to control the air conditioner to maintain the current indoor humidity at a preset second humidity threshold, which is less than the first humidity threshold. The fourth temperature adjustment parameter is used to control the air conditioner to maintain the current indoor temperature at a preset third temperature threshold.

6. An air conditioning control method, characterized in that, The method, applied to the wearable controller according to any one of claims 1 to 5, comprises: After the user wears the wearable controller, the system receives the disease type selected by the user. Collect health information corresponding to the disease type; The operating parameters of the air conditioner are generated based on the health information corresponding to the disease type. The operating parameters are sent to the air conditioner in a preset manner so that the air conditioner operates according to the operating parameters.

7. An air conditioning control device, characterized in that, The wearable controller according to any one of claims 1 to 5, the device comprising: a disease type determination module, a health information collection module, an operating parameter generation module, and an air conditioner control module; The disease type determination module is used to receive the disease type selected by the user after the user wears the wearable controller; The health information collection module is used to collect health information corresponding to the disease type; The operating parameter generation module is used to generate operating parameters for the air conditioner based on the health information corresponding to the disease type. The air conditioner control module is used to send the operating parameters to the air conditioner in a preset manner so that the air conditioner operates according to the operating parameters.

Citation Information

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