Air conditioner control method and device, air conditioner and storage medium
By receiving user adjustment instructions and collecting clothing adjustment information and physical sign information, and adjusting the operating mode of the air conditioner outlet, the problem that the existing central air conditioner system cannot be adjusted in a personalized manner is solved, and a higher user experience is achieved.
Patent Information
- Application Number
- CN202311473733.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2023-11-06
- Publication Date
- 2025-05-06
AI Technical Summary
The existing central air conditioning system cannot be personalized according to the hot and cold comfort needs of different users, resulting in the inability to meet the hot and cold needs of all users.
By receiving the user's adjustment instructions, the air outlet corresponding to the position of the user is located is determined, and the operation mode of the air outlet is adjusted based on the clothing adjustment information and physical sign information is adjusted to achieve personalized hot and cold adjustment.
It realizes the operation mode of intelligently adjusting the air conditioner, adapts to the hot and cold experiences of different users, and improves the user experience.
Smart Images

Figure CN119934649A_ABST
Abstract
Description
Technical Field
[0001] The present application relates to the technical field of air conditioning control, and in particular to an air conditioning control method, device, air conditioner and storage medium. Background Art
[0002] Since different users have different levels of thermal comfort, users can adjust the operating parameters of the air conditioner (such as temperature, wind sweeping intensity, etc.) by themselves, but the upper and lower limits of the temperature of the central air conditioner cannot be adjusted by users, resulting in the inability to meet the thermal comfort needs of all users in the same situation. Summary of the invention
[0003] The present application aims to solve one of the technical problems in the related art at least to some extent.
[0004] To this end, the first purpose of this application is to propose an air-conditioning control method to realize intelligent adjustment of the operating mode of the air-conditioning, adapt to the cold and hot perception needs of different users, meet the comfort needs of different users, and improve the user experience.
[0005] The second objective of the present application is to provide an air conditioning control device.
[0006] The third object of the present application is to provide an air conditioner.
[0007] A fourth objective of the present application is to provide a computer-readable storage medium.
[0008] A fifth object of the present application is to provide a computer program product.
[0009] To achieve the above-mentioned purpose, the first aspect embodiment of the present application proposes an air conditioning control method, including: receiving an adjustment instruction from a first user, and controlling a first air outlet corresponding to a first workstation position where the first user is located to enter a first operating mode based on the adjustment instruction; collecting first clothing adjustment information and / or first vital sign information of the first user and a second user, wherein the second user is one or more users located around the first workstation position; and adjusting the mode of the first air outlet according to the first clothing adjustment information and / or the first vital sign information.
[0010] To achieve the above-mentioned purpose, the second aspect embodiment of the present application proposes an air conditioning control device, including: a control module, used to receive an adjustment instruction of a first user, and based on the adjustment instruction, control the first air outlet corresponding to the first workstation position where the first user is located to enter a first operating mode; a collection module, used to collect first clothing adjustment information and / or first vital sign information of the first user and the second user, wherein the second user is one or more users located around the first workstation position; an adjustment module, used to adjust the mode of the first air outlet according to the first clothing adjustment information and / or the first vital sign information.
[0011] To achieve the above-mentioned purpose, the third aspect embodiment of the present application proposes an air conditioner, comprising: a processor; and a memory communicatively connected to the processor; the memory stores computer-executable instructions; the processor executes the computer-executable instructions stored in the memory, so that the processor can execute the air conditioning control method described in the first aspect embodiment above.
[0012] To achieve the above-mentioned purpose, the fourth aspect of the present application proposes a computer-readable storage medium on which a computer program is stored, and the computer instructions are used to enable the computer to execute the air conditioning control method described in the first aspect of the present application.
[0013] To achieve the above-mentioned purpose, the fifth aspect of the present application proposes a computer program product, including a computer program, which, when executed by a processor, implements the air conditioning control method described in the first aspect of the present application.
[0014] The air conditioning control method, device, air conditioner and storage medium provided in the present application can realize accurate adjustment of the operation mode of the air conditioning outlet by determining the first air outlet corresponding to the first workstation position of the first user and controlling the first air outlet to enter the first operation mode based on the adjustment instruction. Then, the first clothing adjustment information and / or the first vital sign information of the first user and the second user are collected, and the mode of the first air outlet is adjusted, so as to realize intelligent adjustment of the operation mode of the air conditioning, adapt to the cold and hot feeling needs of different users, meet the comfort needs of different users, and improve the user experience.
[0015] Additional aspects and advantages of the present application will be given in part in the description below, and in part will become apparent from the description below, or will be learned through the practice of the present application. BRIEF DESCRIPTION OF THE DRAWINGS
[0016] The above and / or additional aspects and advantages of the present application will become apparent and easily understood from the following description of the embodiments in conjunction with the accompanying drawings, in which:
[0017] Figure 1A flow chart of an air conditioning control method provided in an embodiment of the present application;
[0018] Figure 2 A schematic diagram of the mapping relationship between air outlets and workstations provided in an embodiment of the present application;
[0019] Figure 3 A schematic flow chart of another air conditioning control method provided in an embodiment of the present application;
[0020] Figure 4 A schematic flow chart of another air conditioning control method provided in an embodiment of the present application;
[0021] Figure 5 A schematic flow chart of another air conditioning control method provided in an embodiment of the present application;
[0022] Figure 6 A schematic diagram of the structure of an air conditioning control device provided in an embodiment of the present application. DETAILED DESCRIPTION
[0023] Embodiments of the present application are described in detail below, and examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals throughout represent the same or similar elements or elements having the same or similar functions. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to be used to explain the present application, and should not be construed as limiting the present application.
[0024] The air conditioning control method and device according to the embodiments of the present application will be described below with reference to the accompanying drawings.
[0025] Figure 1 is a flow chart of an air conditioning control method according to an exemplary embodiment. Figure 1 As shown, the air conditioning control method of the embodiment of the present application includes but is not limited to the following steps:
[0026] S101, receiving an adjustment instruction from a first user, and controlling a first air outlet corresponding to a first workstation where the first user is located to enter a first operation mode based on the adjustment instruction.
[0027] It should be noted that the execution subject of the air conditioner control method in the embodiment of the present application is the air conditioner. Optionally, the air conditioner can be a wall-mounted air conditioner, a cabinet air conditioner, a ceiling air conditioner, a window air conditioner, a central air conditioner, etc. The air conditioner control method in the embodiment of the present application can be executed by the control device of the air conditioner itself. In the embodiment of the present application, the air conditioner control method can be explained based on the central air conditioner.
[0028] In some implementations, the first user can adjust the air conditioner based on the temperature control device, and then the air conditioner can receive the adjustment instruction sent by the temperature control device, determine the first operating mode of the first air outlet, and control the first air outlet to enter the first operating mode. For example, the first user can make adjustments based on the temperature control box to obtain the adjustment instruction of the first user. The first operating mode is the mode adjusted by the first user. For example, if the first user adjusts the cooling mode to the sweeping mode, the first operating mode is the sweeping mode.
[0029] Optionally, the first workstation where the first user is located can be determined by collecting the location information of the first user. Then, according to the mapping relationship between the workstation position and the air outlet, the first air outlet corresponding to the first workstation position can be determined. One air outlet corresponds to multiple workstation positions.
[0030] For example, Figure 2 The figure shows the mapping relationship between the air outlet and the workstation. Figure 2 The circle in is the coverage range of the air outlet. The coverage range 10 of the air outlet includes workstation A, workstation B, workstation C, and workstation D. That is to say, the workstations corresponding to the air outlet include: workstation A, workstation B, workstation C, and workstation D. Let the air outlet be air outlet 1. The coverage range 20 of the air outlet includes workstation E, workstation F, and workstation G. That is to say, the workstations corresponding to the air outlet include: workstation E, workstation F, and workstation G. Let the air outlet be air outlet 2. Based on the collected location information of the first user, it is determined that the first workstation where the first user is located is workstation C. Since air outlet 1 covers workstation C, the first air outlet is determined to be air outlet 1.
[0031] S102, collecting first clothing adjustment information and / or first physical sign information of a first user and a second user, wherein the second user is one or more users located around the first workstation.
[0032] In some implementations, the first clothing adjustment information and / or the first vital sign information of the first user and the second user can be collected based on the camera of the first air outlet itself, or one or more cameras that establish a communication connection with the air conditioner. The second user is one or more users around the first workstation. For example, with the first workstation as the center, one or more users within a 3-meter radius are the second users.
[0033] Optionally, a set time period may be preset, and the first clothing adjustment information and / or first physical sign information of the first user and the second user may be continuously collected within the set time period. The first clothing adjustment information includes whether the user puts on a coat, takes off a coat, covers a blanket, etc. within the set time period, and the first physical sign information includes whether the user sneezes, sweats, shivers, etc. within the set time period.
[0034] S103: Adjust the mode of the first air outlet according to the first clothing adjustment information and / or the first physical sign information.
[0035] In some implementations, it can be determined whether the mode of the first air outlet needs to be adjusted based on the first clothing adjustment information and / or the first vital sign information. Optionally, a preset condition for adjusting the mode can be pre-set, wherein the preset condition can be that the user's clothing adjustment information and / or vital sign information has changed. For each user, it is determined whether the user's first clothing adjustment information and / or first vital sign information meets the preset condition, and then it is determined whether the mode of the first air outlet is adjusted. Optionally, it can also be determined whether the mode of the first air outlet is adjusted based on the number of users who meet the preset condition.
[0036] Optionally, if there are users who meet the preset conditions, and the number of users is greater than or equal to the number threshold, it is determined to adjust the mode of the first air outlet. If there are no users who meet the preset conditions, the first air outlet maintains the first operation mode.
[0037] For example, in cooling mode, if there are users wearing coats and shivering, it means that the user's clothing adjustment information and / or physical sign information has changed, and the preset conditions are met. If there are more than two users wearing coats and shivering, it means that the users feel cold, and the wind sweeping intensity of the cooling mode of the first air outlet can be controlled to be reduced, and the first air outlet can be operated at a lower wind sweeping intensity.
[0038] In the air conditioning control method provided in the embodiment of the present application, by determining the first air outlet corresponding to the first workstation position where the first user is located, and controlling the first air outlet to enter the first operating mode based on the adjustment instruction, the operating mode of the air conditioning outlet can be accurately adjusted. Then, the first clothing adjustment information and / or the first vital sign information of the first user and the second user are collected, and the mode of the first air outlet is adjusted, so that the operating mode of the air conditioner can be intelligently adjusted to adapt to the cold and hot feeling needs of different users, meet the comfort needs of different users, and improve the user experience.
[0039] Figure 3 is a flow chart of an air conditioning control method according to an exemplary embodiment. Figure 3 As shown, the air conditioning control method of the embodiment of the present application includes but is not limited to the following steps:
[0040] S301, receiving an adjustment instruction from a first user, and controlling a first air outlet corresponding to a first workstation where the first user is located to enter a first operation mode based on the adjustment instruction.
[0041] In some implementations, after receiving the adjustment instruction of the first user, the control end of the air outlet collects the first face image when the first user inputs the adjustment instruction. When the first user moves to the first workstation, the second face image of the first user at the first workstation is collected.
[0042] Further, according to the correspondence between the workstation position and the air outlet, the air outlet associated with the first workstation position is obtained, and it is determined whether the associated air outlet is the first air outlet. If the associated air outlet is the first air outlet, the first air outlet is controlled to enter the first operation mode.
[0043] Optionally, if the first air outlet is not the air outlet associated with the first workstation, a reminder message is sent to suggest that the first user adjust the control terminal of the air outlet associated with the first workstation to achieve an operation mode of accurately adjusting the air outlet. Optionally, the reminder message can be sent to the terminal device of the first user, such as to the mobile phone, computer or smart bracelet of the first user.
[0044] S302, collecting first clothing adjustment information and / or first physical sign information of a first user and a second user, wherein the second user is one or more users located around the first workstation.
[0045] In the embodiment of the present application, the implementation method of step S302 can be implemented by any method in the embodiments of the present application, which is not limited here and will not be repeated.
[0046] S303: for each user, identifying whether the user's state meets a preset mode adjustment condition according to the first clothing adjustment information and / or the first physical sign information.
[0047] In some implementations, the current state of the user can be determined according to the first clothing adjustment information and / or the first physical sign information, and the user's state can be divided into two states: cold and hot. The number of users with the same state being greater than or equal to a number threshold can be used as a preset mode adjustment condition.
[0048] For example, assume that the current air conditioner is in cooling mode and the quantity threshold is 2. For each user's first clothing adjustment information and / or first physical sign information, if it is identified that the user is wearing a coat, covering a blanket, shivering, etc., it is determined that the user is in a cold state. If there are 3 users in a cold state, it is determined that the user's state meets the preset mode adjustment condition.
[0049] S304: If the user's state satisfies the mode adjustment condition, the adjustment direction of the first air outlet is determined according to the first clothing adjustment information and / or the first physical sign information.
[0050] In some implementations, the adjustment direction of the air outlet is divided into lowering and strengthening, that is, the adjustment direction of the air outlet sweeping mode is divided into lowering and strengthening. Optionally, when it is determined that the user's state meets the mode adjustment condition, the adjustment direction of the first air outlet can be determined according to the first clothing adjustment information and / or the first physical sign information.
[0051] By way of example, in cooling mode, if the first clothing adjustment information and / or the first physical sign information is wearing a coat, covering a blanket, or shivering, the adjustment direction of the first air outlet is determined to be reduced wind sweeping intensity; if the first clothing adjustment information and / or the first physical sign information is taking off a coat or sweating, the adjustment direction of the first air outlet is determined to be increased wind sweeping intensity.
[0052] S305: Based on the adjustment direction, control the first air outlet to switch from the first operating mode to the second operating mode.
[0053] In some implementations, after determining the adjustment direction of the first air outlet, the adjusted operating mode, that is, the second operating mode, can be determined, and the first air outlet can be controlled to switch from the first operating mode to the second operating mode.
[0054] For example, in cooling mode, if it is determined that the adjustment direction of the first air outlet is to reduce the sweeping wind intensity, the second operation mode is to reduce the sweeping wind intensity of the cooling mode by a gradient, or adjust the cooling mode to the sweeping wind mode. If it is determined that the adjustment direction of the first air outlet is to increase the sweeping wind intensity, the second operation mode is to increase the sweeping wind intensity of the cooling mode by a gradient.
[0055] In the heating mode, if the adjustment direction of the first air outlet is determined to reduce the sweeping wind intensity, the second operation mode is to reduce the sweeping wind intensity in the heating mode by a gradient. If the adjustment direction of the first air outlet is determined to increase the sweeping wind intensity, the second operation mode is to increase the sweeping wind intensity in the heating mode by a gradient.
[0056] In the air conditioning control method provided in the embodiment of the present application, by determining the first air outlet corresponding to the first workstation position where the first user is located, and controlling the first air outlet to enter the first operating mode based on the adjustment instruction, the operating mode of the air conditioning outlet can be accurately adjusted. Then, the first clothing adjustment information and / or the first vital sign information of the first user and the second user are collected to determine whether the user's state meets the preset mode adjustment conditions, and then the adjustment direction of the operating mode is determined, and the mode of the first air outlet is adjusted, so that the operating mode of the air conditioner can be intelligently adjusted to adapt to the cold and hot feeling needs of different users, meet the comfort needs of different users, and improve the user experience.
[0057] Figure 4 is a flow chart of an air conditioning control method according to an exemplary embodiment. Figure 4As shown, the air conditioning control method of the embodiment of the present application includes but is not limited to the following steps:
[0058] S401, receiving an adjustment instruction from a first user, and controlling a first air outlet corresponding to a first workstation position of the first user to enter a first operation mode based on the adjustment instruction.
[0059] In the embodiment of the present application, the implementation method of step S401 can be implemented by any method in the embodiments of the present application, which is not limited here and will not be repeated.
[0060] S402, collecting first clothing adjustment information and / or first vital sign information of a first user and a second user, wherein the second user is one or more users located around the first workstation.
[0061] In the embodiment of the present application, the implementation method of step S402 can be implemented by any method in the embodiments of the present application, which is not limited here and will not be repeated.
[0062] S403, for each user, identifying whether the user's state meets the preset mode adjustment condition according to the clothing adjustment information and / or the physical sign information.
[0063] In the embodiment of the present application, the implementation method of step S403 can be implemented by any method in the embodiments of the present application, which is not limited here and will not be repeated.
[0064] S404: If the user's state satisfies the mode adjustment condition, the adjustment direction of the first air outlet is determined according to the clothing adjustment information and / or the physical sign information.
[0065] In the embodiment of the present application, the implementation method of step S404 can be implemented by any method in the embodiments of the present application, which is not limited here and will not be repeated.
[0066] S405: Based on the adjustment direction, control the first air outlet to switch from the first operating mode to the second operating mode.
[0067] In the embodiment of the present application, the implementation method of step S405 can be implemented by any method in the embodiments of the present application, which is not limited here and will not be repeated.
[0068] S406, re-collecting the second clothing adjustment information and / or the second vital sign information of the first user.
[0069] In some implementations, in order to meet the user's comfort needs, after the first air outlet is switched to the second operating mode, the first user's clothing adjustment information and / or vital sign information can be recollected as second clothing adjustment information and / or second vital sign information.
[0070] Optionally, the second clothing adjustment information and / or the second vital sign information of the first user is continuously collected within a set time period. For example, the second clothing adjustment information and / or the second vital sign information can be continuously collected within 15-20 minutes.
[0071] S407: According to the second clothing adjustment information and / or the second vital sign information, identifying whether the state of the first user satisfies the mode adjustment condition.
[0072] In some implementations, the change in the state of the first user may be used as the mode adjustment condition. For example, if it is determined that the state of the first user changes from hot to cold, it is determined that the mode adjustment condition is satisfied.
[0073] Optionally, the state of the first user may be determined based on the second clothing adjustment information and / or the second physical sign information. If it is identified that the first user is wearing a coat, covering a blanket, shivering, etc., it is determined that the user is in a cold state. If it is identified that the first user is taking off a coat, sweating, etc., it is determined that the user is in a hot state.
[0074] S408: Identify whether the second workstation of the second user is within the coverage area of the first air outlet.
[0075] In some implementations, since one air outlet corresponds to multiple workstation positions, it is possible to determine whether the second workstation position is within the coverage area of the first air outlet by judging whether the second air outlet corresponding to the second workstation position is the same as the first air outlet.
[0076] Optionally, the second workstation position of the second user can be determined based on image recognition, and then the second air outlet corresponding to the second workstation position can be determined based on the mapping relationship between the workstation position and the air outlet. If the second air outlet is the same as the first air outlet, the second workstation position is within the coverage area; if the second air outlet is different from the first air outlet, the second workstation position is not within the coverage area.
[0077] For example, Figure 2 As shown, the coverage range 10 of the air outlet includes workstation A, workstation B, workstation C, and workstation D, and the air outlet is assumed to be air outlet 1. The coverage range 20 of the air outlet includes workstation E, workstation F, and workstation G, and the air outlet is assumed to be air outlet 2. Assuming that the first air outlet is air outlet 1, if the second workstation position is determined to be workstation D based on image recognition, the second workstation position is within the coverage area of the first air outlet; if the second workstation position is workstation G, the second workstation position is not within the coverage area of the first air outlet.
[0078] S409: Adjust the second operation mode according to the recognition result.
[0079] In some implementations, the adjustment direction for the second operating mode can be determined based on the recognition result. The adjustment direction is divided into positive adjustment and negative adjustment. Positive adjustment refers to the same adjustment direction as the adjustment to the second operating mode, and negative adjustment refers to the opposite adjustment direction as the adjustment to the second operating mode. For example, if the adjustment direction to the second operating mode is to strengthen, then positive adjustment is also to strengthen, and negative adjustment is to reduce.
[0080] In some implementations, the adjustment direction of the second operating mode can be determined based on whether the second workstation position of the second user is within the coverage area of the first air outlet. If the second workstation position is within the coverage area, the first air outlet is reversely adjusted to control the first air outlet to enter the third operating mode from the second operating mode. If the second workstation position is not within the coverage area, the first air outlet is forwardly adjusted to control the first air outlet to enter the fourth operating mode from the second operating mode. The third operating parameter of the third operating mode and the fourth operating parameter of the fourth operating mode are both between the first operating parameter of the first operating mode and the second operating parameter of the second operating mode.
[0081] By way of example, the operating parameter may be an adjustment gradient of the sweep wind intensity. If the adjustment gradient of the sweep wind intensity of the first operating parameter is 2 gradients, and the adjustment gradient of the sweep wind intensity of the second operating parameter is 1 gradient, then the adjustment gradient of the sweep wind intensity of the third operating parameter may be -0.5 gradient, and the adjustment gradient of the sweep wind intensity of the fourth operating parameter may be +0.5 gradient.
[0082] In some implementations, the second operating mode may be adjusted based on the adjustment direction and the adjustment gradient. Optionally, if the second operating mode is reversely adjusted, a first adjustment gradient and a first adjustment direction of the operating parameter when adjusting from the first operating mode to the second operating mode are determined, and a second adjustment gradient is determined based on the first adjustment gradient, wherein the second adjustment gradient is less than the first adjustment gradient.
[0083] Since the second operating mode is reversely adjusted, it can be determined that the second adjustment direction of the third operating mode is opposite to the first adjustment direction. Then, based on the second adjustment gradient and the second adjustment direction, the operating parameters of the first air outlet are reversely adjusted to enter the third operating mode.
[0084] For example, the first adjustment gradient is 1 gradient, the first adjustment direction is decreasing, the second adjustment gradient may be 0.5 gradient, the second adjustment direction is increasing, and the third operation mode is to increase the wind sweeping intensity by 0.5 gradient.
[0085] Optionally, if the second operating mode is adjusted in a positive direction, a first adjustment gradient and a first adjustment direction of the operating parameter when adjusting from the first operating mode to the second operating mode are determined, and based on the first adjustment gradient, a third adjustment gradient is determined, wherein the third adjustment gradient is smaller than the first adjustment gradient.
[0086] Since the second operating mode is positively adjusted, it can be determined that the second adjustment direction of the third operating mode is the same as the first adjustment direction. Then, based on the third adjustment gradient and the second adjustment direction, the operating parameters of the first air outlet are positively adjusted to enter the fourth operating mode.
[0087] For example, the first adjustment gradient is 1 gradient, the first adjustment direction is decreasing, the second adjustment gradient may be 0.5 gradient, the second adjustment direction is decreasing, and the third operation mode is that the sweeping intensity is reduced by 0.5 gradient.
[0088] In the air conditioning control method provided in the embodiment of the present application, by determining the first air outlet corresponding to the first workstation position where the first user is located, and controlling the first air outlet to enter the first operating mode based on the adjustment instruction, the operating mode of the air conditioning outlet can be accurately adjusted. Then, the first clothing adjustment information and / or the first vital sign information of the first user and the second user are collected, and the mode of the first air outlet is adjusted. After the adjustment, by re-determining the state of the first user and identifying whether the second user is within the coverage range of the first air outlet, the operating mode of the first air outlet is further adjusted, so that the operating mode of the air conditioner can be intelligently adjusted to adapt to the cold and hot perception needs of different users, meet the comfort needs of different users, and improve the user experience.
[0089] Figure 5 is a flow chart of an air conditioning control method according to an exemplary embodiment. Figure 5 As shown, the air conditioning control method of the embodiment of the present application includes but is not limited to the following steps:
[0090] S501, receiving an adjustment instruction from a first user, and controlling a first air outlet corresponding to a first workstation position of the first user to enter a first operation mode based on the adjustment instruction.
[0091] S502: Collect first clothing adjustment information and / or first vital sign information of the first user and the second user.
[0092] S503: According to the first clothing adjustment information and / or the first vital sign information, the first air outlet is controlled to switch from the first operating mode to the second operating mode.
[0093] S504, re-collecting the second clothing adjustment information and / or the second vital sign information of the first user.
[0094] S505: According to the second clothing adjustment information and / or the second vital sign information, it is identified that the state of the first user satisfies the mode adjustment condition.
[0095] S506: Identify whether the second workstation of the second user is within the coverage area of the first air outlet.
[0096] S507: If the second workstation is within the coverage area, the first air outlet is reversely adjusted to control the first air outlet to enter the third operation mode from the second operation mode.
[0097] S508: If the second workstation position is not within the coverage area, the first air outlet is positively adjusted to control the first air outlet to enter the fourth operation mode from the second operation mode.
[0098] In the air conditioning control method provided in the embodiment of the present application, by determining the first air outlet corresponding to the first workstation position where the first user is located, and controlling the first air outlet to enter the first operating mode based on the adjustment instruction, the operating mode of the air conditioning outlet can be accurately adjusted. Then, the first clothing adjustment information and / or the first vital sign information of the first user and the second user are collected, and the mode of the first air outlet is adjusted, so that the operating mode of the air conditioner can be intelligently adjusted to adapt to the cold and hot feeling needs of different users, meet the comfort needs of different users, and improve the user experience.
[0099] In order to implement the above embodiments, the present application also proposes an air conditioning control device.
[0100] Figure 6 A schematic diagram of the structure of an air conditioning control device provided in an embodiment of the present application.
[0101] like Figure 6 As shown, the air conditioning control device 600 includes:
[0102] The control module 601 is used to receive an adjustment instruction from a first user, and control a first air outlet corresponding to a first workstation position where the first user is located to enter a first operation mode based on the adjustment instruction.
[0103] The collection module 602 is used to collect first clothing adjustment information and / or first vital sign information of the first user and the second user, wherein the second user is one or more users located around the first workstation.
[0104] The adjustment module 603 is used to adjust the mode of the first air outlet according to the first clothing adjustment information and / or the first physical sign information.
[0105] In a possible implementation of an embodiment of the present application, the adjustment module 603 is also used to: for each user, identify whether the user's status meets the preset mode adjustment conditions based on the clothing adjustment information and / or the vital sign information; if there is a user whose status meets the mode adjustment conditions, determine the adjustment direction of the first air outlet based on the clothing adjustment information and / or the vital sign information; based on the adjustment direction, control the first air outlet to switch from the first operating mode to the second operating mode.
[0106] In a possible implementation of an embodiment of the present application, the adjustment module 603 is also used to: re-collect the second clothing adjustment information and / or second vital sign information of the first user; identify, based on the second clothing adjustment information and / or second vital sign information, that the state of the first user satisfies the mode adjustment condition; identify whether the second workstation position of the second user is within the coverage area of the first air outlet; and adjust the second operating mode based on the identification result.
[0107] In a possible implementation of the embodiment of the present application, the adjustment module 603 is also used to: if the second workstation position is within the coverage area, reversely adjust the first air outlet to control the first air outlet to enter the third operating mode from the second operating mode; if the second workstation position is not within the coverage area, forwardly adjust the first air outlet to control the first air outlet to enter the fourth operating mode from the second operating mode; wherein the third operating parameter of the third operating mode and the fourth operating parameter of the fourth operating mode are both between the first operating parameter of the first operating mode and the second operating parameter of the second operating mode.
[0108] In a possible implementation of an embodiment of the present application, the adjustment module 603 is also used to: determine the second workstation position of the second user based on image recognition; determine the second air outlet corresponding to the second workstation position according to the mapping relationship between the workstation position and the air outlet; if the second air outlet is the same as the first air outlet, the second workstation position is within the coverage area; if the second air outlet is different from the first air outlet, the second workstation position is not within the coverage area.
[0109] In a possible implementation of an embodiment of the present application, the adjustment module 603 is also used to: determine a first adjustment gradient and a first adjustment direction of the operating parameters when adjusting from the first operating mode to the second operating mode; determine a second adjustment gradient based on the first adjustment gradient, wherein the second adjustment gradient is less than the first adjustment gradient; determine that the second adjustment direction of the third operating mode is opposite to the first adjustment direction; and reversely adjust the operating parameters of the first air outlet based on the second adjustment gradient and the second adjustment direction to enter the third operating mode.
[0110] In a possible implementation of an embodiment of the present application, the adjustment module 603 is also used to: determine a first adjustment gradient and a first adjustment direction of the operating parameters when adjusting from the first operating mode to the second operating mode; determine a third adjustment gradient based on the first adjustment gradient, wherein the third adjustment gradient is less than the first adjustment gradient; determine that the second adjustment direction of the third operating mode is the same as the first adjustment direction; and based on the third adjustment gradient and the second adjustment direction, positively adjust the operating parameters of the first air outlet to enter the fourth operating mode.
[0111] In a possible implementation of the embodiment of the present application, the control module 601 is also used to: collect a first facial image of the first user when the first user inputs the adjustment command through the control end of the air outlet; collect a second facial image of the first user when the first workstation is at the first workstation position; obtain the air outlet associated with the first workstation position, and determine whether the associated air outlet is the first air outlet; if the first air outlet is not the air outlet associated with the first workstation position, issue a reminder message.
[0112] In the air conditioning control device provided in the embodiment of the present application, by determining the first air outlet corresponding to the first workstation position where the first user is located, and controlling the first air outlet to enter the first operating mode based on the adjustment instruction, the operating mode of the air conditioning outlet can be accurately adjusted. Then, the first clothing adjustment information and / or the first vital sign information of the first user and the second user are collected, and the mode of the first air outlet is adjusted, so that the operating mode of the air conditioner can be intelligently adjusted to adapt to the cold and hot feeling needs of different users, meet the comfort needs of different users, and improve the user experience.
[0113] It should be noted that the above explanations of the embodiment of the air-conditioning control method are also applicable to the air-conditioning control device of this embodiment, and will not be repeated here.
[0114] In order to implement the above embodiments, the present application also proposes an air conditioner, comprising: a processor, and a memory communicatively connected to the processor; the memory stores computer-executable instructions; the processor executes the computer-executable instructions stored in the memory to implement the method provided by the above embodiments.
[0115] In order to implement the above embodiments, the present application also proposes a computer-readable storage medium, in which computer-executable instructions are stored. When the computer-executable instructions are executed by a processor, they are used to implement the methods provided by the above embodiments.
[0116] In order to implement the above embodiments, the present application also proposes a computer program product, including a computer program, which implements the methods provided by the above embodiments when executed by a processor.
[0117] The collection, storage, use, processing, transmission, provision and application of user personal information involved in this application are in compliance with relevant laws and regulations and do not violate public order and good morals.
[0118] It should be noted that personal information from users should be collected for legitimate and reasonable purposes and should not be shared or sold outside of these legitimate uses. In addition, such collection / sharing should be carried out after receiving the user's informed consent, including but not limited to notifying the user to read the user agreement / user notice and sign the agreement / authorization including authorization of relevant user information before the user uses the function. In addition, any necessary steps should be taken to protect and safeguard access to such personal information data and ensure that others who have access to personal information data comply with its privacy policy and procedures.
[0119] This application is expected to provide an implementation scheme for users to selectively block the use or access of personal information data. That is, this application is expected to provide hardware and / or software to prevent or block access to such personal information data. Once the personal information data is no longer needed, risks can be minimized by limiting data collection and deleting data. In addition, when applicable, personal identifiers are removed from such personal information to protect the privacy of users.
[0120] In the description of the aforementioned embodiments, the description with reference to the terms "one embodiment", "some embodiments", "example", "specific example", or "some examples" etc. means that the specific features, structures, materials or characteristics described in conjunction with the embodiment or example are included in at least one embodiment or example of the present application. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials or characteristics described may be combined in any one or more embodiments or examples in a suitable manner. In addition, those skilled in the art may combine and combine the different embodiments or examples described in this specification and the features of the different embodiments or examples, without contradiction.
[0121] In addition, the terms "first" and "second" are used for descriptive purposes only and should not be understood as indicating or implying relative importance or implicitly indicating the number of the indicated technical features. Therefore, the features defined as "first" and "second" may explicitly or implicitly include at least one of the features. In the description of this application, the meaning of "plurality" is at least two, such as two, three, etc., unless otherwise clearly and specifically defined.
[0122] Any process or method description in a flowchart or otherwise described herein may be understood to represent a module, fragment or portion of code comprising one or more executable instructions for implementing the steps of a custom logical function or process, and the scope of the preferred embodiments of the present application includes alternative implementations in which functions may not be performed in the order shown or discussed, including performing functions in a substantially simultaneous manner or in the reverse order depending on the functions involved, which should be understood by technicians in the technical field to which the embodiments of the present application belong.
[0123] The logic and / or steps represented in the flowchart or otherwise described herein, for example, can be considered as an ordered list of executable instructions for implementing logical functions, and can be embodied in any computer-readable medium for use by an instruction execution system, device or apparatus (such as a computer-based system, a system including a processor, or other system that can fetch instructions from an instruction execution system, device or apparatus and execute the instructions), or in combination with these instruction execution systems, devices or apparatuses. For the purpose of this specification, "computer-readable medium" can be any device that can contain, store, communicate, propagate or transmit a program for use by an instruction execution system, device or apparatus, or in combination with these instruction execution systems, devices or apparatuses. More specific examples of computer-readable media (a non-exhaustive list) include the following: an electrical connection with one or more wires (electronic device), a portable computer disk box (magnetic device), a random access memory (RAM), a read-only memory (ROM), an erasable and programmable read-only memory (EPROM or flash memory), a fiber optic device, and a portable compact disk read-only memory (CDROM). In addition, the computer-readable medium may even be paper or other suitable medium on which the program is printed, since the program may be obtained electronically, for example, by optically scanning the paper or other medium and then editing, interpreting or processing in other suitable ways if necessary, and then stored in a computer memory.
[0124] It should be understood that the various parts of the present application can be implemented by hardware, software, firmware or a combination thereof. In the above-mentioned embodiments, multiple steps or methods can be implemented by software or firmware stored in a memory and executed by a suitable instruction execution system. For example, if implemented by hardware, as in another embodiment, it can be implemented by any one of the following technologies known in the art or their combination: a discrete logic circuit having a logic gate circuit for implementing a logic function for a data signal, a dedicated integrated circuit having a suitable combination of logic gate circuits, a programmable gate array (PGA), a field programmable gate array (FPGA), etc.
[0125] A person skilled in the art may understand that all or part of the steps in the method for implementing the above-mentioned embodiment may be completed by instructing related hardware through a program, and the program may be stored in a computer-readable storage medium, which, when executed, includes one or a combination of the steps of the method embodiment.
[0126] In addition, each functional unit in each embodiment of the present application may be integrated into a processing module, or each unit may exist physically separately, or two or more units may be integrated into one module. The above-mentioned integrated module may be implemented in the form of hardware or in the form of a software functional module. If the integrated module is implemented in the form of a software functional module and sold or used as an independent product, it may also be stored in a computer-readable storage medium.
[0127] The storage medium mentioned above may be a read-only memory, a magnetic disk or an optical disk, etc. Although the embodiments of the present application have been shown and described above, it can be understood that the above embodiments are exemplary and cannot be understood as limiting the present application. A person of ordinary skill in the art may change, modify, replace and modify the above embodiments within the scope of the present application.
Claims
1. An air conditioning control method, characterized in that: The method comprises: receiving an adjustment instruction from a first user, and controlling a first air outlet corresponding to a first workstation where the first user is located to enter a first operation mode based on the adjustment instruction; Collecting first clothing adjustment information and / or first physical sign information of the first user and second users, wherein the second users are one or more users located around the first workstation; The mode of the first air outlet is adjusted according to the first clothing adjustment information and / or the first physical sign information.
2. The method according to claim 1, characterized in that: The adjusting the mode of the first air outlet according to the first clothing adjustment information and / or the first physical sign information includes: For each user, identifying whether the user's state meets a preset mode adjustment condition according to the clothing adjustment information and / or the physical sign information; If there is a user whose state satisfies the mode adjustment condition, determining the adjustment direction of the first air outlet according to the clothing adjustment information and / or the physical sign information; Based on the adjustment direction, the first air outlet is controlled to switch from the first operating mode to the second operating mode.
3. The method according to claim 2, characterized in that After controlling the first air outlet to switch from the first operating mode to the second operating mode based on the adjustment direction, the method further includes: Re-collecting the second clothing adjustment information and / or the second vital sign information of the first user; identifying, according to the second clothing adjustment information and / or the second physical sign information, that the state of the first user satisfies the mode adjustment condition; Identify whether the second workstation position of the second user is within the coverage area of the first air outlet; The second operation mode is adjusted according to the identification result.
4. The method according to claim 3, characterized in that The step of adjusting the second operation mode according to the recognition result includes: If the second workstation is within the coverage area, the first air outlet is reversely adjusted to control the first air outlet to enter the third operation mode from the second operation mode; If the second workstation position is not within the coverage area, positively adjusting the first air outlet to control the first air outlet to enter the fourth operation mode from the second operation mode; The third operating parameter of the third operating mode and the fourth operating parameter of the fourth operating mode are both between the first operating parameter of the first operating mode and the second operating parameter of the second operating mode.
5. The method according to claim 3, characterized in that: The identifying whether the second workstation position of the second user is within the coverage area of the first air outlet includes: Determining the second workstation location of the second user based on image recognition; Determine the second air outlet corresponding to the second workstation position according to the mapping relationship between the workstation position and the air outlet; If the second air outlet is the same as the first air outlet, the second workstation position is within the coverage area; If the second air outlet is different from the first air outlet, the second workstation position is not within the coverage area.
6. The method according to claim 4, characterized in that The reverse adjustment of the first air outlet to control the first air outlet to enter the third operating mode from the second operating mode includes: determining a first adjustment gradient and a first adjustment direction of an operating parameter when adjusting from the first operating mode to the second operating mode; Based on the first adjustment gradient, determining a second adjustment gradient, wherein the second adjustment gradient is smaller than the first adjustment gradient; Determining that a second adjustment direction of the third operating mode is opposite to the first adjustment direction; Based on the second adjustment gradient and the second adjustment direction, the operating parameters of the first air outlet are reversely adjusted to enter the third operating mode.
7. The method according to claim 4, characterized in that The positive adjustment of the first air outlet to control the first air outlet to control the first air outlet to enter the fourth operating mode from the second operating mode includes: determining a first adjustment gradient and a first adjustment direction of an operating parameter when adjusting from the first operating mode to the second operating mode; Based on the first adjustment gradient, determining a third adjustment gradient, wherein the third adjustment gradient is smaller than the first adjustment gradient; Determining that a second adjustment direction of the third operating mode is the same as the first adjustment direction; Based on the third adjustment gradient and the second adjustment direction, the operating parameters of the first air outlet are positively adjusted to enter the fourth operating mode.
8. The method according to claim 1, characterized in that: The controlling the first air outlet corresponding to the first workstation where the first user is located to enter the first operation mode based on the adjustment instruction includes: collecting, through the control terminal of the air outlet, a first face image when the first user inputs the adjustment instruction; capturing a second facial image of the first user when the first user is at the first workstation; Obtaining the air outlet associated with the first workstation position, and determining whether the associated air outlet is the first air outlet; If the first air outlet is not the air outlet associated with the first workstation position, a reminder message is issued.
9. An air conditioning control device, characterized in that: The device comprises: a control module, configured to receive an adjustment instruction from a first user, and control a first air outlet corresponding to a first workstation where the first user is located to enter a first operation mode based on the adjustment instruction; a collection module, configured to collect first clothing adjustment information and / or first physical sign information of the first user and a second user, wherein the second user is one or more users located around the first workstation; An adjusting module is used to adjust the mode of the first air outlet according to the first clothing adjustment information and / or the first physical sign information.
10. An air conditioner, characterized in that: include: A processor, and a memory communicatively connected to the processor; The memory stores computer-executable instructions; The processor executes the computer-executable instructions stored in the memory to implement the method according to any one of claims 1 to 8.
11. A computer-readable storage medium, characterized in that: The computer-readable storage medium stores computer-executable instructions, which are used to implement the method according to any one of claims 1 to 8 when executed by a processor.
12. A computer program product, characterized in that The invention comprises a computer program, which implements the method according to any one of claims 1 to 8 when being executed by a processor.