Air conditioning air supply control method and device, electronic equipment and storage medium

By acquiring user information in the air-conditioned environment, the system intelligently adjusts air supply parameters and direction, solving the problem of fixed air supply areas and improving user comfort and experience.

CN115164370BActive Publication Date: 2026-05-12CHONGQING HAIER AIR CONDITIONER CO LTD +3
View PDF 4 Cites 0 Cited by

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
CHONGQING HAIER AIR CONDITIONER CO LTD
Filing Date
2022-07-26
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

Once installed in a fixed location, the existing air conditioner has a fixed air supply area, which cannot meet the diverse air supply needs of users in the environment, resulting in reduced comfort for some users and a poor user experience.

Method used

By acquiring environmental data, user information such as the number of users, characteristics, age, and height can be determined. The air supply parameters, including the target air supply area and wind speed, can be intelligently adjusted. The air supply direction and intensity can be adjusted using vertical and horizontal oscillating blades to optimize the air supply method.

Benefits of technology

It improves the comfort and experience of all users in the air-conditioned environment, ensures the rationality and reliability of the air supply area and wind speed, and meets a variety of air supply needs.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN115164370B_ABST
    Figure CN115164370B_ABST
Patent Text Reader

Abstract

The application provides an air conditioner air supply control method and device, electronic equipment and storage medium, and relates to the technical field of air conditioners. The method comprises the following steps: acquiring environment collection data based on a control instruction; determining user information based on the control instruction and the environment collection data, wherein the user information comprises user age estimation information, user quantity information corresponding to the user age estimation information, user feature information and user height information, and the user feature information comprises user authentication information or user location information; determining air supply parameters based on the user information, wherein the air supply parameters comprise a target air supply area and a target wind speed; determining a rotation parameter of a swing blade assembly of the air conditioner based on the target air supply area, and controlling the air conditioner to supply air based on the rotation parameter and the target wind speed. The application can adjust air conditioner air supply parameters based on user information in the environment, thereby realizing air conditioner air supply and improving user experience.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This invention relates to the field of air conditioning technology, and in particular to an air conditioning air supply control method, device, electronic device, and storage medium. Background Technology

[0002] Air conditioners, as an indispensable electrical appliance in modern life, provide a cool environment in the sweltering summer when they are in cooling mode, and a warm environment in the cold winter when they are in heating mode. They can also reduce the humidity in buildings when they are in dehumidifying mode. Therefore, air conditioners are widely used in various scenarios.

[0003] Currently, once air conditioners are installed in a fixed location, they generally swing and deliver air according to parameters set by the user. These parameters define a fixed air delivery area, which reduces the comfort of users outside the air delivery area, lowers the user experience, and fails to meet the diverse air delivery needs of users within the environment. Summary of the Invention

[0004] This invention provides an air conditioning air supply control method, device, electronic device, and storage medium to address the shortcomings of existing technologies that cannot meet the diverse air supply needs of users in the environment. Based on user information in the environment, the air conditioning air supply parameters are adjusted to achieve air conditioning air supply and improve the user experience.

[0005] This invention provides an air conditioning air supply control method, comprising:

[0006] Environmental data is acquired based on control commands;

[0007] Based on the control command and the environmental data collected, user information is determined. The user information includes: user age estimation information, number of users corresponding to the user age estimation information, user characteristic information, and user height information. The user characteristic information includes user authentication information or user location information.

[0008] Based on the user information, air supply parameters are determined, including: target air supply area and target wind speed;

[0009] Based on the target air supply area, the rotation parameters of the air conditioner's louver assembly are determined, and the air conditioner is controlled to supply air based on the rotation parameters and the target wind speed. The louver assembly includes at least two sets of vertical louver blades and at least two sets of horizontal louver blades. The vertical louver blades are used to adjust the horizontal direction of the air supply, and the horizontal louver blades are used to adjust the vertical direction of the air supply.

[0010] According to the air conditioning air supply control method provided by the present invention, determining the air supply parameters based on the user information includes:

[0011] Based on the user quantity information and the user characteristic information, the horizontal air supply area of ​​the target air supply area is determined;

[0012] Based on the user's height information, the vertical air supply area of ​​the target air supply area is determined;

[0013] The target wind speed is determined based on the user's estimated age.

[0014] According to the air conditioning air supply control method provided by the present invention, determining the horizontal air supply area of ​​the target air supply area based on the user quantity information and the user characteristic information includes:

[0015] When the user feature information includes the user location information and the number of users is 1, the area centered on the user location information and extending with a preset radius perpendicular to the air supply direction is determined as the horizontal air supply area, and the air supply direction is the direction from the air conditioner to the user.

[0016] When the user characteristic information includes the user authentication information and the number of users is 1, the area set by the user corresponding to the user authentication information is determined as the horizontal air supply area.

[0017] According to the air conditioning air supply control method provided by the present invention, the step of determining the horizontal air supply area of ​​the target air supply area based on the user quantity information and the user characteristic information further includes:

[0018] If the user feature information includes the user location information and the number of users is greater than 1, then, taking the air conditioner location as the center, at least two user location information that form the maximum central angle are determined.

[0019] The horizontal air supply area is defined as the area centered on the at least two user location information and extending along a predetermined radius in a direction perpendicular to the air supply direction and increasing the maximum central angle.

[0020] According to the air conditioning air supply control method provided by the present invention, determining the target wind speed based on the user age estimation information includes:

[0021] Based on the estimated user age information, the appropriate wind speed for each age group is determined.

[0022] Based on the suitable wind speed corresponding to each age group, the minimum wind speed is determined, and the minimum wind speed is set as the target wind speed.

[0023] According to the air conditioning air supply control method provided by the present invention, the method further includes:

[0024] If the user information is not obtained, the area specified by the control command is determined as the target air supply area; or, the historical air supply area with the highest setting frequency is determined as the target air supply area.

[0025] The present invention also provides an air conditioning air supply control device, comprising:

[0026] The acquisition module is used to acquire environmental data based on control commands;

[0027] The first determining module is used to determine user information based on the control command and the environmental data collected. The user information includes: user age estimation information, number of users corresponding to the user age estimation information, user characteristic information, and user height information. The user characteristic information includes user authentication information or user location information.

[0028] The second determining module is used to determine air supply parameters based on the user information, wherein the air supply parameters include: target air supply area and target wind speed;

[0029] The third determining module is used to determine the rotation parameters of the air conditioner's louver assembly based on the target air supply area, and to control the air conditioner to supply air based on the rotation parameters and the target wind speed. The louver assembly includes at least two sets of vertical louver blades and at least two sets of horizontal louver blades. The vertical louver blades are used to adjust the horizontal direction of the air supply, and the horizontal louver blades are used to adjust the vertical direction of the air supply.

[0030] The present invention also provides an electronic device, including a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the program to implement the air conditioning air supply control method as described above.

[0031] The present invention also provides a non-transitory computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the air conditioning air supply control method as described above.

[0032] The present invention also provides a computer program product, including a computer program that, when executed by a processor, implements the air conditioning air supply control method as described above.

[0033] The air conditioning air supply control method, device, electronic equipment, and storage medium provided by this invention acquire environmental data through control commands and determine user information. Using user quantity, user characteristic, and user height information from the user information, the target air supply area is intelligently determined. Using user age estimation information from the user information, the target wind speed is intelligently determined. Based on the target air supply area, the rotation parameters of the air conditioning louver assembly are determined. Based on the rotation parameters and the target wind speed, the air conditioning is controlled to supply air to the target air supply area. Based on the control commands, the actual state of users in the collected environment is given priority, ensuring the rationality and reliability of the determination of the target air supply area and target wind speed, thereby improving the experience and comfort of all users in the collected environment. Attached Figure Description

[0034] To more clearly illustrate the technical solutions in this invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.

[0035] Figure 1 This is a flowchart illustrating the air conditioning air supply control method provided by the present invention;

[0036] Figure 2 This is one of the example schematic diagrams for determining the target air supply area provided by the present invention;

[0037] Figure 3 This is the second example schematic diagram of determining the target air supply area provided by the present invention;

[0038] Figure 4 This is a schematic diagram of the air conditioning air supply control device provided by the present invention;

[0039] Figure 5 This is a schematic diagram of the structure of the electronic device provided by the present invention. Detailed Implementation

[0040] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of this invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this invention. All other embodiments obtained by those skilled in the art based on the embodiments of this invention without creative effort are within the scope of protection of this invention.

[0041] Currently, once air conditioners are installed in a fixed location, they generally oscillate and distribute air according to manually set parameters. These parameters define a fixed airflow area, reducing the comfort of users outside this area and lowering the overall user experience. Furthermore, manually setting the target airflow area and parameters fails to consider the actual conditions of users within that area, further diminishing the user experience.

[0042] To address the above problems, this invention provides an air conditioning air supply control method. Figure 1 This is a flowchart illustrating the air conditioning air supply control method provided by the present invention, as shown below. Figure 1 As shown, the method includes:

[0043] Step 110: Acquire environmental data based on control commands.

[0044] Specifically, since the air supply parameters of current air conditioners are relatively fixed and cannot take into account the actual situation of all users in the environment where the air conditioner is located, in this invention, the actual situation of all users in the environment where the air conditioner is located can be obtained according to control instructions. The control instructions include, but are not limited to: instructions to start collecting environmental data, user-specified air supply parameters, air conditioner start timer, and air conditioner mode. The air conditioner mode includes, but is not limited to: one of cooling mode, heating mode, and dehumidification mode.

[0045] Optionally, control commands can be issued via a remote control, an air conditioner display screen, or a connected mobile terminal. The device for collecting environmental data can be a camera that can capture 360 ​​degrees to avoid blind spots. The environmental data can be video data or panoramic images.

[0046] Step 120: Based on the control command and the environmental data collected, determine the user information, which includes: user age estimation information, number of users corresponding to the user age estimation information, user characteristic information, and user height information. The user characteristic information includes user authentication information or user location information.

[0047] Specifically, based on control commands, the system prioritizes the actual situation of all users within the air conditioner's environment. Through control commands and environmental data collection, it further acquires user information. For example, environmental data collection can be used to estimate a person's age, obtain estimated user age information, identify the number of people, obtain user quantity information, estimate user height information by referring to the shooting angle, analyze and obtain user location information using the air conditioner's location as the origin, and perform facial recognition or obtain user authentication information based on the parameters of the sent control commands. That is, user authentication information includes the user's facial recognition information and the corresponding account information when the terminal sending the control commands is a mobile phone.

[0048] Step 130: Based on the user information, determine the air supply parameters, which include the target air supply area and the target wind speed.

[0049] Specifically, based on the control commands, the target air supply area and target wind speed of the air conditioner are further determined based on the determined user information, so as to fully consider the actual situation of all users in the environment where the air conditioner is located and ensure the experience and comfort of all users.

[0050] Step 140: Based on the target air supply area, determine the rotation parameters of the air conditioner's louver assembly, and control the air conditioner to supply air based on the rotation parameters and the target wind speed. The louver assembly includes at least two sets of vertical louver blades and at least two sets of horizontal louver blades. The vertical louver blades are used to adjust the horizontal direction of the air supply, and the horizontal louver blades are used to adjust the vertical direction of the air supply.

[0051] Specifically, by determining the rotation parameters of the air conditioner's louver assembly based on the target air supply area, the corresponding louver assembly is controlled to rotate and supply air at the target wind speed. The louver assembly employs at least two sets of segmented vertical louvers and at least two sets of segmented horizontal louvers to achieve targeted air supply, enriching the air supply methods, overcoming the shortcomings of traditional air conditioning's single air supply method, and laying the foundation for intelligently determined target air supply areas.

[0052] Optionally, the rotation parameters of the louver assembly include direction of rotation and angle of rotation. The direction of rotation and angle of rotation of the louver assembly can be adjusted according to the rotation parameters to deliver air to the target air delivery area.

[0053] Optionally, determining the air supply parameters based on the user information includes:

[0054] Based on the user quantity information and the user characteristic information, the horizontal air supply area of ​​the target air supply area is determined;

[0055] Based on the user's height information, the vertical air supply area of ​​the target air supply area is determined;

[0056] The target wind speed is determined based on the user's estimated age.

[0057] Specifically, based on prioritizing the actual conditions of all users in the air-conditioned environment, the air supply parameters are determined through user information. That is, the horizontal air supply area can be determined through user quantity and characteristic information, and the direction and angle of each set of vertical oscillating blades can be determined based on the horizontal air supply area. The vertical air supply area can be further determined through user height information, and the direction and angle of each set of horizontal oscillating blades can be determined based on the vertical air supply area. The target wind speed can be determined based on the user's age estimation information. For example, if the user is too young or too old, the target wind speed should not be too high, and a medium or low target wind speed should be used to fully consider the user's physical condition and avoid the user catching a cold from the wind.

[0058] Optionally, determining the horizontal air supply area of ​​the target air supply area based on the user quantity information and the user characteristic information includes:

[0059] When the user feature information includes the user location information and the number of users is 1, the area centered on the user location information and extending with a preset radius perpendicular to the air supply direction is determined as the horizontal air supply area, and the air supply direction is the direction from the air conditioner to the user.

[0060] When the user characteristic information includes the user authentication information and the number of users is 1, the area set by the user corresponding to the user authentication information is determined as the horizontal air supply area.

[0061] Specifically, when the number of users is 1, there are two ways to determine the horizontal air supply area. The first is to fully consider the user's location information and determine the comfort range centered on the user's location information to fully consider the user's comfort. The second is that the air conditioner has already set the preset air supply area corresponding to each user according to different user preferences. When the user authentication information is facial recognition information, the preset air supply area set by the user corresponding to the facial recognition information can be determined as the horizontal air supply area.

[0062] For example, Figure 2 This is one of the example schematic diagrams for determining the target air supply area provided by the present invention, such as... Figure 2 As shown, A1 represents the location of the air conditioner, and B1 represents the location of user 1. The direction from A1 to B1 is the air supply direction. To fully consider the comfort of user 1, with user 1 as the center, perpendicular to the air supply direction A1B1, a preset radius R is extended to both sides to obtain B1B1. 11 Point and B 12 Point, and B 11 Point B 12 The area formed by point A1 and point B is defined as the horizontal air supply zone. 11 Point A1 and point B 12The horizontal angle θ1 formed by the points adjusts the rotation angle of the segmented vertical oscillating blades of the air conditioner. For example, taking three segments of the vertical oscillating blades as an example, with the three segments arranged sequentially from top to bottom in the same vertical plane, the first and third vertical oscillating blades can be rotated towards each other without considering the user's height. The second vertical blade can rotate 90° to open in the center, and with the horizontal blade remaining horizontal, it can satisfy the requirements of B mentioned above. 11 Point B 12 The air supply to the horizontal air supply area formed by point A1 and point A2.

[0063] In addition, each vertical blade can be set to an oscillation mode, and the first, second, and third vertical blades can be oscillated about the airflow direction A1B1 with an angle of not less than [value missing].

[0064] Optionally, determining the horizontal air supply area of ​​the target air supply area based on the user quantity information and the user characteristic information further includes:

[0065] If the user feature information includes the user location information and the number of users is greater than 1, then, taking the air conditioner location as the center, at least two user location information that form the maximum central angle are determined.

[0066] The horizontal air supply area is defined as the area centered on the at least two user location information and extending along a predetermined radius in a direction perpendicular to the air supply direction and increasing the maximum central angle.

[0067] Specifically, when there are at least two users in the environment where the air conditioner is located, the location information of at least two users that form the largest central angle is determined with the location of the air conditioner as the center. That is, at least two users on the outermost edge are determined. Considering the comfort of the edge users, a preset radius is extended in a direction perpendicular to the air supply direction and increasing the central angle, with the determined at least two users as the center. The area determined above is taken as the horizontal air supply area. The horizontal air supply area includes all users and fully considers the comfort of each user in the area.

[0068] For example, Figure 3 This is a second example of a schematic diagram illustrating the determination of a target air supply area provided by the present invention, such as... Figure 3 As shown, A1 represents the location of the air conditioner, B2 represents the location of user 2, B3 represents the location of user 3, and B4 represents the location of user 4. Among the three users, users 2 and 3 form the largest central angle. The area formed by A1, B2, and B3 is the minimum horizontal air supply area. To improve the comfort of users 2 and 3 at the edge, a preset radius R is extended from B2 along a direction perpendicular to the air supply direction A1B2 and increasing the central angle to obtain the edge point B. 21Centered on B3, extend the radius R along a direction perpendicular to the air supply direction A1B3 while increasing the central angle to obtain the edge point B. 31 Since the side length A1B 21 Greater than side length A1B 31 The radius is A1B 21 A sector with a central angle of θ2 is used as the horizontal air supply area.

[0069] Optionally, the rotation angle of the segmented vertical oscillating blades of the air conditioner can be adjusted according to the horizontal angle θ2. For example, taking three segments of vertical oscillating blades as an example, with the three segments arranged sequentially from top to bottom in the same vertical plane, the first and third vertical oscillating blades can be rotated towards each other without considering the user's height. The second vertical blade can rotate 90° to open in the center, and with the horizontal blade remaining horizontal, it can satisfy the requirements of B mentioned above. 21 Point B 31 The air supply area formed by point A1 and point A2 is used for air supply. Furthermore, each vertical blade can be set to an oscillation mode, with the first, second, and third vertical blades oscillating about the angle bisector of θ2 at angles not less than [value missing].

[0070] Optionally, the vertical airflow area, i.e., the direction and angle of the horizontal oscillating blades of each section of the air conditioner, can be determined based on the user's height information. If the user is short, and there are children among all users, and the child is in good health and needs cooling, the horizontal oscillating blades can be rotated downwards to lower the airflow position of the air conditioner; if the child is in poor health, to avoid the air conditioner blowing directly on the child and causing the child's head to get cold, the horizontal oscillating blades can be rotated upwards to adjust the temperature of the target airflow area and provide a comfortable environment for the user; if the user is tall, the horizontal oscillating blades can be rotated appropriately according to the user's height to deliver airflow to the user's whole body or avoid blowing directly on the user's head.

[0071] Optionally, determining the target wind speed based on the user's age estimation information includes:

[0072] Based on the estimated user age information, the appropriate wind speed for each age group is determined.

[0073] Based on the suitable wind speed corresponding to each age group, the minimum wind speed is determined, and the minimum wind speed is set as the target wind speed.

[0074] Specifically, considering that children and the elderly are physically weaker than adults, in this embodiment of the invention, when determining the target wind speed, the appropriate wind speed for each age group is determined based on the user's age estimation information, and the minimum wind speed among them is determined as the target wind speed, and the air is delivered at the target wind speed.

[0075] Optionally, the method further includes:

[0076] If the user information is not obtained, the area specified by the control command is determined as the target air supply area; or, the historical air supply area with the highest setting frequency is determined as the target air supply area.

[0077] Specifically, if no user information is obtained, i.e., the number of users obtained from the environmental data collection is 0, and the control command specifies an air supply area, then that air supply area is determined as the target air supply area; if the control command does not specify an air supply area, the historical air supply area with the highest setting frequency can also be determined as the target air supply area from historical data.

[0078] The air conditioning air supply control method provided by this invention acquires environmental data through control commands and determines user information. Using user quantity, user characteristics, and user height information, it intelligently determines the target air supply area. Using user age estimation information, it intelligently determines the target wind speed. Based on the target air supply area, it determines the rotation parameters of the air conditioning louver assembly. Based on the rotation parameters and the target wind speed, it controls the air conditioning to supply air to the target air supply area. Based on the control commands, it prioritizes the actual state of users in the collected environment, ensuring the rationality and reliability of the target air supply area and target wind speed determination, thereby improving the experience and comfort of all users in the collected environment.

[0079] The air conditioning air supply control device provided by the present invention is described below. The air conditioning air supply control device described below can be referred to in correspondence with the air conditioning air supply control method described above.

[0080] Figure 4 This is a schematic diagram of the air conditioning air supply control device provided by the present invention, as shown below. Figure 4 As shown, the air conditioning air supply control device 200 includes: an acquisition module 201, a first determination module 202, a second determination module 203, and a third determination module 204, wherein:

[0081] Acquisition module 201 is used to acquire environmental data based on control commands;

[0082] The first determining module 202 is used to determine user information based on the control command and the environmental data collected. The user information includes: user age estimation information, user number information corresponding to the user age estimation information, user characteristic information and user height information. The user characteristic information includes user authentication information or user location information.

[0083] The second determining module 203 is used to determine air supply parameters based on the user information, wherein the air supply parameters include: target air supply area and target wind speed;

[0084] The third determining module 204 is used to determine the rotation parameters of the air conditioner's louver assembly based on the target air supply area, and control the air conditioner to supply air based on the rotation parameters and the target wind speed. The louver assembly includes at least two sets of vertical louver blades and at least two sets of horizontal louver blades. The vertical louver blades are used to adjust the horizontal direction of the air supply, and the horizontal louver blades are used to adjust the vertical direction of the air supply.

[0085] The air conditioning air supply control device provided by this invention acquires environmental data through control commands and determines user information. Using user quantity, user characteristics, and user height information, it intelligently determines the target air supply area. Using user age estimation information, it intelligently determines the target wind speed. Based on the target air supply area, it determines the rotation parameters of the air conditioning louver assembly. Based on the rotation parameters and the target wind speed, it controls the air conditioning to supply air to the target area. Based on the control commands, it prioritizes the actual state of users in the collected environment, ensuring the rationality and reliability of the target air supply area and target wind speed determination, thereby improving the experience and comfort of all users in the collected environment.

[0086] The second determining module 203 is specifically used for:

[0087] The step of determining the air supply parameters based on the user information includes:

[0088] Based on the user quantity information and the user characteristic information, the horizontal air supply area of ​​the target air supply area is determined;

[0089] Based on the user's height information, the vertical air supply area of ​​the target air supply area is determined;

[0090] The target wind speed is determined based on the user's estimated age.

[0091] The second determining module 203 is specifically used for:

[0092] The step of determining the horizontal air supply area of ​​the target air supply area based on the user quantity information and the user characteristic information includes:

[0093] When the user feature information includes the user location information and the number of users is 1, the area centered on the user location information and extending with a preset radius perpendicular to the air supply direction is determined as the horizontal air supply area, and the air supply direction is the direction from the air conditioner to the user.

[0094] When the user characteristic information includes the user authentication information and the number of users is 1, the area set by the user corresponding to the user authentication information is determined as the horizontal air supply area.

[0095] The second determining module 203 is specifically used for:

[0096] The step of determining the horizontal air supply area of ​​the target air supply area based on the user quantity information and the user characteristic information further includes:

[0097] If the user feature information includes the user location information and the number of users is greater than 1, then, taking the air conditioner location as the center, at least two user location information that form the maximum central angle are determined.

[0098] The horizontal air supply area is defined as the area centered on the at least two user location information and extending along a predetermined radius in a direction perpendicular to the air supply direction and increasing the maximum central angle.

[0099] The second determining module 203 is specifically used for:

[0100] Determining the target wind speed based on the user's age estimation information includes:

[0101] Based on the estimated user age information, the appropriate wind speed for each age group is determined.

[0102] Based on the suitable wind speed corresponding to each age group, the minimum wind speed is determined, and the minimum wind speed is set as the target wind speed.

[0103] The second determining module 203 is specifically used for:

[0104] The method further includes:

[0105] If the user information is not obtained, the area specified by the control command is determined as the target air supply area; or, the historical air supply area with the highest setting frequency is determined as the target air supply area.

[0106] Figure 5 An example is a schematic diagram of the physical structure of an electronic device, such as... Figure 5 As shown, the electronic device 300 may include: a processor 310, a communication interface 320, a memory 330, and a communication bus 340, wherein the processor 310, the communication interface 320, and the memory 330 communicate with each other via the communication bus 340. The processor 310 can call logical instructions in the memory 330 to execute an air conditioning air supply control method, which includes:

[0107] Environmental data is acquired based on control commands;

[0108] Based on the control command and the environmental data collected, user information is determined. The user information includes: user age estimation information, number of users corresponding to the user age estimation information, user characteristic information, and user height information. The user characteristic information includes user authentication information or user location information.

[0109] Based on the user information, air supply parameters are determined, including: target air supply area and target wind speed;

[0110] Based on the target air supply area, the rotation parameters of the air conditioner's louver assembly are determined, and the air conditioner is controlled to supply air based on the rotation parameters and the target wind speed. The louver assembly includes at least two sets of vertical louver blades and at least two sets of horizontal louver blades. The vertical louver blades are used to adjust the horizontal direction of the air supply, and the horizontal louver blades are used to adjust the vertical direction of the air supply.

[0111] Furthermore, the logical instructions in the aforementioned memory 330 can be implemented as software functional units and, when sold or used as independent products, can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, or the part that contributes to the prior art, or a part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of the present invention. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.

[0112] On the other hand, the present invention also provides a computer program product, the computer program product comprising a computer program that can be stored on a non-transitory computer-readable storage medium, wherein when the computer program is executed by a processor, the computer is able to execute the air conditioning air supply control method provided by the above methods, the method comprising:

[0113] Environmental data is acquired based on control commands;

[0114] Based on the control command and the environmental data collected, user information is determined. The user information includes: user age estimation information, number of users corresponding to the user age estimation information, user characteristic information, and user height information. The user characteristic information includes user authentication information or user location information.

[0115] Based on the user information, air supply parameters are determined, including: target air supply area and target wind speed;

[0116] Based on the target air supply area, the rotation parameters of the air conditioner's louver assembly are determined, and the air conditioner is controlled to supply air based on the rotation parameters and the target wind speed. The louver assembly includes at least two sets of vertical louver blades and at least two sets of horizontal louver blades. The vertical louver blades are used to adjust the horizontal direction of the air supply, and the horizontal louver blades are used to adjust the vertical direction of the air supply.

[0117] In another aspect, the present invention also provides a non-transitory computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the air conditioning air supply control method provided by the above methods, the method comprising:

[0118] Environmental data is acquired based on control commands;

[0119] Based on the control command and the environmental data collected, user information is determined. The user information includes: user age estimation information, number of users corresponding to the user age estimation information, user characteristic information, and user height information. The user characteristic information includes user authentication information or user location information.

[0120] Based on the user information, air supply parameters are determined, including: target air supply area and target wind speed;

[0121] Based on the target air supply area, the rotation parameters of the air conditioner's louver assembly are determined, and the air conditioner is controlled to supply air based on the rotation parameters and the target wind speed. The louver assembly includes at least two sets of vertical louver blades and at least two sets of horizontal louver blades. The vertical louver blades are used to adjust the horizontal direction of the air supply, and the horizontal louver blades are used to adjust the vertical direction of the air supply.

[0122] The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separate. The components shown as units may or may not be physical units; that is, they may be located in one place or distributed across multiple network units. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs. Those skilled in the art can understand and implement this without any creative effort.

[0123] Through the above description of the embodiments, those skilled in the art can clearly understand that each embodiment can be implemented by means of software plus necessary general-purpose hardware platforms, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solutions, in essence or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, magnetic disk, optical disk, etc., and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute the methods described in the various embodiments or some parts of the embodiments.

[0124] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.

Claims

1. An air conditioning air supply control method, characterized in that, include: Environmental data is acquired based on control commands; Based on the control command and the environmental data collected, user information is determined. The user information includes: user age estimation information, number of users corresponding to the user age estimation information, user characteristic information, and user height information. The user characteristic information includes user authentication information or user location information. Based on the user information, air supply parameters are determined, including: target air supply area and target wind speed; Based on the target air supply area, the rotation parameters of the air conditioner's louver assembly are determined, and the air conditioner is controlled to supply air based on the rotation parameters and the target wind speed. The louver assembly includes at least two sets of vertical louver blades and at least two sets of horizontal louver blades. The vertical louver blades are used to adjust the horizontal direction of the air supply, and the horizontal louver blades are used to adjust the vertical direction of the air supply. A1 represents the location of the air conditioner, and B1 represents the location of user 1. The direction from A1 to B1 is the air supply direction. With user 1 as the center, perpendicular to the air supply direction A1B1, a preset radius R is extended to both sides to obtain B1B1. 11 Point and B 12 Point, and B 11 Point B 12 The area formed by point A1 and point B is defined as the horizontal air supply zone. 11 Point A1 and point B 12 The horizontal angle formed by the points Adjust the angle of the segmented vertical oscillating blades of the air conditioner. The vertical oscillating blades consist of three segments, arranged sequentially from top to bottom in the same vertical plane. Rotate the first and third vertical oscillating blades towards each other. The second vertical blade can rotate 90° to open in the center, and while the horizontal blade remains horizontal, the above-mentioned B... 11 Point B 12 The air supply to the horizontal air supply area formed by point A1 and point A2.

2. The air conditioning air supply control method according to claim 1, characterized in that, The step of determining the air supply parameters based on the user information includes: Based on the user quantity information and the user characteristic information, the horizontal air supply area of ​​the target air supply area is determined; Based on the user's height information, the vertical air supply area of ​​the target air supply area is determined; The target wind speed is determined based on the user's estimated age.

3. The air conditioning air supply control method according to claim 2, characterized in that, The step of determining the horizontal air supply area of ​​the target air supply area based on the user quantity information and the user characteristic information includes: When the user feature information includes the user location information and the number of users is 1, the area centered on the user location information and extending with a preset radius perpendicular to the air supply direction is determined as the horizontal air supply area, and the air supply direction is the direction from the air conditioner to the user. When the user characteristic information includes the user authentication information and the number of users is 1, the area set by the user corresponding to the user authentication information is determined as the horizontal air supply area.

4. The air conditioning air supply control method according to claim 2, characterized in that, The step of determining the horizontal air supply area of ​​the target air supply area based on the user quantity information and the user characteristic information further includes: If the user feature information includes the user location information and the number of users is greater than 1, then, taking the air conditioner location as the center, at least two user location information that form the maximum central angle are determined. The horizontal air supply area is defined as the area centered on the at least two user location information and extending along a predetermined radius in a direction perpendicular to the air supply direction and increasing the maximum central angle.

5. The air conditioning air supply control method according to any one of claims 2 to 4, characterized in that, Determining the target wind speed based on the user's age estimation information includes: Based on the estimated user age information, the appropriate wind speed for each age group is determined. Based on the suitable wind speed corresponding to each age group, the minimum wind speed is determined, and the minimum wind speed is set as the target wind speed.

6. The air conditioning air supply control method according to claim 1, characterized in that, The method further includes: If the user information is not obtained, the area specified by the control command is determined as the target air supply area; or, the historical air supply area with the highest setting frequency is determined as the target air supply area.

7. An air conditioning air supply control device, characterized in that, include: The acquisition module is used to acquire environmental data based on control commands; The first determining module is used to determine user information based on the control command and the environmental data collected. The user information includes: user age estimation information, number of users corresponding to the user age estimation information, user characteristic information, and user height information. The user characteristic information includes user authentication information or user location information. The second determining module is used to determine air supply parameters based on the user information, wherein the air supply parameters include: target air supply area and target wind speed; The third determining module is used to determine the rotation parameters of the air conditioner's louver assembly based on the target air supply area, and to control the air conditioner to supply air based on the rotation parameters and the target wind speed. The louver assembly includes at least two sets of vertical louver blades and at least two sets of horizontal louver blades. The vertical louver blades are used to adjust the horizontal direction of the air supply, and the horizontal louver blades are used to adjust the vertical direction of the air supply. A1 represents the location of the air conditioner, and B1 represents the location of user 1. The direction from A1 to B1 is the air supply direction. With user 1 as the center, perpendicular to the air supply direction A1B1, a preset radius R is extended to both sides to obtain B1B1. 11 Point and B 12 Point, and B 11 Point B 12 The area formed by point A1 and point B is defined as the horizontal air supply zone. 11 Point A1 and point B 12 The horizontal angle formed by the points Adjust the angle of the segmented vertical oscillating blades of the air conditioner. The vertical oscillating blades consist of three segments, arranged sequentially from top to bottom in the same vertical plane. Rotate the first and third vertical oscillating blades towards each other. The second vertical blade can rotate 90° to open in the center, and while the horizontal blade remains horizontal, the above-mentioned B... 11 Point B 12 The air supply to the horizontal air supply area formed by point A1 and point A2.

8. An electronic device comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, characterized in that, When the processor executes the program, it implements the air conditioning air supply control method as described in any one of claims 1 to 6.

9. A non-transitory computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by the processor, it implements the air conditioning air supply control method as described in any one of claims 1 to 6.

10. A computer program product, comprising a computer program, characterized in that, When the computer program is executed by the processor, it implements the air conditioning air supply control method as described in any one of claims 1 to 6.