Method and apparatus for intelligent control of devices based on region division
By collecting user information about air conditioning equipment, dividing the area, and generating work trajectories, the problem of the single control method of air conditioning equipment is solved, enabling more flexible and diversified adaptation to user needs, reducing energy consumption, and improving user experience.
Patent Information
- Application Number
- CN202210246189.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-03-14
- Publication Date
- 2026-02-06
- Estimated Expiration
- 2042-03-14
AI Technical Summary
Existing air conditioning equipment has a relatively simple control method, which cannot meet the diverse needs of users when the indoor distribution is uneven or the temperature requirements vary.
By collecting target user information corresponding to air conditioning equipment, dividing the work area, and generating work trajectory and control parameters based on user information, intelligent control of air conditioning equipment can be achieved.
It improves the control flexibility and versatility of air conditioning equipment, enhances its adaptability to user needs, reduces energy consumption, and provides a more comfortable airflow experience.
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Figure CN116792884B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of intelligent household appliances, and in particular to a device intelligent control method and device based on region division. BACKGROUND
[0002] The air guide blades of air conditioning devices on the market usually have up-and-down swinging or left-and-right swinging functions, and can guide the cold or warm air of the air conditioning device to various directions to make the indoor temperature uniform. Users can control the air conditioning device according to the built-in working mode of the air conditioning device, such as directional air blowing mode, up-and-down swinging or left-and-right swinging working mode, etc. However, it is found in practice that the control mode of the existing air conditioning device is relatively single, and when the indoor users are unevenly distributed or the temperature requirements of different users are different, the fixed working mode cannot meet the diversified temperature requirements of users. Therefore, it is particularly important to provide a new intelligent control method for air conditioning devices to improve the flexibility and diversity of air conditioning device control and meet the diversified temperature requirements of users. SUMMARY
[0003] The technical problem to be solved by the present application is to provide a device intelligent control method and device based on region division, which can improve the flexibility and diversity of air conditioning device control and meet the diversified requirements of users.
[0004] To solve the above technical problems, the first aspect of the present application discloses a device intelligent control method based on region division, which comprises:
[0005] Collecting user information of one or more target users corresponding to the air conditioning device, the user information of each target user comprising the position information of the target user;
[0006] Dividing the working region of the air conditioning device according to the user information of all the target users to obtain at least one division region;
[0007] Determining the working track corresponding to the air conditioning device according to all the division regions;
[0008] Determining the control parameters of the air conditioning device according to the working track and the user information of all the target users;
[0009] Controlling the air conditioning device to perform a matching operation based on the control parameters.
[0010] As an optional implementation, in the first aspect of the present application, the user information of each target user further comprises the state information of the target user.
[0011] Before the working area of the air conditioning device is divided according to the user information of all the target users to obtain at least one divided area, the method further comprises:
[0012] According to the position information of each target user, a mapping point corresponding to the target user on a two-dimensional mapping surface of the air conditioning device is determined, wherein the two-dimensional mapping surface is a virtual surface parallel to an air outlet panel corresponding to the air conditioning device, and the working area of the air conditioning device has a mapping relationship with the two-dimensional mapping surface;
[0013] According to the state information of each target user, an air conditioning comfort attribute of each target user is determined;
[0014] According to the state information of each target user, an air conditioning comfort attribute of each target user is determined;
[0015] According to the mapping point corresponding to each target user and the air conditioning comfort attribute of each target user, the working area is divided to obtain at least one divided area.
[0016] As an optional implementation, in the first aspect of the present application, according to the mapping point corresponding to each target user and the air conditioning comfort attribute of each target user, the working area is divided to obtain at least one divided area, which comprises:
[0017] When the number of all target users is equal to 1, according to the mapping point corresponding to the target user and the air conditioning comfort attribute of the target user, a first wind control range in the space area with the target user as the center is determined, and the first wind control range and the remaining area range in the space area except the first wind control range are determined as all divided areas respectively;
[0018] When the number of all target users is greater than 1, the minimum air outlet width and the maximum air outlet width of the air conditioning device in any direction are determined, and the minimum wind control width and the maximum wind control width of the air conditioning device in any direction of the two-dimensional mapping surface are determined according to the minimum air outlet width and the maximum air outlet width of the air conditioning device in any direction;
[0019] According to the mapping points corresponding to each of the target users, the air conditioner comfort attributes of each of the target users, and the minimum wind control width and the maximum wind control width of the air conditioner device in any direction of the two-dimensional mapping surface, all of the target users are divided into at least one user group, wherein for each of the user groups, when the user group includes at least two target users, if the air conditioner comfort attributes of the two target users in the user group do not match, the length of the line connecting the mapping points of the two target users is less than or equal to the minimum wind control width in the direction of the line connecting the mapping points, if the length of the line connecting the mapping points of the two target users in the user group is greater than the minimum wind control width in the direction of the line connecting the mapping points, the air conditioner comfort attributes of the two target users match, and the length of the line connecting the mapping points between any target user in any of the user groups and any target user in any of the other user groups is greater than the maximum wind control width in the direction of the line connecting the mapping points;
[0020] According to the position information of all target users in each of the user groups, a second wind control range corresponding to the user group is determined, and each of the second wind control ranges and a remaining area range in the space region except all of the second wind control ranges are determined as all of the divided regions.
[0021] As an optional implementation, in the first aspect of the present application, the air conditioner comfort attribute of each of the target users includes the air conditioner resource matched by the target user, wherein the air conditioner resource matched by each of the target users includes a first air conditioner resource or a second air conditioner resource, the first air conditioner resource includes a first temperature and / or a first air speed, the second air conditioner resource includes a second temperature and / or a second air speed, the first temperature is less than the second temperature, and the first air speed is greater than the second air speed.
[0022] Before the working track corresponding to the air conditioner device is determined according to all of the divided regions, the method further includes:
[0023] determining a first user quantity of the first target users in each of the divided regions for which the matched air conditioner resource is the first air conditioner resource, and a second user quantity of the second target users in the divided region for which the matched air conditioner resource is the second air conditioner resource;
[0024] According to the first user quantity of each of the divided regions and the second user quantity of the divided region, a priority level corresponding to the divided region is determined;
[0025] and the working track corresponding to the air conditioner device is determined according to all of the divided regions, including:
[0026] the working track corresponding to the air conditioner device is determined according to the priority level corresponding to each of the divided regions.
[0027] As an optional implementation, in the first aspect of the present application, before the working track of the air conditioning device corresponding to each of the divided areas is determined according to the priority level corresponding to each of the divided areas, the method further comprises:
[0028] determining the air outlet mode corresponding to each of the divided areas according to the first user number of each of the divided areas and the second user number of the divided area;
[0029] determining the track point in each of the divided areas according to the air outlet mode corresponding to each of the divided areas;
[0030] wherein, the working track of the air conditioning device corresponding to each of the divided areas is determined according to the priority level corresponding to each of the divided areas:
[0031] the working track of the air conditioning device corresponding to each of the divided areas is determined according to the priority level corresponding to each of the divided areas and the track point in each of the divided areas;
[0032] and, the air outlet mode corresponding to each of the divided areas is determined according to the first user number of each of the divided areas and the second user number of the divided area, comprising:
[0033] for each of the divided areas, when the first user number and the second user number of the divided area are both 0, or when the second user number of the divided area is 0 and the first user number of the divided area is greater than 0 and less than a first preset number, the air outlet mode corresponding to the divided area is determined to be a single-outlet mode; when the second user number of the divided area is not 0, the air outlet mode corresponding to the divided area is determined to be a first multi-outlet mode, wherein the first multi-outlet mode corresponds to the first air conditioning resource and the second air conditioning resource; when the second user number of the divided area is 0 and the first user number of the divided area is greater than or equal to the first preset number, the air outlet mode corresponding to the divided area is determined to be a second multi-outlet mode, wherein the second multi-outlet mode corresponds to the first air conditioning resource.
[0034] As an optional implementation, in the first aspect of the present application, the track point in each of the divided areas is determined according to the air outlet mode corresponding to each of the divided areas, comprising:
[0035] for each of the divided areas, when the first user number and the second user number of the divided area are both 0, the divided area is determined to be a non-priority area, and when the first user number and / or the second user number of the divided area is greater than 0, the divided area is determined to be a priority area;
[0036] determine the air outlet parameter corresponding to each of the division areas according to the air outlet mode corresponding to the division area, wherein the air outlet parameter corresponding to each of the division areas comprises at least one air outlet matched by the division area, and all the air outlets matched by each of the priority areas comprise the air outlet matched by each target user in the priority area;
[0037] for each of the priority areas, when the air outlet mode corresponding to the priority area is the single-air-outlet mode or the second multi-air-outlet mode, or when the air outlet mode corresponding to the priority area is the first multi-air-outlet mode and the first user quantity of the priority area is greater than 0, determine the mapping point corresponding to each of the target users in the priority area as the trajectory point of the air outlet matched by the target user in the priority area;
[0038] for each of the priority areas, when the air outlet mode corresponding to the priority area is the first multi-air-outlet mode and when the first user quantity of the priority area is 0, determine the mapping point corresponding to each of the target users in the priority area as the trajectory point of the air outlet matched by the target user in the priority area, and determine at least one other mapping point other than the mapping points corresponding to all the target users in the priority area from all the mapping points corresponding to the priority area as the trajectory point of the other air outlet other than the air outlet matched by each of the target users in the division area in all the air outlets matched by the priority area in the priority area;
[0039] for each of the non-priority areas, determine the at least one mapping point corresponding to the non-priority area as the trajectory point of the air outlet matched by the non-priority area in the non-priority area according to the area of the non-priority area.
[0040] As an optional implementation, in the first aspect of the present application, the determination of the control parameter of the air conditioning device according to the working track and the user information of all the target users comprises:
[0041] determine the wind direction parameter corresponding to each of the trajectory points in the determined working track according to the first offset distance and the first offset direction of the tangent horizontal line corresponding to the trajectory point relative to the center horizontal line, and / or the second offset distance and the second offset direction of the tangent vertical line corresponding to the trajectory point relative to the center vertical line, wherein the center horizontal line and the center vertical line are respectively a horizontal line and a vertical line passing through the center point of the two-dimensional mapping surface, and the tangent horizontal line and the tangent vertical line corresponding to each of the trajectory points are respectively a horizontal line and a vertical line passing through the trajectory point;
[0042] determine the distance between each of the target users and the air conditioning device according to the position information of each of the target users and the position information of the air conditioning device;
[0043] determine the comfort perception parameter matched with each of the divided areas according to the distance between each of the target users and the air conditioning device and one or more of the air conditioning comfort attributes of each of the target users;
[0044] determine the control parameter of the air conditioning device according to the comfort perception parameter matched with each of the divided areas and the wind direction parameter corresponding to each of the trajectory points corresponding to the divided area.
[0045] As an optional implementation, in the first aspect of the present application, the determination of the control parameter of the air conditioning device according to the comfort perception parameter matched with each of the divided areas and the wind direction parameter corresponding to each of the trajectory points corresponding to the divided area comprises:
[0046] determine the wind duct parameter corresponding to each of the divided areas and the air outlet parameter of each of the air outlets matched with the divided area according to the comfort perception parameter matched with each of the divided areas, the wind direction parameter corresponding to each of the trajectory points corresponding to the divided area and all the air outlets matched with the divided area, wherein the wind duct parameter corresponding to each of the divided areas comprises one or more of all the wind duct systems matched with the divided area, the heat exchange parameter corresponding to each of the wind duct systems matched with the divided area, and the air flow distribution ratio of each of the wind duct systems matched with the divided area to each of the air outlets matched with the divided area;
[0047] generate the control parameter of the air conditioning device according to the wind duct parameter corresponding to each of the divided areas and / or the air outlet parameter of each of the air outlets matched with each of the divided areas.
[0048] The second aspect of the present application discloses an intelligent device control device based on area division, which comprises:
[0049] a collection module configured to collect user information of one or more target users corresponding to an air conditioning device, wherein the user information of each target user comprises location information of the target user;
[0050] an area division module configured to divide a working area of the air conditioning device according to the user information of all the target users to obtain at least one divided area;
[0051] a determination module configured to determine a working trajectory corresponding to the air conditioning device according to all the divided areas, and determine a control parameter of the air conditioning device according to the working trajectory and the user information of all the target users;
[0052] a control module configured to control the air conditioning device to perform a matching operation based on the control parameter.
[0053] As an optional implementation, in the second aspect of the present application, the user information of each target user further comprises state information of the target user.
[0054] The determining module is further configured to, before the region dividing module divides the working region of the air conditioning device according to the user information of all the target users to obtain at least one divided region, determine a corresponding mapping point of each target user on a two-dimensional mapping surface of the air conditioning device according to the position information of the target user, wherein the two-dimensional mapping surface is a virtual surface parallel to an air outlet panel corresponding to the air conditioning device, and the working region of the air conditioning device has a mapping relationship with the two-dimensional mapping surface; and determine an air conditioning comfort attribute of each target user according to the state information of the target user.
[0055] The specific manner in which the region dividing module divides the working region of the air conditioning device according to the user information of all the target users to obtain at least one divided region comprises:
[0056] dividing the working region according to the corresponding mapping point of each target user and the air conditioning comfort attribute of each target user to obtain at least one divided region.
[0057] As an optional implementation, in the second aspect of the present application, the specific manner in which the region dividing module divides the working region of the air conditioning device according to the corresponding mapping point of each target user and the air conditioning comfort attribute of each target user to obtain at least one divided region comprises:
[0058] when the number of all the target users is equal to 1, determining a first wind control range in the space region with the position of the target user as the center according to the corresponding mapping point of the target user and the air conditioning comfort attribute of the target user, and determining the first wind control range and a remaining region range in the space region except the first wind control range as all the divided regions respectively;
[0059] when the number of all the target users is greater than 1, determining the minimum air outlet width and the maximum air outlet width of the air conditioning device in any direction, and determining the minimum wind control width and the maximum wind control width of the air conditioning device in any direction of the two-dimensional mapping surface according to the minimum air outlet width and the maximum air outlet width of the air conditioning device in any direction.
[0060] According to the mapping points corresponding to each of the target users, the air conditioner comfort attributes of each of the target users, and the minimum wind control width and the maximum wind control width of the air conditioner device in any direction of the two-dimensional mapping surface, all of the target users are divided into at least one user group, wherein for each of the user groups, when the user group includes at least two target users, if the air conditioner comfort attributes of the two target users in the user group do not match, the length of the line connecting the mapping points of the two target users is less than or equal to the minimum wind control width in the direction of the line connecting the mapping points, if the length of the line connecting the mapping points of the two target users in the user group is greater than the minimum wind control width in the direction of the line connecting the mapping points, the air conditioner comfort attributes of the two target users match, and the length of the line connecting the mapping points between any target user in any of the user groups and any target user in any of the other user groups is greater than the maximum wind control width in the direction of the line connecting the mapping points;
[0061] According to the position information of all target users in each of the user groups, a second wind control range corresponding to the user group is determined, and each of the second wind control ranges and a remaining area range in the space region except all of the second wind control ranges are determined as all of the divided regions.
[0062] As an optional implementation, in the second aspect of the present application, the air conditioner comfort attribute of each of the target users includes the air conditioner resource matched by the target user, wherein the air conditioner resource matched by each of the target users includes a first air conditioner resource or a second air conditioner resource, the first air conditioner resource includes a first temperature and / or a first air speed, the second air conditioner resource includes a second temperature and / or a second air speed, the first temperature is less than the second temperature, and the first air speed is greater than the second air speed.
[0063] The determination module is further configured to, before determining the working track corresponding to the air conditioner device according to all of the divided regions, determine a first user quantity of first target users in each of the divided regions for which the matched air conditioner resource is the first air conditioner resource, and a second user quantity of second target users in the divided region for which the matched air conditioner resource is the second air conditioner resource, and determine a priority level corresponding to each of the divided regions according to the first user quantity of the divided region and the second user quantity of the divided region.
[0064] The specific manner in which the determination module determines the working track corresponding to the air conditioner device according to all of the divided regions includes:
[0065] The working track corresponding to the air conditioner device is determined according to the priority level corresponding to each of the divided regions.
[0066] As an optional implementation, in the second aspect of the present application, the determining module is further configured to determine, before determining the working track of the air conditioning device according to the priority level corresponding to each of the divided areas, an air outlet mode corresponding to each of the divided areas according to a first user number of the divided area and a second user number of the divided area; and determine a track point in the divided area according to the air outlet mode corresponding to the divided area.
[0067] The specific manner in which the determining module determines the working track of the air conditioning device according to the priority level corresponding to each of the divided areas includes:
[0068] determining the working track of the air conditioning device according to the priority level corresponding to each of the divided areas and the track point in each of the divided areas;
[0069] The specific manner in which the determining module determines the air outlet mode corresponding to each of the divided areas according to the first user number of the divided area and the second user number of the divided area includes:
[0070] For each of the divided areas, when the first user number and the second user number of the divided area are both 0, or when the second user number of the divided area is 0 and the first user number of the divided area is greater than 0 and less than a first preset number, the air outlet mode corresponding to the divided area is determined to be a single-outlet mode; when the second user number of the divided area is not 0, the air outlet mode corresponding to the divided area is determined to be a first multi-outlet mode, wherein the first multi-outlet mode corresponds to the first air conditioning resource and the second air conditioning resource; when the second user number of the divided area is 0 and the first user number of the divided area is greater than or equal to the first preset number, the air outlet mode corresponding to the divided area is determined to be a second multi-outlet mode, wherein the second multi-outlet mode corresponds to the first air conditioning resource.
[0071] As an optional implementation, in the second aspect of the present application, the specific manner in which the determining module determines the track point in each of the divided areas according to the air outlet mode corresponding to the divided area includes:
[0072] For each of the divided areas, when the first user number and the second user number of the divided area are both 0, the divided area is determined to be a non-priority area, and when the first user number and / or the second user number of the divided area is greater than 0, the divided area is determined to be a priority area.
[0073] determine an air outlet parameter corresponding to each of the division areas according to the air outlet mode corresponding to the division area, wherein the air outlet parameter corresponding to each of the division areas comprises at least one air outlet matched by the division area, and all air outlets matched by each of the priority areas comprise air outlets matched by each target user in the priority area;
[0074] for each of the priority areas, when the air outlet mode corresponding to the priority area is the single-air-outlet mode or the second multi-air-outlet mode, or when the air outlet mode corresponding to the priority area is the first multi-air-outlet mode and the first user quantity of the priority area is greater than 0, determine a mapping point corresponding to each of the target users in the priority area as a trajectory point of the air outlet matched by the target user in the priority area;
[0075] for each of the priority areas, when the air outlet mode corresponding to the priority area is the first multi-air-outlet mode and when the first user quantity of the priority area is 0, determine a mapping point corresponding to each of the target users in the priority area as a trajectory point of the air outlet matched by the target user in the priority area, and determine at least one other mapping point from all mapping points corresponding to the priority area except for the mapping points corresponding to all target users in the priority area as a trajectory point of other air outlets in the priority area except for the air outlets matched by each of the target users in the division area in all air outlets matched by the priority area;
[0076] for each of the non-priority areas, determine at least one mapping point corresponding to the non-priority area as a trajectory point of the air outlet matched by the non-priority area in the non-priority area according to the area of the non-priority area.
[0077] As an optional implementation, in the second aspect of the present application, the specific manner in which the determining module determines the control parameter of the air conditioning device according to the working track and the user information of all target users comprises:
[0078] determine a wind direction parameter corresponding to each of the trajectory points in the determined working track according to a first offset distance and a first offset direction of a tangent horizontal line corresponding to the trajectory point relative to a center horizontal line, and / or a second offset distance and a second offset direction of a tangent vertical line corresponding to the trajectory point relative to a center vertical line, wherein the center horizontal line and the center vertical line are respectively a horizontal line and a vertical line passing through a center point of the two-dimensional mapping surface, and the tangent horizontal line and the tangent vertical line corresponding to each of the trajectory points are respectively a horizontal line and a vertical line passing through the trajectory point;
[0079] determine a distance between each of the target users and the air conditioning device according to the position information of each of the target users and the position information of the air conditioning device;
[0080] determine the comfort perception parameter matched by each of the divided areas according to the distance between each of the target users and the air conditioning device and one or more of the air conditioning comfort attributes of each of the target users;
[0081] determine the control parameter of the air conditioning device according to the comfort perception parameter matched by each of the divided areas and the air direction parameter corresponding to each of the trajectory points corresponding to the divided area.
[0082] As an optional implementation, in the second aspect of the present application, the specific manner in which the determination module determines the control parameter of the air conditioning device according to the comfort perception parameter matched by each of the divided areas and the air direction parameter corresponding to each of the trajectory points corresponding to the divided area includes:
[0083] determine the air duct parameter corresponding to each of the divided areas and the air outlet parameter of each of the air outlets matched by the divided area according to the comfort perception parameter matched by each of the divided areas, the air direction parameter corresponding to each of the trajectory points corresponding to the divided area and all the air outlets matched by the divided area, wherein the air duct parameter corresponding to each of the divided areas includes one or more of all the air duct systems matched by the divided area, the heat exchange parameter corresponding to each of the air duct systems matched by the divided area, and the airflow distribution ratio of each of the air duct systems matched by the divided area to each of the air outlets matched by the divided area;
[0084] generate the control parameter of the air conditioning device according to the air duct parameter corresponding to each of the divided areas and / or the air outlet parameter of each of the air outlets matched by each of the divided areas.
[0085] The third aspect of the present application discloses another device intelligent control apparatus based on area division, and the apparatus includes:
[0086] a memory in which executable program codes are stored;
[0087] a processor coupled to the memory;
[0088] The processor invokes the executable program codes stored in the memory to execute the device intelligent control method based on area division disclosed in the first aspect of the present application.
[0089] The fourth aspect of the present application discloses a computer storage medium, and the computer storage medium stores computer instructions, and the computer instructions are invoked to execute the device intelligent control method based on area division disclosed in the first aspect of the present application.
[0090] Compared with the prior art, the embodiments of the present application have the following beneficial effects:
[0091] In the embodiment of the present application, user information of one or more target users corresponding to the air conditioning equipment is collected, the user information of each target user including location information of the target user; the working area of the air conditioning equipment is divided according to the user information of all target users, at least one divided area is obtained; the working track corresponding to the air conditioning equipment is determined according to all divided areas; the control parameter of the air conditioning equipment is determined according to the working track and the user information of all target users; and the air conditioning equipment is controlled to perform a matching operation based on the control parameter. It can be seen that, by dividing the working area of the air conditioning equipment into multiple divided areas according to the user information of the user, and generating the working track of the air conditioning equipment according to the divided areas, the flexibility and diversity of the control of the air conditioning equipment are improved, and the energy consumption of the air conditioning equipment in the area with few or no users is reduced. In addition, by controlling the air conditioning equipment in combination with the user information and the working track, the adaptation degree of the working mode of the air conditioning equipment to the user demand is improved, the situation that the user experience is low due to the single working mode or blind working mode of the air conditioning equipment is reduced, and it is beneficial to provide more comfortable airflow for the user and meet the diversified needs of the user. BRIEF DESCRIPTION OF DRAWINGS
[0092] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0093] Figure 1 is a flow diagram of a device intelligent control method based on area division disclosed by the embodiment of the present application;
[0094] Figure 2 is a flow diagram of another device intelligent control method based on area division disclosed by the embodiment of the present application;
[0095] Figure 3 is a structural diagram of a device intelligent control apparatus based on area division disclosed by the embodiment of the present application;
[0096] Figure 4 is a structural diagram of another device intelligent control apparatus based on area division disclosed by the embodiment of the present application;
[0097] Figure 5 is a structural diagram of another device intelligent control apparatus based on area division disclosed by the embodiment of the present application;
[0098] Figure 6 is a scene diagram disclosed by the embodiment of the present application;
[0099] Figure 7 is another scenario diagram disclosed by the embodiment of the present application. DETAILED DESCRIPTION
[0100] In order to enable persons skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by persons skilled in the art without creative labor fall within the scope of protection of the present application.
[0101] The terms "first", "second", and the like in the specification and claims of the present application and the above-described drawings are used to distinguish different objects, rather than to describe a specific order. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, device, product, or end including a series of steps or units is not limited to the listed steps or units, but can optionally include steps or units not listed, or can optionally include other steps or units inherent to the process, method, product, or end.
[0102] Reference herein to "an embodiment" means that a particular feature, structure, or characteristic described in connection with the embodiment can be included in at least one embodiment of the present application. The phrase appears at various places in the specification does not necessarily all refer to the same embodiment, nor is it necessarily mutually exclusive of other embodiments. It is explicitly and implicitly understood that the embodiments described herein can be combined with other embodiments.
[0103] The present application discloses a device intelligent control method and device based on regional division, which can divide the working area of an air conditioning device into multiple division areas according to the user information of a user, and then generate a working track of the air conditioning device according to the division areas, thereby improving the flexibility and diversity of air conditioning device control, and reducing the energy consumption of the air conditioning device in a region with few or no users. In addition, the air conditioning device is controlled by combining user information and working track, thereby improving the adaptation degree of the working mode of the air conditioning device to user demand, reducing the situation of low user experience caused by single working mode or blind working mode of the air conditioning device, and providing more comfortable airflow for users to meet their diversified needs. The following will be described in detail.
[0104] Embodiment one
[0105] Please refer to Figure 1 , Figure 1is a flowchart of a device intelligent control method based on region division disclosed by an embodiment of the present application. Wherein, Figure 1 The device intelligent control method based on region division described can be applied to any scene requiring control of air conditioning equipment, such as a home or an office, wherein the method can be applied to air conditioning equipment or a cloud control center controlling the air conditioning equipment, and the present application is not limited to this. For example, Figure 1 As shown, the device intelligent control method based on region division can include the following operations:
[0106] 101. Collect user information of one or more target users corresponding to the air conditioning equipment, wherein the user information of each target user can include location information of the target user.
[0107] In the present application, each target user corresponding to the air conditioning equipment is a user located in the working area of the air conditioning equipment, and the user information of each target user can further include a personnel category of the target user, state information of the target user, etc. The personnel category of each target user can include a gender category and an age category, and the state information of each target user can include a current life state (such as eating, sleeping, and relaxing) of the target user, a current body state parameter of the target user, and preference information (such as preferred temperature) of the target user, and the present application is not limited to this. This can improve the diversity of user information, thereby facilitating the provision of a more comfortable experience for the user.
[0108] In the present application, optionally, the air conditioning equipment or the cloud control center corresponding to the air conditioning equipment can directly collect the user information of each target user through a user terminal (such as a smart phone or a smart bracelet) carried by the target user, or determine the user identity of each target user through the smart terminal carried by the target user, and then match the user identity of the target user with a pre-stored user information library to obtain the user information of the target user. The air conditioning equipment or the cloud control center can also collect relevant parameters (such as body parameters and motion parameters) of each target user through a smart recognition device in the working area of the air conditioning equipment, analyze the relevant parameters of each target user to obtain the user information of the target user, or determine the user identity of the target user by analyzing the relevant parameters of each target user, and then match the user identity of the target user with a pre-stored user information library to obtain the user information of the target user. It can be seen that this can improve the accuracy and diversity of the collected user information.
[0109] 102. Divide the working area of the air conditioning equipment according to the user information of all target users to obtain at least one division region.
[0110] In the embodiment of the present application, all the divided areas can include at least one priority area or at least one non-priority area, and optionally, each divided area has a corresponding priority level, the priority level corresponding to the priority area is higher than the priority level corresponding to the non-priority area, when the number of all the priority areas is greater than or equal to 2, the priority level corresponding to each priority area can be the same priority level or different priority levels, which is not limited in the embodiment of the present application.
[0111] In the embodiment of the present application, the working area can be divided according to one or more sub-information in the user information of all the target users. Specifically, the working area can be divided according to the position information of all the target users, for example, when the position information of all the target users indicates that all the target users are concentrated in the A area in the working area, and no target user is distributed in the B area in the working area, the A area can be determined as a priority area, and the B area can be determined as a non-priority area; for another example, when all the target users are concentrated in the C area and the D area in the working area, and the number of users distributed in the C area is greater than the number of users distributed in the D area, the C area and the D area can be both determined as priority areas, and the priority level corresponding to the C area is higher than the priority level corresponding to the D area. The working area can also be divided according to the state information of all the target users, for example, when the state information of user a indicates that user a is in a working state, and the state information of user b indicates that user b is in a leisure state, the part of the area where user a is located and the part of the area where user b is located can be both determined as priority areas, and the priority level corresponding to the priority area where user a is located is higher than the priority level corresponding to the priority area where user b is located. The working area can also be divided in combination with the position information of all the target users and the state information of all the target users. In this way, the diversity and accuracy of the area division mode can be improved.
[0112] 103. Determine the working track of the air conditioning equipment according to all the divided areas.
[0113] In the embodiment of the present application, optionally, when the priority levels corresponding to all the divided areas are not the same priority level, the working track of the air conditioning equipment can blow from the divided area with high priority level to the divided area with low priority level. Preferably, the blowing frequency of the working track to the divided area with high priority level can be greater than the blowing frequency of the working track to the divided area with low priority level, or the blowing time of the working track to the divided area with high priority level is longer than the blowing time of the working track to the divided area with low priority level, for example, the blowing frequency to the non-priority area can be 0 or the blowing time to the non-priority area can be 0. It can be seen that in this way, the air conditioning service can be preferentially provided to the divided area with high user demand or large number of users, and the use experience of the user can be improved.
[0114] In the embodiment of the present application, the air conditioning equipment can include multiple air outlets, all of which can be distributed on the surface of the air conditioning equipment in an up-down manner, in a left-right manner, or irregularly, which is not limited in the embodiment of the present application. Optionally, when the air conditioning equipment includes multiple air outlets, the corresponding working track of the air conditioning equipment can include the blowing track corresponding to each air outlet to be started, which can be the same or different. When the blowing tracks corresponding to two air outlets to be started are the same, the blowing actions of the two air outlets can be synchronized or unsynchronized. The blowing actions of the two air outlets unsynchronized can include the following two cases: the oscillation speeds of the grilles of the two air outlets are different, or the oscillation speeds of the grilles of the two air outlets are the same but the blowing actions have time delay. Preferably, the blowing tracks corresponding to each air outlet to be started are different. It can be seen that this can improve the diversity of the working mode of the air conditioning equipment.
[0115] 104. Determining the control parameters of the air conditioning equipment based on the working track and the user information of all target users.
[0116] In the embodiment of the present application, the control parameters of the air conditioning equipment can include the working temperature, the working humidity, the size of the air outlet, the oscillation direction and speed of the air outlet grille, the air volume and the air speed of the air outlet, etc.
[0117] 105. Controlling the air conditioning equipment to perform the matching operation based on the control parameters.
[0118] Optionally, the outer layer of the air conditioning equipment comprises a light-transmitting structure corresponding to the air outlet, which can be one or more linear light bars. When the air conditioning equipment performs a matching operation based on the control parameter, i.e., when the air conditioning equipment is in a working state, the current working state of the air conditioning equipment can be displayed through the light effect of the light-transmitting structure, for example, the linear light bar displayed by the light-transmitting structure matches the working track, and for another example, when the working gear of the air conditioning equipment is a strong gear, the linear light bar displayed by the light-transmitting structure is arranged densely, and when the working gear of the air conditioning equipment is a weak gear, the linear light bar displayed by the light-transmitting structure is arranged sparsely. Preferably, when the air conditioning equipment comprises a plurality of air outlets, the outer layer thereof can comprise a light-transmitting structure corresponding to each air outlet, for example, when the grille of the air outlet swings to the left, the light-transmitting structure thereof can display a linear light bar bending to the left, and when the grille of the air outlet swings to the right, the light-transmitting structure thereof can display a linear light bar bending to the right. Further optionally, the light-transmitting structure can display the operation mode of the air conditioning equipment through the color of the linear light bar, for example, warm white can represent that the air conditioning equipment is in a blowing mode, blue can represent that the air conditioning equipment is in a refrigeration mode, and warm yellow can represent that the air conditioning equipment is in a heating mode. It can be seen that in this way, the user can intuitively and accurately know the working state of the air conditioning equipment, so as to adjust the working mode of the air conditioning equipment.
[0119] It can be seen that by implementing the embodiments of the present application, the working area of the air conditioning equipment can be divided into a plurality of division areas according to the user information of the user, and the working track of the air conditioning equipment is generated according to the division areas, thereby improving the flexibility and diversity of the air conditioning equipment control, and being beneficial to reducing the energy consumption of the air conditioning equipment in a region with few or no users. In addition, by controlling the air conditioning equipment in combination with the user information and the working track, the adaptation degree of the working mode of the air conditioning equipment to the user demand is improved, the situation that the user experience is low due to the single working mode or blind working mode of the air conditioning equipment is reduced, and it is beneficial to provide more comfortable airflow for the user and meet the diversified needs of the user.
[0120] The following takes a living room as an example to illustrate the working area of the air conditioning equipment:
[0121] For example, Figure 6As shown, the position information of each person in the living room indicates that the person is located at the dining table in the living room, and the state information of each person indicates that the person is in a dining state. In combination with the position of the air conditioning device in the living room, the living room can be divided into a dining area and a leisure area, wherein the current dining area is a priority area, and the leisure area is a non-priority area. Therefore, the air conditioning device can first blow the dining area and then blow the leisure area according to the working track when the air conditioning device is working, or only blow the dining area. Further, since all the persons are in a dining state, the air volume and the air speed of the air conditioning device when blowing the dining area can be less than the air volume and the air speed of the air conditioning device when blowing the leisure area, so as to prevent the food on the dining table from being cooled by the air conditioning device. In addition, when the air conditioning device is in a heating mode, the temperature of the air conditioning device when blowing the dining area can be higher than the temperature of the air conditioning device when blowing the leisure area.
[0122] Embodiment Two
[0123] Please refer to Figure 2 , Figure 2 is a flowchart of a device intelligent control method based on area division disclosed by an embodiment of the present application. Wherein, Figure 2 The device intelligent control method based on area division described above can be applied to any scene in which the air conditioning device needs to be controlled, such as a family or an office. The method can be applied to the air conditioning device or a cloud control center that controls the air conditioning device, and the present application does not limit the embodiments. For example Figure 2 As shown, the device intelligent control method based on area division can include the following operations:
[0124] 201. Collect user information of one or more target users corresponding to the air conditioning device. The user information of each target user includes position information of the target user and state information of the target user.
[0125] 202. Determine a mapping point corresponding to the target user on a two-dimensional mapping surface of the air conditioning device according to the position information of each target user.
[0126] In the embodiment of the present application, the two-dimensional mapping surface is a virtual surface parallel to the air outlet panel corresponding to the air conditioning device, and the working area of the air conditioning device has a mapping relationship with the two-dimensional mapping surface. The two-dimensional mapping surface can be a two-dimensional mapping plane or a two-dimensional mapping curved surface, and the present application does not limit the embodiments. When the air conditioning device has multiple corresponding air outlet panels, each air outlet panel to be worked or in a working state corresponds to a two-dimensional mapping surface parallel to it. When the air outlet panel of the air conditioning device is in a motion state, such as rotation, movement, etc., the two-dimensional mapping surface also moves. It can be seen that this can improve the flexibility of the air conditioning device working.
[0127] For example Figure 7As shown, since the working area of the air conditioning device has a mapping relationship with the two-dimensional mapping surface, each spatial point in the working area has a corresponding mapping point in the two-dimensional mapping surface, and since the working area of the air conditioning device is a three-dimensional space region and the two-dimensional mapping surface is a two-dimensional space region, each mapping point in the two-dimensional mapping surface can correspond to multiple spatial points of the working area, for example, as shown in the working area, the mapping point corresponding to point A in the two-dimensional mapping surface is point B, and any point between the straight line connecting point A and point B is the mapping point of point B in the two-dimensional mapping surface. Figure 7
[0128] In the embodiment of the present application, since each target user occupies a certain space volume in the working area, the mapping point of one or more parts of the body of each target user on the two-dimensional mapping surface can be determined as the corresponding mapping point of the target user, for example, one or more of the center of gravity of each target user, the center of the chest of the target user, the center of the head of the target user, etc. The corresponding mapping point on the two-dimensional mapping surface can be determined as the corresponding mapping point of the target user.
[0129] 203. Determine the air conditioning comfort attribute of each target user according to the state information of each target user.
[0130] In the embodiment of the present application, the air conditioning comfort attribute of each target user is used to represent the environmental parameters currently adapted by the target user, such as temperature, humidity, wind speed, etc. Optionally, the air conditioning comfort attribute of each target user includes the air conditioning resource matched by the target user, wherein the air conditioning resource matched by each target user includes a first air conditioning resource or a second air conditioning resource, the first air conditioning resource includes a first temperature and / or a first wind speed, and the second air conditioning resource includes a second temperature and / or a second wind speed, the first temperature is less than the second temperature, and the first wind speed is greater than the second wind speed. For example, when the state information of a certain target user indicates that the target user has just taken a bath or has just finished exercising, it can be determined that the air conditioning resource currently matched by the target user is the second air conditioning resource, thereby reducing the probability of the target user catching a cold due to the blowing of the air conditioning device. It can be seen that this can improve the matching degree of the working state of the air conditioning device and the user demand.
[0131] Optionally, in the embodiment of the present application, the air conditioning equipment can include at least one first air outlet and at least one second air outlet. When all target users are represented by air conditioning comfort attributes, and all target users include first target users with matched air conditioning resources as first air conditioning resources and second target users with matched air conditioning resources as second air conditioning resources, the first air outlet of the air conditioning equipment can correspond to the first air conditioning resources and the second air outlet can correspond to the second air conditioning resources when the air conditioning equipment is in a working state. Further optionally, when the air conditioning equipment is in a cooling mode, the first air conditioning resources can correspond to cold air resources and the second air conditioning resources can correspond to natural air resources, that is, the first air outlet is a cold air outlet and the second air outlet is a natural air outlet. In this way, the user demand of users suitable for blowing cold air and the user demand of users suitable for blowing natural air can be met at the same time.
[0132] 204. Dividing the working area according to the mapping point corresponding to each target user and the air conditioning comfort attribute of each target user to obtain at least one divided area.
[0133] As an optional implementation, dividing the working area according to the mapping point corresponding to each target user and the air conditioning comfort attribute of each target user to obtain at least one divided area can include:
[0134] When the number of all target users is equal to 1, a first wind control range centered on the position of the target user in the space area is determined according to the mapping point corresponding to the target user and the air conditioning comfort attribute of the target user, and the first wind control range and the remaining area range in the space area except the first wind control range are determined as all divided areas respectively.
[0135] When the number of all target users is greater than 1, the minimum air outlet width and the maximum air outlet width of the air conditioning equipment in any direction are determined, and the minimum wind control width and the maximum wind control width of the air conditioning equipment in any direction on the two-dimensional mapping surface are determined according to the minimum air outlet width and the maximum air outlet width of the air conditioning equipment in any direction.
[0136] According to the mapping points corresponding to each target user, the air conditioner comfort attributes of each target user, and the minimum wind control width and the maximum wind control width of the air conditioner device in any direction of the two-dimensional mapping surface, all target users are divided into at least one user group, wherein for each user group, when the user group includes at least two target users, if the air conditioner comfort attributes of the two target users in the user group do not match, the length of the line connecting the mapping points of the two target users is less than or equal to the minimum wind control width in the direction of the line connecting the mapping points, and if the length of the line connecting the mapping points of the two target users in the user group is greater than the minimum wind control width in the direction of the line connecting the mapping points, the air conditioner comfort attributes of the two target users match, and the length of the line connecting the mapping points between any target user in any user group and any target user in other user groups is greater than the maximum wind control width in the direction of the line connecting the mapping points;
[0137] According to the position information of all target users in each user group, a second wind control range corresponding to the user group is determined, and each second wind control range and a remaining area range in the space region except all second wind control ranges are determined as all divided areas.
[0138] It can be seen that the optional embodiment divides the areas according to the mapping points and the air conditioner comfort attributes corresponding to each user, improves the accuracy and reliability of area division, determines users with similar distances and matching air conditioner comfort attributes as users in the same divided area, reduces energy consumption caused by frequent switching of the working mode of the air conditioner device, and determines users with unmatched air conditioner comfort attributes as users in different divided areas within the range allowed by the working capacity of the air conditioner device, reduces the situation that other users are uncomfortable when one user is blown by the air conditioner, and in addition, determines users with a long distance as users in different divided areas, reduces energy consumption in the process of blowing from one user to another user with a long distance by the air conditioner device.
[0139] In the optional embodiment, optionally, according to the position information of all target users in each user group, a second wind control range corresponding to the user group is determined, which can include:
[0140] For each user group, when the user group includes at least two target users, according to the position information of each target user in the target user group, a two-dimensional coordinate value of a mapping point corresponding to each target user in the user group on a two-dimensional mapping surface is determined; according to the two-dimensional coordinate values of the mapping points corresponding to all target users in the user group, an average two-dimensional coordinate value corresponding to the user group is calculated; according to the average two-dimensional coordinate value corresponding to the user group, a center mapping point corresponding to the user group on the two-dimensional mapping surface is determined; according to the two-dimensional coordinate values of the mapping points corresponding to each target user in the user group and the average two-dimensional coordinate value corresponding to the user group, a target mapping point corresponding to the user group is determined from the mapping points corresponding to all target users in the user group, which is farthest from the center mapping point corresponding to the user group; a circular region with the center mapping point corresponding to the user group as the center and with the distance between the center mapping point corresponding to the user group and the target mapping point as the radius is determined as a mapping region corresponding to the user group; according to the mapping region corresponding to the user group, a second risk control range corresponding to the user group is determined; when the user group includes one target user, a circular region with the mapping point corresponding to the target user as the center and with a first preset length as the radius is determined as a mapping region corresponding to the user group; according to the mapping region corresponding to the user group, a second risk control range corresponding to the user group is determined; or,
[0141] For each user group, a circular region with the mapping point corresponding to each target user in the user group as the center and with a second preset length as the radius is determined as an individual mapping region corresponding to the target user; according to the individual mapping regions corresponding to each target user in the user group, a covered mapping region corresponding to the user group is determined; according to the covered mapping region corresponding to the user group, a second risk control range corresponding to the user group is determined.
[0142] It can be seen that the optional implementation can also determine the risk control range of the user group according to the coordinates of the mapping points corresponding to each user of the user group, so that the risk control range of the user group covers the positions of each user in the user group, improving the accuracy and reliability of the determined risk control range, thereby facilitating the provision of suitable air conditioning services for all users and improving the user experience.
[0143] 205、According to all divided regions, a working track corresponding to the air conditioning equipment is determined.
[0144] 206、According to the working track and the user information of all target users, a control parameter of the air conditioning equipment is determined.
[0145] 207、Based on the control parameter, the air conditioning equipment is controlled to perform a matching operation.
[0146] In the embodiment of the present application, for other descriptions of steps 201, 205, 206 and 207, please refer to the detailed description of steps 101, 103, 104 and 105 in Embodiment One, and the present embodiment will not be described again.
[0147] It can be seen that the embodiment of the present application can map the three-dimensional working area into a two-dimensional mapping surface parallel to the air outlet panel, and then indirectly divide the working area by using the two-dimensional mapping surface, which simplifies the division method of the working area of the air conditioning equipment, is conducive to adapting to the application scenarios of air conditioning equipment with multiple installation methods or multiple installation positions, improves the efficiency and accuracy of the working area division, and in addition, can determine the air conditioning comfort attribute of the user according to the state information of the user, divide the working area in combination with the air conditioning comfort attribute of the user, improve the adaptation degree of the divided area to the user's demand, and is conducive to providing more comfortable airflow for the user, meeting the diversified needs of the user, and improving the user experience.
[0148] In an optional embodiment, before determining the working track of the air conditioning equipment corresponding to all the divided areas, the method can further include:
[0149] determining the first user quantity of the first target user in each divided area matching the first air conditioning resource and the second user quantity of the second target user in the divided area matching the second air conditioning resource;
[0150] determining the priority level of each divided area according to the first user quantity of the divided area and the second user quantity of the divided area;
[0151] and determining the working track of the air conditioning equipment corresponding to all the divided areas can include:
[0152] determining the working track of the air conditioning equipment corresponding to each divided area according to the priority level of the divided area.
[0153] It can be seen that the optional embodiment can determine the priority level of each divided area according to the user quantity of different types of users in the divided area, so as to determine the working track of the air conditioning equipment according to the priority level of the divided area, so as to be conducive to providing air conditioning service to the divided area with higher user demand or more users in priority, improving the user experience, and reducing the energy consumption of the air conditioning equipment in the area with fewer users or no users.
[0154] In the optional embodiment, as an optional implementation, before determining the working track of the air conditioning equipment corresponding to each divided area according to the priority level of the divided area, the method can further include:
[0155] determine the air outlet mode corresponding to each divided area according to the first user quantity of each divided area and the second user quantity of each divided area;
[0156] determine the track point in each divided area according to the air outlet mode corresponding to each divided area;
[0157] determine the working track of the air conditioning device according to the priority level corresponding to each divided area:
[0158] determine the working track of the air conditioning device according to the priority level corresponding to each divided area and the track point in each divided area.
[0159] It can be seen that the optional implementation can determine the air outlet mode and the track point corresponding to each divided area according to the user quantity of different types of users in the divided area, thereby improving the accuracy and flexibility of the air conditioning device in the running process.
[0160] In the optional implementation, the air outlet mode corresponding to each divided area can be determined according to the first user quantity of each divided area and the second user quantity of each divided area, which can include:
[0161] For each divided area, when the first user quantity and the second user quantity of the divided area are both 0, or when the second user quantity of the divided area is 0 and the first user quantity of the divided area is greater than 0 and less than the first preset quantity, the air outlet mode corresponding to the divided area is determined to be a single air outlet mode; when the second user quantity of the divided area is not 0, the air outlet mode corresponding to the divided area is determined to be a first multi-air outlet mode, wherein the first multi-air outlet mode corresponds to the first air conditioning resource and the second air conditioning resource; when the second user quantity of the divided area is 0 and the first user quantity of the divided area is greater than or equal to the first preset quantity, the air outlet mode corresponding to the divided area is determined to be a second multi-air outlet mode, wherein the second multi-air outlet mode corresponds to the first air conditioning resource.
[0162] It can be seen that the optional implementation can also use the multi-air outlet mode when there are users who are not suitable for cold wind in the divided area, so as to provide comfortable and healthy airflow for the users who are not suitable for cold wind while ensuring the cooling demand, and use the multi-air outlet mode when there are many users in the divided area, so as to meet the user demand of multiple users at the same time, and use the single air outlet mode in the divided area with few users, thereby reducing unnecessary energy consumption of the air conditioning device while ensuring the cooling demand.
[0163] In the optional embodiment, optionally, the second multi-outlet mode can also correspond to only the second air conditioning resource, that is, all the outlets corresponding to the first multi-outlet mode include at least one first outlet corresponding to the first air conditioning resource and at least one second outlet corresponding to the second air conditioning resource, and all the outlets corresponding to the second multi-outlet mode are either the first outlet or the second outlet. Specifically, when the air conditioning device is in the cooling mode, the first outlet can be a cold air outlet blowing cold air, and the second outlet can be a natural air outlet blowing natural air. If the outflow mode corresponding to a division region is the first multi-outlet mode, the cold air outlet and the natural air outlet of the air conditioning device can blow air to the division region. If the outflow mode corresponding to a division region is the second multi-outlet mode and corresponds to the first air conditioning resource, at least two cold air outlets blow air to the division region. Further optionally, the air conditioning resource corresponding to each outlet of the air conditioning device can change with the change of the outflow mode, that is, the outlet type of each outlet is not fixed and unchangeable. For example, a certain outlet can be a first outlet in one division region and a second outlet in another division region. It can be seen that this can improve the flexibility and diversity of the operation of the air conditioning device.
[0164] In the optional embodiment, optionally, determining the trajectory point in each division region according to the outflow mode corresponding to the division region can include:
[0165] For each division region, when the first user number and the second user number of the division region are both 0, the division region is determined as a non-priority region, and when the first user number and / or the second user number of the division region is greater than 0, the division region is determined as a priority region;
[0166] Determining the outflow parameter corresponding to each division region according to the outflow mode corresponding to the division region, wherein the outflow parameter corresponding to each division region includes at least one outlet matched by the division region, and all the outlets matched by each priority region include the outlet matched by each target user in the priority region;
[0167] For each priority region, when the outflow mode corresponding to the priority region is the single-outlet mode or the second multi-outlet mode, or when the outflow mode corresponding to the priority region is the first multi-outlet mode and the first user number of the priority region is greater than 0, the mapping point corresponding to each target user in the priority region is determined as the trajectory point of the outlet matched by the target user in the priority region;
[0168] For each priority area, when the air outlet mode corresponding to the priority area is the first multi-air outlet mode and when the first user quantity of the priority area is 0, the mapping point corresponding to each target user in the priority area is determined as the trajectory point of the air outlet matched by the target user in the priority area, and at least one other mapping point except the mapping points corresponding to all target users of the priority area is determined from all mapping points corresponding to the priority area as the trajectory point of the other air outlet in all air outlets matched by the priority area except the air outlet matched by each target user of the division area in the priority area.
[0169] For each non-priority area, according to the area of the non-priority area, at least one mapping point corresponding to the non-priority area is determined as the trajectory point of the air outlet matched by the non-priority area in the non-priority area.
[0170] It can be seen that by determining the mapping point corresponding to the user as the trajectory point of the air conditioning device, the optional implementation can also preferentially blow air flow to the user, reduce the energy consumption caused by blind air blowing of the air conditioning device, and when none of the users in the division area is suitable for cold air, blow comfortable and healthy air flow to the user, so that the user is not directly blown by the cold air, thereby providing a comfortable experience for the user on the premise of ensuring the refrigeration effect.
[0171] In the optional implementation, further optionally, determining the control parameter of the air conditioning device according to the working trajectory and the user information of all target users can include:
[0172] According to the first offset distance and the first offset direction of the tangent horizontal line corresponding to each trajectory point in the determined working trajectory relative to the center horizontal line, and / or the second offset distance and the second offset direction of the tangent vertical line corresponding to the trajectory point relative to the center vertical line, determining the wind direction parameter corresponding to the trajectory point, wherein the center horizontal line and the center vertical line are respectively a horizontal line and a vertical line passing through the center point of the two-dimensional mapping surface, and the tangent horizontal line and the tangent vertical line corresponding to each trajectory point are respectively a horizontal line and a vertical line passing through the trajectory point;
[0173] According to the position information of each target user and the position information of the air conditioning device, determining the distance between each target user and the air conditioning device;
[0174] According to the distance between each target user and the air conditioning device, and one or more of the air conditioning comfort attributes of each target user, determining the comfort perception parameter matched by the division area;
[0175] According to the comfort perception parameter matched by each division area and the wind direction parameter corresponding to each trajectory point corresponding to the division area, determining the control parameter of the air conditioning device.
[0176] It can be seen that the optional embodiment can also determine the wind direction parameter of each trajectory point by using the two-dimensional mapping surface, thereby improving the accuracy and efficiency of determining the air outlet direction of the air conditioning equipment. In addition, by determining the comfort perception parameter of each division area according to the distance between the user and the air conditioning equipment and the air conditioning comfort attribute of the user, and then determining the control parameter of the air conditioning equipment by combining the wind direction parameter and the comfort perception parameter, the accuracy and reliability of the control parameter of the air conditioning equipment can be improved, thereby improving the matching degree of the working mode of the air conditioning equipment and the position and state of the user, and improving the user experience.
[0177] In the optional embodiment, further optionally, the control parameter of the air conditioning equipment is determined according to the comfort perception parameter matched by each division area and the wind direction parameter corresponding to each trajectory point corresponding to the division area, which can include:
[0178] The air duct parameter corresponding to each division area and the air outlet parameter of each air outlet matched by the division area are determined according to the comfort perception parameter matched by each division area, the wind direction parameter corresponding to each trajectory point corresponding to the division area, and all air outlets matched by the division area, wherein the air duct parameter corresponding to each division area includes one or more of all air duct systems matched by the division area, heat exchange parameters corresponding to each air duct system matched by the division area, and airflow distribution ratios of each air duct system matched by the division area to each air outlet matched by the division area.
[0179] The control parameter of the air conditioning equipment is generated according to the air duct parameter corresponding to each division area and / or the air outlet parameter of each air outlet matched by each division area.
[0180] In the optional embodiment, optionally, the heat exchange parameter corresponding to each air duct system matched by each division area includes a heat exchange mode corresponding to the air duct system, the heat exchange mode corresponding to each air duct system includes a strong heat exchange mode and / or a weak heat exchange mode, and the air outlet parameter of each air outlet matched by each division area includes the swing direction and swing speed of the air outlet grid of the air outlet size when the air outlet blows in the division area. It can be seen that this can improve the flexibility and accuracy of the operation of the air conditioning equipment.
[0181] In the optional embodiment, when the air conditioning equipment is in a working state, the heat exchanger corresponding to the air duct system performs heat exchange processing on the to-be-heated gas to obtain the heated airflow, and the heated airflow is delivered to the air outlet connected to the air duct system according to the determined airflow distribution ratio, and then the heated airflow is delivered to the working area by the air outlet.
[0182] For example, the air outlet matched with the divided area includes a cold air outlet and a natural air outlet, the air duct system matched with the divided area includes a first air duct system and a second air duct system, the first air duct system transports air flow to the cold air outlet and the natural air outlet at a distribution ratio of 100% and 0% respectively, and the second air duct system transports air flow to the cold air outlet and the natural air outlet at a distribution ratio of 50% respectively, the heat exchange mode corresponding to the first air duct system includes a strong heat exchange mode, and the heat exchange mode corresponding to the second air duct system includes a strong heat exchange mode and a weak heat exchange mode, so that when the air conditioner blows air to the divided area, the air conditioner transports all the heat-exchanged air flow generated by the first air duct system to the cold air outlet, and transports half of the heat-exchanged air flow generated by the second air duct system to the cold air outlet and the other half to the natural air outlet.
[0183] It can be seen that the optional embodiment can further determine the air duct parameters and the air outlet parameters required by the air conditioner during operation according to the comfort perception parameters and the wind direction parameters, and further improve the accuracy and reliability of the control parameters of the air conditioner.
[0184] Embodiment three
[0185] Please refer to Figure 3 , Figure 3 is a structural schematic diagram of an equipment intelligent control device based on area division disclosed by the embodiment of the application. Wherein, Figure 3 The equipment intelligent control device based on area division described can be applied to any scene requiring control of the air conditioner, such as a family, an office, wherein the method can be applied to the air conditioner, or can be applied to a cloud control center for controlling the air conditioner, and the embodiment of the application is not limited. As shown in Figure 3 The equipment intelligent control device based on area division can include:
[0186] The acquisition module 301 is configured to acquire user information of one or more target users corresponding to the air conditioner, and the user information of each target user includes location information of the target user.
[0187] The area division module 302 is configured to divide a working area of the air conditioner according to the user information of all target users, and obtain at least one divided area.
[0188] The determination module 303 is configured to determine a working track corresponding to the air conditioner according to all divided areas, and determine control parameters of the air conditioner according to the working track and the user information of all target users.
[0189] The control module 304 is configured to control the air conditioner to perform a matching operation based on the control parameters.
[0190] It can be seen that the embodiment Figure 3The described device divides the working area of the air conditioning equipment into multiple division areas according to the user information of the user, and generates the working track of the air conditioning equipment according to the division area, thereby improving the flexibility and diversity of the air conditioning equipment control, and facilitating the reduction of the energy consumption of the air conditioning equipment in the area with less or no user. In addition, the air conditioning equipment is controlled by combining the user information and the working track, thereby improving the adaptation degree of the working mode of the air conditioning equipment to the user demand, reducing the situation that the user experience is low due to the single working mode or blind working mode of the air conditioning equipment, and facilitating the provision of more comfortable airflow to the user to meet the diversified needs of the user.
[0191] In an optional embodiment, as shown in Figure 4 The user information of each target user further includes state information of the target user;
[0192] The determination module 303 is further configured to, before the area division module 302 divides the working area of the air conditioning equipment according to the user information of all target users to obtain at least one division area, determine a corresponding mapping point of each target user on a two-dimensional mapping surface of the air conditioning equipment according to the position information of the target user, wherein the two-dimensional mapping surface is a virtual surface parallel to an air outlet panel corresponding to the air conditioning equipment, and the working area of the air conditioning equipment has a mapping relationship with the two-dimensional mapping surface; and determine an air conditioning comfort attribute of each target user according to the state information of the target user.
[0193] The specific manner in which the area division module 302 divides the working area of the air conditioning equipment according to the user information of all target users to obtain at least one division area can include:
[0194] According to the corresponding mapping point of each target user and the air conditioning comfort attribute of each target user, the working area is divided to obtain at least one division area.
[0195] It can be seen that the implementation Figure 4 The described device can map the three-dimensional working area to the two-dimensional mapping surface parallel to the air outlet panel, and indirectly divide the working area by using the two-dimensional mapping surface, thereby simplifying the division manner of the working area of the air conditioning equipment, facilitating the adaptation of the application scenarios of the air conditioning equipment with multiple installation modes or multiple installation positions, improving the efficiency and accuracy of the working area division; in addition, the air conditioning comfort attribute of the user can be determined according to the state information of the user, and the working area is divided in combination with the air conditioning comfort attribute of the user, thereby improving the adaptation degree of the division area to the user demand, facilitating the provision of more comfortable airflow to the user to meet the diversified needs of the user, and improving the use experience of the user.
[0196] In another optional embodiment, as shown in Figure 4As shown, the region division module 302 divides the working region according to the mapping points corresponding to each target user and the air conditioner comfort attributes of each target user, and the specific manner of obtaining at least one divided region can include:
[0197] When the number of users of all target users is equal to 1, a first wind control range centered on the position of the target user in the space region is determined according to the mapping point corresponding to the target user and the air conditioner comfort attribute of the target user, and the first wind control range and the remaining region range in the space region except the first wind control range are determined as all divided regions respectively.
[0198] When the number of users of all target users is greater than 1, the minimum air outlet width and the maximum air outlet width of the air conditioning equipment in any direction are determined, and the minimum wind control width and the maximum wind control width of the air conditioning equipment in any direction on the two-dimensional mapping surface are determined according to the minimum air outlet width and the maximum air outlet width of the air conditioning equipment in any direction.
[0199] According to the mapping points corresponding to each target user, the air conditioner comfort attributes of each target user, and the minimum wind control width and the maximum wind control width of the air conditioning equipment in any direction on the two-dimensional mapping surface, all target users are divided into at least one user group, wherein for each user group, when the user group includes at least two target users, if the air conditioner comfort attributes of the two target users in the user group do not match, the length of the line connecting the mapping points of the two target users is less than or equal to the minimum wind control width in the direction of the line, and if the length of the line connecting the mapping points of the two target users in the user group is greater than the minimum wind control width in the direction of the line, the air conditioner comfort attributes of the two target users match, and the length of the line connecting the mapping points between any target user in any user group and any target user in other user group is greater than the maximum wind control width in the direction of the line.
[0200] According to the position information of all target users in each user group, a second wind control range corresponding to the user group is determined, and each second wind control range and the remaining region range in the space region except all second wind control ranges are determined as all divided regions.
[0201] It can be seen that the implementation Figure 4The described apparatus also divides the area according to the mapping points and the air conditioner comfort attributes of each user, improves the accuracy and reliability of the area division, determines the users with similar distances and matching air conditioner comfort attributes as the users in the same division area, reduces the energy consumption caused by frequent switching of the working mode of the air conditioner, and determines the users with unmatched air conditioner comfort attributes as the users in different division areas within the working capacity of the air conditioner, reduces the situation that other users are uncomfortable when one user is blown, and further determines the users with long distances as the users in different division areas, reduces the energy consumption of the air conditioner when blowing from one user to another user with a long distance.
[0202] In yet another optional embodiment, as shown in Figure 4 The air conditioner comfort attribute of each target user includes the air conditioner resource matched by the target user, wherein the air conditioner resource matched by each target user includes a first air conditioner resource or a second air conditioner resource, the first air conditioner resource includes a first temperature and / or a first wind speed, the second air conditioner resource includes a second temperature and / or a second wind speed, the first temperature is less than the second temperature, and the first wind speed is greater than the second wind speed;
[0203] The determining module 303 is further configured to determine, before determining the working track of the air conditioner device corresponding to all division areas, a first user quantity of first target users in each division area whose matched air conditioner resource is the first air conditioner resource and a second user quantity of second target users in the division area whose matched air conditioner resource is the second air conditioner resource, and determine the priority level of each division area according to the first user quantity of the division area and the second user quantity of the division area.
[0204] The specific manner in which the determining module 303 determines the working track of the air conditioner device corresponding to all division areas can include:
[0205] determining the working track of the air conditioner device corresponding to each division area according to the priority level of the division area.
[0206] It can be seen that the implementation Figure 4 The described apparatus can also determine the priority level of each division area according to the user quantity of different types of users in the division area, determine the working track of the air conditioner device according to the priority level of the division area, thereby facilitating the provision of air conditioner services to division areas with high user demand or a large number of users, improving the user experience, and reducing the energy consumption of the air conditioner in areas with few or no users.
[0207] In yet another optional embodiment, as shown in Figure 4As shown, the determining module 303 is further configured to, before determining the working track of the air conditioning device according to the priority level corresponding to each divided area, determine the air outlet mode corresponding to each divided area according to the first user quantity of each divided area and the second user quantity of the divided area; and determine the track point in the divided area according to the air outlet mode corresponding to each divided area.
[0208] The specific manner in which the determining module 303 determines the working track of the air conditioning device according to the priority level corresponding to each divided area can include:
[0209] determining the working track of the air conditioning device according to the priority level corresponding to each divided area and the track point in each divided area;
[0210] The specific manner in which the determining module 303 determines the air outlet mode corresponding to each divided area according to the first user quantity of each divided area and the second user quantity of the divided area can include:
[0211] For each divided area, when the first user quantity and the second user quantity of the divided area are both 0, or when the second user quantity of the divided area is 0 and the first user quantity of the divided area is greater than 0 and less than the first preset quantity, the air outlet mode corresponding to the divided area is determined to be the single air outlet mode; when the second user quantity of the divided area is not 0, the air outlet mode corresponding to the divided area is determined to be the first multi-air outlet mode, wherein the first multi-air outlet mode corresponds to the first air conditioning resource and the second air conditioning resource; when the second user quantity of the divided area is 0 and the first user quantity of the divided area is greater than or equal to the first preset quantity, the air outlet mode corresponding to the divided area is determined to be the second multi-air outlet mode, wherein the second multi-air outlet mode corresponds to the first air conditioning resource.
[0212] It can be seen that the implementation Figure 4 The apparatus described can also determine the air outlet mode and the track point corresponding to each divided area according to the user quantities of different types of users in the divided area, thereby improving the accuracy and flexibility of the air conditioning device in operation, and using the multi-air outlet mode when there are users who are not adapted to cold air in the divided area, so as to provide comfortable and healthy airflow for the users who are not adapted to cold air while ensuring the cooling demand, and using the multi-air outlet mode when there are many users in the divided area, so as to meet the user demands of multiple users at the same time, and using the single air outlet mode in the divided area with few users, thereby reducing unnecessary energy consumption of the air conditioning device while ensuring the cooling demand.
[0213] In yet another optional embodiment, as Figure 4 shown, the specific manner in which the determining module 303 determines the track point in each divided area according to the air outlet mode corresponding to the divided area can include:
[0214] For each division region, when the first user number and the second user number of the division region are both 0, the division region is determined as a non-priority region, and when the first user number and / or the second user number of the division region is greater than 0, the division region is determined as a priority region;
[0215] According to the air outlet mode corresponding to each division region, the air outlet parameter corresponding to the division region is determined, wherein the air outlet parameter corresponding to each division region includes at least one air outlet matched by the division region, and all air outlets matched by each priority region include the air outlet matched by each target user in the priority region;
[0216] For each priority region, when the air outlet mode corresponding to the priority region is the single air outlet mode or the second multiple air outlet mode, or when the air outlet mode corresponding to the priority region is the first multiple air outlet mode and the first user number of the priority region is greater than 0, the mapping point corresponding to each target user in the priority region is determined as the trajectory point of the air outlet matched by the target user in the priority region;
[0217] For each priority region, when the air outlet mode corresponding to the priority region is the first multiple air outlet mode and when the first user number of the priority region is 0, the mapping point corresponding to each target user in the priority region is determined as the trajectory point of the air outlet matched by the target user in the priority region, and at least one other mapping point other than the mapping points corresponding to all target users of the priority region is determined from all mapping points corresponding to the priority region as the trajectory point of the other air outlet other than the air outlet matched by each target user of the division region in all air outlets matched by the priority region in the priority region;
[0218] For each non-priority region, according to the area of the non-priority region, at least one mapping point corresponding to the non-priority region is determined as the trajectory point of the air outlet matched by the non-priority region in the non-priority region.
[0219] It can be seen that the implementation Figure 4 The described device can also prioritize the air flow to the user by determining the mapping point corresponding to the user as the trajectory point of the air conditioning device, reduce the energy consumption due to the blind air blowing of the air conditioning device, and when none of the users in the division region is suitable for cold air, blow the comfortable and healthy air flow to the user, without directly blowing the cold air to the user, thereby providing a comfortable experience for the user under the premise of ensuring the cooling effect.
[0220] In yet another optional embodiment, as Figure 4 shown, the specific manner in which the determining module 303 determines the control parameter of the air conditioning device according to the working trajectory and the user information of all target users can include:
[0221] determine the wind direction parameter corresponding to each trajectory point according to the first offset distance and the first offset direction of the tangent horizontal line corresponding to each trajectory point in the determined working trajectory relative to the center horizontal line, and / or the second offset distance and the second offset direction of the tangent vertical line corresponding to each trajectory point relative to the center vertical line, wherein the center horizontal line and the center vertical line are respectively a horizontal line and a vertical line passing through the center point of the two-dimensional mapping surface, and the tangent horizontal line and the tangent vertical line corresponding to each trajectory point are respectively a horizontal line and a vertical line passing through the trajectory point;
[0222] determine the distance between each target user and the air conditioning equipment according to the position information of each target user and the position information of the air conditioning equipment;
[0223] determine the comfort perception parameter matched by each division area according to one or more of the distance between each target user and the air conditioning equipment and the air conditioning comfort attribute of each target user;
[0224] determine the control parameter of the air conditioning equipment according to the comfort perception parameter matched by each division area and the wind direction parameter corresponding to each trajectory point corresponding to the division area.
[0225] It can be seen that the implementation Figure 4 The described device can also determine the wind direction parameter of each trajectory point using the two-dimensional mapping surface, improving the accuracy and efficiency of determining the air outlet direction of the air outlet of the air conditioning equipment. Furthermore, by determining the comfort perception parameter of each division area according to the distance between the user and the air conditioning equipment and the air conditioning comfort attribute of the user, and then determining the control parameter of the air conditioning equipment in combination with the wind direction parameter and the comfort perception parameter, the accuracy and reliability of the control parameter of the air conditioning equipment can be improved, thereby improving the matching degree of the working mode of the air conditioning equipment with the position and state of the user, and improving the user experience.
[0226] In yet another optional embodiment, as Figure 5 shown, the specific manner in which the determining module 303 determines the control parameter of the air conditioning equipment according to the comfort perception parameter matched by each division area and the wind direction parameter corresponding to each trajectory point corresponding to the division area can include:
[0227] determine the air duct parameter corresponding to each division area and the air outlet parameter of each air outlet matched by the division area according to the comfort perception parameter matched by each division area, the wind direction parameter corresponding to each trajectory point corresponding to the division area, and all air outlets matched by the division area, wherein the air duct parameter corresponding to each division area includes one or more of all air duct systems matched by the division area, the heat exchange parameter corresponding to each air duct system matched by the division area, and the airflow distribution ratio of each air duct system matched by the division area to each air outlet matched by the division area;
[0228] According to the air duct parameter corresponding to each divided region and / or the air outlet parameter of each air outlet matched with each divided region, the control parameter of the air conditioning equipment is generated.
[0229] It can be seen that the implementation Figure 5 The described device can also determine the required air duct parameter and air outlet parameter when the air conditioning equipment is working according to the comfort perception parameter and the wind direction parameter, further improving the accuracy and reliability of the control parameter of the air conditioning equipment.
[0230] Embodiment four
[0231] Please refer to Figure 5 , is another structure diagram of the device intelligent control device based on region division disclosed by the embodiment of the application. As shown, the device intelligent control device based on region division can include:
[0232] The memory 401 stores executable program codes;
[0233] The processor 402 is coupled with the memory 401;
[0234] The processor 402 calls the executable program codes stored in the memory 401 to execute the steps in the device intelligent control method based on region division described in the embodiment one or the embodiment two of the application.
[0235] Embodiment five
[0236] The embodiment of the application discloses a computer storage medium, which stores computer instructions, and the computer instructions are used to execute the steps in the device intelligent control method based on region division described in the embodiment one or the embodiment two of the application when called.
[0237] Embodiment six
[0238] The embodiment of the application discloses a computer program product, which includes a non-transitory computer readable storage medium storing a computer program, and the computer program is operable to make a computer execute the steps in the device intelligent control method based on region division described in the embodiment one or the embodiment two.
[0239] The apparatus embodiments described above are only illustrative, wherein the modules described as separate components can or can not be physically separated, and the components displayed as modules can or can not be physical modules, i.e., can be located in one place or distributed on multiple network modules. Part or all of the modules can be selected to achieve the purposes of the embodiments according to actual needs. Those skilled in the art can understand and implement without creative labor.
[0240] Through the specific description of the above embodiments, those skilled in the art can clearly understand that each embodiment can be realized by means of software and necessary general hardware platform, and of course can also be realized by hardware. Based on such understanding, the above technical solutions can be embodied in the form of software products, and the computer software products can be stored in a computer readable storage medium, including a read-only memory (ROM), a random access memory (RAM), a programmable read-only memory (PROM), an erasable programmable read-only memory (EPROM), a one-time programmable read-only memory (OTPROM), an electrically erasable programmable read-only memory (EEPROM), a compact disc read-only memory (CD-ROM) or other optical disk storage, a magnetic disk storage, a magnetic tape storage, or any other computer readable medium that can be used to carry or store data.
[0241] Finally, it should be noted that: the device intelligent control method and device based on region division disclosed by the embodiments of the present application are only the preferred embodiments of the present application, and are used to illustrate the technical solutions of the present application, but not to limit them; although the present application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that; the technical solutions recorded in the foregoing embodiments can be modified, or some technical features can be replaced by equivalents; and these modifications or replacements do not make the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A method for intelligent control of a device based on region division, characterized in that, The method comprises: collecting user information of one or more target users corresponding to the air conditioning equipment, the user information of each target user comprising location information of the target user, and the user information of each target user further comprising state information of the target user; dividing a working area of the air conditioning equipment according to the user information of all the target users, to obtain at least one divided area; determining a working track of the air conditioning equipment according to all the divided areas, the working track being determined by a priority level corresponding to each divided area and a track point in each divided area; determining a control parameter of the air conditioning equipment according to the working track and the user information of all the target users; controlling the air conditioning equipment to perform a matching operation based on the control parameter; wherein the determining of the control parameter of the air conditioning equipment according to the working track and the user information of all the target users comprises: determining a wind direction parameter corresponding to each track point in the determined working track according to a first offset distance and a first offset direction of a tangent horizontal line corresponding to the track point relative to a center horizontal line, and / or a second offset distance and a second offset direction of a tangent vertical line corresponding to the track point relative to a center vertical line, wherein the center horizontal line and the center vertical line are respectively a horizontal line and a vertical line passing through a center point of a two-dimensional mapping surface, and the tangent horizontal line and the tangent vertical line corresponding to each track point are respectively a horizontal line and a vertical line passing through the track point, wherein the two-dimensional mapping surface is a virtual surface parallel to an air outlet panel corresponding to the air conditioning equipment, the working area of the air conditioning equipment has a mapping relationship with the two-dimensional mapping surface, and the track point is a corresponding mapping point on the two-dimensional mapping surface; determining a distance between each target user and the air conditioning equipment according to the location information of each target user and the location information of the air conditioning equipment; determining a comfort perception parameter matched with each divided area according to the distance between each target user and the air conditioning equipment and one or more of air conditioning comfort attributes of each target user, the air conditioning comfort attributes of each target user being determined according to the state information of each target user; determining the control parameter of the air conditioning equipment according to the comfort perception parameter matched with each divided area and the wind direction parameter corresponding to each track point corresponding to each divided area.
2. The intelligent equipment control method based on region division according to claim 1, characterized in that, Before the dividing of the working area of the air conditioning equipment according to the user information of all the target users to obtain at least one divided area, the method further comprises: determining a mapping point corresponding to each target user on a two-dimensional mapping surface of the air conditioning equipment according to the location information of each target user; determining air conditioning comfort attributes of each target user according to the state information of each target user; wherein the dividing of the working area of the air conditioning equipment according to the user information of all the target users to obtain at least one divided area comprises: Divide the working area according to the mapping points corresponding to each of the target users and the air conditioner comfort attributes of each of the target users to obtain at least one divided area. 3.The device intelligent control method based on region division according to claim 2, characterized in that, The dividing the working area according to the mapping points corresponding to each of the target users and the air conditioner comfort attributes of each of the target users to obtain at least one divided area comprises: When the number of all the target users is equal to 1, a first wind control range is determined in the working area according to the mapping point corresponding to the target user and the air conditioner comfort attribute of the target user, and the first wind control range and a remaining area range in the working area except the first wind control range are determined as the divided areas respectively; When the number of all the target users is greater than 1, the minimum and maximum air outlet widths of the air conditioner device in any direction are determined, and the minimum and maximum wind control widths of the air conditioner device in any direction on the two-dimensional mapping plane are determined according to the minimum and maximum air outlet widths of the air conditioner device in any direction; According to the mapping points corresponding to each of the target users, the air conditioner comfort attributes of each of the target users and the minimum and maximum wind control widths of the air conditioner device in any direction on the two-dimensional mapping plane, all the target users are divided into at least one user group, wherein for each of the user groups, when the user group includes at least two target users, if the air conditioner comfort attributes of the two target users in the user group do not match, the length of the line connecting the mapping points of the two target users is less than or equal to the minimum wind control width in the direction of the line connecting the mapping points, if the length of the line connecting the mapping points of the two target users in the user group is greater than the minimum wind control width in the direction of the line connecting the mapping points, the air conditioner comfort attributes of the two target users match, and the length of the line connecting the mapping points between any target user in any user group and any target user in other user groups is greater than the maximum wind control width in the direction of the line connecting the mapping points; According to the position information of all the target users in each of the user groups, a second wind control range corresponding to the user group is determined, and each of the second wind control ranges and a remaining area range in the working area except all the second wind control ranges are determined as the divided areas. 4.The zone division-based device intelligent control method according to claim 2 or 3, characterized in that, The air conditioner comfort attribute of each of the target users includes the air conditioner resource matched by the target user, wherein the air conditioner resource matched by each of the target users includes a first air conditioner resource or a second air conditioner resource, the first air conditioner resource includes a first temperature and / or a first air speed, the second air conditioner resource includes a second temperature and / or a second air speed, the first temperature is less than the second temperature, and the first air speed is greater than the second air speed; Before the determining the working track corresponding to the air conditioner device according to all the divided areas, the method further comprises: determining a first user quantity of the first target user in each of the division areas matching the first air conditioning resource and a second user quantity of the second target user in the division area matching the second air conditioning resource; determining a priority level corresponding to each of the division areas according to the first user quantity of the division area and the second user quantity of the division area; and the determining the working track corresponding to the air conditioning device according to all the division areas comprises: determining the working track corresponding to the air conditioning device according to the priority level corresponding to each of the division areas. 5.The device intelligent control method based on region division according to claim 4, characterized in that, Before the determining the working track corresponding to the air conditioning device according to the priority level corresponding to each of the division areas, the method further comprises: determining an air outlet mode corresponding to each of the division areas according to the first user quantity of the division area and the second user quantity of the division area; determining a track point in each of the division areas according to the air outlet mode corresponding to the division area; wherein the determining the working track corresponding to the air conditioning device according to the priority level corresponding to each of the division areas comprises: determining the working track corresponding to the air conditioning device according to the priority level corresponding to each of the division areas and the track point in each of the division areas; and the determining the air outlet mode corresponding to each of the division areas according to the first user quantity of the division area and the second user quantity of the division area comprises: for each of the division areas, when the first user quantity and the second user quantity of the division area are both 0, or when the second user quantity of the division area is 0 and the first user quantity of the division area is greater than 0 and less than a first preset quantity, determining that the air outlet mode corresponding to the division area is a single-outlet mode; when the second user quantity of the division area is not 0, determining that the air outlet mode corresponding to the division area is a first multi-outlet mode, wherein the first multi-outlet mode corresponds to the first air conditioning resource and the second air conditioning resource; when the second user quantity of the division area is 0 and the first user quantity of the division area is greater than or equal to the first preset quantity, determining that the air outlet mode corresponding to the division area is a second multi-outlet mode, wherein the second multi-outlet mode corresponds to the first air conditioning resource. 6.The device intelligent control method based on region division according to claim 5, wherein, the determining the track point in each of the division areas according to the air outlet mode corresponding to the division area comprises: for each of the division areas, when the first user quantity and the second user quantity of the division area are both 0, determining that the division area is a non-priority area, and when the first user quantity and / or the second user quantity of the division area is greater than 0, determining that the division area is a priority area; determining an air outlet parameter corresponding to each of the division areas according to the air outlet mode corresponding to the division area, wherein the air outlet parameter corresponding to each of the division areas comprises at least one outlet corresponding to the division area, and all outlets corresponding to each of the priority areas comprise outlets corresponding to each target user in the priority area; For each of the priority areas, when the air outlet mode corresponding to the priority area is the single air outlet mode or the second multiple air outlet mode, or when the air outlet mode corresponding to the priority area is the first multiple air outlet mode and the first user number of the priority area is greater than 0, the mapping point corresponding to each of the target users in the priority area is determined as the trajectory point of the air outlet matched by the target user in the priority area; For each of the priority areas, when the air outlet mode corresponding to the priority area is the first multiple air outlet mode and when the first user number of the priority area is 0, the mapping point corresponding to each of the target users in the priority area is determined as the trajectory point of the air outlet matched by the target user in the priority area, and at least one other mapping point in addition to the mapping points corresponding to all the target users in the priority area is determined from all the mapping points corresponding to the priority area as the trajectory point of the other air outlet in addition to the air outlet matched by each of the target users in the priority area in the priority area; For each of the non-priority areas, according to the area of the non-priority area, at least one mapping point corresponding to the non-priority area is determined as the trajectory point of the air outlet matched by the non-priority area in the non-priority area. 7.The zone division based device intelligent control method according to claim 1, wherein, The control parameter of the air conditioning equipment is determined according to the comfort perception parameter matched by each of the division areas and the wind direction parameter corresponding to each of the trajectory points corresponding to the division area, including: The control parameter of the air conditioning equipment is determined according to the comfort perception parameter matched by each of the division areas, the wind direction parameter corresponding to each of the trajectory points corresponding to the division area, and all the air outlets matched by the division area, wherein the air duct parameter corresponding to each of the division areas includes one or more of all the air duct systems matched by the division area, the heat exchange parameter corresponding to each of the air duct systems matched by the division area, and the air flow distribution ratio of each of the air duct systems matched by the division area to each of the air outlets matched by the division area; The control parameter of the air conditioning equipment is generated according to the air duct parameter corresponding to each of the division areas and / or the air outlet parameter of each of the air outlets matched by each of the division areas.
8. A device intelligent control apparatus based on region division, characterized by, The device is used to execute the method for intelligent control of equipment based on division of areas according to any one of claims 1-7, and the device includes: The acquisition module is configured to acquire user information of one or more target users corresponding to the air conditioning equipment, and the user information of each of the target users includes location information of the target user. The area division module is configured to divide a working area of the air conditioning equipment according to the user information of all the target users to obtain at least one division area. The determination module is configured to determine a working trajectory corresponding to the air conditioning equipment according to all the division areas, and determine a control parameter of the air conditioning equipment according to the working trajectory and the user information of all the target users. The control module is configured to control the air conditioning equipment to perform a matched operation based on the control parameter.
9. A device intelligent control apparatus based on region division, characterized by, The device includes: a memory storing executable program code; a processor coupled with the memory; the processor invokes the executable program code stored in the memory to execute the device intelligent control method based on region division as claimed in any one of claims 1-7.
Citation Information
Patent Citations
Air conditioner control method and device and air conditioner
CN107166657A
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