Air conditioner double air deflector aggregation air supply control method, storage medium and electronic device
By calculating the relative position information between the target object and the air conditioner, the target convergence angle of the dual air guide vanes is determined and the convergence air supply operation is executed, which solves the problem of single air supply angle control of dual air guide vanes in air conditioners, and improves the air supply control accuracy and user experience.
Patent Information
- Application Number
- CN202310633724.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-05-31
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2043-05-31
AI Technical Summary
The current air conditioner uses a single method to control the air delivery angle of the dual air guide vanes, which cannot achieve effective converged air delivery, resulting in a poor user experience.
By determining the relative position information between the target object and the air conditioner, the target convergence angle of the dual air guides is calculated based on this information, and the dual air guides are moved to the corresponding target angles to perform converged air supply operations, including using an arctangent calculation model to calculate the rotation angle and adjustment angle of the air guides.
This technology enables rapid adjustment of the converged air delivery angle in dual-air guide vane air conditioners, improving control precision and actual air delivery effect, and enhancing user comfort.
Smart Images

Figure CN119063178B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of intelligent household appliances, and in particular to an air conditioner double air deflector aggregation air supply control method, a storage medium and an electronic device. BACKGROUND
[0002] In recent years, with the increasing application of air conditioners with double air deflectors in daily production and life, such air conditioners are provided with double air deflectors at air outlets, and driving mechanisms are used to drive the double air deflectors to extend and rotate, so that the double air deflectors are opened to a certain angle to meet the air supply needs of users. However, the control of the air supply angle of the double air deflectors in the existing air conditioners is usually directly set through a mobile terminal, the control mode is single, effective aggregation air supply cannot be achieved, and the actual use experience of users is poor. Therefore, how to provide a more efficient air conditioner double air deflector aggregation air supply control scheme has become a difficult problem to be solved. SUMMARY
[0003] The present application provides an air conditioner double air deflector aggregation air supply control method to solve the defects of poor control precision and air aggregation effect of the air conditioner double air deflector aggregation air supply control scheme in the prior art.
[0004] The present application provides an air conditioner double air deflector aggregation air supply control method, comprising:
[0005] determining relative position information between a target object and an air conditioner;
[0006] determining a target aggregation angle of double air deflectors in the air conditioner based on the relative position information; wherein the target aggregation angle includes a rotation angle of the double air deflectors relative to a horizontal plane where each rotation axis is located;
[0007] running the double air deflectors to the corresponding target aggregation angles respectively, and triggering a fan of the air conditioner to perform an aggregation air supply operation.
[0008] Further, the determination of the relative position information between the target object and the air conditioner specifically includes: obtaining horizontal distance information between the target object and the air conditioner, vertical distance information of the air conditioner relative to the ground, and height information of the target object;
[0009] determining vertical distance information of the air conditioner relative to the target object based on the vertical distance information of the air conditioner relative to the ground and the height information of the target object;
[0010] determining the relative position information between the target object and the air conditioner based on the horizontal distance information and the vertical distance information of the air conditioner relative to the target object.
[0011] Further, the double air deflector includes a first air deflector and a second air deflector arranged at the air outlet of the air conditioner, and the position of the second air deflector at the air outlet is higher than the position of the first air deflector at the air outlet.
[0012] The target aggregation angle of the double air deflector in the air conditioner is determined based on the relative position information, and specifically includes:
[0013] The relative position information is input into a preset target aggregation angle calculation model to calculate the target aggregation angle, and the first target aggregation angle corresponding to the first air deflector is determined; wherein the target aggregation angle calculation model is a preset arctangent operation model for calculating the angle information between the target object and the air conditioner.
[0014] Based on the first target aggregation angle and a preset angle value, the second target aggregation angle corresponding to the second air deflector is determined; wherein the angle value is an input adjustment angle value for adjusting the rotation angle of the second air deflector to enable the second air deflector and the first target aggregation angle to form an aggregated air supply effect, the adjustment angle value is greater than 0° and less than 90°; the second target aggregation angle is greater than the first target aggregation angle.
[0015] Further, the double air deflector is respectively operated to the corresponding target aggregation angle, specifically including: detecting the working mode of the air conditioner, in the case of the air conditioner running in the cooling mode, based on the cooling mode, the double air deflector is operated to the corresponding first target aggregation angle, in the case of the air conditioner running in the heating mode, based on the heating mode, the double air deflector is operated to the corresponding second target aggregation angle; wherein the air supply direction under the first target aggregation angle is higher than the horizontal direction, and the air supply direction under the second target aggregation angle is lower than the horizontal direction.
[0016] Further, after obtaining the horizontal distance information between the target object and the air conditioner, it further includes: comparing the horizontal distance information with a preset horizontal distance threshold value, in the case that the horizontal distance information is greater than or equal to the horizontal distance threshold value, the fan of the air conditioner is controlled to stop running.
[0017] Further, after triggering the fan of the air conditioner to perform the aggregated air supply operation, it further includes: detecting the current air supply gear corresponding to the fan of the air conditioner, and adjusting the size of the target aggregation angle opened by the double air deflector based on the current air supply gear.
[0018] Further, the size of the target aggregation angle opened by the double air deflector is adjusted based on the current air supply gear, specifically including:
[0019] in a case where the wind force corresponding to the current air supply gear is less than a preset wind force threshold, increasing a target aggregate angle at which the double air deflector is opened; or
[0020] in a case where the wind force corresponding to the current air supply gear is greater than or equal to the wind force threshold, decreasing the target aggregate angle at which the double air deflector is opened.
[0021] The application also provides a double air deflector aggregate air supply control device of an air conditioner, comprising:
[0022] a position determination unit configured to determine relative position information between a target object and the air conditioner;
[0023] a target aggregate angle determination unit configured to determine a target aggregate angle of a double air deflector in the air conditioner based on the relative position information; wherein the target aggregate angle comprises a rotation angle of the double air deflector relative to a horizontal plane in which a respective rotation axis is located;
[0024] an aggregate air supply control unit configured to operate the double air deflector to the respective target aggregate angle and trigger a fan of the air conditioner to perform an aggregate air supply operation.
[0025] Further, the position determination unit is specifically configured to: acquire horizontal distance information between the target object and the air conditioner, vertical distance information of the air conditioner relative to the ground, and height information of the target object; determine vertical distance information of the air conditioner relative to the target object based on the vertical distance information of the air conditioner relative to the ground and the height information of the target object; and determine the relative position information between the target object and the air conditioner based on the horizontal distance information and the vertical distance information of the air conditioner relative to the target object.
[0026] Further, the double air deflector comprises a first air deflector and a second air deflector arranged at an air outlet of the air conditioner, and a position of the second air deflector at the air outlet is higher than a position of the first air deflector at the air outlet;
[0027] The target aggregate angle determination unit is specifically configured to:
[0028] input the relative position information into a preset target aggregate angle calculation model to calculate the target aggregate angle, and determine a first target aggregate angle corresponding to the first air deflector; wherein the target aggregate angle calculation model is an inverse tangent operation model preset for calculating angle information between the target object and the air conditioner;
[0029] determine a second target aggregation angle corresponding to the second deflector based on the first target aggregation angle and a preset angle value; the angle value is an input adjustment angle value used to adjust the rotation angle of the second deflector so that the second deflector and the first target aggregation angle can form an aggregated air supply effect, the adjustment angle value is greater than 0° and less than 90°; the second target aggregation angle is greater than the first target aggregation angle.
[0030] Further, the running of the double deflectors to the corresponding target aggregation angles specifically includes: a target aggregation angle direction adjusting unit configured to detect a working mode of the air conditioner, and run the double deflectors to the corresponding first target aggregation angle based on the cooling mode in the case of running the air conditioner in the cooling mode, and run the double deflectors to the corresponding second target aggregation angle based on the heating mode in the case of running the air conditioner in the heating mode; the air supply direction at the first target aggregation angle is higher than the horizontal direction, and the air supply direction at the second target aggregation angle is lower than the horizontal direction.
[0031] Further, after obtaining the horizontal distance information between the target object and the air conditioner, the method further includes: a stop running control unit configured to compare the horizontal distance information with a preset horizontal distance threshold value, and control the fan of the air conditioner to stop running in the case that the horizontal distance information is greater than or equal to the horizontal distance threshold value.
[0032] Further, after triggering the fan of the air conditioner to perform the aggregated air supply operation, the method further includes: a target aggregation angle size adjusting unit configured to detect a current air supply gear corresponding to the fan of the air conditioner, and adjust the size of the target aggregation angle opened by the double deflectors based on the current air supply gear.
[0033] Further, the adjusting of the size of the target aggregation angle opened by the double deflectors based on the current air supply gear specifically includes:
[0034] in the case that the wind force corresponding to the current air supply gear is less than a preset wind force threshold value, the target aggregation angle opened by the double deflectors is increased; or,
[0035] in the case that the wind force corresponding to the current air supply gear is greater than or equal to the wind force threshold value, the target aggregation angle opened by the double deflectors is decreased.
[0036] The application also provides a computer-readable storage medium, which includes a stored program, wherein the program runs to implement the air conditioner double deflector aggregated air supply control method as described above.
[0037] The application further provides a computer program product comprising a computer program which, when executed by a processor, implements the air conditioner double-guide-vane aggregated air supply control method according to any one of the above.
[0038] The air conditioner double-guide-vane aggregated air supply control method provided by the application can quickly adjust the aggregated air supply angle of the double-guide-vane air conditioner, effectively improves the control precision and actual air supply effect of the double-guide-vane air conditioner aggregated air supply, and thus improves the user's use comfort. BRIEF DESCRIPTION OF DRAWINGS
[0039] The accompanying drawings, which are incorporated herein and constitute part of the specification, illustrate embodiments consistent with the application and, together with the description, serve to explain the principles of the application.
[0040] In order to more clearly illustrate the technical solutions in the embodiments of the application or the prior art, the accompanying drawings needed to be used in the embodiments or prior art description will be briefly introduced as follows. Obviously, for those of ordinary skill in the art, the other drawings can also be obtained based on these drawings without any creative effort.
[0041] Figure 1 Fig. 1 is a flowchart of the air conditioner double-guide-vane aggregated air supply control method provided by the application;
[0042] Figure 2 Fig. 2 is a structural diagram of the double-guide-vane air conditioner provided by the application;
[0043] Figure 3 Fig. 3 is a position diagram of the double-guide-vane air conditioner relative to the target object provided by the application;
[0044] Figure 4 Fig. 4 is a structural diagram of the air conditioner double-guide-vane aggregated air supply control device provided by the application;
[0045] Figure 5 Fig. 5 is a structural diagram of the electronic device provided by the application. DETAILED DESCRIPTION
[0046] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application.
[0047] It should be noted that the terms "first," "second," etc., in the specification and accompanying drawings of this application are used to distinguish similar users and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of this application described herein can be implemented in orders other than those illustrated or described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.
[0048] The following is a detailed description of embodiments of the dual-air guide vane convergent air supply control method for air conditioners described in this application. Figure 1 The diagram shown is a flowchart of the dual-air guide vane convergent air supply control method for air conditioners provided in this application. The specific implementation process includes the following steps:
[0049] Step 101: Determine the relative position information between the target object and the air conditioner.
[0050] Specifically, the air conditioner can be a wall-mounted indoor unit with two air guide plates installed at the air outlet. The target object can refer to a person in the environment corresponding to the air conditioner. The relative position information includes the horizontal and vertical distance information of the target object in the environment relative to the air conditioner.
[0051] In the implementation of the present step, the horizontal distance information between the target object and the air conditioner can be obtained by a human body sensing module provided in the indoor unit of the air conditioner, the vertical distance information of the air conditioner relative to the ground can be obtained by user input information, and the height information of the target object can be obtained by a long-distance height measuring sensor provided in the indoor unit of the air conditioner. The vertical distance information of the air conditioner relative to the ground is subtracted from the height information of the target object to obtain the vertical distance information of the air conditioner relative to the target object, that is, the vertical distance information of the air conditioner relative to the vertex of the target object. Based on the horizontal distance information and the vertical distance information of the air conditioner relative to the target object, the relative position information between the target object and the air conditioner is obtained. The human body sensing module can be a distance sensor. The relative position information includes the distance information of the target object relative to the air conditioner in the horizontal plane direction and the distance information in the vertical plane direction in the environment.
[0052] Further, after obtaining the horizontal distance information between the target object and the air conditioner, the horizontal distance information is compared with a preset horizontal distance threshold value, and in the case that the horizontal distance information is greater than or equal to the horizontal distance threshold value, the fan of the air conditioner is controlled to stop running.
[0053] Step 102: determining a target aggregation angle of a double air deflector in the air conditioner based on the relative position information.
[0054] As shown in Figure 3 The double air deflector includes a first air deflector B and a second air deflector A provided at the air outlet of the air conditioner. The target aggregation angle includes a first target aggregation angle Q2 and a second target aggregation angle Q1. The first target aggregation angle Q2 is the rotation angle of the first air deflector B relative to the horizontal plane X2, and the second target aggregation angle Q1 is the rotation angle of the second air deflector A relative to the horizontal plane X1. The second air deflector is provided above the first air deflector in an embedded manner and can rotate relative to the first air deflector. That is, the first air deflector B can rotate around the rotation shaft O2 to the first target aggregation angle, and the second air deflector A can rotate around the rotation shaft O1 to the second target aggregation angle, so that the first air deflector and the second air deflector cooperate to form an aggregated air supply effect.
[0055] Specifically, the target aggregation angle of the double air deflectors in the air conditioner is determined based on the relative position information, and the corresponding implementation process comprises: inputting the relative position information into a preset target aggregation angle calculation model to calculate the target aggregation angle, and determining the first target aggregation angle corresponding to the first air deflector; wherein the target aggregation angle calculation model is a preset arctangent operation model (i.e. arctangent operation function) for calculating the angle information between the target object and the air conditioner. Based on the first target aggregation angle and a preset angle value, the second target aggregation angle corresponding to the second air deflector is determined; wherein the angle value is an input adjustment angle value for adjusting the rotation angle (i.e. turning angle) of the second air deflector to enable the second air deflector to form an aggregated air supply effect with the first target aggregation angle, and the adjustment angle value is greater than 0° and less than 90°; the second target aggregation angle is greater than the first target aggregation angle. Wherein the double air deflectors are two air deflectors arranged at the air outlet of the air conditioner indoor unit, which can be plate-shaped injection molded parts, and the rotation of the double air deflectors around the rotation shaft is controlled by a gear and rack component transmission mechanism or a hinge rod transmission mechanism. As shown in Figure 3 , the position of the second air deflector at the air outlet is higher than the position of the first air deflector at the air outlet.
[0056] For example: the air conditioner indoor unit contains a human perception module, an air deflector A (i.e. the second air deflector), and an air deflector B (i.e. the first air deflector). As shown in Figure 2 , the air conditioner receives an air deflector aggregation air supply instruction, obtains the horizontal distance a (i.e. horizontal distance information) of the target object (human body) from the air conditioner, the vertical distance b (vertical distance information) of the air conditioner from the ground, the height c (i.e. the height information of the target object) of the human body, and other parameters, calculates the included angle arctan[(b-c) / a] between the air deflector B and the horizontal plane X2 (i.e. the first target aggregation angle Q2 corresponding to the first air deflector), and the included angle arctan[(b-c) / a]+d between the air deflector A and the horizontal plane X1 (i.e. the second target aggregation angle Q1 corresponding to the second air deflector). Control air deflector A and air deflector B to run to the positions of the above-mentioned first target aggregation angle Q1 and second target aggregation angle Q2 respectively. That is, the target aggregation angle includes the first target aggregation angle corresponding to the first air deflector and the second target aggregation angle corresponding to the second air deflector. Wherein: a, c are data obtained by the human perception module, and b is a preset value data input by the user, which can be filled after installation. The units of a, b and c can be m. d is a preset angle value, the value range is (0°-90°), and arctan[(b-c) / a]+d<90. The preferred value of d is 30°.
[0057] Step 103: respectively run the double air scoops to the corresponding target aggregation angles, and trigger the fan of the air conditioner to perform the aggregation air supply operation.
[0058] In the implementation process of the present step, the control instruction sent by the client to the air conditioner can be acquired, and the control instruction includes the air scoop aggregation air supply instruction and the fan control instruction. The air scoop aggregation air supply instruction can include control information for controlling the double air scoops to run to the target aggregation angles, so that the target aggregation angles (i.e., the aggregation positions capable of causing the aggregation of the air outlet effects of the double air scoops) of the double air scoops running can be acquired from the air scoop aggregation air supply instruction. The double air scoops are respectively run to the corresponding target aggregation angles, and the fan of the air conditioner is triggered to perform the aggregation air supply operation.
[0059] Further, in the process of respectively running the double air scoops to the corresponding target aggregation angles, the working mode of the air conditioner running can also be detected. In the case that the air conditioner runs in the cooling mode, the double air scoops are run to the corresponding first target aggregation angles based on the cooling mode. In the case that the air conditioner runs in the heating mode, the double air scoops are run to the corresponding second target aggregation angles based on the heating mode. The air supply direction at the first target aggregation angle is higher than the horizontal direction, and the air supply direction at the second target aggregation angle is lower than the horizontal direction.
[0060] In addition, after triggering the fan of the air conditioner to perform the aggregation air supply operation, the current air supply gear corresponding to the fan of the air conditioner can also be detected, and the size of the target aggregation angle at which the double air scoops are opened is adjusted based on the current air supply gear. The specific implementation process of adjusting the size of the target aggregation angle at which the double air scoops are opened based on the current air supply gear can include: in the case that the wind force corresponding to the current air supply gear is less than a preset wind force threshold, increasing the target aggregation angle at which the double air scoops are opened; or in the case that the wind force corresponding to the current air supply gear is greater than or equal to the wind force threshold, reducing the target aggregation angle at which the double air scoops are opened.
[0061] The air conditioner double air scoop aggregation air supply control method provided in the present application can determine the relative position information between the target object and the air conditioner, determine the target aggregation angles of the double air scoops in the air conditioner based on the relative position information, respectively run the double air scoops to the corresponding target aggregation angles, and trigger the fan of the air conditioner to perform the aggregation air supply operation. The method can quickly adjust the aggregation air supply angles of the double air scoop air conditioner, effectively improve the control precision and actual air supply effect of the double air scoop air conditioner aggregation air supply, and thus improve the user experience.
[0062] The air conditioner double-guide-vane aggregation air supply control device provided in the present application is described below, and the air conditioner double-guide-vane aggregation air supply control device described below can be correspondingly referred to the air conditioner double-guide-vane aggregation air supply control method described above. Reference is made to Figure 4 As shown in FIG. 1, which is a structural schematic diagram of the air conditioner double-guide-vane aggregation air supply control device provided in the present application. The air conditioner double-guide-vane aggregation air supply control device described in the present application specifically includes the following parts:
[0063] The position determination unit 401 is configured to determine relative position information between the target object and the air conditioner;
[0064] The target aggregation angle determination unit 402 is configured to determine a target aggregation angle of double guide vanes in the air conditioner based on the relative position information; wherein the target aggregation angle includes a rotation angle of the double guide vanes relative to a horizontal plane where each rotation axis is located;
[0065] The aggregation air supply control unit 403 is configured to operate the double guide vanes to the corresponding target aggregation angle respectively, and trigger the fan of the air conditioner to perform the aggregation air supply operation.
[0066] Further, the position determination unit is specifically configured to: obtain horizontal distance information between the target object and the air conditioner, vertical distance information of the air conditioner relative to the ground, and height information of the target object; determine vertical distance information of the air conditioner relative to the target object based on the vertical distance information of the air conditioner relative to the ground and the height information of the target object; and determine the relative position information between the target object and the air conditioner based on the horizontal distance information and the vertical distance information of the air conditioner relative to the target object.
[0067] Further, the double guide vanes include a first guide vane and a second guide vane arranged at the air outlet of the air conditioner, and the position of the second guide vane at the air outlet is higher than the position of the first guide vane at the air outlet;
[0068] The target aggregation angle determination unit is specifically configured to:
[0069] input the relative position information into a preset target aggregation angle calculation model to calculate the target aggregation angle, and determine a first target aggregation angle corresponding to the first guide vane; wherein the target aggregation angle calculation model is a preset arctangent operation model for calculating angle information between the target object and the air conditioner;
[0070] determine a second target aggregation angle corresponding to the second deflector based on the first target aggregation angle and a preset angle value; the angle value is an input adjustment angle value used to adjust the rotation angle of the second deflector so that the second deflector and the first target aggregation angle can form an aggregated air supply effect, the adjustment angle value is greater than 0° and less than 90°; the second target aggregation angle is greater than the first target aggregation angle.
[0071] Further, the operation of the double deflectors to the corresponding target aggregation angles specifically includes: a target aggregation angle direction adjustment unit configured to detect a working mode of the air conditioner, and in the case that the air conditioner operates in a cooling mode, operate the double deflectors to the corresponding first target aggregation angle based on the cooling mode, and in the case that the air conditioner operates in a heating mode, operate the double deflectors to the corresponding second target aggregation angle based on the heating mode; the air supply direction at the first target aggregation angle is higher than the horizontal direction, and the air supply direction at the second target aggregation angle is lower than the horizontal direction.
[0072] Further, after obtaining the horizontal distance information between the target object and the air conditioner, the method further includes: a stop operation control unit configured to compare the horizontal distance information with a preset horizontal distance threshold value, and in the case that the horizontal distance information is greater than or equal to the horizontal distance threshold value, control the fan of the air conditioner to stop operation.
[0073] Further, after triggering the fan of the air conditioner to perform the aggregated air supply operation, the method further includes: a target aggregation angle size adjustment unit configured to detect a current air supply gear corresponding to the fan of the air conditioner, and adjust the size of the target aggregation angle opened by the double deflectors based on the current air supply gear.
[0074] Further, the adjustment of the size of the target aggregation angle opened by the double deflectors based on the current air supply gear specifically includes:
[0075] in the case that the wind force corresponding to the current air supply gear is less than a preset wind force threshold value, increase the target aggregation angle opened by the double deflectors; or,
[0076] in the case that the wind force corresponding to the current air supply gear is greater than or equal to the wind force threshold value, then decrease the target aggregation angle opened by the double deflectors.
[0077] The dual-air guide vane air-gathering control device for air conditioners provided in this application determines the relative position information between the target object and the air conditioner, determines the target gathering angle of the dual air guide vanes in the air conditioner based on the relative position information, and moves the dual air guide vanes to the corresponding target gathering angles, triggering the air conditioner's fan to perform the air-gathering operation. It can quickly adjust the air-gathering angle of the dual-air guide vane air conditioner, effectively improving the control accuracy and actual air supply effect of the dual-air guide vane air conditioner's air-gathering, thereby enhancing the user experience.
[0078] Figure 5 An example is a schematic diagram of the physical structure of an electronic device. For example... Figure 5 As shown, the electronic device may include a processor 501, a communication interface 504, a memory 502, and a communication bus 503. The processor 501, communication interface 504, and memory 502 communicate with each other via the communication bus 503. The processor 501 can call logical instructions in the memory 502 to execute a dual-air guide vane convergence airflow control method for an air conditioner. This method includes: determining the relative position information between a target object and the air conditioner; determining a target convergence angle for the dual air guide vanes in the air conditioner based on the relative position information; wherein the target convergence angle includes the rotation angle of each of the dual air guide vanes relative to the horizontal plane where their respective axes of rotation are located; moving the dual air guide vanes to their respective target convergence angles and triggering the air conditioner's fan to perform convergence airflow operation.
[0079] Furthermore, the logical instructions in the aforementioned memory 502 can be implemented as software functional units and, when sold or used as independent products, can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of this application, in essence, or the part that contributes to the prior art, or a part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of this application. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.
[0080] In another aspect, the present application also provides a computer program product, which comprises a computer program, the computer program being stored in a computer readable storage medium, and the computer program being executed by a processor, so that the computer can execute the air conditioner double-guide-vane aggregated air supply control method provided by the above method, the method comprising: determining relative position information between a target object and an air conditioner; determining a target aggregation angle of double-guide-vanes in the air conditioner based on the relative position information; wherein the target aggregation angle comprises a rotation angle of the double-guide-vanes relative to a horizontal plane in which a rotation shaft of each double-guide-vane is located; and operating the double-guide-vanes to the corresponding target aggregation angle respectively, and triggering a fan of the air conditioner to perform an aggregated air supply operation.
[0081] In another aspect, the present application also provides a computer readable storage medium, which comprises a stored program, wherein the program is executed to perform the air conditioner double-guide-vane aggregated air supply control method provided by the above method, the method comprising: determining relative position information between a target object and an air conditioner; determining a target aggregation angle of double-guide-vanes in the air conditioner based on the relative position information; wherein the target aggregation angle comprises a rotation angle of the double-guide-vanes relative to a horizontal plane in which a rotation shaft of each double-guide-vane is located; and operating the double-guide-vanes to the corresponding target aggregation angle respectively, and triggering a fan of the air conditioner to perform an aggregated air supply operation.
[0082] The device embodiments described above are merely illustrative, wherein the units described as separate components can or can not be physically separate, and the components displayed as units can or can not be physical units, i.e., can be located in one place, or can be distributed on multiple network units. Part or all of the modules can be selected to achieve the purpose of the embodiment scheme according to actual needs. Those skilled in the art can understand and implement without creative labor.
[0083] From the above description of the embodiments, those skilled in the art can clearly understand that the embodiments can be realized by means of software plus necessary general hardware platforms, and of course can also be realized by hardware. Based on such understanding, the above technical solutions can be embodied in the form of a software product, which can be stored in a computer readable storage medium, such as a ROM / RAM, a magnetic disk, an optical disk, etc., and includes a plurality of instructions to make a computer device (which can be a personal computer, a server, or a network device, etc.) execute the methods described in each embodiment or some parts of the embodiments.
[0084] Finally, it should be noted that: the above examples are only 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 examples, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing examples, or make equivalent modifications to some of the technical features; and these modifications or corresponding modifications do not make the essence of the corresponding technical solutions deviate from the spirit and scope of the technical solutions of the embodiments of the present application.
Claims
1. A method for controlling air conditioner double air deflector aggregation air supply, characterized in that, The method comprises the following steps: determining relative position information between a target object and an air conditioner; determining a target aggregation angle of double air deflectors in the air conditioner based on the relative position information; wherein the target aggregation angle comprises a rotation angle of the double air deflectors relative to a horizontal plane in which the respective rotation axes are located; operating the double air deflectors to the respective target aggregation angles and triggering a fan of the air conditioner to perform an aggregation air supply operation; the double air deflectors comprise a first air deflector and a second air deflector arranged at an air outlet of the air conditioner, and the position of the second air deflector at the air outlet is higher than the position of the first air deflector at the air outlet; the determination of the target aggregation angle of the double air deflectors in the air conditioner based on the relative position information specifically comprises: inputting the relative position information into a preset target aggregation angle calculation model to calculate the target aggregation angle, to determine a first target aggregation angle corresponding to the first air deflector; wherein the target aggregation angle calculation model is a preset arctangent operation model for calculating angle information between the target object and the air conditioner; determining a second target aggregation angle corresponding to the second air deflector based on the first target aggregation angle and a preset angle value; wherein the angle value is an input adjustment angle value for adjusting the rotation angle of the second air deflector to enable the second air deflector and the first target aggregation angle to form an aggregation air supply effect, the adjustment angle value is greater than 0° and less than 90°, and the second target aggregation angle is greater than the first target aggregation angle.
2. The dual air deflector aggregation air supply control method of claim 1, wherein, The determination of the relative position information between the target object and the air conditioner specifically comprises: obtaining horizontal distance information between the target object and the air conditioner, vertical distance information of the air conditioner relative to the ground, and height information of the target object; determining vertical distance information of the air conditioner relative to the target object based on the vertical distance information of the air conditioner relative to the ground and the height information of the target object; determining the relative position information between the target object and the air conditioner based on the horizontal distance information and the vertical distance information of the air conditioner relative to the target object.
3. The dual air deflector aggregation air delivery control method for an air conditioner of claim 1, wherein, The operation of the double air deflectors to the respective target aggregation angles specifically comprises: detecting the working mode of the air conditioner, and operating the double air deflectors to the respective first target aggregation angles based on the refrigeration mode in the case that the air conditioner operates in the refrigeration mode, and operating the double air deflectors to the respective second target aggregation angles based on the heating mode in the case that the air conditioner operates in the heating mode; wherein the air supply direction under the first target aggregation angle is higher than the horizontal direction, and the air supply direction under the second target aggregation angle is lower than the horizontal direction.
4. The dual damper air deflector aggregation air delivery control method of claim 2, wherein, After obtaining the horizontal distance information between the target object and the air conditioner, the method further comprises: comparing the horizontal distance information with a preset horizontal distance threshold value, and stopping the operation of the fan of the air conditioner in the case that the horizontal distance information is greater than or equal to the horizontal distance threshold value.
5. The dual air deflector aggregation air delivery control method for an air conditioner of claim 1, wherein, After triggering the fan of the air conditioner to perform the aggregated air supply operation, further comprising: detecting a current air supply gear corresponding to the fan of the air conditioner, and adjusting the size of the target aggregated angle at which the double air deflector is opened based on the current air supply gear.
6. The dual damper air guide plate aggregation air supply control method of claim 5, wherein, The adjusting the size of the target aggregated angle at which the double air deflector is opened based on the current air supply gear specifically comprises: In a case where the wind force corresponding to the current air supply gear is less than a preset wind force threshold, the target aggregated angle at which the double air deflector is opened is increased; or In a case where the wind force corresponding to the current air supply gear is greater than or equal to the wind force threshold, the target aggregated angle at which the double air deflector is opened is decreased.
7. An air conditioner double air deflector aggregation air supply control device, characterized by, Comprise: A position determination unit configured to determine relative position information between a target object and an air conditioner; A target aggregated angle determination unit configured to determine a target aggregated angle of a double air deflector in the air conditioner based on the relative position information, wherein the target aggregated angle comprises a rotation angle of the double air deflector relative to a horizontal plane in which a respective rotation shaft is located; An aggregated air supply control unit configured to operate the double air deflector to the corresponding target aggregated angle and trigger a fan of the air conditioner to perform an aggregated air supply operation; The double air deflector comprises a first air deflector and a second air deflector arranged at an air outlet of the air conditioner, and the position of the second air deflector at the air outlet is higher than the position of the first air deflector at the air outlet; The determining the target aggregated angle of the double air deflector in the air conditioner based on the relative position information specifically comprises: inputting the relative position information into a preset target aggregated angle calculation model to calculate the target aggregated angle, to determine a first target aggregated angle corresponding to the first air deflector; wherein the target aggregated angle calculation model is a preset arctangent operation model for calculating angle information between the target object and the air conditioner; determining a second target aggregated angle corresponding to the second air deflector based on the first target aggregated angle and a preset angle value; wherein the angle value is an input adjustment angle value for adjusting the rotation angle of the second air deflector so that the second air deflector and the first target aggregated angle can form an aggregated air supply effect, the adjustment angle value is greater than 0° and less than 90°; and the second target aggregated angle is greater than the first target aggregated angle.
8. A computer readable storage medium, characterized in that, The computer-readable storage medium comprises a stored program, wherein the program executes the air conditioner double air deflector aggregated air supply control method of any one of claims 1 to 6 when running. 9.An electronic device comprising a memory and a processor, the electronic device characterized by, The memory stores a computer program, and the processor is configured to execute the air conditioner double air deflector aggregated air supply control method of any one of claims 1 to 6 by using the computer program.
Citation Information
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