Air conditioner double air deflector control method, storage medium and electronic device
By determining the distance and temperature difference between the air conditioner and the target object, and matching the angle of the dual air guide vanes using preset control parameters, the problem of poor air delivery effect of the air conditioner was solved, resulting in a more concentrated air volume and a better air delivery experience.
Patent Information
- Application Number
- CN202310633799.7
- 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 existing air conditioner's dual air guide vanes have a single rotation direction control method, resulting in poor air delivery effect, lack of air volume concentration, and weak airflow over long distances.
By determining the distance and temperature difference between the air conditioner and the target object, and using the preset control parameter correspondence, the convergence angle of the dual air guide vanes is matched, and the dual air guide vanes are controlled to operate according to the convergence angle to achieve the convergence of air volume.
This improved the actual air delivery effect and efficiency of the air conditioner, enhancing the user experience.
Smart Images

Figure CN119063179B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of intelligent household appliances, and in particular to a double air deflector control method for an air conditioner, a storage medium and an electronic device. BACKGROUND
[0002] In recent years, with the continuous improvement of people's living standards, air conditioners have become an essential electrical appliance in people's lives. At present, the indoor unit of an air conditioner usually has double air deflectors arranged at the air outlet for controlling the direction of the air outlet. However, the double air deflector control of the existing air conditioner indoor unit can only be synchronized to rotate upward or downward to a predetermined angle for air supply, and the rotation angle is single, the air volume is not concentrated, and the air is relatively dispersed, the long-distance air feeling is weak, and more flexible rotation control cannot be achieved, resulting in poor actual air supply effect. Therefore, how to provide a more convenient and intelligent double air deflector control scheme for an air conditioner has become a difficult problem to be solved. SUMMARY
[0003] The present application provides a double air deflector control method for an air conditioner to solve the defect that the rotation direction control mode of the double air deflector of the air conditioner in the prior art is single, resulting in poor actual air supply effect.
[0004] The present application provides a double air deflector control method for an air conditioner, comprising:
[0005] determining distance information between the air conditioner and a target object;
[0006] determining a first temperature difference value between the ambient temperature of the air conditioner and a preset temperature threshold value and a second temperature difference value between the ambient temperature and the set temperature of the air conditioner;
[0007] matching the distance information, the first temperature difference value, the second temperature difference value and a preset control parameter correspondence relationship to determine the aggregation angle of the double air deflectors in the air conditioner, and operating the double air deflectors according to the aggregation angle;
[0008] The control parameter correspondence relationship is a pre-constructed association relationship between a plurality of distance information, first temperature difference values and second temperature difference values and various aggregation angles.
[0009] Further, the matching of the distance information, the first temperature difference value, the second temperature difference value and the preset control parameter correspondence relationship to determine the aggregation angle of the double air deflectors in the air conditioner specifically comprises:
[0010] indexing the distance information, the first temperature difference value and the second temperature difference value, and performing matching analysis in a relationship database pre-stored with the control parameter correspondence relationship to obtain a target angle associated with the index, and determining the target angle as the aggregation angle.
[0011] Further, the double air deflector includes a first air deflector arranged at the air outlet of the air conditioner, and a second air deflector arranged above the first air deflector and capable of rotating with the first air deflector in a non-coaxial manner.
[0012] The operation of the double air deflector according to the aggregated angle specifically includes:
[0013] The first air deflector is rotated according to a corresponding first aggregated angle, and the second air deflector is rotated according to a corresponding second aggregated angle, so that the air volume at the air outlet is aggregated to reach a preset air volume threshold.
[0014] Further, the determination of the distance information between the air conditioner and the target object specifically includes: obtaining horizontal distance information between the target object and the air conditioner, and vertical height information of a top point of the target object relative to the ground;
[0015] Based on the horizontal distance information and the vertical height information, the distance information between the air conditioner and the target object is determined.
[0016] Further, the determination of the first temperature difference value between the ambient temperature of the air conditioner and a preset temperature threshold value, and the second temperature difference value between the ambient temperature and a set temperature of the air conditioner specifically includes:
[0017] The input temperature threshold value and the set temperature of the air conditioner are obtained;
[0018] The ambient temperature of the air conditioner is obtained based on a preset temperature sensor;
[0019] The ambient temperature of the air conditioner is compared with the temperature threshold value to determine the first temperature difference value, and the ambient temperature of the air conditioner is compared with the set temperature of the air conditioner to determine the second temperature difference value.
[0020] Further, after the operation of the double air deflector according to the aggregated angle, the method further includes:
[0021] The air force of the air outlet of the air conditioner is detected;
[0022] In a case where the current air force of the air outlet is less than a preset air force threshold value, the aggregated angle of the operation of the double air deflector is adjusted to a preset first target angle; or,
[0023] In a case where the current air force of the air outlet is greater than or equal to the air force threshold value, the aggregated angle of the operation of the double air deflector is adjusted to a preset second target angle;
[0024] The aggregation angle is inversely related to the air volume of the air outlet.
[0025] Further, after determining the distance information between the air conditioner and the target object, the method further includes: comparing the distance information with a preset distance threshold, and closing the double air deflector when the distance information is greater than or equal to the distance threshold.
[0026] The application also provides a double air deflector control device of an air conditioner, including:
[0027] A distance information determination unit is configured to determine distance information between the air conditioner and a target object.
[0028] A temperature difference value determination unit is configured to determine a first temperature difference value between an ambient temperature of the air conditioner and a preset temperature threshold and a second temperature difference value between the ambient temperature and a set temperature of the air conditioner.
[0029] A double air deflector control unit is configured to determine an aggregation angle of a double air deflector in the air conditioner based on matching of the distance information, the first temperature difference value, the second temperature difference value, and a preset control parameter corresponding relationship, and to operate the double air deflector according to the aggregation angle, wherein the control parameter corresponding relationship is a pre-constructed association relationship between a plurality of distance information, first temperature difference values, and second temperature difference values and various aggregation angles.
[0030] Further, the double air deflector control unit is specifically configured to:
[0031] Match and analyze the distance information, the first temperature difference value, and the second temperature difference value as indexes in a relationship database in which the control parameter corresponding relationship is pre-stored, to obtain a target angle associated with the indexes, and determine the target angle as the aggregation angle.
[0032] Further, the double air deflector includes a first air deflector arranged at an air outlet of the air conditioner and a second air deflector arranged above the first air deflector and capable of non-coaxial rotation with the first air deflector.
[0033] The double air deflector control unit is specifically configured to:
[0034] The first air deflector is rotated according to a corresponding first aggregation angle, and the second air deflector is rotated according to a corresponding second aggregation angle, so that the air volume aggregation at the air outlet reaches a preset air volume threshold.
[0035] Further, the distance information determination unit is specifically configured to: acquire horizontal distance information between the target object and the air conditioner, and vertical height information of a top of the target object relative to the ground; and determine distance information between the air conditioner and the target object based on the horizontal distance information and the vertical height information.
[0036] Further, the temperature difference value determination unit is specifically configured to:
[0037] acquire an input temperature threshold value and a set temperature of the air conditioner;
[0038] acquire an ambient temperature of the air conditioner based on a preset temperature sensor;
[0039] compare the ambient temperature of the air conditioner with the temperature threshold value to determine a first temperature difference value, and compare the ambient temperature of the air conditioner with the set temperature of the air conditioner to determine a second temperature difference value.
[0040] Further, after the double air deflector is operated according to the aggregated angle, the method further comprises:
[0041] an aggregated angle adjustment unit configured to:
[0042] detect a wind power of an air outlet of the air conditioner;
[0043] in a case where the current wind power of the air outlet is less than a preset wind power threshold value, adjust the aggregated angle of the double air deflector to operate to a preset first target angle; or
[0044] in a case where the current wind power of the air outlet is greater than or equal to the wind power threshold value, adjust the aggregated angle of the double air deflector to operate to a preset second target angle.
[0045] wherein the aggregated angle is in an inverse correlation with the wind power of the air outlet.
[0046] Further, the air conditioner double air deflector control device further comprises a closing control unit configured to, after the distance information between the air conditioner and the target object is determined, compare the distance information with a preset distance threshold value, and close the double air deflector in a case where the distance information is greater than or equal to the distance threshold value.
[0047] The application also provides a computer-readable storage medium comprising a stored program, wherein the program, when executed, implements any of the air conditioner double air deflector control methods described above.
[0048] 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 control method according to any one of the above.
[0049] The air conditioner double guide vane control method provided by the application can effectively improve the actual air supply effect and efficiency of the air conditioner, thereby further improving the user experience. BRIEF DESCRIPTION OF DRAWINGS
[0050] 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.
[0051] 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.
[0052] Figure 1 is a flowchart of the air conditioner double guide vane control method provided by the application;
[0053] Figure 2 is a structural diagram of the double guide vanes in the air conditioner provided by the application;
[0054] Figure 3 is a structural diagram of the air conditioner double guide vane control device provided by the application;
[0055] Figure 4 is a structural diagram of the electronic device provided by the application. DETAILED DESCRIPTION
[0056] In order to enable those skilled in the art to better understand the technical solutions of the present application, the technical solutions in the embodiments of the present application will be described clearly and completely below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only 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 those skilled in the art without any creative effort should fall within the scope of protection of the present application.
[0057] It is to be understood that the terms "first", "second", and the like, used in the description and the appended claims of this application are used for distinguishing between similar elements and not necessarily for describing a particular sequential or chronological order. It is to be understood that the use of data in this application is not to be interpreted as a limitation on the application embodied herewith. It is to be further understood that the embodiments described herein are illustrative only and not restrictive, since other embodiments will occur to those skilled in the art upon reading and understanding this disclosure and are intended to be encompassed within the scope of the appended claims. Moreover, although the application is susceptible to embodiments in which only a single user is involved, embodiments in which more than one user is involved are also intended to fall well within the ambit of the present application. Furthermore, the terms "comprise", "have", and any variations thereof are intended to cover a non-exclusive inclusion, such that processes, methods, articles, or apparatuses that comprise, have, or are otherwise including a list of elements are not necessarily limited to those elements, but can include other elements not expressly listed or inherent to such processes, methods, articles, or apparatuses.
[0058] The following describes embodiments of the air conditioner double air deflector control method described in this application in detail. As shown in FIG. 1, it is a flowchart of the air conditioner double air deflector control method provided by this application, and the specific implementation process includes the following steps: Figure 1
[0059] Step 101: Determine the distance information between the air conditioner and the target object.
[0060] In the embodiments of the present application, the horizontal distance information between the target object and the air conditioner can be obtained through a human body perception module provided in the air conditioner indoor unit. The human body perception module can include but is not limited to a distance measuring sensor (such as an infrared distance sensor), a camera, etc. that can measure the horizontal distance information between the target object. The height information of the target object, i.e. the vertical height information of the top point of the target object relative to the ground, is obtained through a sensor provided in the air conditioner indoor unit that can measure the height information of the target object. The distance information between the air conditioner and the target object is determined by performing geometric operations on the right triangle formed based on the horizontal distance information and the vertical height information.
[0061] Step 102: Determine the first temperature difference value between the ambient temperature of the air conditioner and the preset temperature threshold value, and the second temperature difference value between the ambient temperature and the set temperature of the air conditioner.
[0062] Specifically, first, the input temperature threshold value and the set temperature of the air conditioner need to be obtained, and the current indoor ambient temperature of the air conditioner is obtained based on a preset temperature sensor (i.e. a ring temperature sensor), then the ambient temperature of the air conditioner is compared with the temperature threshold value, the first temperature difference value is determined by difference operation, and the ambient temperature of the air conditioner is compared with the set temperature of the air conditioner, the second temperature difference value is determined by difference operation.
[0063] Step 103: based on the distance information, the first temperature difference value, the second temperature difference value and a preset control parameter corresponding relationship, matching is performed to determine an aggregation angle of the double air deflectors in the air conditioner, and the double air deflectors are operated according to the aggregation angle. The control parameter corresponding relationship is a pre-constructed association relationship between a plurality of distance information, first temperature difference values, second temperature difference values and various aggregation angles. The air conditioner can be a wall-mounted air conditioner indoor unit provided with two air deflectors above and below the air outlet position. The target object can be personnel in the environment corresponding to the air conditioner.
[0064] In the implementation of the present application, the distance information, the first temperature difference value and the second temperature difference value can be used as indexes to perform matching analysis in a relationship database in which the control parameter corresponding relationship is pre-stored, to obtain a target angle associated with the indexes, and the target angle is determined as the aggregation angle.
[0065] Specifically, the double air deflectors include a first air deflector arranged at the air outlet of the air conditioner and a second air deflector arranged above the first air deflector and capable of non-coaxial rotation with the first air deflector. The operation of the double air deflectors according to the aggregation angle can include: rotating the first air deflector (such as the A air deflector in Figure 2 ) around a rotation shaft according to a corresponding first aggregation angle, and rotating the second air deflector (such as the B air deflector in Figure 2 ) around the rotation shaft according to a corresponding second aggregation angle, so that the air volume aggregation at the air outlet reaches a preset air volume threshold. The aggregation angle includes the first air deflector according to the corresponding first aggregation angle and the second air deflector according to the corresponding second aggregation angle. The double air deflectors 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 transmission mechanism or a hinge rod transmission mechanism.
[0066] Further, after the double air deflector is operated according to the aggregated angle, the air volume of the air outlet of the air conditioner can be detected, and in a case where the current air volume of the air outlet is less than a preset air volume threshold, the aggregated angle of the double air deflector is adjusted to a preset first target angle; or in a case where the current air volume of the air outlet is greater than or equal to the air volume threshold, the aggregated angle of the double air deflector is adjusted to a preset second target angle; so as to obtain a more accurate adjustment angle. The aggregated angle is in an inverse correlation with the air volume of the air outlet. The first target angle and the second target angle can be preset according to historical data. In addition, after the distance information between the air conditioner and the target object is determined, the distance information is compared with a preset distance threshold, and in a case where the distance information is greater than or equal to the distance threshold, the double air deflector is closed.
[0067] In addition, it should be noted that before the matching analysis in the relational database in which the control parameter corresponding relationship is stored in advance is performed, the historical data is used to obtain each distance information between the air conditioner and the target object during the operation of the double air deflector, a plurality of first temperature difference values between the ambient temperature of the air conditioner and a preset temperature threshold, a plurality of second temperature difference values between the ambient temperature and the set temperature of the air conditioner, and a plurality of corresponding aggregated angles. The control parameter corresponding relationship between the each distance information, the plurality of first temperature difference values, the plurality of second temperature difference values and the plurality of corresponding aggregated angles is constructed, and the control parameter corresponding relationship is stored in the relational database.
[0068] In the embodiment of the application, during the air conditioning refrigeration operation, the human perception module detects that the distance between the target object and the air conditioner is greater than the distance threshold A, the temperature difference between the indoor ambient temperature and the air conditioner set temperature is greater than the preset first temperature threshold B, and the indoor ambient temperature is greater than the preset second temperature threshold C, the air deflector is controlled to operate to a preset position to perform aggregated air supply. The preset position is an aggregated angle of the double air deflector of the air conditioner, which is determined by matching the distance information, the first temperature difference value, the second temperature difference value and the preset control parameter corresponding relationship. The distance threshold A has a value range of 【0, 10】, and a recommended value of 3, unit m. The first temperature threshold B has a value range of 【0, 10】, and a recommended value of 5, unit ℃. The second temperature threshold C has a value range of 【0, 40】, and a recommended value of 30, unit m.
[0069] The air conditioner double air deflector control method provided in the application can effectively improve the actual air supply effect and efficiency of the air conditioner, thereby further improving the user experience.
[0070] The air conditioner double air deflector control device provided in the application is described below, and the air conditioner double air deflector control device described below can be correspondingly referred to the air conditioner double air deflector control method described above. Refer to Figure 3 As shown in the figure, it is a structural schematic diagram of the air conditioner double air deflector control device provided in the application. The air conditioner double air deflector control device described in the application specifically includes the following parts:
[0071] The distance information determination unit 301 is configured to determine the distance information between the air conditioner and the target object.
[0072] The temperature difference value determination unit 302 is configured to determine the first temperature difference value between the ambient temperature of the air conditioner and the preset temperature threshold value, and the second temperature difference value between the ambient temperature and the set temperature of the air conditioner.
[0073] The double air deflector control unit 303 is configured to match the distance information, the first temperature difference value, the second temperature difference value and the preset control parameter corresponding relationship, determine the aggregation angle of the double air deflector in the air conditioner, and run the double air deflector according to the aggregation angle. Wherein, the control parameter corresponding relationship is the association relationship between the plurality of distance information, the first temperature difference value and the second temperature difference value respectively and various aggregation angles which is constructed in advance.
[0074] Further, the double air deflector control unit is specifically configured to:
[0075] Take the distance information, the first temperature difference value and the second temperature difference value as the index, and perform matching analysis in the relationship database in which the control parameter corresponding relationship is stored in advance, to obtain the target angle associated with the index, and determine the target angle as the aggregation angle.
[0076] Further, the double air deflector includes a first air deflector arranged at the air outlet of the air conditioner, and a second air deflector arranged above the first air deflector and capable of non-coaxial rotation with the first air deflector.
[0077] The double air deflector control unit is specifically configured to:
[0078] The first deflector is rotated according to a corresponding first aggregation angle, and the second deflector is rotated according to a corresponding second aggregation angle, so that the air volume of the air outlet is aggregated to reach a preset air volume threshold.
[0079] Further, the distance information determination unit is specifically configured to: acquire horizontal distance information between the target object and the air conditioner, and vertical height information of a top point of the target object relative to the ground; and determine distance information between the air conditioner and the target object based on the horizontal distance information and the vertical height information.
[0080] Further, the temperature difference value determination unit is specifically configured to:
[0081] acquire an input temperature threshold value and a set temperature of the air conditioner;
[0082] acquire an environment temperature of the air conditioner based on a preset temperature sensor;
[0083] compare the environment temperature of the air conditioner with the temperature threshold value to determine a first temperature difference value, and compare the environment temperature of the air conditioner with the set temperature of the air conditioner to determine a second temperature difference value.
[0084] Further, after the double deflectors are operated according to the aggregation angle, the air conditioner double deflector control device further comprises:
[0085] an aggregation angle adjustment unit configured to:
[0086] detect the air force of the air outlet of the air conditioner;
[0087] in a case where the current air force of the air outlet is less than a preset air force threshold value, adjust the aggregation angle of the operation of the double deflectors to a preset first target angle; or,
[0088] in a case where the current air force of the air outlet is greater than or equal to the air force threshold value, adjust the aggregation angle of the operation of the double deflectors to a preset second target angle.
[0089] The aggregation angle and the air force of the air outlet are in an inverse correlation relationship.
[0090] Further, the air conditioner double deflector control device further comprises a closing control unit configured to, after the distance information between the air conditioner and the target object is determined, compare the distance information with a preset distance threshold value, and close the double deflectors in a case where the distance information is greater than or equal to the distance threshold value.
[0091] The dual air guide vane control device for air conditioners provided in this application determines the distance information between the air conditioner and the target object, the first temperature difference between the ambient temperature of the air conditioner and the preset temperature threshold, and the second temperature difference between the ambient temperature and the set temperature of the air conditioner. Based on the correspondence between the distance information, the first temperature difference, the second temperature difference, and the preset control parameters, the device determines the convergence angle of the dual air guide vanes in the air conditioner and operates the dual air guide vanes according to the convergence angle. This effectively improves the actual air delivery effect and efficiency of the air conditioner, thereby further enhancing the user experience.
[0092] Figure 4 An example is a schematic diagram of the physical structure of an electronic device. For example... Figure 4 As shown, the electronic device may include: a processor 401, a communication interface 404, a memory 402, and a communication bus 403. The processor 401, communication interface 404, and memory 402 communicate with each other via the communication bus 403. The processor 401 can call logical instructions in the memory 402 to execute a dual-air guide vane control method for an air conditioner. This method includes: determining distance information between the air conditioner and a target object; determining a first temperature difference between the ambient temperature of the air conditioner and a preset temperature threshold, and a second temperature difference between the ambient temperature and the set temperature of the air conditioner; matching the distance information, the first temperature difference, the second temperature difference, and a preset control parameter correspondence to determine the convergence angle of the dual air guide vanes in the air conditioner, and operating the dual air guide vanes according to the convergence angle; wherein the control parameter correspondence is a pre-constructed association between multiple distance information, the first temperature difference, and the second temperature difference, and various convergence angles.
[0093] Furthermore, the logical instructions in the aforementioned memory 402 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.
[0094] In another aspect, the present application also provides a computer program product, which comprises a computer program stored in a computer readable storage medium, and the computer program is executable by a processor to cause a computer to execute the air conditioner double guide vane control method provided by the above method, which comprises: determining distance information between an air conditioner and a target object; determining a first temperature difference value between an ambient temperature of the air conditioner and a preset temperature threshold value and a second temperature difference value between the ambient temperature and a set temperature of the air conditioner; matching the distance information, the first temperature difference value, the second temperature difference value and a preset control parameter corresponding relationship to determine an aggregation angle of double guide vanes in the air conditioner, and running the double guide vanes according to the aggregation angle; wherein the control parameter corresponding relationship is a pre-constructed association relationship between a plurality of distance information, first temperature difference values and second temperature difference values and various aggregation angles.
[0095] In yet another aspect, the present application also provides a computer readable storage medium, which comprises a stored program, wherein the program is executable to execute the air conditioner double guide vane control method provided by the above method, which comprises: determining distance information between an air conditioner and a target object; determining a first temperature difference value between an ambient temperature of the air conditioner and a preset temperature threshold value and a second temperature difference value between the ambient temperature and a set temperature of the air conditioner; matching the distance information, the first temperature difference value, the second temperature difference value and a preset control parameter corresponding relationship to determine an aggregation angle of double guide vanes in the air conditioner, and running the double guide vanes according to the aggregation angle; wherein the control parameter corresponding relationship is a pre-constructed association relationship between a plurality of distance information, first temperature difference values and second temperature difference values and various aggregation angles.
[0096] The device embodiments described above are only illustrative, wherein the units described as separate components can or can not be physically separated, 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. According to actual needs, part or all of the modules can be selected to achieve the purpose of the present embodiment scheme. Those skilled in the art can understand and implement without creative labor.
[0097] Those skilled in the art can clearly understand the implementation of the various embodiments by means of software and the necessary general hardware platform from the above description of the embodiments, and of course, the embodiments can also be implemented by hardware. Based on such understanding, the above technical solutions, essentially or in other words, the part of the prior art that contributes to the technical solutions can be embodied in the form of a software product. The computer software product can be stored in a computer readable storage medium, such as a ROM / RAM, a magnetic disk, an optical disk, and the like, and includes a number of instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods described in the various embodiments or some parts of the embodiments.
[0098] Finally, it should be noted that: the above examples are only used to illustrate the technical solutions of the present application, and 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. An air conditioner double air deflector control method, characterized by, The method comprises the following steps: determining distance information between the air conditioner and a target object; determining a first temperature difference value between an ambient temperature of the air conditioner and a preset temperature threshold value, and a second temperature difference value between the ambient temperature and a set temperature of the air conditioner; based on the distance information, the first temperature difference value, the second temperature difference value and a preset control parameter correspondence relationship, determining an aggregation angle of double air deflectors in the air conditioner, and running the double air deflectors according to the aggregation angle; wherein the control parameter correspondence relationship is a pre-constructed association relationship between a plurality of distance information, first temperature difference values and second temperature difference values and various aggregation angles; the double air deflectors include a first air deflector arranged at an air outlet of the air conditioner, and a second air deflector arranged above the first air deflector and capable of rotating non-coaxially with the first air deflector; the running of the double air deflectors according to the aggregation angle specifically includes: rotating the first air deflector according to a corresponding first aggregation angle, and rotating the second air deflector according to a corresponding second aggregation angle, so that the air volume aggregation at the air outlet reaches a preset air volume threshold value; after running the double air deflectors according to the aggregation angle, further comprising: detecting the wind power of the air outlet of the air conditioner; in the case that the current wind power of the air outlet is less than a preset wind power threshold value, the aggregation angle of the double air deflectors is adjusted to a preset first target angle; or, in the case that the current wind power of the air outlet is greater than or equal to the wind power threshold value, the aggregation angle of the double air deflectors is adjusted to a preset second target angle; wherein the aggregation angle and the wind power of the air outlet are in an inverse relationship.
2. The air conditioner dual air deflector control method of claim 1, wherein, based on the distance information, the first temperature difference value, the second temperature difference value and a preset control parameter correspondence relationship, determining an aggregation angle of double air deflectors in the air conditioner, specifically includes: using the distance information, the first temperature difference value and the second temperature difference value as indexes, and performing matching analysis in a relationship database in which the control parameter correspondence relationship is pre-stored, to obtain a target angle associated with the indexes, and determining the target angle as the aggregation angle.
3. The air conditioner dual deflector control method of claim 1, wherein, determining distance information between the air conditioner and a target object, specifically includes: obtaining horizontal distance information between the target object and the air conditioner, and vertical height information of a vertex of the target object relative to the ground; based on the horizontal distance information and the vertical height information, determining the distance information between the air conditioner and the target object.
4. The air conditioner dual deflector control method of claim 1, wherein, determining a first temperature difference value between an ambient temperature of the air conditioner and a preset temperature threshold value, and a second temperature difference value between the ambient temperature and a set temperature of the air conditioner, specifically includes: obtaining an input temperature threshold value and a set temperature of the air conditioner; based on a preset temperature sensor, obtaining the ambient temperature of the air conditioner; comparing the ambient temperature of the air conditioner with the temperature threshold value to determine the first temperature difference value, and comparing the ambient temperature of the air conditioner with the set temperature of the air conditioner to determine the second temperature difference value.
5. The air conditioner dual deflector control method of claim 1, wherein, After determining the distance information between the air conditioner and the target object, the method further includes: comparing the distance information with a preset distance threshold, and closing the double air deflector in a case where the distance information is greater than or equal to the distance threshold.
6. An air conditioner double air deflector control device, characterized by, The method comprises: a distance information determination unit configured to determine distance information between an air conditioner and a target object; a temperature difference value determination unit configured to determine a first temperature difference value between an ambient temperature of the air conditioner and a preset temperature threshold and a second temperature difference value between the ambient temperature and a set temperature of the air conditioner; a double air deflector control unit configured to determine an aggregate angle of a double air deflector in the air conditioner based on matching of the distance information, the first temperature difference value, the second temperature difference value and a preset control parameter correspondence relationship, and to operate the double air deflector at the aggregate angle, wherein the control parameter correspondence relationship is a pre-constructed association relationship between a plurality of distance information, first temperature difference values and second temperature difference values and various aggregate angles; the double air deflector comprises a first air deflector arranged at an air outlet of the air conditioner and a second air deflector arranged above the first air deflector and capable of non-coaxial rotation with the first air deflector; the operation of the double air deflector at the aggregate angle specifically comprises: rotating the first air deflector at a corresponding first aggregate angle and rotating the second air deflector at a corresponding second aggregate angle, so that the air outlet aggregate of the air outlet reaches a preset air outlet threshold; after the operation of the double air deflector at the aggregate angle, the method further includes: detecting the wind force of the air outlet of the air conditioner; in a case where the current wind force of the air outlet is less than a preset wind force threshold, adjusting the aggregate angle of the operation of the double air deflector to a preset first target angle; or in a case where the current wind force of the air outlet is greater than or equal to the wind force threshold, adjusting the aggregate angle of the operation of the double air deflector to a preset second target angle; wherein the aggregate angle and the wind force of the air outlet are in an inverse relationship.
7. A computer readable storage medium, characterized in that, The computer-readable storage medium comprises a stored program, wherein the program performs the air conditioner double air deflector control method of any one of claims 1 to 5 when executed. 8.An electronic device comprising a memory and a processor, the electronic device comprising: The memory stores a computer program, and the processor is configured to execute the air conditioner double air deflector control method of any one of claims 1 to 5 through the computer program.
Citation Information
Patent Citations
Wall-mounted air conditioner indoor unit and control method thereof
CN107166532A
Air conditioner control method and device and air conditioner
CN115164360A