Air conditioner double air deflector anti-interference control method, storage medium and electronic device

By acquiring the target and current position information of the dual air guide vanes of the air conditioner, and using the preset control logic correspondence to determine the anti-interference control strategy, the problem of insufficient flexibility of the anti-interference control scheme for the dual air guide vanes of the air conditioner is solved, and a more efficient air delivery effect and stability are achieved.

CN119063177BActive Publication Date: 2025-12-19QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD +3
View PDF 2 Cites 0 Cited by

Patent Information

Application Number
CN202310632566.5
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

Technical Problem

The existing anti-interference control scheme for dual air guide vanes in air conditioners has low flexibility, resulting in poor air delivery performance.

Method used

By acquiring the target position information and current position information of the dual air guide vanes of the air conditioner, an anti-interference control strategy is determined using a preset control logic correspondence. Based on this strategy, the dual air guide vanes are controlled to operate in priority order to avoid interference during operation.

Benefits of technology

It improves the flexibility and efficiency of anti-interference control of the dual air guide vanes in air conditioners, and enhances the air delivery effect and operational stability.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN119063177B_ABST
    Figure CN119063177B_ABST
Patent Text Reader

Abstract

The application discloses an air conditioner double air deflector anti-interference control method, a storage medium and an electronic device, relates to the technical field of intelligent household appliances, and discloses the air conditioner double air deflector anti-interference control method, which comprises the following steps: obtaining target position information and current position information of double air deflectors of an air conditioner; determining a corresponding anti-interference control strategy based on the target position information and the current position information of the double air deflectors and a preset control logic corresponding relationship; and controlling the double air deflectors of the air conditioner to operate in a corresponding priority order based on the anti-interference control strategy; wherein the control logic corresponding relationship is an association relationship between the current position information, the target position information and the corresponding anti-interference control strategy, which is constructed in advance. The air conditioner double air deflector anti-interference control method provided by the application can effectively improve the flexibility and efficiency of air conditioner double air deflector anti-interference control, avoid interference during operation, and thus improve the stability of air conditioner double air deflector control operation.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of intelligent household appliances, and in particular to a double air deflector anti-interference control method for an air conditioner, a storage medium and an electronic device. BACKGROUND

[0002] In recent years, air conditioners are used more and more widely in people's daily life, and can effectively adjust the indoor temperature. 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, thereby improving the air guiding effect and comfort of the indoor unit of the air conditioner. The double air deflectors are driven by a driving mechanism to extend and rotate, so that the double air deflectors are opened to a certain angle to meet the air supply demand of the user. However, the double air deflector control of the existing air conditioner indoor unit can only be synchronized to run upward or downward to a predetermined angle for air supply to avoid interference during operation, and the air supply direction has high limitations, cannot realize more flexible air supply control, and results in poor actual air supply effect. Therefore, how to provide a more flexible double air deflector anti-interference control scheme for an air conditioner has become a difficult problem to be solved. SUMMARY

[0003] The present application provides a double air deflector anti-interference control method for an air conditioner to solve the defect that the double air deflector anti-interference control scheme in the prior art has high limitations, resulting in poor actual air supply effect.

[0004] The present application provides a double air deflector anti-interference control method for an air conditioner, comprising:

[0005] obtaining target position information and current position information of double air deflectors of the air conditioner running;

[0006] determining a corresponding anti-interference control strategy based on the target position information and the current position information of the double air deflectors running and a preset control logic corresponding relationship, and controlling the double air deflectors of the air conditioner to run in a corresponding priority order based on the anti-interference control strategy;

[0007] The control logic corresponding relationship is a pre-constructed association relationship between the current position information, the target position information and the corresponding anti-interference control strategy.

[0008] Further, the obtaining of the target position information and the current position information of the double air deflectors of the air conditioner running specifically comprises:

[0009] obtaining an air deflector control instruction sent to the air conditioner, obtaining target position information of the double air deflectors running from the air deflector control instruction, and obtaining current position information of the double air deflectors based on a preset angle sensor in the air conditioner.

[0010] Further, after obtaining the target position information and the current position information of the double air deflectors of the air conditioner, the method further comprises:

[0011] comparing the target position information and the current position information of the double air deflectors with the control logic corresponding relationship stored in the relational database, determining whether the running process of the double air deflectors is interfered, and in the case that the running process of the double air deflectors is interfered, obtaining the corresponding anti-interference control strategy through matching analysis.

[0012] Further, the anti-interference control strategy is determined based on the target position information and the current position information of the double air deflectors, and the control logic corresponding relationship, comprising: taking the target position information and the current position information of the double air deflectors as an index, and matching and analyzing in the relational database pre-stored with the control logic corresponding relationship, to obtain the target control strategy associated with the index, and determining the target control strategy as the anti-interference control strategy.

[0013] Further, the double air deflectors comprise a first air deflector and a second air deflector, the position of the first air deflector is higher than that of the second air deflector, and the running track between the lower end point of the first air deflector and the upper end point of the second air deflector has two interference points;

[0014] The double air deflectors of the air conditioner are controlled to run according to the corresponding priority order based on the anti-interference control strategy, specifically comprising:

[0015] When it is determined that the upper end point of the second air deflector at the current position is higher than the lower end point of the first air deflector at the current position, and it is determined that the lower end point of the first air deflector at the target position is higher than the upper end point of the second air deflector at the target position, the lower end point of the first air deflector and the upper end point of the second air deflector are pre-operated to positions below the first interference point respectively; after the lower end point of the first air deflector and the upper end point of the second air deflector are operated to positions below the first interference point respectively, the first air deflector is operated to the corresponding first target position; after the first air deflector is operated to the corresponding first target position, the second air deflector is operated to the corresponding second target position;

[0016] when it is determined that the lower end point of the first deflector at the current position is higher than the upper end point of the second deflector at the current position, and it is determined that the upper end point of the second deflector at the target position is higher than the lower end point of the first deflector at the target position, the lower end point of the first deflector and the upper end point of the second deflector are respectively operated to a position above the second interference point in advance; after the lower end point of the first deflector and the upper end point of the second deflector are respectively operated to a position above the second interference point, the first deflector is operated to the corresponding third target position; after the first deflector is operated to the corresponding third target position, the second deflector is operated to the corresponding fourth target position.

[0017] wherein the interference point is a point where the running track between the lower end point of the first deflector and the upper end point of the second deflector interferes with each other, the interference point includes the first interference point and the second interference point, and the position of the first interference point is lower than that of the second interference point.

[0018] Further, before the target position information and the current position information of the double deflector operation are compared with the control logic corresponding relationship respectively in advance, it further includes:

[0019] obtaining each position information in the double deflector operation and a corresponding each type of anti-interference control strategy preset;

[0020] constructing a control logic corresponding relationship between the each position information and the each type of anti-interference control strategy, and storing the control logic corresponding relationship to the relational database;

[0021] wherein the each type of anti-interference control strategy contains a priority order for controlling the double deflector operation under different position information.

[0022] Further, the target position information for controlling the double deflector operation is obtained from the deflector control instruction, specifically including: obtaining the target rotation angle value of the double deflector relative to the horizontal axis from the deflector control instruction, and determining the target rotation angle value as the target position information.

[0023] The application also provides a double deflector anti-interference control device of an air conditioner, comprising:

[0024] a position information acquisition unit for obtaining target position information and current position information of a double deflector operation of an air conditioner;

[0025] The anti-interference control unit is configured to determine a corresponding anti-interference control strategy based on the target position information and the current position information of the double air deflector and a preset control logic correspondence relationship, and control the double air deflector of the air conditioner to operate in a corresponding priority order based on the anti-interference control strategy. The control logic correspondence relationship is a pre-established association relationship between the current position information, the target position information, and the corresponding anti-interference control strategy.

[0026] Further, the position information acquisition unit is specifically configured to:

[0027] acquire an air deflector control instruction sent to the air conditioner, acquire the target position information for controlling the operation of the double air deflector from the air deflector control instruction, and acquire the current position information of the double air deflector based on a preset angle sensor in the air conditioner.

[0028] Further, after acquiring the target position information and the current position information of the double air deflector of the air conditioner, the method further includes:

[0029] The anti-interference judgment unit is configured to compare the target position information and the current position information of the double air deflector with the control logic correspondence relationship stored in the relationship database, respectively, to determine whether the operation process of the double air deflector has interference. If it is determined that the operation process of the double air deflector has interference, a corresponding anti-interference control strategy is acquired through matching analysis.

[0030] Further, the anti-interference control unit is specifically configured to: take the target position information and the current position information of the double air deflector as an index, perform matching analysis in a relationship database in which the control logic correspondence relationship is pre-stored, to obtain a target control strategy associated with the index, and determine the target control strategy as the anti-interference control strategy.

[0031] Further, the double air deflector includes a first air deflector and a second air deflector, the position of the first air deflector is higher than that of the second air deflector, and there are two interference points between the operation track of the lower end point of the first air deflector and the upper end point of the second air deflector.

[0032] The anti-interference control unit is specifically configured to:

[0033] when it is determined that the upper end point of the second deflector at the current position is higher than the lower end point of the first deflector at the current position, and it is determined that the lower end point of the first deflector at the target position is higher than the upper end point of the second deflector at the target position, the lower end point of the first deflector and the upper end point of the second deflector are respectively operated to positions below the first interference point in advance; after the lower end point of the first deflector and the upper end point of the second deflector are respectively operated to positions below the first interference point, the first deflector is operated to the corresponding first target position; after the first deflector is operated to the corresponding first target position, the second deflector is operated to the corresponding second target position;

[0034] when it is determined that the upper end point of the second deflector at the current position is higher than the lower end point of the first deflector at the current position, and it is determined that the lower end point of the first deflector at the target position is higher than the upper end point of the second deflector at the target position, the lower end point of the first deflector and the upper end point of the second deflector are respectively operated to positions above the second interference point in advance; after the lower end point of the first deflector and the upper end point of the second deflector are respectively operated to positions above the second interference point, the first deflector is operated to the corresponding third target position; after the first deflector is operated to the corresponding third target position, the second deflector is operated to the corresponding fourth target position;

[0035] wherein the interference point is a point where the running track between the lower end point of the first deflector and the upper end point of the second deflector interferes with each other, the interference point includes the first interference point and the second interference point, and the position of the first interference point is lower than that of the second interference point.

[0036] Further, before the target position information and the current position information of the double deflector operation are compared with the control logic correspondence relationship in advance, it further includes:

[0037] The control logic determination unit is configured to obtain each position information in the double deflector operation and a corresponding preset anti-interference control strategy; construct a control logic correspondence relationship between the each position information and the anti-interference control strategy, and store the control logic correspondence relationship in the relationship database; wherein the anti-interference control strategy contains a priority order for controlling the double deflector operation under different position information.

[0038] Further, the target position information for controlling the double deflector operation is obtained from the deflector control instruction, specifically including: obtaining the target rotation angle value of the double deflector relative to the horizontal axis from the deflector control instruction, and determining the target rotation angle value as the target position information.

[0039] The application further provides a computer readable storage medium, which comprises a stored program, wherein the program performs the air conditioner double air deflector anti-interference control method when executed.

[0040] The application further provides a computer program product, which comprises a computer program, wherein the computer program performs the air conditioner double air deflector anti-interference control method when executed by a processor.

[0041] The air conditioner double air deflector anti-interference control method provided by the application can effectively improve the flexibility and efficiency of air conditioner double air deflector anti-interference control, avoid interference during operation, and thus improve the stability of air conditioner double air deflector control operation and the actual air supply effect. BRIEF DESCRIPTION OF DRAWINGS

[0042] The accompanying drawings, which are incorporated herein and constitute a part of the specification, illustrate embodiments consistent with the application and, together with the specification, serve to explain the principles of the application.

[0043] 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, other drawings can also be obtained based on these drawings without any creative effort.

[0044] Figure 1 is a flowchart of the air conditioner double air deflector anti-interference control method provided by the application;

[0045] Figure 2 is a structural schematic diagram of the double air deflector in the air conditioner provided by the application;

[0046] Figure 3 is a structural schematic diagram of the air conditioner double air deflector anti-interference control device provided by the application;

[0047] Figure 4 is a structural schematic diagram of the electronic device provided by the application. DETAILED DESCRIPTION

[0048] In order to make the personnel in the technical field better understand the scheme of the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below in combination with the drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative labor should fall within the scope of protection of the present application.

[0049] It should be noted that the terms "first", "second" and the like in the specification of the present application and the above drawings are used to distinguish similar users, and do not have to be used to describe a specific order or sequence. It should be understood that the data thus used can be interchanged under appropriate circumstances, so that the embodiments of the present application described herein can be implemented in an order other than those illustrated or described herein. In addition, the terms "include" and "have" and any variations thereof are intended to cover non-exclusive inclusion, for example, a process, method, system, product or device including a series of steps or units does not have to be limited to those steps or units clearly listed, but can include other steps or units not clearly listed or inherent to these processes, methods, products or devices.

[0050] The double air deflector anti-interference control method of the air conditioner described in the present application will be described in detail below. As shown in Figure 1 The flowchart of the double air deflector anti-interference control method of the air conditioner provided by the present application is shown in the figure, and the specific implementation process includes the following steps:

[0051] Step 101: Obtain the target position information and the current position information of the double air deflector of the air conditioner.

[0052] In the embodiments of the present application, the double air deflector is two air deflectors arranged at the air outlet of the indoor unit of the air conditioner. The air deflector can be a plate-shaped injection molded part, and the rotation of the air deflector is controlled by a gear and rack component transmission mechanism or a hinge rod transmission mechanism. The target position information includes the target position that the first air deflector needs to reach in control operation and the target position that the second air deflector needs to reach in control operation. The target position can be represented by the target rotation angle value of the first air deflector or the second air deflector relative to the reference axis. That is, the target position information can be the angle that the first air deflector or the second air deflector needs to reach according to the control instruction, that is, the target rotation angle value. The reference axis can be a horizontal axis (such as c) in Figure 2 or a vertical axis with the rotation shaft as the center of the first air deflector or the second air deflector.

[0053] In the implementation of the step, a control instruction sent by a client to the air conditioner can be acquired, and the control instruction includes a damper control instruction. The damper control instruction can include control information for controlling the double damper to run to a target position, and therefore target position information for controlling the double damper to run can be acquired from the damper control instruction. In addition, current position information of the double damper can be acquired based on a preset angle sensor in the air conditioner. The current position information can be an angle at which the first damper or the second damper currently locates, that is, a current rotation angle value.

[0054] In step 102, a corresponding anti-interference control strategy is determined based on the target position information and the current position information of the double damper and a preset control logic correspondence relationship, and the double damper of the air conditioner is controlled to run according to a corresponding priority order based on the anti-interference control strategy. The control logic correspondence relationship is a previously constructed association relationship between the current position information, the target position information, and the corresponding anti-interference control strategy.

[0055] In the embodiment of the application, before the step is performed, the target position information and the current position information of the double damper can be compared with the control logic correspondence relationship stored in a relational database in advance to determine whether interference exists in the running process of the double damper. If it is determined that interference exists in the running process of the double damper, a corresponding anti-interference control strategy is acquired through matching analysis. In addition, before the target position information and the current position information of the double damper are compared with the control logic correspondence relationship in advance, each position information in the running of the double damper and a preset corresponding anti-interference control strategy of each type are acquired, a control logic correspondence relationship between the each position information and the anti-interference control strategy of each type is constructed, and the control logic correspondence relationship is stored in the relational database. The anti-interference control strategy of each type includes a priority order for controlling the double damper to run under different position information. For example, after receiving a damper control instruction, current position information of the double damper is acquired, it is determined whether interference exists in the running of the double damper according to an operation model, if yes, the double damper is controlled to execute an anti-interference control strategy and then run to a target position, and if no, the double damper is controlled to directly run to the target position.

[0056] Specifically, the target position information and the current position information of the double air deflector can be used as indexes to perform matching analysis in a relationship database in which the control logic corresponding relationship is stored in advance, to obtain a target control strategy associated with the indexes, and determine the target control strategy as the anti-interference control strategy, and then control the double air deflector of the air conditioner to operate according to the corresponding priority order based on the anti-interference control strategy. The control logic corresponding relationship is a plurality of associated relationships between the current position information, the target position information, and the corresponding anti-interference control strategy, which are constructed in advance.

[0057] The double air deflector includes a first air deflector and a second air deflector, the position of the first air deflector is higher than that of the second air deflector, and there are two interference points between the running track of the lower end point of the first air deflector and the upper end point of the second air deflector. That is, the corresponding anti-interference control strategy can be determined based on the target position information of the first air deflector, the target position information of the second air deflector, the current position information of the first air deflector, the current position information of the second air deflector, and the preset control logic corresponding relationship. The first air deflector and the second air deflector of the air conditioner are controlled to operate according to the operation order contained in the anti-interference control strategy based on the anti-interference control strategy. The first air deflector is arranged above the second air deflector in an embedded manner and can rotate relative to the second air deflector.

[0058] The anti-interference control strategy is used to control the double air deflectors of the air conditioner to operate in the corresponding priority order. The specific implementation process can include: when it is determined that the upper end point of the second deflector at the current position is higher than the lower end point of the first deflector at the current position, and it is determined that the lower end point of the first deflector at the target position is higher than the upper end point of the second deflector at the target position, the lower end point of the first deflector and the upper end point of the second deflector are pre-operated to positions below the first interference point; after the lower end point of the first deflector and the upper end point of the second deflector are operated to positions below the first interference point, the first deflector is operated to the corresponding first target position; after the first deflector is operated to the corresponding first target position, the second deflector is operated to the corresponding second target position; when it is determined that the lower end point of the first deflector at the current position is higher than the upper end point of the second deflector at the current position, and it is determined that the upper end point of the second deflector at the target position is higher than the lower end point of the first deflector at the target position, the lower end point of the first deflector and the upper end point of the second deflector are pre-operated to positions above the second interference point; after the lower end point of the first deflector and the upper end point of the second deflector are operated to positions above the second interference point, the first deflector is operated to the corresponding third target position; after the first deflector is operated to the corresponding third target position, the second deflector is operated to the corresponding fourth target position. The interference point is a point on the operating track of the lower end point of the first deflector and the upper end point of the second deflector, and the first interference point and the second interference point are included, and the position of the first interference point is lower than that of the second interference point. Figure 2 As shown in FIG. 1, the double air deflectors of the air conditioner indoor unit include an upper air deflector A (i.e., a first deflector) and a lower air deflector B (i.e., a second deflector). The first deflector and the second deflector intersect at a first interference point a and a second interference point b. The current positions of the double air deflectors are obtained. The current position of the first deflector is f1 (i.e., the lower end point of the first deflector at the current position is f1), and the current position of the second deflector is f2 (i.e., the upper end point of the second deflector at the current position is f2). The units of f1 and f2 can be degrees. The target control command includes a target position g1 of the first deflector (i.e., the lower end point of the first deflector at the target position is g1) and a target position g2 of the second deflector (i.e., the upper end point of the second deflector at the target position is g2). The units of g1 and g2 can be degrees. The anti-interference logic strategy for deflector operation includes determining whether the first deflector and the second deflector are interference-free. If yes, the first deflector and the second deflector are controlled to operate simultaneously.

[0059] Correspondingly, the preset control logic correspondence can include the following contents:

[0060] In the case that the current position f1 of the first deflector is less than a, and the target position g1 is less than a, if the current position f2 of the second deflector is less than a, and the target position g2 is less than a; or, the current position f2 is less than a, and the target position g2 is between a-b; or, the current position f2 is less than a, and the target position g2 is greater than b; or, the current position f2 is between a-b, and the target position g2 is less than a; or, the current position f2 is between a-b, and the target position g2 is between a-b; or, the current position f2 is between a-b, and the target position g2 is greater than b; or, the current position f2 is greater than b, and the target position g2 is less than a; or, the current position f2 is greater than b, and the target position g2 is between a-b; or, the current position f2 is greater than b, and the target position g2 is greater than b, the trajectories corresponding to the operation of the first deflector and the second deflector according to the control instruction do not interfere with each other. The interference region between the operation trajectory of the lower end point of the first deflector and the operation trajectory of the upper end point of the second deflector is between a-b.

[0061] In the case that the current position f1 of the first deflector is greater than b, and the target position g1 is greater than b, if the current position f2 of the second deflector is less than a, and the target position g2 is less than a; or, the current position f2 is less than a, and the target position g2 is between a-b; or, the current position f2 is less than a, and the target position g2 is greater than b; or, the current position f2 is between a-b, and the target position g2 is less than a; or, the current position f2 is between a-b, and the target position g2 is between a-b; or, the current position f2 is between a-b, and the target position g2 is greater than b; or, the current position f2 is greater than b, and the target position g2 is less than a; or, the current position f2 is greater than b, and the target position g2 is between a-b; or, the current position f2 is greater than b, and the target position g2 is greater than b, the trajectories corresponding to the operation of the first deflector and the second deflector according to the control instruction do not interfere with each other.

[0062] In the case that the current position f2 of the second deflector is less than a, and the target position g2 is less than a, if the current position f1 of the first deflector is less than a, and the target position g1 is less than a; or, the current position f1 is less than a, and the target position g1 is between a-b; or, the current position f1 is less than a, and the target position g1 is greater than b; or, the current position f1 is between a-b, and the target position g1 is less than a; or, the current position f1 is between a-b, and the target position g1 is between a-b; or, the current position f1 is between a-b, and the target position g1 is greater than b; or, the current position f1 is greater than b, and the target position g1 is less than a; or, the current position f1 is greater than b, and the target position g1 is between a-b; or, the current position f1 is greater than b, and the target position g1 is greater than b, the trajectories corresponding to the operation of the first deflector and the second deflector according to the control instruction do not interfere with each other.

[0063] In the case that the current position f2 > b and the target position g2 > b of the second deflector, if the current position f1 < a and the target position g1 < a of the first deflector, or the current position f1 < a and the target position g1 between a-b of the first deflector, or the current position f1 b of the first deflector, or the current position f1 between a-b and the target position g1 < a of the first deflector, or the current position f1 between a-b and the target position g1 between a-b of the first deflector, or the current position f1 between a-b and the target position g1 > b of the first deflector, or the current position f1 > b and the target position g1 < a of the first deflector, or the current position f1 > b and the target position g1 between a-b of the first deflector, or the current position f1 > b and the target position g1 > b of the first deflector, there is no interference in the trajectory corresponding to the operation of the first deflector and the second deflector according to the control instruction.

[0064] In the case that the current position f1 < a and the target position g1 between a-b of the first deflector, and the current position f2 < a and the target position g2 < a of the second deflector, if the target position g2 is higher than the target position g1, the second deflector is controlled to run to the target position g2 first, and if the target position g1 is higher than the target position g2, the first deflector is controlled to run to the target position g1 first.

[0065] In the case that the current position f1 < a and the target position g1 between a-b of the first deflector, and the current position f2 between a-b and the target position g2 between a-b of the second deflector, if the target position g2 is higher than the target position g1, the first deflector and the second deflector are controlled to run to the target position simultaneously, and if the target position g1 is higher than the target position g2, the second deflector is controlled to run to a position below the interference point a first, and then the first deflector is controlled to run to the target position g1, and then the second deflector is controlled to run to the target position g2.

[0066] In the case that the current position f1 < a and the target position g1 between a-b of the first deflector, and the current position f2 > b and the target position g2 between a-b of the second deflector, if the target position g2 is higher than the target position g1, the first deflector and the second deflector are controlled to run to the target position simultaneously, and if the target position g1 is higher than the target position g2, the second deflector is controlled to run to a position below the interference point a first, and then the first deflector is controlled to run to the target position g1, and then the second deflector is controlled to run to the target position g2.

[0067] In the case that the current position f1 of the first deflector is between a-b (<a, target position g1 <a), the current position f2 of the second deflector is between a-b, and the target position g2 is between a-b, if the current position f2 is higher than the current position f1, it is correspondingly indicated that the first deflector is first operated to the target position g1, and then the second deflector is operated to the target position g2.

[0068] In the case that the current position f1 of the first deflector is between a-b (<a, target position g1 <a), the current position f2 of the second deflector is between a-b, and the target position g2 is between a-b, if the current position f2 is higher than the current position f1, it is correspondingly indicated that the first deflector is first operated to the target position g1, and then the second deflector is operated to the target position g2.

[0069] In the case that the current position f1 of the first deflector is between a-b (<a, target position g1 <a), the current position f2 of the second deflector is between a-b, and the target position g2 is between a-b, if the current position f2 is higher than the current position f1, it is correspondingly indicated that the first deflector is first operated to the target position g1, and then the second deflector is operated to the target position g2.

[0070] In the case that the current position f1 of the first deflector is between a-b (<a, target position g1 <a), the current position f2 of the second deflector is between a-b, and the target position g2 is between a-b, if the current position f2 is higher than the current position f1, it is correspondingly indicated that the first deflector is first operated to the target position g1, and then the second deflector is operated to the target position g2.

[0071] The complete content of the preset control logic corresponding relationship is shown in the following table:

[0072]

[0073] It should be noted that the deflector is a deflector, the deflector A is a first deflector, and the deflector B is a second deflector. "√" indicates that there is no interference.

[0074] The air conditioner double air deflector anti-interference control method provided by the application can effectively improve the flexibility and efficiency of air conditioner double air deflector anti-interference control, avoid interference during operation, and thus improve the stability of air conditioner double air deflector control operation.

[0075] The air conditioner double air deflector anti-interference control device provided by the application is described below, and the air conditioner double air deflector anti-interference control device described below can be mutually corresponding with the air conditioner double air deflector anti-interference control method described above. Reference Figure 3 The air conditioner double air deflector anti-interference control device provided by the application is described below, and the air conditioner double air deflector anti-interference control device described below can be mutually corresponding with the air conditioner double air deflector anti-interference control method described above. Reference

[0076] The position information acquisition unit 301 is configured to acquire target position information and current position information of the double air deflector of the air conditioner.

[0077] The anti-interference control unit 302 is configured to determine a corresponding anti-interference control strategy based on the target position information and the current position information of the double air deflector and a preset control logic corresponding relationship, and control the double air deflector of the air conditioner to operate in a corresponding priority order based on the anti-interference control strategy. The control logic corresponding relationship is a pre-constructed association relationship between the current position information, the target position information and the corresponding anti-interference control strategy.

[0078] Further, the position information acquisition unit is specifically configured to:

[0079] Acquire the air deflector control instruction sent to the air conditioner, acquire the target position information of the double air deflector from the air deflector control instruction, and acquire the current position information of the double air deflector based on the preset angle sensor in the air conditioner.

[0080] Further, after acquiring the target position information and the current position information of the double air deflector of the air conditioner, the method further includes:

[0081] The anti-interference judgment unit is configured to compare the target position information and the current position information of the double air deflector with the control logic corresponding relationship stored in the relationship database, judge whether there is interference in the operation process of the double air deflector, and acquire the corresponding anti-interference control strategy through matching analysis in the case that it is determined that there is interference in the operation process of the double air deflector.

[0082] Further, the anti-interference control unit is specifically configured to: take the target position information and the current position information of the double air guide panel as indexes, perform matching analysis in a relationship database in which a corresponding relationship of the control logic is pre-stored, to obtain a target control strategy associated with the indexes, and determine the target control strategy as the anti-interference control strategy.

[0083] Further, the double air guide panel includes a first air guide panel and a second air guide panel, a position of the first air guide panel is higher than that of the second air guide panel, and there are two interference point positions in a running track between a lower end point of the first air guide panel and an upper end point of the second air guide panel.

[0084] The anti-interference control unit is specifically further configured to:

[0085] when it is determined that the upper end point of the second air guide panel at the current position is higher than the lower end point of the first air guide panel at the current position, and it is determined that the lower end point of the first air guide panel at the target position is higher than the upper end point of the second air guide panel at the target position, pre-operate the lower end point of the first air guide panel and the upper end point of the second air guide panel to positions below the first interference point position respectively; after operating the lower end point of the first air guide panel and the upper end point of the second air guide panel to the positions below the first interference point position respectively, operate the first air guide panel to the corresponding first target position; after operating the first air guide panel to the corresponding first target position, operate the second air guide panel to the corresponding second target position.

[0086] when it is determined that the lower end point of the first air guide panel at the current position is higher than the upper end point of the second air guide panel at the current position, and it is determined that the upper end point of the second air guide panel at the target position is higher than the lower end point of the first air guide panel at the target position, pre-operate the lower end point of the first air guide panel and the upper end point of the second air guide panel to positions above the second interference point position respectively; after operating the lower end point of the first air guide panel and the upper end point of the second air guide panel to the positions above the second interference point position respectively, operate the first air guide panel to the corresponding third target position; after operating the first air guide panel to the corresponding third target position, operate the second air guide panel to the corresponding fourth target position.

[0087] wherein the interference point positions are point positions at which the running track between the lower end point of the first air guide panel and the upper end point of the second air guide panel interfere with each other, the interference point positions include the first interference point position and the second interference point position, and the position of the first interference point position is lower than that of the second interference point position.

[0088] Further, before comparing the target position information and the current position information of the double air deflector operation with the control logic correspondence relationship respectively, the method further comprises:

[0089] The control logic determination unit is configured to obtain each position information in the double air deflector operation and a preset corresponding anti-interference control strategy; construct a control logic correspondence relationship between the each position information and the anti-interference control strategy, and store the control logic correspondence relationship in the relational database; wherein the anti-interference control strategy comprises a priority order for controlling the double air deflector operation under different position information.

[0090] Further, the target position information for controlling the double air deflector operation is obtained from the air deflector control instruction, specifically comprising: obtaining a target rotation angle value relative to the horizontal axis for controlling the double air deflector operation from the air deflector control instruction, and determining the target rotation angle value as the target position information.

[0091] The air conditioner double air deflector anti-interference control device provided by the application can effectively improve the flexibility and efficiency of the air conditioner double air deflector anti-interference control, avoid interference during operation, and thus improve the stability of the air conditioner double air deflector control operation.

[0092] Figure 4 An example of an electronic device is shown in the physical structure diagram. As Figure 4 shown, the electronic device can include a processor 401, a communication interface 404, a memory 402, and a communication bus 403, wherein the processor 401, the communication interface 404, and the memory 402 communicate with each other through the communication bus 403. The processor 401 can call the logical instructions in the memory 402 to execute the air conditioner double air deflector anti-interference control method, which comprises: obtaining target position information and current position information of the double air deflector operation of the air conditioner; determining a corresponding anti-interference control strategy based on the target position information and the current position information of the double air deflector operation and a preset control logic correspondence relationship; controlling the double air deflector of the air conditioner to operate in a corresponding priority order based on the anti-interference control strategy; wherein the control logic correspondence relationship is a pre-constructed association relationship between the current position information, the target position information, and the corresponding anti-interference control strategy.

[0093] Further, the logic instructions in the memory 402 described above can be implemented in the form of software functional units and sold or used as independent products, and can be stored in a computer readable storage medium. Based on such understanding, the technical solutions of the present application essentially or the parts that make contributions to the prior art or parts of the technical solutions can be embodied in the form of a software product. The computer software product is stored in a storage medium and includes several instructions for enabling a computer device (which can be a personal computer, a server, or a network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of the present application. The aforementioned storage medium includes: a U disk, a mobile hard disk, a read-only memory (ROM, Read-Only Memory), a random access memory (RAM, Random Access Memory), a magnetic disk or an optical disk, and various media that can store program codes.

[0094] On the other hand, the present application also provides a computer program product, which comprises a computer program, the computer program can be stored in a computer readable storage medium, and the computer program can be executed by a processor to enable a computer to execute the air conditioner double deflector anti-interference control method provided by the above-mentioned methods. The method comprises: obtaining target position information and current position information of double deflector operation of an air conditioner; determining a corresponding anti-interference control strategy based on the target position information and the current position information of the double deflector operation, and a preset control logic corresponding relationship; controlling the double deflector of the air conditioner to operate in a corresponding priority order based on the anti-interference control strategy; wherein the control logic corresponding relationship is a pre-constructed association relationship between the current position information, the target position information and the corresponding anti-interference control strategy.

[0095] On the other hand, the present application also provides a computer program product, which comprises a computer program, the computer program can be stored in a computer readable storage medium, and the computer program can be executed by a processor to enable a computer to execute the air conditioner double deflector anti-interference control method provided by the above-mentioned methods. The method comprises: obtaining target position information and current position information of double deflector operation of an air conditioner; determining a corresponding anti-interference control strategy based on the target position information and the current position information of the double deflector operation, and a preset control logic corresponding relationship; controlling the double deflector of the air conditioner to operate in a corresponding priority order based on the anti-interference control strategy; wherein the control logic corresponding relationship is a pre-constructed association relationship between the current position information, the target position information and the corresponding anti-interference control strategy.

[0096] 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 to multiple network units. Part or all of the modules can be selected to achieve the purposes of the embodiments according to actual needs. Those skilled in the art can understand and implement without creative labor.

[0097] Through the description of the above embodiments, those skilled in the art can clearly understand that the embodiments can be realized by means of software and the necessary general hardware platform, and of course can also be realized by hardware. Based on such understanding, the above technical solutions can be embodied in the form of 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 number 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.

[0098] Finally, it should be noted that: the above embodiments 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 embodiments, those skilled in the art should understand that: it can still modify the technical solutions recorded in the foregoing embodiments, or make equivalent modifications to some 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 anti-interference control method, characterized in that, The method comprises: obtaining target position information and current position information of double air deflectors of an air conditioner; determining a corresponding anti-interference control strategy based on the target position information and the current position information of the double air deflectors and a preset control logic correspondence relationship, and controlling the double air deflectors of the air conditioner to operate in a corresponding priority order based on the anti-interference control strategy; wherein the control logic correspondence relationship is a pre-established association relationship between the current position information, the target position information, and the corresponding anti-interference control strategy; the double air deflectors comprise a first air deflector and a second air deflector, the position of the first air deflector is higher than that of the second air deflector, and there are two interference points between the operating track of the lower end point of the first air deflector and the upper end point of the second air deflector; the controlling the double air deflectors of the air conditioner to operate in a corresponding priority order based on the anti-interference control strategy specifically comprises: when it is determined that the upper end point of the second air deflector at the current position is higher than the lower end point of the first air deflector at the current position, and it is determined that the lower end point of the first air deflector at the target position is higher than the upper end point of the second air deflector at the target position, the lower end point of the first air deflector and the upper end point of the second air deflector are respectively moved to positions below the first interference point in advance; after the lower end point of the first air deflector and the upper end point of the second air deflector are respectively moved to positions below the first interference point, the first air deflector is moved to a corresponding first target position; after the first air deflector is moved to the corresponding first target position, the second air deflector is moved to a corresponding second target position. wherein the interference points are points where the operating tracks of the lower end point of the first air deflector and the upper end point of the second air deflector interfere with each other, and the interference points include the first interference point.

2. The anti-interference control method of the air conditioner double air deflector according to claim 1, characterized in that, the determining a corresponding anti-interference control strategy based on the target position information and the current position information of the double air deflectors and a preset control logic correspondence relationship comprises: indexing the target position information and the current position information of the double air deflectors, performing matching analysis in a relationship database in which the control logic correspondence relationship is pre-stored, to obtain a target control strategy associated with the index, and determining the target control strategy as the anti-interference control strategy.

3. The anti-interference control method for double air deflectors of an air conditioner according to claim 1, characterized in that, when it is determined that the lower end point of the first deflector at the current position is higher than the upper end point of the second deflector at the current position, and it is determined that the upper end point of the second deflector at the target position is higher than the lower end point of the first deflector at the target position, the lower end point of the first deflector and the upper end point of the second deflector are respectively operated to a position above the second interference point in advance; after the lower end point of the first deflector and the upper end point of the second deflector are respectively operated to a position above the second interference point, the first deflector is operated to the corresponding third target position; after the first deflector is operated to the corresponding third target position, the second deflector is operated to the corresponding fourth target position. The interference point position includes the second interference point position, and the position of the first interference point is lower than the position of the second interference point.

4. The anti-interference control method of the air conditioner double air deflector according to claim 1, characterized in that, The target position information and the current position information of the double deflectors of the air conditioner are obtained, specifically including: Obtaining the deflector control instruction sent to the air conditioner, obtaining the target position information of the double deflectors from the deflector control instruction; and obtaining the current position information of the double deflectors based on the angle sensor preset in the air conditioner.

5. The anti-interference control method of the air conditioner double air deflector according to claim 1, characterized in that, After obtaining the target position information and the current position information of the double deflectors of the air conditioner, it further includes: Comparing the target position information and the current position information of the double deflectors with the control logic corresponding relationship stored in the relational database respectively, judging whether the running process of the double deflectors exists interference, and if the running process of the double deflectors exists interference, obtaining the corresponding anti-interference control strategy through matching analysis.

6. The anti-interference control method of the air conditioner double air deflector according to claim 5, characterized in that, Before comparing the target position information and the current position information of the double deflectors with the control logic corresponding relationship respectively in advance, it further includes: Obtaining each position information in the running of the double deflectors and the corresponding each type of anti-interference control strategy preset; Constructing the control logic corresponding relationship between the each position information and the each type of anti-interference control strategy, and storing the control logic corresponding relationship to the relational database; The each type of anti-interference control strategy contains the priority order of controlling the running of the double deflectors under different position information.

7. The anti-interference control method of the air conditioner double air deflector according to claim 4, characterized in that, The target position information of the double deflectors obtained from the deflector control instruction, specifically includes: obtaining the target rotation angle value of the double deflectors relative to the horizontal axis from the deflector control instruction, and determining the target rotation angle value as the target position information.

8. An air conditioner double air deflector anti-interference control device, characterized in that, It includes: The position information acquisition unit is used for obtaining the target position information and the current position information of the double deflectors of the air conditioner; The anti-interference control unit is configured to determine a corresponding anti-interference control strategy based on target position information and current position information of the double air deflector, and a preset control logic correspondence relationship; and control the double air deflector of the air conditioner to operate in a corresponding priority order based on the anti-interference control strategy; wherein the control logic correspondence relationship is a pre-established association relationship between the current position information, the target position information, and the corresponding anti-interference control strategy. The double air deflector includes a first air deflector and a second air deflector, the position of the first air deflector is higher than that of the second air deflector, and there are two interference points between the operating track of the lower end point of the first air deflector and the upper end point of the second air deflector. The control of the double air deflector of the air conditioner based on the anti-interference control strategy in a corresponding priority order specifically includes: When it is determined that the upper end point of the second air deflector at the current position is higher than the lower end point of the first air deflector at the current position, and it is determined that the lower end point of the first air deflector at the target position is higher than the upper end point of the second air deflector at the target position, the lower end point of the first air deflector and the upper end point of the second air deflector are respectively moved to positions below the first interference point; after the lower end point of the first air deflector and the upper end point of the second air deflector are respectively moved to positions below the first interference point, the first air deflector is moved to a corresponding first target position; after the first air deflector is moved to the corresponding first target position, the second air deflector is moved to a corresponding second target position. The interference points are points where the operating track between the lower end point of the first air deflector and the upper end point of the second air deflector interfere with each other, and the interference points include the first interference point.

9. A computer readable storage medium, characterized in that, The computer-readable storage medium includes a stored program, wherein the program performs the air conditioner double air deflector anti-interference control method of any one of claims 1 to 7 when executed. 10.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 anti-interference control method of any one of claims 1 to 7 through the computer program.

Citation Information

Patent Citations

  • Control method for preventing interference of air guiding strips of indoor unit of air conditioner

    CN106895548A

  • Air conditioner air deflector control method, control device, and air conditioner

    CN110986330A