Air conditioner control method and device, air conditioner, equipment, medium and program product
By adjusting the orientation of the air conditioning air guide components and grille, the problem of difficulty in controlling the airflow coverage and transmission distance of the air conditioning system was solved, achieving more precise air supply control and adaptability to different application scenarios.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- XIAOMI TECH (WUHAN) CO LTD
- Filing Date
- 2026-03-24
- Publication Date
- 2026-07-31
AI Technical Summary
The airflow coverage and/or airflow transmission distance of air conditioners are difficult to control precisely, making it difficult for air conditioners to adapt to different application scenarios.
By controlling the posture changes of the air guide components and grille of the air conditioner, the effect of gathering or dispersing airflow can be achieved. This includes the left and right swinging of the air guide components and the fixing or swinging of the grille to form an inward or outward V-shape, so as to adjust the coverage and transmission distance of the airflow.
It increases the air delivery distance and expands the air delivery coverage, making it adaptable to different application scenarios and enabling more precise air delivery control.
Smart Images

Figure CN121897995B_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of air conditioning technology, and more specifically, to an air conditioning control method, device, air conditioner, equipment, medium, and program product. Background Technology
[0002] With social development and the continuous improvement of people's living standards, air conditioners have become an indispensable electrical appliance in people's daily lives. Air conditioners regulate and control parameters such as temperature, humidity, and airflow rate of the air in a building or structure to meet people's needs for the surrounding environment.
[0003] In related technologies, it is difficult to accurately control the airflow coverage and / or airflow transmission distance of air conditioners, making it difficult for air conditioners to adapt to different application scenarios. Summary of the Invention
[0004] This application addresses the shortcomings of existing methods by proposing an air conditioning control method, device, air conditioner, equipment, medium, and program product to solve the technical problem that the air conditioning airflow coverage and / or airflow transmission distance are difficult to accurately control, making it difficult for the air conditioner to adapt to different application scenarios.
[0005] In a first aspect, embodiments of this application provide an air conditioning control method. The air conditioner includes a housing assembly with an air outlet, a grille rotatably disposed at the air outlet, and an air guide mechanism rotatably disposed at the rear side of the grille. The air guide mechanism includes a first air guide assembly and a second air guide assembly arranged in a left-right direction. The grille has an air guide channel.
[0006] The air conditioning control method includes the following steps:
[0007] Obtain the operating status command of the air conditioner;
[0008] In response to the operating status command containing air supply status information, the system controls both the first air guide component and the second air guide component to be stationary or at least one of them to swing left and right, and both of them to intersect with the first plane at an angle and in opposite directions, the first plane being the plane where the air outlet is located; and controls the grille to be stationary or swing.
[0009] Optionally, the grille includes a first grille surface and a second grille surface, and the air guide channel of the grille is configured to converge the airflow from the first grille surface to the second grille surface;
[0010] In response to the operating status command including air supply status information, control both the first air guide component and the second air guide component to be stationary or at least one of them to swing left and right, and both to intersect with a first plane at an angle with opposite directions of inclination, the first plane being the plane where the air outlet is located; and control the grille to be stationary or swing, including:
[0011] Control the first air guide assembly and the second air guide assembly to be stationary or at least one of them to swing left and right, so that the first air guide assembly and the second air guide assembly are close to the inner side of the air conditioner and point to the sides respectively; and control the grille to be stationary or swing left and right, so that the first grille surface of the grille is close to the inner side of the air conditioner.
[0012] Optionally, controlling both the first and second air guide components to be stationary or at least one of them to swing left and right, such that the ends of the first and second air guide components near the inner side of the air conditioner point to both sides respectively; and controlling the grille to be stationary or swing left and right, such that the first grille surface of the grille is close to the inner side of the air conditioner, including:
[0013] The first air guide assembly and the second air guide assembly are fixed at a first position, such that the first air guide assembly and the second air guide assembly are positioned at one end near the inside of the air conditioner, pointing to both sides respectively; and the grille is fixed at the first grille surface of the grille near the inside of the air conditioner.
[0014] Alternatively, the first air guide assembly and the second air guide assembly can be controlled to swing left and right, with the ends of the first air guide assembly and the second air guide assembly near the inner side of the air conditioner pointing to both sides respectively; and the grille can be controlled to be fixed at the first grille surface of the grille near the inner side of the air conditioner.
[0015] Alternatively, the first air guide assembly and the second air guide assembly are fixed at a first position, such that the first air guide assembly and the second air guide assembly are close to the inner side of the air conditioner and point to both sides respectively; and the grille is controlled to swing left and right, and the first grille surface of the grille is close to the inner side of the air conditioner.
[0016] Alternatively, the first air guide assembly and the second air guide assembly can be controlled to swing left and right, with the ends of the first air guide assembly and the second air guide assembly near the inner side of the air conditioner pointing to the sides respectively; and the grille can be controlled to swing left and right, so that the first grille surface of the grille is close to the inner side of the air conditioner.
[0017] Optionally, the grille includes at least two grilles, which are arranged sequentially in the left-right direction;
[0018] Controlling the grille to be stationary or swinging left and right, and making the first grille surface of the grille close to the inside of the air conditioner, includes:
[0019] Control at least two of the grille members to be stationary or at least one of them to swing left and right, such that the ends of at least two of the grille members near the inside of the air conditioner point to the sides respectively, and the first grille surface of the grille member is close to the inside of the air conditioner.
[0020] Optionally, the grille includes a first grille surface and a second grille surface, and the air guide channel of the grille is configured to converge the airflow from the first grille surface to the second grille surface;
[0021] In response to the operating status command including air supply status information, control both the first air guide component and the second air guide component to be stationary or at least one of them to swing left and right, and both to intersect with a first plane at an angle with opposite directions of inclination, the first plane being the plane where the air outlet is located; and control the grille to be stationary or swing, including:
[0022] Control the first air guide assembly and the second air guide assembly to be stationary or at least one of them to swing left and right, so that the ends of the first air guide assembly and the second air guide assembly near the inner side of the air conditioner are respectively pointing towards the center; and control the grille to be stationary or swing left and right, so that the second grille surface of the grille is close to the inner side of the air conditioner.
[0023] Optionally, controlling both the first and second air guide components to be stationary or at least one of them to swing left and right, such that the ends of the first and second air guide components near the inner side of the air conditioner point to both sides respectively; and controlling the grille to be stationary or swing left and right, such that the first grille surface of the grille is close to the inner side of the air conditioner, including:
[0024] The first air guide assembly and the second air guide assembly are fixed at the second position, such that the ends of the first air guide assembly and the second air guide assembly near the inner side of the air conditioner point towards the center; and the grille is fixed at the second grille surface of the grille near the inner side of the air conditioner.
[0025] Alternatively, the first and second air guide components can be controlled to swing left and right, with the ends of the first and second air guide components near the inner side of the air conditioner pointing towards the center; and the grille can be fixed at the second grille surface of the grille near the inner side of the air conditioner.
[0026] Alternatively, the first air guide assembly and the second air guide assembly are fixed in the second position, such that the ends of the first air guide assembly and the second air guide assembly near the inner side of the air conditioner point towards the center; and the grille is controlled to swing left and right, and the second grille surface of the grille is brought close to the inner side of the air conditioner.
[0027] Alternatively, the first and second air guide components can be controlled to swing left and right, with the ends of the first and second air guide components near the inner side of the air conditioner pointing towards the center; and the grille can be controlled to swing left and right, with the second grille surface of the grille near the inner side of the air conditioner.
[0028] Optionally, the grille includes at least two grilles, which are arranged sequentially in the left-right direction;
[0029] Controlling the grille to be stationary or swinging left and right, and causing the second grille surface of the grille to be close to the inner side of the air conditioner, includes:
[0030] Control at least two of the grille members to be stationary or at least one of them to swing left and right, such that the ends of at least two of the grille members near the inner side of the air conditioner point towards the center, and the second grille surface of the grille members is close to the inner side of the air conditioner.
[0031] Optionally, in response to the operating status command including air supply status information, control both the first air guide component and the second air guide component to be stationary or at least one of them to swing left and right, and both to intersect with a first plane at an angle and in opposite directions, the first plane being the plane where the air outlet is located; and control the grille to be stationary or swing, including:
[0032] The first air guide assembly and the second air guide assembly are controlled to be stationary or at least one of them swings left and right, and both are inclined to intersect the first plane in opposite directions, the first plane being the plane where the air outlet is located; and the grille is controlled to be stationary on the side wall of the grille to partially block the air outlet.
[0033] Optionally, the first air guide assembly and the second air guide assembly are both fixed in place, or at least one of them swings left and right, and both intersect a first plane at an angle with opposite directions of inclination, the first plane being the plane where the air outlet is located; and the grille is fixed in place on the side wall of the grille, partially blocking the air outlet, including:
[0034] Control the first air guide assembly and the second air guide assembly to be stationary or at least one of them to swing left and right, and make the first air guide assembly and the second air guide assembly near the inner side of the air conditioner point to the sides respectively; and control the grille to be stationary on the side wall of the grille to partially block the air outlet;
[0035] Alternatively, the first air guide assembly and the second air guide assembly are both fixed in place, or at least one of them swings left and right, such that the ends of the first air guide assembly and the second air guide assembly near the inner side of the air conditioner point towards the center; and the grille is fixed in place on the side wall of the grille to partially block the air outlet.
[0036] Optionally, the air conditioning control method also includes:
[0037] In response to the operating status command including strong wind mode information, both the first air guide component and the second air guide component are fixed in place and perpendicular to the first plane; the first plane is the plane where the air outlet is located;
[0038] And control the grid element to be fixed at the grid surface parallel to the first plane.
[0039] Optionally, the air conditioning control method also includes:
[0040] In response to the operating status command including direct blowing mode information, both the first air guide component and the second air guide component are controlled to be stationary and perpendicular to the first plane; the first plane is the plane where the air outlet is located;
[0041] And control the grille to be fixed at the side wall of the grille to block the air outlet.
[0042] Optionally, the air conditioning control method also includes:
[0043] In response to the operating status command including airflow mode information, the first airflow guide component, the second airflow guide component, and the grille are all controlled to swing left and right, and the extension directions of the first airflow guide component and the second airflow guide component are parallel to the vertical line of the grille in the horizontal plane, or the extension directions of the first airflow guide component and the second airflow guide component are perpendicular to the vertical line of the grille in the horizontal plane.
[0044] Optionally, the air conditioner further includes two sliding doors, which are arranged in a left-right direction and are respectively slidable relative to the housing assembly to open or at least partially close the air outlet;
[0045] The air conditioning control method further includes the following steps:
[0046] In response to the operating status command including the closing mode information, the sliding door is controlled to be in the closed position, the first air guide assembly and the second air guide assembly are controlled to be stacked in the same direction in sequence; and the grille is controlled to be fixed in place, with the side wall of the grille partially blocking the air outlet, forming an exposed surface of the sliding door.
[0047] Secondly, embodiments of this application provide an air conditioner, including:
[0048] Housing assembly with air outlet;
[0049] A grille is rotatably mounted at the air outlet; the grille has an air guide channel.
[0050] An air guiding mechanism is rotatably disposed on the rear side of the grille; the air guiding mechanism includes a first air guiding component and a second air guiding component arranged in a left-right direction;
[0051] When the air outlet is open, both the first air guide component and the second air guide component are stationary or at least one of them swings left and right, and both intersect the first plane at an angle with opposite directions of inclination. The first plane is the plane where the air outlet is located; the grille is stationary or swings.
[0052] Optionally, the grille includes a first grille surface and a second grille surface;
[0053] The air guide channel of the grille is configured to converge the airflow flowing from the first grille surface to the second grille surface.
[0054] Optionally, when the air outlet is open, both the first air guide component and the second air guide component are stationary or at least one of them swings left and right, and the ends of the first air guide component and the second air guide component near the inside of the air conditioner point to the sides respectively.
[0055] The grille is fixed in place or swings left and right, and the first grille surface of the grille is brought close to the inside of the air conditioner.
[0056] Optionally, the grille includes at least two grilles, which are arranged sequentially in the left-right direction;
[0057] When the air outlet is open, both the first air guide component and the second air guide component are stationary or at least one of them swings left and right, and the ends of the first air guide component and the second air guide component near the inside of the air conditioner point to the sides respectively.
[0058] At least two of the grille members are fixed in place or at least one of them swings left and right, such that the ends of at least two of the grille members near the inside of the air conditioner point to the sides respectively, and the first grille surface of the grille member is close to the inside of the air conditioner.
[0059] Optionally, when the air outlet is open, both the first air guide assembly and the second air guide assembly are stationary or at least one of them swings left and right, and the ends of the first air guide assembly and the second air guide assembly near the inner side of the air conditioner point towards the center respectively.
[0060] Control at least two of the grille members to be stationary or at least one of them to swing left and right, such that the ends of at least two of the grille members near the inner side of the air conditioner point towards the center, and the second grille surface of the grille members is close to the inner side of the air conditioner.
[0061] Optionally, the grille includes at least two grilles, which are arranged sequentially in the left-right direction;
[0062] When the air outlet is open, the first air guide component and the second air guide component are both stationary or at least one of them swings left and right, and the ends of the first air guide component and the second air guide component near the inside of the air conditioner point towards the center respectively;
[0063] The grille is fixed to the side wall of the grille, partially obscuring the air outlet.
[0064] Optionally, along the direction from the first grille surface to the second grille surface, the opening of the air guide channel of the grille gradually decreases.
[0065] Optionally, the air guide channel of the grille includes multiple inclined air guide channels;
[0066] Along the direction from the first grille surface to the second grille surface, a plurality of the inclined air guide channels extend from both sides of the grille toward the center.
[0067] Optionally, the air conditioner also includes:
[0068] Two sliding doors, arranged in a left-right direction and slidable relative to the housing assembly, to open or at least partially close the air outlet;
[0069] With the air outlet closed, the sliding door is in the closed position, and the first air guide assembly and the second air guide assembly are stacked in the same direction; the grille is fixed in place, and the side wall of the grille partially blocks the air outlet, forming an exposed surface of the sliding door.
[0070] Thirdly, embodiments of this application provide an air conditioner control device capable of implementing the air conditioner control method described above.
[0071] Fourthly, embodiments of this application provide an electronic device, including a memory, a processor, and a computer program stored in the memory, wherein the processor executes the computer program to implement the air conditioning control method described above.
[0072] Fifthly, embodiments of this application provide a computer storage medium storing a computer program thereon, which, when executed by an electronic device, implements the air conditioning control method described above.
[0073] In a sixth aspect, embodiments of this application provide a computer program product, including a computer program that, when executed by a processor, implements the aforementioned air conditioning control method.
[0074] The beneficial technical effects of the technical solutions provided in this application include:
[0075] By controlling the first and second air guide components to be stationary or at least one of them to swing left and right, and both to intersect with the first plane at an angle with opposite directions of inclination, the first plane being the plane where the air outlet is located, the first and second air guide components can be made to be in an inward V-shape to gather air or in an outward V-shape to disperse air, thereby achieving the effect of gathering or dispersing air, thus increasing the air delivery distance or expanding the air delivery coverage area, and thus adapting to different application scenarios.
[0076] Additional aspects and advantages of this application will be set forth in part in the description which follows, and will become apparent from the description or may be learned by practice of this application. Attached Figure Description
[0077] The above and / or additional aspects and advantages of this application will become apparent and readily understood from the following description of the embodiments taken in conjunction with the accompanying drawings, wherein:
[0078] Figure 1 A three-dimensional structural diagram of an air conditioner provided in an embodiment of this application;
[0079] Figure 2 for Figure 1 A magnified view of a portion of point A in the middle;
[0080] Figure 3 A schematic cross-sectional view of a grille component of an air conditioner provided in an embodiment of this application along a horizontal plane;
[0081] Figure 4 The air conditioner provided in this application embodiment has the following structure: when the sliding door is in the open position, the first air guide assembly and the second air guide assembly are in a concentrating air posture, and the first grille surface of the grille is facing the inside of the air conditioner.
[0082] Figure 5 The air conditioner provided in this application embodiment has the following structure: when the sliding door is in the open position, the first air guide assembly and the second air guide assembly are in a dispersing posture, and the second grille surface of the grille is facing the inside of the air conditioner.
[0083] Figure 6 The air conditioner provided in this application embodiment has the following structure: when the sliding door is in the open position, the first air guide assembly and the second air guide assembly are both perpendicular to the plane where the air outlet is located, and the first grille surface of the grille faces the inside of the air conditioner.
[0084] Figure 7 The air conditioner provided in this application embodiment has the following structure: when the sliding door is in the open position, the first air guide assembly and the second air guide assembly are both perpendicular to the plane where the air outlet is located, and the second grille surface of the grille faces the inside of the air conditioner.
[0085] Figure 8 A schematic diagram of the structure of the air conditioner provided in this application embodiment, wherein the first air guide assembly, the second air guide assembly, and the grille are synchronously swept left and right when the sliding door is in the open position;
[0086] Figure 9 The air conditioner provided in this application embodiment has the following structure when the sliding door is in the closed position, the side wall of the grille is sandwiched between the two sliding doors to form an external surface exposed to the two sliding doors, and the air sweeping mechanism is in the closed state.
[0087] Figure 10 A cross-sectional view of another grille of an air conditioner provided in this application embodiment along a horizontal plane;
[0088] Figure 11 A schematic flowchart of an air conditioning control method provided in an embodiment of this application;
[0089] Figure 12 This is a schematic diagram of the structure of an electronic device provided in an embodiment of this application.
[0090] Figure label:
[0091] 10 - Housing assembly;
[0092] 11-Air outlet;
[0093] 12-Main housing; 13-Base; 14-Top cover; 15-Air duct; 151-Air duct outlet;
[0094] 20 - Sliding door;
[0095] 30-Grate component;
[0096] 31-Air duct;
[0097] 32 - Grille surface; 321 - First grille surface; 322 - Second grille surface;
[0098] 33-Hinge; 34-Frame; 35-Reinforcing rib;
[0099] 40 - Air guide mechanism;
[0100] 41-First air guide assembly; 42-Second air guide assembly;
[0101] 50 - Cross-flow fan; 60 - Evaporator;
[0102] 70 - Sweeping mechanism; 80 - Dustproof net. Detailed Implementation
[0103] The embodiments of this application are described below with reference to the accompanying drawings. It should be understood that the embodiments described below with reference to the accompanying drawings are exemplary descriptions for explaining the technical solutions of the embodiments of this application, and do not constitute a limitation on the technical solutions of the embodiments of this application.
[0104] Those skilled in the art will understand that, unless specifically stated otherwise, the terms "described" and "the" as used herein may also include plural forms. It should be further understood that the term "comprising" as used in the specification of this application means the presence of the described features, elements, and / or components, but does not exclude other features, information, data, steps, operations, elements, components, and / or combinations thereof supported by the art. The term "and / or" as used herein refers to at least one of the items defined by the term; for example, "A and / or B" can be implemented as "A," or as "B," or as "A and B."
[0105] To make the objectives, technical solutions, and advantages of this application clearer, the embodiments of this application will be described in further detail below with reference to the accompanying drawings.
[0106] With social development and the continuous improvement of people's living standards, air conditioners have become an indispensable electrical appliance in people's daily lives. Air conditioners regulate and control parameters such as temperature, humidity, and airflow rate of the air in a building or structure to meet people's needs for the surrounding environment.
[0107] In related technologies, it is difficult to accurately control the airflow coverage and / or airflow transmission distance of air conditioners, making it difficult for air conditioners to adapt to different application scenarios.
[0108] The technical solution of this application and how it solves the above-mentioned technical problems are described in detail below with specific embodiments. It should be noted that the following embodiments can be referenced, borrowed, or combined with each other, and the same terms, similar features, and similar implementation steps in different embodiments will not be described again.
[0109] This application provides an air conditioning control method, see [link to relevant documentation]. Figures 1 to 10 The air conditioner may include a housing assembly 10 having an air outlet 11, a grille 30 rotatably disposed at the air outlet 11, and an air guide mechanism 40 rotatably disposed at the rear side of the grille 30; the air guide mechanism 40 includes a first air guide assembly 41 and a second air guide assembly 42 arranged in a left-right direction; the grille 30 has an air guide channel 31.
[0110] like Figure 11As shown, the air conditioning control method provided in this application embodiment may include the following steps:
[0111] S101: Command to obtain the operating status of the air conditioner.
[0112] S102: In response to the operation status command containing air supply status information, control the first air guide component 41 and the second air guide component 42 to be stationary or at least one of them to swing left and right, and both of them to intersect the first plane at an angle and in opposite directions, the first plane being the plane where the air outlet 11 is located; and control the grille 30 to be stationary or swing.
[0113] By controlling the first air guide component 41 and the second air guide component 42 to be stationary or at least one of them to swing left and right, and both to intersect the first plane at an angle with opposite directions of inclination, the first plane being the plane where the air outlet 11 is located, the first air guide component 41 and the second air guide component 42 can be made to have an inward V-shaped air gathering posture or an outward V-shaped air dispersing posture, thereby achieving the effect of gathering or dispersing air, thereby increasing the air delivery distance or expanding the air delivery coverage area, thus adapting to different application scenarios.
[0114] In some embodiments, the freeze position can be directly fixed at the target position (in which case the initial position and the target position are the same), or it can be fixed at the target position after rotating N times. Left and right swaying can refer to the grid element 30 rotating back and forth around the axis of rotation.
[0115] In some embodiments, N may be less than 1. Optionally, the target position is rotated from the initial position with a minimum rotation angle.
[0116] In some embodiments, N can be greater than or equal to 1. That is, it rotates one full circle and then remains stationary.
[0117] In some embodiments, the first air guide assembly 41 and the second air guide assembly 42 are both inclined to intersect the first plane and the inclination directions are opposite. The first plane is the plane where the air outlet 11 is located, and may include: one end of the first air guide assembly 41 and the second air guide assembly 42 near the inner side of the air conditioner, pointing to both sides respectively.
[0118] In other feasible embodiments, the first air guide assembly 41 and the second air guide assembly 42 are both inclined to intersect the first plane and the inclination directions are opposite. The first plane is the plane where the air outlet 11 is located, and may include: the end of the first air guide assembly 41 and the second air guide assembly 42 near the inner side of the air conditioner, respectively pointing to the center.
[0119] See Figure 3 The grille 30 includes a first grille surface 321 and a second grille surface 322. The air guide channel 31 of the grille 30 is configured to converge the airflow from the first grille surface 321 to the second grille surface 322.
[0120] This configuration allows the first grille surface 321 of the grille 30 to be close to the inner side of the air conditioner, enabling the airflow guide channel 31 of the grille 30 to converge the airflow, while the second grille surface 322 of the grille 30 is close to the inner side of the air conditioner, allowing the airflow guide channel 31 of the grille 30 to disperse the airflow.
[0121] See Figure 4 Optionally, in some embodiments, step S102 may include: in response to an operating state command containing air supply state information, controlling both the first air guide assembly 41 and the second air guide assembly 42 to be stationary or at least one of them to swing left and right, and causing the first air guide assembly 41 and the second air guide assembly 42 to be close to one end of the air conditioner and pointing to both sides respectively; and controlling the grille 30 to be stationary or swing left and right, and causing the first grille surface 321 of the grille 30 to be close to the inside of the air conditioner.
[0122] By having the first air guide assembly 41 and the second air guide assembly 42 both stationary in an inward V-shape or at least one swinging left and right, the airflow is concentrated. Furthermore, by having the first grille surface 321 of the grille 30 close to the inner side of the air conditioner, the air guide channel 31 of the grille 30 can concentrate the airflow, thereby further improving the air delivery distance and wind speed concentration, and enabling more precise long-distance directional air delivery.
[0123] The following examples illustrate this point:
[0124] See Figure 4 Optionally, in some embodiments, step S102 may include: controlling the first air guide assembly 41 and the second air guide assembly 42 to be fixed in a first position, such that the first air guide assembly 41 and the second air guide assembly 42 are close to the inner side of the air conditioner and point to both sides respectively; and controlling the grille 30 to be fixed at the first grille surface 321 of the grille 30 close to the inner side of the air conditioner.
[0125] By fixing the first air guide component 41 and the second air guide component 42 in an inward V-shape, the air gathering effect can be achieved. Furthermore, by fixing the grille component 30 in an upright position, the air is further gathered through the air guide channel 31 of the grille component 30, thereby improving the air delivery distance and the concentration of air velocity.
[0126] See Figure 4 Optionally, in some embodiments, step S102 may include: controlling the first air guide assembly 41 and the second air guide assembly 42 to swing left and right, and the ends of the first air guide assembly 41 and the second air guide assembly 42 near the inner side of the air conditioner pointing to the sides respectively; and controlling the grille 30 to be fixed at the first grille surface 321 of the grille 30 near the inner side of the air conditioner.
[0127] By swinging left and right in an inward V-shape, the first air guide component 41 and the second air guide component 42 can achieve the effect of gathering air. The air is further gathered by the air guide channel 31 of the grille component 30, thereby improving the air delivery distance and the concentration of air speed.
[0128] In some embodiments, controlling the first air guide assembly 41 and the second air guide assembly 42 to swing left and right, and the ends of the first air guide assembly 41 and the second air guide assembly 42 near the inner side of the air conditioner pointing to both sides, may include: controlling the first air guide assembly 41 to swing left and right within a first swing angle range, and the second air guide assembly 42 to swing left and right within a second swing angle range, and the first swing angle range and the second swing angle range are symmetrical about the vertical centerline.
[0129] In some embodiments, when viewed from back to front, any angle within the first swing angle range and the second swing angle range is an acute angle.
[0130] See Figure 4 Optionally, in some embodiments, step S102 may include: controlling the first air guide assembly 41 and the second air guide assembly 42 to be fixed in a first position, such that the first air guide assembly 41 and the second air guide assembly 42 are close to the inner side of the air conditioner and point to both sides respectively; and controlling the grille 30 to swing left and right, and making the first grille surface 321 of the grille 30 close to the inner side of the air conditioner.
[0131] By fixing the first air guide assembly 41 and the second air guide assembly 42 in an inward V-shape, an air-gathering effect can be achieved. Furthermore, by oscillating the grille 30 from side to side, the air is further gathered through the air guide channel 31 of the grille 30, thereby increasing the air delivery distance and air velocity concentration. Moreover, the guiding effect of the grille 30 during its oscillation expands the air delivery coverage area, enabling dynamic sweeping of the airflow based on the gathered air.
[0132] See Figure 4 Optionally, in some embodiments, step S102 may include: controlling the first air guide assembly 41 and the second air guide assembly 42 to swing left and right, with the ends of the first air guide assembly 41 and the second air guide assembly 42 near the inner side of the air conditioner pointing to the sides respectively; and controlling the grille 30 to swing left and right, so that the first grille surface 321 of the grille 30 is close to the inner side of the air conditioner.
[0133] By oscillating left and right in an inward-facing V-shape with the first air guide assembly 41 and the second air guide assembly 42, an air-gathering effect can be achieved. Furthermore, by oscillating left and right with the grille 30 upright, the air is further gathered through the air guide channel 31 of the grille 30, thereby increasing the air delivery distance and air velocity concentration. Moreover, the guiding effect of the grille 30 during its oscillation expands the air delivery coverage area, enabling dynamic sweeping of the airflow based on the gathered airflow.
[0134] In other feasible embodiments, step S102 may include: in response to an operating state command containing air supply state information, controlling the first air guide assembly 41 and the second air guide assembly 42 to be stationary or at least one of them to swing left and right, and causing the first air guide assembly 41 and the second air guide assembly 42 to be close to the inner side of the air conditioner and to point towards the center respectively; and controlling the grille 30 to be stationary or swing left and right, and causing the second grille surface 322 of the grille 30 to be close to the inner side of the air conditioner.
[0135] The first air guide assembly 41 and the second air guide assembly 42 are both fixed in an outward V-shape, or at least one of them swings left and right, thereby dispersing the airflow. The second grille surface 322 of the grille 30 is close to the inner side of the air conditioner, so that the air guide channel 31 of the grille 30 can disperse the airflow, thereby further expanding the air supply coverage and improving the wide-area air supply efficiency.
[0136] The following examples illustrate this point:
[0137] See Figure 5 Optionally, in some embodiments, step S102 may include: controlling the first air guide assembly 41 and the second air guide assembly 42 to be fixed in the second position, such that the first air guide assembly 41 and the second air guide assembly 42 are close to the inner side of the air conditioner and point to the center respectively; and controlling the grille 30 to be fixed at the second grille surface 322 of the grille 30 close to the inner side of the air conditioner.
[0138] By fixing the first air guide assembly 41 and the second air guide assembly 42 in an outward V-shape, the air dispersion effect can be achieved. The air dispersion is fixed by the inverted grille 30, and the air dispersion can be further carried out by the air guide channel 31 of the grille 30, so as to achieve a larger air supply coverage area.
[0139] See Figure 5 Optionally, in some embodiments, step S102 may include: controlling the first air guide assembly 41 and the second air guide assembly 42 to swing left and right, and making the ends of the first air guide assembly 41 and the second air guide assembly 42 near the inner side of the air conditioner point towards the center respectively; and controlling the grille 30 to be fixed at the second grille surface 322 of the grille 30 near the inner side of the air conditioner.
[0140] By swinging left and right in an outward V-shape, the first air guide component 41 and the second air guide component 42 can achieve the air dispersion effect. The air is further dispersed by the reverse-positioned grid component 30 and the air guide channel 31 of the grid component 30, which can achieve a larger air supply coverage area.
[0141] In some embodiments, controlling the first air guide assembly 41 and the second air guide assembly 42 to swing left and right, and the ends of the first air guide assembly 41 and the second air guide assembly 42 near the inner side of the air conditioner pointing to the center, may include: controlling the first air guide assembly 41 to swing left and right within a third swing angle range, and the second air guide assembly 42 to swing left and right within a fourth swing angle range, and the third swing angle range and the fourth swing angle range are symmetrical about the vertical centerline.
[0142] In some embodiments, any angle in the third swing angle range and the fourth swing angle range is an acute angle when viewed from front to back.
[0143] See Figure 5 Optionally, in some embodiments, step S102 may include: controlling the first air guide assembly 41 and the second air guide assembly 42 to be fixed in the second position, such that the first air guide assembly 41 and the second air guide assembly 42 are close to the inner side of the air conditioner and point towards the center respectively; and controlling the grille 30 to swing left and right, and making the second grille surface 322 of the grille 30 close to the inner side of the air conditioner.
[0144] By fixing the first air guide assembly 41 and the second air guide assembly 42 in an outward V-shape air dispersion posture, the air dispersion effect can be achieved. By swinging the grille 30 left and right in reverse, the air can be further dispersed by the air guide channel 31 of the grille 30 and the air guiding effect during the swing of the grille 30, and a larger air supply coverage area can be achieved.
[0145] See Figure 5 Optionally, in some embodiments, step S102 may include: controlling the first air guide assembly 41 and the second air guide assembly 42 to swing left and right, and making the ends of the first air guide assembly 41 and the second air guide assembly 42 close to the inner side of the air conditioner point towards the center respectively; and controlling the grille 30 to swing left and right, and making the second grille surface 322 of the grille 30 close to the inner side of the air conditioner.
[0146] By having the first air guide assembly 41 and the second air guide assembly 42 swing left and right in an outward V-shape, the air dispersion effect can be achieved. Furthermore, by having the grille 30 swing left and right in reverse, the air dispersion can be further achieved by utilizing the air guide channel 31 of the grille 30 and the airflow guiding effect during the swing of the grille 30, thus achieving a larger air supply coverage area.
[0147] Optionally, in some embodiments, the grille 30 includes at least two grilles, which are arranged sequentially in the left-right direction.
[0148] With the air outlet 11 open, at least two grille pieces 30 are stationary or at least one swings left and right, and there is a gap between adjacent grille pieces 30.
[0149] Because there is a gap between adjacent grille pieces 30, part of the airflow at the air outlet 11 is blown out through the air guide channel 31 of the grille piece 30, and the other part is blown out from the gap between adjacent grille pieces 30, which enables the air conditioner to provide a large air volume.
[0150] In some embodiments, at least two grille members 30 are stationary or at least one of them swings left and right, which may include either of the following:
[0151] Control at least two sets of grille components to swing in the same direction by about 30 degrees;
[0152] Alternatively, control at least two sets of grille components to swing in opposite directions by about 30 degrees.
[0153] Alternatively, control at least two sets of grille elements 30 to be fixed in a preset position;
[0154] Alternatively, control at least one set of grille members 30 to swing left and right, control the remaining at least one set of grille members 30 to be fixed, and make the air guide plate perpendicular to or obliquely intersect the first plane; the first plane is the plane where the air outlet 11 is located.
[0155] In some embodiments, controlling at least two sets of grille elements 30 to be fixed in preset positions may include any of the following:
[0156] Control at least two sets of grille members 30 to be fixed in a first preset position, such that at least two sets of grille members 30 are close to one end of the grille member 30 and point to both sides of the grille member 30 respectively;
[0157] Alternatively, at least two sets of grille members 30 are fixed in the second preset position, such that at least two sets of grille members 30 are close to one end of the grille member 30 and both point to the center of the grille member 30.
[0158] Alternatively, at least two sets of grid members 30 are fixed in a third preset position, such that at least two sets of grid members 30 are parallel and intersect the first plane at an inclination.
[0159] Alternatively, at least two sets of grid members 30 are fixed in a fourth preset position, such that at least two sets of grid members 30 are parallel and perpendicular to the first plane;
[0160] The preset positions include the first preset position, the second preset position, the third preset position, and the fourth preset position.
[0161] The following example illustrates this:
[0162] Optionally, in some embodiments, in the first air supply mode, the sliding door 20 is in the open position, and at least two grille members 30 swing synchronously in the same direction.
[0163] This setup allows for the creation of a continuous, wide-area airflow that can evenly cover a large space.
[0164] Optionally, in some embodiments, in the second air supply mode, the sliding door 20 is in the open position, and at least two grille members 30 are fixed in the first position, such that the ends of the at least two grille members 30 near the inner side of the indoor unit point to the center respectively, and the second grille surface 322 is near the inner side of the indoor unit.
[0165] By fixing the airflow with at least two grille pieces 30 in an outward V-shape, a uniform diffusion effect is formed at the air outlet 11, which can expand the air supply coverage area.
[0166] Optionally, in some embodiments, in the third air supply mode, the sliding door 20 is in the open position, and at least two grille members 30 are fixed in the second position, such that the ends of the at least two grille members 30 near the inside of the indoor unit point to both sides respectively, and the first grille surface 321 is near the inside of the indoor unit.
[0167] By fixing at least two grille pieces 30 in an inward V-shape, the airflow is concentrated at the air outlet 11, which can improve the air delivery distance and penetration.
[0168] Optionally, in some embodiments, in the fourth air supply mode, the sliding door 20 is in the open position, at least two grille members 30 swing left and right, and keep the ends of at least two grille members 30 near the inside of the indoor unit pointing to the center respectively, and the second grille surface 322 is near the inside of the indoor unit.
[0169] By using the second grille surface 322 near the inside of the indoor unit, air can be dispersed through the air guide channel 31; and by using at least two grille pieces 30 to swing left and right in an outward V-shape air dispersion posture, the air dispersion effect can be further improved by utilizing the air guiding effect of the grille pieces 30 during the swing process, and a larger air supply coverage area can be achieved.
[0170] Optionally, in some embodiments, in the fifth air supply mode, the sliding door 20 is in the open position, at least two grille members 30 swing left and right, and at least two grille members 30 are kept with one end of the grille members 30 near the inside of the indoor unit pointing to both sides respectively, and the first grille surface 321 is near the inside of the indoor unit.
[0171] By using the first grille surface 321 near the inner side of the indoor unit, air can be concentrated through the air guide channel 31; and by using at least two grille pieces 30 to swing left and right in an inward V-shape to concentrate air, the air concentration effect can be improved by utilizing the air guiding effect of the grille pieces 30 during the swing process, thus achieving a larger air supply coverage area; thereby taking into account both air supply distance and coverage width.
[0172] To improve the air conditioning's ability to concentrate or disperse air, at least two grille pieces 30 can move in conjunction with the first air guide assembly 41 and the second air guide assembly 42.
[0173] For example, when the first air guide assembly 41 and the second air guide assembly 42 are close to the inner end of the air conditioner and point to both sides respectively, at least two grille pieces 30 are close to the inner end of the air conditioner and point to both sides respectively.
[0174] For example, when the first air guide assembly 41 and the second air guide assembly 42 are located near the inner side of the air conditioner and point towards the center, at least two grille pieces 30 are located near the inner side of the air conditioner and point towards the center.
[0175] The following examples illustrate this point:
[0176] In some embodiments, step S102 may include: in response to an operating state command containing air supply state information, controlling the first air guide assembly 41 and the second air guide assembly 42 to be stationary or at least one of them to swing left and right, and causing the ends of the first air guide assembly 41 and the second air guide assembly 42 near the inner side of the air conditioner to point to both sides respectively; and controlling at least two grille members 30 to be stationary or at least one of them to swing left and right, and causing the ends of at least two grille members 30 near the inner side of the air conditioner to point to both sides respectively, and the first grille surface 321 of the grille member 30 near the inner side of the air conditioner.
[0177] By having the first air guide assembly 41 and the second air guide assembly 42 both stationary in an inward V-shape or at least one swinging left and right, the airflow is concentrated. Furthermore, by having the first grille surface 321 of the grille 30 close to the inner side of the air conditioner, the air guide channel 31 of the grille 30 can concentrate the airflow, thereby further improving the air delivery distance and wind speed concentration, and enabling more precise long-distance directional air delivery. Moreover, by having at least two grille 30s stationary in an inward V-shape or at least one swinging left and right, the air delivery distance and wind speed concentration can be further improved.
[0178] In other feasible embodiments, step S102 may include: in response to an operating state command containing air supply state information, controlling the first air guide assembly 41 and the second air guide assembly 42 to be stationary or at least one of them to swing left and right, such that the ends of the first air guide assembly 41 and the second air guide assembly 42 near the inner side of the air conditioner point towards the center; and controlling at least two grille members 30 to be stationary or at least one of them to swing left and right, such that the ends of at least two grille members 30 near the inner side of the air conditioner point towards the center, and the second grille surface 322 of the grille member 30 is close to the inner side of the air conditioner.
[0179] By having the first air guide assembly 41 and the second air guide assembly 42 both stationary in an outward V-shape or at least one swinging left and right, the airflow is dispersed. Furthermore, by having the second grille surface 322 of the grille 30 close to the inner side of the air conditioner, the air guide channel 31 of the grille 30 can disperse the airflow, thereby further expanding the air supply coverage and improving the wide-area air supply efficiency. Moreover, by having at least two grille 30s stationary in an outward V-shape or at least one swinging left and right, the air supply coverage can be further expanded.
[0180] Optionally, in some embodiments, step S102 may include: controlling the first air guide assembly 41 and the second air guide assembly 42 to be stationary or at least one of them to swing left and right, and both to intersect the first plane at an angle with opposite directions of inclination, the first plane being the plane where the air outlet 11 is located; and controlling the grille 30 to be stationary at the side wall of the grille 30 blocking part of the air outlet 11.
[0181] By controlling the angles of the first air guide assembly 41 and the second air guide assembly 42, both the first air guide assembly 41 and the second air guide assembly 42 are fixed in place or at least one of them swings left and right, and both are inclined to intersect the first plane in opposite directions. The first plane is the plane where the air outlet 11 is located, so that the first air guide assembly 41 and the second air guide assembly 42 are in an inward V-shape to gather air or in an outward V-shape to disperse air, thereby achieving the effect of gathering or dispersing air, which can increase the air delivery distance or expand the air delivery coverage area; and by fixing the grille 30 to the side wall of the grille 30 to block part of the air outlet 11 (i.e. the grille is in the closed position), the blocking area of the grille 30 on the airflow can be reduced, the wind resistance can be reduced, and the air delivery efficiency can be improved.
[0182] Optionally, in some embodiments, when the air outlet 11 is open, at least two grille members 30 are fixed, with the grille surface 32 located at the air outlet 11 and the edges of adjacent grille members 30 contacting or partially overlapping.
[0183] By having the grille surface 32 located at the air outlet 11 and the edges of adjacent grille pieces 30 in contact or overlapping, all airflow can flow out through the air guide channel 31 of the grille piece 30, thereby making the airflow evenly dispersed and avoiding the discomfort caused by direct blowing; at the same time, the tight fit of the edges of the grille piece 30 can also effectively suppress the air outlet noise and improve the quietness of the air conditioner.
[0184] Optionally, in some embodiments, step S102 may include: in response to an operating state command containing ninth air supply mode information, controlling the first air guide assembly 41 and the second air guide assembly 42 to be stationary or at least one of them to swing left and right, and causing the first air guide assembly 41 and the second air guide assembly 42 to be close to the inner end of the air conditioner and to point to both sides respectively; and controlling the grille 30 to be stationary at the side wall of the grille 30 blocking part of the air outlet 11.
[0185] By controlling the first air guide component 41 and the second air guide component 42 to be fixed in an inward V-shape or at least one of them to swing left and right, the air gathering effect can be achieved; and by keeping the grille in the closed position, the area of the grille component 30 blocking the airflow can be reduced, the wind resistance can be reduced, and the air outlet efficiency can be improved.
[0186] In other feasible embodiments, step S102 may include: in response to an operating state command containing tenth air supply mode information, controlling the first air guide assembly 41 and the second air guide assembly 42 to be stationary or at least one of them to swing left and right, and causing the first air guide assembly 41 and the second air guide assembly 42 to be close to the inner end of the air conditioner and to point towards the center respectively; and controlling the grille 30 to be stationary at the side wall of the grille 30 blocking part of the air outlet 11.
[0187] By controlling the first air guide component 41 and the second air guide component 42 to be fixed in an outward V-shape air dispersion posture or at least one of them to swing left and right, the air dispersion effect can be achieved; and by keeping the grille in the closed position, the area of the grille component 30 blocking the airflow can be reduced, the wind resistance can be reduced, and the air outlet efficiency can be improved.
[0188] See Figure 6 and Figure 7 Optionally, in some embodiments, step S102 may further include: in response to an operating state command containing strong wind mode information, controlling the first air guide component 41 and the second air guide component 42 to be fixed and perpendicular to the first plane; the first plane is the plane where the air outlet 11 is located; and controlling the grille 30 to be fixed at the grille surface 32 parallel to the first plane.
[0189] With this configuration, the airflow passing through the first air guide assembly 41 and the second air guide assembly 42 blows straight out in the vertical direction, thereby increasing the air delivery distance; the grille surface 32 is parallel to the plane of the air outlet 11, and the airflow is gathered and dispersed or softened through the air guide channel 31 of the grille surface 32, which significantly reduces wind noise and airflow disturbance.
[0190] In some embodiments, the grille 30 includes a first grille surface 321 and a second grille surface 322, and the air guide channel 31 of the grille 30 is configured to converge the airflow flowing from the first grille surface 321 to the second grille surface 322.
[0191] See Figure 6 Optionally, in some embodiments, step S102 may include: in response to an operating state command containing strong wind mode information, controlling both the first air guide component 41 and the second air guide component 42 to be fixed and perpendicular to the first plane; the first plane is the plane where the air outlet 11 is located; and controlling the grille 30 to be fixed at the first grille surface 321 parallel to the first plane.
[0192] With this configuration, the airflow passing through the first air guide assembly 41 and the second air guide assembly 42 blows straight out in the vertical direction, thereby increasing the air delivery distance; the airflow enters the air guide channel 31 through the first grille surface 321 and converges under the guidance of the gradually narrowing inner diameter of the air guide channel 31, which can achieve high-speed directional air delivery.
[0193] See Figure 7 Optionally, in some embodiments, step S102 may include: in response to an operating state command containing strong wind mode information, controlling both the first air guide component 41 and the second air guide component 42 to be fixed and both perpendicular to the first plane; the first plane is the plane where the air outlet 11 is located; and controlling the grille 30 to be fixed at the second grille surface 322 parallel to the first plane.
[0194] With this configuration, the airflow passing through the first air guide assembly 41 and the second air guide assembly 42 blows straight out in the vertical direction, thereby increasing the air delivery distance; the airflow enters the air guide channel 31 through the second grille surface 322 and diffuses under the guidance of the gradually expanding inner diameter of the air guide channel 31, thereby achieving wide-area coverage air delivery.
[0195] Optionally, in some embodiments, step S102 may further include: in response to an operating state command containing direct blowing mode information, controlling the first air guide assembly 41 and the second air guide assembly 42 to be fixed and perpendicular to the first plane; the first plane is the plane where the air outlet 11 is located; the grille 30 is fixed at the side wall of the grille 30 blocking part of the air outlet 11.
[0196] With this configuration, the airflow passing through the first air guide assembly 41 and the second air guide assembly 42 blows straight out in the vertical direction, thereby increasing the air delivery distance; the grille 30 minimizes the obstruction of the air outlet 11, and the airflow blows straight out almost unimpeded, thereby increasing the air delivery intensity and meeting the user's urgent need for rapid cooling or heating.
[0197] Optionally, in some embodiments, step S102 may further include: in response to the running state command containing air guiding mode information, controlling the first air guiding component 41, the second air guiding component 42 and the grille 30 to swing left and right, and making the extension directions of the first air guiding component 41 and the second air guiding component 42 parallel to each other with the vertical line of the grille 30 in the horizontal plane, or making the extension directions of the first air guiding component 41 and the second air guiding component 42 perpendicular to the vertical line of the grille 30 in the horizontal plane.
[0198] See Figure 8In some embodiments, step S102 may include: in response to an operating state command containing airflow mode information, controlling the first airflow guide assembly 41, the second airflow guide assembly 42 and the grille 30 to swing left and right, and making the extension directions of the first airflow guide assembly 41 and the second airflow guide assembly 42 parallel to the vertical line of the grille 30 in the horizontal plane.
[0199] In other words, when the grille 30 is flat, the extension direction of each air guide blade in the first air guide assembly 41 is parallel to the extension direction of each air guide blade in the second air guide assembly 42, and both are perpendicular to the plane where the grille 30 is located.
[0200] With this configuration, the air guide mechanism 40 and the grille 30 sweep air in the same direction. The airflow is swept left and right in the same direction by the first air guide assembly 41 and the second air guide assembly 42 and the grille 30. After the airflow is guided left and right in the same direction by the first air guide assembly 41 and the second air guide assembly 42, it is swept left and right again by the grille 30, which can significantly improve the airflow coverage.
[0201] Optionally, in some embodiments, step S102 may include: in response to an operating state command containing air guiding mode information, controlling the first air guiding component 41, the second air guiding component 42, and the grille 30 to swing left and right, such that the extension directions of the first air guiding component 41 and the second air guiding component 42 are parallel to the vertical line of the grille 30 in the horizontal plane; and ensuring that during the left and right swing of the grille 30, the first grille surface 321 faces the inside of the air conditioner.
[0202] This configuration, while ensuring a large airflow coverage area, utilizes the wind-gathering effect of the air guide channel 31 of the grille 30 to improve the air supply intensity and air supply distance in the middle area.
[0203] Optionally, in some embodiments, step S102 may include: in response to an operating state command containing airflow mode information, controlling the first airflow guide assembly 41, the second airflow guide assembly 42, and the grille 30 to swing left and right, such that the extension directions of the first airflow guide assembly 41 and the second airflow guide assembly 42 are parallel to the vertical line of the grille 30 in the horizontal plane; and ensuring that during the left and right swing of the grille 30, the second grille surface 322 faces the inside of the air conditioner.
[0204] By using the air guide mechanism 40 and the grille 30 to sweep air in the same direction, and the air expansion effect of the air guide channel 31 of the grille 30, the airflow coverage range can be further expanded.
[0205] In other feasible embodiments, step S102 may include: in response to an operating state command containing airflow mode information, controlling the first airflow component 41, the second airflow component 42 and the grille 30 to swing left and right, and making the extension directions of the first airflow component 41 and the second airflow component 42 perpendicular to the vertical line of the grille 30 in the horizontal plane.
[0206] In other words, when the grille 30 is flat, the extension direction of each air guide blade in the first air guide assembly 41 is parallel to the extension direction of each air guide blade in the second air guide assembly 42, and both are parallel to the plane where the grille 30 is located.
[0207] With this configuration, the air guide mechanism 40 and the grille 30 sweep air in opposite directions. The airflow is guided left and right in the same direction by the first air guide assembly 41 and the second air guide assembly 42 and the grille 30. After the airflow is guided left and right in the same direction by the first air guide assembly 41 and the second air guide assembly 42, it is swept left and right again in opposite directions by the grille 30. This can significantly enhance the airflow disturbance and mixing effect, and improve the softness and comfort of the wind. At the same time, the vortex effect generated by the reverse sweeping can delay the airflow attenuation and extend the effective air delivery distance, which is especially suitable for large space scenarios.
[0208] Optionally, in some embodiments, step S102 may further include: in response to the operating state command containing air guiding mode information, controlling the first air guiding component 41, the second air guiding component 42 and the grille 30 to swing left and right, and making the extension directions of the first air guiding component 41 and the second air guiding component 42 parallel to the vertical line of the grille 30 in the horizontal plane; and making the first grille surface 321 face the inside of the air conditioner during the left and right swing of the grille 30.
[0209] This configuration, while ensuring gentle and comfortable airflow, utilizes the air-gathering effect of the air-guiding channel 31 of the grille 30 to improve the air supply intensity and distance in the middle area.
[0210] Optionally, in some embodiments, step S102 may include: in response to an operating state command containing airflow mode information, controlling the first airflow guide assembly 41, the second airflow guide assembly 42, and the grille 30 to swing left and right, such that the extension directions of the first airflow guide assembly 41 and the second airflow guide assembly 42 are parallel to the vertical line of the grille 30 in the horizontal plane; and ensuring that during the left and right swing of the grille 30, the second grille surface 322 faces the inside of the air conditioner.
[0211] By using the reverse sweeping of the air guide mechanism 40 and the grille 30, as well as the air expansion effect of the air guide channel 31 of the grille 30, the airflow coverage range can be further expanded.
[0212] In some embodiments, one of the first air guide assembly 41 and the second air guide assembly 42 is fixed, while the other swings left and right, and both are inclined to intersect the first plane in opposite directions. The first plane is the plane where the air outlet 11 is located.
[0213] This configuration not only allows the first air guide component 41 and the second air guide component 42 to be in an inward-pointing or outward-pointing air-dispersing posture, achieving the effect of gathering or dispersing air; it also allows directional air supply to one side of the area by fixing one of the first air guide component 41 and the second air guide component 42 (either the first air guide component 41 or the second air guide component 42 can be selected as needed), and sweeping air to the other side of the area by swinging the other of the first air guide component 41 and the second air guide component 42 from side to side, thereby expanding the air supply coverage.
[0214] In some embodiments, the air conditioner may also include two sliding doors 20, which are arranged in a left-right direction and are respectively slidable relative to the housing assembly 10 to open or at least partially close the air outlet 11.
[0215] See Figure 9 Optionally, in some embodiments, step S102 may further include: in response to the running state command containing closing mode information, controlling the sliding door 20 to be in the closed position, controlling the first air guide assembly 41 and the second air guide assembly 42 to be stacked in the same direction in sequence; and controlling the grille 30 to be fixed at the side wall of the grille 30 to block the air outlet 11, forming the appearance surface exposed to the sliding door 20.
[0216] By controlling the first air guide assembly 41 and the second air guide assembly 42 to be stacked in the same direction when the air outlet 11 is closed, it is possible to avoid the first air guide assembly 41 and the second air guide assembly 42 interfering with the movement of the grille 30, ensuring that the grille 30 stably blocks the air outlet 11 in the fixed state, and reducing the size of the air conditioner in the front and rear directions, thereby improving the overall structural compactness.
[0217] Optionally, in some embodiments, when the air outlet 11 is closed, the outer surface of the grille 30 is sandwiched between the two sliding doors 20 to form a continuously transitioning display surface.
[0218] This design improves the appearance of gaps, height differences, and material breaks between different components, resulting in a smooth and complete visual plane that makes the indoor unit look more integrated. Furthermore, the flat and continuous display surface effectively reduces the gap between the grille 30 and the sliding door 20, effectively preventing external dust from entering the indoor unit and thus improving the overall cleaning performance of the indoor unit.
[0219] The beneficial technical effects of the technical solutions provided in this application include:
[0220] In the air conditioning control method of this application embodiment, by controlling the first air guide component 41 and the second air guide component 42 to be stationary or at least one of them to swing left and right, and both to intersect the first plane at an angle with opposite directions of inclination, the first plane is the plane where the air outlet 11 is located, the first air guide component 41 and the second air guide component 42 can be in an inward V-shape to gather air or in an outward V-shape to disperse air, thereby achieving the effect of gathering or dispersing air, thereby increasing the air delivery distance or expanding the air delivery coverage, thus adapting to different application scenarios.
[0221] Based on the same inventive concept, embodiments of this application provide an air conditioner, such as... Figures 1 to 10 As shown, the air conditioner may include a housing assembly 10, a grille 30, and an air guide mechanism 40.
[0222] The housing assembly 10 has an air outlet 11.
[0223] The grille 30 is rotatably disposed at the air outlet 11; the grille 30 has an air guide channel 31.
[0224] The air guiding mechanism 40 is rotatably disposed on the rear side of the grille 30; the air guiding mechanism 40 includes a first air guiding component 41 and a second air guiding component 42 arranged in the left-right direction.
[0225] With the air outlet 11 open, the first air guide assembly 41 and the second air guide assembly 42 are both stationary or at least one of them swings left and right, and both intersect the first plane at an angle with opposite directions of inclination. The first plane is the plane where the air outlet 11 is located; and the grille 30 is controlled to be stationary or swing.
[0226] Since the air guiding mechanism 40 includes a first air guiding component 41 and a second air guiding component 42 arranged in the left and right direction, the angles of the first air guiding component 41 and the second air guiding component 42 can be controlled independently, so that the first air guiding component 41 and the second air guiding component 42 are both stationary or at least one of them swings left and right, and both are inclined to intersect the first plane in opposite directions. The first plane is the plane where the air outlet 11 is located, so that the first air guiding component 41 and the second air guiding component 42 are in an inward V-shape air gathering posture or an outward V-shape air dispersing posture, which can achieve the effect of air gathering or air dispersing, thereby increasing the air supply distance or expanding the air supply coverage area.
[0227] See Figure 1 and Figure 2 The housing assembly 10 includes a main housing 12, a base 13, and a top cover 14. The main housing 12 can be designed as a cylindrical or near-cylindrical shape according to design requirements. The evaporator 60 and the cross-flow fan 50 of the indoor unit are both located inside the main housing 12.
[0228] The housing assembly 10 includes an air duct 15 located inside the indoor unit, and the air duct 15 includes an air duct outlet 151.
[0229] In some embodiments, the air outlet 11 is located in front of the air duct outlet 151. The airflow generated by the cross-flow fan 50 flows along the air duct 15 to the air duct outlet 151, passes through multiple air guide channels 31 of the grille 30, and is blown out from the air outlet 11.
[0230] See Figure 3 and Figure 10 In some embodiments, the indoor unit may also include a swing mechanism 70, which is located behind the air guide mechanism 40. The swing mechanism 70 includes a first swing component and a second swing component, which are arranged in the vertical direction and swing independently.
[0231] With the air outlet open, at least one of the first and second sweeping components swings up and down to sweep, freezes, or moves and then freezes.
[0232] When the indoor unit is cooling, the upward tilt of the sweeping blades in the sweeping mechanism 70 can be adjusted to allow the cold air to sink naturally, resulting in a more uniform indoor temperature. When the indoor unit is heating, the downward tilt of the sweeping blades in the sweeping mechanism 70 helps to distribute heat to the entire space more quickly.
[0233] Furthermore, since the air-sweeping mechanism 70 includes a first air-sweeping component and a second air-sweeping component that swing independently, when the indoor unit is heating, the upper first air-sweeping component is closed (perpendicular to the horizontal plane), thereby reducing the upward movement of hot air, and the lower second air-sweeping component tilts downward to accelerate the heating of the ground; when the indoor unit is cooling, the lower second air-sweeping component is closed (perpendicular to the horizontal plane), thereby reducing the downward movement of cold air, and the upper first air-sweeping component tilts upward to accelerate the cooling of the upper air.
[0234] Optionally, in some embodiments, the first sweeping assembly includes at least one first sweeping blade, the first sweeping blade being provided with a third through hole; and / or, the second sweeping assembly includes at least one second sweeping blade, the second sweeping blade being provided with a fourth through hole.
[0235] When the indoor unit is refrigerated and the lower second air-sweeping assembly is closed (perpendicular to the horizontal plane), some cold air can be blown to the ground through the fourth through hole provided in the lower second air-sweeping assembly to ensure that the ground is cool.
[0236] When the indoor heating system is in operation and the upper first sweeping assembly is closed (perpendicular to the horizontal plane), some hot air can be blown out to the upper air through the third through hole provided in the upper first sweeping blade, ensuring the upper air remains warm.
[0237] Optionally, in some embodiments, the air sweeping mechanism 70 is located at the air duct outlet 151.
[0238] See Figure 3 and Figure 10 In some embodiments, the air conditioner may also include a dust filter 80 located between the air guide mechanism 40 and the air sweeping mechanism 70, thereby preventing dust from entering the air duct 15.
[0239] See Figure 3 and Figure 10 Optionally, in some embodiments, the grille 30 includes a first grille surface 321 and a second grille surface 322; the air guide channel 31 of the grille 30 is configured to converge the airflow flowing from the first grille surface 321 to the second grille surface 322.
[0240] This configuration allows the first grille surface 321 of the grille 30 to be close to the inner side of the air conditioner, enabling the airflow guide channel 31 of the grille 30 to converge the airflow, while the second grille surface 322 of the grille 30 is close to the inner side of the air conditioner, allowing the airflow guide channel 31 of the grille 30 to disperse the airflow.
[0241] See Figure 4 Optionally, in some embodiments, when the air outlet 11 is open, the first air guide assembly 41 and the second air guide assembly 42 are both fixed or at least one of them swings left and right, and the ends of the first air guide assembly 41 and the second air guide assembly 42 that are close to the inside of the air conditioner point to the sides respectively; the grille 30 is fixed or swings left and right, and the first grille surface 321 of the grille 30 is close to the inside of the air conditioner.
[0242] By having the first air guide assembly 41 and the second air guide assembly 42 both stationary in an inward V-shape or at least one swinging left and right, the airflow is concentrated. Furthermore, by having the first grille surface 321 of the grille 30 close to the inner side of the air conditioner, the air guide channel 31 of the grille 30 can concentrate the airflow, thereby further improving the air delivery distance and wind speed concentration, and enabling more precise long-distance directional air delivery.
[0243] Optionally, in some embodiments, the grille 30 includes at least two grilles, which are arranged sequentially in the left-right direction.
[0244] With the air outlet 11 open, the first air guide assembly 41 and the second air guide assembly 42 are both stationary or at least one of them swings left and right, so that the ends of the first air guide assembly 41 and the second air guide assembly 42 near the inside of the air conditioner point to both sides respectively; at least two grille pieces 30 are both stationary or at least one of them swings left and right, so that the ends of the at least two grille pieces 30 near the inside of the air conditioner point to both sides respectively, and the first grille surface 321 of the grille piece 30 is close to the inside of the air conditioner.
[0245] By having the first air guide assembly 41 and the second air guide assembly 42 both stationary in an inward V-shape or at least one swinging left and right, the airflow is concentrated. Furthermore, by having the first grille surface 321 of the grille 30 close to the inner side of the air conditioner, the air guide channel 31 of the grille 30 can concentrate the airflow, thereby further improving the air delivery distance and wind speed concentration, and enabling more precise long-distance directional air delivery. Moreover, by having at least two grille 30s stationary in an inward V-shape or at least one swinging left and right, the air delivery distance and wind speed concentration can be further improved.
[0246] See Figure 5 Optionally, in some embodiments, when the air outlet 11 is open, the first air guide assembly 41 and the second air guide assembly 42 are both stationary or at least one of them swings left and right, and the ends of the first air guide assembly 41 and the second air guide assembly 42 near the inner side of the air conditioner point to the center respectively; at least two grille members 30 are controlled to be stationary or at least one of them swings left and right, and the ends of at least two grille members 30 near the inner side of the air conditioner point to the center respectively, and the second grille surface 322 of the grille member 30 is close to the inner side of the air conditioner.
[0247] The first air guide assembly 41 and the second air guide assembly 42 are both fixed in an outward V-shape, or at least one of them swings left and right, thereby dispersing the airflow. The second grille surface 322 of the grille 30 is close to the inner side of the air conditioner, so that the air guide channel 31 of the grille 30 can disperse the airflow, thereby further expanding the air supply coverage and improving the wide-area air supply efficiency.
[0248] Optionally, in some embodiments, the grille 30 includes at least two grilles, which are arranged sequentially in the left-right direction.
[0249] With the air outlet 11 open, the first air guide assembly 41 and the second air guide assembly 42 are both fixed or at least one of them swings left and right, and the ends of the first air guide assembly 41 and the second air guide assembly 42 that are close to the inside of the air conditioner point to the center respectively; the grille 30 is fixed on the side wall of the grille 30 to block the air outlet 11.
[0250] By having the first air guide assembly 41 and the second air guide assembly 42 both stationary in an outward V-shape or at least one swinging left and right, the airflow is dispersed. Furthermore, by having the second grille surface 322 of the grille 30 close to the inner side of the air conditioner, the air guide channel 31 of the grille 30 can disperse the airflow, thereby further expanding the air supply coverage and improving the wide-area air supply efficiency. Moreover, by having at least two grille 30s stationary in an outward V-shape or at least one swinging left and right, the air supply coverage can be further expanded.
[0251] See Figures 3 to 9 Optionally, in some embodiments, the opening of the air guide channel 31 of the grille 30 gradually decreases along the direction from the first grille surface 321 to the second grille surface 322.
[0252] The converging or diverging structure of the air guide channel 31 enables the convergence or dispersion of airflow.
[0253] See Figure 3 In some embodiments, the grille 30 includes a frame 34, multiple ribs 35, and a pivot 33. The multiple ribs 35 are fixed inside the frame 34; adjacent ribs 35 form an air guide channel 31.
[0254] See also Figure 3 Optionally, the pivot 33 is fixed at the center of the length of the frame 34 and is rotatably disposed on the housing assembly 10.
[0255] In some embodiments, the length of the frame 34 is the dimension of the frame 34 in the left-right direction when the grille surface faces the inside of the indoor unit.
[0256] By placing the rotating shaft 33 at the center of the length of the frame 34, the force balance of the grille 30 during rotation can be improved, avoiding structural stress concentration and abnormal noise caused by eccentric rotation; it can also improve the stability of the grille 30, prevent the grille 30 from shaking, and extend the service life of the grille 30.
[0257] In some embodiments, the pivot 33 is embedded in the bearing housing of the housing assembly 10, which enables the grille 30 to rotate smoothly and reduce swaying.
[0258] See Figure 10 Optionally, in some embodiments, the air guide channel 31 of the grille 30 includes multiple inclined air guide channels; the multiple inclined air guide channels extend from both sides of the grille 30 toward the center along the direction from the first grille surface 321 to the second grille surface 322.
[0259] By using the different inclination directions of the inclined air guide channels on both sides, the airflow can be converged or dispersed.
[0260] See Figures 1 to 9 Optionally, in some embodiments, the air conditioner may also include two sliding doors 20, which are arranged in a left-right direction and are respectively slidable relative to the housing assembly 10 to open or at least partially close the air outlet 11.
[0261] See Figure 9Optionally, in some embodiments, when the air outlet 11 is closed, the sliding door 20 is in the closed position, and the first air guide assembly 41 and the second air guide assembly 42 are stacked in the same direction; the grille 30 is fixed, and the side wall of the grille 30 blocks part of the air outlet 11, forming an exposed surface of the sliding door 20.
[0262] By controlling the first air guide assembly 41 and the second air guide assembly 42 to be stacked in the same direction when the air outlet 11 is closed, it is possible to avoid the first air guide assembly 41 and the second air guide assembly 42 interfering with the movement of the grille 30, ensuring that the grille 30 stably blocks the air outlet 11 in the fixed state, and reducing the size of the air conditioner in the front and rear directions, thereby improving the overall structural compactness.
[0263] The beneficial technical effects of the technical solutions provided in this application include:
[0264] Since the air guiding mechanism 40 includes a first air guiding component 41 and a second air guiding component 42 arranged in the left and right direction, the angles of the first air guiding component 41 and the second air guiding component 42 can be controlled independently, so that the first air guiding component 41 and the second air guiding component 42 are both stationary or at least one of them swings left and right, and both are inclined to intersect the first plane in opposite directions. The first plane is the plane where the air outlet 11 is located, so that the first air guiding component 41 and the second air guiding component 42 are in an inward V-shape air gathering posture or an outward V-shape air dispersing posture, which can achieve the effect of air gathering or air dispersing, thereby increasing the air supply distance or expanding the air supply coverage area.
[0265] Based on the same inventive concept, this application provides an air conditioner control device that can realize the air conditioner control method described above.
[0266] The air conditioner control device in this embodiment can execute any of the air conditioner control methods provided in the embodiments of this application. Their implementation principles are similar, and the technical details and effects can be referred to each other. They will not be repeated here.
[0267] Based on the same inventive concept, embodiments of this application provide an electronic device, such as... Figure 12 As shown, the electronic device includes a memory, a processor, and a computer program stored in the memory. The processor executes the computer program to implement the air conditioning control method described above.
[0268] Those skilled in the art will understand that the electronic devices provided in the embodiments of this application can be specifically designed and manufactured for the desired purpose, or may include known devices in general-purpose computers. These devices have computer programs stored therein that are selectively activated or reconfigured. Such computer programs can be stored in a device (e.g., computer) readable medium or in any type of medium suitable for storing electronic instructions and respectively coupled to a bus.
[0269] Compared with related technologies, it can achieve the following: by controlling the first air guide component 41 and the second air guide component 42 to be stationary or at least one of them to swing left and right, and both to intersect the first plane at an angle with opposite directions of inclination, the first plane being the plane where the air outlet 11 is located, the first air guide component 41 and the second air guide component 42 can be in an inward V-shape to gather air or in an outward V-shape to disperse air, thereby achieving the effect of gathering or dispersing air, thereby increasing the air delivery distance or expanding the air delivery coverage, thus adapting to different application scenarios.
[0270] In some embodiments, such as Figure 12 As shown, Figure 12 The illustrated electronic device 2000 includes a processor 2001 and a memory 2003. The processor 2001 and the memory 2003 are communicatively connected, for example, via a bus 2002.
[0271] Optionally, the electronic device 2000 may also include a communication unit 2004. The communication unit 2004 can be used for receiving and transmitting signals. The communication unit 2004 allows the electronic device 2000 to communicate wirelessly or wiredly with other devices to exchange data. It should be noted that in practical applications, the communication unit 2004 is not limited to one.
[0272] For example, the communication unit 2004 can be used to receive user-defined desired stationary angles or desired swing amplitudes (i.e., swing angle ranges) sent by other devices.
[0273] In some embodiments, the electronic device may further include an input unit 2005 for inputting key signals related to the user's desired fixed angle or desired swing amplitude (i.e., the swing angle range), or other user settings and function control of the electronic device 2000. The input unit 2005 may include, but is not limited to, one or more of the following: touch screen, physical keyboard, function keys, trackball, mouse, joystick, camera, microphone, etc.
[0274] Optionally, the electronic device 2000 may also include an output unit 2006. The output unit 2006 can be used to output information processed by the processor 2001.
[0275] Processor 2001 may be a CPU (Central Processing Unit), a general-purpose processor, a DSP (Digital Signal Processor), an ASIC (Application Specific Integrated Circuit), an FPGA (Field-Programmable Gate Array), or other programmable logic devices, transistor logic devices, hardware components, or any combination thereof. It can implement or execute the various exemplary logic blocks, modules, and circuits described in conjunction with the disclosure of this application. Processor 2001 may also be a combination that implements computing functions, such as including one or more microprocessor combinations, a combination of a DSP and a microprocessor, etc.
[0276] Bus 2002 may include a pathway for transmitting information between the aforementioned components. Bus 2002 may be a PCI (Peripheral Component Interconnect) bus or an EISA (Extended Industry Standard Architecture) bus, etc. Bus 2002 can be divided into address bus, data bus, control bus, etc. For ease of representation, Figure 12 The bus is represented by a single thick line, but this does not mean that there is only one bus or one type of bus.
[0277] The memory 2003 may be ROM (Read-Only Memory) or other types of static storage devices capable of storing static information and instructions, RAM (Random Access Memory) or other types of dynamic storage devices capable of storing information and instructions, or EEPROM (Electrically Erasable Programmable Read Only Memory), CD-ROM (Compact Disc Read-Only Memory) or other optical disc storage, optical disc storage (including compressed optical discs, laser discs, optical discs, digital universal optical discs, Blu-ray discs, etc.), magnetic disk storage media or other magnetic storage devices, or any other medium capable of carrying or storing desired program code in the form of instructions or data structures and accessible by a computer, but not limited thereto.
[0278] Although Figure 12An electronic device 2000 with various devices is shown; however, it should be understood that it is not required to implement or possess all of the devices shown. More or fewer devices may be implemented or possessed alternatively.
[0279] Optionally, the memory 2003 stores a computer program for executing the solution of this application, and the processor 2001 controls its execution. The processor 2001 executes the computer program stored in the memory 2003 to implement any of the air conditioning control methods provided in the embodiments of this application.
[0280] Based on the same inventive concept, this application provides a computer storage medium storing a computer program, which, when executed by an electronic device, implements the air conditioning control method described above.
[0281] This application provides a computer-readable storage medium. Compared with related technologies, by controlling the first air guide component 41 and the second air guide component 42 to be stationary or at least one of them to swing left and right, and both to intersect the first plane at an angle with opposite directions of inclination, the first plane being the plane where the air outlet 11 is located, the first air guide component 41 and the second air guide component 42 can be in an inward V-shape air gathering posture or an outward V-shape air dispersing posture, thereby achieving the effect of air gathering or air dispersing, thereby increasing the air delivery distance or expanding the air delivery coverage area, thus adapting to different application scenarios.
[0282] This application provides various optional embodiments of a computer-readable storage medium suitable for any of the above-described air conditioning control methods. Specific technical details and effects are not elaborated here.
[0283] Based on the same inventive concept, this application provides a computer program product, including a computer program that, when executed by a processor, implements the above-described air conditioning control method.
[0284] In the description of this application, the terms "center," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicate directions or positional relationships based on the exemplary directions or positional relationships shown in the accompanying drawings. They are used to facilitate the description or simplification of the embodiments of this application and are not intended to indicate or imply that the device or component referred to must have a specific orientation or be constructed and operated in a specific orientation. Therefore, they should not be construed as limitations on this application.
[0285] The terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this application, unless otherwise stated, "a plurality of" means two or more.
[0286] The above are only some embodiments of this application. It should be noted that for those skilled in the art, other similar implementation methods based on the technical concept of this application, without departing from the technical concept of this application, also fall within the protection scope of the embodiments of this application.
Claims
1. An air conditioner control method characterized by comprising: The air conditioner includes a housing assembly with an air outlet, a grille rotatably disposed at the air outlet, and an air guide mechanism rotatably disposed at the rear side of the grille; the air guide mechanism includes a first air guide component and a second air guide component arranged in a left-right direction; the grille has an air guide channel; the grille includes a first grille surface and a second grille surface, and the air guide channel of the grille is configured to converge the airflow flowing from the first grille surface to the second grille surface; The air conditioning control method includes the following steps: Obtain the operating status command of the air conditioner; In response to the operating status command including air supply status information, the system controls both the first air guide component and the second air guide component to be stationary or at least one of them to swing left and right, and makes the ends of the first air guide component and the second air guide component close to the inside of the air conditioner point to both sides respectively; and controls the grille to be stationary or swing left and right, and makes the first grille surface of the grille close to the inside of the air conditioner. Alternatively, control both the first and second air guide components to be stationary or at least one of them to swing left and right, so that the ends of the first and second air guide components near the inner side of the air conditioner point towards the center; and control the grille to be stationary or swing left and right, so that the second grille surface of the grille is close to the inner side of the air conditioner; Alternatively, the first air guide assembly and the second air guide assembly are controlled to be stationary or at least one of them swings left and right, and both are inclined to intersect the first plane in opposite directions, the first plane being the plane where the air outlet is located; and the grille is controlled to be stationary on the side wall of the grille to partially block the air outlet.
2. The air conditioner control method according to claim 1, characterized by, Control the first air guide component and the second air guide component to be stationary or at least one of them to swing left and right, and make the first air guide component and the second air guide component point to the sides at the inner end of the air conditioner respectively; Controlling the grille to be stationary or swinging left and right, and making the first grille surface of the grille close to the inner side of the air conditioner, includes: The first air guide assembly and the second air guide assembly are fixed at a first position, such that the first air guide assembly and the second air guide assembly are positioned at one end near the inside of the air conditioner, pointing to both sides respectively; and the grille is fixed at the first grille surface of the grille near the inside of the air conditioner. Alternatively, the first air guide assembly and the second air guide assembly can be controlled to swing left and right, with the ends of the first air guide assembly and the second air guide assembly near the inner side of the air conditioner pointing to both sides respectively; and the grille can be controlled to be fixed at the first grille surface of the grille near the inner side of the air conditioner. Alternatively, the first air guide assembly and the second air guide assembly are fixed at a first position, such that the first air guide assembly and the second air guide assembly are close to the inner side of the air conditioner and point to both sides respectively; and the grille is controlled to swing left and right, and the first grille surface of the grille is close to the inner side of the air conditioner. Alternatively, the first air guide assembly and the second air guide assembly can be controlled to swing left and right, with the ends of the first air guide assembly and the second air guide assembly near the inner side of the air conditioner pointing to the sides respectively; and the grille can be controlled to swing left and right, so that the first grille surface of the grille is close to the inner side of the air conditioner.
3. The air conditioner control method according to claim 1, characterized by, The grid element includes at least two, and the at least two grid elements are arranged sequentially in the left-right direction; Controlling the grille to be stationary or swinging left and right, and making the first grille surface of the grille close to the inside of the air conditioner, includes: Control at least two of the grille members to be stationary or at least one of them to swing left and right, such that the ends of at least two of the grille members near the inside of the air conditioner point to the sides respectively, and the first grille surface of the grille member is close to the inside of the air conditioner.
4. The air conditioner control method according to claim 1, characterized by, Control the first air guide component and the second air guide component to be stationary or at least one of them to swing left and right, and make the first air guide component and the second air guide component point to the sides at the inner end of the air conditioner respectively; Controlling the grille to be stationary or swinging left and right, and making the first grille surface of the grille close to the inner side of the air conditioner, includes: The first air guide assembly and the second air guide assembly are fixed at the second position, such that the ends of the first air guide assembly and the second air guide assembly near the inner side of the air conditioner point towards the center; and the grille is fixed at the second grille surface of the grille near the inner side of the air conditioner. Alternatively, the first and second air guide components can be controlled to swing left and right, with the ends of the first and second air guide components near the inner side of the air conditioner pointing towards the center; and the grille can be fixed at the second grille surface of the grille near the inner side of the air conditioner. Alternatively, the first air guide assembly and the second air guide assembly are fixed in the second position, such that the ends of the first air guide assembly and the second air guide assembly near the inner side of the air conditioner point towards the center; and the grille is controlled to swing left and right, and the second grille surface of the grille is brought close to the inner side of the air conditioner. Alternatively, the first and second air guide components can be controlled to swing left and right, with the ends of the first and second air guide components near the inner side of the air conditioner pointing towards the center; and the grille can be controlled to swing left and right, with the second grille surface of the grille near the inner side of the air conditioner.
5. The air conditioner control method according to claim 1, characterized by, The grid element includes at least two, and the at least two grid elements are arranged sequentially in the left-right direction; Controlling the grille to be stationary or swinging left and right, and causing the second grille surface of the grille to be close to the inner side of the air conditioner, includes: Control at least two of the grille members to be stationary or at least one of them to swing left and right, such that the ends of at least two of the grille members near the inner side of the air conditioner point towards the center, and the second grille surface of the grille members is close to the inner side of the air conditioner.
6. The air conditioning control method according to claim 1, characterized in that, Controlling both the first and second air guide components to be stationary, or at least one of them to swing left and right, both intersecting a first plane at an angle with opposite directions of inclination, the first plane being the plane where the air outlet is located; and controlling the grille to be stationary on the side wall of the grille, partially obscuring the air outlet, including: Control the first air guide assembly and the second air guide assembly to be stationary or at least one of them to swing left and right, and make the first air guide assembly and the second air guide assembly near the inner side of the air conditioner point to the sides respectively; and control the grille to be stationary on the side wall of the grille to partially block the air outlet; Alternatively, the first air guide assembly and the second air guide assembly are both fixed in place, or at least one of them swings left and right, such that the ends of the first air guide assembly and the second air guide assembly near the inner side of the air conditioner point towards the center; and the grille is fixed in place on the side wall of the grille to partially block the air outlet.
7. The air conditioner control method according to claim 1, characterized by, Also includes: In response to the operating status command including strong wind mode information, both the first air guide component and the second air guide component are fixed in place and perpendicular to the first plane; the first plane is the plane where the air outlet is located; And control the grid element to be fixed at the grid surface parallel to the first plane.
8. The air conditioner control method according to claim 1, characterized by, Also includes: In response to the operating status command including direct blowing mode information, both the first air guide component and the second air guide component are controlled to be stationary and perpendicular to the first plane; the first plane is the plane where the air outlet is located; And control the grille to be fixed at the side wall of the grille to block the air outlet.
9. The air conditioning control method according to claim 1, characterized in that, Also includes: In response to the operating status command including airflow mode information, the first airflow guide component, the second airflow guide component, and the grille are all controlled to swing left and right, and the extension directions of the first airflow guide component and the second airflow guide component are parallel to the vertical line of the grille in the horizontal plane, or the extension directions of the first airflow guide component and the second airflow guide component are perpendicular to the vertical line of the grille in the horizontal plane.
10. The air conditioner control method according to claim 1, characterized by, The air conditioner also includes two sliding doors, which are arranged in a left-right direction and are respectively slidable relative to the housing assembly to open or at least partially close the air outlet; The air conditioning control method further includes the following steps: In response to the operating status command including the closing mode information, the sliding door is controlled to be in the closed position, the first air guide assembly and the second air guide assembly are controlled to be stacked in the same direction in sequence; and the grille is controlled to be fixed in place, with the side wall of the grille partially blocking the air outlet, forming an exposed surface of the sliding door.
11. An air conditioner characterized by comprising: include: Housing assembly with air outlet; The grille is rotatably mounted at the air outlet; The grille has an air guide channel; The grille includes a first grille surface and a second grille surface; the air guide channel of the grille is configured to converge the airflow from the first grille surface to the second grille surface; An air guiding mechanism is rotatably disposed on the rear side of the grille; the air guiding mechanism includes a first air guiding component and a second air guiding component arranged in a left-right direction; When the air outlet is open, the first air guide assembly and the second air guide assembly are both stationary or at least one of them swings left and right, and the ends of the first air guide assembly and the second air guide assembly that are close to the inside of the air conditioner point to both sides respectively; the grille is stationary or swings left and right, and the first grille surface of the grille is close to the inside of the air conditioner. Alternatively, the first air guide assembly and the second air guide assembly are both stationary or at least one of them swings left and right, such that the ends of the first air guide assembly and the second air guide assembly near the inner side of the air conditioner point towards the center; the grille is stationary or swings left and right, such that the second grille surface of the grille is near the inner side of the air conditioner; Alternatively, the first air guide assembly and the second air guide assembly are both stationary or at least one of them swings left and right, and both intersect the first plane at an angle with opposite directions of inclination, the first plane being the plane where the air outlet is located; the grille is stationary on the side wall of the grille, partially blocking the air outlet.
12. The air conditioner of claim 11, wherein, The grid element includes at least two, and the at least two grid elements are arranged sequentially in the left-right direction; When the air outlet is open, both the first air guide component and the second air guide component are stationary or at least one of them swings left and right, and the ends of the first air guide component and the second air guide component near the inside of the air conditioner point to the sides respectively. At least two of the grille members are fixed in place or at least one of them swings left and right, such that the ends of at least two of the grille members near the inside of the air conditioner point to the sides respectively, and the first grille surface of the grille member is close to the inside of the air conditioner.
13. The air conditioner according to claim 11, characterized in that, When the air outlet is open, the first air guide component and the second air guide component are both stationary or at least one of them swings left and right, and the ends of the first air guide component and the second air guide component near the inside of the air conditioner point towards the center respectively; At least two of the grille members are fixed in place or at least one of them swings left and right, such that the ends of at least two of the grille members near the inside of the air conditioner point towards the center, and the second grille surface of the grille member is close to the inside of the air conditioner.
14. The air conditioner of claim 11, wherein The grid element includes at least two, and the at least two grid elements are arranged sequentially in the left-right direction; When the air outlet is open, the first air guide component and the second air guide component are both stationary or at least one of them swings left and right, and the ends of the first air guide component and the second air guide component near the inside of the air conditioner point towards the center respectively; The grille is fixed to the side wall of the grille, partially obscuring the air outlet.
15. The air conditioner of claim 11, wherein Along the direction from the first grille surface to the second grille surface, the opening of the air guide channel of the grille gradually decreases.
16. The air conditioner of claim 11, wherein The air guide channel of the grille includes multiple inclined air guide channels; Along the direction from the first grille surface to the second grille surface, a plurality of the inclined air guide channels extend from both sides of the grille toward the center.
17. The air conditioner of claim 11, wherein Also includes: Two sliding doors, arranged in a left-right direction and slidable relative to the housing assembly, to open or at least partially close the air outlet; With the air outlet closed, the sliding door is in the closed position, and the first air guide assembly and the second air guide assembly are stacked in the same direction; the grille is fixed in place, and the side wall of the grille partially blocks the air outlet, forming an exposed surface of the sliding door.
18. A control device of an air conditioner, characterized by comprising: It can implement the air conditioning control method as described in any one of claims 1-10.
19. An electronic device comprising a memory, a processor, and a computer program stored in the memory, characterized in that, The processor executes the computer program to implement the air conditioning control method as described in any one of claims 1-10.
20. A computer storage medium having stored thereon a computer program, characterized in that When the computer program is executed by an electronic device, it implements the air conditioning control method as described in any one of claims 1-10.
21. A computer program product comprising a computer program, characterized in that, When the computer program is executed by the processor, it implements the air conditioning control method according to any one of claims 1-10.