Air supply control method and control device of air outlet device

By acquiring user input information to generate control parameters and visually displaying the zones and oscillation angle range, the problem of air outlet devices failing to meet the needs of different users is solved, realizing user-friendly interaction and personalized wind speed control, thus improving the user experience.

CN120889765APending Publication Date: 2025-11-04GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN202511050564.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-07-29
Publication Date
2025-11-04

AI Technical Summary

Technical Problem

Existing air outlet devices cannot simultaneously meet the different cooling and heating needs of different users, making it difficult for users to intuitively judge whether the preset settings match their actual needs.

Method used

By acquiring user input information, control parameters are generated and the number of zones and the range of oscillation angles are visualized. The status of the zones is displayed using light bars and color/brightness, and dynamic flashing reminds the user to confirm, avoiding accidental settings and enabling user interaction and real-time adjustment.

Benefits of technology

Users can intuitively determine and adjust the number of air vents and the range of oscillation angles, improving the user experience, reducing the risk of missetting, and meeting the personalized needs of different users.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention relates to the technical field of air outlet devices, and discloses an air supply control method and device of an air outlet device, and the air supply control method of the air outlet device comprises the steps that user input information is obtained, comprise the number of partitions for partitioning the maximum head shaking angle of the air outlet device, head shaking angle ranges corresponding to the partitions and air speed gears corresponding to the partitions; the user input information is analyzed, control parameters are generated, and the control parameters comprise display control parameters and operation control parameters; the display control parameters are applied to control the air outlet device to visually display the number of the partitions and the head shaking angle ranges corresponding to the partitions, so that a user can visually feel and judge whether the number of the partitions and the head shaking angle ranges corresponding to the partitions meet the actual requirements of the user or not, and the use experience of the user is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the technical field of air outlet devices, in particular to an air supply control method and control device of an air outlet device. BACKGROUND

[0002] In the use of the fan, it is found that different individuals have different needs for cold and heat, and different sensitivities to cold and heat. A fan cannot simultaneously meet the different needs of two or more users. For example, there is a child on one side of the bed in the same room who needs a small range of wind speed because he is afraid of cold, and there is an adult on the other side of the bed who needs a large range of wind speed because he is afraid of heat. At this time, two fans must be used to supply air, which is more troublesome.

[0003] In order to solve the above problems, fans that can control different wind speeds at different angles have appeared on the market, but users cannot intuitively determine whether the pre-setting matches the actual needs of the users. SUMMARY

[0004] Therefore, the present application provides an air supply control method and control device of an air outlet device to solve the problem that the air outlet devices on the market that control different wind speeds at different angles cannot intuitively determine whether the pre-setting matches the actual needs of the users.

[0005] In a first aspect, the present application provides an air supply control method of an air outlet device, comprising:

[0006] obtaining user input information, including the number of partitions of the maximum tilt angle of the air outlet device, the tilt angle range corresponding to each partition, and the wind speed range corresponding to each partition;

[0007] analyzing the user input information to generate control parameters, including display control parameters and operation control parameters;

[0008] applying the display control parameters to control the air outlet device to visually display the number of partitions and the tilt angle range corresponding to each partition.

[0009] Beneficial effects: The present application obtains user input information such as the number of partitions of the maximum tilt angle of the air outlet device, the tilt angle range corresponding to each partition, and the wind speed range corresponding to each partition, and generates control parameters according to the user input information, controls the air outlet device to visually display the number of partitions and the tilt angle range corresponding to each partition, so that the user can intuitively feel and determine whether the number of partitions and the tilt angle range corresponding to each partition meet the actual needs of the user, so as to make timely adjustments according to the actual needs, thereby improving the user experience.

[0010] In an alternative embodiment, the control of the air outlet device visual display of the number of partitions and each corresponding range of the swing angle, including control of the light bar to display the corresponding display of the number of partitions and each corresponding range of the swing angle.

[0011] Beneficial effect: the light bar displays the number of partitions and each corresponding range of the swing angle, making it easier for users to understand the partition state and compare it with the actual partition demand. Compared with the display of numbers and words, it can make a more rapid judgment, and illiterate people can also easily judge, further improving the convenience.

[0012] In an alternative embodiment, the control of the light bar to display the corresponding display of the number of partitions and each corresponding range of the swing angle, including:

[0013] Control the light bar corresponding to the selected wind speed gear to flash; after obtaining the wind speed gear confirmation signal, control the display state of the light bar from flashing to constant.

[0014] Beneficial effect: control the light bar corresponding to the wind speed gear to flash to remind the user of the swing angle range of the current set wind speed gear, avoiding the misconfirmation situation; the flashing state clearly distinguishes between "selecting" and "confirmed" states, and the forced secondary confirmation can reduce the risk of wind speed gear missetting. In addition, dynamic flashing quickly attracts attention, and the constant state can provide users with a more intuitive perception.

[0015] In an alternative embodiment, the control of the light bar to display the corresponding display of the number of partitions and each corresponding range of the swing angle, including:

[0016] Control the light bar to display the number of partitions and / or each corresponding range of the swing angle with different colors and / or different brightness.

[0017] Beneficial effect: the light bar displays the number of partitions and / or each corresponding range of the swing angle with different colors and / or different brightness, which more obviously distinguishes different partitions and further improves the identification convenience.

[0018] In an alternative embodiment, the control method further includes:

[0019] When the air outlet device swings to the next partition, control the light bar corresponding to the previous partition to extinguish.

[0020] Beneficial effect: when the air outlet device swings to the next partition, the light bar corresponding to the previous partition is extinguished, so that the user knows which angle interval the air outlet device swings to. Moreover, it can also avoid the situation that the judgment difficulty increases due to the light of the previous partition not being extinguished and the light of the next partition being on.

[0021] In one optional implementation, the two wind speed settings corresponding to each pair of adjacent zones are X. n File and X n+1 File, and satisfy |X n -X n+1 |<2.

[0022] Beneficial effects: The fan speed settings of adjacent zones do not jump between zones, avoiding excessively rapid changes in motor speed that could cause the air outlet to fail to reach the corresponding speed set for that zone when it moves to that zone, thus affecting the user experience; moreover, excessively rapid changes in motor speed can also affect the lifespan of the motor.

[0023] In one optional implementation, before obtaining user input information, the method further includes:

[0024] After receiving the wake-up command input by the user through a mobile terminal or voice module, the air outlet device is controlled to enter the first mode. The first mode is the number of custom-generated partitions, the range of oscillation angles corresponding to each partition, and the wind speed level corresponding to each partition when the air outlet device automatically divides the maximum oscillation angle of the air outlet device into partitions.

[0025] Beneficial effects: After the air outlet is connected to Wi-Fi, users can remotely input information on their mobile devices or interact with the air outlet through a specific wake-up word from the voice module. This allows them to enter the first mode, which allows for customized airflow. Users can then input information such as the number of custom-generated zones when dividing the maximum oscillation angle of the air outlet, the oscillation angle range corresponding to each zone, and the wind speed level corresponding to each zone. This information is displayed and controlled by the user, enabling interaction with the device.

[0026] In an optional implementation, the control method further includes:

[0027] Obtain feedback information from users based on the number of partitions displayed visually and the range of head-shaking angles corresponding to each partition;

[0028] Based on the feedback information, determine whether the control parameters match the user's current needs;

[0029] If the control parameters do not match the user's current needs, the user will be prompted to adjust the control parameters until they match the user's current needs.

[0030] Beneficial effects: users can make feedback according to the number of partitions in the visual display and the corresponding head shaking angle range of each partition, judge whether it matches the current needs of the user through the feedback information, and when the control parameters do not match the current needs of the user, the user is reminded to adjust the control parameters in time until the control parameters match the current needs of the user, and when changes are needed, it can also be adjusted in time to meet the actual needs of the user.

[0031] In an optional embodiment, after the operation control parameters are generated, the method further comprises:

[0032] controlling the operation of the air outlet device according to the operation control parameters, so that the air speed is adjusted to the preset air speed when the air outlet device rotates to the corresponding head shaking angle.

[0033] Beneficial effects: after analyzing the user input information and generating operation control parameters, the operation of the air outlet device is controlled according to the operation control parameters, so that the air speed is adjusted to the preset air speed when the air outlet device rotates to the corresponding head shaking angle, to meet the different needs of different users for air speed gears.

[0034] In a second aspect, the application also provides an air supply control device of an air outlet device, comprising:

[0035] an acquisition module configured to receive user input information, including the number of partitions of head shaking angles, the corresponding head shaking angle range of each partition, and the corresponding air speed gear of each partition;

[0036] a processing module configured to analyze the user input information and generate control instructions;

[0037] a display module configured to execute corresponding display operations according to the control instructions.

[0038] Beneficial effects: the acquisition module receives user input information, the processing module analyzes the user input information and generates control instructions, and the display module executes corresponding display operations according to the control instructions, to visually display the user input information, so that the user can quickly judge whether the input information meets the actual needs of the user, to make adjustments in time according to the actual needs, to improve the user experience. BRIEF DESCRIPTION OF DRAWINGS

[0039] In order to more clearly illustrate the technical solutions in the specific embodiments or related art, the following will briefly introduce the drawings needed to be used in the specific embodiments or related art descriptions. Obviously, the drawings in the following description are some embodiments of the application, and those skilled in the art can also obtain other drawings according to these drawings without creative labor.

[0040] Figure 1 It is a front view of an air outlet device according to an embodiment of the application.

[0041] Figure 2 A control flow diagram of the air supply control method of the air supply device according to an embodiment of the present application;

[0042] Figure 3 Another control flow diagram of the air supply control method of the air supply device according to an embodiment of the present application;

[0043] Figure 4 A control logic diagram of the air supply device according to an embodiment of the present application;

[0044] Figure 5 A diagram of the swing angle and zoning state of the air supply device according to an embodiment of the present application;

[0045] Figure 6 A diagram of the swing angle and zoning state of the air supply device according to another embodiment of the present application;

[0046] Figure 7 A connection relationship diagram of the air supply control device of the air supply device according to an embodiment of the present application;

[0047] Figure 8 A hardware structure diagram of a computer device according to an embodiment of the present application;

[0048] Figure 9 A hardware structure diagram of another computer device according to an embodiment of the present application.

[0049] Explanation of reference signs:

[0050] 1, fan head;

[0051] 2, fan blade motor;

[0052] 3, swing motor;

[0053] 4, display assembly;

[0054] 41, light bar;

[0055] 5, loudspeaker module. DETAILED DESCRIPTION

[0056] In order to make the purpose, technical scheme and advantages of the embodiments of the present application clearer, the technical scheme of the embodiments of the present application will be described clearly and completely below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are some of the embodiments of the present application, but not all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work fall within the scope of protection of the present application.

[0057] In the description of the application, it should be noted that, unless otherwise specified, the meaning of "a plurality of" is two or more; the orientation or positional relationship indicated by the terms "upper", "lower", "left", "right", "inner", "outer", "front end", "rear end", "head", "tail" and the like is based on the orientation or positional relationship shown in the drawings, and is only for the purpose of facilitating the description of the application and simplifying the description, and does not indicate or imply that the device or element referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore cannot be understood as a limitation on the application. In addition, the terms "first", "second", "third" and the like are only for descriptive purposes and cannot be understood as indicating or implying relative importance.

[0058] In the description of the application, it should be noted that, unless otherwise specified and limited, the terms "mounting", "connecting", "connecting" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium. For those skilled in the art, the specific meaning of the above terms in the application can be understood according to the specific circumstances.

[0059] The embodiments of the application will be described below in conjunction with Figures 1 to 9 .

[0060] According to the embodiments of the application, on the one hand, as Figure 2 shown, a method for controlling air supply of an air supply device is provided, comprising:

[0061] obtaining user input information, including the number of partitions of the maximum swing angle of the air supply device, the swing angle range corresponding to each partition, and the wind speed gear corresponding to each partition;

[0062] parsing the user input information to generate control parameters, the control parameters including display control parameters and operation control parameters;

[0063] applying the display control parameters to control the air supply device to visually display the number of partitions and the swing angle range corresponding to each partition.

[0064] The application obtains user input information such as the number of partitions of the maximum swing angle of the air supply device, the swing angle range corresponding to each partition, and the wind speed gear corresponding to each partition, and generates control parameters according to the user input information, controls the air supply device to visually display the number of partitions and the swing angle range corresponding to each partition, so that the user can intuitively feel and judge whether the number of partitions and the swing angle range corresponding to each partition meet the actual needs of the user, so as to make timely adjustments according to the actual needs, in order to improve the user's experience.

[0065] It should be noted that the maximum head shaking angle is the maximum sweeping angle of the air outlet device for head shaking sweeping.

[0066] In some embodiments, the control air outlet device visual display of the number of partitions and the corresponding head shaking angle range of each partition, including control light bar 41 to display the corresponding display of the number of partitions and the head shaking angle range of each partition.

[0067] Lighting light bar 41 to display the corresponding display of the number of partitions and the head shaking angle range of each partition constitutes the partition state, so that the user can more intuitively understand the partition state, and it is convenient to compare with the actual partition demand, compared with the display of numbers and words, it can make a more rapid judgment, and illiterate people can also judge conveniently, further improving the convenience.

[0068] In some embodiments, the control light bar 41 to display the corresponding display of the number of partitions and the head shaking angle range of each partition, including:

[0069] Control the light bar 41 corresponding to the selected wind speed gear to execute flashing; after obtaining the wind speed gear confirmation signal, control the display state of the light bar 41 from flashing to constant light.

[0070] Control the light bar 41 corresponding to the wind speed gear to execute flashing, so as to remind the user of the head shaking angle range of the current set wind speed gear, and avoid the case of mistaken confirmation; the flashing state and the constant light state clearly distinguish the two states of "selecting" and "confirmed", and the forced secondary confirmation can reduce the risk of mistaken setting of the wind speed gear. In addition, dynamic flashing quickly attracts attention, and the constant light state can provide the user with more intuitive perception.

[0071] In some embodiments, the control light bar 41 to display the corresponding display of the number of partitions and the head shaking angle range of each partition, including:

[0072] Control the light bar 41 to display the number of partitions and / or the head shaking angle range of each partition with different colors and / or different brightness.

[0073] Light bar 41 to display the number of partitions and / or the head shaking angle range of each partition with different colors and / or different brightness, which can more obviously distinguish different partitions and further improve the identification convenience.

[0074] In some embodiments, the control method further comprises:

[0075] When the air outlet device shakes to the next partition, control the light bar 41 corresponding to the previous partition to extinguish.

[0076] When the air outlet device shakes to the next partition, the light bar 41 corresponding to the previous partition is turned off, so that the user knows to which angle interval the air outlet device shakes. Moreover, it can also avoid the situation that the judgment is increased due to the light of the previous partition not being turned off and the light of the next partition being turned on.

[0077] In some embodiments, the two wind speed gears corresponding to each adjacent two partitions are X n and X n+1 , respectively, and satisfy |X n -X n+1 | < 2.As shown, when 0°-30° is two gears, 30°-60° can be set as one gear, two gears, or three gears, but cannot be set as 0 gear, 4 gears, or wind speed gears higher than 4 gears. Figure 5

[0078] The wind speed gears of adjacent partitions do not skip gears, avoiding that the motor speed changes too fast, causing the air outlet device to not reach the wind speed corresponding to the corresponding partition when moving to the corresponding partition, affecting the user experience. Moreover, the motor speed changing too fast also affects the motor life.

[0079] In some embodiments, before obtaining the user input information, the method further comprises:

[0080] After obtaining the wake-up instruction input by the user through the mobile terminal or the voice module, the air outlet device enters a first mode, and the first mode is the partition number, the head angle range corresponding to each partition, and the wind speed gear corresponding to each partition generated by the air outlet device when the air outlet device automatically partitions the maximum head angle of the air outlet device.

[0081] After the air outlet device is connected to Wi-Fi, the user can input remotely through the mobile terminal or interact with the air outlet device through the wake-up instruction of the voice module. The air outlet device enters the first mode in which the partition number, the head angle range corresponding to each partition, and the wind speed gear corresponding to each partition are generated by the air outlet device when the air outlet device automatically partitions the maximum head angle of the air outlet device. When the first mode of the air outlet device meets the user's demand, the user confirms through manual or voice input, and the air outlet device operates according to the first mode. When the first mode of the air outlet device does not meet the user's demand, the user can modify the partition number, the head angle range corresponding to each partition, and the wind speed gear corresponding to each partition through manual or voice input, to realize interaction with the user.

[0082] In some embodiments, the user inputs a specific wake-up word such as "customization" or "automatic" through manual or voice input, or the user manually clicks the "customization" or "automatic" button of the mobile terminal, so that the air outlet device enters the first mode.

[0083] In some embodiments, as Figure 3As shown, the control method further comprises:

[0084] Obtaining feedback information made by the user according to the number of partitions and the corresponding head-tilting angle range of each partition displayed in the visualization display;

[0085] According to the feedback information, it is judged whether the control parameter matches the current demand of the user or not;

[0086] When the control parameter does not match the current demand of the user, the user is reminded to adjust the control parameter until the control parameter matches the current demand of the user.

[0087] The user can make feedback according to the number of partitions and the corresponding head-tilting angle range of each partition displayed in the visualization display, and judge whether it matches the current demand of the user or not through the feedback information. When the control parameter does not match the current demand of the user, the user is reminded to adjust the control parameter until the control parameter matches the current demand of the user. When changes are needed, the actual demand of the user can also be adjusted in time to meet the actual demand of the user.

[0088] In some embodiments, after the running control parameter is generated, the method further comprises:

[0089] According to the running control parameter, the running of the air outlet device is controlled, so that when the air outlet device rotates to the corresponding head-tilting angle, the wind speed is adjusted to the preset wind speed.

[0090] After analyzing the user input information and generating the running control parameter, the running of the air outlet device is controlled according to the running control parameter, so that when the air outlet device rotates to the corresponding head-tilting angle, the wind speed is adjusted to the preset wind speed, so as to meet different demands of different users for the wind speed gear.

[0091] As Figure 1 As shown, the specific embodiments of the present application provide a fan, which is provided with a Wi-Fi module, a voice module, a loudspeaker module 5, a display assembly 4 and the like for user customized mode control of the fan. The user can first connect the network through the Wi-Fi module, connect the control module of the fan using the mobile phone APP, and select the custom gear function of the fan on the mobile phone. Or the user can also call the fan to enter the custom gear function mode through the voice wake-up word. The fan blade motor 2 controls the rotation of the fan blade, and the fan blade motor 2 can adjust the wind speed (wind speed gear). The head-tilting motor 3 controls the head-tilting angle of the fan head 1.

[0092] After entering the first mode of custom air supply, the fan can default to divide the maximum swing angle range into two large areas on the center line. The user can also manually modify the partition of the maximum swing angle range on the mobile phone APP or adjust the partition through voice. When manually modifying the partition of the maximum swing angle range, the maximum swing angle can be equally divided into several partitions as needed, or non-equally divided partitions can be made according to actual needs. When adjusting the partition of the maximum swing angle range through voice, in order to simplify the interaction process, the maximum swing angle will be equally divided into several partitions as needed, of course, non-equally divided partitions can also be made according to actual needs.

[0093] Then the wind speed gear setting can be performed for each individual swing angle partition. When setting to the corresponding swing partition, the corresponding light bar 41 on the display screen of the display assembly 4 on the machine body will flash on and then become constant after confirming the gear, and at the same time the loudspeaker module 5 will broadcast the current set partition angle range and gear to remind the user. Then the next swing angle partition can be set, and at the same time the corresponding swing angle range of the light strip of the machine body will flash on and then become constant after confirming the gear set through the mobile phone APP or voice conversation with the fan, and the setting of each partition is sequentially carried out. Different swing angle partitions can be set to different color light displays for distinction.

[0094] Specifically, the user can set the corresponding wind speed gear for each partition, such as 0 gear, 1 gear, 2 gear, 3 gear, 4 gear, 5 gear, etc., and different gears correspond to different wind speeds, such as 0 gear indicating that the air outlet device has a wind speed of 0 m / s when running to the corresponding partition; 1 gear indicating that the air outlet device has a wind speed of 0.8 m / s-1.5 m / s when running to the corresponding partition; 2 gear indicating that the air outlet device has a wind speed of 1.6 m / s-2.2 m / s when running to the corresponding partition; 3 gear indicating that the air outlet device has a wind speed of 2.3 m / s-3.0 m / s when running to the corresponding partition; 4 gear indicating that the air outlet device has a wind speed of 3.1 m / s-3.8 m / s when running to the corresponding partition; 5 gear indicating that the air outlet device has a wind speed of 3.9 m / s-5.0 m / s when running to the corresponding partition.

[0095] For example, Figure 5As shown, the maximum head shaking angle is 120°, and the default can be selected on the APP to divide the head shaking angle into two, three and four equal parts. When divided into two, the wind speed range of the partition located at 0°-60° is set to five, the air outlet device wind speed is 3.9m / s-5.0m / s, and the light bar is set to red light; the wind speed range of the partition located at 60°-120° is set to four, the air outlet device wind speed is 3.1m / s-3.8m / s, and the light bar is set to yellow light. When divided into three, the wind speed range of the partition located at 0°-40° is set to three, the air outlet device wind speed is 2.3m / s-3.0m / s, and the light bar is set to red light; the wind speed range of the partition located at 40°-80° is set to four, the air outlet device wind speed is 3.1m / s-3.8m / s, and the light bar is set to yellow light; the wind speed range of the partition located at 80°-120° is set to three, the air outlet device wind speed is 2.3m / s-3.0m / s, and the light bar is set to green light. When divided into four, the wind speed range of the partition located at 0°-30° is set to two, the air outlet device wind speed is 1.6m / s-2.2m / s, and the light bar is set to red light; the wind speed range of the partition located at 30°-60° is set to three, the air outlet device wind speed is 2.3m / s-3.0m / s, and the light bar is set to yellow light; the wind speed range of the partition located at 60°-90° is set to four, the air outlet device wind speed is 3.1m / s-3.8m / s, and the light bar is set to green light; the wind speed range of the partition located at 90°-120° is set to five, the air outlet device wind speed is 3.9m / s-5.0m / s, and the light bar is set to blue light. The wind speed corresponding to each gear can also be set according to actual conditions. After selecting the angle partition, the corresponding light of the equal interval of the display screen will flash on, for example, the red, yellow and green lights of the three equal parts will light up. Each angle interval can be set to the desired wind speed gear from small to large angle, and the gears of two adjacent angle intervals should be adjacent or the same to prevent the difference between adjacent angle intervals from being too large, the sudden speed increase or decrease of the motor, and the loud noise. After all the gears are set, the three equal parts of red, yellow and green lights will be constantly on for a few seconds to indicate that the setting is complete. Then the lights are extinguished and the fan starts to shake back and forth, the fan head rotates to within 40°, the corresponding red light is on, and then rotates to within 80°, the yellow light gradually lights up and the red light is extinguished, and so on.

[0096] In some embodiments, the maximum head shaking angle can not be divided when partitioning. For example, Figure 6As shown, taking the case of two non-equal partitions, the wind speed of the 0°-30° partition is set to three levels, the wind speed of the air outlet device is 2.3 m / s-3.0 m / s, and the light bar is set to red; the wind speed of the 30°-120° partition is set to four levels, the wind speed of the air outlet device is 3.1 m / s-3.8 m / s, and the light bar is set to green. A user who is afraid of cold is in the 0°-30° partition, and other users who are not afraid of cold are in the 30°-120° partition, and the wind speed of the 0°-30° partition is lower than that of the 30°-120° partition; conversely, if a user who is not afraid of cold is in the 0°-30° partition, and many users who are afraid of cold are in the 30°-120° partition, the 0°-30° partition can be set to five levels, with 3.9 m / s-5.0 m / s air outlet, and the 30°-120° partition is set to four levels, with 3.1 m / s-3.8 m / s air outlet.

[0097] After the partition level of the whole head shaking is set, the fan head shaking motor 3 and the fan blade motor can output corresponding level rotation speed in different head shaking angle ranges according to the program output by the main control board, and the corresponding angle light bar on the machine body will light up at the same time. The corresponding light bar 41 will light up when the fan head shakes in a range, and will gradually extinguish after the head shaking. In the visual simulation, the fan head shakes to where the corresponding light bar 41 lights up, and the corresponding light bar 41 lights up to where the corresponding light bar 41 lights up. At the same time, the change of the corresponding light bar on the display screen is displayed, so as to realize real-time interaction with the user, so as to verify the accuracy of the setting requirement.

[0098] If the user selects 120° partition to be equally divided, the front 0°-60° is set to two levels, and the rear 60°-120° is set to three levels. However, the actual positions of the two user seats may be only in the ranges of 30°-60° and 60°-90°. The user will find that the fan does not blow to the person in the front 0°-30° and the rear 90°-120°, and it is unnecessary to waste time and energy to wait for the head shaking to return to idle.

[0099] Therefore, according to the position of the light, the 120° partition can be actually selected to be divided into four parts, 0°-30° is set to 0 level (0 level represents that the corresponding wind speed of the air outlet device is 0 m / s), 30°-60° is set to two levels, 60°-90° is set to three levels, and 90°-120° is set to 0 level. In this way, the fan will only reciprocate in the range of 30°-90°, and the partition angle position set to 0 level will not be shaken by the fan. The user does not need to waste time waiting for the head shaking to idle. In fact, the user has adjusted the head shaking angle range of the fan from the original 0°-120° to 30°-90°.

[0100] The user can set the air supply position of different head partition angles through mobile phone networking or voice control, and the corresponding light bar 41 on the fan body display screen is lighted, so that the user can confirm whether the currently set partition head angle covers the required air supply range. If multiple head ranges need to be set, the display light bar 41 on the display screen will be distinguished by different colors or brightness levels to achieve visual intuitive feeling of the angle set on the mobile phone and user interaction.

[0101] According to an embodiment of the present application, in a further aspect, there is also provided an air supply control device of an air supply device, comprising:

[0102] An acquisition module is configured to receive user input information, including the number of partitioned head angles, the head angle range corresponding to each partition, and the wind speed position corresponding to each partition;

[0103] A processing module is configured to analyze the user input information and generate a control instruction;

[0104] A display module is configured to perform a corresponding display operation according to the control instruction.

[0105] The user input information is received by the acquisition module, the user input information is analyzed by the processing module and a control instruction is generated, and the display module performs a corresponding display operation according to the control instruction to visually display the user input information, so that the user can quickly judge whether the input information meets the actual needs of the user, so as to make timely adjustments according to the actual needs, thereby improving the user experience.

[0106] Figure 7 A connection structure diagram of the air supply control device of the air supply device provided by an embodiment is given. The control device of the cleaning device in this embodiment is presented in the form of a functional unit. The unit here refers to an ASIC circuit (Application Specific Integrated Circuit), a processor and a memory executing one or more software or fixed programs, and / or other devices that can provide the above functions.

[0107] According to an embodiment of the present application, in a further aspect, there is also provided a computer device, comprising:

[0108] A memory and a processor are in communication connection with each other, the memory stores computer instructions, and the processor executes the computer instructions to perform the air supply control method of the air supply device according to any one of the above aspects.

[0109] The processor of the computer device executes the air supply control method of the air outlet device of the application by executing computer instructions stored in the memory, and intuitively displays user input information, so that the user can quickly determine whether the partition number of the input swing angle and the swing angle range corresponding to the partition meet the actual needs of the user, so as to make timely adjustments according to the actual needs, so as to accurately adapt to the wind speed gear needs of different users, and improve the user experience.

[0110] Figure 8 is a structural schematic diagram of a computer device provided by an optional embodiment of the application. As shown in the figure, the computer device comprises one or more processors 10, a memory 20, and an interface for connecting various components, including a high-speed interface and a low-speed interface. Various components are communicatively connected to each other by different buses, and can be installed on a common motherboard or in other ways as needed. The processor can process instructions executed in the computer device, including instructions stored in the memory or the memory to display graphical information on a GUI on an external input / output device (such as a display device coupled to the interface). In some optional embodiments, multiple processors and / or multiple buses can be used with multiple memories and multiple memories, if necessary. Similarly, multiple computer devices can be connected, each providing part of the necessary operations (for example, as a server array, a group of blade servers, or a multi-processor system). Figure 8 In the above embodiment, a processor 10 is taken as an example.

[0111] The processor 10 can be a central processor, a network processor, or a combination thereof. The processor 10 can further include a hardware chip. The hardware chip can be an application specific integrated circuit, a programmable logic device, or a combination thereof. The programmable logic device can be a complex programmable logic device, a field programmable logic gate array, a general array logic, or any combination thereof.

[0112] The memory 20 stores instructions executable by the at least one processor 10, so that the at least one processor 10 executes the method shown in the above embodiment.

[0113] The memory 20 can include a program storage area and a data storage area. The program storage area can store an operating system, application programs required for at least one function, and the like. The data storage area can store data created according to usage of the computer device, and the like. In addition, the memory 20 can include a high-speed random access memory, and can further include a non-transitory memory such as at least one of a magnetic disk storage device, a flash memory device, or other non-transitory solid state memory device. In some alternative embodiments, the memory 20 can optionally include a memory disposed remotely from the processor 10, which can be connected to the computer device through a network. Examples of the network include, but are not limited to, the Internet, an intranet, a local area network, a mobile communication network, and a combination thereof.

[0114] The memory 20 can include a volatile memory such as a random access memory, and can further include a non-volatile memory such as a flash memory, a hard disk, or a solid state disk. The memory 20 can also include a combination of the above-mentioned types of memories.

[0115] The computer device further includes a communication interface 30 for communication of the computer device with other devices or communication networks.

[0116] In some embodiments, as shown in FIG. 1, the computer device further includes an input device 40 and an output device 50. The processor 10, the memory 20, the input device 40, and the output device 50 can be connected through a bus or other means. Figure 9

[0117] The input device 40 can receive inputted digital or character information, and generate key signal inputs related to user settings and function controls of the computer device, such as a touch screen, a keypad, a mouse, a trackpad, a touchpad, a pointing stick, one or more mouse buttons, a trackball, a joystick, and the like. The output device 50 can include a display device, an auxiliary lighting device (e.g., an LED), a tactile feedback device (e.g., a vibration motor), and the like. The display device includes, but is not limited to, a liquid crystal display, a light emitting diode, a display, and a plasma display. In some alternative embodiments, the display device can be a touch screen.

[0118] According to an embodiment of the present application, in still another aspect, there is also provided a computer readable storage medium having stored thereon computer instructions for causing a computer to execute the air supply control method of the air supply device according to any one of the above.

[0119] ​By executing the computer instructions stored on the computer readable storage medium, the air supply control method of the air outlet device is executed, the user input information is intuitively displayed, the user can quickly judge whether the number of partitioned areas of the inputted swing angle and the swing angle range corresponding to each partitioned area meet the actual demand of the user, so as to make adjustment in time according to the actual demand, so as to accurately adapt to the wind speed gear demand of different users, and improve the use experience of the user.

[0120] Although the embodiments of the present application are described in conjunction with the drawings, various modifications and changes can be made by those skilled in the art without departing from the spirit and scope of the present application, and such modifications and changes fall within the scope defined by the present application.

Claims

1. A method for controlling the air supply of an air outlet device, characterized in that, include: Obtain user input information, including the number of partitions into which the maximum oscillation angle of the air outlet device is divided, the oscillation angle range corresponding to each partition, and the wind speed level corresponding to each partition; The user input information is parsed to generate control parameters, which include display control parameters and operation control parameters. The display control parameters are used to control the air outlet device, which visually displays the number of zones and the oscillation angle range corresponding to each zone.

2. The control method according to claim 1, characterized in that, The air outlet control device visually displays the number of zones and the oscillation angle range corresponding to each zone, including controlling the illumination of light bars to display the number of zones and the oscillation angle range corresponding to each zone.

3. The control method according to claim 2, characterized in that, The control to illuminate the light strip to display the number of zones and the oscillation angle range corresponding to each zone includes: The light strip corresponding to the selected wind speed setting is controlled to flash; after obtaining the wind speed setting confirmation signal, the display state of the light strip is controlled to switch from flashing to constant light.

4. The control method according to claim 2, characterized in that, The control to illuminate the light strip to display the number of zones and the oscillation angle range corresponding to each zone includes: The control light strip displays the number of zones and / or the range of oscillation angles corresponding to each zone in different colors and / or different brightness.

5. The control method according to claim 4, characterized in that, Also includes: When the air outlet oscillates to the next zone, it controls the corresponding light strip in the previous zone to turn off.

6. The control method according to claim 1, characterized in that, The two wind speed settings corresponding to each pair of adjacent zones are X. n File and X n+1 File, and satisfy |X n -X n+1 |<2.

7. The control method according to claim 1, characterized in that, Before obtaining user input information, it also includes: After receiving the wake-up command input by the user through a mobile terminal or voice module, the air outlet device is controlled to enter the first mode. The first mode is the number of custom-generated partitions, the range of oscillation angles corresponding to each partition, and the wind speed level corresponding to each partition when the air outlet device automatically divides the maximum oscillation angle of the air outlet device into partitions.

8. The control method according to any one of claims 1 to 7, characterized in that, Also includes: Obtain feedback information from users based on the number of partitions displayed visually and the range of head-shaking angles corresponding to each partition; Based on the feedback information, determine whether the control parameters match the user's current needs; If the control parameters do not match the user's current needs, the user will be prompted to adjust the control parameters until they match the user's current needs.

9. The control method according to claim 1, characterized in that, After generating the aforementioned operating control parameters, the method further includes: The operation of the air outlet device is controlled according to the operation control parameters, so that when the air outlet device rotates to the corresponding oscillation angle, the wind speed is adjusted to the preset wind speed.

10. An air supply control device for an air outlet device, characterized in that, include: The acquisition module is used to receive user input information, including the number of oscillation angle zones, the oscillation angle range corresponding to each zone, and the wind speed level corresponding to each zone. The processing module is used to parse the user input information and generate control commands; The display module is used to perform corresponding display operations according to the control instructions.