Control method of air supply equipment, air supply equipment and computer readable storage medium

By obtaining the category information of the air supply object in the current air supply area of ​​the air supply equipment, matching and executing the corresponding air supply mode, the problem that existing air supply equipment cannot dynamically adjust the air speed and air volume, and improving intelligence and user experience.

CN120083706APending Publication Date: 2025-06-03GD MIDEA ENVIRONMENT APPLIANCES MFG
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Patent Information

Application Number
CN202311643111.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2023-12-01
Publication Date
2025-06-03

AI Technical Summary

Technical Problem

Existing air supply equipment cannot dynamically adjust the wind speed and air volume according to the needs of different users, resulting in poor user experience and lack of intelligence.

Method used

By obtaining the category information of the air supply object in the current air supply area of ​​the air supply equipment, matching the corresponding air supply mode, and air supply based on this mode.

Benefits of technology

It improves the intelligence and comfort of air supply equipment and improves the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention provides a control method of air supply equipment, the air supply equipment and a computer readable storage medium. The control method of the air supply equipment comprises the steps that category information of air supply objects in a current air supply area of the air supply equipment is obtained; a first air supply mode corresponding to the category information is obtained; and air supply is conducted on the air supply object based on the first air supply mode. In this way, the intelligence and the air supply comfort level of the air supply equipment can be effectively improved, and then the enjoyment experience of a user is effectively improved.
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Description

Technical Field

[0001] The present application relates to the technical field of household appliances, and in particular to a control method for an air supply device, an air supply device, and a computer-readable storage medium. Background Art

[0002] Air supply equipment, such as air conditioners and fans, are household appliances that most users use to cool down in the summer. When using air supply equipment, users need to operate buttons on the device or remote control to generate control instructions, and use the control instructions to control the air supply equipment. However, the air supply equipment basically uses a single wind speed or mode to supply air to users, and cannot distinguish between users using the air supply equipment, giving different users different wind sensations. Obviously, such a use process not only lacks the intelligence of the air supply equipment, but also reduces the user experience. Summary of the invention

[0003] The present application provides a control method for an air supply device, an air supply device, and a computer-readable storage medium, which are used to improve the intelligence and air supply comfort of the air supply device, thereby effectively improving the user's enjoyment experience.

[0004] In order to solve the above technical problems, the technical solution adopted in the present application is: to provide a 1. A control method for an air supply device, the control method comprising: obtaining category information of an air supply object within a current air supply area of ​​the air supply device; obtaining a first air supply mode corresponding to the category information; and supplying air to the air supply object based on the first air supply mode.

[0005] The control method further includes: determining whether there is an air supply object in the current air supply area of ​​the air supply device; in response to the existence of the air supply object, obtaining category information of the air supply object in the current air supply area of ​​the air supply device.

[0006] The control method further includes: in response to the absence of an air supply object, adopting a second air supply mode for air supply; wherein the air supply duration and air supply parameters of the second air supply mode are respectively smaller than the air supply duration and air supply parameters of the first air supply mode.

[0007] Among them, before obtaining the first air supply mode corresponding to the category information, it also includes: determining pre-selected category information of the air supply object within the working area of ​​the air supply mechanism, wherein the working area includes multiple air supply areas; determining a pre-selected air supply mode corresponding to the pre-selected category information; obtaining the first air supply mode corresponding to the category information, including: obtaining the first air supply mode corresponding to the category information in the pre-selected air supply mode based on the category information.

[0008] Among them, the control method further includes: in response to a new air supply object entering the working area; obtaining the type information of the new air supply object; in response to the type information of the new air supply object not being in the preselected category information, adding the type information of the new air supply object to the preselected category information.

[0009] Among them, obtaining the first air supply mode corresponding to the category information includes: determining whether preset parameters corresponding to the air supply object are received; in response to receiving the preset parameters, obtaining the first air supply mode based on the preset parameters and the category information.

[0010] Among them, obtaining the first air supply mode corresponding to the category information includes: in response to not receiving the preset parameters, obtaining the first air supply mode based on the current environmental information and the category information.

[0011] Among them, the first air supply mode includes air supply parameters and air supply duration corresponding to the category information; among them, the air supply parameters at least include any one or more of air volume, air speed, and air supply temperature.

[0012] Among them, the type information at least includes the body posture and / or age of the air supply object.

[0013] To solve the above technical problems, the technical solution adopted in this application is: to provide an air supply device, the air supply device includes: a collection device for obtaining the category information of the air supply object in the current air supply area of the air supply device; a processing circuit for obtaining the first air supply mode corresponding to the category information; an actuator for supplying air to the air supply object based on the first air supply mode.

[0014] To solve the above technical problems, the technical solution adopted in this application is: to provide a computer-readable storage medium, the computer-readable storage medium is used to store program instructions, and when the program instructions are executed by a processor, the control method described in any one of the above is used.

[0015] The beneficial effect of the embodiment of this application is: The control method of the air supply device in this application includes obtaining the category information of the air supply object in the current air supply area of the air supply device; obtaining the first air supply mode corresponding to the category information; supplying air to the air supply object based on the first air supply mode. The air supply device respectively obtains the first air supply mode corresponding to the air supply object in the current air supply area in its working area through the above steps, and supplies air to the corresponding air supply object based on the first air supply mode corresponding to the air supply object. Based on this, the air supply device can supply air to the air supply object in the air supply mode corresponding to the air supply object, thereby effectively improving the intelligence and air supply comfort of the air supply device, and further effectively improving the user's enjoyment experience. Description of the Drawings

[0016] Figure 1 It is a schematic flowchart of the steps of the first embodiment of the control method of the air supply device in this application;

[0017] Figure 2 It is a distribution schematic diagram of different types of air supply objects in the working area of the air supply device;

[0018] Figure 3 It is a schematic diagram of the step flow of an embodiment of step S200 of the present application;

[0019] Figure 4 It is a schematic diagram of the step flow of the second embodiment of the control method of the air supply device of the present application;

[0020] Figure 5 It is a schematic diagram of the step flow of the third embodiment of the control method of the air supply device of the present application;

[0021] Figure 6 It is a distribution schematic diagram of a new air supply object added to the working area of the air supply device;

[0022] Figure 7 It is a schematic diagram of the structure of an embodiment of the air supply device of the present application;

[0023] Figure 8 It is a schematic diagram of the structure of an embodiment of the computer-readable storage medium of the present application. Detailed implementation manners

[0024] Next, the technical solutions in the embodiments of the present application will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are only a part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative efforts shall fall within the protection scope of the present application.

[0025] The terms "first" and "second" in the present application are only for descriptive purposes, and cannot be understood as indicating or implying relative importance or implicitly specifying the quantity of the indicated technical features. In the description of the present application, the meaning of "a plurality" is at least two, such as two, three, etc., unless otherwise clearly and specifically defined. In addition, the terms "comprising" and "having" and any variations thereof are intended to cover non-exclusive inclusion. For example, a process, method, system, product or device that includes a series of steps or units is not limited to the listed steps or units, but optionally further includes unlisted steps or units, or optionally further includes other steps or units inherent to these processes, methods, products or devices.

[0026] The present application provides a control method for an air supply device. Among them, the control method of the present application is applicable to various types of air supply devices, such as air conditioners, fans, heaters, etc. The execution subject of the control method of the air supply device of the present application is the air supply device. As Figure 1 shownFigure 1 It is a schematic flowchart of steps of the first embodiment of the control method of the air supply device of the present application. The control method of the air supply device includes:

[0027] Step S100: Obtain the category information of the air supply object in the current air supply area of the air supply device.

[0028] As Figure 2 shown, Figure 2 It is a schematic distribution diagram of different types of air supply objects in the working area of the air supply device.

[0029] The air supply area of the air supply device is the area that the air supply mechanism of the air supply device can send air to when the air supply direction is fixed. The working area of the air supply device is the maximum range of air supply when the swing mechanism drives the air supply mechanism to swing. For example, when the air supply device is a fan, the area that the air can cover when the air supply mechanism of the fan sends air in a fixed direction is the air supply area of the fan, and the maximum air supply area that can be covered after the swing mechanism of the fan drives the air supply mechanism to swing is the working area of the fan.

[0030] The current air supply area of the air supply device can be understood as the area that the air supply device can supply air to when the air supply device is working at a certain working moment or working period. For example, taking a fan as an example, the air supply area of the fan at a certain working moment or working period is the current air supply area of the fan.

[0031] The air supply area of the air supply device is different from the working area of the air supply device. Among them, the working area of the air supply device includes all the air supply areas of the air supply device; the working area is usually composed of multiple air supply areas.

[0032] Specifically, obtaining the category information of the air supply object in the current air supply area of the air supply device can be understood as that when the air supply device supplies air, it will obtain in real time the category information of the air supply object included in its current air supply area to match the corresponding air supply mode for the air supply object in the current air supply area. For example, as Figure 2 shown, in the working area, the air supply objects include obese air supply objects and thin air supply objects distributed at intervals in the working area. When the air supply area of the air supply device coincides with the area where the obese air supply object is located, the air supply device identifies the obese air supply object and obtains its category information to match the corresponding air supply mode for it through steps S200 to S300. When the air supply area of the air supply device coincides with the area where the thin air supply object is located, the air supply device identifies the thin air supply object and obtains its category information to match the corresponding air supply mode for it through steps S200 to S300. Based on this, the air supply device can supply air to the corresponding air supply object in the corresponding air supply mode, thereby effectively improving the intelligence and air supply comfort of the air supply device, and further effectively improving the user's enjoyment experience.

[0033] Optionally, a collection device such as a camera, an infrared sensor, or a radar sensor is installed on the air supply device. The camera is installed on the swing mechanism of the air supply device. The camera can be a single one or a combination of multiple ones. The camera is connected to the processing circuit of the air supply device. During the process of swinging and supplying air, the swing mechanism can transmit the image data or point cloud data of the air supply object collected by shooting to the processing circuit. The processing circuit analyzes the type information of the air supply object in the air supply area through data matching (that is, the body posture, gender, age, etc. of the air supply object can be confirmed).

[0034] Among them, the category information of the air supply object at least includes the body posture and / or age and / or gender of the air supply object, etc. In other words, in this embodiment, the air supply device obtains the body posture information and age information of the air supply object in the current air supply area to determine the body posture information and age information of the current air supply object. In some embodiments, the air supply device will match the best air supply mode for the air supply object according to the body posture, age, and gender of the air supply object. Optionally, in some embodiments, the air supply device will match the corresponding air supply mode for the air supply object according to any one or two combinations of the body posture, age, and gender.

[0035] Step S200: Obtain the first air supply mode corresponding to the category information.

[0036] Due to different body postures and ages, the adaptability of the air supply object to the air supply is also different. The air supply object obtains the first air supply mode corresponding to the category information of the air supply object, so as to match the corresponding first air supply mode for the air supply object with the corresponding body posture and corresponding age, thereby effectively improving the intelligence and air supply comfort of the air supply device, and further effectively improving the user's enjoyment experience.

[0037] The first air supply mode is the air supply mode when the air supply device supplies air to the corresponding air supply device. Optionally, the first air supply mode includes the air supply parameters and air supply duration corresponding to the category information. Among them, the air supply parameters at least include any one or more of the air volume, air speed, and air supply temperature. Among them, in some embodiments, based on different air supply parameters, the air supply types of the air supply device include strong wind, natural wind, medium wind, gentle wind, etc. It should be noted that the air supply parameters and air supply duration are necessary parameters in the air supply mode of the air supply device and are necessary parameters included in each air supply mode.

[0038] Specifically, in this embodiment, the air supply duration is the duration for which the air supply device supplies air to the air supply objects in the current air supply area during one air supply cycle. In some embodiments, the air supply duration can be adjusted by the residence time of the air supply device in the current air supply area. Among them, the air supply duration is equal to the sum of the residence time plus the swing time for the air supply device to leave the current air supply area. For example, if the air supply device is a fan, the swing mechanism of the fan controls the fan to stay in the current air supply area for 10 seconds, and the pressure head mechanism of the fan controls the fan to leave the current air supply area for 1 second. Based on this, the air supply duration of the fan in the current air supply area is 11 seconds. In other embodiments, the time for the pressure head mechanism of the fan to control the fan to leave the current air supply area can also be other durations, such as a longer 2 seconds, or a shorter 0.5 seconds, etc. The details are not elaborated herein. In other embodiments, the adjustment of the air supply duration can also be achieved by other means, such as regularly turning on and off the air supply device at a certain duration, etc. The details are not elaborated herein.

[0039] Specifically, the air supply device matches corresponding air volume, air speed, and air supply temperature for different air supply objects to configure corresponding air supply types for the air supply objects, and the air supply device also matches corresponding air supply durations for different air supply objects to effectively improve the intelligence and air supply comfort of the air supply device, thereby effectively enhancing the user's enjoyment experience.

[0040] Optionally, in some embodiments, the air supply device pre-classifies the air supply objects based on age information to classify the air supply objects into corresponding types of air supply objects. For example, the air supply device classifies the air supply objects in the age range less than fifty years old and greater than twelve years old as young air supply objects, and classifies the air supply objects over fifty years old as elderly air supply objects. Among them, the age ranges of young air supply objects and elderly air supply objects can be the preset age ranges default set by the system of the air supply device, or the custom age ranges manually adjusted by the user through mechanisms such as the human-machine interaction module. Further, the air supply object determines the category of the air supply object based on the obtained age information of the air supply object, and thus selects the corresponding air supply mode as the first air supply mode.

[0041] Optionally, in this embodiment, the air supply device also pre-classifies the air supply objects into thin and small air supply objects and fat and obese air supply objects based on the body posture of the air supply objects. For example, the air supply device defines the air supply objects with a ratio of weight to height less than the preset threshold as thin and small air supply objects, and defines the air supply objects with a ratio of weight to height greater than or equal to the preset threshold as fat and obese air supply objects. Among them, the preset threshold can be the default preset threshold of the system of the air supply device, or the custom preset threshold manually adjusted by the user through mechanisms such as the human-machine interaction module.

[0042] Among them, the air supply objects of each category include the corresponding air supply type and the corresponding air supply duration. For example, the corresponding air supply type for the elderly air supply object is weak wind, and the air supply duration is 1 second. The corresponding air supply type for the young air supply object is strong wind, and the air supply duration is 10 seconds. The air supply type for the obese air supply object is strong wind, and the air supply duration is 10 seconds. The air supply type matched by the thin and small air supply object is natural wind or medium wind, etc., and the air supply duration is 1 second.

[0043] For example, as Figure 2 shown, when the air supply area of the air supply device overlaps with the area where the obese air supply object is located, the gear positions of the air volume and air speed matched by the air supply device are 10 gears (i.e., strong wind), and the air supply duration in the current air supply area is matched to be 10 seconds. Based on this, the air supply device can quickly dissipate heat from the obese air supply object, thereby effectively improving the comfort of the air supply object. Another example, when the air supply area of the air supply device overlaps with the area where the thin and small air supply object is located, the gear positions of the air volume and air speed matched by the air supply device are 5 gears (i.e., natural wind), and the air supply duration in the current air supply area is matched to be 1 second. Based on this, the air supply device can quickly dissipate heat from the obese air supply object, thereby effectively improving the comfort of the air supply object.

[0044] Optionally, in some embodiments, the air supply device determines the first air supply mode based on the age and body shape of the air supply object at the same time, where the priority of age is higher than that of body shape. The air supply device will pre-determine whether the air supply object is an elderly air supply object or a young air supply object based on the age information of the air supply object. If the air supply object is an elderly air supply object, the air supply type directly matched by the air supply device for the elderly air supply object is weak wind, and the air supply duration is 1 second. If the air supply object is a young air supply object, the air supply device will further determine the body shape category of the young air supply object based on its body shape information to determine whether the young air supply object is an obese air supply object or a thin and small air supply object. If the young air supply object is an obese air supply object, the air supply type matched by the air supply device for it is strong wind, and the air supply duration is 10 seconds. If the young air supply object is a thin and small air supply object, the air supply type matched by the air supply device for it is natural wind or medium wind, and the air supply duration is 1 second.

[0045] Optionally, as Figure 3 shown, Figure 3 is a schematic flow chart of the steps of an embodiment of step S200 of this application. Among them, step S200 is implemented by the steps shown in Figure 3 and specifically includes steps S210 to S230.

[0046] Step S210: Determine whether the preset parameters corresponding to the air supply object are received.

[0047] The preset parameters are control parameters input by a user (where the user can be the air supply object or a person other than the air supply object) for setting the air supply mode of the corresponding air supply object. Among them, the preset parameters input by the user include air supply parameters and / or air supply duration in the air supply mode for setting the air supply object. In this embodiment, the preset parameters input by the user include air supply parameters in the air supply mode for setting the air supply object. For example, in this embodiment, the air supply device acquires, through a collection device such as a camera, the category information of all air supply objects within its working area, and uploads this category information to the display panel of the air supply device or to a mobile device connected to the air supply device. The user operates the display panel or the mobile device to set air supply parameters for the corresponding air supply object. In other embodiments, the preset parameters input by the user include air supply parameters and air supply duration, etc. in the air supply mode for setting the divided objects, which will not be elaborated in detail here.

[0048] Step S220: In response to receiving the preset parameters, obtain the first air supply mode based on the preset parameters and the category information.

[0049] In this embodiment, when the air supply device detects that it has received the preset parameters set by the user for the corresponding object, the air supply device adjusts the air supply parameters for the corresponding air supply object based on the preset parameters, and adjusts the air supply duration for the corresponding air supply object based on the category information.

[0050] For example, as Figure 2 shown, the air supply device acquires through the collection device that there is an obese air supply object and a thin air supply object within its working area, and uploads this information to the display panel or a mobile device such as the user's mobile phone. Among them, the user inputs preset parameters for setting the air volume and wind speed gears of the obese air supply object to 10 gears according to actual needs, and sets the air supply gear of the thin air supply object to 8 (i.e., medium wind). When the air supply area of the air supply device overlaps with the obese air supply object, the air supply device sets the air volume and wind speed gears of the obese air supply object to 10 gears based on this preset parameter, and adjusts the air supply duration for the obese air supply object based on the category information of the obese air supply object. When the air supply area of the air supply device overlaps with the thin air supply object, the air supply device sets the air volume and wind speed gears of the thin air supply object to 8 gears based on the preset parameter, and at the same time, the air supply device configures the corresponding air supply duration for it based on the category information of the thin air supply object.

[0051] In other embodiments, the user can also only input the preset parameters of one of the obese air supply object and the thin air supply object. Among them, the air supply device supplies air to the corresponding air supply object based on the preset parameters, and the air supply device matches the corresponding air supply mode for the air supply object without preset parameters based on the category information.

[0052] Step S230: In response to not receiving a preset parameter, obtain a first air supply mode based on the current environmental information and category information.

[0053] The user does not set a preset parameter for any air supply object in the working area. Based on this, the air supply device does not receive any preset parameters. At this time, the air supply device obtains the first air supply mode according to the current environmental information and the category information of the corresponding air supply object. In this embodiment, the environmental information at least includes the temperature of the current environment.

[0054] Step S300: Supply air to the air supply object based on the first air supply mode.

[0055] After the air supply device obtains the air supply mode (i.e., the first air supply mode) corresponding to the air supply object through the above steps, it supplies air to the corresponding air supply object based on the first air supply mode. For example, as Figure 2 shown, when there are multiple air supply objects in the working area, the air supply device will obtain the first air supply mode corresponding to each air supply object in the working area through the above steps respectively, and supply air to the corresponding air supply object based on the first air supply mode corresponding to each air supply object. Based on this, the air supply device can supply air to the corresponding air supply object in the working area in the corresponding air supply mode, thereby effectively improving the intelligence and air supply comfort of the air supply device, and further effectively improving the user's enjoyment experience.

[0056] The present application provides a second embodiment of the control method of the air supply device. As Figure 4 shown, Figure 4 is a schematic flowchart of the steps of the second embodiment of the control method of the air supply device of the present application. In this embodiment, the control method of the air supply device includes:

[0057] Step S400: Determine whether there is an air supply object in the current air supply area of the air supply device.

[0058] The distribution of air supply objects in the working area of the air supply device is generally set at intervals, and the connection line between adjacent air supply objects generally intersects the air supply direction of the air supply device. Based on this, when the air supply device performs the air supply function in the working area, there will be a situation where there is no air supply object in its air supply area. Therefore, in this embodiment, the air supply device will judge whether there is an air supply object in its current air supply area. If there is an air supply object in its current air supply area, it will execute steps S500 to S600 to supply air in the corresponding air supply mode. If there is no air supply object in its current air supply area, it will execute step 700 to supply air in the corresponding air supply mode.

[0059] Step S500: In response to the existence of an air supply object, execute to obtain the category information of the air supply object in the current air supply area of the air supply device.

[0060] For the specific implementation of step S500, refer to the description of step S200 in the above embodiments, and details are not repeated here.

[0061] Step S600: Deliver air to the air delivery object based on the first air delivery mode.

[0062] For the specific implementation of step S600, refer to the description of step S200 in the above embodiments, and details are not repeated here.

[0063] Step S700: In response to the absence of an air delivery object, the second air delivery mode is used for air delivery; wherein, the air delivery duration and air delivery parameters of the second air delivery mode are respectively less than those of the first air delivery mode.

[0064] If the air delivery device determines that there is no air delivery object in the current air delivery area, the air delivery device uses the second air delivery mode for air delivery. Among them, the air delivery duration and air delivery parameters of the second air delivery mode are less than those of the first air delivery mode. Based on this, the energy consumption of the air delivery device in the area without an air delivery object can be effectively reduced, thereby effectively reducing the energy consumption of the air delivery device when performing the air delivery function. For example, continuing with Figure 2 as an example, when the air delivery area of the air delivery device falls outside the air delivery object area, the air delivery device cannot detect the air delivery object. At this time, the processing circuit in the air delivery device controls the swing mechanism to drive the air delivery mechanism in the air delivery device to swing at an accelerated speed so that the air delivery mechanism can leave the current area at an accelerated speed to reduce the air delivery duration of the air delivery mechanism in this area. At the same time, the processing circuit also controls the air delivery mechanism to reduce the air volume gear and wind speed gear of the air delivery mechanism.

[0065] The present application provides a third embodiment of the control method for an air delivery device, as Figure 5 shown, Figure 5 is the step flow diagram of the third embodiment of the control method for the air delivery device of the present application. In this embodiment, the control method for the air delivery device includes:

[0066] Step S800: Determine the preselected category information of the air delivery objects within the working area of the air delivery mechanism, where the working area includes multiple air delivery areas.

[0067] When the air delivery device performs the air delivery function, it collects the preselected category information of all air delivery objects within its working area through the collection device, and uploads the collected preselected category information to the processing circuit of the air delivery device so that the processing circuit can pre-identify all air delivery objects in the working area.

[0068] Step S900: Determine the preselected air delivery mode corresponding to the preselected category information.

[0069] The air supply device matches a corresponding preselected air supply mode for each air supply object in the working area according to the preselected category information. Among them, the acquisition method of the preselected air supply mode can be obtained by the method described in steps S210 to S230 in the above embodiment.

[0070] Step S1000: Obtain the category information of the air supply objects in the current air supply area of the air supply device.

[0071] For the specific implementation manner of step S1000, refer to the description of step S200 in the above embodiment, and details are not repeated here.

[0072] Optionally, in other embodiments, before executing step S1000, it is also possible to determine whether there are air supply objects in the current air supply area of the air supply device through step S400 of the above embodiment.

[0073] Step S1100: Obtain the first air supply mode corresponding to the category information from the preselected air supply modes based on the category information.

[0074] Specifically, in this embodiment, the air supply device pre-matches the corresponding preselected air supply modes for the corresponding air supply objects through steps S800 to S900. Further, when the air supply device executes the air supply function in the working area, it collects the category information of the air supply objects in real time through step S1000, and then obtains the first air supply mode corresponding to the category information from the preselected air supply modes. For example, by using a comparison method, the category information is compared with the preselected category information to obtain the corresponding preselected air supply mode as the first air supply mode. Based on this, the response speed of the air supply device can be effectively improved, and then the air supply device can switch the corresponding air supply mode more quickly according to different air supply objects, effectively improving the user experience.

[0075] Optionally, in other embodiments, the air supply device also detects the changes of the air supply objects in the working area in real time. Among them, in response to a new air supply object entering the working area, the air supply device obtains the category information of the new air supply object, and in response to the type information of the new air supply object not being in the preselected category information, adds the type information of the new air supply object to the preselected category information. Based on this, when a new air supply object is added during the operation of the air supply device, the air supply device can match a corresponding air supply mode for the new air supply object.

[0076] For example, Figure 6 as shown, Figure 6It is a distribution schematic diagram of an embodiment of the working area where a new air supply object joins the air supply device. When the air supply device supplies air to an obese air supply object and a thin air supply object, an elderly air supply object enters the working area. The air supply device detects the elderly air supply object and obtains the category information of the elderly air supply object, and adds its category information to the preselected category information, and then supplies air to the elderly air supply object through steps S900 to step S1100.

[0077] For example, the air supply device detects that a new air supply object enters the working area, determines that the air supply object is an elderly air supply object, and uploads the information to a display panel or a mobile device such as the user's mobile phone. At this time, the user can set the air supply mode corresponding to the elderly air supply object by himself, or the air supply device can determine the air supply mode of the elderly air supply object by itself. For example, the air supply device obtains that the air supply gear of the elderly air supply object is gear 4 (that is, weak wind), and the air supply duration is 1 second (where the air supply duration is 1 second here, it can be understood that the shaking mechanism of the fan controls the time for the fan to stay in the air supply area is 0 second, and the pressure mechanism of the fan controls the time for the fan to leave the current air supply area is 1 second. In other embodiments, the time for the pressure mechanism of the fan to control the fan to leave the current air supply area can also be other times, such as 2 seconds longer or 0.5 seconds shorter, etc., which will not be elaborated in detail here). Based on this, when the air supply area of the air supply device overlaps with the obese air supply object, the air supply device sets the air volume and wind speed gears of the obese air supply object to gear 10 (that is, strong wind) based on the preset parameters, and adjusts the air supply duration for the obese air supply object to 10 seconds based on the category information of the obese air supply object. When the air supply area of the air supply device overlaps with the thin air supply object, the air supply device sets the air volume and wind speed gears of the thin air supply object to gear 8 (that is, medium wind) based on the preset parameters, and at the same time, the air supply device configures the corresponding air supply duration for the thin air supply object to 1 second based on the category information of the thin air supply object. When the air supply area of the air supply device overlaps with the elderly air supply object, the air supply device sets the air supply gear of the elderly air supply object to gear 4 and the air supply duration to 1 second based on the preset category information.

[0078] This application provides an air supply device, such as Figure 7 shown, Figure 7 It is a schematic structural diagram of an embodiment of the air supply device of this application. Specifically, in this embodiment, the air supply device 400 is a fan. In other embodiments, the air supply device 400 can also be an air conditioner, a heater, or other air supply devices 400 with intelligent air supply functions.

[0079] Among them, the air supply device 400 includes a collection device 200, a processing circuit 300, and an actuator 100.

[0080] The acquisition device 200 is used to obtain the category information of the air supply objects within the current air supply area of the air supply device 400. And in some embodiments, the acquisition device 200 is further used to obtain the preselected category information of all air supply objects within the air supply working area. Optionally, in this embodiment, the acquisition device 200 includes a camera, a temperature sensor, an infrared sensor, a radar sensor, etc. provided on the actuator 100.

[0081] The processing circuit 300 is used to supply air to the air supply object based on the first air supply mode, and control the actuator 100 to supply air to the air supply object through the control method of any of the above embodiments.

[0082] Optionally, the actuator 100 includes an air supply mechanism 110 and a swing mechanism 120. Among them, the air supply mechanism 110 is used to perform the air supply function based on the control of the processing circuit 300, and the swing mechanism 120 is used to drive the air supply mechanism 110 to swing based on the control of the processing circuit 300.

[0083] This application provides a computer-readable storage medium. Please refer to Figure 8 , Figure 8 which is a schematic structural diagram of an embodiment of the computer-readable storage medium of this application. The computer-readable storage medium is used to store program instructions, and when the program instructions are executed by a processor, they are used to implement the control method of the air supply device in any of the above embodiments.

[0084] In the computer-readable storage medium 30 of the embodiment of this application, program instructions 31 are stored internally, and the program instructions 31 are executed to implement the control method of the above air supply device.

[0085] Among them, the program instructions 31 can form a program file and be stored in the above storage medium in the form of a software product, so that an electronic device (which can be a personal computer, a server, or a network device, etc.) or a processor can execute all or part of the steps of the methods in various embodiments of this application. And the foregoing storage medium includes: various media such as a USB flash drive, a mobile hard disk, a read-only memory (ROM, Read-Only Memory), a random access memory (RAM, Random Access Memory), a magnetic disk, or an optical disc, or a terminal device such as a computer, a server, a mobile phone, or a tablet.

[0086] The computer-readable storage medium 30 of this embodiment can be, but is not limited to, a USB flash drive, an SD card, a PD optical drive, a mobile hard disk, a large-capacity floppy drive, a flash memory, a multimedia memory card, a server, etc.

[0087] In one embodiment, a computer program product or a computer program is provided. The computer program product or the computer program includes computer instructions stored in a computer-readable storage medium. A processor of an electronic device reads the computer instructions from the computer-readable storage medium, and the processor executes the computer instructions, causing the electronic device to execute the steps in the embodiment of the control method of the above-mentioned air supply device.

[0088] In addition, if the above functions are implemented in the form of software functions and sold or used as independent products, they can be stored in a storage medium readable by a mobile terminal. That is, the present application also provides a storage device storing program instructions, and the program instructions can be executed to implement the method of the above embodiment. The storage device can be a USB flash drive, an optical disc, a server, etc. That is to say, the present application can be embodied in the form of a software product, which includes several instructions for causing an intelligent terminal to execute all or part of the steps of the methods described in each embodiment.

[0089] In summary, the control method of the air supply device of the present application includes obtaining the category information of the air supply object in the current air supply area of the air supply device; obtaining the first air supply mode corresponding to the category information; and supplying air to the air supply object based on the first air supply mode. The air supply device respectively obtains the first air supply mode corresponding to the air supply object in its current air supply area in the working area through the above steps, and supplies air to the corresponding air supply object based on the first air supply mode corresponding to the air supply object. Based on this, the air supply device can supply air to the corresponding air supply object in the working area in the corresponding air supply mode, thereby effectively improving the intelligence and air supply comfort of the air supply device, and further effectively improving the user's enjoyment experience.

[0090] It should be noted that in the accompanying drawings herein, they are only for showing the structural relationship and connection relationship of the inventive products of the present application, and do not thereby limit the specific structural dimensions of the inventive products of the present application.

[0091] The above are only the embodiments of the present invention, and do not limit the patent scope of the present invention accordingly. Any equivalent structural or equivalent process transformation made by using the content of the specification and drawings of the present invention, or directly or indirectly applied in other related technical fields, shall be equally included in the patent protection scope of the present invention.

Claims

1. A control method for a air supply device, characterized in that, the control method includes: obtaining category information of the air supply object in the current air supply area of the air supply device; obtaining a first air supply mode corresponding to the category information; performing air supply to the air supply object based on the first air supply mode.

2. The control method according to claim 1, characterized in that, the control method further includes: determining whether there is an air supply object in the current air supply area of the air supply device; in response to the existence of the air supply object, executing the obtaining of the category information of the air supply object in the current air supply area of the air supply device 400.

3. The control method according to claim 2, characterized in that, the control method further includes: in response to the non-existence of the air supply object, performing air supply using a second air supply mode; wherein, the air supply duration and air supply parameters of the second air supply mode are respectively less than those of the first air supply mode.

4. The control method according to claim 1, characterized in that, before obtaining the first air supply mode corresponding to the category information, it further includes: determining preselected category information of the air supply object in the working area of the air supply device, wherein the working area includes a plurality of the air supply areas; determining a preselected air supply mode corresponding to the preselected category information; the obtaining of the first air supply mode corresponding to the category information includes: obtaining the first air supply mode corresponding to the category information from the preselected air supply modes based on the category information.

5. The control method according to claim 4, characterized in that, the control method further includes: in response to a new air supply object entering the working area; obtaining the type information of the new air supply object; in response to the type information of the new air supply object not being in the preselected category information, adding the type information of the new air supply object to the preselected category information.

6. The control method according to claim 1, characterized in that, the obtaining of the first air supply mode corresponding to the category information includes: judging whether preset parameters corresponding to the air supply object are received; in response to receiving the preset parameters, obtaining the first air supply mode based on the preset parameters and the category information.

7. The control method according to claim 6, characterized in that, the obtaining of the first air supply mode corresponding to the category information includes: in response to not receiving the preset parameters, obtaining the first air supply mode based on the current environmental information and the category information.

8. The control method according to any one of claims 1 - 7, characterized in that, the first air supply mode includes air supply parameters and air supply duration corresponding to the category information; wherein, the air supply parameters at least include any one or more of air volume, air speed and air supply temperature.

9. The control method according to any one of claims 1 - 7, characterized in that, the type information at least includes the body posture and / or age of the air supply object.

10. An air supply device, characterized in that, the air supply device includes: a collection device for obtaining category information of the air supply object in the current air supply area of the air supply device; A processing circuit for obtaining a first air supply mode corresponding to the category information; An actuator for supplying air to the air supply object based on the first air supply mode.

11. A computer-readable storage medium, characterized in that, the computer-readable storage medium is used to store program instructions, and when the program instructions are executed by a processor, they are used to implement the control method according to any one of claims 1 to 9.