Equipment linkage control method and device, storage medium and computer program product

Through the linkage control method between air conditioning and air circulation equipment, the shortcomings of existing equipment in regulating indoor humidity, temperature and air supply volume are solved, and a better user experience and equipment linkage effect is achieved.

CN120212607AActive Publication Date: 2025-06-27XIAOMI TECH (WUHAN) CO LTD +2
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Patent Information

Application Number
CN202510713490.8
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-29
Publication Date
2025-06-27
Estimated Expiration
2045-05-29

AI Technical Summary

Technical Problem

Existing air conditioners and air circulation equipment have shortcomings in regulating indoor humidity and temperature. The air supply volume of air conditioners is small and it is difficult to meet user needs. Air circulation equipment cannot adjust humidity and temperature.

Method used

Through a linkage control method of the device, in response to the user's trigger operation on the operation panel, the air sweeping mode of the air conditioner is controlled to connect with the swing mode of the air circulation device to ensure the linkage between the air conditioner and the air circulation device in the same space, complement each other's defects, and meet the user's humidity, temperature and air supply needs.

Benefits of technology

It realizes effective linkage between air conditioners and air circulation equipment, improves indoor humidity, temperature regulation capabilities and air supply, and provides better user experience and convenient operation.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a linkage control method and device of equipment, a storage medium and a computer program product, and relates to the technical field of equipment control, and the linkage control method comprises the steps that in response to trigger operation of a user on an operation panel, a wind sweeping mode of an air conditioner is controlled to be linked with a swing mode of air circulation equipment; wherein the air conditioner and the air circulation equipment are located in the same space, the operation panel is a mechanical panel or a display interface in an application program, the operation panel is used for adjusting operation data of the air conditioner and / or the air circulation equipment, and the operation data comprise operation modes and / or operation parameters. By means of the linkage control method of the equipment, the air conditioner and the air circulation equipment which are located in the same space can execute linkage air supply, and better air blowing experience is provided for a user.
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Description

Technical Field

[0001] The present disclosure relates to the technical field of device control, and particularly to a method and device for interlocking control of devices, a storage medium, and a computer program product. Background Art

[0002] Currently, as important products among household electrical appliances, air conditioners and air circulation devices can adjust the humidity and temperature in a room. However, due to the structural limitations of air conditioners or noise experience, the air supply volume of air conditioners is usually small, making it difficult to meet user needs; air circulation devices can promote air circulation in a room, allowing users to feel a comfortable blowing sensation, but air circulation devices cannot adjust the humidity and temperature in the room. Summary of the Invention

[0003] To overcome the problems existing in the related art, the present disclosure provides a method and device for interlocking control of devices, a storage medium, and a computer program product.

[0004] According to a first aspect of an embodiment of the present disclosure, there is provided a method for interlocking control of devices, including: in response to a triggering operation by a user on an operation panel, controlling the swing mode of an air conditioner and the swing mode of an air circulation device to be interlocked; wherein, the air conditioner and the air circulation device are in the same space, the operation panel is a mechanical panel or a display interface in an application program, and the operation panel is used to adjust the operation data of the air conditioner and / or the air circulation device, and the operation data includes an operation mode and / or operation parameters.

[0005] Through the above technical solution, in response to a triggering operation by a user on an operation panel, the swing mode of an air conditioner and the swing mode of an air circulation device in the same space can be controlled to be interlocked. During this process, the interlock between the air conditioner and the air circulation device can complement each other's deficiencies. After the swing mode of the air conditioner changes, the swing mode of the air circulation device will also change accordingly, and the air supply volume output by the air circulation device will make up for the deficiency of the small air supply volume of the air conditioner to meet user needs; and the air conditioner can adjust the indoor temperature and humidity, thus making up for the deficiency that the air circulation device cannot adjust the indoor temperature and humidity. Moreover, when the air conditioner and the air circulation device are in the same space, the air conditioner and the air circulation device are controlled to be interlocked, which is to perform interlocking adjustment on the swing mode of the air conditioner and the swing mode of the air circulation device in the same space. When the air conditioner and the air circulation device in the same space are interlocked, the presented interlocking air supply effect is better. In addition, the user can achieve the interlocking control of the air conditioner and the air circulation device on the operation panel, without having to go to the location of the air conditioner or the air circulation device to adjust the interlocking of the air supply mode of the air conditioner or the air circulation device, which brings convenience to the user's operation.

[0006] In a possible implementation, the display interface includes an air flow management interface, and the air flow management interface includes an interlocking air supply control; the controlling the swing mode of the air conditioner and the swing mode of the air circulation device to be interlocked in response to a triggering operation of the user on the operation panel includes: controlling the swing mode and the swing mode to be interlocked in response to a triggering operation on the interlocking air supply control.

[0007] Through the above technical solution, by performing a touch operation on the interlocking air supply control on the air flow management interface displayed on the operation panel, the user can remotely control the swing mode of the air conditioner and the swing mode of the air circulation device to be interlocked, without the user having to go to the location where the air conditioner is located or the location where the air circulation device is located to adjust the two to achieve the interlocking of the swing mode and the swing mode, which brings convenience to the user operation.

[0008] In a possible implementation, the display interface further includes a setting interface, and the setting interface includes a swing interlocking control; the controlling the swing mode of the air conditioner and the swing mode of the air circulation device to be interlocked in response to a triggering operation on the interlocking air supply control includes: controlling the swing mode and the swing mode to be interlocked in response to a triggering operation on the swing interlocking control when the interlocking air supply control is triggered.

[0009] Through the above technical solution, by displaying the setting interface, the user can configure / select the desired interlocking mode on the setting interface. If the user triggers the swing interlocking control on the setting interface, it means that the user expects the swing mode of the air conditioner and the swing mode of the air circulation device to be interlocked. Subsequently, after the user triggers the interlocking air supply control on the air flow management interface to start, the swing mode of the air conditioner and the swing mode of the air circulation device will be started to be interlocked.

[0010] In a possible implementation, the display interface further includes an air flow management interface, and the air flow management interface includes a swing interlocking control; the controlling the swing mode of the air conditioner and the swing mode of the air circulation device to be interlocked in response to a triggering operation of the user on the operation panel includes: controlling the swing mode and the swing mode to be interlocked in response to a triggering operation on the swing interlocking control.

[0011] Through the above technical solution, the swing interlocking control can be displayed on the air flow management interface. When the user triggers the swing interlocking control on the air flow management interface, the swing mode of the air conditioner and the swing mode of the air circulation device can be controlled to be interlocked, without having to go to the setting interface to trigger the swing interlocking control and then return to the air flow management interface to trigger the interlocking air supply control to control the interlocking of the swing mode and the swing mode, reducing the number of user operations and bringing convenience to the user operation.

[0012] In a possible implementation, the method further includes: in response to an operation of closing the linkage air supply control and / or the swing linkage control, controlling the swing mode and the oscillation mode to stop being linked.

[0013] Through the above technical solution, the user can also perform an operation of closing the linkage air supply control and / or the swing linkage control, so as to remotely control the swing mode of the air conditioner and the oscillation mode of the air circulation device to stop being linked, without having to go to the position of the air conditioner or the air circulation device to perform the closing operation, which brings convenience to the user's operation.

[0014] In a possible implementation, the oscillation mode includes a dynamic mode and a static mode; the dynamic mode indicates that the air circulation device is in an oscillating state, and the static mode indicates the fixed state after the air circulation device oscillates.

[0015] In a possible implementation, the air-sweeping mode of the air conditioner is an up-and-down air-sweeping mode, and the corresponding oscillation mode of the air circulation device is an up-and-down oscillation mode; the air-sweeping mode of the air conditioner is a left-and-right air-sweeping mode, and the corresponding oscillation mode of the air circulation device is a left-and-right oscillation mode.

[0016] Through the above technical solution, it is possible to control the air-sweeping ranges of the air-sweeping mode of the air conditioner and the oscillation mode of the air circulation device to be the same. For example, when the air conditioner is in the up-and-down air-sweeping mode and the air circulation device is in the up-and-down oscillation mode, the air-sweeping ranges of both are the up-and-down air-sweeping ranges at this time; another example is that when the air conditioner is in the left-and-right air-sweeping mode and the air circulation device is in the left-and-right oscillation mode, the air-sweeping ranges of both are the left-and-right air-sweeping ranges at this time. In this way, when the air-sweeping range indicated by the oscillation mode of the air circulation device is the same as the air-sweeping range indicated by the air-sweeping mode of the air conditioner, the air circulation device can diffuse the air-conditioning wind output by the air conditioner to a farther position, thereby meeting the user's demand for a wider air-sweeping range.

[0017] In a possible implementation, the maximum swing stroke of the air circulation device in the dynamic mode is a preset first swing stroke or a second swing stroke configured by the user, and the second swing stroke is less than or equal to the first swing stroke.

[0018] Through the above technical solution, the maximum swing stroke of the air circulation device can be the swing stroke defined by the system by default or the swing stroke configured by the user, so that the maximum swing stroke of the air circulation device in the oscillation mode has diversified configurations.

[0019] In a possible implementation, the method further includes: during the process of controlling the linkage of the air-sweeping mode and the oscillation mode, in response to receiving a user instruction, controlling the air circulation device to execute in the target oscillation mode indicated by the user instruction.

[0020] Through the above technical solution, during the process of linking the air-sweeping mode of the air conditioner with the swinging mode of the air conditioner, if a user instruction is received, it indicates that at this time the user more expects the air circulation device to execute according to the user instruction, rather than according to the swinging mode linked with the air conditioner. The priority of the target swinging mode indicated by the user instruction is higher than the priority of the swinging mode corresponding to the air-sweeping mode. Therefore, the air circulation device can be controlled to execute according to the target swinging mode indicated by the user instruction to meet the user's requirement for adjusting the swinging mode of the air circulation device.

[0021] In a possible implementation manner, there is a corresponding relationship between the air-sweeping mode and the swinging mode, and the method further includes: in response to a change in the air-sweeping mode of the air conditioner, controlling the air circulation device to switch from the target swinging mode to the swinging mode corresponding to the changed air-sweeping mode.

[0022] Through the above technical solution, after the air-sweeping mode of the air conditioner changes, it indicates that the user's requirement has changed. Therefore, the air circulation device can be switched from the target swinging mode to the swinging mode corresponding to the changed air-sweeping mode, so as to restore the linked air supply mode between the air conditioner and the air circulation device.

[0023] In a possible implementation manner, the setting interface further includes a wind speed linkage control and a wind feeling linkage control; the method further includes: when at least one target control among the wind speed linkage control, the air-sweeping linkage control, and the wind feeling linkage control in the setting interface is triggered, in response to the triggering operation on the linked air supply control, controlling the air conditioner and the air circulation device to execute according to the linkage mode indicated by the at least one target control.

[0024] Through the above technical solution, at least one target control among the wind speed linkage control, the air-sweeping linkage control, and the wind feeling linkage control can be triggered, so that the air conditioner and the air circulation device execute at least one of the wind speed linkage mode, the air-sweeping linkage mode, and the wind feeling linkage mode, providing the user with diversified linkages between the air conditioner and the air circulation device.

[0025] In a possible implementation manner, the air flow management interface further includes a linked temperature control control; the method further includes: in response to the triggering operation on at least one target control among the linked temperature control control and the linked air supply control, controlling the air conditioner and the air circulation device to execute according to the linkage mode indicated by the at least one target control.

[0026] Through the above technical solution, at least one target control in the linkage temperature control control and the linkage air supply control in the air flow management interface can be triggered, so that the air conditioner and the air circulation device execute at least one linkage mode among the linkage air supply mode and the linkage temperature control mode, providing the user with diversified linkages between the air conditioner and the air circulation device. Among them, the linkage air supply mode includes at least one linkage mode among the wind speed linkage mode, the air sweep linkage mode, and the wind feeling linkage mode.

[0027] In a possible implementation manner, there is a corresponding relationship between the first air supply intensity of the air conditioner and the second air supply intensity of the air circulation device; the method further includes: when the air sweep linkage control and the wind speed linkage control are both turned on, controlling the air conditioner to execute a target air supply intensity; the target air supply intensity is less than the second air supply intensity.

[0028] Through the above technical solution, when the wind speed linkage control and the air sweep linkage control are both turned on, it will trigger the air conditioner and the air circulation device to execute the air sweep linkage mode while executing the wind speed linkage mode. Since the air conditioner and the air circulation device will swing up and down or left and right to accelerate the indoor air circulation in the air sweep linkage mode, bringing a good air supply experience to the user, which brings a part of the air supply intensity. Therefore, the circulating air with a lower target air supply intensity of the air circulation device can be combined with the air supply intensity additionally brought by the air sweep linkage, and the user's blowing experience will not be reduced.

[0029] In a possible implementation manner, the method further includes: correcting the second air supply intensity according to a correction coefficient to obtain the target air supply intensity.

[0030] In a possible implementation manner, the controlling the air sweep mode of the air conditioner to be linked with the swinging mode of the air circulation device in response to a trigger operation of the user on the operation panel includes: when the air conditioner and the air circulation device are both connected to the network, in response to a trigger operation of the user on the operation panel, controlling the air sweep mode to be linked with the swinging mode.

[0031] Through the above technical solution, on the basis that the air conditioner and the air circulation device are both connected to the network, for example, the air conditioner and the air circulation device are in the same network or different networks, the operation data of the two can be interacted, so as to realize the linkage between the air conditioner and the air circulation device.

[0032] According to a second aspect of the embodiments of the present disclosure, there is provided a linkage control device for a device, which is used to execute the device linkage control method provided in the first aspect of the embodiments of the present disclosure. The device includes: a linkage control module configured to control the linkage between the air-sweeping mode of an air conditioner and the swinging mode of an air circulation device in response to a triggering operation of a user on an operation panel; wherein, the air conditioner and the air circulation device are in the same space, and the operation panel is a mechanical panel or a display interface in an application program, and the operation panel is used to adjust the operation data of the air conditioner and / or the air circulation device, and the operation data includes an operation mode and / or operation parameters.

[0033] According to a third aspect of the embodiments of the present disclosure, there is provided a linkage control device for a device, including: a processor and a memory for storing processor-executable instructions; wherein, the processor is configured to: execute the device linkage control method provided in the first aspect of the embodiments of the present disclosure.

[0034] According to a fourth aspect of the embodiments of the present disclosure, there is provided a computer-readable storage medium, on which a computer program is stored, and when the computer program is executed by a processor, it implements the device linkage control method provided in the first aspect of the embodiments of the present disclosure.

[0035] According to a fifth aspect of the embodiments of the present disclosure, there is provided a computer program product, and when the computer program is executed by a processor, it implements the device linkage control method provided in the first aspect of the embodiments of the present disclosure.

[0036] It should be understood that the above general description and the following detailed description are only exemplary and explanatory, and cannot limit the present disclosure. Description of the Drawings

[0037] The drawings herein are incorporated into the specification and form a part of the specification, showing embodiments consistent with the present disclosure, and are used together with the specification to explain the principles of the present disclosure.

[0038] Figure 1 It is an interaction schematic diagram of an air conditioner, a linkage air flow management main control program and an air circulation device shown according to an exemplary embodiment.

[0039] Figure 2 It is a step flowchart of a device linkage control method shown according to an exemplary embodiment.

[0040] Figure 3 It is a module schematic diagram of the linkage control of an air conditioner and an air circulation device shown according to an exemplary embodiment.

[0041] Figure 4 It is a schematic diagram of an air flow management interface shown according to an exemplary embodiment.

[0042] Figure 5 It is a schematic diagram of a setting interface shown according to an exemplary embodiment.

[0043] Figure 6 It is a schematic diagram of an air flow management interface shown according to an exemplary embodiment.

[0044] Figure 7 It is a schematic diagram of the up and down swing of an air circulation device shown according to an exemplary embodiment.

[0045] Figure 8 It is a schematic diagram of the left and right swing of an air circulation device shown according to an exemplary embodiment.

[0046] Figure 9 It is a flowchart of the steps of a linkage control method for a device shown according to an exemplary embodiment.

[0047] Figure 10 It is a flowchart of the steps of a linkage control method for a device shown according to an exemplary embodiment.

[0048] Figure 11 It is a schematic diagram of a device search interface shown according to an exemplary embodiment.

[0049] Figure 12 It is a schematic diagram of a network selection interface shown according to an exemplary embodiment.

[0050] Figure 13 It is a block diagram of a linkage control device for a device shown according to an exemplary embodiment.

[0051] Figure 14 It is a block diagram of a linkage control device for a device shown according to an exemplary embodiment.

[0052] Figure 15 It is a block diagram of a linkage control device for a device shown according to an exemplary embodiment. Detailed implementation manners

[0053] Here, the exemplary embodiments will be described in detail, and the examples are shown in the drawings. When the following description refers to the drawings, unless otherwise indicated, the same numbers in different drawings represent the same or similar elements. The implementation manners described in the following exemplary embodiments do not represent all the implementation manners consistent with the present disclosure. On the contrary, they are only examples of the devices and methods consistent with some aspects of the present disclosure as detailed in the appended claims.

[0054] It should be noted that all actions of obtaining signals, information, or data in this disclosure are carried out on the premise of complying with the corresponding data protection regulations and policies of the country where the location is located and with the authorization given by the owner of the corresponding device.

[0055] Figure 2 is a step flowchart of a linkage control method for a device shown according to an exemplary embodiment, as Figure 1 shown. The linkage control method for this device is used to perform linkage control on an air conditioner and an air circulation device. This linkage control method for the device is executed by a linkage air flow management main control program, and the linkage air flow management main control program is installed in a cloud server. Devices such as an air conditioner, an air circulation device, a terminal, and a remote controller can call this linkage air flow management main control program, thereby realizing the linkage control of the air conditioner and the air circulation device. Of course, the linkage air flow main control program can also be installed in devices such as an air conditioner, an air circulation device, a terminal, and a remote controller and be called by application programs in these devices. This disclosure does not limit this.

[0056] In some scenarios, taking the terminal control of the linkage of an air conditioner and an air circulation device as an example, please refer to Figure 1 shown. The linkage air flow management main control program is installed in the cloud server. This linkage air flow management main control program communicates with the air circulation device through a wireless network such as a WIFI (wireless) local area network or a Bluetooth local area network; an application program (App) is installed on the terminal, and the user can start the linkage air flow management main control program through the application program in the terminal. After the linkage air flow management main control program receives the user instruction sent by the terminal, it generates a linkage control instruction. On the one hand, it sends the linkage control instruction to the air conditioner for execution, and on the other hand, it sends the linkage control instruction to the air circulation device for execution through the wireless network.

[0057] In some scenarios, taking the air conditioner control of the linkage of an air conditioner and an air circulation device as an example, an application program is installed on the air conditioner, and the user can start the linkage air flow management main control program through the application program in the air conditioner. After the linkage management main control program receives the user instruction sent by the air conditioner, it generates a linkage control instruction. On the one hand, it sends the linkage control instruction to the air conditioner for execution, and on the other hand, it sends the linkage control instruction to the air circulation device for execution through the wireless network.

[0058] In some scenarios, taking the air circulation device control of the linkage of an air conditioner and an air circulation device as an example, an application program is installed on the air circulation device, and the user can start the linkage air flow management main control program through the application program in the air circulation device. After the linkage management main control program receives the user instruction sent by the air conditioner, it generates a linkage control instruction. On the one hand, it sends the linkage control instruction to the air conditioner for execution, and on the other hand, it sends the linkage control instruction to the air circulation device for execution through the wireless network.

[0059] Please refer toFigure 1 As shown, the interlock control method of the device includes the following steps.

[0060] In step S10, in response to a triggering operation by the user on the operation panel, the swing mode of the air conditioner is controlled to be interlocked with the swing mode of the air circulation device.

[0061] In some possible implementation manners, in response to a triggering operation by the user on the operation panel, a user instruction corresponding to the triggering operation is sent to the main control program for interlock air flow management, and the main control program for interlock air flow management controls the swing mode of the air conditioner to be interlocked with the swing mode of the air circulation device based on the user instruction.

[0062] Among them, the operation panel can be an operation panel on devices such as a terminal, an air conditioner, an air circulation device, a remote controller, etc. The operation panel is used to adjust the operation data of the air conditioner and / or the air circulation device, and the operation data includes an operation mode and / or operation parameters.

[0063] Among them, the operation mode in the operation data of the air conditioner includes a blowing mode, a swing mode, and a temperature control and energy saving mode.

[0064] For the blowing mode, the blowing mode refers to the mode of interaction between the air blown by the air conditioner and the user. The blowing mode includes a direct blowing mode and a wind feeling mode. In the direct blowing mode, the air blowing direction of the air conditioner faces the user. The wind feeling mode is an air conditioner mode that improves the user's comfort by adjusting the air blowing direction and air blowing intensity of the air conditioner. The wind feeling mode of the air conditioner can include a sky curtain wind mode, a carpet wind mode, a surrounding wind mode, and a non-direct blowing mode. The non-direct blowing mode includes a sleep mode, a gentle wind mode, a direct-blow prevention mode, etc. In the sky curtain wind mode, the carpet wind mode, and the non-direct blowing mode, the air blowing direction of the air conditioner avoids the user. Among them, the sky curtain wind mode indicates that the air blowing direction of the air conditioner is upward, and the output air conditioner air diffuses at the top of the room and then naturally sinks, so that the whole room is evenly cooled / heated; the carpet wind mode indicates that the air blowing direction of the air conditioner is downward, and the output air conditioner air is sent along the wall to the ground, and the air conditioner air then flows from bottom to top, so that the whole room is evenly cooled / heated. Usually, the sky curtain wind mode is used for refrigeration, and the carpet wind mode is used for heating. The sleep mode includes a standard sleep mode and a Lingyun sleep mode, etc. In the surrounding wind mode, the air blowing direction of the air conditioner surrounds the user. In the gentle wind mode, the air conditioner air output by the air conditioner is gentle and evenly distributed in the room, reducing the discomfort caused by the direct blowing of the air conditioner air.

[0065] For the swing mode, the swing mode includes an up-and-down swing mode and a left-and-right swing mode. In the up-and-down swing mode, the air blowing direction of the air conditioner swings up and down; in the left-and-right swing mode, the air blowing direction of the air conditioner swings left and right.

[0066] For the temperature control and energy-saving mode, it is used to control the indoor temperature and ensure air conditioner energy saving. The temperature control and energy-saving mode includes the Lingyun energy-saving mode and the human-sensing energy-saving mode. Under the Lingyun energy-saving mode and the human-sensing energy-saving mode, the air conditioner can operate in a low-power mode, achieving energy saving while taking into account the user experience.

[0067] Among them, the operating parameters in the operating data of the air conditioner include the air supply intensity, air supply direction, air conditioner output temperature, cooling or heating adjustment, timing duration, etc. The user can adjust the operating parameters such as the air supply intensity, air supply direction, and air conditioner output temperature of the air conditioner through the operation panel.

[0068] Among them, the operating modes in the operating data of the air circulation device include the natural wind mode, non-natural wind mode, swing mode, and fixed mode.

[0069] For the natural wind mode and the non-natural wind mode, the wind speed intensity output by the air circulation device in the natural wind mode is soft, and the wind speed intensity of the air circulation device can be adjusted in real time in the non-natural wind mode.

[0070] For the swing mode, the swing mode includes the up-and-down swing mode and the left-and-right swing mode. In the left-and-right swing mode, the air supply direction of the air circulation device sweeps left and right. In the up-and-down swing mode, the air supply direction of the air circulation device sweeps up and down.

[0071] For the fixed mode, the fixed mode indicates that the air circulation device stops swinging after swinging a certain stroke. The fixed mode includes the upward fixed mode and the downward fixed mode. The upward fixed mode indicates that the air supply direction of the air circulation device swings upward and then stops. The downward fixed mode indicates that the air supply direction of the air circulation device swings downward and then stops. The swing of the air supply direction of the air circulation device also refers to the swing of the body of the air circulation device.

[0072] Among them, the operating parameters in the operating data of the air circulation device include the air supply intensity, air supply direction, timing duration, etc.

[0073] Among them, the operation panel can be the display interface in the application program or the mechanical panel.

[0074] Exemplarily, if the operation panel is the display interface in an application, then the display interface can be the display interface of the application installed in a terminal, an air conditioner, a remote control, or an air circulation device. By triggering one or more controls / entries / buttons on the display interface, the swing mode of the air conditioner and the oscillation mode of the air circulation device can be controlled to be linked. It can be understood that the manifestation forms of the triggering operation performed on the operation panel of the application include but are not limited to: the triggering operation of the user on the control through a finger or a touch device (such as a stylus, etc.). For example, the user can perform the triggering operation through relevant gestures of the finger, and these relevant gestures can be any one of a click gesture, a swipe gesture, a drag gesture, a pressure recognition gesture, a long press gesture, a short press gesture, an area change gesture, a double press gesture, a double click gesture, or a combination thereof. Also, for example, the user can perform the triggering operation through a touch device, such as a single click, a double click, or clicks of any number of times, and can also be a long press or a short press.

[0075] Exemplarily, if the operation panel is a mechanical panel, then the mechanical panel can be the mechanical panel installed on an air conditioner, a remote control, or an air circulation device. By triggering one or more mechanical buttons on the mechanical panel, the swing mode of the air conditioner and the oscillation mode of the air circulation device can be controlled to be linked.

[0076] Among them, the air conditioner can also be called an air-conditioning unit, which is an air-conditioning device for adjusting the temperature and humidity in a space, and has functions such as refrigeration, heating, dehumidification, ventilation, and air purification. Under the refrigeration function, it can transfer the indoor heat to the outside through the refrigeration system to lower the temperature in the space; under the heating function, it transfers the outdoor heat to the indoor through the heating system to raise the temperature in the space; under the dehumidification function, it reduces the humidity in the space to make the indoor environment more comfortable; under the ventilation function, it introduces outdoor air into the indoor and discharges the air in the space; under the air purification function, it can remove pollutants such as dust, pollen, and bacteria in the air.

[0077] Among them, the air circulation device can also be called a circulation fan, which is used to generate a strong and stable airflow to promote the circulation of indoor air, so that the indoor air distribution is more uniform.

[0078] In some possible implementation manners, in response to the triggering operation of the user on the operation panel, the oscillation mode of the air circulation device can be adjusted in linkage according to the swing mode of the air conditioner.

[0079] Among them, the air conditioner and the air circulation device are in the same space, which can be that the air conditioner and the air circulation device are in the same physical space, such as in the same living area or the same office area, etc. The same living area includes the same living room, the same bedroom, etc. When it is determined that the air conditioner and the air circulation device are in the same space, the operation mode of the air circulation device can be linked and adjusted through the operation mode of the air conditioner. For example, taking the operation mode of the air conditioner as the sweeping mode and the operation mode of the air circulation device as the swinging mode as an example, when it is determined that the air conditioner and the air circulation device are in the same space, the swinging mode of the air circulation device can be linked and adjusted through the sweeping mode of the air conditioner.

[0080] In some possible implementation manners, during the process of linkage control of the air conditioner and the air circulation device, in addition to configuring the linkage air flow management main control program in the cloud server, please refer to Figure 3 As shown, a linkage mode selection module, a linkage air supply control module, a linkage temperature control module, a linkage control center, an air conditioner interaction module, an air circulation device interaction module, a linkage control center, an air conditioner linkage control module, and an air circulation device linkage control module can also be additionally configured.

[0081] Among them, the linkage air flow management main control program is the main control program for realizing the overall linkage air flow management function between the air conditioner and the air circulation device. It is used to obtain the linkage mode control parameters set in the linkage mode selection module and send the obtained linkage mode control parameters to the linkage control center. The linkage mode control parameters indicate whether the selected is the linkage air supply mode or the linkage temperature control mode.

[0082] Among them, the linkage mode selection module includes a linkage air supply control module and a linkage temperature control module. The linkage mode selection module is used to respond to the user's trigger operation to activate the linkage air supply control module and / or the linkage temperature control module. For example, if the user activates the linkage air supply control, the linkage air supply control module is activated, thereby providing the user with a linkage air supply mode between the air conditioner and the air circulation device; if the user activates the linkage temperature control control, the linkage temperature control module is activated, thereby providing the user with a linkage temperature control mode between the air conditioner and the air circulation device.

[0083] Among them, the linkage control center is a data interaction control center for data processing and data distribution in realizing the overall linkage air flow management function between the air conditioner and the air circulation device. The linkage control center includes an air conditioner interaction module and an air circulation device interaction module. The air conditioner interaction module is responsible for data interaction between the air conditioner linkage control module and the linkage control center, and the air circulation device interaction module is responsible for data interaction between the air circulation device control module and the linkage control center.

[0084] Among them, the linkage control network center is used to generate a linkage control instruction after obtaining the data sent by the linkage control center, and send the linkage control instruction to the air-conditioning linkage control module and the air circulation equipment linkage control module through a wireless network such as a WIFI local area network or a Bluetooth local area network.

[0085] Among them, the air-conditioning linkage control module is the execution end of the linkage air flow management function, and it is used to control the operation of the air conditioner in response to the linkage control instruction.

[0086] Among them, the air circulation equipment linkage control module is also the execution end of the linkage air flow management function, and it is used to control the operation of the air circulation equipment in response to the linkage control instruction.

[0087] In some possible implementation manners, in the linkage air supply mode, the air conditioner is the main device, and the air circulation equipment is the slave device. The swing mode of the air circulation equipment is dynamically adjusted based on the active change of the air conditioner's air-sweeping mode. The control interaction process in the linkage air supply mode includes the following steps: (1) The air-conditioning linkage control module transmits the air-sweeping mode of the air conditioner to the linkage air supply control module through the air-conditioning interaction module, the linkage control center, and the linkage mode selection module.

[0088] (2) If the user starts the air-sweeping linkage control on the application program, the application program will call the main control program of the linkage air flow management. The main control program of the linkage air flow management then selects the "air-sweeping linkage mode" from the three modes of "wind speed linkage mode", "air-sweeping linkage mode", and "wind feeling linkage mode" in the linkage air supply control module of the linkage mode selection module, thereby enabling the "air-sweeping linkage mode".

[0089] (3) The linkage air supply control module determines the swing mode of the air circulation equipment corresponding to the air-sweeping mode of the air conditioner.

[0090] (4) The linkage air supply control module sends the swing mode of the air circulation equipment to the air circulation equipment linkage control module through the linkage mode selection module, the linkage control center, and the linkage control network center. The air circulation equipment linkage control module controls the air circulation equipment to execute according to the corresponding swing mode, thereby realizing the linkage between the air-sweeping mode of the air conditioner and the swing mode of the air circulation equipment.

[0091] During the operation of the air conditioner and the air circulation device, the air conditioner linkage control module will collect the air conditioner operation data of the air conditioner in real time and feed it back to the air conditioner interaction module, and the air conditioner interaction module will feed it back to the linkage control center; similarly, the air circulation device linkage control module will also collect the circulation fan operation data of the air circulation device in real time and feed it back to the air circulation device interaction module, and the air circulation device interaction module will then feed it back to the linkage control center. Based on the fed-back air conditioner operation data and circulation fan operation data, the linkage control center determines whether the air conditioner and the air circulation device are operating normally as expected.

[0092] It can be understood that if the user does not activate the "sweeping air linkage control or linked air supply control", it means that the air circulation device does not accept the linkage control of the sweeping air mode of the air conditioner in real time operation. The air circulation device accepts the user instructions issued by the user through the application program of the air circulation device, the remote control of the air circulation device or the body buttons of the air circulation device, and executes according to the swinging mode indicated by the user instructions.

[0093] Through the above technical solution, in response to the trigger operation of the user on the operation panel, the sweeping air mode of the air conditioner and the swinging mode of the air circulation device in the same space can be controlled to be linked. During this process, the linkage between the air conditioner and the air circulation device can complement each other's deficiencies. After the sweeping air mode of the air conditioner changes, the swinging mode of the air circulation device will also change accordingly. The air supply volume output by the air circulation device will make up for the deficiency of the small air supply volume of the air conditioner to meet the user's usage requirements; and the air conditioner can adjust the indoor temperature and humidity, thus making up for the deficiency that the air circulation device cannot adjust the indoor temperature and humidity. Moreover, when the air conditioner and the air circulation device are in the same space, the linkage between the air conditioner and the air circulation device is controlled to perform linkage adjustment on the sweeping air mode of the air conditioner and the swinging of the air circulation device in the same space. When the air conditioner and the air circulation device in the same space are linked, the presented linked air supply effect is better. In addition, the user can realize the linkage control of the air conditioner and the air circulation device on the operation panel, without having to go to the location of the air conditioner or the air circulation device to adjust the linked air supply mode of the air conditioner or the air circulation device, which brings convenience to the user's operation.

[0094] Figures 4 to 6 It is a schematic diagram related to an exemplary embodiment involved in the present disclosure, which is used to interpret various linkages between an air conditioner and an air circulation device by triggering different controls and adopting different triggering methods, including the following various embodiments.

[0095] In the first embodiment, the display interface includes an air flow management interface, and the air flow management interface includes a linked air supply control; the linkage between the sweeping air mode and the swinging mode can be controlled in response to the trigger operation on the linked air supply control.

[0096] Exemplarily, the user can trigger the linkage air supply control to start, thereby starting the linkage between the air sweeping mode and the swinging mode.

[0097] In a possible implementation manner, it is also possible to respond to the closing operation of the linkage air supply control, and control the air sweeping mode and the swinging mode to stop the linkage. When the air sweeping mode and the swinging mode stop the linkage, the air sweeping mode of the air conditioner and the swinging mode of the air circulation device are independent of each other and can be independently controlled by the user.

[0098] In a possible implementation manner, please refer to Figure 4 As shown, the air flow management interface further includes a linkage temperature control control. It is also possible to respond to the triggering operation of at least one target control among the linkage temperature control control and the linkage air supply control, and control the air conditioner and the air circulation device to execute according to the linkage mode indicated by the at least one target control.

[0099] Among them, the linkage mode includes a linkage air supply mode and a linkage temperature control mode.

[0100] For the linkage air supply mode, the linkage air supply control is used to trigger the air conditioner and the air circulation device to be in the linkage air supply mode. In the linkage air supply mode, the air supply mode of the air conditioner and the air supply mode of the air circulation device are linked. The air supply mode of the air conditioner includes the first wind speed intensity, the air sweeping mode and the wind feeling mode, and the air supply mode of the air circulation device includes the second wind speed intensity, the swinging mode and the freezing mode. The linkage air supply mode between the air conditioner and the air circulation device includes a wind speed linkage mode, an air sweeping linkage mode and a wind feeling linkage mode. The wind speed linkage mode indicates that the first air supply intensity of the air conditioner is linked to the second air supply intensity of the air circulation device, the air sweeping linkage mode indicates that the air sweeping mode of the air conditioner is linked to the swinging mode of the air circulation device, and the wind feeling linkage mode indicates that the wind feeling mode of the air conditioner is linked to the freezing mode of the air circulation device.

[0101] Exemplarily, when the linkage air supply control is triggered, the air conditioner and the air circulation device will be controlled to execute at least one of the wind speed linkage mode, the air sweeping linkage mode and the wind feeling linkage mode.

[0102] For the linked temperature control mode, the linked temperature control control is used to trigger the air conditioner and the air circulation device to be in the linked temperature control mode. In the linked temperature control mode, the target inner ring temperature of the air conditioner is linked to the second air supply intensity of the air circulation device. The target inner ring temperature indicates that the air conditioner takes the target inner ring temperature as the target and controls the indoor temperature to reach the air conditioner set temperature. The higher the target inner ring temperature, the slower the indoor temperature reaches the air conditioner set temperature. On the contrary, the lower the target inner ring temperature, the faster the indoor temperature reaches the air conditioner set temperature. The linkage between the target inner ring temperature of the air conditioner and the second air supply intensity of the air circulation device includes: the corrected temperature of the air conditioner is linked to the second air supply intensity of the air circulation device, and there is a corresponding relationship between the corrected temperature of the air conditioner and the second air supply intensity of the air circulation device.

[0103] The target inner ring temperature of the air conditioner is obtained based on the air conditioner set temperature and the corrected temperature. The air conditioner set temperature is the indoor temperature that the user sets and expects to reach. The corrected temperature is obtained based on the second air supply intensity of the air circulation device. The higher the corrected temperature and the air conditioner set temperature, the higher the obtained target inner ring temperature. Please refer to Figure 5 as shown, the display interface also includes Figure 5 the setting interface shown in the figure. The setting interface also includes a linked temperature control setting interface, which is used to display the corresponding relationship between the corrected temperature and the second air supply intensity. It can be represented by a curve graph, or displayed in the form of key-value pairs. Of course, it can also be displayed in other forms.

[0104] Exemplarily, refer to Figure 5 as shown. Taking the linked temperature control setting interface as a curve graph as an example, the abscissa of the curve graph is the second air supply intensity, and the ordinate is the corrected temperature. The user can adjust the corrected temperature corresponding to any second air supply intensity on the curve graph. After the corrected temperature is adjusted, the target inner ring temperature of the air conditioner will also change correspondingly; after setting the corrected temperature, return to the air flow management interface shown in 4. After the user activates the linked temperature control control in the air flow management interface, the corrected temperature of the air conditioner and the second air supply intensity between the air circulation devices can be controlled to operate according to the Figure 5 corresponding relationship shown in the curve graph. After the second air supply intensity of the air circulation device changes, based on the Figure 5 curve graph shown in the figure to query the corresponding corrected temperature, and calculate the target inner ring temperature of the air conditioner based on the queried corrected temperature, so as to realize the linkage between the target inner ring temperature and the second air supply intensity.

[0105] Through the first implementation, the user can directly trigger the start of the linkage air supply control in the air flow management interface, thereby starting the linkage between the air sweeping mode and the swinging mode; the user can also trigger the start of the linkage temperature control control in the air flow management interface, thereby starting the linkage between the target inner ring temperature of the air conditioner and the second air supply intensity of the air circulation device; of course, the user can directly trigger the simultaneous start of the linkage air supply control and the linkage temperature control control in the air flow management interface, thereby controlling the linkage between the air sweeping mode of the air conditioner and the swinging mode of the air circulation device, and at the same time, the target inner ring temperature of the air conditioner can be linked and adjusted according to the second air supply intensity output by the air circulation device.

[0106] In the second implementation, the display interface further includes a setting interface, and the setting interface includes a sweeping linkage control; also, in the case where the sweeping linkage control is triggered, in response to the triggering operation on the sweeping linkage control, the linkage between the sweeping mode and the swinging mode can be controlled.

[0107] Exemplarily, the user can click Figure 4 the setting control in the air flow management interface to enter the Figure 5 shown setting interface, then click the sweeping linkage control, and then return to the Figure 4 shown air flow management interface to trigger the linkage air supply control, thereby starting the linkage between the air sweeping mode and the swinging mode.

[0108] Among them, the air flow management interface includes a setting control, and this setting control is linked to the Figure 5 shown setting interface, and this setting interface is an adjustment interface for providing the linkage air supply mode and the linkage temperature control mode.

[0109] In a possible implementation, in response to the closing operation on the linkage air supply control, the linkage between the air sweeping mode and the swinging mode can be controlled to stop, and the sweeping linkage control in the setting interface can be controlled to close.

[0110] In a possible implementation, in addition to the sweeping linkage control, the setting interface further includes a wind speed linkage control and a wind feeling linkage control; in the case where at least one target control among the wind speed linkage control, the sweeping linkage control, and the wind feeling linkage control in the setting interface is triggered, in response to the triggering operation on the linkage air supply control, the air conditioner and the air circulation device can be controlled to execute according to the linkage mode indicated by the at least one target control.

[0111] Among them, the swing linkage control is used to trigger the air conditioner and the air circulation device to be in the swing linkage mode. In the swing linkage mode, the swing mode of the air conditioner is linked to the swing mode of the air circulation device. The swing mode of the air conditioner includes the up-and-down swing mode and the left-and-right swing mode, and the swing mode of the air circulation device includes the up-and-down swing mode and the left-and-right swing mode. The swing range indicated by the swing mode of the air conditioner is the same as the swing range indicated by the swing mode of the air circulation device.

[0112] Among them, there is a corresponding relationship between the swing mode and the swing mode.

[0113] Exemplarily, when the swing mode of the air conditioner is the up-and-down swing mode, the corresponding swing mode of the air circulation device is the up-and-down swing mode. When the swing linkage control and / or the linkage air supply control is triggered and turned on, the air conditioner and the air circulation device turn on the swing linkage mode. In the swing linkage mode, if the air conditioner turns on the up-and-down swing mode, the air circulation device will synchronously turn on the up-and-down swing mode; if the air conditioner turns off the up-and-down swing mode, the air circulation device will synchronously turn off the up-and-down swing mode. After the swing linkage control is triggered, when the swing mode of the air conditioner is the up-and-down swing mode, it means that the users in the room are longitudinally distributed in front of the air conditioner, and the users expect the air conditioner to swing back and forth among multiple longitudinally distributed users by means of up-and-down swing, so as to be able to take into account the blowing experience of multiple users at the same time. At this time, the swing mode of the air circulation device can be controlled to be the up-and-down swing mode. Then, through the up-and-down swing of the air circulation device, the up-and-down swing range of the air conditioner wind output by the up-and-down swing of the air conditioner can be made larger. At this time, the swing ranges of both the air conditioner and the air circulation device are the up-and-down swing ranges, so as to expand the up-and-down swing range of the air conditioner wind to meet the user's usage requirements.

[0114] Exemplarily, when the swing mode of the air conditioner is the left-and-right swing mode, the corresponding swing mode of the air circulation device is the left-and-right swing mode. When the swing linkage control and / or the linkage air supply control is triggered and turned on, the air conditioner and the air circulation device turn on the swing linkage mode. In the swing linkage mode, if the air conditioner turns on the left-and-right swing mode, the air circulation device will synchronously turn on the left-and-right swing mode; if the air conditioner turns off the left-and-right swing mode, the air circulation device will synchronously turn off the left-and-right swing mode. When the swing mode of the air conditioner is the left-and-right swing mode, it means that the users in the room are horizontally distributed in front of the air conditioner, and the users expect the air conditioner to swing back and forth among multiple horizontally distributed users by means of left-and-right swing, so as to be able to take into account the blowing experience of multiple users at the same time. At this time, the swing mode of the air circulation device can be controlled to be the left-and-right swing mode. Then, through the left-and-right swing of the air circulation device, the left-and-right swing range of the air conditioner wind output by the left-and-right swing of the air conditioner can be made larger. At this time, the swing ranges of both the air conditioner and the air circulation device are the left-and-right swing ranges, so as to expand the left-and-right swing range of the air conditioner wind to meet the user's usage requirements.

[0115] Among them, the wind speed linkage control is used to trigger the air conditioner and the air circulation device to be in the wind speed linkage mode. In the wind speed linkage mode, the first air supply intensity of the air conditioner is linked with the second air supply intensity of the air circulation device. Both the first air supply intensity of the air conditioner and the second air supply intensity of the air circulation device can be reflected by the wind speed gears, and the first air supply intensity of the air conditioner is positively correlated with the second air supply intensity of the air circulation device.

[0116] For example, after the wind speed linkage control is triggered and started, if the first air supply intensity of the air conditioner increases, the second air supply intensity of the air circulation device will be controlled to increase in a linked manner. When the first air supply intensity of the air conditioner becomes larger, it indicates that the user expects a greater air supply intensity to quickly cool the indoor air. At this time, the second air supply intensity of the air circulation device can be controlled to increase correspondingly, so as to provide the user with a greater air supply intensity and meet the user's rapid refrigeration demand; conversely, when the first air supply intensity of the air conditioner decreases, it indicates that the user expects a smaller air supply intensity. Therefore, the second air supply intensity of the air circulation device can be controlled to decrease correspondingly, so as to provide the user with a smaller air supply intensity.

[0117] Among them, the wind feeling linkage control is used to trigger the air conditioner and the air circulation device to be in the wind feeling linkage mode. In the wind feeling linkage mode, the wind feeling mode of the air conditioner is linked with the fixed mode of the air circulation device. When controlling the linkage between the wind feeling mode of the air conditioner and the fixed mode of the air circulation device, the air supply direction indicated by the fixed mode of the air circulation device can be controlled to be the same as the air supply direction indicated by the wind feeling mode of the air conditioner, both of which are upward or both of which are downward.

[0118] For example, after the wind feeling linkage control is triggered and started, if the wind feeling mode of the air conditioner is a sky curtain wind mode, a surrounding wind mode, a sleep mode, a soft wind mode, a direct blow prevention mode, etc., and at this time the air supply direction of the air conditioner is upward, the air circulation device can be controlled to be in the upward fixed mode, so that the air supply direction of the air circulation device is also upward; if the wind style mode of the air conditioner is a carpet wind mode, and at this time the air supply direction of the air conditioner is downward, the air circulation device can be controlled to be in the downward fixed mode, so that the air supply direction of the air circulation device is also downward.

[0119] The following will introduce Figure 5 the scenario where the linkage air supply control and the linkage temperature control are triggered when at least one of the target controls, namely the wind speed linkage control, the swing wind linkage control, and the wind feeling linkage control, is triggered.

[0120] For example, please refer to Figure 5 As shown, if the user activates the wind speed linkage control and the swing wind linkage control in the Figure 5 shown settings interface and then returns to Figure 4After the airflow management interface shown starts the linkage air supply control and the linkage temperature control, it will control the air conditioner and the air circulation device to execute the following three linkage modes: First, in the wind speed linkage mode, the second air supply intensity of the air circulation device is dynamically adjusted according to the first air supply intensity of the air conditioner; Second, in the air sweep linkage mode, the swing mode of the air circulation device is dynamically adjusted according to the air sweep mode of the air conditioner; Third, in the linkage temperature control mode, the target inner ring temperature of the air conditioner is dynamically adjusted according to the second air supply intensity of the air circulation device.

[0121] Exemplarily, please refer to Figure 5 as shown, if the user Figure 5 in the settings interface shown starts the wind speed linkage control and the wind sense linkage control, and then returns to Figure 4 the airflow management interface shown and starts the linkage air supply control and the linkage temperature control, it will control the air conditioner and the air circulation device to execute the following three linkage modes: First, in the wind speed linkage mode, the second air supply intensity of the air circulation device is dynamically adjusted according to the first air supply intensity of the air conditioner; Second, in the wind sense linkage mode, the fixed mode of the air circulation device is dynamically adjusted according to the wind sense mode of the air conditioner; Third, in the linkage temperature control mode, the target inner ring temperature of the air conditioner is dynamically adjusted according to the second air supply intensity of the air circulation device.

[0122] Of course, in response to the closing operation of the linkage air supply control, it is also possible to control at least one of the wind speed linkage control, the air sweep linkage control, and the wind sense linkage control that is started to be closed, and control the air conditioner and the air circulation device to stop executing the linkage mode indicated by the target control. After the wind speed linkage control is closed, the second air supply intensity of the air circulation device no longer receives the linkage control of the first air supply intensity of the air conditioner, but can receive the user instructions issued by the user through the application, the remote control, or the air conditioner body, so as to adjust the second air supply intensity of the air circulation device based on the user instructions; after the air sweep linkage control is closed, the swing mode of the air circulation device no longer receives the linkage control of the air sweep mode of the air conditioner, but can receive the user instructions issued by the user through the application, the remote control, or the air conditioner body, so as to adjust the swing mode of the air circulation device based on the user instructions; after the wind sense linkage control is closed, the fixed mode of the air circulation device no longer receives the linkage control of the wind sense mode of the air conditioner, but can receive the user instructions issued by the user through the application, the remote control, or the air conditioner body, so as to adjust the fixed mode of the air circulation device based on the user instructions.

[0123] Through the second implementation manner, after the user triggers the start of at least one of the wind sense linkage control, the wind speed linkage control, and the air sweep linkage control in the settings interface, and then returns to the airflow management interface and triggers the start of the linkage air supply control, the air conditioner and the air circulation device can be controlled to be linked according to the linkage mode indicated by at least one target control.

[0124] In the third implementation, the display interface further includes an air flow management interface, and the air flow management interface includes a swing linkage control; it can also respond to a trigger operation on the swing linkage control to control the linkage between the swing mode and the oscillation mode.

[0125] For example, the user can click Figure 6 the swing linkage control in the shown air flow management interface to start the linkage between the swing mode and the oscillation mode.

[0126] In a possible implementation, it can also respond to a closing operation on the swing linkage control to control the swing mode and the oscillation mode to stop the linkage.

[0127] In a possible implementation, the air flow management interface further includes a wind speed linkage control, a wind feeling linkage control, and a linkage temperature control. When at least one target control among the wind speed linkage control, the swing linkage control, the wind feeling linkage control, and the linkage temperature control in the air flow management interface is triggered, the air conditioner and the air circulation device are controlled to execute according to the linkage mode indicated by the at least one target control.

[0128] Exemplarily, please refer to Figure 6 As shown, the wind speed linkage control, the swing linkage control, the wind feeling linkage control, and the linkage temperature control are shown in the air flow management interface. The user can trigger at least one of the target controls to start, so as to control the air conditioner and the air circulation device to execute the corresponding linkage mode.

[0129] Through the third implementation, after at least one of the target controls among the wind feeling linkage control, the wind speed linkage control, the swing linkage control, and the linkage temperature control in the air flow management interface is started by the user, the air conditioner and the air circulation device can be controlled to perform linkage according to the linkage mode indicated by the target control.

[0130] Through the above technical solution, the user can trigger at least one of the target controls of the linkage air supply control and the linkage temperature control in Figure 4 the shown air flow management interface to start, and can also trigger at least one of the target controls of the wind speed linkage control, the swing linkage control, and the wind feeling linkage control in Figure 5 the shown setting interface to start, and can also trigger at least one of the target controls of the wind speed linkage control, the swing linkage control, and the wind feeling linkage control in Figure 6 the shown air flow management interface to start, which provides a variety of diversified operations for triggering the air conditioner and the air circulation device to enter the corresponding linkage mode.

[0131] The following introduces the exemplary embodiments involved in the present disclosure, which are used to interpret the exemplary solutions for the linkage between the swing mode of the air conditioner and the oscillation mode of the air circulation device.

[0132] Among them, the swing modes of the air circulation device include a dynamic mode and a static mode. The dynamic mode indicates that the air circulation device is in a swinging state, and the static mode indicates the fixed state after the air circulation device swings.

[0133] For the dynamic mode of the air circulation device, the dynamic mode of the air circulation device includes an up-and-down swing mode and a left-and-right swing mode. The maximum swing stroke of the up-and-down swing mode and the left-and-right swing mode is a preset first swing stroke or a second swing stroke configured by the user, and the second swing stroke is less than or equal to the first swing stroke.

[0134] The swing stroke can be reflected by angles, grids, etc. The swing range of the air circulation device can be divided into different angles or different grids. Taking the swing stroke as an angle as an example, when the air circulation device executes the up-and-down swing mode or the left-and-right swing mode, the air circulation device can be controlled to execute according to the default maximum swing angle or the maximum swing angle set by the user.

[0135] The air-sweeping range of the air circulation device in the up-and-down swing mode is smaller than the air-sweeping range of the air circulation device in the left-and-right swing mode.

[0136] Exemplarily, taking the air-sweeping range as an angle range as an example, please refer to Figure 7 and Figure 8 As shown, the air-sweeping range of the air circulation device in the up-and-down swing mode is -45° to 90°; the angle range of the air circulation device in the left-and-right swing mode is 0° to 150°.

[0137] For the static mode of the air circulation device, the static mode of the air circulation device includes an upward fixed mode, a downward fixed mode, a leftward fixed mode, and a rightward fixed mode. The upward fixed mode indicates that the air supply direction of the air circulation device is upward when it is fixed after swinging up and down; the downward fixed mode indicates that the air supply direction of the air circulation device is downward when it is fixed after swinging up and down; the leftward fixed mode indicates that the air supply direction of the air circulation device is leftward when it is fixed after swinging left and right; the rightward fixed mode indicates that the air supply direction of the air circulation device is rightward when it is fixed after swinging left and right.

[0138] Among them, the air-sweeping mode of the air conditioner also includes a dynamic mode and a static mode. The dynamic mode indicates that the air conditioner is in an air-sweeping state, and the static mode indicates the fixed state after the air conditioner sweeps the air.

[0139] For the dynamic mode of the air conditioner, the dynamic mode of the air conditioner includes an up-and-down air-sweeping mode and a left-and-right air-sweeping mode. The maximum swing stroke of the up-and-down air-sweeping mode and the left-and-right air-sweeping mode is a preset third swing stroke or a fourth swing stroke configured by the user, and the fourth swing stroke is less than or equal to the third swing stroke.

[0140] For the static mode of the air conditioner, the static mode of the air conditioner includes an upward fixed mode, a downward fixed mode, a leftward fixed mode, and a rightward fixed mode. The upward fixed mode indicates that the air supply direction of the air conditioner is upward when it is fixed after swinging up and down; the downward fixed mode indicates that the air supply direction of the air conditioner is downward when it is fixed after swinging up and down; the leftward fixed mode indicates that the air supply direction of the air conditioner is leftward when it is fixed after swinging left and right; the rightward fixed mode indicates that the air supply direction of the air conditioner is rightward when it is fixed after swinging left and right.

[0141] In a possible implementation, the air-sweeping range indicated by the air conditioner in the dynamic mode is the same as the air-sweeping range indicated by the air circulation device in the dynamic mode.

[0142] Exemplarily, if the dynamic mode of the air conditioner is an up-and-down air-sweeping mode and the dynamic mode of the air circulation device is an up-and-down swinging mode, the air-sweeping ranges of both are the up-and-down air-sweeping range; if the dynamic mode of the air conditioner is a left-and-right air-sweeping mode and the dynamic mode of the air circulation device is a left-and-right swinging mode, the air-sweeping ranges of both are the left-and-right air-sweeping range.

[0143] In a possible implementation, the air supply direction indicated by the air conditioner in the static mode is the same as the air supply direction indicated by the air circulation device in the static mode.

[0144] Exemplarily, if the static mode of the air conditioner is the upward fixed mode, the static mode of the air circulation device can be controlled to be the upward fixed mode as well, and the air supply directions of both are upward; if the static mode of the air conditioner is the downward fixed mode, the static mode of the air circulation device can be controlled to be the downward fixed mode as well, and the air supply directions of both are downward; if the static mode of the air conditioner is the leftward fixed mode, the static mode of the air circulation device can be controlled to be the leftward fixed mode as well, and the air supply directions of both are leftward; if the static mode of the air conditioner is the rightward fixed mode, the static mode of the air circulation device can be controlled to be the rightward fixed mode as well, and the air supply directions of both are rightward.

[0145] Through the above technical solutions, in the scenario where the air-sweeping mode of the air conditioner is linked with the swinging mode of the air circulation device, on the one hand, the air-sweeping range indicated by the air-sweeping mode of the air conditioner is controlled to be the same as the air-sweeping range indicated by the air-sweeping mode of the air circulation device. For example, both are left-and-right air-sweeping or up-and-down air-sweeping, so that the air conditioner and the air circulation device can cooperate to expand the air-sweeping range and meet the user's greater air-sweeping range requirements; on the other hand, the air supply direction when the air conditioner is fixed after air-sweeping can be controlled to be the same as the air supply direction when the air circulation device is fixed after air-sweeping, so that the air output by the air conditioner and the air circulation device can face or avoid the user simultaneously to meet the user's needs of the wind blowing on people or avoiding people.

[0146] Figure 9This is an exemplary embodiment related to the present disclosure, which is used to interpret an exemplary solution after receiving a user instruction during the linkage process of the air-sweeping mode of an air conditioner and the swinging mode of an air circulation device, including the following steps: In step S20, during the process of controlling the linkage of the air-sweeping mode and the swinging mode, in response to receiving a user instruction, control the air circulation device to execute in the target swinging mode indicated by the user instruction.

[0147] The user instruction is used to indicate the target swinging mode that the air circulation device needs to execute. The user instruction can be an instruction triggered by the user on the App (application program) of the air circulation device, the remote control of the air circulation device, or the body control button of the air circulation device. Among them, if the control panel of the air circulation device is the display interface of the application program installed in the air circulation device, then the user instruction can be triggered on the display interface; if the control panel of the air circulation device is the mechanical panel of the air circulation device, then the user instruction can be triggered on the body control button of the mechanical panel.

[0148] In a possible implementation manner, during the process of adjusting the swinging mode according to the air-sweeping mode within the air-sweeping linkage period, if no user instruction is received, continue to control the air circulation device to execute the swinging mode corresponding to the air-sweeping mode at the starting time point of the air-sweeping linkage period of the air conditioner.

[0149] In a possible implementation manner, during the process of adjusting the swinging mode according to the air-sweeping mode within the air-sweeping linkage period, if a user instruction is received, control the air circulation device to execute in the target swinging mode indicated by the user instruction until reaching the end time point of the air-sweeping linkage period, and this end time point is also the time point when the changed air-sweeping mode is received.

[0150] Among them, a single air-sweeping linkage period is the period of change of the air-sweeping mode of the air conditioner, and each air-sweeping linkage period can be equal or unequal, and no limitation is made here.

[0151] For example, taking the air-sweeping mode of the air conditioner including the up-and-down air-sweeping mode and the left-and-right air-sweeping mode as an example, the time experienced by the air conditioner from the up-and-down air-sweeping mode to the left-and-right air-sweeping mode is one air-sweeping linkage period, and the time experienced by the air conditioner from the left-and-right air-sweeping mode to the up-and-down air-sweeping mode is another air-sweeping linkage period. The length of each air-sweeping linkage period is determined according to the change of the air-sweeping mode.

[0152] Among them, a single air-sweeping linkage period can also be the period when the air-sweeping mode of the air conditioner is switched from the on state to the off state, and each air-sweeping linkage period can be equal or unequal, and no limitation is made here.

[0153] For example, taking the air-sweeping mode of an air conditioner including the up-and-down air-sweeping mode as an example, the time elapsed from the start to the end of the up-and-down air-sweeping mode of the air conditioner is the air-sweeping linkage cycle.

[0154] Among them, the change of the air-sweeping mode of the air conditioner can be the change of the air-sweeping mode triggered by the user through the App of the air conditioner, the remote control of the air conditioner or the control button on the body of the air conditioner, or it can be the change of the air-sweeping mode automatically triggered by the air conditioner based on the air conditioner mode.

[0155] In some scenarios, after the user turns on the up-and-down air-sweeping mode of the air conditioner through the remote control of the air conditioner, the linked air flow management main control program will control the air circulation device to execute the up-and-down swing mode at this time; if the user controls the air conditioner to turn off the up-and-down air-sweeping mode through the remote control of the air conditioner, the linked air flow management main control program will control the air circulation device to stop executing the up-and-down swing mode at this time. In this scenario, the cycle from the running state to the closed state of the up-and-down air-sweeping mode of the air conditioner is a single air-sweeping linkage cycle. Among them, within the air-sweeping linkage cycle of the air conditioner, if no user instruction triggered by the remote control of the air circulation device is received, the air circulation device will be controlled to continue to execute the up-and-down swing mode until the end of the air-sweeping linkage cycle; if a user instruction to execute the left-and-right swing mode of the air circulation device triggered by the remote control / body or App of the air circulation device is received, the air circulation device will be controlled to switch from the up-and-down swing mode to the left-and-right swing mode until the end of the air-sweeping linkage cycle.

[0156] In a possible implementation manner, after the user turns on the linked air supply control component to start the linked air supply control module, the air conditioner linked control module will read the air-sweeping mode of the air conditioner in real time, and transmit the air-sweeping mode of the air conditioner to the linked air supply control module in real time through the air conditioner interaction module, the linked control center and the linked mode selection module, so that the linked air supply control module can obtain the air-sweeping mode of the air conditioner in real time; the linked air supply module then judges the swing mode that the air circulation device should execute at this time according to the mapping relationship between the air-sweeping mode of the air conditioner and the swing mode of the air circulation device, and encapsulates the swing mode that the air circulation device should execute at this time in the linked control instruction, and issues it to the air circulation device through the linked mode selection module, the linked control center, the linked control network center and the air circulation device linked control module. During this process, if the air-sweeping mode that the air circulation device should execute in the received linked control instruction changes, it means that the current air-sweeping linkage cycle ends and enters the next air-sweeping linkage cycle. Therefore, before the air-sweeping mode executed in the linked control instruction received by the air circulation device changes, if a user instruction is received, the air circulation device is controlled to execute according to the target swing mode indicated by the user instruction until a linked control instruction after the air-sweeping mode change is received and enters the next air-sweeping linkage cycle.

[0157] In step S30, in response to a change in the air-sweeping mode of the air conditioner, the air circulation device is controlled to switch from the target swinging mode to the swinging mode corresponding to the changed air-sweeping mode.

[0158] In a possible implementation manner, if the air-sweeping mode of the air conditioner changes, it indicates that the end time point of the air-sweeping linkage cycle has been reached. At this time, the air circulation device can be controlled to switch from the target swinging mode indicated by the user instruction to the swinging mode corresponding to the changed air-sweeping mode.

[0159] Among them, the change in the air-sweeping mode of the air conditioner includes the air conditioner switching from one air-sweeping mode to another air-sweeping mode, or the air-sweeping mode of the air conditioner switching from the on state to the off state. When the air conditioner switches from one air-sweeping mode to another air-sweeping mode, the air circulation device will be controlled to execute the swinging mode corresponding to the other air-sweeping mode; when the air-sweeping mode of the air conditioner switches from the on state to the off state, the swinging mode of the air circulation device will also be controlled to switch from the on state to the off state.

[0160] Exemplarily, during the air-sweeping linkage cycle when the air-sweeping mode of the air conditioner switches from the up-and-down air-sweeping mode to the left-and-right air-sweeping mode, the air conditioner is in the up-and-down air-sweeping mode and the corresponding air circulation device is in the up-and-down swinging mode, so as to ensure the air-sweeping linkage between the air conditioner and the air circulation device; during this air-sweeping linkage cycle, if the user controls the air circulation device to be in the left-and-right swinging mode through the remote control, the air circulation device will be preferentially controlled to be in the left-and-right swinging mode, so as to ensure the real-time needs of the user; when the air-sweeping mode of the air conditioner has switched from the up-and-down air-sweeping mode to the left-and-right air-sweeping mode, the above air-sweeping linkage cycle ends, and at this time, the air circulation device can be controlled to execute the left-and-right swinging mode corresponding to the left-and-right air-sweeping mode.

[0161] Exemplarily, during the air-sweeping linkage cycle when the air-sweeping mode of the air conditioner switches from the on state to the off state, the air conditioner is in the up-and-down air-sweeping mode and the corresponding air circulation device is in the up-and-down swinging mode, so as to ensure the air-sweeping linkage between the air conditioner and the air circulation device; during this air-sweeping linkage cycle, if the user controls the air circulation device to be in the left-and-right swinging mode through the remote control, the air circulation device will be preferentially controlled to execute the left-and-right swinging mode, so as to ensure the real-time needs of the user; when the air-sweeping mode of the air conditioner has been switched to the off state, the above air-sweeping linkage cycle ends, and at this time, the air circulation device can also be controlled to exit the left-and-right swinging mode and stop swinging left and right.

[0162] It can be understood that the air-sweeping linkage scenario between the air conditioner and the air circulation device can be applied in each air-sweeping linkage cycle. If a user instruction is received in each air-sweeping linkage cycle, the air circulation device will be controlled to preferentially execute according to the target swinging mode indicated by the user instruction until the end of the air-sweeping linkage cycle or until the air-sweeping mode of the air conditioner changes.

[0163] Through the above technical scheme, on the first hand, in the process of adjusting the swing mode in linkage with the sweeping mode, if a user instruction is received, the air circulation device will be controlled to give priority to executing the target swing mode indicated by the user instruction, so that when faced with the two options of automatic linkage control of the system and user control, user control is given priority to improve the user experience; on the second hand, after the sweeping mode of the air conditioner changes, it means that the user has adjusted the sweeping mode of the air conditioner and the user's needs have changed. Therefore, the air circulation device can be controlled to switch from the target swing mode indicated by the previous user instruction to the swing mode corresponding to the changed sweeping mode, or the air circulation device can be controlled to exit the swing mode, so as to better meet the real-time changes in user needs.

[0164] Figure 10 This is an exemplary embodiment of the present disclosure, which is used to explain an exemplary solution when the wind sweep linkage control and the wind speed linkage control are turned on at the same time, including the following steps: In step S40, when the wind sweep linkage control and the wind speed linkage control are turned on at the same time, the air conditioner is controlled to execute the target air supply intensity.

[0165] Among them, there is a corresponding relationship between the first air supply intensity of the air conditioner and the second air supply intensity of the air circulation device. When the wind sweep linkage control and the wind speed linkage control are turned on at the same time, the air conditioner and the air circulation device will execute the wind speed linkage mode while executing the wind sweep linkage mode. At this time, the air supply intensity executed by the air circulation device in the wind speed linkage mode is controlled to be the target air supply intensity, and the target air supply intensity is less than the second air supply intensity.

[0166] For example, if the first air supply intensity of the air conditioner, level 2, corresponds to level 4 of the air circulation device, when the sweep linkage control is turned on separately, if the first air supply intensity of the air conditioner is level 2, the second air supply intensity of the air circulation device will be controlled to level 4; when the wind speed linkage control and the sweep linkage control are triggered and started at the same time, if the first air supply intensity of the air conditioner is level 2, the target wind intensity output by the air circulation device will be controlled to be less than level 4, for example, level 3, and the sweep mode of the air conditioner will be linked with the swing mode of the air circulation device.

[0167] In a possible implementation, the second air supply intensity is corrected according to a correction coefficient to obtain the target air supply intensity.

[0168] The correction coefficient is less than 1, and the product of the correction coefficient and the second air supply intensity can be used as the target air supply intensity. The correction coefficient is in the range of 0.5 to 0.8.

[0169] For example, taking the correction coefficient as 0.5, if the first air supply intensity is at the 2nd gear and the corresponding second air supply intensity is at the 4th gear, when the air speed linkage control and the air sweep linkage control are triggered and started simultaneously, the correction coefficient 0.5 can be used to correct the second air supply intensity at the 4th gear, and the target air supply intensity finally executed by the air circulation device is at the 2nd gear.

[0170] It can be understood that when the air speed linkage control and the air sweep linkage control are turned on simultaneously, it will trigger the air conditioner and the air circulation device to execute the air speed linkage mode and the air sweep linkage mode at the same time. Since the air circulation device will accelerate the indoor air circulation by swinging left and right or up and down in the air sweep linkage mode, bringing a better cooling experience to the user, and it brings a part of the air supply intensity, so even when using a lower air supply intensity to output the circulating air, it will not reduce the user's cooling experience. Therefore, when the air speed linkage control and the air sweep linkage control are turned on simultaneously, the second air supply intensity of the air circulation device can be corrected by using the correction coefficient, so that the target air supply intensity of the corrected air circulation device is lower than the second air supply intensity before correction. The lower target air supply intensity combined with the air supply intensity brought by the air sweep linkage, the finally delivered air supply intensity to the user remains basically unchanged, while ensuring the user's cooling experience and reducing energy consumption.

[0171] Figure 11 And Figure 12 is an exemplary embodiment involved in the present disclosure, which is used to interpret an exemplary solution for controlling the linkage of an air conditioner and an air circulation device in the same network or different networks, including the following steps.

[0172] In a possible implementation manner, when both the air conditioner and the air circulation device are connected to the network, in response to a trigger operation of the user on the operation panel, control the linkage of the air sweep mode and the swing mode.

[0173] Among them, both the air conditioner and the air circulation device being connected to the network includes two situations. One is that the air conditioner and the air circulation device are in the same network and communicate through this network; the other is that the air conditioner and the air circulation device are in different networks and communicate through different networks.

[0174] Before the application displays the air flow management interface, a network selection interface will also be displayed. Please refer to Figure 12As shown, the network selection interface is used to provide a configuration interface for the network name (such as the WIFI name under the Internet of Things) and network password (such as the WIFI password) of the selected air conditioner or air circulation device. The user can configure the network for the air conditioner and air circulation device on the network selection interface. For example, the connection networks of the air conditioner and air circulation device in the same space can be configured as the same network or different networks. Then, the air conditioner and air circulation device in the same space can use the same network or different networks to achieve communication connection, and further achieve linkage based on this communication connection.

[0175] Optionally, a device search interface will also be displayed before the network selection interface is displayed. Please refer to Figure 11 As shown, multiple devices in multiple spaces are displayed in the device search interface. These devices can be either air conditioners or air circulation devices. In response to the user's trigger operation on the target device among the multiple devices, the network selection interface is entered. In response to the trigger operation on the network name in the network selection interface, the target network name is selected. In response to the setting operation on the network password in the network selection interface, the configuration of the network password is completed. In this way, the configuration of the network name and network password for the target device is completed. If there are two target devices with the same network name and network password among the configured multiple target devices, it means that these two target devices are under the same network, then these two target devices can establish a network connection to achieve linkage. Of course, two target devices under different networks can also achieve linkage.

[0176] For example, after the application displays Figure 11 the device search interface shown, Figure 11 the device search interface shown displays air conditioners A to E and air circulation devices A to E. If the user selects air conditioner A, then the Figure 12 network selection interface will be entered, and the user configures the network name and network password for air conditioner A. Subsequently, when returning to the Figure 11 device search interface shown, the user selects air circulation device A and then enters the Figure 12 network selection interface, and the user configures the network name and network password for air circulation device A. In this way, after the user configures the network for air conditioner A and air circulation device A, if the user configures the same network name and network password for air conditioner A and air circulation device A, then air conditioner A and air circulation device A can belong to the same network; if the user configures different network names and network passwords for air conditioner A and air circulation device A, then air conditioner A and air circulation device A belong to different networks.

[0177] Through the above technical solution, the air conditioner and the air circulation device can be equipped with the same network or different networks, enabling the air conditioner and the air circulation device to communicate using the same network or different networks, and on the basis of achieving communication, interacting with their operating parameters and / or operating modes, thereby realizing the wind feeling linkage between the air conditioner and the air circulation device.

[0178] Figure 13 It is a block diagram of a linkage control device for a device shown according to an exemplary embodiment. Refer to Figure 13 As shown, the linkage control device 1300 of the device includes a linkage control module 1310.

[0179] The linkage control module 1310 is configured to control the linkage between the air-sweeping mode of the air conditioner and the swinging mode of the air circulation device in response to a triggering operation by the user on the operation panel; wherein, the air conditioner and the air circulation device are in the same space, the operation panel is a mechanical panel or a display interface in an application program, and the operation panel is used to adjust the operating data of the air conditioner and / or the air circulation device, and the operating data includes an operating mode and / or operating parameters.

[0180] In a possible implementation manner, the display interface includes an air flow management interface, and the air flow management interface includes a linkage air supply control; the linkage control module 1310 is further configured to control the linkage between the air-sweeping mode and the swinging mode in response to a triggering operation on the linkage air supply control.

[0181] In a possible implementation manner, the display interface further includes a setting interface, and the setting interface includes an air-sweeping linkage control; the linkage control module 1310 is further configured to, in the case where the air-sweeping linkage control is triggered, control the linkage between the air-sweeping mode and the swinging mode in response to a triggering operation on the air-sweeping linkage control.

[0182] In a possible implementation manner, the display interface further includes an air flow management interface, and the air flow management interface includes an air-sweeping linkage control; the linkage control module 1310 is further configured to control the linkage between the air-sweeping mode and the swinging mode in response to a triggering operation on the air-sweeping linkage control.

[0183] In a possible implementation manner, the linkage control device 1300 of the device further includes: A closing module, configured to control the stop of the linkage between the air-sweeping mode and the swinging mode in response to a closing operation on the linkage air supply control and / or the air-sweeping linkage control.

[0184] In a possible implementation, the swing mode includes a dynamic mode and a static mode; the dynamic mode indicates that the air circulation device is in a swinging state, and the static mode indicates the fixed state after the air circulation device swings.

[0185] In a possible implementation, the air-sweeping mode of the air conditioner is an up-and-down air-sweeping mode, and the corresponding swing mode of the air circulation device is an up-and-down swing mode; the air-sweeping mode of the air conditioner is a left-and-right air-sweeping mode, and the corresponding swing mode of the air circulation device is a left-and-right swing mode.

[0186] In a possible implementation, the maximum swing stroke of the air circulation device in the dynamic mode is a preset first swing stroke or a second swing stroke configured by the user, and the second swing stroke is less than or equal to the first swing stroke.

[0187] In a possible implementation, the linkage control device 1300 of the device further includes: A user module, configured to control the air circulation device to execute in the target swing mode indicated by the user instruction in response to receiving the user instruction during the process of controlling the linkage between the air-sweeping mode and the swing mode.

[0188] In a possible implementation, there is a corresponding relationship between the air-sweeping mode and the swing mode, and the linkage control device 1300 of the device further includes: A switching module, configured to control the air circulation device to switch from the target swing mode to the swing mode corresponding to the changed air-sweeping mode in response to the change of the air-sweeping mode of the air conditioner.

[0189] In a possible implementation, the setting interface further includes a wind speed linkage control and a wind feeling linkage control; the linkage control device 1300 of the device further includes: A linkage control module, configured to control the air conditioner and the air circulation device to execute according to the linkage mode indicated by at least one target control in response to the triggering operation on the linkage air supply control when at least one target control among the wind speed linkage control, the air-sweeping linkage control, and the wind feeling linkage control in the setting interface is triggered.

[0190] In a possible implementation, the air flow management interface further includes a linkage temperature control; the linkage control device 1300 of the device further includes: A linkage control module, configured to control the air conditioner and the air circulation device to execute according to the linkage mode indicated by at least one target control in response to the triggering operation on at least one target control among the linkage temperature control and the linkage air supply control.

[0191] In a possible implementation, there is a corresponding relationship between the first air supply intensity of the air conditioner and the second air supply intensity of the air circulation device; the linkage control device 1300 of the device further includes: A linkage control module, configured to control the air conditioner to execute a target air supply intensity when the swing linkage control and the wind speed linkage control are both turned on; the target air supply intensity is less than the second air supply intensity.

[0192] In a possible implementation, the linkage control device 1300 of the device further includes: A correction module, configured to correct the second air supply intensity according to a correction coefficient to obtain the target air supply intensity.

[0193] In a possible implementation, the linkage control module 1310 is further configured to, when the air conditioner and the air circulation device are both connected to the network, in response to a trigger operation by the user on the operation panel, control the swing mode and the oscillation mode to be linked.

[0194] Regarding the device in the above embodiments, the specific manners in which each module performs operations have been described in detail in the embodiments related to the method, and will not be elaborated herein.

[0195] The present disclosure also provides a computer-readable storage medium, on which computer program instructions are stored, and when the program instructions are executed by a processor, the steps of the linkage control method of the device provided by the present disclosure are implemented.

[0196] Figure 14 It is a block diagram of a linkage control device 1400 of a device shown according to an exemplary embodiment. For example, the device 1400 may be a mobile phone, a computer, an air conditioner, an air circulation device, etc. Application programs can be installed in these devices 1400. When the application programs run, they call the linkage air flow management main control program in the server. When the user performs one or more trigger operations on the application programs, the application programs also call the linkage air flow management main control program to implement the control of the air conditioner and / or the air circulation device.

[0197] Referring to Figure 14 , the device 1400 may include one or more of the following components: a first processing component 1402, a first memory 1404, a first power supply component 1406, a multimedia component 1408, an audio component 1410, a first input / output interface 1412, a sensor component 1414, and a communication component 1416.

[0198] The first processing component 1402 generally controls the overall operation of the device 1400, such as operations associated with display, telephone calls, data communication, camera operations, and recording operations. The first processing component 1402 may include one or more processors 1420 to execute instructions to complete all or part of the steps of the above-described device linkage control method. In addition, the first processing component 1402 may include one or more modules to facilitate the interaction between the first processing component 1402 and other components. For example, the first processing component 1402 may include a multimedia module to facilitate the interaction between the multimedia component 1408 and the first processing component 1402.

[0199] The first memory 1404 is configured to store various types of data to support the operation of the device 1400. Examples of such data include instructions for any application or method operating on the device 1400, contact data, phone book data, messages, pictures, videos, etc. The first memory 1404 may be implemented by any type of volatile or non-volatile storage device or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic memory, flash memory, a magnetic disk, or an optical disk.

[0200] The first power component 1406 provides power to various components of the device 1400. The first power component 1406 may include a power management system, one or more power supplies, and other components associated with generating, managing, and distributing power for the device 1400.

[0201] The multimedia component 1408 includes a screen that provides an output interface between the device 1400 and the user. In some embodiments, the screen may include a liquid crystal display (LCD) and a touch panel (TP). If the screen includes a touch panel, the screen may be implemented as a touch screen to receive input signals from the user. The touch panel includes one or more touch sensors to sense touches, swipes, and gestures on the touch panel. The touch sensors may sense not only the boundaries of the touch or swipe actions but also detect the duration and pressure associated with the touch or swipe operation. In some embodiments, the multimedia component 1408 includes a front camera and / or a rear camera. When the device 1400 is in an operating mode, such as a shooting mode or a video mode, the front camera and / or the rear camera may receive external multimedia data. Each of the front camera and the rear camera may be a fixed optical lens system or have focal length and optical zoom capabilities.

[0202] The audio component 1410 is configured to output and / or input audio signals. For example, the audio component 1410 includes a microphone (MIC) that is configured to receive external audio signals when the device 1400 is in an operating mode, such as a call mode, a recording mode, and a voice recognition mode. The received audio signals can be further stored in the first memory 1404 or transmitted via the communication component 1416. In some embodiments, the audio component 1410 further includes a speaker for outputting audio signals.

[0203] The first input / output interface 1412 provides an interface between the first processing component 1402 and a peripheral interface module, and the peripheral interface module can be a keyboard, a click wheel, buttons, etc. These buttons can include but are not limited to: a home button, a volume button, a power button, and a lock button.

[0204] The sensor component 1414 includes one or more sensors for providing an assessment of the status of various aspects of the device 1400. For example, the sensor component 1414 can detect the open / closed state of the device 1400, the relative positioning of components, such as the display and keypad of the device 1400, the sensor component 1414 can also detect a change in the position of the device 1400 or a component of the device 1400, the presence or absence of user contact with the device 1400, the orientation or acceleration / deceleration of the device 1400, and the temperature change of the device 1400. The sensor component 1414 can include a proximity sensor configured to detect the presence of nearby objects without any physical contact. The sensor component 1414 can also include a light sensor, such as a CMOS or CCD image sensor, for use in imaging applications. In some embodiments, the sensor component 1414 can further include an acceleration sensor, a gyroscope sensor, a magnetic sensor, a pressure sensor, or a temperature sensor.

[0205] The communication component 1416 is configured to facilitate communication between the device 1400 and other devices in a wired or wireless manner. The device 1400 can access a wireless network based on a communication standard, such as WiFi, 2G, or 3G, or a combination thereof. In an exemplary embodiment, the communication component 1416 receives broadcast signals or broadcast-related information from an external broadcast management system via a broadcast channel. In an exemplary embodiment, the communication component 1416 further includes a near field communication (NFC) module to facilitate short-range communication. For example, the NFC module can be implemented based on radio frequency identification (RFID) technology, infrared data association (IrDA) technology, ultra-wideband (UWB) technology, Bluetooth (BT) technology, and other technologies.

[0206] In an exemplary embodiment, the apparatus 1400 may be implemented by one or more application specific integrated circuits (ASICs), digital signal processors (DSPs), digital signal processing devices (DSPDs), programmable logic devices (PLDs), field programmable gate arrays (FPGAs), controllers, microcontrollers, microprocessors, or other electronic components for performing the linkage control method of the above device.

[0207] In an exemplary embodiment, a non-transitory computer-readable storage medium including instructions is also provided, such as a first memory 1404 including instructions, and the above instructions can be executed by a processor 1420 of the apparatus 1400 to complete the linkage control method of the above device. For example, the non-transitory computer-readable storage medium may be a ROM, a random access memory (RAM), a CD-ROM, a magnetic tape, a floppy disk, and an optical data storage device, etc.

[0208] In another exemplary embodiment, a computer program product is also provided, and the computer program product includes a computer program that can be executed by a programmable device. The computer program has a code portion for performing the linkage control method of the above device when executed by the programmable device.

[0209] Figure 15 is a block diagram of a linkage control apparatus 1500 for a device shown according to an exemplary embodiment. For example, the apparatus 1500 may be provided as a server. Referring to Figure 15 , the apparatus 1500 includes a second processing component 1522, which further includes one or more processors, and memory resources represented by a second memory 1532 for storing instructions executable by the second processing component 1522, such as application programs. The application programs stored in the second memory 1532 may include one or more modules each corresponding to a set of instructions. In addition, the second processing component 1522 is configured to execute instructions to perform the linkage control method of the above device.

[0210] The apparatus 1500 may further include a second power supply component 1526 configured to perform power management of the apparatus 1500, a wired or wireless network interface 1550 configured to connect the apparatus 1500 to a network, and a second input / output interface 1558. The apparatus 1500 may operate based on an operating system stored in the second memory 1532.

Claims

1. A linkage control method for a device, characterized in that, Including: In response to a triggering operation by a user on an operation panel, controlling the swing mode of an air conditioner to be linked with the swing mode of an air circulation device; wherein, the air conditioner and the air circulation device are in the same space, the operation panel is a mechanical panel or a display interface in an application program, and the operation panel is used to adjust the operation data of the air conditioner and / or the air circulation device, and the operation data includes an operation mode and / or operation parameters.

2. The method according to claim 1, characterized in that, The display interface includes an air flow management interface, and the air flow management interface includes a linked air supply control; the controlling the swing mode of the air conditioner to be linked with the swing mode of the air circulation device in response to a triggering operation by a user on the operation panel includes: In response to a triggering operation on the linked air supply control, controlling the swing mode to be linked with the swing mode.

3. The method according to claim 2, wherein The display interface further includes a setting interface, and the setting interface includes a swing linkage control; the controlling the swing mode to be linked with the swing mode in response to a triggering operation on the linked air supply control includes: In the case where the swing linkage control is triggered, in response to a triggering operation on the linked air supply control, controlling the swing mode to be linked with the swing mode.

4. The method according to claim 1, wherein The display interface further includes an air flow management interface, and the air flow management interface includes a swing linkage control; the controlling the swing mode of the air conditioner to be linked with the swing mode of the air circulation device in response to a triggering operation by a user on the operation panel includes: In response to a triggering operation on the swing linkage control, controlling the swing mode to be linked with the swing mode.

5. The method according to any one of claims 2 to 4, characterized in that, The method further includes: In response to a closing operation on the linked air supply control and / or the swing linkage control, controlling the swing mode and the swing mode to stop being linked.

6. The method according to claim 1, wherein The swing mode includes a dynamic mode and a static mode; the dynamic mode indicates that the air circulation device is in a swinging state, and the static mode indicates a fixed state after the air circulation device swings.

7. The method according to claim 1, characterized in that The swing mode of the air conditioner is an up-and-down swing mode, and the corresponding swing mode of the air circulation device is an up-and-down swing mode; the swing mode of the air conditioner is a left-and-right swing mode, and the corresponding swing mode of the air circulation device is a left-and-right swing mode.

8. The method according to claim 6, characterized in that, The maximum swing stroke of the air circulation device in the dynamic mode is a preset first swing stroke or a second swing stroke configured by the user, and the second swing stroke is less than or equal to the first swing stroke.

9. The method according to any one of claims 1 to 4 or 6 to 8, characterized in that, The method further includes: During the process of controlling the swing mode to be linked with the swing mode, in response to receiving a user instruction, controlling the air circulation device to execute in the target swing mode indicated by the user instruction.

10. The method according to claim 9, wherein There is a corresponding relationship between the swing mode and the swing mode, and the method further includes: In response to a change in the swing mode of the air conditioner, controlling the air circulation device to switch from the target swing mode to the swing mode corresponding to the changed swing mode.

11. The method according to claim 3, characterized in that, The setting interface further includes a wind speed linkage control and a wind feeling linkage control; the method further includes: When at least one target control among the wind speed linkage control, the swing linkage control, and the wind sense linkage control in the setting interface is triggered, in response to the triggering operation on the linkage air supply control, control the air conditioner and the air circulation device to execute according to the linkage mode indicated by the at least one target control.

12. The method according to claim 2, wherein The air flow management interface further includes a linkage temperature control; the method further includes: In response to the triggering operation on at least one target control among the linkage temperature control and the linkage air supply control, control the air conditioner and the air circulation device to execute according to the linkage mode indicated by the at least one target control.

13. The method according to claim 11, wherein There is a corresponding relationship between the first air supply intensity of the air conditioner and the second air supply intensity of the air circulation device; the method further includes: When the swing linkage control and the wind speed linkage control are both turned on, control the air conditioner to execute the target air supply intensity; the target air supply intensity is less than the second air supply intensity.

14. The method according to claim 13, wherein The method further includes: Correct the second air supply intensity according to the correction coefficient to obtain the target air supply intensity.

15. The method according to claim 1, characterized in that, The controlling the swing mode of the air conditioner to be linked with the swing mode of the air circulation device in response to the triggering operation of the user on the operation panel includes: When both the air conditioner and the air circulation device are connected to the network, in response to the triggering operation of the user on the operation panel, control the swing mode and the swing mode to be linked.

16. A linkage control device for a device, characterized in that, A linkage control method for an apparatus for executing any one of claims 1 to 15, the apparatus includes: A linkage control module configured to control the swing mode of the air conditioner to be linked with the swing mode of the air circulation device in response to the triggering operation of the user on the operation panel; wherein, the air conditioner and the air circulation device are in the same space, the operation panel is a mechanical panel or a display interface in an application program, and the operation panel is used to adjust the operation data of the air conditioner and / or the air circulation device, and the operation data includes an operation mode and / or operation parameters.

17. A linkage control device for a device, characterized in that, Including: A processor; A memory for storing instructions executable by the processor; Wherein, the processor is configured to: Execute the method according to any one of claims 1 to 15.

18. A computer-readable storage medium having a computer program stored thereon, characterized in that, When the computer program is executed by the processor, it implements the steps of the method according to any one of claims 1 to 15.

19. A computer program product, characterized in that, Including a computer program, when the computer program is executed by the processor, it implements the steps of the method according to any one of claims 1 to 15.

Citation Information

Patent Citations

  • Method and device for controlling air conditioning equipment and electronic equipment

    CN110864418A

  • Room temperature adjusting method and device, equipment, storage medium and equipment linkage system

    CN114076398A

  • Air conditioner

    CN211822719U

  • Air conditioning system

    JP2012032046A

  • Air conditioning device

    JP2024076802A