Application display method, device and computer program product
By applying the display method, the linkage control of air conditioners and air circulation equipment is realized, which solves the problem of the adjustment limitations of air conditioners and air circulation equipment respectively and improves the user's operation convenience and comfort.
Patent Information
- Application Number
- CN202510715165.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-29
- Publication Date
- 2025-10-10
- Estimated Expiration
- 2045-05-29
AI Technical Summary
Air conditioners and air circulation equipment in household appliances each have limitations in regulating temperature and humidity, and cannot be effectively linked, resulting in inconvenience for users.
Provided is an application display method that controls the linkage mode of air conditioning and air circulation equipment through linkage controls, including linkage air supply and linkage temperature control. Users can remotely adjust the operating data between the two on the application interface.
It realizes the linkage between air conditioning and air circulation equipment, makes up for each other's shortcomings, improves user operation convenience and comfort, and meets the needs of diverse air supply modes.
Smart Images

Figure CN120232133B_ABST
Abstract
Description
Technical Field
[0001] The present disclosure relates to the field of interface interaction technology, and in particular to an application display method, device, and computer program product. Background Art
[0002] At present, air conditioners and air circulation equipment are important products in residential household electrical appliances. Air conditioners can adjust the humidity and temperature in the room, but due to structural limitations or noise experience of air conditioners, the air supply volume of air conditioners is usually small, which is difficult to meet user needs; air circulation equipment can promote air circulation in the room, allowing users to feel a comfortable blowing feeling, but air circulation equipment 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 an application display method, device, and computer program product.
[0004] According to a first aspect of an embodiment of the present disclosure, there is provided an application display method, comprising: displaying an airflow management interface in response to a triggering operation on an application; the airflow management interface comprising a linkage control, the application being used to adjust operating data of an air conditioner and / or an air circulation device, the operating data comprising an operating mode and / or operating parameters, the linkage control being used to provide an entry for controlling the air conditioner and the air circulation device to be in a corresponding linkage mode; and controlling the linkage of the air conditioner and the air circulation device in response to a triggering operation on the linkage control.
[0005] This technical solution, firstly, proposes a scheme for linking air conditioners with air circulation devices. The linkage between the air conditioner and the air circulation device can complement each other's shortcomings. The air conditioner can compensate for the air circulation device's inability to adjust temperature and humidity; the air circulation device can promote airflow within the room, giving the user a comfortable breeze. Secondly, users can control the linkage between the air conditioner and the air circulation device through an app, or adjust the operating data of the air conditioner or air circulation device individually. This eliminates the need for users to actively travel to the air circulation device to adjust its air supply direction and position, allowing the air circulation device and air conditioner to link, making operation more convenient for users.
[0006] In a possible implementation, the linkage control includes a linkage air supply control and / or a linkage temperature control control.
[0007] Through this technical solution, the linkage modes indicated by the linkage air supply control and the linkage temperature control control are different. Triggering the linkage air supply control and / or the linkage temperature control control can trigger the linkage between the air conditioner and the air circulation equipment. It provides a variety of linkage controls to trigger diverse linkage modes between the air conditioner and the air circulation equipment.
[0008] In one possible embodiment, controlling the air conditioner to be linked with the air circulation device in response to a triggering operation on the linkage control includes: controlling the air supply mode of the air conditioner to be linked with the air supply mode of the air circulation device in response to a triggering operation on the linkage air supply control.
[0009] This technical solution allows users to control the air supply mode of the air conditioner and the air circulation device in conjunction with each other after the user triggers the linked air supply control. This allows users to remotely control the air supply mode of the air conditioner and the air circulation device in conjunction with each other, bringing convenience to users. For example, by installing this application on any device, such as a terminal, air conditioner, or air circulation device, users can use these devices to remotely control the air supply mode of the air conditioner and the air circulation device in conjunction with each other.
[0010] In a possible embodiment, the linkage between the air supply mode of the air conditioner and the air supply mode of the air circulation device includes at least one of the following: the air supply intensity of the air conditioner is linked with the air supply intensity of the air circulation device, the sweeping mode of the air conditioner is linked with the swing mode of the air circulation device, the wind feeling mode of the air conditioner is linked with the freeze mode of the air circulation device, and the air supply mode of the air conditioner is linked with the air supply mode of the air circulation device.
[0011] Through this technical solution, when the air supply mode of the air conditioner is linked with the air supply mode of the air circulation device, the air supply intensity of the air conditioner can be linked with the air supply intensity of the air circulation device, the sweeping mode of the air conditioner can be linked with the swing mode of the air circulation device, the wind feeling mode of the air conditioner can be linked with the freeze mode of the air circulation device, and the air supply mode of the air conditioner can be linked with the air supply mode of the air circulation device. It provides the linkage of multiple air supply modes in the scenario of air supply mode linkage, meeting the user's diversified linkage needs for air supply mode linkage.
[0012] In one possible embodiment, in response to the triggering operation of the linkage control, controlling the linkage between the air conditioner and the air circulation device includes: in response to the triggering operation of the linkage temperature control control, controlling the target internal temperature of the air conditioner to be linked with the air supply mode of the air circulation device.
[0013] This technical solution allows users to remotely control the target internal temperature of the air conditioner and the air supply mode of the air circulation device after the user triggers the linked temperature control. This allows users to remotely control the target internal temperature of the air conditioner and the air supply mode of the air circulation device through the application, bringing convenience to users. For example, by installing this application on any device such as a terminal, air conditioner, or air circulation device, users can use these devices to remotely control the target internal temperature of the air conditioner and the air supply mode of the air circulation device.
[0014] In one possible embodiment, the airflow management interface also includes a setting control; the method also includes: displaying a setting interface in response to a triggering operation on the setting control; the setting interface includes at least one of a linkage air supply setting interface and a linkage temperature control setting interface, the linkage air supply setting interface is an interface for setting a linkage air supply mode, the linkage air supply mode indicates the linkage of the air supply mode between the air conditioner and the air circulation device, the linkage temperature control setting interface is an interface for setting a correction temperature, and the correction temperature is used to correct the air conditioner set temperature.
[0015] Through this technical solution, a setting interface is deployed, on which the user can adjust / select the linked air supply mode and / or the air conditioning set temperature, thereby adjusting the linked air supply mode between the air conditioner and the air circulation device to the linked air supply mode required by the user; the correction temperature can also be adjusted to correct the air conditioning set temperature to obtain the corrected target internal ambient temperature, so that the target internal ambient temperature of the air conditioner can be close to the comfort temperature required by the user.
[0016] In a possible embodiment, the linked air supply setting interface includes a wind speed linkage control, a sweep air linkage control and a wind sense linkage control; the response to the triggering operation of the linked air supply control controls the linkage of the air supply mode of the air conditioner and the air supply mode of the air circulation device, including: when at least one target control among the wind speed linkage control, the sweep air linkage control and the wind sense linkage control is activated, in response to the triggering operation of the linked air supply control, the air supply mode of the air conditioner and the air supply mode of the air circulation device are controlled to be executed in the linkage mode corresponding to the at least one target control.
[0017] Through this technical solution, since different users have different usage habits, through the setting of wind speed linkage control, wind sweep linkage control and wind sense linkage control, each linkage control corresponds to a linkage mode. Users can adaptively trigger at least one target control among the three controls according to their own needs to control the air supply mode of the air conditioner and the air supply mode of the air circulation equipment to be linked, thereby meeting the diverse linkage needs of different users.
[0018] In a possible implementation, the linkage control includes at least one of a wind speed linkage control, a wind sweep linkage control, a wind sense linkage control, and a linkage temperature control control.
[0019] In a possible embodiment, the control of the linkage between the air conditioner and the air circulation device in response to the triggering operation of the linkage control includes: responding to the start-up operation of at least one target control among the wind speed linkage control, the wind sweep linkage control, the wind sense linkage control and the linkage temperature control control, controlling the air conditioner and the air circulation device to execute in the linkage mode corresponding to the at least one target control.
[0020] This technical solution allows the display of at least one of the wind speed linkage control, the wind sweep linkage control, the wind sensor linkage control, and the linked temperature control control on the airflow management interface. Users can then trigger at least one of these controls on the airflow management interface to control the air conditioner and air circulation equipment in the linked mode corresponding to the triggered control. This integrates multiple linked controls, such as the wind speed linkage control, the wind sweep linkage control, the wind sensor linkage control, and the linked temperature control control, on the same airflow management interface, eliminating the need for users to trigger linked controls on other interfaces, thus facilitating user operation.
[0021] In a possible embodiment, the linkage mode corresponding to the wind speed linkage control includes the linkage between the air supply intensity of the air conditioner and the air supply intensity of the air circulation equipment; the linkage mode corresponding to the sweeping linkage control includes the linkage between the sweeping mode of the air conditioner and the swing mode of the air circulation equipment; the linkage mode corresponding to the wind sense linkage control includes the linkage between the wind sense mode of the air conditioner and the freeze mode of the air circulation equipment.
[0022] Through this technical solution, after the user triggers the wind speed linkage control, the air supply intensity of the air conditioner and the air supply intensity of the air circulation equipment can be linked; after the user triggers the sweep linkage control, the sweep mode of the air conditioner and the swing mode of the air circulation equipment can be linked; after the user triggers the wind sense linkage control, the wind sense mode of the air conditioner and the freeze mode of the air circulation equipment can be linked.
[0023] In a possible implementation, the linked temperature control setting interface includes a correspondence between different correction temperatures and different air supply modes of the air circulation device; and the different correction temperatures can be adjusted.
[0024] Through this technical solution, users can adjust the correction temperature in the linkage temperature control setting interface so that different correction temperatures correspond to different air supply modes.
[0025] In a possible implementation, the air supply mode includes air supply intensity, and the correspondence between the different corrected temperatures and the different air supply modes includes the correspondence between the different corrected temperatures and different air supply intensities.
[0026] Through this technical solution, users can adjust the correction temperature in the linkage temperature control setting interface to make different correction temperatures correspond to different air supply intensities. For example, if the user is afraid of cold, the correction temperature can be increased. Then, the corresponding correction temperature at the same air supply intensity will be higher, and the target internal temperature obtained by correcting the air conditioner set temperature with the correction temperature will also be higher, thereby achieving slow indoor cooling; conversely, if the user is afraid of heat, the correction temperature can be lowered. Then, the corresponding correction temperature at the same air supply intensity will be lower. The target internal temperature obtained by correcting the air conditioner set temperature with the correction temperature will also be lower, thereby achieving rapid indoor cooling.
[0027] In a possible embodiment, the linkage temperature control setting interface also includes a recovery control, and the method also includes: in response to a triggering operation on the recovery control, restoring the correspondence to a preset correspondence, wherein the preset correspondence indicates the correspondence between different corrected temperatures and different air supply modes.
[0028] Through this technical solution, if the user does not like the corrected temperature set by himself, he can trigger the recovery control, and the correspondence between the corrected temperature and the air supply mode can be automatically restored to the default preset correspondence, without the user having to manually correct the correspondence to the preset correspondence, saving user operations.
[0029] In one possible embodiment, the display of the airflow management interface in response to the triggering operation of the application includes: displaying a first selection interface in response to the triggering operation of the application; the first selection interface includes at least one air circulation device that can be linked with the air conditioner; and displaying the airflow management interface in response to the selection operation of a target air circulation device among the at least one air circulation device.
[0030] Through this technical solution, before entering the airflow management interface, the user can first enter the first selection interface. The user selects the target air circulation device to be linked with the air conditioner on the first selection interface. Then, after entering the airflow management interface, the user triggers the linkage control to allow the air conditioner and the previously selected target air circulation device to execute the linkage mode corresponding to the linkage control. Through this setting, the air conditioner and the target air circulation device selected by the user can execute the linkage mode corresponding to the linkage control selected by the user.
[0031] In one possible embodiment, the first selection interface also includes an air supply direction selection control for the air circulation device; the method also includes: displaying an air supply direction selection interface in response to a triggering operation on the air supply direction selection control; the air supply direction selection interface includes a same-side control and an opposite-side control; the same-side control indicates that the air supply direction of the air conditioner is the same as the air supply direction of the air circulation device, and the opposite-side control indicates that the air supply direction of the air conditioner is opposite to the air supply direction of the air circulation device.
[0032] Through this technical solution, the same-side control and the opposite-side control can be displayed on the air supply direction selection interface. If the user / rest area is located on one side of the air conditioner and the air circulation equipment, the same-side control can be triggered to control the air supply direction of the air conditioner to be the same as the air supply direction of the air circulation equipment, so that the air supply direction of the air conditioner and the air supply direction of the air circulation equipment can both be toward the user / rest area; if the user / rest area is located between the air conditioner and the air circulation equipment, the opposite-side control can be triggered to control the air supply direction of the air conditioner to be opposite to the air supply direction of the air circulation equipment, so that the air supply direction of the air conditioner and the air circulation equipment can also be toward the user / rest area.
[0033] In a possible implementation, displaying the first selection interface in response to the triggering operation on the application includes: displaying the first selection interface in response to the triggering operation on the application when the application is not triggered for the first time.
[0034] Through this technical solution, when the user is not triggering the application for the first time, it means that the user has already understood the use of the application, so the user can directly enter the first selection interface, which displays at least one air circulation device that can be linked with the air conditioner.
[0035] In one possible embodiment, the display of the first selection interface in response to the triggering operation of the application includes: when the application is triggered for the first time, displaying a device recommendation interface in response to the triggering operation of the application; the device recommendation interface includes at least one air circulation device that can be linked with the air conditioner; and displaying the first selection interface in response to the triggering operation of the target air circulation device among the at least one air circulation device.
[0036] Through this technical solution, when a user triggers an application for the first time, it indicates that the user is using the application for the first time. Therefore, the user can first enter the device recommendation interface, and recommend to the user at least one air circulation device that can be bound and linked with the air conditioner on the device recommendation interface, so as to guide the user to select the air circulation device to bind with the air conditioner, thereby reducing the blindness of the user's operation of the application.
[0037] In a possible implementation, the air flow management interface further includes a linkage device switching control; and the method further includes: in response to a switching operation on the linkage device switching control, displaying a second selection interface, the second selection interface including at least one air circulating device capable of linkage with the air conditioner and / or a blowing direction selection control of the air circulating device.
[0038] By this technical solution, the user can trigger the linkage device switching control in the air flow management interface to enter the second selection interface, so as to switch the air circulating device and / or switch the blowing direction between the air conditioner and the air circulating device in the second selection interface, thereby realizing the operation convenience without the user returning to the first selection interface to realize these operations.
[0039] In a possible implementation, the method further includes: in response to a triggering operation on the application, displaying a main interface; the main interface including an air management control, the main interface being configured to display a plurality of function controls of the air conditioner; and in response to a triggering operation on the air management control, performing at least one of the following: controlling the air conditioner to be linked with a preset air circulating device; and controlling the air conditioner to perform in a preset linkage mode with the preset air circulating device.
[0040] By this technical solution, after the user triggers the air management control, the air conditioner and the air circulating device can also be controlled to perform according to a preset configuration, for example, the air conditioner is linked with the preset air circulating device, and the air conditioner performs in a preset linkage mode with the preset air circulating device, thereby reducing the user configuration operation without the user performing linkage setting of the air conditioner and the air circulating device.
[0041] In a possible implementation, the preset linkage mode includes at least one of the following: a preset wind speed linkage mode, a preset wind sweeping linkage mode, a preset wind feeling linkage mode, a preset temperature control linkage mode, and a preset blowing linkage mode; the preset wind speed linkage mode indicates that the wind speed intensity of the air conditioner is linked with the wind speed intensity of the air circulating device; the preset wind sweeping linkage mode indicates that the wind sweeping mode of the air conditioner is linked with the swing mode of the air circulating device; the preset wind feeling linkage mode indicates that the wind feeling mode of the air conditioner is linked with the fixed mode of the air circulating device; and the preset blowing linkage mode indicates that the blowing mode of the air conditioner is linked with the blowing mode of the air circulating device.
[0042] In a possible implementation, the air flow management interface is displayed in response to a triggering operation on the application, including: in response to a starting operation on the application, displaying the air flow management interface.
[0043] With this technical solution, the airflow management interface can be displayed after the user starts the application without performing other operations, thereby increasing the speed of entering the airflow management interface.
[0044] In one possible embodiment, displaying the airflow management interface in response to the start-up operation of the application includes: displaying the main interface in response to the start-up operation of the application; the main interface includes air management controls; and displaying the airflow management interface in response to the triggering operation of the air management controls.
[0045] Through this technical solution, the user can enter the main interface after launching the application, and then trigger the air management control on the main interface to enter the airflow management interface. It can also display other function entrances of the air conditioner on the main interface, providing users with a variety of air conditioning control entrances.
[0046] In one possible embodiment, the displaying of the airflow management interface in response to the triggering operation of the air management control includes: displaying the air management interface in response to the triggering operation of the air management control; the air management interface includes an airflow linkage control; and displaying the airflow management interface in response to the triggering operation of the airflow linkage control.
[0047] Through this technical solution, after the user starts the application, he can enter the main interface, then trigger the air management control in the main interface to enter the air management interface, and then trigger the airflow linkage control in the air management interface to enter the airflow management interface. It can also display other air management functions of the air conditioner on the air management interface, providing users with a variety of control entrances for the management functions of the air conditioner.
[0048] In one possible embodiment, the display of the airflow management interface in response to the triggering operation of the application includes: displaying a functional interface in response to the triggering operation of the application; the functional interface includes a confirmation control; the functional interface is used to provide descriptive information of the airflow management function; and displaying the airflow management interface in response to the triggering operation of the confirmation control.
[0049] Through this technical solution, after launching the application, users can enter the function interface and view the descriptive information related to the airflow management function, so as to understand the linkage function between the air conditioner and the air circulation equipment, and then guide the user to enter the airflow management interface to reduce the user's blind operation.
[0050] In one possible embodiment, the displaying of the main interface in response to the startup operation of the application includes: displaying the device management interface in response to the startup operation of the application; the device management interface includes an airflow management control; and displaying the main interface in response to a triggering operation of the airflow management control.
[0051] Through this technical solution, the user can also display the device management interface after launching the application. The device management interface presents the air circulation equipment existing in each space of the user. For example, taking the space including bedroom and living room as an example, the device management interface can present the air circulation equipment existing in the bedroom and the air circulation equipment existing in the living room, thereby assisting the user to configure the air circulation equipment linked to the air conditioner in each control.
[0052] In a possible implementation manner, the application is further configured to display a network selection interface, where the network selection interface provides a selection interface for connecting the air conditioner and / or the air circulation device to a network.
[0053] Through this technical solution, users can configure the network for air conditioners and air circulation equipment on the network selection interface. For example, if the connection network of air conditioners and air circulation equipment in the same space is configured as the same network, then the air conditioners and air circulation equipment in the same space can use this network to achieve linkage.
[0054] In a possible implementation, the method further includes: controlling the air supply mode of the air conditioner to be linked with the air supply mode of the air circulation device in response to a triggering operation of the wind speed linkage control and / or the wind sense linkage control.
[0055] Through this technical solution, after the user triggers the wind speed linkage control and / or the wind sense linkage control, the air supply mode of the air conditioner will be controlled to be linked with the air supply mode of the air circulation device, so as to better meet the user's needs. For example, after the user triggers the wind speed linkage control and / or the wind sense linkage control, the air supply mode of the air conditioner can be controlled to be in direct blowing mode, and the air supply mode of the air circulation device can be controlled to be in non-natural wind mode, so that the air-conditioned wind output by the air conditioner will blow directly at the user, and the intensity of the circulating wind output by the air circulation device is relatively high, meeting the user's demand for wind blowing people; for another example, the air supply mode of the air conditioner can be controlled to be in non-direct blowing mode, and the air supply mode of the air circulation device can be controlled to be in natural wind mode, so that the air-conditioned wind output by the air conditioner will avoid the user, and the wind speed intensity of the circulating wind output by the air circulation device is relatively low, which is basically consistent with the natural wind in the room, meeting the user's demand for wind avoiding people.
[0056] According to a second aspect of an embodiment of the present disclosure, there is provided an application display device for executing the application display method according to the first aspect of the embodiment of the present disclosure, including:
[0057] a response module configured to display an airflow management interface in response to a triggering operation on the application; the airflow management interface including a linkage control, the application being used to adjust operating data of the air conditioner and / or the air circulation device, the operating data including an operating mode and / or operating parameters, the linkage control being used to provide an entry for controlling the air conditioner and the air circulation device to be in a corresponding linkage mode;
[0058] The control module is configured to control the linkage between the air conditioner and the air circulation device in response to a triggering operation on the linkage control.
[0059] According to a third aspect of an embodiment of the present disclosure, an application display device is provided, comprising: a processor; and a memory for storing processor-executable instructions; wherein the processor is configured to execute the application display method described in the first aspect of the embodiment of the present disclosure.
[0060] According to a fourth aspect of an embodiment of the present disclosure, a computer program product is provided, including a computer program, which, when executed by a processor, implements the application display method described in the first aspect of the embodiment of the present disclosure.
[0061] It is to be understood that the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the disclosure. BRIEF DESCRIPTION OF THE DRAWINGS
[0062] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present disclosure and, together with the description, serve to explain the principles of the present disclosure.
[0063] Figure 1 The figure is a flowchart showing a method for displaying an application according to an exemplary embodiment.
[0064] Figure 2 The figure is a schematic diagram showing a device search interface according to an exemplary embodiment.
[0065] Figure 3 The figure is a schematic diagram showing a network selection interface according to an exemplary embodiment.
[0066] Figure 4 The figure is a schematic diagram showing a device management interface according to an exemplary embodiment.
[0067] Figure 5 is a schematic diagram of a main interface according to an exemplary embodiment.
[0068] Figure 6 is a schematic diagram showing an air management interface according to an exemplary embodiment.
[0069] Figure 7It is a schematic diagram of a functional interface according to an exemplary embodiment.
[0070] Figure 8 The figure is a schematic diagram showing a device recommendation interface according to an exemplary embodiment.
[0071] Figure 9 is a schematic diagram showing a first selection interface according to an exemplary embodiment.
[0072] Figure 10 The figure is a schematic diagram of an air supply direction selection interface according to an exemplary embodiment.
[0073] Figure 11 is a schematic diagram showing an airflow management interface according to an exemplary embodiment.
[0074] Figure 12 is a schematic diagram showing an airflow management interface according to an exemplary embodiment.
[0075] Figure 13 It is a schematic diagram showing a setting interface according to an exemplary embodiment.
[0076] Figure 14 is a schematic diagram showing a second selection interface according to an exemplary embodiment.
[0077] Figure 15 The figure is a block diagram showing an application display device according to an exemplary embodiment.
[0078] Figure 16 The figure is a block diagram showing an application display device according to an exemplary embodiment.
[0079] Figure 17 is a block diagram of a chip system according to an exemplary embodiment. DETAILED DESCRIPTION
[0080] Exemplary embodiments will be described in detail herein, with examples illustrated in the accompanying drawings. In the following description, when referring to the drawings, identical numerals in different figures represent identical or similar elements, unless otherwise indicated. The embodiments described in the following exemplary embodiments are not intended to represent all possible embodiments consistent with the present disclosure. Rather, they are merely examples of apparatus and methods consistent with certain aspects of the present disclosure, as detailed in the appended claims.
[0081] It should be noted that all actions of acquiring signals, information or data in the present disclosure are carried out in compliance with the corresponding data protection laws and policies of the country where they are located and with the authorization given by the owner of the corresponding device.
[0082] Figure 1is a flowchart showing a method for displaying an application according to an exemplary embodiment. Figure 1 As shown, the application display method is used in an application display device, which can be a terminal, a temperature control device, an air circulation device, and a remote control. The terminal can be a mobile phone, a computer, a notebook, a tablet, a television, and other terminals; the temperature control device can be an air conditioner, an air conditioner, an air conditioning system, and other temperature control devices. The air conditioning system can be a multi-split air conditioning system or a single-split air conditioning system. These temperature control devices can be wall-mounted air conditioners, floor-standing air conditioners, and other devices; the air circulation device can be a circulating fan, and the remote control can be a remote control device for controlling the air circulation device or the temperature control device.
[0083] See also Figure 1 As shown, the application display method includes the following steps.
[0084] In step S10 , in response to a triggering operation on the application, an airflow management interface is displayed.
[0085] An app is an application program (app) used to adjust the operating data of air conditioners and / or air circulation equipment. This app can control the operating data of the air conditioner or the air circulation equipment independently, or simultaneously, allowing the air conditioner and air circulation equipment to work together. This app can be installed on any device, including air conditioners, air circulation equipment, and terminals.
[0086] In one possible implementation, the operating data includes an operating mode and / or operating parameters. The operating mode refers to the mode in which the air conditioner and / or air circulation device operates, and the operating parameters refer to the parameters executed when the air conditioner and / or air circulation device operates in the mode.
[0087] The operating modes in the operating data of the air conditioner include air supply mode, air sweeping mode and temperature control and energy-saving mode.
[0088] Air supply modes include direct air mode and wind-sensing mode. In direct air mode, the air conditioner's air supply direction is toward the user. In wind-sensing mode, the air conditioner's air supply direction interacts with the user, with the air conditioner's air supply direction avoiding the user, toward the user, or surrounding the user. Wind-sensing modes include skylight mode, surround mode, carpet mode, sleep mode, soft wind mode, and anti-direct air mode. In skylight mode, carpet mode, sleep mode, and anti-direct air mode, the air conditioner's air supply direction avoids the user. Skylight mode directs the air conditioner's air supply upward, with the output air diffused across the ceiling and then naturally descending, resulting in uniform cooling / heating throughout the room. Carpet mode directs the air conditioner's air supply downward, with the output air being sent along the walls to the floor, where it then flows upward, resulting in uniform cooling / heating throughout the room. Typically, skylight mode is used for cooling, and carpet mode is used for heating. Sleep modes include standard sleep mode and Lingyun sleep mode. In surround air mode, the air conditioner's air supply direction surrounds the user. In the soft wind mode, the air conditioned air output by the air conditioner will be softly and evenly distributed in the room, reducing the discomfort caused by direct blowing of the air conditioned air.
[0089] The air sweeping mode includes the up and down sweeping mode and the left and right sweeping mode. In the up and down sweeping mode, the air supply direction of the air conditioner sweeps up and down; in the left and right sweeping mode, the air supply direction of the air conditioner sweeps left and right.
[0090] The temperature control and energy-saving modes include Lingyun energy-saving mode and human-sensing energy-saving mode. In Lingyun energy-saving mode and human-sensing energy-saving mode, the air conditioner can operate in low-power mode, achieving energy saving while taking into account the user experience.
[0091] The operating parameters of the air conditioner's operating data include air supply intensity, air supply direction, air conditioner output temperature, cooling or heating adjustment, timer duration, etc. Users can adjust the air conditioner's air supply intensity, air supply direction, air conditioner output temperature and other operating parameters through the app.
[0092] The operating modes in the air circulation device's operating data include natural wind mode, non-natural wind mode, swing mode, and freeze mode. In natural wind mode, the air circulation device outputs a relatively gentle wind speed, while in non-natural wind mode, the wind speed can be adjusted in real time. The swing mode includes an up-and-down swing mode and a left-and-right swing mode. In left-and-right swing mode, the air flow direction of the air circulation device sweeps left and right, while in up-and-down swing mode, the air flow direction of the air circulation device fluctuates up and down. The freeze mode indicates that the air circulation device stops swinging after a certain range of movement.
[0093] The operating parameters in the operating data of the air circulation equipment include air supply intensity, air supply direction, timing duration, etc.
[0094] It is understandable that users can use applications to control the independent operation of air conditioners and air circulation equipment. For example, users can adjust the operating data of the air conditioner and the air circulation equipment separately through the application. Users can also use applications to coordinate the operation of air conditioners and air circulation equipment. For example, users can use applications to control the operating mode of the linkage between air conditioners and air circulation equipment, and / or control the operating parameters of the linkage between air conditioners and air circulation equipment.
[0095] The user can trigger a control, portal, or button on the interactive interface of an application or application display device through some operations, thereby entering the interactive interface linked to the control, portal, or button, such as the airflow management interface. The following examples will use controls as an example, but the same applies to portals and buttons.
[0096] The manifestation of triggering operations on applications and / or controls includes, but is not limited to, triggering operations on controls by users using their fingers or touch devices (e.g., a stylus). For example, users can perform the triggering operations using relevant finger gestures, which can be any one of single-click gestures, sliding gestures, dragging gestures, pressure recognition gestures, long-press gestures, short-press gestures, area change gestures, double-press gestures, and double-click gestures, or a combination thereof. For another example, users can perform triggering operations using a touch device, such as single-clicking, double-clicking, or any number of clicks, and can also be long-pressing or short-pressing.
[0097] The number of triggering operations on the application can be one or more. The user can execute a single triggering operation on the application to enter the airflow management interface, or execute multiple triggering operations to enter the airflow management interface.
[0098] The airflow management interface is a management interface that provides linkage between the air conditioner and the air circulation device. The airflow management interface may include controls, images, text, and links, and may support one or more input methods, such as image input, text input, voice input, video input, touch selection input, touch drawing input, file upload input, etc. Of course, the interface proposed in any embodiment of the present disclosure may also include information such as images, text, and links.
[0099] For example, the airflow management interface includes a linkage control, which provides an entrance to the corresponding linkage mode of the air conditioner and the air circulation device. After starting the linkage control, the air conditioner and the air circulation device can be turned on in the linkage mode indicated by the linkage control.
[0100] In step S20, in response to the triggering operation of the linkage control, the air conditioner is controlled to be linked with the air circulation device.
[0101] The triggering operation of the linkage control includes the starting operation of the linkage control. After the linkage control is started, the air conditioner and the air circulation equipment can be controlled to be linked.
[0102] In a possible implementation, the air conditioner and the air circulation device may be controlled to stop being linked in response to a closing operation on the linkage control.
[0103] In a possible implementation, the linkage control includes a linkage air supply control and / or a linkage temperature control control.
[0104] Among them, the linkage mode between the air conditioner and the air circulation equipment includes a linkage air supply mode and a linkage temperature control mode. The linkage air supply mode indicates that the air supply mode of the air conditioner is linked with the air supply mode of the air circulation equipment. The air supply mode of the air conditioner includes wind speed intensity, sweeping mode and wind sense mode. The air supply mode of the air circulation equipment includes wind speed intensity, swing mode and fixed frame mode. The linkage air supply mode includes wind speed linkage mode, sweeping linkage mode, wind sense linkage mode and air supply linkage mode. The wind speed linkage mode indicates that the air supply intensity of the air conditioner is linked with the air supply intensity of the air circulation equipment. The sweeping linkage mode indicates that the sweeping mode of the air conditioner is linked with the swing mode of the air circulation equipment. The wind sense linkage mode indicates that the wind sense mode of the air conditioner is linked with the fixed frame mode of the air circulation equipment. The linkage temperature control mode indicates that the target internal ambient temperature of the air conditioner is linked with the wind speed intensity of the air circulation equipment.
[0105] The linked air supply control is used to provide an entry for triggering the linkage between the air supply mode of the air conditioner and the air supply mode of the air circulation device. Figure 11 As shown, after the linkage air supply control is triggered to start, the air supply mode of the air conditioner can be controlled to be linked with the air supply mode of the air circulation equipment; of course, after the linkage air supply control is triggered to be closed, the air supply mode of the air conditioner can be controlled to stop being linked with the air supply mode of the air circulation equipment.
[0106] The linked temperature control is used to provide an entry for triggering the linkage between the target internal temperature of the air conditioner and the air supply mode of the air circulation equipment. Figure 11 As shown, after the linkage temperature control control is triggered to start, the target internal temperature of the air conditioner can be controlled to be linked with the air supply mode of the air circulation equipment; of course, after the linkage air supply control is triggered to be closed, the target internal temperature of the air conditioner can be controlled to stop being linked with the air supply mode of the air circulation equipment.
[0107] In related technologies, after the user turns on the air conditioner and the air circulation device at the same time, there is no good linkage effect between the air conditioner and the air circulation device, and the user needs to manually go to the location of the air circulation device to adjust the air supply direction and other operating data of the air circulation device so that the air conditioner and the air circulation device can jointly provide better cooling / heating effects for the indoor environment, which brings inconvenience to the user.
[0108] Through the above technical solution, firstly, this disclosure proposes a solution that allows air conditioners and air circulation devices to work together. This linkage can complement each other's shortcomings. The air conditioner can compensate for the air circulation device's inability to adjust temperature and humidity; the air circulation device can also promote air circulation in the room, providing users with a comfortable breeze. Secondly, users can control the linkage between the air conditioner and the air circulation device through an app, or adjust the operating data of the air conditioner or air circulation device independently. This not only eliminates the need for users to actively adjust the air supply direction and position of the air circulation device, but also brings convenience to users' operation.
[0109] The following is an exemplary embodiment involved in the present disclosure, which is used to explain the linkage between the air supply mode of the air conditioner and the air supply mode of the air circulation device, and an exemplary scheme of the linkage between the target internal temperature of the air conditioner and the air supply mode of the air circulation device.
[0110] In one possible embodiment, the air supply mode of the air conditioner is linked with the air supply mode of the air circulation device, including at least one of the following wind speed linkage mode, wind sweep linkage mode, wind sense linkage mode, and air supply linkage mode:
[0111] In wind speed linkage mode, the air supply intensity of the air conditioner is linked with the air supply intensity of the air circulation equipment.
[0112] The air supply intensity can be reflected by parameters such as wind speed level and air supply volume. The higher the wind speed level, the greater the air supply volume and the higher the air supply intensity. When the air supply intensity of the air conditioner is controlled in conjunction with the air supply intensity of the air circulation device, the air supply intensity of the air conditioner and the air circulation device are positively correlated.
[0113] For example, taking the wind speed level as an example, when the wind speed level of the air conditioner is linked with the wind speed level of the air circulation equipment, if the wind speed level of the air conditioner increases, the wind speed level of the air circulation equipment will also be dynamically controlled to increase; if the wind speed level of the air conditioner decreases, the wind speed level of the air circulation equipment will also be dynamically controlled to decrease.
[0114] In a possible implementation, there is a positive correlation between the air supply intensity of the air conditioner in the direct wind mode and the air supply intensity of the air circulation device in the non-natural wind mode.
[0115] For example, taking the air supply intensity as the wind speed level as an example, if the air conditioner is in direct blowing mode and the wind speed level is 1, then it corresponds to the 1 wind level when the air circulation device is in non-natural wind mode; if the air conditioner is in direct blowing mode and the wind speed level is 3, then it corresponds to the 3 wind level when the air circulation device is in non-natural wind mode.
[0116] In one possible embodiment, there is a positive correlation between the air supply intensity when the air conditioner is in wind sensing mode and the air supply intensity when the air circulation device is in natural wind mode, or the air supply intensity when the air conditioner is in wind sensing mode corresponds to the preset air supply intensity when the air circulation device is in natural wind mode.
[0117] For example, taking the air supply intensity as the wind speed level as an example, if the air conditioner is in wind sensing mode and the wind speed level is 1, then it corresponds to the 1 wind level when the air circulation device is in natural wind mode; if the air conditioner is in wind sensing mode and the wind speed level is 3, then it corresponds to the 3 wind level when the air circulation device is in natural wind mode.
[0118] For example, no matter which wind speed level the air conditioner is in the wind sensing mode, it corresponds to the preset air supply level 1 when the air circulation device is in the natural wind mode.
[0119] It can be understood that when the air supply intensity of the air conditioner increases, it means that the user expects the air supply intensity of the air conditioner to be higher, so as to quickly cool the indoor air. At this time, the air supply intensity of the air circulation equipment can be controlled to increase accordingly, thereby providing the user with a greater air supply intensity and meeting the user's rapid cooling needs; conversely, when the air supply intensity of the air conditioner decreases, it means that the air supply intensity expected by the user decreases. Therefore, the air supply intensity of the air circulation equipment can be controlled to decrease accordingly, thereby providing the user with a smaller air supply intensity.
[0120] In the sweep linkage mode, the sweep mode of the air conditioner is linked with the swing mode of the air circulation equipment.
[0121] The air-conditioning sweeping mode includes an up-down sweeping mode and a left-right sweeping mode; the air circulation device's swinging mode includes an up-down swinging mode and a left-right swinging mode.
[0122] When the sweeping mode of the air conditioner is controlled to be linked with the swinging mode of the air circulation device, the sweeping range indicated by the sweeping mode of the air conditioner can be controlled to be the same as the sweeping range indicated by the swinging mode of the air circulation device.
[0123] For example, if the air-conditioning sweeping mode is the up-and-down sweeping mode, the swinging mode of the air circulation device will also be controlled to be the up-and-down swinging mode, and the sweeping ranges of both are the up-and-down sweeping ranges; if the air-conditioning sweeping mode is the left-and-right sweeping mode, the swinging mode of the air circulation device will also be controlled to be the left-and-right swinging mode, and the sweeping ranges of both are the left-and-right sweeping ranges.
[0124] It is understandable that when the air-conditioning sweeping mode is the up and down sweeping mode, it means that the users in the room are distributed vertically in front of the air-conditioning, and the users expect the air-conditioning to sweep back and forth over the multiple users distributed vertically by sweeping up and down, so as to take into account the blowing experience of multiple users at the same time. At this time, the sweeping mode of the air circulation device can be controlled to be the up and down sweeping mode. Then, the up and down sweeping of the air circulation device can make the up and down sweeping range of the air-conditioning wind output by the air-conditioning sweeping up and down larger, thereby expanding the up and down sweeping range of the air-conditioning wind to meet the user's usage needs.
[0125] Similarly, when the air conditioner's sweeping mode is the left-right sweeping mode, it means that the users in the room are distributed horizontally in front of the air conditioner. The users expect the air conditioner to sweep back and forth over the multiple users distributed horizontally by sweeping left and right, so as to take into account the blowing experience of multiple users at the same time. At this time, the sweeping mode of the air circulation device can be controlled to be the left-right sweeping mode. Then, the left-right sweeping of the air circulation device can make the left-right sweeping range of the air-conditioned wind output by the air conditioner larger, thereby expanding the left-right sweeping range of the air-conditioned wind to meet the user's usage needs.
[0126] In wind sensing linkage mode, the wind sensing mode of the air conditioner is linked with the freeze mode of the air circulation equipment.
[0127] The wind sensing modes of the air conditioner include skylight wind mode, surround wind mode, carpet wind mode, sleep mode, soft wind mode, anti-direct blowing mode, etc. The freezing modes of the air circulation equipment include upward freezing mode and downward freezing mode.
[0128] When controlling the wind sensing mode of the air conditioner in linkage with the freeze mode of the air circulation device, the air supply direction indicated by the freeze mode of the air circulation device can be controlled to be the same as the air supply direction indicated by the wind sensing mode of the air conditioner, for example, both are upward or both are downward.
[0129] For example, if the wind sensing mode of the air conditioner is the skylight wind mode, the sleep mode, or the anti-direct blowing mode, it means that the indoor users expect the conditioned air output by the air conditioner to avoid directly blowing the users. Since the air outlet direction of the air conditioner is upward in the skylight wind mode, the sleep mode, or the anti-direct blowing mode, the freezing mode of the air circulation device can be controlled to be the upward freezing mode. When the air circulation device is in the upward freezing mode, it will swing upward after a preset stroke and then freeze. In this way, the air supply directions of the air circulation device and the air conditioner are both upward, and the air circulation device can also guide the indoor air to the air supply outlet of the air circulation device. The air output by the air conditioner and the air conditioning circulation device will flow at the top of the room and then naturally sink, so that the entire room is evenly cooled / heated, thereby meeting the user's need for wind to avoid people.
[0130] If the wind sensing mode of the air conditioner is the surround wind mode, it means that the indoor user expects the conditioned air output by the air conditioner to surround the user. At this time, the freezing mode of the air circulation device can be controlled to be the upward freezing mode. When the air circulation device is in the upward freezing mode, it will swing upward after a preset stroke and then freeze. In this way, the air circulation device will guide the indoor air to the location of the air outlet of the air conditioner, and then blow towards and surround the user together with the conditioned air output by the air conditioner, thereby meeting the user's demand for wind blowing on the user.
[0131] If the air conditioner's wind sense mode is carpet wind mode, it means that the indoor users also expect the air output by the air conditioner to avoid the users. At this time, the freezing mode of the air circulation device can be controlled to be the downward freezing mode. When the air circulation device is in the downward freezing mode, it will swing downward after a preset stroke and then freeze. In this way, the air supply direction of the air circulation device and the air conditioner are both downward. The air circulation device can also guide the indoor air to the location of the air supply outlet of the air conditioner. The air output by the air conditioner and the air circulation device will flow naturally from bottom to top, thereby making the entire room evenly cooled / heated, better meeting the user's need for wind to avoid people.
[0132] In the air supply linkage mode, the air supply mode of the air conditioner is linked with the air supply mode of the air circulation equipment.
[0133] The air supply modes of air conditioners include direct wind mode and wind sensing mode, and the air supply modes of air circulation equipment include natural wind mode and non-natural wind mode.
[0134] When the air supply mode of the air conditioner is linked with the air supply mode of the air circulation device, the air supply direction of the air conditioner and the air supply direction of the air circulation device can be controlled to be toward the user, or the air supply direction of the air conditioner can be controlled to avoid the user and the air supply intensity of the air circulation device can be controlled to be weakened.
[0135] For example, if the air supply mode of the air conditioner is the direct blowing mode, the air supply mode of the air circulation device can be controlled to be the non-natural wind mode. At this time, the air supply direction of the air conditioner and the air supply direction of the air circulation device are both towards the user; if the air supply mode of the air conditioner is the non-direct blowing mode such as the skylight wind mode, carpet wind mode, sleep mode and anti-direct blowing mode in the wind sensing mode, the air supply mode of the air circulation device can be controlled to be the natural wind mode. At this time, the air supply direction of the air conditioner avoids the user, and the air supply intensity of the air circulation device is natural wind, and its air supply intensity is relatively weak.
[0136] It can be understood that when the air supply direction of the air conditioner is the direct blowing mode, it means that the indoor user expects the conditioned air output by the air conditioner to blow directly on the user. At this time, the air supply direction of the air circulation equipment can be controlled to be towards the user to meet the user's need for wind blowing on people; when the air supply direction of the air conditioner is the non-direct blowing mode in the wind sensing mode, such as the skylight wind mode, carpet wind mode, sleep mode and anti-direct blowing mode, it means that the indoor user expects the conditioned air output by the air conditioner to avoid the user. At this time, the air supply mode of the air circulation equipment can be controlled to be the natural wind mode. Since the air circulation equipment outputs natural wind in the natural wind mode, its wind speed is basically the same as the indoor environment wind speed, so it will not affect the user's experience of the wind speed, thereby ensuring the user's need for wind to avoid people.
[0137] The above four air supply modes can be linked to at least one air supply mode.
[0138] For example, in a scenario where the wind sensing mode of the air conditioner is linked to the freeze mode of the air circulation device, and the air supply mode of the air conditioner is linked to the air supply mode of the air circulation device, if the wind sensing mode of the air conditioner is the skylight wind mode and the air supply mode of the air conditioner is the non-direct blowing wind mode, then the freeze mode of the air circulation device can be controlled to be the upward freeze mode, and the air supply mode of the air circulation device can be controlled to be the natural wind mode, so that the air circulation device is controlled to swing upward and then freeze and output natural wind after freezing, so that the air conditioner and the air circulation device can jointly realize the air supply mode that avoids people.
[0139] For another example, in a scenario where the air supply intensity of the air conditioner is linked to the air supply intensity of the air circulation device, and the air supply mode of the air conditioner is linked to the air supply mode of the air circulation device, if the air supply mode is the direct blowing mode, and the air supply intensity of the air conditioner is 1 wind block, the air supply mode of the air circulation device will be controlled to be the non-natural wind mode, and the air supply intensity of the air circulation device will also be 1 wind block, thereby controlling the air conditioner and the air circulation device to jointly achieve the wind blowing effect in which the air supply intensity of the air circulation device changes with the air supply intensity of the air conditioner.
[0140] It can be understood that when the air supply mode of the above-mentioned air conditioner is linked with the air supply mode of the air circulation device, the air supply mode of the air circulation device is adjusted based on the air supply mode of the air conditioner, so that the air supply mode of the air circulation device changes with the change of the air supply mode of the air conditioner.
[0141] In one possible embodiment, the air supply mode of the air circulation device includes the air supply intensity of the air circulation device, and the linkage between the target internal ambient temperature of the air conditioner and the air supply mode of the air circulation device includes: the linkage between the target internal ambient temperature of the air conditioner and the air supply intensity of the air circulation device.
[0142] The target inner ring temperature of the air conditioner is used as a target to control the indoor temperature to reach the air conditioner set temperature. The larger the target inner ring temperature, the slower the indoor temperature reaches the air conditioner set temperature. Conversely, the smaller the target inner ring temperature, the faster the indoor temperature reaches the air conditioner set temperature.
[0143] The target inner ring temperature of the air conditioner and the air supply intensity of the air circulation device are in a whole correlation relationship.
[0144] For example, the target inner ring temperature of the air conditioner can be obtained according to the air conditioner set temperature, the correction temperature, and other correction temperatures. The correction temperature and the air supply intensity of the air circulation device are in a positive correlation relationship. The higher the air supply intensity of the air circulation device, the higher the correction temperature, and the corresponding target inner ring temperature is also higher. The other correction temperatures are determined based on the operation mode of the air conditioner. For example, the corresponding other correction temperatures are different based on the air conditioner in the temperature control energy saving mode and the wind feeling mode and the like. The air conditioner set temperature is the expected indoor temperature set by the user, which is determined according to the user setting.
[0145] It can be understood that in the refrigeration scene, when the air supply intensity of the air circulation device increases, the user will feel colder at the same temperature with the larger air supply intensity, so the correction temperature can be controlled to be increased to make the target inner ring temperature of the air conditioner higher, so as to slowly reduce the indoor temperature to the air conditioner set temperature, reduce the experience of the user to the cold air, and improve the comfort of the user.
[0146] It can be understood that when the target inner ring temperature of the air conditioner and the air supply mode of the air circulation device are linked, the air supply mode of the air circulation device is used as a reference to adjust the target inner ring temperature of the air conditioner, so that the target inner ring temperature of the air conditioner changes with the change of the air supply mode of the air circulation device.
[0147] Figure 11 And Figure 12 The above step S20 is related to an exemplary embodiment of the schematic diagram, which is used to explain the exemplary scheme of controlling the air supply mode of the air conditioner and the air supply mode of the air circulation device to be linked, including the following two exemplary schemes:
[0148] The first exemplary scheme is that the linkage control in the air flow management interface includes a linkage air supply control. In response to the triggering operation of the linkage air supply control, the air supply mode of the air conditioner and the air supply mode of the air circulation device are controlled to be linked.
[0149] In a possible implementation, in response to the triggering operation of the linkage air supply control, at least one of the following linkage modes can be executed:
[0150] The air speed linkage mode controls the air supply intensity of the air conditioner and the air supply intensity of the air circulation device to be linked.
[0151] Sweep linkage mode, the sweep mode of the air conditioner is linked with the swing mode of the air circulation equipment.
[0152] Wind sensing linkage mode, the wind sensing mode of the air conditioner is linked with the freeze mode of the air circulation equipment.
[0153] Air supply linkage mode: the air supply mode of the air conditioner is linked with the air supply mode of the air circulation equipment.
[0154] In this solution, after the user starts the linked air supply control, the system can directly execute at least one of the above four linked solutions without the need for user settings, thus saving user setting time.
[0155] In one possible embodiment, the air flow management interface includes a setting control, and the setting interface is displayed in response to a triggering operation on the setting control, the setting interface includes a linkage air supply setting interface, and the linkage air supply setting interface is an interface for setting a linkage air supply mode, and the linkage air supply mode indicates the linkage of the air supply mode between the air conditioner and the air circulation device, wherein the linkage air supply setting interface includes a wind speed linkage control, a sweep air linkage control and a wind sense linkage control; when at least one target control among the wind speed linkage control, the sweep air linkage control and the wind sense linkage control is activated, in response to the triggering operation of the linkage air supply control, the air supply mode of the air conditioner and the air supply mode of the air circulation device are controlled to be executed in the linkage mode corresponding to the at least one target control.
[0156] Among them, after the linked air supply control in the air flow management interface is activated, it means that the user has activated the linkage between the air supply mode of the air conditioner and the air supply mode of the air circulation device.
[0157] Among them, the setting control is used to provide an entrance for setting the linked air supply mode. The setting control links to the setting interface, which includes the linked air supply setting interface. Users can set / select the linked air supply mode between the air conditioner and the air circulation equipment in the linked air supply setting interface.
[0158] Among them, after the wind speed linkage control in the linked air supply setting interface is activated, it means that the user has the intention to control the linkage between the air supply intensity of the air conditioner and the air supply intensity of the air circulation equipment, but the linkage between the air supply intensity of the air conditioner and the air circulation equipment has not yet been activated.
[0159] Among them, after the sweep linkage control in the linked air supply setting interface is activated, it means that the user has the intention to control the linkage between the sweep mode of the air conditioner and the swing mode of the air circulation equipment, but the linkage between the sweep mode of the air conditioner and the swing mode of the air circulation equipment has not yet been activated.
[0160] Among them, after the wind sense linkage control in the linked air supply setting interface is activated, it means that the user has the intention to control the linkage between the wind sense mode of the air conditioner and the freeze mode of the air circulation equipment, but the linkage between the wind sense mode of the air conditioner and the freeze mode of the air circulation equipment has not yet been activated.
[0161] In some scenarios, taking at least one target control including a wind speed linkage control and a sweep linkage control as an example, the user Figure 11 Click the settings control in the airflow management interface shown, and the application will enter Figure 13 The setting interface shown in the figure includes the linkage air supply setting interface. The user clicks the wind speed linkage control and the sweep linkage control to return to the Figure 11 The airflow management interface shown in the figure, the user then clicks the linked air supply control in the airflow management interface to control the air supply intensity of the air conditioner to be linked with the air supply intensity of the air circulation device, and can also control the air sweep mode of the air conditioner to be linked with the swing mode of the air circulation device. In this solution, before starting the linked air supply control, the user can first enter Figure 13 Set / select the linkage air supply control you want to trigger on the linkage air supply setting interface in the setting interface shown. After setting / selecting at least one target control among the wind speed linkage control, sweep air linkage control and wind sense linkage control, you can return to Figure 11 In the airflow management interface shown, the linked air supply control is enabled, controlling the air conditioner and air circulation equipment to execute the linked mode corresponding to at least one target control. This allows for adaptive control of the linked mode between the air conditioner and air circulation equipment based on user needs, greatly satisfying diverse linkage requirements.
[0162] In a second exemplary embodiment, the linkage control in the airflow management interface includes at least one of a wind speed linkage control, a sweep linkage control, and a wind sense linkage control. In response to an activation operation on at least one target control among the wind speed linkage control, the sweep linkage control, the wind sense linkage control, and the linked temperature control control, the air conditioner and the air circulation device are controlled to operate in a linkage mode corresponding to the at least one target control.
[0163] Among them, after the wind speed linkage control in the air flow management interface is activated, it means that the user has activated the linkage between the air supply intensity of the air conditioner and the air supply intensity of the air circulation equipment.
[0164] Among them, after the sweep linkage control in the airflow management interface is activated, it means that the user has activated the linkage between the sweep mode of the air conditioner and the swing mode of the air circulation device.
[0165] Among them, when the wind sense linkage control in the airflow management interface is activated, it means that the user has activated the linkage between the wind sense mode of the air conditioner and the freeze mode of the air circulation device.
[0166] In some scenarios, taking at least one target control including a wind speed linkage control and a sweep linkage control as an example, the user Figure 12 In the airflow management interface shown, after clicking the wind speed linkage control and the sweeping linkage control, you can control the linkage between the air supply intensity of the air conditioner and the air supply intensity of the air circulation equipment, and you can also control the linkage between the sweeping mode of the air conditioner and the swing mode of the air circulation equipment.
[0167] It can be understood that in the above two exemplary schemes, the linkage mode corresponding to the wind speed linkage control includes the linkage between the air supply intensity of the air conditioner and the air supply intensity of the air circulation equipment; the linkage mode corresponding to the sweeping linkage control includes the linkage between the sweeping mode of the air conditioner and the swing mode of the air circulation equipment; the linkage mode corresponding to the wind sense linkage control includes the linkage between the wind sense mode of the air conditioner and the freeze mode of the air circulation equipment.
[0168] It is understandable that the above multiple linkage controls can also provide a functional introduction to the linkage controls, for example, Figure 11 For the linked air supply control and linked temperature control control shown in , the function introduction of "air conditioning linked to air circulation equipment to supply air, providing a comfortable air flow experience" can be provided under the linked air supply control, and the function introduction of "intelligently adjusting the air conditioning temperature to achieve combined energy saving effect" can also be provided under the linked temperature control control. Figure 13 For the wind speed linkage control, sweep linkage control, and wind sense linkage control, a function introduction of "adjusting the wind speed of the air circulation equipment when adjusting the air conditioner wind speed" can be provided below the wind speed linkage control, and a function introduction of "linking the air conditioner sweeping with the left and right, up and down sweeping of the air circulation equipment" can be provided below the sweep linkage control. A function introduction of "linking the air conditioner with the natural wind and directional air supply of the air circulation equipment" can also be provided below the wind sense linkage control, so as to assist users in quickly learning the functions of these linkage controls.
[0169] In a possible implementation, the air supply mode of the air conditioner may be controlled to be linked with the air supply mode of the air circulation device in response to a triggering operation on the wind speed linkage control and / or the wind sense linkage control.
[0170] Among them, the air supply mode of the air conditioner includes direct blowing mode and non-direct blowing mode in the wind sensing mode, and the air supply mode of the air circulation equipment includes natural wind mode and non-natural wind mode.
[0171] For example, in response to a triggering operation on the wind speed linkage control and / or the wind sense linkage control, the air supply mode of the air conditioner and the air supply mode of the air circulation device are controlled to perform at least one of the following three air supply mode linkages:
[0172] Air supply mode linkage 1, in response to the triggering operation of the wind speed linkage control, controls the direct blowing mode of the air conditioner to be linked with the non-natural wind mode of the air circulation equipment.
[0173] Among them, after the wind speed linkage control is triggered, if the air conditioner is in direct wind mode, the air circulation equipment can be linked to control the non-natural wind mode. At this time, the air supply direction of the air conditioner in direct wind mode and the air circulation equipment in non-natural wind mode are both towards the user, and after the air supply intensity of the air conditioner changes, the air supply intensity change of the air circulation equipment will be controlled accordingly according to the corresponding relationship between the air supply intensity of the air conditioner and the air circulation equipment.
[0174] Of course, the air supply direction of the air circulation equipment in the non-natural wind mode does not have to be towards the user, because the air supply intensity of the air circulation equipment in the non-natural wind mode is relatively large, which can speed up the air conditioning wind blowing towards the user, and can also meet the user's needs for wind blowing on the user.
[0175] Air supply mode linkage 2, in response to the triggering operation of the wind speed linkage control, controls the wind feeling mode of the air conditioner to be linked with the natural wind mode of the air circulation equipment.
[0176] Among them, after the wind speed linkage control is triggered, if the air conditioner is in the non-direct wind mode in the wind sensing mode, the air circulation device can be controlled to be in the natural wind mode. At this time, the air supply direction of the air conditioner in the non-direct wind mode avoids the user, and the air supply direction of the air circulation device in the natural wind mode can avoid the user. When the air supply intensity of the air conditioner changes, the air supply intensity of the air circulation device is still output according to the preset air supply intensity. The air-conditioning wind with the preset air supply intensity is natural wind, thereby avoiding strong wind from affecting the user's experience.
[0177] Of course, the air supply direction of the air circulation device in the natural wind mode does not need to avoid the user, because the air supply intensity of the air circulation device in the natural wind mode is the intensity of the natural wind, and even if it is directed towards the user, it will not have a significant impact on the user's need for wind avoidance.
[0178] Air supply mode linkage 3, in response to the triggering operation of the wind sensing linkage control, controls the wind sensing mode of the air conditioner to be linked with the natural wind mode of the air circulation equipment.
[0179] Among them, after the wind sensing linkage control is triggered, if the air conditioner is in the non-direct blowing mode in the wind sensing mode, the air circulation device can be controlled to be in the natural wind mode. At this time, the air supply direction of the air conditioner in the non-direct blowing mode avoids the user, and the air circulation device executes the upward freeze mode. The air supply direction of the air circulation device is frozen to output natural wind after executing the preset stroke, and can also avoid the user, thereby preventing the wind from blowing directly on the user.
[0180] Through the first exemplary solution above, users canFigure 11 Enter the airflow management interface shown by setting the control Figure 13 In the linked air supply setting interface shown in the setting interface, set / select at least one target control among the wind speed linkage control, sweep wind linkage control, and wind sense linkage control, and then return to Figure 11 The airflow management interface shown starts the linkage air supply control to control the air conditioner and the air circulation device to execute the linkage mode corresponding to at least one target control; through the above second exemplary solution, the user can also directly Figure 12 In the airflow management interface shown, the air conditioner and the air circulation equipment are controlled to execute the linkage mode corresponding to at least one target control by starting at least one target control among the wind speed linkage control, the wind sweep linkage control, and the wind sense linkage control.
[0181] It provides two exemplary solutions for triggering the air supply mode of the air conditioner to be linked with the air supply mode of the air circulation device. Of course, there are other exemplary solutions for triggering the air supply mode of the air conditioner to be linked with the air supply mode of the air circulation device. For example, Figure 13 In the linked air supply setting interface shown, directly setting / selecting at least one target control among the wind speed linkage control, wind sweep linkage control, and wind sense linkage control can also start the air conditioner and air circulation equipment to execute the linkage mode corresponding to at least one target control.
[0182] Figure 12 and Figure 13 This is a schematic diagram related to the exemplary embodiment involved in the above step S20, which is used to explain an exemplary solution for controlling the target internal ambient temperature of the air conditioner in conjunction with the air supply mode of the air circulation device, including the following exemplary solutions:
[0183] The airflow management interface includes a linkage temperature control control component. In response to a triggering operation on the linkage temperature control component, the target internal temperature of the air conditioner is controlled to be linked with the air supply mode of the air circulation device.
[0184] In one possible embodiment, the airflow management interface includes a setting control, and the setting interface is displayed in response to a triggering operation on the setting control. The setting interface includes a linkage temperature control setting interface, which is an interface for setting a correction temperature, and the correction temperature is used to correct the air conditioner set temperature.
[0185] The linked temperature control setting interface includes a correspondence between different corrected temperatures and different air supply modes of the air circulation device, and the different corrected temperatures can be adjusted. The linked temperature control setting interface can be displayed in a graph, in the form of key-value pairs, or in other forms.
[0186] For example, the air supply mode of the air circulation device includes air supply intensity, and the correspondence between different correction temperatures in the linkage temperature control setting interface and different air supply modes of the air circulation device includes: the correspondence between different correction temperatures of the air conditioner and different air supply intensities of the air circulation device.
[0187] For example, see Figure 13 As shown, the linkage temperature control setting interface is a curve chart, and the air supply mode of the air circulation device is the air supply intensity. For example, the horizontal axis of the curve chart is the air supply intensity, and the vertical axis is the correction temperature. The user can adjust the correction temperature corresponding to any air supply intensity on the curve chart. After the correction temperature is adjusted, the target internal temperature of the air conditioner will also change accordingly. After setting the correction temperature, return to Figure 11 The airflow management interface shown in the figure, after the user starts the linkage temperature control control in the airflow management interface, the air supply intensity between the corrected temperature of the air conditioner and the air circulation equipment can be controlled according to the Figure 13 The corresponding relationship shown in the curve diagram is run, after the air supply intensity of the air circulation equipment changes, based on Figure 13 The corresponding corrected temperature is obtained by querying the curve graph shown, and the target internal temperature of the air conditioner is calculated based on the corrected temperature obtained by query.
[0188] In a possible embodiment, the linkage temperature control setting interface also includes a recovery control, and can also restore the corresponding relationship to a preset corresponding relationship in response to a triggering operation on the recovery control. The preset corresponding relationship indicates the correspondence between different corrected temperatures and different air supply modes.
[0189] The restoration control is used to provide an entry for restoring the corresponding relationship between the corrected temperature of the air conditioner and the air supply mode of the air circulation device.
[0190] In some cases, see Figure 13 After the user adjusts the correction temperature in the linkage temperature control setting interface and changes the correspondence between the correction temperature and the air supply intensity, the user can also click the restore control below to restore the correspondence to the system default preset correspondence.
[0191] Through the above technical solution, users can Figure 13 The correction temperature is set in the linkage temperature control setting interface in the setting interface shown, thereby changing the corresponding relationship between the correction temperature in the linkage temperature control setting interface and the wind speed intensity. Then when the user starts Figure 11 After the linkage temperature control control is shown, the linkage between the target internal temperature of the air conditioner and the air supply intensity of the air circulation equipment will be controlled according to the corresponding relationship set by the user. It enables the user to participate in the linkage setting between the target internal temperature of the air conditioner and the air supply intensity of the air circulation equipment, thereby improving the user's interactive experience.
[0192] Figure 9 and Figure 11 This is a schematic diagram related to an exemplary solution involved in the present disclosure, which is used to explain an exemplary solution for entering the airflow management interface, including the following steps:
[0193] (1) In response to a triggering operation on the application, a first selection interface is displayed.
[0194] Among them, the first selection interface is an interface for displaying at least one air circulation device that can be linked with the air conditioner. The first selection interface displays at least one air circulation device that can be linked with the air conditioner, and can also display the network status of at least one air circulation device.
[0195] For example, see Figure 9 The first selection interface shown includes air circulation devices A to C, wherein air circulation device A and air circulation device B are in an online state, and air circulation device C is in an offline state.
[0196] Among them, displaying the first selection interface in response to the triggering operation of the application may include the following multiple implementations.
[0197] In implementation A1, a first selection interface may be displayed in response to a startup operation on an application.
[0198] For example, after the user starts the application, he or she can directly enter the first selection interface.
[0199] In implementation A2, in response to a startup operation on an application, a main interface including an air management control may be displayed; and in response to a triggering operation on the air management control, a first selection interface may be displayed.
[0200] Among them, see Figure 5 As shown, the main interface of this embodiment displays various function controls, for example, the main interface displays entrances to various air-conditioning functions such as the air-conditioning preference function, wind feeling function, soft wind function, wind sweeping function, timing function, sleep function, humidity adjustment function, lighting function, upper and lower freeze function, left and right freeze function, etc.
[0201] The air management control included in the main interface in this embodiment is a control linked to the first selection interface, which provides an entrance to the first selection interface.
[0202] For example, after the user starts the application, he can enter the main interface shown in 5, and then trigger the air management control in the main interface to enter Figure 9 The first selection interface shown. Of course, Figure 5 The current environmental parameters can also be displayed below the air management controls, such as indoor temperature 27°C, indoor humidity 40%, etc.
[0203] In a possible implementation, the application program displays the main interface in response to the start operation of the application program, the main interface includes the air management control; the air management interface is displayed in response to the triggering operation of the air management control, the air management interface includes the air flow linkage control; the first selection interface is displayed in response to the triggering operation of the air flow linkage control.
[0204] The air management control included in the main interface in the implementation is a control for linking the air management interface, which provides an entry to the air management interface.
[0205] The air management interface in the implementation is used to provide an entry to the air flow linkage function, the air management function, the humidity detection function, and the like.
[0206] The air flow linkage control included in the air management interface in the implementation is a control for linking the first selection interface, which provides an entry to the first selection interface.
[0207] For example, after the user starts the application program, the user can enter Figure 5 the main interface shown in FIG. 1A, Figure 5 the main interface shown in FIG. 1A includes the air management control, and the user enters Figure 6 the air management interface shown in FIG. 1B after triggering the air management control, and the user enters the first selection interface after triggering Figure 6 the air flow linkage control in the air management interface shown in FIG. 1B.
[0208] In a possible implementation, the first selection interface further includes the air supply direction selection control of the air circulation device; and the air supply direction selection interface can be displayed in response to the triggering operation of the air supply direction selection control.
[0209] The air supply direction selection interface is used to provide the selection control of the air supply direction, and includes the same-side control and the opposite-side control; the same-side control indicates that the air supply direction of the air conditioner is the same as the air supply direction of the air circulation device, and the opposite-side control indicates that the air supply direction of the air conditioner is opposite to the air supply direction of the air circulation device.
[0210] The air supply direction selection interface can further provide an indication pattern of the air supply direction, and the indication pattern includes the same-side pattern and the opposite-side pattern; the same-side pattern is located below the same-side control and is used to show that the air supply directions of the air conditioner and the circulation fan are the same; and the opposite-side pattern is located below the opposite-side control and is used to show that the air supply directions of the air conditioner and the circulation fan are opposite.
[0211] In a possible implementation, the air supply direction selection interface includes a confirmation control. When the same-side control or the opposite-side control in the air supply direction selection interface is selected, the first selection interface is displayed in response to triggering the confirmation control.
[0212] For example, the user sees Figure 9 In the first selection interface shown, long press the air supply direction selection control, and the application enters Figure 10 The air supply direction selection interface shown in the figure, the user then touches the same side control in the air supply direction selection interface, and then clicks the confirmation button to return to the Figure 9 The first selection interface shown, Figure 9 The first selection interface shown will display the prompt message "Same side as air conditioner" to remind the user that the current air supply direction of the air conditioner and the air circulation device is the same.
[0213] In one possible embodiment, the air supply direction selection interface does not include a confirmation control. When the same-side control or the opposite-side control in the air supply direction selection interface is selected, the first selection interface is displayed in response to the selection operation of the same-side control or the opposite-side control.
[0214] For example, the user sees Figure 9 After the air supply direction selection control is triggered in the first selection interface shown, the application enters Figure 10 The air supply direction selection interface is shown. The user then touches the same-side control in the air supply direction selection interface to return to the first selection interface. The first selection interface will display the prompt message "Same side as air conditioner" to remind the user that the current air supply direction of the air conditioner and the air circulation equipment is the same.
[0215] In a possible implementation, the manner of entering the first selection interface when the application is triggered for the first time is different from the manner of entering the first selection interface when the application is triggered for the non-first time. For details, see the following two implementations.
[0216] In implementation B1, when the application is not triggered for the first time, a first selection interface is displayed in response to a triggering operation on the application.
[0217] Among them, when it is not the first time to trigger the application, the first selection interface can be entered according to any one of the above implementation modes A1 to A3.
[0218] Implementation method B2: When the application is triggered for the first time, a device recommendation interface is displayed in response to a triggering operation on the application; the device recommendation interface includes at least one air circulation device that can be linked with the air conditioner; and the first selection interface is displayed in response to a triggering operation on a target air circulation device among the at least one air circulation device.
[0219] The device recommendation interface is used to display at least one air circulation device recommended by the application that can be linked with the air conditioner, and the at least one air circulation device is an air circulation device located in the same space as the air conditioner.
[0220] In response to a triggering operation on a target air circulation device among at least one air circulation device, a first selection interface is displayed, which also includes at least one air circulation device, and the target air circulation device among the at least one air circulation device is in a selected state.
[0221] For example, see Figure 8 As shown in the figure, the equipment recommendation interface recommends air circulation equipment A to air circulation equipment C. When the user selects air circulation equipment A, it will be displayed Figure 9 As shown in the first selection interface, the air circulation devices A to C are also displayed in the first selection interface, and the air circulation device A is in the selected state. The user can switch the selected air circulation device in the first selection interface.
[0222] It is understandable that when the user enters the application for the first time, the application will display a device recommendation interface to the user to display at least one air circulation device that can be linked with the air conditioner, so as to guide the user to bind the air circulation device with the air conditioner; when the user does not enter the application for the first time, since the application already understands the role of binding the air circulation device with the air conditioner, it can directly enter the first selection interface and provide the user with controls that can switch at least one air circulation device.
[0223] (2) In response to a selection operation of a target air circulation device among the at least one air circulation device, displaying the airflow management interface.
[0224] In a possible implementation, when a target air circulation device among the at least one air circulation device is selected, the airflow management interface is entered in response to a triggering operation on a completion control.
[0225] See also Figure 9 The first selection interface shown has three air circulation devices: air circulation device A, air circulation device B, and air circulation device C. After selecting air circulation device A, you can trigger the completion button to enter Figure 11 The airflow management interface shown in the figure. Of course, the user can also directly enter the Figure 11 The Airflow Management interface is displayed without requiring the user to click the Done button.
[0226] Through the above technical solution, before entering the airflow management interface, the user can first enter the first selection interface and select the target air circulation device to be linked with the air conditioner in the first selection interface. In this way, after the user subsequently starts the linkage control in the airflow management interface, the application can determine that the air conditioner is linked with the target air circulation device selected by the user, thereby controlling the air conditioner and the corresponding target air circulation device to execute the linkage mode indicated by the linkage control.
[0227] Figure 11 and Figure 14 This is a schematic diagram related to an exemplary embodiment of the present disclosure, which is used to explain an exemplary solution of the functional control "linked device switching control" in the airflow management interface, including the following steps:
[0228] (1) In response to a switching operation on the linkage device switching control, a second selection interface is displayed.
[0229] Among them, in addition to the linkage control and completion control, the airflow management interface can also include a linkage device switching control.
[0230] The linked device switch control provides access to switching air circulation devices and links to the second selection interface. It is understood that the currently selected air circulation device will also appear in the same column as the linked device switch control. For example, if the user currently selects air circulation device A, then both air circulation device A and the linked device switch control will appear in the same column.
[0231] The second selection interface includes at least one air circulation device that can be linked with the air conditioner, and / or an air supply direction selection control of the air circulation device.
[0232] See also Figure 11 As shown, the user long presses Figure 11 After switching the linkage device control in the airflow management interface shown, you can enter Figure 14 The second selection interface shown in the figure may include at least one air circulation device A to air circulation device D that can be linked with the air conditioner. The user can reselect any one of the air circulation devices A to air circulation devices D in the second selection interface. The second selection interface may also include an air supply direction selection control. After the user touches the air supply direction selection control, the user can enter Figure 10 The air supply direction selection interface shown is used to reselect the air supply direction of the air conditioner and air circulation equipment.
[0233] It is understandable that the second selection interface is to enter Figure 11After the airflow management interface shown, the interface entered by triggering the linkage device switching control in the airflow management interface; the first selection interface is to enter Figure 11 The second selection interface is displayed after the airflow management interface, and the first selection interface is displayed before the airflow management interface.
[0234] Through the above technical solution, a linkage device switching control can be configured in the airflow management interface. After the user triggers the linkage device switching control, he can enter the second selection interface, reselect the air circulation device in the second selection interface, and / or reselect the air supply direction of the air conditioning and air circulation device, so that the user does not need to go back to the first selection interface through multiple operations to reselect the air circulation device, or reselect the air supply direction of the air conditioning and air circulation device, which brings convenience to user operation.
[0235] The following is an exemplary embodiment of the present disclosure, which is used to explain an exemplary solution for controlling the linkage between air conditioning and air circulation equipment according to the default configuration of the application, including the following steps:
[0236] (1) In response to a triggering operation on the application, a main interface is displayed.
[0237] Among them, the main interface is used to display various functional controls for controlling the air conditioner. The above implementation mode A2 has already explained various functional controls and will not be repeated here.
[0238] Among them, the multiple functional controls include an air management control, which in this embodiment is a startup entry for starting the automatic control of the linkage between the air conditioner and the air circulation equipment. After triggering the air management control, the application will control the linkage between the air conditioner and the air circulation equipment according to the preset configuration.
[0239] (2) In response to the triggering operation of the air management control, executing at least one of the following schemes C1 and C2:
[0240] Solution C1, controls the air conditioner to be linked with a preset air circulation device.
[0241] In one possible implementation, an air circulation device in the same space as the air conditioner is determined. When there is only one air circulation device in the same space as the air conditioner, the air circulation device is used as the preset air circulation device. When there are multiple air circulation devices in the same space as the air conditioner, any one of the multiple air circulation devices is used as the preset air circulation device, or the air circulation device closest to the air conditioner among the multiple air circulation devices is used as the preset air circulation device.
[0242] Option C2, controlling the air conditioner and the preset air circulation device to execute in a preset linkage mode.
[0243] Among them, the preset linkage mode includes at least one of a preset wind speed linkage mode, a preset wind sweep linkage mode, a preset wind sense linkage mode, a preset temperature control linkage mode, and a preset air supply linkage mode.
[0244] Among them, the preset wind speed linkage mode indicates that the wind speed intensity of the air conditioner is linked with the wind speed intensity of the air circulation device, for example, the wind speed intensity of the air conditioner and the wind speed intensity of the air circulation device are both controlled to be 1 wind speed.
[0245] Among them, the preset sweep linkage mode indicates that the sweep mode of the air conditioner is linked with the swing mode of the air circulation device, for example, the sweep mode of the air conditioner is controlled to be an up and down sweep mode and the swing mode of the air circulation device is controlled to be an up and down swing mode.
[0246] The preset wind sensing linkage mode indicates that the wind sensing mode of the air conditioner is linked to the freeze mode of the air circulation device, for example, the wind sensing mode of the air conditioner is controlled to be the skylight wind mode and the freeze mode of the air circulation device is controlled to be the upward freeze mode.
[0247] Among them, the preset air supply linkage mode indicates that the air supply mode of the air conditioner is linked with the air supply mode of the air circulation equipment.
[0248] Through the above technical solution, the main interface can be displayed in response to the user's triggering operation on the application. The main interface has air management controls. In addition, in response to the user's triggering operation on the air management controls, the air conditioner and the air circulation equipment can be controlled to execute according to the preset configuration, such as controlling the air conditioner to be linked with a pre-selected preset air circulation equipment, controlling the air conditioner and the preset air circulation equipment to execute in a preset linkage mode, etc., so that the user does not need to actively configure the linkage between the air conditioner and the air circulation equipment, saving the user's configuration time.
[0249] Figure 4-6 It is a schematic diagram related to the exemplary embodiment involved in the above step S10, which is used to explain various implementation methods of entering the airflow management interface.
[0250] In implementation D1, in response to a startup operation of the application, the airflow management interface is displayed.
[0251] For example, after launching the application, the user can directly enter the airflow management interface.
[0252] This implementation D1 is similar to the above implementation A1. After starting the application, the user can directly enter the first selection interface or the airflow management interface.
[0253] In some cases, see Figure 11As shown, users can directly enter the Figure 11 The airflow management interface shown.
[0254] In some cases, see Figure 11 As shown, users can directly enter the Figure 9 The first selection interface, then Figure 9 On the first selection interface, trigger the selection operation of the target air circulation device, thereby entering Figure 11 Airflow management interface.
[0255] In implementation D2, in response to a startup operation on the application, a main interface is displayed; the main interface includes an air management control; and in response to a triggering operation on the air management control, the airflow management interface is displayed.
[0256] Among them, see Figure 5 As shown, the main interface of this embodiment displays various function controls. For example, the main interface displays the entrances to various air-conditioning functions such as the wind sensing function, soft wind function, sweeping wind function, timing function, sleep function, humidity adjustment function, lighting function, upper and lower freeze function, and left and right freeze function.
[0257] The air management control included in the main interface in this embodiment is a control linked to the airflow management interface, which provides an entrance to the airflow management interface.
[0258] For example, after the user starts the application, he can enter the main interface, and then trigger the air management control in the main interface to enter the airflow management interface.
[0259] This implementation D2 is similar to the above implementation A2, and the first selection interface or the airflow management interface can be entered through the air management control in the main interface.
[0260] In some cases, see Figure 5 As shown, after the user starts the application, he can enter Figure 5 The main interface shown, and then respond to Figure 5 To trigger the air management control in the main interface, enter Figure 11 Airflow management interface.
[0261] In some cases, see Figure 5 As shown, after the user starts the application, he can enter Figure 5 The main interface, and then respond to Figure 5 To trigger the air management control in the main interface, enter Figure 9 The first selection interface; then Figure 9 On the first selection interface, trigger the selection operation of the target air circulation device, thereby entering Figure 11Airflow management interface.
[0262] Implementation method D3: in response to the start-up operation of the application, the main interface is displayed; the main interface includes an air management control; in response to the triggering operation of the air management control, the air management interface is displayed; the air management interface includes an airflow linkage control; in response to the triggering operation of the airflow linkage control, the airflow management interface is displayed.
[0263] The air management control included in the main interface in this embodiment is a control linked to the air management interface, which provides an entrance to the air management interface.
[0264] Among them, the air management interface in this embodiment is used to provide an entrance to functions such as airflow linkage function, air management function, and humidity detection function.
[0265] The airflow linkage control included in the air management interface in this embodiment is an entrance to the airflow management interface, which provides an entrance to the airflow management interface.
[0266] In some cases, see Figure 5 As shown, after the user starts the application, he can enter Figure 5 The main interface, and then respond to Figure 5 To trigger the air management control in the main interface, enter Figure 6 Air management interface; then respond to Figure 6 The trigger operation of the air flow linkage control in the air management interface enters Figure 11 Airflow management interface.
[0267] In some cases, see Figure 5 As shown, after the user starts the application, he can enter Figure 5 The main interface, and then respond to Figure 5 To trigger the air management control in the main interface, enter Figure 6 Air management interface; then respond to Figure 6 The trigger operation of the air flow linkage control in the air management interface enters Figure 9 The first selection interface; then Figure 9 On the first selection interface, trigger the selection operation of the target air circulation device, thereby entering Figure 11 Airflow management interface.
[0268] Implementation method D4: in response to a triggering operation on the application, a function interface is displayed; the function interface includes a confirmation control; the function interface is used to provide descriptive information of the airflow management function; in response to a triggering operation on the confirmation control, the airflow management interface is displayed.
[0269] Among them, the functional interface in this embodiment is an interface that provides an introduction to the linkage function, which is used to assist users in understanding the linkage function between the air conditioner and the air circulation equipment.
[0270] For example, see Figure 7 As shown, the words "the airflow management function can realize the intelligent linkage between the air conditioner and the circulation fan. The circulation fan synchronizes the switch, wind speed, wind sweep and wind sense control of the air conditioner to accelerate air circulation, rapid cooling and linkage temperature control" can be displayed on the function interface to help users understand the linkage function between the air conditioner and the air circulation equipment.
[0271] The confirmation control in this embodiment is used to link to the next interface, which can be an airflow management interface or a device recommendation interface. It is understandable that when the user triggers the confirmation control, it means that the user has read the function introduction in the function interface and can therefore proceed to the next interface.
[0272] For example, when a user enters an application for the first time, in response to the user's triggering operation on the confirmation control, the user enters the application. Figure 8 In response to the user selecting the target air circulation device in the device recommendation interface, enter Figure 9 The first selection interface shown, and then in response to the user triggering the completion control on the first selection interface, enter Figure 11 The airflow management interface shown.
[0273] For example, when the user is not entering the application for the first time, in response to the user's triggering operation on the confirmation control, the user enters the application. Figure 9 The first selection interface shown, and then in response to the user triggering the completion control on the first selection interface, enter Figure 11 The airflow management interface shown.
[0274] In one possible embodiment, the implementation of entering the main interface includes: displaying a device management interface in response to a startup operation of the application; the device management interface includes an airflow management control; and displaying the main interface in response to a triggering operation of the airflow management control.
[0275] Among them, the device management interface is used to display the air circulation equipment existing in a certain space, and each air circulation device corresponds to an airflow management control.
[0276] For example, see Figure 4 As shown, the device management interface is used to display the air circulation device A in the bedroom. The air circulation device A corresponds to an airflow management control. In response to the triggering operation of the airflow management control, you can enter Figure 5 The main interface shown.
[0277] It is understandable that inFigure 4 After selecting air circulation device A in the device management interface shown, the following Figure 8 The equipment recommendation interface will show the air circulation equipment A that can be linked, and Figure 9 The first selection interface shown shows that the air circulation device A linked to the air conditioner is selected.
[0278] It is understandable that there are various ways to enter the airflow management interface and the first selection interface in the present invention. The two interface switching methods can be combined with each other or independent of each other to form multiple embodiments, which will not be repeated here.
[0279] Through the above technical solution, it provides multiple ways to enter the airflow management interface, such as directly starting the application to enter the airflow management interface, or triggering the air management control in the main interface to enter the airflow management interface, or triggering the airflow linkage control in the air management interface to enter the airflow management interface, or triggering the confirmation control in the function interface to enter the airflow management interface, or entering the airflow management interface after triggering the selection of the target air circulation device in the first selection interface. These entry methods can be combined with each other to make the way to enter the airflow management interface diverse and enrich the user's interactive operation experience.
[0280] Figure 3 It is a schematic diagram related to an exemplary embodiment involved in the present disclosure, which is used to explain that an application provides a network selection interface to provide a network connection selection interface for air conditioners and air circulation equipment.
[0281] In one possible embodiment, before the application displays the main page or the airflow management interface, a network selection interface will also be displayed. The network selection interface is used to provide the configuration of the network name (such as the WIFI name under the Internet of Things column) and the network password (such as the WIFI password) of the selected air conditioner or air circulation device.
[0282] In one possible implementation, a device search interface is displayed before the network selection interface is displayed. The device search interface displays devices in multiple spaces, which can be air conditioners or air circulation devices. In response to the user's triggering operation on a target device among multiple devices, the network selection interface is entered. In response to the triggering 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, thereby completing the configuration of the network name and network password for the target device.
[0283] In one possible implementation, if two target devices have the same network name and network password among the multiple target devices that have been configured, it means that the two target devices are on the same network, and then the two target devices can establish a network connection to achieve linkage. Of course, two target devices on different networks can also achieve linkage.
[0284] For example, in the application display Figure 2 After the device search interface is displayed, Figure 2 The device search interface shown shows air conditioners A to E and air circulation devices A to E. If the user selects air conditioner A, the user will enter Figure 3 The network selection interface of the user configures the network name and network password for air conditioner A; then return to Figure 2 The device search interface shown in the figure, the user selects air circulation device A and then enters Figure 3 In the network selection interface, the user configures the same network name and network password for air circulation device A as for air conditioner A. In this way, air conditioner A and air circulation device A are in the same network environment for linkage.
[0285] Through the above technical solution, network names and network passwords can be configured for multiple devices respectively, so that devices belonging to the same network among multiple devices can be linked based on the network.
[0286] Figure 15 FIG. 1 is a block diagram of an application display device according to an exemplary embodiment. Figure 15 The application display device 1500 includes: a response module 1510 and a control module 1520.
[0287] The response module 1510 is configured to display an airflow management interface in response to a trigger operation on the application; the airflow management interface includes a linkage control, the application is used to adjust operating data of the air conditioner and / or the air circulation device, the operating data including operating mode and / or operating parameters, and the linkage control is used to provide an entry for controlling the air conditioner and the air circulation device to be in a corresponding linkage mode;
[0288] The control module 1520 is configured to control the linkage between the air conditioner and the air circulation device in response to a triggering operation on the linkage control.
[0289] Optionally, the linkage control includes a linkage air supply control and / or a linkage temperature control control.
[0290] Optionally, the response module 1510 is further configured to control the air supply mode of the air conditioner to be linked with the air supply mode of the air circulation device in response to a triggering operation on the linked air supply control.
[0291] Optionally, the air supply mode of the air conditioner is linked to the air supply mode of the air circulation device and includes at least one of the following:
[0292] The air supply intensity of the air conditioner is linked to the air supply intensity of the air circulation device, the sweeping mode of the air conditioner is linked to the swing mode of the air circulation device, the wind feeling mode of the air conditioner is linked to the freeze mode of the air circulation device, and the air supply mode of the air conditioner is linked to the air supply mode of the air circulation device.
[0293] Optionally, the response module 1510 is further configured to control the target internal ambient temperature of the air conditioner to be linked with the air supply mode of the air circulation device in response to a triggering operation on the linked temperature control component.
[0294] Optionally, the airflow management interface further includes a setting control; and the application display device further includes:
[0295] A response module is configured to display a setting interface in response to a triggering operation on the setting control; the setting interface includes at least one of a linked air supply setting interface and a linked temperature control setting interface, the linked air supply setting interface is an interface for setting a linked air supply mode, the linked air supply mode indicates the linkage of the air supply mode between the air conditioner and the air circulation device, and the linked temperature control setting interface is an interface for setting a correction temperature, and the correction temperature is used to correct the air conditioner set temperature.
[0296] Optionally, the linked air supply setting interface includes a wind speed linkage control, a sweep air linkage control and a wind sense linkage control; the response module is also configured to control the air supply mode of the air conditioner and the air circulation device to be executed in a linkage mode corresponding to the at least one target control in response to a triggering operation of the linked air supply control when at least one target control among the wind speed linkage control, the sweep air linkage control and the wind sense linkage control is activated.
[0297] Optionally, the linkage control includes at least one of a wind speed linkage control, a wind sweep linkage control, a wind sense linkage control and a linkage temperature control control.
[0298] Optionally, the response module 1510 is also configured to control the air conditioner and the air circulation equipment to execute in the linkage mode corresponding to the at least one target control in response to the start-up operation of at least one target control among the wind speed linkage control, the wind sweep linkage control, the wind sense linkage control and the linkage temperature control control.
[0299] Optionally, the linkage mode corresponding to the wind speed linkage control includes the linkage between the air supply intensity of the air conditioner and the air supply intensity of the air circulation equipment; the linkage mode corresponding to the wind sweep linkage control includes the linkage between the wind sweep mode of the air conditioner and the swing mode of the air circulation equipment; the linkage mode corresponding to the wind sense linkage control includes the linkage between the wind sense mode of the air conditioner and the freeze mode of the air circulation equipment.
[0300] Optionally, the linked temperature control setting interface includes a correspondence between different correction temperatures and different air supply modes of the air circulation device; the different correction temperatures can be adjusted.
[0301] Optionally, the air supply mode includes air supply intensity, and the correspondence between the different corrected temperatures and the different air supply modes includes the correspondence between the different corrected temperatures and different air supply intensities.
[0302] Optionally, the linkage temperature control setting interface also includes a recovery control, and the application display device also includes: a response module, configured to restore the correspondence to a preset correspondence in response to a triggering operation on the recovery control, and the preset correspondence indicates the correspondence between different corrected temperatures and different air supply modes.
[0303] Optionally, the response module 1510 is also configured to display a first selection interface in response to a triggering operation on the application; the first selection interface includes at least one air circulation device that can be linked with the air conditioner; and in response to a selection operation on a target air circulation device among the at least one air circulation device, display the airflow management interface.
[0304] Optionally, the first selection interface also includes an air supply direction selection control for the air circulation device; the application display device also includes: a response module, configured to display an air supply direction selection interface in response to a triggering operation on the air supply direction selection control; the air supply direction selection interface includes a same-side control and an opposite-side control; the same-side control indicates that the air supply direction of the air conditioner is the same as the air supply direction of the air circulation device, and the opposite-side control indicates that the air supply direction of the air conditioner is opposite to the air supply direction of the air circulation device.
[0305] Optionally, the response module is further configured to display the first selection interface in response to a triggering operation on the application when the application is not triggered for the first time.
[0306] Optionally, the response module is also configured to display a device recommendation interface in response to a triggering operation on the application when the application is triggered for the first time; the device recommendation interface includes at least one air circulation device that can be linked with the air conditioner; and the first selection interface is displayed in response to a triggering operation on a target air circulation device among the at least one air circulation device.
[0307] Optionally, the airflow management interface also includes a linkage device switching control; the application display device also includes: a response module, configured to display a second selection interface in response to a switching operation of the linkage device switching control, the second selection interface including at least one air circulation device that can be linked with the air conditioner, and / or an air supply direction selection control of the air circulation device.
[0308] Optionally, the airflow management interface further includes a linkage device switching control; the application display device further includes: a response module configured to display a main interface in response to a triggering operation on the application; the main interface includes an air management control, the main interface being used to display multiple functional controls for controlling the air conditioner; and in response to the triggering operation on the air management control, performing at least one of the following:
[0309] Controlling the air conditioner to be linked with a preset air circulation device;
[0310] The air conditioner and the preset air circulation device are controlled to operate in a preset linkage mode.
[0311] Optionally, the preset linkage mode includes at least one of the following:
[0312] Preset wind speed linkage mode, preset wind sweep linkage mode, preset wind sense linkage mode, preset temperature control linkage mode, preset air supply linkage mode;
[0313] Among them, the preset wind speed linkage mode indicates that the wind speed intensity of the air conditioner is linked with the wind speed intensity of the air circulation equipment; the preset sweeping linkage mode indicates that the sweeping mode of the air conditioner is linked with the swinging mode of the air circulation equipment; the preset wind sense linkage mode indicates that the wind sense mode of the air conditioner is linked with the freeze mode of the air circulation equipment; the preset air supply linkage mode indicates that the air supply mode of the air conditioner is linked with the air supply mode of the air circulation equipment.
[0314] Optionally, the response module 1510 is further configured to display the airflow management interface in response to a start operation on the application.
[0315] Optionally, the response module 1510 is further configured to display a main interface in response to a startup operation on the application; the main interface includes an air management control; and display the airflow management interface in response to a triggering operation on the air management control.
[0316] Optionally, the response module 1510 is further configured to display an air management interface in response to a triggering operation on the air management control; the air management interface includes an airflow linkage control; and display the airflow management interface in response to a triggering operation on the airflow linkage control.
[0317] Optionally, the response module 1510 is also configured to display a functional interface in response to a triggering operation on the application; the functional interface includes a confirmation control; the functional interface is used to provide descriptive information of the airflow management function; and the airflow management interface is displayed in response to a triggering operation on the confirmation control.
[0318] Optionally, the response module 1510 is further configured to display a device management interface in response to a startup operation on the application; the device management interface includes an airflow management control; and display the main interface in response to a triggering operation on the airflow management control.
[0319] Optionally, the application is further configured to display a network selection interface, wherein the network selection interface provides a selection interface for connecting a network to the air conditioner and / or the air circulation device.
[0320] Optionally, the application display device also includes: a response module, configured to control the air supply mode of the air conditioner to be linked with the air supply mode of the air circulation equipment in response to the triggering operation of the wind speed linkage control and / or the wind sense linkage control.
[0321] Regarding the apparatus in the above embodiment, the specific manner in which each module performs operations has been described in detail in the embodiment of the method, and will not be elaborated here.
[0322] The present disclosure also provides a computer-readable storage medium having computer program instructions stored thereon, which implement the steps of the application display method provided by the present disclosure when the program instructions are executed by a processor.
[0323] Figure 16 FIG1 is a block diagram showing an application display device 1600 according to an exemplary embodiment. For example, the device 1600 may be a mobile phone, a computer, a digital broadcast terminal, a messaging device, a game console, a tablet device, a medical device, a fitness device, a personal digital assistant, etc.
[0324] Reference Figure 16 , the device 1600 may include one or more of the following components: a processing component 1602 , a memory 1604 , a power component 1606 , a multimedia component 1608 , an audio component 1610 , an input / output interface 1612 , a sensor component 1614 , and a communication component 1616 .
[0325] The processing component 1602 generally controls the overall operations of the device 1600, such as operations associated with display, phone calls, data communications, camera operations, and recording operations. The processing component 1602 can include one or more processors 1620 to execute instructions
[0326] The memory 1604 is configured to store various types of data to support operations of the device 1600. Examples of these data include instructions for any applications or methods operating on the device 1600, contact data, phonebook data, messages, pictures, videos, and so on. The memory 1604 can be implemented by any type of volatile or non-volatile storage devices 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, magnetic disk or optical disk.
[0327] The power component 1606 supplies electrical power for the various components of the device 1600. The power component 1606 can include a power supply management system, one or more power supplies, and other components associated with generating, managing and distributing electrical power for the device 1600.
[0328] The multimedia component 1608 includes a screen providing an output interface between the device 1600 and a user. In some embodiments, the screen can include a liquid crystal display (LCD) and a touch panel (TP). If the screen includes the touch panel, the screen can be implemented as a touch screen to receive an input signal from a user. The touch panel includes one or more touch sensors to sense a touch, a slide and a gesture on the touch panel. The touch sensors can not only sense a boundary of a touching or sliding action, but also detect duration and pressure related to the touching or sliding action. In some embodiments, the multimedia component 1608 includes a front camera and / or a rear camera. When the device 1600 is in an operation mode, such as a shooting mode or a video mode, the front camera and / or the rear camera can receive external multimedia data. Each of the front and rear cameras can be a fixed optical lens system or have a focal length and optical zoom capability.
[0329] The audio component 1610 is configured to output and / or input audio signals. For example, the audio component 1610 includes a microphone (MIC) that is configured to receive an external audio signal when the device 1600 is in an operation mode, such as a call mode, a recording mode, and a voice recognition mode. The received audio signal can be further stored in the memory 1604 or transmitted via the communication component 1616. In some embodiments, the audio component 1610 also includes a speaker for outputting audio signals.
[0330] The input / output interface 1612 provides an interface between the processing component 1602 and peripheral interface modules, which can be a keypad, a click wheel, buttons, and the like. The buttons can include, but are not limited to, a home button, a volume button, a start button, and a lock button.
[0331] The sensor component 1614 includes one or more sensors for providing status assessments for various aspects of the device 1600. For example, the sensor component 1614 can detect an open / closed position of the device 1600, relative positioning of components, such as a display and a keypad of the device 1600, a change in position of the device 1600 or a component of the device 1600, the presence or absence of user contact with the device 1600, the orientation or acceleration / deceleration of the device 1600, and a temperature change of the device 1600. The sensor component 1614 can include a proximity sensor configured to detect the presence of a nearby object without any physical touch. The sensor component 1614 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 1614 can also include an acceleration sensor, a gyroscope sensor, a magnetic sensor, a pressure sensor, or a temperature sensor.
[0332] The communication component 1616 is configured to facilitate wired or wireless communication between the device 1600 and other devices. The device 1600 can access a wireless network based on a communication standard, such as WiFi, 2G, or 3G, or a combination thereof. In an example embodiment, the communication component 1616 receives broadcast signals or broadcast-related information from an external broadcast management system via a broadcast channel. In an example embodiment, the communication component 1616 also 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.
[0333] In an exemplary embodiment, the apparatus 1600 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 to perform the above methods.
[0334] In an exemplary embodiment, a non-transitory computer-readable storage medium including instructions is also provided, such as a memory 1604 including instructions. The instructions may be executed by the first processor 1620 of the apparatus 1600 to implement the above-described application display method. 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, an optical data storage device, or the like.
[0335] In another exemplary embodiment, a computer program product is further provided. The computer program product includes a computer program executable by a programmable device, and the computer program has a code portion for executing the above-mentioned application display method when executed by the programmable device.
[0336] Some embodiments of the present disclosure also provide a chip system, such as Figure 17 As shown, the chip system includes at least one second processor 1701 and at least one interface circuit 1702. The second processor 1701 and the interface circuit 1702 can be interconnected via lines. For example, the interface circuit 1702 can be used to receive signals from other devices (such as the memory of an electronic device). For another example, the interface circuit 1702 can be used to send signals to other devices (such as the second processor 1701). Exemplarily, the interface circuit 1702 can read instructions stored in the memory and send the instructions to the second processor 1701. When the instructions are executed by the second processor 1701, the application display device can execute the various steps in the above embodiments. Of course, the chip system can also include other discrete components, and some embodiments of the present disclosure are not specifically limited to this.
[0337] In some embodiments of the present disclosure, the interface circuit 1702 can obtain data, program instructions and / or information from the internal storage area of the chip system; it can also obtain data, program instructions and / or information from outside the chip system.
[0338] Those skilled in the art will also understand that the various illustrative logical blocks and steps listed in the embodiments of this application can be implemented through electronic hardware, computer software, or a combination of both. Whether such functions are implemented through hardware or software depends on the specific application and the design requirements of the entire system. Those skilled in the art may use various methods to implement the described functions for each specific application, but such implementation should not be construed as exceeding the scope of protection of the embodiments of this application.
Claims
1. An application display method, characterized in that: include: In response to a triggering operation on the application, displaying an airflow management interface; The airflow management interface includes a linkage control, the application is used to adjust the operating data of the air conditioner and / or the air circulation device, the operating data includes an operating mode and / or operating parameters, and the linkage control is used to provide an entry for controlling the air conditioner and the air circulation device to be in a corresponding linkage mode; In response to a triggering operation on the linkage control, controlling the air conditioner to be linked with the air circulation device; The displaying of the airflow management interface in response to the triggering operation on the application includes: In response to a triggering operation on the application, a first selection interface is displayed; the first selection interface includes at least one air circulation device capable of being linked with the air conditioner; In response to a selection operation of a target air circulation device among the at least one air circulation device, displaying the airflow management interface; The first selection interface further includes an air supply direction selection control for the air circulation device; the method further includes: In response to the triggering operation of the air supply direction selection control, the air supply direction selection interface is displayed; the air supply direction selection interface includes a same-side control and an opposite-side control; the same-side control indicates that the air supply direction of the air conditioner is the same as the air supply direction of the air circulation device, and the opposite-side control indicates that the air supply direction of the air conditioner is opposite to the air supply direction of the air circulation device. In the scenarios where the air supply directions are the same and opposite, the air supply directions are both toward the user or the rest area.
2. The method according to claim 1, characterized in that The linkage control includes a linkage air supply control and / or a linkage temperature control control.
3. The method according to claim 2, characterized in that The step of controlling the air conditioner to be linked to the air circulation device in response to a triggering operation on the linkage control comprises: In response to a triggering operation on the linked air supply control, the air supply mode of the air conditioner is controlled to be linked with the air supply mode of the air circulation device.
4. The method according to claim 3, characterized in that The air supply mode of the air conditioner is linked to the air supply mode of the air circulation device and includes at least one of the following: The air supply intensity of the air conditioner is linked to the air supply intensity of the air circulation device, the sweeping mode of the air conditioner is linked to the swing mode of the air circulation device, the wind feeling mode of the air conditioner is linked to the freeze mode of the air circulation device, and the air supply mode of the air conditioner is linked to the air supply mode of the air circulation device.
5. The method according to claim 2, characterized in that The step of controlling the air conditioner to be linked to the air circulation device in response to a triggering operation on the linkage control comprises: In response to a triggering operation on the linked temperature control component, the target internal ambient temperature of the air conditioner is controlled to be linked with the air supply mode of the air circulation device.
6. The method according to claim 3, characterized in that The airflow management interface further includes a setting control; and the method further includes: In response to the triggering operation of the setting control, a setting interface is displayed; the setting interface includes at least one of a linked air supply setting interface and a linked temperature control setting interface, the linked air supply setting interface is an interface for setting a linked air supply mode, the linked air supply mode indicates the linkage of the air supply mode between the air conditioner and the air circulation device, the linked temperature control setting interface is an interface for setting a correction temperature, and the correction temperature is used to correct the air conditioner set temperature.
7. The method according to claim 6, characterized in that The linked air supply setting interface includes a wind speed linkage control, a sweep linkage control, and a wind sense linkage control; in response to a triggering operation of the linked air supply control, controlling the air supply mode of the air conditioner to be linked with the air supply mode of the air circulation device includes: When at least one target control among the wind speed linkage control, the wind sweep linkage control and the wind sense linkage control is activated, in response to the triggering operation of the linkage air supply control, the air supply mode of the air conditioner and the air circulation equipment are controlled to be executed in the linkage mode corresponding to the at least one target control.
8. The method according to claim 1, characterized in that The linkage control includes at least one of a wind speed linkage control, a wind sweep linkage control, a wind sense linkage control and a linkage temperature control control.
9. The method according to claim 8, characterized in that The step of controlling the air conditioner to be linked to the air circulation device in response to a triggering operation on the linkage control comprises: In response to the start-up operation of at least one target control among the wind speed linkage control, the wind sweep linkage control, the wind sense linkage control and the linkage temperature control control, the air conditioner and the air circulation equipment are controlled to execute in the linkage mode corresponding to the at least one target control.
10. The method according to any one of claims 7 to 9, characterized in that The linkage mode corresponding to the wind speed linkage control includes the linkage between the air supply intensity of the air conditioner and the air supply intensity of the air circulation equipment; the linkage mode corresponding to the wind sweep linkage control includes the linkage between the wind sweep mode of the air conditioner and the swing mode of the air circulation equipment; the linkage mode corresponding to the wind sense linkage control includes the linkage between the wind sense mode of the air conditioner and the freeze mode of the air circulation equipment.
11. The method according to claim 6, characterized in that The linkage temperature control setting interface includes a correspondence between different correction temperatures and different air supply modes of the air circulation equipment; the different correction temperatures can be adjusted.
12. The method according to claim 11, characterized in that The air supply mode includes air supply intensity, and the corresponding relationship between the different correction temperatures and the different air supply modes includes the corresponding relationship between the different correction temperatures and different air supply intensities.
13. The method according to claim 11, characterized in that The linked temperature control setting interface further includes a recovery control, and the method further includes: In response to a triggering operation on the restoration control, the corresponding relationship is restored to a preset corresponding relationship, where the preset corresponding relationship indicates a corresponding relationship between different corrected temperatures and different air supply modes.
14. The method according to claim 1, wherein The displaying of the first selection interface in response to the triggering operation on the application includes: When the application is not triggered for the first time, the first selection interface is displayed in response to the triggering operation on the application.
15. The method according to claim 1, wherein The displaying of the first selection interface in response to the triggering operation on the application includes: When the application is triggered for the first time, in response to the triggering operation of the application, a device recommendation interface is displayed; the device recommendation interface includes at least one air circulation device that can be linked with the air conditioner; In response to a triggering operation on a target air circulation device among the at least one air circulation device, the first selection interface is displayed.
16. The method according to claim 1, wherein The airflow management interface further includes a linkage device switching control; the method further includes: In response to the switching operation of the linkage device switching control, a second selection interface is displayed, which includes at least one air circulation device that can be linked with the air conditioner, and / or an air supply direction selection control of the air circulation device.
17. The method according to claim 1, wherein The method further comprises: In response to a triggering operation on the application, a main interface is displayed; the main interface includes an air management control, and the main interface is used to display various functional controls for controlling the air conditioner; In response to triggering the air management control, performing at least one of the following: Controlling the air conditioner to be linked with a preset air circulation device; The air conditioner and the preset air circulation device are controlled to operate in a preset linkage mode.
18. The method according to claim 17, characterized in that The preset linkage mode includes at least one of the following: Preset wind speed linkage mode, preset wind sweep linkage mode, preset wind sense linkage mode, preset temperature control linkage mode, preset air supply linkage mode; Among them, the preset wind speed linkage mode indicates that the wind speed intensity of the air conditioner is linked with the wind speed intensity of the air circulation equipment; the preset sweeping linkage mode indicates that the sweeping mode of the air conditioner is linked with the swinging mode of the air circulation equipment; the preset wind sense linkage mode indicates that the wind sense mode of the air conditioner is linked with the freeze mode of the air circulation equipment; the preset air supply linkage mode indicates that the air supply mode of the air conditioner is linked with the air supply mode of the air circulation equipment.
19. The method according to claim 1, wherein The displaying of the airflow management interface in response to the triggering operation on the application includes: In response to a launch operation on the application, the airflow management interface is displayed.
20. The method according to claim 19, characterized in that The displaying of the airflow management interface in response to the start-up operation of the application includes: In response to a start-up operation of the application, a main interface is displayed; the main interface includes an air management control; In response to a triggering operation on the air management control, the airflow management interface is displayed.
21. The method according to claim 20, characterized in that The displaying of the airflow management interface in response to the triggering operation of the air management control includes: In response to a triggering operation on the air management control, an air management interface is displayed; the air management interface includes an airflow linkage control; In response to a triggering operation on the airflow linkage control, the airflow management interface is displayed.
22. The method according to claim 1, wherein The displaying of the airflow management interface in response to the triggering operation on the application includes: In response to a triggering operation on the application, a function interface is displayed; the function interface includes a confirmation control; the function interface is used to provide descriptive information of the airflow management function; In response to a triggering operation on the confirmation control, the airflow management interface is displayed.
23. The method according to claim 20 or 21, characterized in that The displaying of the main interface in response to the startup operation of the application includes: In response to a start-up operation of the application, a device management interface is displayed; the device management interface includes an airflow management control; In response to a triggering operation on the airflow management control, the main interface is displayed.
24. The method according to claim 1, wherein The application is further configured to display a network selection interface, wherein the network selection interface provides a selection interface for connecting a network to the air conditioner and / or the air circulation device.
25. The method according to claim 10, wherein The method further comprises: In response to the triggering operation of the wind speed linkage control and / or the wind sense linkage control, the air supply mode of the air conditioner is controlled to be linked with the air supply mode of the air circulation device.
26. An application display device, characterized in that: The method for executing the application display method according to any one of claims 1 to 25 comprises: a response module configured to display an airflow management interface in response to a triggering operation on the application; the airflow management interface including a linkage control, the application being used to adjust operating data of the air conditioner and / or the air circulation device, the operating data including an operating mode and / or operating parameters, the linkage control being used to provide an entry for controlling the air conditioner and the air circulation device to be in a corresponding linkage mode; a control module configured to control the air conditioner to be linked with the air circulation device in response to a triggering operation on the linkage control; The response module is further configured to: In response to a triggering operation on the application, a first selection interface is displayed; the first selection interface includes at least one air circulation device capable of being linked with the air conditioner; In response to a selection operation of a target air circulation device among the at least one air circulation device, displaying the airflow management interface; The first selection interface further includes an air supply direction selection control for the air circulation device; the application display device further includes: The response module is configured to display an air supply direction selection interface in response to a triggering operation on the air supply direction selection control; the air supply direction selection interface includes a same-side control and an opposite-side control; the same-side control indicates that the air supply direction of the air conditioner is the same as the air supply direction of the air circulation device, and the opposite-side control indicates that the air supply direction of the air conditioner is opposite to the air supply direction of the air circulation device. In the scenarios where the air supply directions are the same and opposite, the air supply directions are both toward the user or the rest area.
27. An application display device, characterized in that: include: processor; a memory for storing processor-executable instructions; Wherein, the processor is configured to: Execute the method according to any one of claims 1 to 25.
28. A computer program product, characterized in that The invention comprises a computer program which, when executed by a processor, implements the steps of the method according to any one of claims 1 to 25.
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