Equipment use scene building method and device, electronic equipment and storage medium

By providing scene construction interface and parameter setting interface in the smart home system, users are allowed to drag and drop to select devices and input parameters, solving the complex operation problems of elderly users and improving ease of use and convenience.

CN120295536APending Publication Date: 2025-07-11GREE ELECTRIC APPLIANCE INC OF ZHUHAI
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Patent Information

Application Number
CN202510348494.0
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2025-07-11

AI Technical Summary

Technical Problem

The existing smart home system lacks optimized design for the elderly user group, and is complex in operation, which increases the learning cost and difficulty of using elderly users, and limits its popularity and convenience.

Method used

Provides a method for building a device usage scenario, which uses the display scene construction interface and device display area, allowing users to select devices through drag and drop operations, switch to the scene parameter setting interface, supports clear input of scene name, application time and device operation parameters, and simplifies the operation process.

Benefits of technology

It reduces the learning cost of elderly users, improves the ease of use and convenience of the system, and simplifies the scene creation process through intuitive interface design and parameter settings.

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Abstract

The invention provides an equipment use scene building method and device, electronic equipment and a storage medium, and the method comprises the steps: displaying a scene building interface, the scene building interface comprises a scene building area and an equipment display area, and the equipment display area is used for displaying an equipment picture of network distribution equipment; under the condition that any one of the equipment pictures is monitored to be dragged from the equipment display area to the scene building area, determining the network distribution equipment corresponding to the equipment picture as scene equipment; switching to a scene parameter setting interface under the condition that the first trigger event after the scene equipment is selected is monitored; scene parameters are received through the scene parameter setting interface, and the scene parameters comprise scene names, scene application time and equipment operation parameters of all scene equipment; and creating a target scene according to the scene name, the scene application time and the equipment operation parameters of the scene equipment.
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Description

Technical Field

[0001] This application relates to the technical field of smart homes, and particularly to a method, device, electronic device, and storage medium for building a device usage scenario. Background Art

[0002] With the rapid development of Internet of Things technology, smart home systems have gradually become popular and become an important part of modern family life. By connecting various devices in the home (such as lighting systems, curtain control, air conditioner control, security systems, etc.), smart home systems achieve interconnection and interoperability between devices, greatly improving the convenience and comfort of users' home life.

[0003] However, existing smart home systems usually lack optimized designs for the elderly user group. For example, problems such as deep function levels, cumbersome operation steps, and complex interface designs increase the learning cost and usage difficulty for elderly users. Such design deficiencies not only limit the popularization of smart home systems among the elderly user group but also may prevent elderly users from fully enjoying the convenience and comfort brought by smart home technology.

[0004] Therefore, how to simplify the setting and operation of smart home scenario functions, reduce the learning cost for elderly users, and improve the usability and convenience of the system has become an urgent problem to be solved in the current smart home technology field. Summary of the Invention

[0005] This application provides a method, device, electronic device, and storage medium for building a device usage scenario to solve the problems in the prior art that existing smart home systems usually lack optimized designs for the elderly user group and have complex operations.

[0006] In a first aspect, this application provides a method for building a device usage scenario, including:

[0007] Display a scenario building interface, where the scenario building interface includes a scenario building area and a device display area, and the device display area is used to display device pictures of devices that have been networked;

[0008] When it is detected that any one of the device pictures is dragged from the device display area to the scenario building area, determine the device that has been networked corresponding to the device picture as a scenario device;

[0009] When a first trigger event indicating that the scenario device selection is completed is detected, switch to a scenario parameter setting interface;

[0010] Receive scenario parameters through the scenario parameter setting interface, where the scenario parameters include a scenario name, a scenario application time, and device operation parameters of each scenario device;

[0011] Create a target scenario according to the scenario name, the scenario application time, and the device operation parameters of each of the scenario devices.

[0012] In a possible implementation, the scenario parameter setting interface includes a first parameter setting interface and a second parameter setting interface. Receiving scenario parameters through the scenario parameter setting interface includes:

[0013] Display the first parameter setting interface;

[0014] Receive the scenario name and the scenario application time through the first parameter setting interface;

[0015] In the case of detecting a second trigger event indicating that the first parameter setting interface is set up, switch to the second parameter setting interface;

[0016] Receive the device operation parameters of each scenario device through the second parameter setting interface.

[0017] In a possible implementation, the second parameter setting interface includes a first sub-parameter setting interface corresponding to each scenario device. Receiving the device operation parameters of each scenario device through the second parameter setting interface includes:

[0018] Sequentially display the first sub-parameter setting interfaces corresponding to each scenario device;

[0019] For each first sub-parameter setting interface, receive the first parameter input by the user through each parameter input button on the first sub-parameter setting interface;

[0020] Use the received first parameter as the device operation parameter of the scenario device corresponding to the first sub-parameter setting interface.

[0021] In a possible implementation, the second parameter setting interface includes a second sub-parameter setting interface corresponding to each scenario device. Receiving the device operation parameters of each scenario device through the second parameter setting interface includes:

[0022] Sequentially display the second sub-parameter setting interfaces corresponding to each scenario device;

[0023] For each second sub-parameter setting interface, guide the user to move to the corresponding scenario device through the guiding information on the second sub-parameter setting interface and input a second parameter through the device panel of the scenario device;

[0024] Receive the second parameter transmitted by the device panel, and use the second parameter as the device operation parameter of the scenario device.

[0025] In a possible implementation, after creating the target scenario, the following steps are further included:

[0026] Display the target scenario interface, where the target scenario interface includes the scenario name, the scenario application time, and information display areas corresponding to each scenario device. The information display area is used to display the device operation parameters and parameter adjustment buttons of the corresponding scenario device;

[0027] For each information display area, receive the adjustment parameters input by the user through the parameter adjustment button in the information display area;

[0028] Adjust the device operation parameters of the scenario device corresponding to the information display area according to the adjustment parameters.

[0029] In a possible implementation, the device display area further includes a photographing button corresponding to each networked device, and the method further includes:

[0030] For each networked device, when it is detected that the photographing button is clicked, enter the photographing mode;

[0031] Obtain the target picture taken in the photographing mode;

[0032] Update the target picture as the device picture of the networked device.

[0033] In a possible implementation, the method further includes:

[0034] Identify the device to be recognized in the target picture;

[0035] When the device to be recognized is consistent with the networked device, determine the clarity of the target picture;

[0036] When the clarity meets the preset conditions, execute the step of updating the target picture as the device picture of the networked device.

[0037] In a second aspect, the present application provides a device usage scenario building device, including:

[0038] A display module, configured to display a scenario building interface, where the scenario building interface includes a scenario building area and a device display area, and the device display area is used to display the device pictures of the networked devices;

[0039] A determination module, configured to determine the networked device corresponding to the device picture as a scenario device when it is detected that any one of the device pictures is dragged from the device display area to the scenario building area;

[0040] A switching module, configured to switch to a scene parameter setting interface when a first trigger event indicating that scene devices have been selected is detected;

[0041] A receiving module, configured to receive scene parameters through the scene parameter setting interface, where the scene parameters include a scene name, a scene application time, and device operation parameters of each scene device;

[0042] A creating module, configured to create a target scene according to the scene name, the scene application time, and the device operation parameters of each scene device.

[0043] In a possible implementation manner, the scene parameter setting interface includes a first parameter setting interface and a second parameter setting interface. The receiving module is specifically configured to:

[0044] Display the first parameter setting interface;

[0045] Receive the scene name and the scene application time through the first parameter setting interface;

[0046] When a second trigger event indicating that the first parameter setting interface has been set is detected, switch to the second parameter setting interface;

[0047] Receive the device operation parameters of each scene device through the second parameter setting interface.

[0048] In a possible implementation manner, the second parameter setting interface includes a first sub-parameter setting interface corresponding to each scene device. The receiving module is further configured to:

[0049] Sequentially display the first sub-parameter setting interfaces corresponding to each scene device;

[0050] For each first sub-parameter setting interface, receive a first parameter input by a user through each parameter input button on the first sub-parameter setting interface;

[0051] Use the received first parameter as the device operation parameter of the scene device corresponding to the first sub-parameter setting interface.

[0052] In a possible implementation manner, the second parameter setting interface includes a second sub-parameter setting interface corresponding to each scene device. The receiving module is further configured to:

[0053] Sequentially display the second sub-parameter setting interfaces corresponding to each scene device;

[0054] For each second sub-parameter setting interface, guide the user to move to the corresponding scene device through the guiding information on the second sub-parameter setting interface and input a second parameter through the device panel of the scene device;

[0055] Receive the second parameter transmitted by the device panel, and use the second parameter as the device operation parameter of the scenario device.

[0056] In a possible implementation, the device further includes an adjustment module, configured to:

[0057] Display a target scenario interface, where the target scenario interface includes the scenario name, the scenario application time, and information display areas corresponding to each scenario device, and the information display areas are used to display the device operation parameters and parameter adjustment buttons of the corresponding scenario devices;

[0058] For each information display area, receive the adjustment parameter input by the user through the parameter adjustment button in the information display area;

[0059] Adjust the device operation parameter of the scenario device corresponding to the information display area according to the adjustment parameter.

[0060] In a possible implementation, the device display area further includes a photographing button corresponding to each networked device, and the device further includes an update module, configured to:

[0061] For each networked device, when it is detected that the photographing button is clicked, enter the photographing mode;

[0062] Obtain a target picture taken in the photographing mode;

[0063] Update the target picture as the device picture of the networked device.

[0064] In a possible implementation, the update module is further configured to:

[0065] Identify the device to be recognized in the target picture;

[0066] When the device to be recognized is the same as the networked device, determine the clarity of the target picture;

[0067] When the clarity meets the preset condition, perform the step of updating the target picture as the device picture of the networked device.

[0068] In a third aspect, the present application provides a device, including: a processor and a memory, where the processor is configured to execute a device usage scenario building program stored in the memory to implement the device usage scenario building method according to any one of the first aspects.

[0069] Fourthly, the present application provides a storage medium storing one or more programs, which can be executed by one or more processors to implement the device usage scenario building method according to any one of the first aspect.

[0070] The above technical solutions provided by the embodiments of the present application have the following advantages compared with the prior art: In the method provided by the embodiments of the present application, first, a scenario building interface is displayed. The scenario building interface includes a scenario building area and a device display area. The device display area is used to display device pictures of the devices that have been networked. When it is detected that any one of the device pictures is dragged from the device display area to the scenario building area, the device that has been networked corresponding to the device picture is determined as the scenario device. When a first trigger event indicating that the selection of the scenario device is completed is detected, the interface is switched to the scenario parameter setting interface, and scenario parameters are received through the scenario parameter setting interface. The scenario parameters include a scenario name, a scenario application time, and device operation parameters of each scenario device. Finally, a target scenario is created according to the scenario name, the scenario application time, and the device operation parameters of each scenario device. In the solution of the present application, the device display area displays the devices that have been networked in the form of pictures, and the scenario building area realizes device selection through a drag-and-drop operation. The interface design is simple and intuitive. At the same time, the scenario parameter setting interface adopts a clear parameter input method, supporting the setting of the scenario name, application time, and device operation parameters. The operation is intuitive and simple, without the need to delve into complex setting levels. Elderly users can easily understand and complete the operation, significantly reducing the learning cost and improving the usability and convenience of the system. BRIEF DESCRIPTION OF THE DRAWINGS

[0071] The accompanying drawings here are incorporated into the specification and constitute a part of this specification, showing embodiments consistent with the present application and used together with the specification to explain the principles of the present application.

[0072] To more clearly illustrate the technical solutions in the embodiments of the present application or the prior art, the following will briefly introduce the drawings required for use in the description of the embodiments or the prior art. Obviously, for those of ordinary skill in the art, other drawings can be obtained based on these drawings without creative efforts.

[0073] One or more embodiments are exemplarily illustrated by the pictures in the corresponding accompanying drawings. These exemplary illustrations do not constitute limitations on the embodiments. Elements with the same reference numerals in the drawings are represented as similar elements, unless otherwise stated, and the drawings in the drawings do not constitute a proportional limitation.

[0074] Figure 1 It is a flowchart of an embodiment of a device usage scenario building method provided by an embodiment of the present application;

[0075] Figure 2 This is an example of the scene building interface provided by the embodiments of the present application;

[0076] Figure 3 This is an example of selecting scene devices by dragging device pictures provided by the embodiments of the present application;

[0077] Figure 4 This is a flowchart of an embodiment for receiving scene parameters through the scene parameter setting interface provided by the embodiments of the present application;

[0078] Figure 5 This is an example of the first parameter setting interface provided by the embodiments of the present application;

[0079] Figure 6 This is an example of the first sub-parameter setting interface provided by the embodiments of the present application;

[0080] Figure 7 This is an example of the second sub-parameter setting interface provided by the embodiments of the present application;

[0081] Figure 8 This is an example of the target scene interface provided by the embodiments of the present application;

[0082] Figure 9 This is another example of the scene building interface provided by the embodiments of the present application;

[0083] Figure 10 This is a block diagram of an embodiment of a device usage scene building apparatus provided by the embodiments of the present application;

[0084] Figure 11 This is a schematic structural diagram of an electronic device provided by the embodiments of the present application. Detailed implementation manners

[0085] To make the objectives, technical solutions, and advantages of the embodiments of the present application clearer, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present application. Obviously, the described embodiments are some, but not all, of the embodiments of the present application. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present application without creative efforts shall fall within the protection scope of the present application.

[0086] The following disclosure provides many different embodiments or examples for implementing different structures of the present application. To simplify the disclosure of the present application, components and settings of specific examples are described below. Of course, they are only examples and are not intended to limit the present application. In addition, the present application may repeat reference numerals and / or letters in different examples. This repetition is for the purpose of simplification and clarity, and does not itself indicate the relationship between various embodiments and / or settings discussed.

[0087] Figure 1 The flowchart of an embodiment of a method for building a device usage scenario provided for an embodiment of the present application. As Figure 1 shown, the method includes the following steps:

[0088] Step 101, display a scenario building interface, where the scenario building interface includes a scenario building area and a device display area, and the device display area is used to display device pictures of devices that have been networked.

[0089] The scenario building interface refers to the operation interface for users to create smart home scenario functions. It provides a visual operation environment where users can select devices, set parameters, and complete the creation of scenarios through this interface.

[0090] The scenario building area is a specific area in the scenario building interface for placing devices selected by users. After users drag devices from the device display area to the scenario building area, these devices will be incorporated into the currently created scenario.

[0091] The device display area is another specific area in the scenario building interface for displaying device pictures of all devices that have been networked. Each device picture represents a device that has been connected to the smart home system.

[0092] Devices that have been networked refer to devices that have successfully connected to the smart home network. These devices can be controlled and managed through the smart home system.

[0093] Device pictures refer to the visual representations of devices that have been networked in the device display area. Each device picture usually contains the icon or thumbnail of the device, as well as the name or brief description of the device, facilitating user identification and selection.

[0094] Figure 2 As an example of the scenario building interface, as Figure 2 shown, the dotted box where Scenario 1 is located is the scenario building area, and the area corresponding to the household appliances is the device display area.

[0095] In an embodiment of the present application, when the user enters the care mode of the scenario creation function, the system will display a dedicated scenario building interface to provide an operation environment for creating scenarios with simple operations for elderly users.

[0096] Step 102: When it is detected that any one of the device pictures is dragged from the device display area to the scene construction area, the networked device corresponding to the device picture is determined as a scene device.

[0097] A scene device refers to a device selected by the user and incorporated into the current scene. These devices will operate according to preset parameters when the scene is triggered.

[0098] A drag operation refers to the interactive action where the user moves the device picture from the device display area to the scene construction area through a mouse or touch screen. This operation is intuitive and easy to understand, reducing the operation difficulty for the user.

[0099] In the embodiments of the present application, the system will monitor the operations of the user in the scene construction interface in real time. When the user drags the device picture from the device display area to the scene construction area through a mouse or touch screen, the system will immediately detect this operation. After the system monitors that the device picture is dragged to the scene construction area, it will determine the device as a scene device according to the networked device information corresponding to the device picture, and associate the device with the currently created scene. Subsequently, the user can set specific operation parameters for the device in the scene settings interface.

[0100] Figure 3 As an example of selecting a scene device by dragging the device picture, as Figure 3 shown, when the user drags the device pictures of "Living Room Air Conditioner", "Living Room Ceiling Light", and "Air Purifier" to the scene construction area, the system will incorporate the three networked devices of "Living Room Air Conditioner", "Living Room Ceiling Light", and "Air Purifier" as scene devices into the currently created scene.

[0101] Step 103: When the first trigger event indicating that the selection of scene devices is completed is detected, switch to the scene parameter setting interface.

[0102] The first trigger event refers to the operation where the user completes the selection of scene devices. For example, clicking the "Next" button in the scene construction area, or the user not performing a device selection action (i.e., the device picture drag operation) within a preset time period.

[0103] The scene parameter setting interface refers to the interface where the user sets specific operation parameters for scene devices. In this interface, the user can set the scene name, the scene application time, and the operation parameters of each scene device (such as light brightness, air conditioner temperature, etc.).

[0104] In the embodiments of the present application, the system will monitor the user's operations in real time to determine whether the user has completed the selection of scenario devices. When the system detects a trigger event indicating that the selection of scenario devices is completed, it will automatically jump from the current scenario building interface to the scenario parameter setting interface, which facilitates the user to further configure the scenario parameters.

[0105] Step 104: Receive scenario parameters through the scenario parameter setting interface, where the scenario parameters include a scenario name, a scenario application time, and device operation parameters of each scenario device.

[0106] Scenario parameters refer to the specific configuration information set by the user for the scenario, including the scenario name, the scenario application time, and the operation parameters of each scenario device. These parameters determine the behavior of the devices when the scenario is triggered.

[0107] The scenario name refers to the identification name set by the user for the scenario, which is used to distinguish different scenarios. For example, "Morning Mode", "Movie Watching Mode", etc.

[0108] The scenario application time refers to the start time and end time of the scenario. The user can set the scenario to be triggered at a specific time (such as 7:00 every day) or a specific event (such as when the user arrives home). If the user does not set the scenario application time, it can be defaulted that the scenario is executed immediately.

[0109] Device operation parameters refer to the specific operation status or configuration of each device in the scenario when the scenario is triggered. For example, the brightness of the light, the temperature of the air conditioner, the opening and closing state of the curtain, etc.

[0110] In the embodiments of the present application, after the user completes the selection of scenario devices, the system automatically jumps to the scenario parameter setting interface. The scenario setting interface adopts a clear parameter input method, supports the setting of the scenario name, application time, and device operation parameters, and has a friendly interface, which is easy for elderly users to understand and operate.

[0111] Step 105: Create a target scenario according to the scenario name, the scenario application time, and the device operation parameters of each scenario device.

[0112] The target scenario is a complete scenario configuration created according to the scenario name, scenario application time, and device operation parameters set by the user. The target scenario is the scenario instance finally generated and stored by the system, which can be triggered at a specified time or condition.

[0113] In the embodiments of the present application, the system obtains the scene name, scene application time, and device operation parameters of each scene device input by the user from the scene parameter setting interface. Then, each scene device is associated with its corresponding device operation parameter. For example, if the scene includes "living room lights", the system will associate it with the brightness parameter set by the user (such as "50%"); if the scene includes "air conditioner", the system will associate it with the temperature parameter set by the user (such as "24°C"). Finally, the system generates a complete scene configuration based on the scene name, scene application time, and device operation parameters, and saves the generated scene configuration as the target scene. In the application, the target scene can be stored on the local device or in the cloud for calling and execution when needed.

[0114] When the scene application time arrives or the trigger condition is met, the system will call the target scene and control the operation of each device according to the preset device operation parameters. For example: if the scene application time is "7:00 every day", the system will automatically trigger the scene at 7:00 every day and control the device to operate according to the preset parameters.

[0115] The technical solution provided by the embodiments of the present application first displays a scene building interface, where the scene building interface includes a scene building area and a device display area. The device display area is used to display the device pictures of the already networked devices. When it is detected that any one of the device pictures is dragged from the device display area to the scene building area, the already networked device corresponding to the device picture is determined as the scene device. When it is detected that the first trigger event of the selection of the scene device is completed, it switches to the scene parameter setting interface and receives scene parameters through the scene parameter setting interface, where the scene parameters include the scene name, scene application time, and device operation parameters of each scene device. Finally, a target scene is created according to the scene name, the scene application time, and the device operation parameters of each scene device. In the solution of the present application, the device display area displays the already networked devices in the form of pictures, and the scene building area realizes device selection through drag-and-drop operations. The interface design is simple and intuitive. At the same time, the scene parameter setting interface adopts a clear parameter input method, supporting the setting of the scene name, application time, and device operation parameters. The operation is intuitive and simple, without the need to delve into complex setting levels. Elderly users can easily understand and complete the operation, significantly reducing the learning cost and improving the usability and convenience of the system.

[0116] Figure 4 It is a flowchart of an embodiment for receiving scene parameters through the scene parameter setting interface provided by the embodiments of the present application. Figure 4 The shown process is Figure 1 Based on the shown process, it includes the following steps:

[0117] Step 401: Display the first parameter setting interface;

[0118] Step 402: Receive the scenario name and the scenario application time through the first parameter setting interface;

[0119] Step 403: Switch to the second parameter setting interface when a second trigger event indicating that the first parameter setting interface has been set is detected;

[0120] Step 404: Receive the device operation parameters of each scenario device through the second parameter setting interface.

[0121] For ease of understanding, the following provides a unified description of Steps 401-404:

[0122] In this embodiment, the scenario parameter setting interface includes a first parameter setting interface and a second parameter setting interface.

[0123] The first parameter setting interface is an interface for the user to set the basic scenario parameters. In this interface, the user can input the scenario name and set the scenario application time, and select the way to input the device operation parameters. Figure 5 As an example of the first parameter setting interface, as Figure 5 shown, the user can input the scenario name, the scenario application time on the scenario parameter setting interface, and select one of the APP setting method and the device panel setting method to input the device operation parameters.

[0124] The second parameter setting interface is an interface for the user to set the device operation parameters of the scenario. In this interface, the user can set specific operation parameters for each scenario device (such as light brightness, air conditioner temperature, etc.).

[0125] The second trigger event refers to an event detected by the system that the user has completed the operation of the first parameter setting interface. For example, the user clicks the "Next" button, or does not perform any operation within a preset duration.

[0126] In this solution, when the user starts to create a scenario, the system first displays the first parameter setting interface. The user enters the scenario name, sets the scenario application time, and selects the parameter setting method in the first parameter setting interface. During the process of displaying the first parameter setting interface, the system will monitor the user's operations in real time to determine whether the user has completed the operations on the first parameter setting interface. When the system detects the second trigger event, it will automatically jump from the first parameter setting interface to the second parameter setting interface. At this time, the user can set specific operating parameters for each scenario device in the second parameter setting interface. For example, for the lighting device, the user can set the brightness to "50%" or the color to "warm white"; for the air conditioner device, the user can set the temperature to "24°C" or the mode to "cooling"; for the curtain device, the user can set the state to "open" or "closed", and so on.

[0127] In the application, the input methods for the scenario name, scenario application time, device operating parameters, etc. can be text input or voice input.

[0128] In one embodiment, the second parameter setting interface includes a first sub-parameter setting interface corresponding to each scenario device. Step 404 may include the following steps:

[0129] Sequentially display the first sub-parameter setting interfaces corresponding to each scenario device. For each first sub-parameter setting interface, receive the first parameter input by the user through the respective parameter input buttons on the first sub-parameter setting interface, and use the received first parameter as the device operating parameter of the scenario device corresponding to the first sub-parameter setting interface.

[0130] The above-mentioned first sub-parameter setting interface is a sub-interface in the second parameter setting interface, specifically for setting the operating parameters of a single scenario device. Each scenario device has a corresponding first sub-parameter setting interface. Figure 6 As an example of the first sub-parameter setting interface, Figure 6 as shown, in the case where the scenario device is an air conditioner, the first sub-parameter setting interface can display the air conditioner remote control interface, which is convenient for the elderly to use.

[0131] The parameter input buttons are interactive elements in the first sub-parameter setting interface. The user inputs the device operating parameters by clicking or operating these buttons. Such as Figure 6 each button on the remote control shown.

[0132] The first parameter refers to the operating parameter set by the user for the scenario device through the first sub-parameter setting interface. For example, the brightness value of the light, the temperature value of the air conditioner, etc.

[0133] In this solution, first, the system displays the first sub-parameter setting interface corresponding to each scene device one by one in a certain order (such as the device addition order or user-defined order). Each first sub-parameter setting interface focuses on the parameter setting of one scene device. In each first sub-parameter setting interface, the user inputs the operating parameters of the device through the parameter input buttons on the interface (such as sliders, plus / minus buttons, drop-down menus, etc.). For example, for a lighting device, the user can set the brightness value through the brightness adjustment slider; for an air conditioner device, the user can set the temperature value through the temperature plus / minus buttons; for a curtain device, the user can set the opening / closing state through the switch button. Then, the system saves the first parameters input by the user through the first sub-parameter setting interface as the device operating parameters of the scene device. For example, if the user sets the lighting brightness to "70%", the system will take "70%" as the operating parameter of the lighting device.

[0134] This solution realizes the individual setting of scene device parameters by sequentially displaying the first sub-parameter setting interface of each scene device and using the parameter input buttons to receive the device operating parameters input by the user. This operation method of separating devices and interfaces reduces the operation complexity of the user, especially suitable for the elderly user group. At the same time, the system automatically saves the operating parameters of each device, ensuring the accuracy and integrity of the scene configuration, and further improving the usability and intelligence level of the smart home scene function.

[0135] In an embodiment, the second parameter setting interface includes the second sub-parameter setting interface corresponding to each scene device. Step 404 may further include the following steps:

[0136] Sequentially display the second sub-parameter setting interface corresponding to each scene device. For each second sub-parameter setting interface, guide the user to move to the corresponding scene device through the guiding information on the second sub-parameter setting interface and input the second parameter through the device panel of the scene device, receive the second parameter transmitted by the device panel, and take the second parameter as the device operating parameter of the scene device.

[0137] The second sub-parameter setting interface is a sub-interface in the second parameter setting interface, specifically used to guide the user to input operating parameters through the device panel of the scene device. Each scene device has a corresponding second sub-parameter setting interface. Figure 7 As an example of the second sub-parameter setting interface, as Figure 7 shown, this interface contains a picture of an air conditioner and descriptive information guiding the user to move to the location of the air conditioner and input parameters.

[0138] The guiding information is the prompt or guiding content provided in the second sub-parameter setting interface, used to guide the user to move to the corresponding scene device and input parameters through the device panel, such as Figure 7The "Please walk in front of the living room air conditioner and click to set parameters on the air conditioner panel" shown. The guiding information can be text prompts, icons, or voice prompts.

[0139] The device panel is a physical or virtual control interface on the scene device. Users can directly input or adjust the operating parameters of the device through the device panel. For example, the brightness adjustment button of the lighting device, the temperature control panel of the air conditioner device, etc.

[0140] The second parameter refers to the operating parameter input by the user for the scene device through the device panel. For example, the brightness value of the light, the temperature value of the air conditioner, etc.

[0141] In the embodiments of the present application, the system displays the second sub-parameter setting interface corresponding to each scene device one by one in a certain order (such as the device addition order or the user-defined order). In each second sub-parameter setting interface, the system will display guiding information to prompt the user to move to the corresponding scene device and input parameters through the device panel. The user moves to the corresponding scene device according to the guiding information and inputs the operating parameters through the device panel. The system will receive the second parameter transmitted by the device panel in real time and save the received second parameter as the device operating parameter of the scene device. For example, if the user sets the light brightness to "50%", the system will use "50%" as the operating parameter of the lighting device.

[0142] This step realizes the intuitive setting of the scene device parameters by sequentially displaying the second sub-parameter setting interface of each scene device and guiding the user to input the operating parameters through the device panel in combination with the guiding information. This operation method makes full use of the physical interaction characteristics of the device panel, reduces the operation complexity of the user, and is especially suitable for the elderly user group. At the same time, the system automatically receives and saves the parameters transmitted by the device panel, ensuring the accuracy and integrity of the scene configuration, and further improving the usability and intelligence level of the smart home scene function.

[0143] Figure 4 The shown process divides the scene creation process into two interfaces by setting scene parameters in stages: the first parameter setting interface is used to set the scene name and application time, and the second parameter setting interface is used to set the device operating parameters. This step-by-step operation method reduces the operation complexity of the user, and is especially suitable for the elderly user group. At the same time, the system automatically switches the interface by monitoring the trigger event, further improving the convenience and efficiency of the operation, and ensuring the personalization and intelligence of the scene function.

[0144] In another embodiment of the present application, after creating the target scene, the following steps may further be included: displaying a target scene interface, where the target scene interface includes the scene name, the scene application time, and information display areas corresponding to each of the scene devices, and the information display areas are used to display the device operation parameters of the corresponding scene devices and parameter adjustment buttons. For each information display area, receive the adjustment parameters input by the user through the parameter adjustment buttons in the information display area, and adjust the device operation parameters of the scene devices corresponding to the information display area according to the adjustment parameters.

[0145] The target scene interface is an interface for users to view and manage the created scenes. In this interface, users can view the basic information of the scenes (such as the scene name, the scene application time) and the operation parameters of each scene device.

[0146] The information display area is a sub-area in the target scene interface, which is used to display the device operation parameters of the corresponding scene devices and parameter adjustment buttons. Each scene device has an independent information display area.

[0147] The parameter adjustment buttons are interactive elements in the information display area. Users can adjust the operation parameters of the corresponding scene devices through these buttons. For example, brightness adjustment sliders, temperature increase and decrease buttons, etc.

[0148] In the embodiment of the present application, when the user selects to view or manage a certain created scene, the system will display the target scene interface. Figure 8 As an example of the target scene interface, as Figure 8 shown, the user can view the scene name and the scene application time through the target scene interface, and, input new operation parameters through the parameter adjustment buttons in the information display area. After the system receives the adjustment parameters input by the user, it will update the operation parameters of the corresponding scene devices. For example, if the user adjusts the light brightness to "70%", the system will save "70%" as the new operation parameter of the light device.

[0149] In addition, after the user completes the settings of the target scene interface, they can return to the scene building interface. At this time, the scene building interface not only includes the scene building area and the device display area, but also includes the completed scene cards. Figure 9 As another example of the scene building interface, as Figure 9 shown, at this time, the scene building interface shows the scene building area and the device display area of the completed "Scene One" and the "Scene Two" that is being built.

[0150] This solution presents the target scene interface, centrally displays the basic information of the scene and the operating parameters of each scene device, and allows users to adjust the device operating parameters in real time through the parameter adjustment buttons, achieving dynamic management of scene configuration. This design is intuitive and easy to operate, reducing the learning cost of users, especially suitable for the elderly user group. At the same time, the system updates the device operating parameters in real time, ensuring the flexibility and accuracy of scene configuration, and further enhancing the usability and intelligence level of the smart home scene function.

[0151] In the application, the initial device picture of each networked device is the product promotion picture of the device. In order to make the device picture more in line with the actual situation, in another embodiment of the present application, the device display area further includes a photographing button corresponding to each networked device. The above method may further include the following steps:

[0152] For each networked device, when it is detected that the photographing button is clicked, enter the photographing mode, obtain the target picture taken in the photographing mode, and update the target picture as the device picture of the networked device.

[0153] The photographing button is an interactive button provided for each networked device in the device display area. After the user clicks this button, they can enter the photographing mode to take a new picture of the device. Such as Figure 2 and 3 the "Take Photo" button in the upper right corner of the device picture in

[0154] The photographing mode is a function mode provided by the system that allows users to take pictures through the device's camera. In this step, the photographing mode is used to take the target picture of the networked device.

[0155] The target picture is the picture taken by the user in the photographing mode and is used to replace the original device picture of the networked device. The target picture can be the actual picture of the device or a user-defined picture.

[0156] In the embodiment of the present application, the system will monitor in real time whether the photographing button of each networked device in the device display area is clicked. When the user clicks the photographing button of a certain device, the system will detect this operation and trigger the subsequent steps. When the system detects that the photographing button is clicked, it will automatically enter the photographing mode. The photographing mode usually calls the camera function of the device to allow users to take pictures. After the user takes a picture in the photographing mode, the system will obtain this picture as the target picture. The target picture can be the actual picture of the device (such as the picture of the living room lights taken by the user) or a user-defined picture (such as the family picture uploaded by the user). The system updates the obtained target picture as the device picture of the networked device. After the update, the device picture displayed in the device display area will become the target picture taken by the user.

[0157] This solution enhances the personalization and intuitiveness of the device display area by providing a photo-taking button and a photo-taking mode, allowing users to take and update device pictures for the network-connected devices. Users can take actual photos or upload custom pictures to make the device pictures more in line with the actual scenario, improving the convenience of recognition and selection. This design not only improves the user experience but also reduces the operation complexity, especially suitable for the elderly user group. At the same time, the system updates the device pictures in real time, ensuring the accuracy and flexibility of the device display area.

[0158] In addition, to ensure the accuracy of the target picture, in another embodiment of the present application, the above method may further include the following steps: identifying the device to be recognized in the target picture, determining the clarity of the target picture when the device to be recognized is consistent with the network-connected device, and performing the step of updating the target picture as the device picture of the network-connected device when the clarity meets the preset conditions.

[0159] The device to be recognized refers to the device that needs to be recognized by the system in the target picture. The system analyzes the target picture through image recognition technology to identify the device therein.

[0160] The preset conditions are the clarity thresholds or quality standards set by the system. Only when the clarity of the target picture reaches or exceeds the preset conditions will the system update it as the device picture.

[0161] In this solution, the system analyzes the target picture taken by the user through image recognition technology to identify the device to be recognized in the picture. For example, if the user takes a photo of the living room lights, the system will identify the lighting device in the photo. The system matches the identified device to be recognized with the network-connected device. If the device to be recognized is consistent with the network-connected device (for example, the identified lighting device is consistent with the "living room lights" device already connected to the system), the system will continue with the next step of determining the clarity; otherwise, the user will be prompted to take a new photo or select another device. The system analyzes the clarity of the target picture, including indicators such as the resolution, contrast, and blurriness of the image. If the clarity of the target picture meets the preset conditions, the system updates the target picture as the device picture of the network-connected device. After the update, the device picture displayed in the device display area will become the target picture taken by the user.

[0162] This solution uses image recognition technology to identify the device to be recognized in the target picture and match the already networked devices to ensure the consistency between the target picture and the device. At the same time, the system analyzes the clarity of the target picture to ensure that the picture quality meets the preset conditions, thereby guaranteeing the clarity and usability of the device picture. This design not only improves the accuracy and intuitiveness of the device picture but also enhances the user experience, especially suitable for the elderly user group. Meanwhile, the system automatically completes recognition, matching, and clarity judgment, reducing the user's operation complexity and ensuring the efficiency and reliability of device picture updates.

[0163] Figure 10 It is a block diagram of an embodiment of a device usage scenario building device provided by an embodiment of the present application. As Figure 10 shown, the device includes:

[0164] A display module 1001 for displaying a scenario building interface, where the scenario building interface includes a scenario building area and a device display area, and the device display area is used to display device pictures of already networked devices;

[0165] A determination module 1002 for determining the already networked device corresponding to the device picture as a scenario device when it is detected that any one of the device pictures is dragged from the device display area to the scenario building area;

[0166] A switching module 1003 for switching to a scenario parameter setting interface when a first trigger event indicating that the scenario device selection is completed is detected;

[0167] A receiving module 1004 for receiving scenario parameters through the scenario parameter setting interface, where the scenario parameters include a scenario name, a scenario application time, and device operation parameters of each scenario device;

[0168] A creation module 1005 for creating a target scenario according to the scenario name, the scenario application time, and the device operation parameters of each scenario device.

[0169] In a possible implementation manner, the scenario parameter setting interface includes a first parameter setting interface and a second parameter setting interface, and the receiving module is specifically used for:

[0170] Displaying the first parameter setting interface;

[0171] Receiving the scenario name and the scenario application time through the first parameter setting interface;

[0172] Switching to the second parameter setting interface when a second trigger event indicating that the first parameter setting interface is set up is detected;

[0173] Receive the device operation parameters of each scenario device through the second parameter setting interface.

[0174] In a possible implementation, the second parameter setting interface includes a first sub-parameter setting interface corresponding to each scenario device, and the receiving module is further configured to:

[0175] Sequentially display the first sub-parameter setting interfaces corresponding to each scenario device;

[0176] For each first sub-parameter setting interface, receive the first parameter input by the user through each parameter input button on the first sub-parameter setting interface;

[0177] Use the received first parameter as the device operation parameter of the scenario device corresponding to the first sub-parameter setting interface.

[0178] In a possible implementation, the second parameter setting interface includes a second sub-parameter setting interface corresponding to each scenario device, and the receiving module is further configured to:

[0179] Sequentially display the second sub-parameter setting interfaces corresponding to each scenario device;

[0180] For each second sub-parameter setting interface, guide the user to move to the corresponding scenario device through the guiding information on the second sub-parameter setting interface and input the second parameter through the device panel of the scenario device;

[0181] Receive the second parameter transmitted by the device panel, and use the second parameter as the device operation parameter of the scenario device.

[0182] In a possible implementation, the device further includes an adjustment module, configured to:

[0183] Display a target scenario interface, where the target scenario interface includes the scenario name, the scenario application time, and information display areas corresponding to each scenario device, and the information display areas are used to display the device operation parameters and parameter adjustment buttons of the corresponding scenario devices;

[0184] For each information display area, receive the adjustment parameter input by the user through the parameter adjustment button of the information display area;

[0185] Adjust the device operation parameters of the scenario device corresponding to the information display area according to the adjustment parameter.

[0186] In a possible implementation, the device display area further includes a photographing button corresponding to each configured device, and the device further includes an update module, configured to:

[0187] For each network - configured device, when it is detected that the photographing button is clicked, enter the photographing mode;

[0188] Obtain a target picture taken in the photographing mode;

[0189] Update the target picture as the device picture of the network - configured device.

[0190] In a possible implementation, the updating module is further configured to:

[0191] Identify a device to be recognized in the target picture;

[0192] When the device to be recognized is consistent with the network - configured device, determine the clarity of the target picture;

[0193] When the clarity meets the preset conditions, perform the step of updating the target picture as the device picture of the network - configured device.

[0194] As Figure 11 shown, an embodiment of the present application provides a device, including a processor 111, a communication interface 112, a memory 113, and a communication bus 114. Among them, the processor 111, the communication interface 112, and the memory 113 complete mutual communication through the communication bus 114.

[0195] The memory 113 is used to store a computer program;

[0196] In an embodiment of the present application, when the processor 111 executes the program stored on the memory 113, it implements the device usage scenario building method provided by any one of the foregoing method embodiments, including:

[0197] Display a scenario building interface, where the scenario building interface includes a scenario building area and a device display area, and the device display area is used to display the device pictures of network - configured devices;

[0198] When it is detected that any one of the device pictures is dragged from the device display area to the scenario building area, determine the network - configured device corresponding to the device picture as a scenario device;

[0199] When it is detected a first trigger event that the selection of scenario devices is completed, switch to a scenario parameter setting interface;

[0200] Receive scenario parameters through the scenario parameter setting interface, where the scenario parameters include a scenario name, a scenario application time, and device operation parameters of each scenario device;

[0201] Create a target scenario according to the scenario name, the scenario application time, and the device operation parameters of each of the scenario devices.

[0202] An embodiment of the present application also provides a computer-readable storage medium, on which a computer program is stored. When the computer program is executed by a processor, the steps of the device usage scenario building method provided in any of the foregoing method embodiments are implemented.

[0203] The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separated, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed to multiple network units. Some or all of the modules can be selected according to actual needs to achieve the purpose of the solution of this embodiment.

[0204] Through the description of the above embodiments, those skilled in the art can clearly understand that each embodiment can be implemented by means of software plus a general hardware platform, and of course, it can also be implemented by hardware. Based on such an understanding, the essence of the above technical solution, or the part that contributes to the related technology, can be embodied in the form of a software product. The computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, magnetic disk, optical disk, etc., and includes several instructions for causing a computer device (which can be a personal computer, a server, or a network device, etc.) to execute the methods described in each embodiment or some parts of the embodiments.

[0205] It should be understood that the terms used herein are only for the purpose of describing specific example embodiments and are not intended to be limiting. Unless the context clearly indicates otherwise, the singular forms "a", "an", and "the" as used herein may also include the plural forms. The terms "include", "comprise", "contain", and "have" are inclusive and thus specify the presence of the stated features, steps, operations, elements, and / or components, but do not preclude the presence or addition of one or more other features, steps, operations, elements, components, and / or their combinations. The method steps, processes, and operations described herein are not to be construed as necessarily requiring them to be executed in the particular order described or illustrated, unless the order of execution is explicitly stated. It should also be understood that alternative or additional steps may be used.

[0206] The above are only specific embodiments of the present application, enabling those skilled in the art to understand or implement the present application. Various modifications to these embodiments will be obvious to those skilled in the art, and the general principles defined herein can be implemented in other embodiments without departing from the spirit or scope of the present application. Therefore, the present application will not be limited to these embodiments shown herein, but rather to the broadest scope consistent with the principles and novel features claimed herein.

Claims

1. A method for building a device usage scenario, characterized in that, The method includes: Displaying a scene construction interface, where the scene construction interface includes a scene construction area and a device display area, and the device display area is used to display device pictures of the networked devices; When it is detected that any one of the device pictures is dragged from the device display area to the scene construction area, determining the networked device corresponding to the device picture as a scene device; When a first trigger event indicating that the selection of the scene device is completed is detected, switching to a scene parameter setting interface; Receiving scene parameters through the scene parameter setting interface, where the scene parameters include a scene name, a scene application time, and device operation parameters of each scene device; Creating a target scene according to the scene name, the scene application time, and the device operation parameters of each scene device.

2. The method according to claim 1, wherein The scene parameter setting interface includes a first parameter setting interface and a second parameter setting interface. Receiving scene parameters through the scene parameter setting interface includes: Displaying the first parameter setting interface; Receiving the scene name and the scene application time through the first parameter setting interface; When a second trigger event indicating that the first parameter setting interface is set up is detected, switching to the second parameter setting interface; Receiving the device operation parameters of each scene device through the second parameter setting interface.

3. The method according to claim 2, wherein The second parameter setting interface includes a first sub-parameter setting interface corresponding to each scene device. Receiving the device operation parameters of each scene device through the second parameter setting interface includes: Sequentially displaying the first sub-parameter setting interfaces corresponding to each scene device; For each first sub-parameter setting interface, receiving the first parameters input by the user through each parameter input button on the first sub-parameter setting interface; Taking the received first parameters as the device operation parameters of the scene device corresponding to the first sub-parameter setting interface.

4. The method according to claim 2, wherein The second parameter setting interface includes a second sub-parameter setting interface corresponding to each scene device. Receiving the device operation parameters of each scene device through the second parameter setting interface includes: Sequentially displaying the second sub-parameter setting interfaces corresponding to each scene device; For each second sub-parameter setting interface, guiding the user to move to the corresponding scene device through the guiding information on the second sub-parameter setting interface and inputting second parameters through the device panel of the scene device; Receiving the second parameters transmitted by the device panel and taking the second parameters as the device operation parameters of the scene device.

5. The method according to claim 1, wherein After creating the target scene, it further includes: Displaying a target scene interface, where the target scene interface includes the scene name, the scene application time, and information display areas corresponding to each scene device, and the information display areas are used to display the device operation parameters and parameter adjustment buttons of the corresponding scene devices; For each information display area, receiving the adjustment parameters input by the user through the parameter adjustment button of the information display area; Adjusting the device operation parameters of the scene device corresponding to the information display area according to the adjustment parameters.

6. The method according to claim 1, wherein The device display area further includes a photographing button corresponding to each network - configured device, and the method further includes: For each network - configured device, when it is detected that the photographing button is clicked, enter the photographing mode; Obtain a target picture taken in the photographing mode; Update the target picture as the device picture of the network - configured device.

7. The method according to claim 6, wherein The method further includes: Identify the device to be recognized in the target picture; When the device to be recognized is consistent with the network - configured device, determine the clarity of the target picture; When the clarity meets the preset conditions, execute the step of updating the target picture as the device picture of the network - configured device.

8. An apparatus for setting up a device usage scenario, characterized in that, The device includes: A display module, configured to display a scene construction interface, where the scene construction interface includes a scene construction area and a device display area, and the device display area is used to display the device pictures of network - configured devices; A determination module, configured to determine the network - configured device corresponding to the device picture as a scene device when it is detected that any one of the device pictures is dragged from the device display area to the scene construction area; A switching module, configured to switch to a scene parameter setting interface when a first trigger event indicating that the selection of scene devices is completed is detected; A receiving module, configured to receive scene parameters through the scene parameter setting interface, where the scene parameters include a scene name, a scene application time, and device operation parameters of each scene device; A creation module, configured to create a target scene according to the scene name, the scene application time, and the device operation parameters of each scene device.

9. A device, characterized in that, It includes: A processor and a memory, where the processor is configured to execute a device usage scene construction program stored in the memory to implement the device usage scene construction method according to any one of claims 1 - 7.

10. A storage medium, characterized in that, The storage medium stores one or more programs, and the one or more programs can be executed by one or more processors to implement the device usage scene construction method according to any one of claims 1 - 7.