Device configuration method and apparatus, device, and storage medium

CN117650979BActive Publication Date: 2026-09-08SHENZHEN LUMIUNITED TECH CO LTD
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Patent Information

Application Number
CN202311382786.3
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-10-23
Publication Date
2026-09-08
Estimated Expiration
2043-10-23

AI Technical Summary

Technical Problem

[0004]有鉴于此,本申请提供了一种设备配置方法、装置、设备及存储介质,用于解决现有技术中缺少相应的设备配置或者设备配置不清楚的问题

Benefits of technology

[0050] Users can select different working modes of the target device according to their actual needs. After the user selects a working mode, the configuration guide page corresponding to the selected working mode is displayed. The configuration guide page includes configuration guidance information for the selected working mode. Therefore, the configuration guidance information can instruct the user to configure the target device in the selected working mode. When the user needs to configure a new device or a device in a different working mode, the configuration guide page can guide the user to configure the device so that the user can install the device accurately and effectively.

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Abstract

Embodiments of the present application disclose a device configuration method and device, apparatus, and storage medium. The method comprises: displaying a mode selection page of a target device, the mode selection page comprising a plurality of working modes adapted to the target device; in response to a selection operation on the working modes, displaying a configuration guide page corresponding to the selected working mode; the configuration guide page comprises configuration guide information for the selected working mode, the configuration guide information being used to instruct configuration of the target device in the selected working mode; and in response to a configuration confirmation operation triggered on the configuration guide page, configuring the target device with configuration information corresponding to the selected working mode, if it is detected that the current deployment state of the target device meets the selected working mode.
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Description

Technical Field

[0001] This application relates to the field of data processing technology, and in particular to a device configuration method, apparatus, device, and storage medium. Background Technology

[0002] With the rapid development of the Internet of Things (IoT), more and more devices are becoming intelligent. For example, mobile phones, tablets, and other terminals serve as control terminals for home appliances. Through communication connections with gateways, they work together with home appliances to form a smart home system. After setting scene modes, they control the operation of home appliances according to the scene modes to configure smart home scenes, thereby achieving intelligent control of home appliances.

[0003] In practical use, the target device typically needs to be configured in a specific location within an area so that it can be controlled to perform its functions. However, current device configuration methods are often unclear, making it difficult for users to accurately and effectively install the target device, thus affecting its usability. Summary of the Invention

[0004] In view of this, this application provides a device configuration method, apparatus, device, and storage medium to solve the problem of the lack of corresponding device configuration or unclear device configuration in the prior art. To achieve one or more or all of the above objectives or other objectives, this application proposes a device configuration method, apparatus, device, storage medium, and device configuration components.

[0005] First aspect:

[0006] This application provides a device configuration method, including:

[0007] The target device's mode selection page is displayed, and the mode selection page includes multiple working modes adapted to the target device;

[0008] In response to the selection operation for the working mode, a configuration guide page corresponding to the selected working mode is displayed; the configuration guide page includes configuration guidance information for the selected working mode, which is used to instruct the target device to be configured in the selected working mode;

[0009] If the current deployment status of the target device is detected to meet the selected working mode, in response to the configuration confirmation operation triggered on the configuration guide page, the target device is configured with configuration information corresponding to the selected working mode.

[0010] The second aspect:

[0011] This application provides a device configuration apparatus, including:

[0012] The first display module is used to display the mode selection page of the target device, which includes multiple working modes adapted to the target device.

[0013] The second display module is used to display the target device configuration corresponding to the selected working mode in response to the selection operation of the working mode; the configuration guidance page includes configuration guidance information for the selected working mode to instruct the target device to be configured in the selected working mode;

[0014] The configuration module is used to configure configuration information corresponding to the selected working mode for the target device in response to the configuration confirmation operation triggered on the configuration guidance page when it is detected that the current deployment status of the target device meets the selected working mode.

[0015] Optionally, in some embodiments of this application, the operating mode includes a first operating mode, and the configuration guidance information includes guidance information corresponding to the first operating mode, the guidance information being used to instruct the deployment of the target device to a location corresponding to the first operating mode; the configuration module may specifically include:

[0016] The determining unit is used to determine the current deployment status of the target device based on the monitoring information detected by the target device;

[0017] The configuration unit is configured to configure configuration information corresponding to the first working mode for the target device based on the monitoring information, in response to the configuration confirmation operation of the confirmation control in the configuration guide page, when the current deployment status of the target device meets the selected first working mode.

[0018] Optionally, in some embodiments of this application, the monitoring information includes object monitoring information, and the configuration information includes area configuration information; the configuration unit may specifically include:

[0019] The display subunit is used to display area configuration guidance information and instruct the target device to monitor the target object in the target space if the current deployment status of the target device meets the selected first working mode.

[0020] The determination subunit is used to determine the monitoring area in the target space based on the object monitoring information detected by the target device;

[0021] A configuration subunit is configured to, in response to a confirmation operation for the monitoring area, configure area configuration information for the target device corresponding to the first working mode based on the monitoring area.

[0022] Optionally, in some embodiments of this application, the configuration subunit is specifically used for:

[0023] The target device detects the direction of movement of the target object;

[0024] If the movement direction of the target object is consistent with the area configuration information, and the target object is detected to have reached the edge of the current movement direction, the area configuration guidance information is updated to instruct the target object to move in the indicated direction until the target object is detected to have reached the edge of each movement direction. Then, based on the monitoring information detected by the target device during the movement of the target device, the monitoring area under the target space is determined.

[0025] Optionally, in some embodiments of this application, the configuration subunit is further used for:

[0026] When the movement direction of the target object is detected to be inconsistent with the area configuration guidance information, mirror processing information is displayed;

[0027] In response to a trigger operation for the mirroring processing information, the target device is controlled to perform mirroring processing on the collected movement data of the target object, and the mirrored movement data returned by the target device is received, wherein the movement direction corresponding to the mirrored movement data is consistent with the configuration guidance information.

[0028] Optionally, in some embodiments of this application, the configuration information includes an interference region in the target space; the configuration subunit is further used for:

[0029] In response to a trigger operation on the spatial automatic learning item displayed in the configuration guide page, interference detection guidance information is displayed, and the target device is instructed to perform interference detection processing;

[0030] Obtain interference detection information of the target device when there is no target object in the target space, and determine the interference area in the target space based on the interference detection information;

[0031] Based on the interference region, configure the target device with configuration information corresponding to the first working mode.

[0032] Optionally, in some embodiments of this application, the operating mode includes a second operating mode, and the configuration guidance information includes guidance information corresponding to the second operating mode, used to instruct the deployment of the target device to a location corresponding to the second operating mode; the configuration module is specifically used for:

[0033] Based on the device location information detected by the target device, the current deployment status of the target device is determined;

[0034] If the current deployment status of the target device meets the selected second working mode, in response to the configuration confirmation operation of the confirmation control in the configuration guide page, the target device is configured with configuration information corresponding to the second working mode based on the device location information.

[0035] Optionally, in some embodiments of this application, the operating mode includes a third operating mode, and the configuration guidance information includes guidance information corresponding to the third operating mode, used to instruct the deployment of the target device to a location corresponding to the third operating mode; the configuration module is specifically used for:

[0036] Obtain the orientation information of the target device relative to the target object detected by the target device, and determine the current deployment status of the target device based on the orientation information;

[0037] If the current deployment status of the target device meets the selected third working mode, the monitoring area detected by the target device under the third working mode is displayed;

[0038] In response to the configuration confirmation operation of the confirmation control in the configuration guide page, the target device is configured with configuration information corresponding to the third working mode based on the orientation information and the monitoring area.

[0039] Optionally, in some embodiments of this application, the device configuration apparatus further includes an application module, which is specifically used for:

[0040] In response to the switching operation for the operating mode, determine the new operating mode;

[0041] If the switched working mode is detected to have configured historical area configuration information, then the area display page corresponding to the historical area configuration information is displayed.

[0042] In response to an application operation triggered on the area display page for the historical area configuration information, the historical area configuration information is applied to the working mode after the switch of the target device configuration.

[0043] Third aspect:

[0044] This application provides a smart device, which includes a memory and a processor. The memory stores a computer program, and the processor executes the computer program to implement the steps in the device configuration of various embodiments of this application.

[0045] Fourth aspect:

[0046] This application provides a storage medium storing a computer program that can be loaded by a processor and executed in the device configuration of various embodiments of this application.

[0047] Fifth aspect:

[0048] This application provides a computer program product or computer program, which includes computer instructions stored in a computer-readable storage medium; the processor of the computer device reads the computer instructions from the computer-readable storage medium, and when the processor executes the computer instructions, it implements the steps in the device configuration method of various embodiments of this application.

[0049] Implementing the embodiments of this application will have the following beneficial effects:

[0050] Users can select different working modes of the target device according to their actual needs. After the user selects a working mode, the configuration guide page corresponding to the selected working mode is displayed. The configuration guide page includes configuration guidance information for the selected working mode. Therefore, the configuration guidance information can instruct the user to configure the target device in the selected working mode. When the user needs to configure a new device or a device in a different working mode, the configuration guide page can guide the user to configure the device so that the user can install the device accurately and effectively. Attached Figure Description

[0051] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0052] in:

[0053] Figure 1 This is an application environment diagram of the device configuration method provided in the embodiments of this application;

[0054] Figure 2 A hardware structure block diagram of the gateway provided in the embodiments of this application;

[0055] Figure 3 A flowchart illustrating the device configuration method provided in an embodiment of this application;

[0056] Figure 4 A mode selection page for the device configuration method provided in the embodiments of this application;

[0057] Figure 5 The configuration guide page for the first working mode in the device configuration method provided in the embodiments of this application;

[0058] Figure 6 The correct prompt page is installed in the first working mode of the device configuration method provided in the embodiments of this application;

[0059] Figure 7 The device configuration method provided in this application provides an error message page in the first working mode for installing the device.

[0060] Figure 8 A configuration guide page for the device configuration method provided in the embodiments of this application;

[0061] Figure 9 Another configuration guide page for the device configuration method provided in the embodiments of this application;

[0062] Figure 10 This is a display page showing the area of ​​the device configuration method provided in the embodiments of this application;

[0063] Figure 11 This is another configuration guide page for the first working mode of the device configuration method provided in the embodiments of this application;

[0064] Figure 12 The configuration completion page of the device configuration method provided in the embodiments of this application;

[0065] Figure 13 The configuration guide page for the third working mode in the device configuration method provided in the embodiments of this application;

[0066] Figure 14 This is another configuration guide page for the third working mode in the device configuration method provided in the embodiments of this application;

[0067] Figure 15 This is a schematic diagram of the structure of the device configuration apparatus provided in the embodiments of this application;

[0068] Figure 16 This is another structural schematic diagram of the device configuration apparatus provided in the embodiments of this application;

[0069] Figure 17 An internal structural diagram of a computer device is provided for embodiments of this application. Detailed Implementation

[0070] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of this application.

[0071] The device configuration method provided in this application can be applied to, for example... Figure 1 The application environment shown. Among them, Figure 1 A device configuration system is provided, which includes a smart device 100, a gateway 200, a router 300, a server 400, and a terminal 500 that are communicatively connected to the smart device 100.

[0072] The smart device 100 accesses the gateway 200 in the device configuration system and communicates with the gateway 200 through its own configured communication module, thereby being controlled by the gateway 200. In one embodiment, the smart device 100 accesses the gateway 200 via a local area network (LAN) or a wide area network (WAN), thus being deployed within the gateway 200. The LAN may include ZigBee or Bluetooth, and the WAN may include 2G / 3G / 4G / 5G / Wi-Fi, etc.

[0073] Gateway 200 establishes a network connection with terminal 500 or server 400 through router 300. In one embodiment, the network connection between gateway 200 and terminal 500 can be established through a local area network or wide area network path. Through this network connection, gateway 200 interacts with terminal 500, thereby enabling users to control smart home devices connected to the gateway to perform corresponding actions via terminal 500 or smart device 100.

[0074] The terminal 500 can be a smartphone, laptop, personal computer, tablet, smart control panel, or other smart device capable of network connectivity; no limitation is imposed here. The server can be a standalone server or a server cluster consisting of multiple servers.

[0075] Figure 2 This is a hardware structure block diagram of a gateway provided in an embodiment of this application. This gateway is suitable for... Figure 1 The implementation environment is shown.

[0076] It should be noted that this gateway is merely an example adapted to this application and should not be construed as providing any limitation on the scope of use of this application. Furthermore, this gateway should not be interpreted as requiring or depending on any specific feature. Figure 2 One or more components of the exemplary gateway 200 shown.

[0077] The hardware structure of the gateway 200 can vary significantly due to differences in configuration or performance, such as... Figure 2As shown, gateway 200 includes: power supply 210, interface 230, at least one memory 250, and at least one central processing unit (CPU) 270. Power supply 210 provides operating voltage to the various hardware devices on gateway 200. Interface 230 includes at least one wired or wireless network interface 231, at least one serial-to-parallel conversion interface 233, at least one input / output interface 235, and at least one USB interface 237, etc., for communication with external devices. Memory 250 serves as a resource storage carrier, storing resources including operating system 251, application programs 253, or data 255, etc. Application program 253 is a computer program that performs at least one specific task based on operating system 251. CPU 270 may include one or more processors and is configured to communicate with memory 250 via a bus for computing and processing the massive amounts of data 255 stored in memory 250.

[0078] Furthermore, this application can also be implemented through hardware circuits or hardware circuits combined with software instructions. Therefore, the implementation of this application is not limited to any specific hardware circuit, software, or combination thereof.

[0079] The following sections provide detailed descriptions of each example. It should be noted that the order in which the embodiments are described is not intended to limit the priority of the embodiments.

[0080] This application provides a device configuration method, including: displaying a mode selection page for a target device; in response to a selection operation for a working mode, displaying a configuration guidance page corresponding to the selected working mode; and, if it is detected that the current deployment status of the target device meets the selected working mode, in response to a configuration confirmation operation triggered on the configuration guidance page, configuring configuration information corresponding to the selected working mode for the target device.

[0081] Please see Figure 3 This paper provides a device configuration method, and takes the application of this method to an electronic device as an example for illustration. The electronic device can specifically be... Figure 1 The terminals, etc., specifically include the following steps:

[0082] S101, Display the mode selection page for the target device.

[0083] The target device is the smart device to be configured, which can be a human body sensor, door / window sensor, temperature and humidity sensor, water immersion sensor, natural gas alarm, smoke alarm, or millimeter-wave radar equipped with a communication module. The mode selection page includes multiple operating modes adapted to the target device. The operating mode indicates the task performed by the target device, which can be pedestrian location or sleep monitoring. Optionally, in some embodiments, the target device's operating modes may include a target location mode, a fall detection mode, and a sleep monitoring mode. The target location mode is used to locate or monitor a target object (such as a person) in a target space; the fall detection mode is used to monitor falls in the target space; and the sleep monitoring mode is used to monitor the user's sleep patterns and body characteristics.

[0084] Understandably, the installation location for the same device differs depending on its operating mode. For example, in target positioning mode, the device needs to be installed on the ceiling; while in sleep monitoring mode, it needs to be installed at the head of the bed.

[0085] It should be noted that multiple operating modes can coexist for the device itself; that is, the target device can include multiple operating modes. However, due to differences in the installation location or orientation of different operating modes, in order to ensure the accuracy of the user's monitoring data, the target device is limited to intelligently selecting one operating mode. In other words, the user can select the target device to operate in the chosen mode according to actual needs.

[0086] S102. In response to the selection operation for the working mode, display the configuration guide page corresponding to the selected working mode.

[0087] The configuration guide page includes configuration instructions for the selected operating mode, which guides you on how to configure the target device within that mode. These instructions can be text-based, graphical, or video-based, and can be customized to suit your needs.

[0088] Specifically, the mode selection page displays multiple working modes adapted to the target device. Users can select the appropriate working mode according to their needs. For example, if the user selects the target positioning mode, a configuration guide page will be displayed when this mode is detected. This configuration guide page displays configuration guidance information T1 corresponding to the target positioning mode, which instructs the user to configure the target device in the target positioning mode, such as instructing the user to install the target device on the indoor ceiling. As another example, if the user selects the fall detection mode, a configuration guide page will be displayed when this mode is detected. This configuration guide page displays configuration guidance information T2 corresponding to the fall detection mode, which instructs the user to configure the target device in the fall detection mode, such as instructing the user to install the target device at a position 2 meters above the ground.

[0089] S103. If the current deployment status of the target device is detected to meet the selected working mode, in response to the configuration confirmation operation triggered on the configuration guide page, configure the target device with the configuration information corresponding to the selected working mode.

[0090] The current deployment status refers to the physical configuration status of the target device, such as its physical position and angle within the current space (e.g., living room, bedroom, or kitchen). The configuration information carries the target device's operating parameters in each working mode. These parameters may include monitoring range, monitored objects, monitoring duration, monitoring frequency, and / or the type of data being monitored. It's understandable that different working modes correspond to different configuration information. For example, in target positioning mode, the target device must be installed on the ceiling with an angle of 180° between it and the ceiling; in sleep monitoring mode, the target device must be installed at the head of the bed with a distance of at least 50 centimeters between it and the mattress, and so on.

[0091] For example, specifically, when the current deployment status of the target device (such as a human body sensor) is detected as being deployed on the ceiling of a bedroom, and the angle between the human body sensor and the ceiling is 180°, which satisfies the selected target positioning mode, in response to the configuration confirmation operation triggered on the configuration guide page, the working parameters corresponding to the target positioning mode are configured for the human body sensor, such as configuring the human body sensor to have a monitoring range of 5*5 meters and to monitor the location of the user within the monitoring range.

[0092] Optionally, in some embodiments, a configuration confirmation control may be provided in the configuration guidance interface. When it is detected that the current deployment status of the target device meets the selected working mode, in response to the configuration confirmation operation triggered by the configuration confirmation control in the configuration guidance page, configuration information corresponding to the selected working mode is configured for the target device.

[0093] This application provides a device configuration method. After displaying the mode selection page of the target device, in response to the selection operation for the working mode, a configuration guidance page corresponding to the selected working mode is displayed. Finally, when it is detected that the current deployment status of the target device meets the selected working mode, in response to the configuration confirmation operation triggered on the configuration guidance page, the configuration information corresponding to the selected working mode is configured on the target device.

[0094] In the device configuration scheme provided in this application, users can select different working modes of the target device according to their actual needs. After the user selects a working mode, a configuration guide page corresponding to the selected working mode is displayed. This configuration guide page includes configuration guidance information for the selected working mode. Therefore, the configuration guidance information can instruct the user to configure the target device in the selected working mode. When the user needs to configure a new device or a device in a different working mode, the configuration guide page can guide the user to configure the device so that the user can install the device accurately and effectively.

[0095] Optionally, this application also provides a device configuration method, which is illustrated using an application to a smart device as an example. The method specifically includes the following steps:

[0096] S201, Display the mode selection page for the target device.

[0097] In step S201, a mode selection page corresponding to the target device can be displayed on the smart device. This mode selection page includes multiple working modes adapted to the target device. Optionally, in some embodiments, the working modes adapted to the target device may specifically include a first working mode, a second working mode, and a third working mode, wherein the first working mode may be a target positioning mode, the second working mode may be a fall detection mode, and the third working mode may be a sleep monitoring mode.

[0098] It should be noted that different target devices may have different compatible functions. For example, target device A may support three working modes: the first working mode, the second working mode, and the third working mode, while target device B may support two working modes: the first working mode and the third working mode. Therefore, their corresponding mode selection pages will also be different. Figure 4 As shown.

[0099] S202. In response to the selection operation for the working mode, display the configuration guide page corresponding to the selected working mode.

[0100] After selecting the corresponding working mode on the mode selection page, the user can switch the mode selection page to the configuration guide page corresponding to the selected working mode. The configuration guide page includes configuration guidance information for the selected working mode, which is used to instruct the user to configure the target device in the selected working mode.

[0101] Optionally, in some embodiments, the working modes include a first working mode, a second working mode, and a third working mode. That is, the configuration guide page also has three different styles to instruct the user to correctly configure the target device in different working modes.

[0102] The following explanation uses the first working mode (target positioning), the second working mode (fall detection), and the third working mode (sleep monitoring) as examples:

[0103] Optionally, in some embodiments, if the user selects the first working mode (i.e., target positioning mode) on the mode selection page, guidance is provided in the first working mode through location configuration guidance, height measurement guidance, and angle configuration guidance. The location configuration guidance and height measurement guidance provide graphic and textual instructions for the user to configure. Specifically, firstly, the location configuration guidance is displayed on the configuration guidance page; then, in response to the user's switching operation on the location configuration guidance, the height measurement guidance is displayed, such as... Figure 5 As shown in Figure a. A toggle control can be used to switch the configuration location guide to the height measurement guide; that is, in response to a guide switching operation on the configuration guide page, the configuration location guide is switched to the height measurement guide, as shown in Figure a. Figure 5 As shown in b. It is understandable that the configuration guide page can also include a guide return control S, which allows users to return from the height measurement guide to the configuration location guide. That is, in response to a click on the guide return control S, the user returns from the height measurement guide to the configuration location guide.

[0104] Alternatively, users can be guided to configure the angle using graphic instructions. However, during angle configuration, the target device automatically and in real-time detects the current configuration angle, which refers to the target device's pitch angle. It's understandable that the graphic instructions for height measurement can be switched to those for angle configuration using a toggle control, as shown in Figure 5. It should be noted that when the target device's current configuration angle meets the preset configuration angle, a "correct installation" message will be displayed in the graphic instructions; when the target device's current configuration angle does not meet the preset configuration angle, an "incorrect installation" message (T) will be displayed in the graphic instructions, as shown in Figure 5. Figure 7 As shown.

[0105] If the user selects the second working mode on the mode selection page, the user can also be guided by the position configuration guide, height measurement guide, and angle configuration guide in the second working mode. The position configuration guide and height measurement guide provide graphic and textual guidance, which the user can follow to configure. During the angle configuration process, the target device automatically and in real time detects the current configuration angle, which refers to the pitch angle of the target device. The specific guidance method is similar to the previous embodiments and will not be repeated here.

[0106] It should be noted that although the guidance methods for the first and second working modes are similar, their corresponding location configuration guidance, height measurement guidance, and angle configuration guidance are different. For example, regarding the location configuration guidance, in the first working mode, the guidance states: "Please select a suitable installation location on the wall." In the second working mode, the guidance states: "Please select a suitable installation location at the top of the space." Similarly, in the first working mode, the height measurement guidance states: "Please select a suitable installation point within the range of 1.4m to 1.8m above the ground." In the second working mode, the height measurement guidance states: "Please install the equipment within the range of 2.5m to 2.8m above the ground."

[0107] If the user selects the third working mode on the mode selection page, this mode provides guidance through height measurement and angle configuration instructions. These instructions offer both visual and textual guidance. Unlike the first and second working modes, in this third mode, the user configures the device according to these instructions. The height measurement instruction might state: "Please install the device directly above the target." The angle configuration instruction might state: "Please adjust the device stand angle downwards so that the front of the device faces the human chest cavity; a 45° angle is recommended." It's important to note that in the third working mode, the target device does not automatically and in real-time detect the current configured angle. This is because different users have different heights, body types, and sleep areas. If a baseline angle is pre-set, some users might not be able to have their sleep monitored even after configuring the target device according to that baseline angle.

[0108] S203. If the current deployment status of the target device is detected to meet the selected working mode, in response to the configuration confirmation operation triggered on the configuration guide page, configure the target device with configuration information corresponding to the selected working mode.

[0109] Optionally, in some embodiments, the working modes of this application include a first working mode, a second working mode, and a third working mode. That is, each working mode corresponds to different guidance information, and the guidance information can be used to indicate the location of the target device in the working mode.

[0110] For example, when the working mode is the first working mode, the configuration guidance information includes guidance information corresponding to the first working mode, which is used to instruct the target device to be deployed to the location corresponding to the first working mode.

[0111] In some embodiments, the step "when it is detected that the current deployment status of the target device meets the selected working mode, in response to the configuration confirmation operation triggered on the configuration guide page, configure the target device with configuration information corresponding to the selected working mode" may specifically include:

[0112] Based on the monitoring information detected by the target device, determine the current deployment status of the target device;

[0113] If the current deployment status of the target device meets the selected first working mode, in response to the configuration confirmation operation of the confirmation control on the configuration guide page, the target device is configured with configuration information corresponding to the first working mode based on the monitoring information.

[0114] The deployment status refers to the physical configuration status of the target device. In other words, it can be understood that when the current deployment status of the target device meets the conditions of the selected first working mode, the physical configuration of the target device is determined to be complete. The physical configuration includes the aforementioned position configuration, height measurement, and angle configuration.

[0115] In some embodiments, the first working mode can be a target positioning mode. In the target positioning mode, the target device is used to monitor objects within a set area. Therefore, if the current deployment status of the target device meets the selected first working mode, the target device can be configured with configuration information corresponding to the first working mode based on the monitoring information. The configuration information corresponding to the first working mode may include area configuration information, and the monitoring information may include object monitoring information.

[0116] Specifically, taking the first working mode as the target positioning mode as an example, firstly, the monitoring information detected by the target device is received to determine the current deployment status of the target device. This monitoring information includes the installation angle of the target device. If the current installation angle of the target device meets the angle corresponding to the target positioning mode, in response to the configuration confirmation operation of the confirmation control in the configuration guide page, the working parameters corresponding to the target positioning mode are configured for the target device. For example, the target device is configured to monitor the location of the user in the space that the target device can scan.

[0117] By using the above method, the configuration guidance information guides the user to configure the target device at the corresponding position and angle. Combined with the target device's own detection capabilities to detect the configured angle, the device can be installed accurately and effectively for subsequent monitoring of objects within the designated area.

[0118] Optionally, in some embodiments, if the current deployment status of the target device meets the selected first working mode, the user can be guided to control the target device to perform regional configuration by displaying corresponding guidance information. That is, the step "when the current deployment status of the target device meets the selected first working mode, in response to the configuration confirmation operation of the confirmation control in the configuration guidance page, configure the target device with configuration information corresponding to the first working mode based on the monitoring information" can specifically include:

[0119] If the current deployment status of the target device meets the selected first working mode, then the regional configuration guidance information is displayed, and the target device is instructed to monitor the target objects in the target space;

[0120] Based on the object monitoring information detected by the target device, the monitoring area in the target space is determined;

[0121] In response to the confirmation operation for the monitoring area, the target device is configured with the area configuration information corresponding to the first working mode based on the monitoring area.

[0122] The target object can be a person, animal, or a mobile intelligent device. The object monitoring information includes the movement information of the target object within the target space, specifically the movement information of people, animals, or mobile intelligent devices within the target space. The monitoring area refers to the area within the target space that the target device is to monitor. The area configuration information carries information such as the location and area of ​​the monitoring area configured by the target device in the first operating mode.

[0123] In the first operating mode, the target device is used for target localization, that is, to locate the target object within the designated space. Therefore, when the current deployment status of the target device meets the conditions of the selected first operating mode, it is necessary to determine the monitoring area under the target space so that the target object within the monitoring area can be located subsequently. Furthermore, after determining the monitoring area under the target space, in response to the confirmation operation of the confirmation control corresponding to the monitoring area, the target device is configured to monitor the position of the target object within the monitoring area.

[0124] Specifically, if the current deployment status of the target device meets the selected first working mode, area configuration guidance information is displayed, instructing the target device to monitor people in the target space. Next, based on the object monitoring information detected by the target device, a monitoring area is determined within the target space, where the monitored object is a person. After determining the monitoring area within the target space, in response to a confirmation operation of the confirmation control corresponding to the monitoring area, the target device is configured to monitor the location of people in that monitoring area according to the monitoring frequency or monitoring duration corresponding to the first working mode.

[0125] By using the above method, the configuration guidance information guides the user to configure the target device at the corresponding position and angle, and combined with the target device's own detection capabilities to determine the monitoring area. This allows for accurate and effective configuration of the target device's area configuration information corresponding to the first working mode, so that the target object within the monitoring area can be monitored subsequently.

[0126] It should be noted that for target devices used for the first time or for target devices with changed monitoring areas, the monitoring area needs to be manually established. Specifically, the user can be guided to move within the target space using area configuration guidance information. The target device establishes the monitoring area by monitoring the user's movement direction. That is, optionally, in some embodiments, the step "in response to the confirmation operation for the monitoring area, configuring the target device with area configuration information corresponding to the first working mode based on the monitoring area" may specifically include:

[0127] Obtain the direction of movement of the target object detected by the target device;

[0128] If the target object's movement direction is consistent with the area configuration guidance information, and the target object is identified as reaching the edge of the current movement direction, the area configuration guidance information is updated to instruct the target object to move in the indicated direction until the target object is identified as reaching the edge of each movement direction. Then, based on the monitoring information detected by the target device during the target device's movement, the monitoring area under the target space is determined.

[0129] For example, please refer to the specific details. Figure 8 (a) First, the smart device obtains the movement direction of the target object detected by the target device. For example, if the target object is a user, and the user's movement direction is consistent with the area configuration guidance information, the smart device continues to obtain the user's location information reported by the target device until the user reaches the edge of the movement direction. At this time, the area configuration guidance information is updated to guide the user to move to the edge of each movement direction. Finally, based on the monitoring information detected by the target device during the movement of the target device, the smart device displays the available rectangular space range (i.e., the monitoring area).

[0130] It should be noted that when a user walks within the area, their corresponding marker (such as...) Figure 9 The human body marker shown will be displayed on the view grid in real time and follow the movement. When the user has reached the edge of the room (such as the wall) and cannot go any further, they need to click the "Rightmost edge reached" button. At this time, the smart device will mark the human body marker on the view grid (marking the center of the human body marker on the grid), which is considered as reaching the edge. If the user's home space is large, they may go beyond the view range. In this case, the largest edge of the view will be marked, and this will be repeated 3 times to obtain the leftmost, rightmost and backmost points. Connect the 3 points to draw the usable monitoring area.

[0131] By guiding users to move within the target space through area configuration guidance information, and using the target device to detect monitoring information to determine the monitoring area, the problem of human error caused by users manually determining the monitoring area, which would prevent the target device from effectively monitoring the location of the target object, can be avoided. Thus, the target object in the monitoring area can be accurately detected.

[0132] It should also be noted that during the actual configuration of the target device, the target device may be installed backwards by the user at the configuration point, resulting in the movement direction being opposite to the view direction. If the movement directions are inconsistent, the direction will be automatically corrected for the user. That is, optionally, in some embodiments, the device configuration method of this application may further include:

[0133] When the movement direction of the target object is detected to be inconsistent with the region configuration guidance information, the mirroring information is displayed;

[0134] In response to a trigger operation for image processing information, the target device is controlled to perform image processing on the collected movement data of the target object, and the image movement data returned by the target device is received.

[0135] Because during the actual configuration of the target device, it may be installed backwards by the user at the configuration point, resulting in the movement direction being opposite to the view direction, to facilitate user configuration, when the movement direction of the target object is detected to be inconsistent with the area configuration guidance information, mirror processing information is displayed. This mirror processing information is used to flip the displayed movement direction of the target object. The movement direction corresponding to the mirrored movement data is consistent with the configuration guidance information. In the first working mode (i.e., target positioning mode), users can install the target device upright or upside down to adapt to different installation scenarios. When the target device is installed upside down, the data it collects is reversed, causing the target device to collect the user's movement direction to be opposite to the user's actual movement direction. Therefore, when the user clicks the mirror control, the target device will mirror the collected data left and right before sending it to the smart device, ensuring that whether the target device is upright or upside down, the correct movement direction of the user is displayed. Specifically, when the movement direction of the target object is detected to be inconsistent with the area configuration guidance information, mirror processing information is displayed, such as... Figure 8 (b) shows the opposite control J. When the user clicks the opposite control, the movement data of the target object will be collected. For example, if the user is actually moving to the left, it will be displayed as moving to the right on the page.

[0136] In this embodiment, when the movement direction of the target object is detected to be inconsistent with the area configuration guidance information, the monitoring area under the target space can be determined by triggering the mirror processing information without the user having to change their own movement direction, thereby improving the efficiency of device configuration.

[0137] Furthermore, since the target device for switching operating modes already has a monitoring area, in order to improve the efficiency of device configuration, after switching operating modes, the historical area configuration information corresponding to the target device can be obtained, and the historical configuration information can be applied to the target device for switching operating modes. That is, optionally, in some embodiments, the device configuration method of this application may further include:

[0138] In response to a switching operation for the working mode, determine the new working mode;

[0139] If the switched working mode is found to have configured historical area configuration information, the area display page corresponding to the historical area configuration information will be displayed.

[0140] In response to an application operation triggered on the region display page that applies historical region configuration information, the historical region configuration information is applied to the working mode after the target device configuration is switched.

[0141] Historical area configuration information refers to the area configuration information configured for the target device within a historical period. It includes information such as the location and area of ​​the monitoring area configured by the target device in the selected working mode within the historical period.

[0142] Optionally, when the switched operating mode is detected to have configured historical area configuration information, the area display page corresponding to the historical area configuration information is displayed. This area display page includes the monitoring area corresponding to the target device before switching operating modes, such as... Figure 10 As shown, the monitoring areas on this display page include the toilet area and the shower area; that is, these are the areas monitored by the target device before switching its operating mode. If the user still wants the target device to monitor these two areas after switching its operating mode, they can trigger an application operation based on the historical area configuration information on the area display page. For example, by clicking the application control D on the area display page, the historical area configuration information can be applied to the target device's configured operating mode after the switch.

[0143] In this embodiment, when the switched working mode is detected to have configured historical area configuration information, it can be used directly in the switched mode, thereby improving the efficiency of device configuration.

[0144] Furthermore, when the target device monitors a target object (such as a person) within a monitored area (such as a living room, bedroom, or dining room), the target device will perform a radar scan of the monitored area. If there is a slightly moving target (such as a moving fan or green plants) in the monitored area at this time, it will affect the monitoring effect of the target object. For example, the slightly moving target may also be identified as a target object. Therefore, when there is a slightly moving target (such as a moving fan or green plants) in the monitored area, the target device will automatically set the area where the slightly moving target is located as an interference zone. No new monitoring targets will be established in the interference zone, thereby achieving the purpose of not monitoring and displaying the slightly moving target.

[0145] Therefore, optionally, in some embodiments, the configuration information also includes the interference area in the target space. After the step "configure the monitoring area information corresponding to the target device according to the configuration guidance information and the direction of movement", it may further include:

[0146] In response to the triggered operation of the spatial automatic learning item displayed on the configuration guide page, interference detection guidance information is displayed, and the target device is instructed to perform interference detection processing;

[0147] Acquire interference detection information of the target device when the target object does not exist in the target space, and determine the interference area in the target space based on the interference detection information;

[0148] Configure the target device with the configuration information corresponding to the first working mode based on the interference area.

[0149] Specifically, users can click the "Automatic Spatial Learning" option displayed on the configuration guide page. Upon clicking, in response to this action, interference detection guidance information is displayed, and the target device is instructed to detect any slightly moving targets within the monitoring area. After detection, based on the interference detection information assuming no target object exists in the target space, the interference area within the target space is determined. Finally, the target device is instructed not to monitor target objects in this interference area. This prevents slightly moving targets within the interference area from affecting subsequent target object monitoring.

[0150] Optionally, in some embodiments, the user can manually trigger the target device to monitor the target object in the target space. For details, please refer to [link to relevant documentation]. Figure 11 (a) The configuration guide page displays a space auto-learning item K. In response to a trigger operation on the space auto-learning item displayed on the configuration guide page, interference detection guidance information is displayed. This interference detection guidance information can be presented as a progress bar, or other formats, such as... Figure 11 As shown in (b), the specific settings can be configured according to the actual situation. When displaying interference detection guidance information, the target device is instructed to perform interference detection processing. Specifically, the target device is instructed to perform radar scanning of the current space. If there are slightly moving targets (such as moving fans, green plants, etc.) in the space at this time, the area where the target is located will be automatically set as the interference zone. After the target device finishes scanning the target space, the configuration information corresponding to the first working mode is configured for the target device based on the interference zone. At the same time, a prompt message indicating that the target device configuration is complete is displayed, such as... Figure 12 As shown.

[0151] For example, when the working mode is the second working mode, the configuration guidance information includes guidance information corresponding to the second working mode. This guidance information is used to instruct the target device to be deployed to the location corresponding to the second working mode. That is, optionally, in some embodiments, the step "when it is detected that the current deployment status of the target device meets the selected working mode, in response to the configuration confirmation operation triggered on the configuration guidance page, configure the target device with configuration information corresponding to the selected working mode" may specifically include:

[0152] Based on the device location information detected by the target device, determine the current deployment status of the target device;

[0153] If the current deployment status of the target device meets the selected second working mode, in response to the configuration confirmation operation of the confirmation control in the configuration guide page, the target device is configured with configuration information corresponding to the second working mode based on the monitoring information.

[0154] Optionally, in some embodiments, the second working mode can be a fall detection mode, used to perform fall detection on the target object (i.e., the user). When the current deployment status of the target device meets the conditions of the selected second working mode, it is determined that the physical configuration of the target device is complete. This physical configuration includes the aforementioned position configuration, height measurement, and angle configuration. Subsequently, in response to the configuration confirmation operation of the confirmation control in the configuration guidance page, the target device is configured with configuration information corresponding to the second working mode based on the monitoring information. The specific configuration process is similar to that of the first working mode; please refer to the previous embodiments for details, which will not be repeated here.

[0155] Specifically, firstly, the system receives monitoring information detected by the target device and determines the current deployment status of the target device. This monitoring information includes the installation angle of the target device. If the current installation angle of the target device meets the angle corresponding to the fall detection mode, the system responds to the configuration confirmation operation of the confirmation control in the configuration guide page and configures the working parameters corresponding to the fall detection mode for the target device. For example, the target device is configured to monitor the user's posture within the space that the target device can scan.

[0156] By using the above method, the configuration guidance information guides the user to configure the target device at the corresponding position and angle. Combined with the target device's own detection capabilities to detect the configured angle, the device can be installed accurately and effectively so as to monitor the posture of users in the set area (i.e., fall detection).

[0157] For example, when the working mode is the third working mode, the configuration guidance information includes guidance information corresponding to the third working mode. This guidance information is used to instruct the target device to be deployed to the location corresponding to the third working mode. That is, optionally, in some embodiments, the step "when it is detected that the current deployment status of the target device meets the selected working mode, in response to the configuration confirmation operation triggered on the configuration guidance page, configure the target device with configuration information corresponding to the selected working mode" may specifically include:

[0158] Obtain the orientation information of the target device relative to the target object, and determine the current deployment status of the target device based on the orientation information;

[0159] If the current deployment status of the target device meets the selected third working mode, display the monitoring area detected by the target device under the third working mode;

[0160] In response to the configuration confirmation operation of the confirmation control on the configuration guide page, the target device is configured with configuration information corresponding to the third working mode based on the orientation information and monitoring area.

[0161] Optionally, in some embodiments, the third working mode can be a sleep monitoring mode. The orientation information carries the relative position and angle of the target device relative to the target object. When the current deployment status of the target device meets the conditions of the selected third working mode, the physical configuration of the target device is determined to be complete. This physical configuration includes altitude measurement and angle configuration. Specifically, the configuration guidance page displays altitude measurement instructions and angle configuration instructions, such as... Figure 13 (a) and Figure 13 As shown in (b), the configuration guidance information guides the user to configure the target device at the bedside. Therefore, the target device can generate a sleep area of ​​a preset size centered on itself, such as... Figure 14 As shown, based on the generated sleep zone, monitoring triggers can be controlled within the sleep zone. Sleep outside the sleep zone will not be included in the statistics, thus ensuring more accurate sleep data. Users can also manually adjust the sleep zone according to the actual size of the bed. Afterward, users can click the "Complete Settings" control to complete the configuration of the target device, and the configuration completion page will be displayed.

[0162] In summary, in this embodiment, after displaying the mode selection page of the target device, in response to the selection operation of the working mode, a configuration guide page corresponding to the selected working mode is displayed. The working modes include a first working mode, a second working mode, and a third working mode; that is, different configuration guide pages are output for different working modes. Users can select different working modes of the target device according to their actual needs. After the user selects a working mode, the configuration guide page corresponding to the selected working mode is displayed. This configuration guide interface includes configuration guidance information for the selected working mode. Therefore, the configuration guidance information can instruct the user to configure the target device in the selected working mode. When the user needs to configure a new device or a device in a different working mode, the configuration guide page can guide the user to configure the device, enabling the user to install the device accurately and effectively.

[0163] This application also provides an application scenario in which the above-described device configuration method is applied. Specifically, the device configuration method is applied in this scenario as follows:

[0164] Users need to configure the human scene sensor, which includes target positioning mode, fall detection mode, and sleep monitoring mode. Different modes have different installation guidance and interaction processes, as follows:

[0165] The target localization model includes three steps:

[0166] Step 1: This is a basic step that users must go through and cannot skip. Users select their desired working mode, and when they click "Start Installation", the human scene sensor will switch to the corresponding working mode and then proceed with the installation guidance.

[0167] For the human scene sensor itself, the three modes can coexist. However, due to the different installation methods of the three modes, in order to ensure the accuracy of the user's monitoring data, it is restricted to only one mode can be selected for operation, and a way and entry point for switching modes are provided.

[0168] In step 1 of the target positioning mode, the system guides users through three steps: selecting the location, measuring the height, and adjusting the angle. Selecting the location and measuring the height are provided with reference illustrations and text instructions, which the user must manually determine. The angle adjustment is automatically and instantly detected by the human scene sensor and reported to the application (APP). If the human scene sensor is installed at an incorrect angle, an important reminder such as "Installation error detected, please adjust the device angle as shown in the illustration" will be displayed, and the user will be unable to click to complete the installation of the corresponding control. If the human scene sensor is installed correctly, a reminder "Device installed correctly" will be displayed, and the user can click to complete the installation of the corresponding control. At this point, step 1 is complete, and the system proceeds to the special step judgment.

[0169] Before step 2 begins, the app performs a special check: if the user is a returning user switching from another mode, the app will check if they have previously set a custom region template. If they have, the user can directly choose to restore the monitoring region using the custom template, thus skipping steps 2 and 3. If the user has not set a custom template, or chooses to set a new region, the app will continue to step 2.

[0170] If the user selects "Set as new area", it will proceed according to the normal process without prior setup, that is, it will proceed normally to step 2 - setting the detection area and step 3 - spatial intelligent learning.

[0171] Step 2: This step allows users to skip. If the user does not skip, the guide will help the user set the basic detection area and range based on the current actual space size and furnishings.

[0172] First, the direction of view movement needs to be confirmed with the user. Due to the different installation methods, the direction of movement may be opposite to the view direction. If the direction of movement is inconsistent, the direction needs to be automatically corrected for the user.

[0173] Reverse Correction: The target positioning mode supports both upright and inverted installation to adapt to different installation scenarios. However, when the device is inverted, the data it collects is reversed, which causes the motion direction displayed by the app to be opposite to the user's actual direction (left and right will be reversed, but front and back will not be affected). Therefore, when the user clicks the mirror control, the human scene sensor will automatically mirror the collected data left and right before sending it to the app, so that the correct motion direction can be displayed regardless of whether the user is upright or inverted.

[0174] The system will then guide the user to walk left, right, and backward within the space to the maximum edge. Based on these three edge points, the system will automatically draw a usable rectangular space for the user.

[0175] Once the available monitoring area is drawn, the remaining areas will be set as "non-monitoring" areas. Users can also manually adjust the automatically generated areas.

[0176] Step 3: Guide users to learn spatial intelligence

[0177] This step allows users to skip. If the user does not skip, the system will automatically remove minor disturbances (such as moving fans, green plants, etc.) in the space based on the actual moving objects in the space, as guided by the system, to improve detection accuracy.

[0178] Automatic removal of minor motion interference: After the human scene sensor triggers learning, it performs a radar scan of the current space. If a slightly moving target is present in the space, the area where the target is located will be automatically designated as an interference zone. No new monitoring targets will be established within the interference zone, thus preventing the object from being detected and displayed. The limitation of this approach is that, because the area where the object is located is specifically defined, if the user moves the object to another normal area, it will still be detected by the human scene sensor due to the minor motion.

[0179] The process will automatically end upon successful completion of the learning process. At this point, step 3 is complete, the entire setup is finished, and the configuration page will be displayed. The user can then click "Start Using the Controls" to enter the device's homepage.

[0180] The fall detection mode is as follows:

[0181] When a user selects their desired working mode and clicks "Start Installation," the human scene sensor switches to the corresponding working mode and then guides the user through the installation process.

[0182] The app guides users through three steps: selecting a location, measuring height, and adjusting the angle. Selecting a location and measuring height provide reference illustrations and text instructions, which the user must manually determine. The angle adjustment is automatically and instantly detected by the human scene sensor and reported to the app. If the human scene sensor's installation angle is incorrect, an important reminder such as "Installation error detected, please adjust the device angle as shown in the illustration" will be displayed, and the user will be unable to click to complete the installation of the corresponding control. If the device is installed correctly, a reminder "Device installed correctly" will be displayed. Once the entire guide is complete, the configuration page will be displayed, and the user can click "Start using controls" to enter the device's homepage.

[0183] Mode 3: Sleep monitoring mode includes the following two steps:

[0184] Step 1: Mode Selection and Configuration Guide

[0185] This is a fundamental step that users must go through and cannot skip. Users select their desired working mode, and when they click "Start Installing Device Controls," the human scene sensor switches to the corresponding working mode, followed by installation guidance.

[0186] The app guides users through the process in two steps: measuring height and position, and adjusting angle. Both pages only provide reference illustrations and text descriptions, leaving the user to make their own judgments. There is no hardware assessment or reporting, i.e., no human scene sensor. Once the user completes the installation, step 1 is finished, and the user can proceed to step 2.

[0187] Step 2: Setting up the sleep area

[0188] Since the previous step guided the user to install the human body scene sensor at the head of the bed, this step will automatically generate a 2m*2m rectangular sleep area centered on the sensor. Based on this generated sleep area, monitoring triggers can be controlled within this area; sleep outside the sleep area will not be included in the statistics, thus ensuring more accurate sleep data. The user can also manually adjust the sleep area according to the actual size of the bed. After clicking the configuration completion control, step 2 is complete, and the entire setup process is finished. The configuration completion page is displayed, and the user can click "Start Using the Control" to enter the device's homepage.

[0189] Due to differences in installation methods, the three working modes are restricted to one mode at a time to ensure more accurate monitoring data. Multiple modes cannot be used simultaneously. Users can switch between modes via the device settings page in the app.

[0190] If the user switches to another mode, a mode switching reminder will be displayed. Clicking the switch control triggers the device mode switch. After a successful switch, the subsequent page process is completely consistent with the mode installation guide described above. Furthermore, for the human scene sensor switching operating modes, it already has a monitoring area. Therefore, to improve the efficiency of human scene sensor configuration, after switching operating modes, the historical area configuration information corresponding to the human scene sensor can be obtained and applied to the human scene sensor in the switched operating mode. When the switched operating mode is detected to have the configured historical area configuration information, it can be used directly in the switched mode, thereby improving the efficiency of human scene sensor configuration.

[0191] It should be understood that, although Figure 3 The steps in the flowchart are shown sequentially as indicated by the arrows, but these steps are not necessarily executed in the order indicated by the arrows. Unless otherwise specified herein, there is no strict order in which these steps are executed, and they can be performed in other orders. Figure 3 At least some of the steps in the process may include multiple sub-steps or multiple stages. These sub-steps or stages are not necessarily completed at the same time, but can be executed at different times. The execution order of these sub-steps or stages is not necessarily sequential, but can be executed in turn or alternately with other steps or at least some of the sub-steps or stages of other steps.

[0192] Please see Figure 15 , Figure 15 This is a schematic diagram of the device configuration apparatus provided in an embodiment of this application. The device configuration apparatus includes a first display module 301, a second display module 302, and a configuration module 303, which can be described as follows:

[0193] The first display module 301 is used to display the mode selection page of the target device.

[0194] The mode selection page includes multiple working modes adapted to the target device.

[0195] The second display module 302 is used to display the target device configuration corresponding to the selected working mode in response to the selection operation of the working mode.

[0196] The configuration guide page includes configuration instructions for the selected working mode, and the target device configuration prompts the user to install the device to be installed in the target mode.

[0197] Configuration module 303 is used to configure configuration information corresponding to the selected working mode on the target device in response to a configuration confirmation operation triggered on the configuration guide page, when the current deployment status of the target device is detected to meet the selected working mode.

[0198] Optionally, in some embodiments, the operating mode includes a first operating mode, configuration guidance information is used to instruct the target device to be configured in the selected operating mode, and guidance information is used to instruct the target device to be deployed to a location corresponding to the first operating mode. The configuration module 303 may specifically include:

[0199] The determining unit is used to determine the current deployment status of the target device based on the monitoring information detected by the target device;

[0200] The configuration unit is used to configure the target device with configuration information corresponding to the first working mode based on monitoring information, in response to the configuration confirmation operation of the confirmation control in the configuration guide page, provided that the current deployment status of the target device meets the selected first working mode.

[0201] Optionally, in some embodiments, the monitoring information includes object monitoring information, the configuration information includes region configuration information, and the configuration unit may specifically include:

[0202] The display sub-unit is used to display area configuration guidance information and instruct the target device to monitor the target object in the target space if the current deployment status of the target device meets the selected first working mode.

[0203] The determination sub-unit is used to determine the monitoring area in the target space based on the object monitoring information detected by the target device;

[0204] The configuration subunit is used to respond to the confirmation operation for the monitoring area and configure the target device with the area configuration information corresponding to the first working mode based on the monitoring area.

[0205] Optionally, in some embodiments, the configuration subunit may be specifically used to: obtain the movement direction of the target object detected by the target device; if the movement direction of the target object is consistent with the area configuration information, and the edge of the target object reaching the current movement direction is identified, then update the area configuration guidance information to instruct the target object to move in the indicated direction, until the target object has reached the edge of each movement direction, then determine the monitoring area under the target space based on the monitoring information detected by the target device during the movement of the target device.

[0206] Optionally, in some embodiments, the configuration subunit may also be used to: display mirror processing information when the movement direction of the target object is detected to be inconsistent with the regional configuration guidance information; and, in response to a trigger operation for the mirror processing information, control the target device to perform mirror processing on the collected movement data of the target object, and receive the mirror movement data returned by the target device, wherein the movement direction corresponding to the mirror movement data is consistent with the configuration guidance information.

[0207] Optionally, in some embodiments, the configuration information includes an interference region in the target space; the configuration subunit may also be used to: in response to a trigger operation on the space automatic learning item displayed in the configuration guidance page, display interference detection guidance information and instruct the target device to perform interference detection processing; obtain interference detection information of the target device when there is no target object in the target space, determine the interference region in the target space based on the interference detection information; and configure configuration information corresponding to the first working mode for the target device based on the interference region.

[0208] Optionally, in some embodiments, the working mode includes a second working mode, and the configuration guidance information includes guidance information corresponding to the second working mode, used to indicate that the target device should be deployed to the location corresponding to the second working mode; the configuration module 303 may specifically be used to: determine the current deployment status of the target device based on the device location information detected by the target device; if the current deployment status of the target device meets the selected second working mode, in response to the configuration confirmation operation of the confirmation control in the configuration guidance page, configure the target device with configuration information corresponding to the second working mode based on the monitoring information.

[0209] Optionally, in some embodiments, the working mode includes a third working mode, and the configuration guidance information includes guidance information corresponding to the third working mode, used to indicate that the target device should be deployed to the location corresponding to the third working mode; the configuration module 303 may specifically be used to: obtain the location information of the target device relative to the target object detected by the target device, and determine the current deployment status of the target device based on the location information; if the current deployment status of the target device satisfies the selected third working mode, display the monitoring area detected by the target device in the third working mode; in response to the configuration confirmation operation of the confirmation control in the configuration guidance page, configure the target device with configuration information corresponding to the third working mode based on the location information and the monitoring area.

[0210] Optionally, in some embodiments, please refer to Figure 16The device configuration apparatus provided in this application may further include an application module 304, which may be used to: determine the working mode after switching in response to a switching operation for the working mode; if the switching working mode is found to have configured historical area configuration information, display the area display page corresponding to the historical area configuration information; and apply the historical area configuration information to the working mode after switching the target device configuration in response to an application operation for the historical area configuration information triggered on the area display page.

[0211] As described above, this application provides a device configuration apparatus. After the first display module 301 displays the mode selection page of the target device, the second display module 302, in response to the selection operation for the working mode, displays the configuration guidance page corresponding to the selected working mode. Finally, when the configuration module 303 detects that the current deployment status of the target device meets the selected working mode, it, in response to the configuration confirmation operation triggered on the configuration guidance page, configures the target device with configuration information corresponding to the selected working mode. In the device configuration scheme provided by this application, the user can select different working modes of the target device according to actual needs. After the user selects a working mode, the configuration guidance page corresponding to the selected working mode is displayed. This configuration guidance interface includes configuration guidance information for the selected working mode. Therefore, the configuration guidance information can instruct the user to configure the target device in the selected working mode. When the user needs to configure a new device or a device in a different working mode, the configuration guidance page can guide the user to configure the device, so that the user can install the device accurately and effectively.

[0212] In one embodiment, a computer device is provided, which may be a terminal, and its internal structure diagram may be as follows: Figure 17 As shown, the computer device includes a processor, memory, network interface, display screen, and input device connected via a system bus. The processor provides computing and control capabilities. The memory includes non-volatile storage media and internal memory. The non-volatile storage media stores the operating system and computer programs. The internal memory provides an environment for the operation of the operating system and computer programs stored in the non-volatile storage media. The network interface is used to communicate with external terminals via a network connection. When the computer program is executed by the processor, it implements an intent recognition method. The display screen can be a liquid crystal display (LCD) or an e-ink display, and the input device can be a touch layer covering the display screen or a computer device itself.

[0213] Those skilled in the art will understand that Figure 16The structure shown is merely a block diagram of a portion of the structure related to the present application and does not constitute a limitation on the computer device to which the present application is applied. Specific computer devices may include more or fewer components than those shown in the figure, or combine certain components, or have different component arrangements.

[0214] In one embodiment, a computer device is also provided, including a memory and a processor, wherein the memory stores a computer program, and the processor executes the computer program to implement the steps in the above method embodiments.

[0215] In one embodiment, a computer-readable storage medium is provided storing a computer program that, when executed by a processor, implements the steps in the above method embodiments.

[0216] In one embodiment, a computer program product or computer program is provided, the computer program product or computer program including computer instructions stored in a computer-readable storage medium. A processor of a computer device reads the computer instructions from the computer-readable storage medium, and executes the computer instructions, causing the computer device to perform the steps in the above method embodiments.

[0217] Those skilled in the art will understand that all or part of the processes in the methods of the above embodiments can be implemented by a computer program instructing related hardware. The computer program can be stored in a non-volatile computer-readable storage medium, and when executed, it can include the processes of the embodiments of the above methods. Any references to memory, storage, databases, or other media used in the embodiments provided in this application can include non-volatile and / or volatile memory. Non-volatile memory can include read-only memory (ROM), programmable ROM (PROM), electrically programmable ROM (EPROM), electrically erasable programmable ROM (EEPROM), or flash memory. Volatile memory can include random access memory (RAM) or external cache memory. By way of illustration and not limitation, RAM is available in various forms, such as static RAM (SRAM), dynamic RAM (DRAM), synchronous DRAM (SDRAM), dual data rate SDRAM (DDRSDRAM), enhanced SDRAM (ESDRAM), synchronous link DRAM (SLDRAM), Rambus direct RAM (RDRAM), direct memory bus dynamic RAM (DRDRAM), and memory bus dynamic RAM (RDRAM), etc.

[0218] The technical features of the above embodiments can be combined in any way. For the sake of brevity, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0219] The embodiments described above are merely illustrative of several implementation methods of this application, and while the descriptions are relatively specific and detailed, they should not be construed as limiting the scope of the patent application. It should be noted that those skilled in the art can make various modifications and improvements without departing from the concept of this application, and these all fall within the protection scope of this application. Therefore, the protection scope of this patent application should be determined by the appended claims.

Claims

1. A method for configuring a device, characterized in that, include: The target device's mode selection page is displayed, and the mode selection page includes multiple working modes adapted to the target device; In response to the selection of the working mode, a configuration guide page corresponding to the selected working mode is displayed; the configuration guide page includes configuration guidance information for the selected working mode, which is used to instruct the target device to be configured in the selected working mode; the working mode includes a first working mode; the configuration guidance information includes guidance information corresponding to the first working mode, which is used to instruct the target device to be deployed to a location corresponding to the first working mode, and different working modes correspond to corresponding installation locations; Based on the monitoring information detected by the target device, the current deployment status of the target device is determined; the monitoring information includes object monitoring information; if the current deployment status of the target device meets the selected first working mode, then the area configuration guidance information is displayed, and the target device is instructed to monitor the target objects in the target space; Based on the object monitoring information detected by the target device, the monitoring area in the target space is determined; In response to a confirmation operation for the monitoring area, configuration information corresponding to the first working mode is configured for the target device based on the monitoring area, the configuration information including area configuration information.

2. The method according to claim 1, characterized in that, The step of responding to a confirmation operation for the monitoring area by configuring configuration information for the target device corresponding to the first operating mode based on the monitoring area includes: The target device detects the direction of movement of the target object; If the movement direction of the target object is consistent with the area configuration guidance information, and the target object is detected to have reached the edge of the current movement direction, the area configuration guidance information is updated to instruct the target object to move in the indicated direction until the target object is detected to have reached the edge of each movement direction. Then, based on the monitoring information detected by the target device during the movement of the target device, the monitoring area under the target space is determined.

3. The method according to claim 2, characterized in that, Also includes: When the movement direction of the target object is detected to be inconsistent with the area configuration guidance information, mirror processing information is displayed; In response to a trigger operation for the mirroring processing information, the target device is controlled to perform mirroring processing on the collected movement data of the target object, and the mirrored movement data returned by the target device is received, wherein the movement direction corresponding to the mirrored movement data is consistent with the configuration guidance information.

4. The method according to claim 2, characterized in that, The configuration information includes the interference region in the target space; The method further includes: In response to a trigger operation on the spatial automatic learning item displayed in the configuration guide page, interference detection guidance information is displayed, and the target device is instructed to perform interference detection processing; Obtain interference detection information of the target device when there is no target object in the target space, and determine the interference area in the target space based on the interference detection information; Based on the interference region, configure the target device with configuration information corresponding to the first working mode.

5. The method according to claim 1, characterized in that, The working mode includes a second working mode, and the configuration guidance information includes guidance information corresponding to the second working mode, used to instruct the target device to be deployed to a location corresponding to the second working mode; The configuration of the target device also includes: Based on the device location information detected by the target device, the current deployment status of the target device is determined; If the current deployment status of the target device meets the selected second working mode, in response to the configuration confirmation operation of the confirmation control in the configuration guide page, the target device is configured with configuration information corresponding to the second working mode based on the device location information.

6. The method according to claim 1, characterized in that, The working mode includes a third working mode, and the configuration guidance information includes guidance information corresponding to the third working mode, used to instruct the target device to be deployed to the location corresponding to the third working mode; The configuration of the target device also includes: Obtain the orientation information of the target device relative to the target object detected by the target device, and determine the current deployment status of the target device based on the orientation information; If the current deployment status of the target device meets the selected third working mode, the monitoring area detected by the target device under the third working mode is displayed; In response to the configuration confirmation operation of the confirmation control in the configuration guide page, the target device is configured with configuration information corresponding to the third working mode based on the orientation information and the monitoring area.

7. The method according to any one of claims 1 to 6, characterized in that, The method further includes: In response to the switching operation for the operating mode, determine the new operating mode; If the switched working mode is detected to have configured historical area configuration information, then the area display page corresponding to the historical area configuration information is displayed. In response to an application operation triggered on the area display page for the historical area configuration information, the historical area configuration information is applied to the working mode after the switch of the target device configuration.

8. A device configuration apparatus, characterized in that, include: The first display module is used to display the mode selection page of the target device, which includes multiple working modes adapted to the target device. The second display module is used to respond to the selection operation of the working mode and display the configuration guidance page corresponding to the selected working mode; the configuration guidance page includes configuration guidance information for the selected working mode to instruct the target device to be configured in the selected working mode; the working mode includes a first working mode; the configuration guidance information includes guidance information corresponding to the first working mode, the guidance information is used to instruct the target device to be deployed to the location corresponding to the first working mode, and different working modes correspond to corresponding installation locations; The configuration module is used to determine the current deployment status of the target device based on the monitoring information detected by the target device; the monitoring information includes object monitoring information; if the current deployment status of the target device meets the selected first working mode, then the area configuration guidance information is displayed, and the target device is instructed to monitor the target objects in the target space; Based on the object monitoring information detected by the target device, the monitoring area in the target space is determined; In response to a confirmation operation for the monitoring area, configuration information corresponding to the first working mode is configured for the target device based on the monitoring area, the configuration information including area configuration information.

9. A smart device, characterized in that, include: At least one processor and at least one memory, wherein, The memory stores program instructions or code; The program instructions or code are loaded and executed by the processor, causing the smart device to implement the device configuration method as described in any one of claims 1-7.

10. A storage medium, characterized in that, The device configuration method described in any one of claims 1-7 is stored in a computer program that can be loaded by a processor and executed.

Citation Information

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