Display method and display device of vehicle, vehicle and storage medium

By generating intuitive displays of smart device status information on the vehicle's display interface and achieving natural interface transitions, the problem of cumbersome operation of the vehicle's infotainment system has been solved, improving the user experience and the immersive experience of the interface.

CN120886646APending Publication Date: 2025-11-04GREAT WALL MOTOR CO LTD
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Patent Information

Application Number
CN202510350369.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-24
Publication Date
2025-11-04

AI Technical Summary

Technical Problem

The existing vehicle infotainment system lacks scene construction and user experience optimization in its display interface, which makes it cumbersome for users to switch back and forth between different function interfaces, thus affecting the user experience.

Method used

When the target usage scenario and the connection status of the smart device are detected, a second display interface is generated to intuitively display the status information of the smart device. A natural interface transition is achieved by switching virtual cameras to avoid interface switching.

Benefits of technology

It improves user convenience and experience by intuitively displaying the status information of smart devices in the target usage scenario, reducing interface switching and enhancing immersion and visual experience.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention provides a vehicle display method and device, a vehicle and a storage medium, and the method relates to the field of vehicles, and comprises the steps: detecting that the vehicle is in a target use scene, and obtaining a first display interface corresponding to the target use scene; wherein the first display interface comprises a component of a preset intelligent device; when it is detected that target intelligent equipment in the preset intelligent equipment is in a connection state with the vehicle, current state information of the target intelligent equipment is obtained; generating a second display interface based on the first display interface and the current state information of the target intelligent equipment; and displaying the second display interface in the screen of the vehicle. According to the method, the components of the target intelligent equipment and the current state information of the target intelligent equipment can be displayed in the screen of the vehicle at the same time, a user is prevented from switching in different interfaces, and the convenience of user operation is improved.
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Description

TECHNICAL FIELD

[0001] The present application relates to the field of vehicles, and more particularly, to a display method of a vehicle, a display device, a vehicle and a storage medium. BACKGROUND

[0002] In the prior art, the display interface of the vehicle system is usually a functional operation interface, and lacks scene construction of the vehicle system and optimization of user experience. When the vehicle is in a specific scene (for example, an outdoor scene), due to the independent distribution of the functions of the vehicle system and the less state display information of the intelligent device, the user needs to switch back and forth between different functional interfaces, which is more cumbersome and affects the user's experience.

[0003] Therefore, how to display the vehicle screen to improve the user's experience is a technical problem to be solved at present. SUMMARY

[0004] The present application provides a display method of a vehicle, a display device, a vehicle and a storage medium, which can intuitively display the state information of the target intelligent device in the second display interface under the target use scene, avoid the user switching between different interfaces, improve the convenience of user operation, and further improve the user experience.

[0005] In a first aspect, a display method of a vehicle is provided, the method comprising:

[0006] detecting that the vehicle is in a target use scene, and obtaining a first display interface corresponding to the target use scene; wherein the first display interface includes components of preset intelligent devices;

[0007] obtaining current state information of a target intelligent device in the preset intelligent devices when it is detected that the target intelligent device and the vehicle are in a connected state;

[0008] generating a second display interface based on the first display interface and the current state information of the target intelligent device; wherein the second display interface includes the current state information of the target intelligent device and the components of the preset intelligent devices;

[0009] displaying the second display interface in a screen of the vehicle.

[0010] In the embodiments of the present application, when it is detected that the target smart device is in a connected state with the vehicle, current state information of the target smart device is acquired; and a second display interface is generated according to the first display interface and the current state information of the target smart device. Since the first display interface includes components of the preset smart device, and the second display interface is an interface generated according to the first display interface and the current state information of the target smart device, when the second display interface is displayed on the screen of the vehicle, the components of the preset smart device and the current state information of the target smart device can be displayed. Compared with the prior art, in which the user needs to switch different display interfaces through multiple operations to acquire the state information of the target smart device, the present solution can intuitively display the state information of each target smart device in the second display interface in the target use scenario, avoids switching of the user in different interfaces, improves the convenience of user operation, and further improves the user experience.

[0011] In combination with the first aspect, in some implementations of the first aspect, the second display interface is generated based on the first display interface and the current state information of the target smart device, including:

[0012] The component of the target smart device is acquired in a to-be-displayed region in the first display interface;

[0013] Based on the to-be-displayed region, a candidate display region with a distance less than a preset distance threshold from the to-be-displayed region is determined; and a target display region is determined in the candidate display region;

[0014] The current state information of the target smart device is added to the target display region in the first display interface to obtain the second display interface.

[0015] In the embodiments of the present application, the candidate display region with a distance less than a preset distance threshold from the to-be-displayed region is determined, and the target display region is determined in the candidate display region, and the current state information is added to the target display region in the first display interface. Since the distance between the candidate display region and the to-be-displayed region is less than the preset distance threshold, the distance between the target display region displaying the current state information and the candidate display region of the component of the target display device is less than the preset distance threshold, that is, the distance between the component of the target display device and the current state information of the target display device is relatively close, so that the component of the target display device and the state information of the target display device correspond to each other in the second display interface, and the state information of the target display device can be more intuitively displayed.

[0016] In combination with the first aspect and the above implementations, in some implementations of the first aspect, the method further includes:

[0017] Current weather information and time information are acquired;

[0018] In response to detecting that the vehicle is in the target use scenario, a first display interface corresponding to the target use scenario is obtained, including:

[0019] In response to detecting that the vehicle is in the target use scenario, an interface background in the first display interface is determined based on the weather information and the time information.

[0020] The first display interface is obtained based on the interface background and the components of the preset smart device.

[0021] In the embodiments of the present application, if it is detected that the vehicle is in the target use scenario, the interface background of the first display interface is determined according to the current weather information and time information, and the first display interface is obtained according to the interface background and the components of the preset smart device. Since the interface background is generated according to the current weather information and time information, that is, the interface background generated is different when the weather information and time information are different; that is, the interface background can change with the change of the weather information and time information; to ensure that the dynamic change of the interface background of the first display interface can be realized, the display interface under the target use scenario is more immersive, and the user's visual experience is improved.

[0022] In combination with the first aspect and the above implementation manners, in some implementation manners of the first aspect, the method further includes:

[0023] If it is detected that the first smart device corresponding to the target use scenario and the vehicle are in a connected state, the components of the first smart device and the current state information of the first smart device are determined; wherein the first smart device is a smart device other than the preset smart device;

[0024] The second display interface is generated based on the first display interface and the current state information of the target smart device, including:

[0025] The second display interface is generated based on the first display interface, the current state information of the target smart device, the components of the first smart device, and the current state information of the first smart device.

[0026] In the embodiments of the present application, since the first smart device is a smart device other than the preset smart device corresponding to the target use scenario; therefore, when it is detected that the first smart device and the vehicle are in a connected state, in order to display the state information of each smart device in a connected state with the vehicle (including the target smart device and the first smart device) in the second display interface, the second display interface is generated according to the first display interface, the current state information of the target smart device, the components of the first smart device, and the current state information of the first smart device.

[0027] In combination with the first aspect and the above implementation manners, in some implementation manners of the first aspect, the method further includes:

[0028] If the operation on the component of the target smart device is detected in the second display interface, a target control interface of the target smart device is displayed in the second display interface;

[0029] The target smart device is controlled through the target control interface; and the target control interface is used to implement the control function on the target smart device.

[0030] It should be noted that the target control interface is a control interface obtained by adding a control window (or a control component) corresponding to the target smart device in the second control interface; and the control window (or the control component) corresponding to the target smart device is used to control the target smart device.

[0031] In the embodiments of the present application, if the operation on the component of the target smart device is detected, the target control interface of the target smart device is displayed in the second display interface, and the target smart device is controlled through the target control interface. Since the target control interface is a control interface obtained by adding a control window of the target smart device in the second display interface, when the target smart device is controlled through the target control interface, it is not necessary to switch between interfaces, and the target smart device can be directly controlled through the target display interface, so that the user operation is more convenient, and the operation experience of the user is improved.

[0032] For example, if the operation on the component of the second smart device is detected in the second display interface, the first display information is displayed; the second smart device is a device other than the target smart device in the preset smart device. That is, the second smart device is a device in the preset smart device that is not in a connected state with the vehicle; the first display information is used to represent the description information of the second smart device; when the first display information is clicked, the second display interface jumps to the recommendation information of the second smart device; the recommendation information can include a purchase link of the second smart device, or can include information of different stores selling the second smart device.

[0033] In the embodiments of the present application, the first display information (representing the description information of the second smart device) is displayed; when the first display information is clicked, it indicates that the user has a use demand for the second smart device, and the purchase interface of the second smart device is jumped to; that is, when it is predicted that the user has a use demand for the second smart device, the purchase interface of the second smart device is jumped to, and the user does not need to manually click to switch to the purchase interface, so that the user operation is more convenient.

[0034] In combination with the first aspect and the above implementation manners, in some implementation manners of the first aspect, further comprising:

[0035] If the operation on the interface element in the second display interface is detected, the moving position and the moving distance of the virtual camera are determined based on the position of the interface element in the second display interface, the position and the shooting direction of the virtual camera;

[0036] The virtual camera is moved based on the moving direction and the moving distance, so that the second display interface is switched to a third display interface; the third display interface is a display interface centered on the interface element.

[0037] In the embodiments of the present application, if the operation on the interface element in the second display interface is detected, the moving position and the moving distance of the virtual camera are determined according to the position of the interface element in the target display interface, the position and the shooting direction of the virtual camera, and the virtual camera is moved to switch the second display interface to the third display interface. Since the second display interface is switched to the third display interface by moving the virtual camera, the harshness of interface switching is eliminated, and the process of interface switching is more smooth and natural.

[0038] In combination with the first aspect and the above implementation manners, in some implementation manners of the first aspect, the target smart device includes at least one sensor, and the sensor includes a temperature sensor, a humidity sensor, and a power sensor;

[0039] When it is detected that the target smart device in the preset smart device and the vehicle are in a connected state, current state information of the target smart device is acquired, including:

[0040] The current state information of the target smart device is collected by the at least one sensor in the target smart device; when it is detected that the target smart device and the vehicle are in a connected state, the current state information collected by the at least one sensor is acquired.

[0041] In the embodiments of the present application, since the target smart device includes at least one sensor, the state information of the target smart device can be collected by the at least one sensor in the target smart device; when the target smart device and the vehicle are in a connected state, the vehicle acquires the data collected by the sensor, so that the vehicle can acquire the state information of the target smart device.

[0042] In combination with the first aspect and the above implementation manners, in some implementation manners of the first aspect, the target use scenario includes an outdoor scenario; the first display interface includes an interface background, an interface element, and a component of a preset smart device;

[0043] In the outdoor scenario, the interface element includes at least one of a vehicle element, a tent element, and a bonfire element; and each smart device includes at least one of a smart refrigerator, an intercom, a smart water cup, a smart aromatherapy, and a projection screen.

[0044] In the embodiments of the present application, the target use scenario includes an outdoor scene, the first display interface includes an interface background, interface elements and components of the preset smart device, the atmosphere of the outdoor scene is created through the interface background and the interface elements, and the control of the smart device is realized through the components of the preset smart device.

[0045] In a second aspect, a display device of a vehicle is provided, and the device includes:

[0046] An acquisition module is configured to detect that the vehicle is in a target use scenario, and acquire a first display interface corresponding to the target use scenario; wherein the first display interface includes components of a preset smart device.

[0047] A processing module is configured to, when detecting that a target smart device in the preset smart device is in a connected state with the vehicle, acquire current state information of the target smart device; generate a second display interface based on the first display interface and the current state information of the target smart device; wherein the second display interface includes the current state information of the target smart device and the components of the preset smart device; and display the second display interface in a screen of the vehicle.

[0048] With reference to the second aspect, in some implementations of the second aspect, the acquisition module is specifically configured to acquire a display area to be displayed of the components of the target smart device in the first display interface; and the processing module is specifically configured to, based on the display area to be displayed, determine a candidate display area with a distance less than a preset distance threshold from the display area to be displayed, and determine a target display area in the candidate display area; and add the current state information of the target smart device to the target display area in the first display interface to obtain the second display interface.

[0049] With reference to the first aspect and the above implementations, in some implementations of the first aspect, the acquisition module is further configured to acquire current weather information and time information; and the processing module 720 is specifically configured to, when detecting that the vehicle is in the target use scenario, determine an interface background in the first display interface based on the weather information and the time information; and obtain the first display interface based on the interface background and the components of the preset smart device.

[0050] With reference to the first aspect and the above implementations, in some implementations of the first aspect, the processing module is specifically configured to, if detecting that a first smart device corresponding to the target use scenario is in a connected state with the vehicle, determine components of the first smart device and current state information of the first smart device; wherein the first smart device is a smart device other than the preset smart device; and generate the second display interface based on the first display interface, the current state information of the target smart device, the components of the first smart device and the current state information of the first smart device.

[0051] With reference to the first aspect and the above implementation manners, in some implementations of the first aspect, the processing module is further configured to: if the operation on the component of the target smart device is detected in the second display interface, display a target control interface of the target smart device in the second display interface; and control the target smart device through the target control interface, wherein the target control interface is used to implement the control function of the target smart device.

[0052] With reference to the first aspect and the above implementation manners, in some implementations of the first aspect, the processing module is further configured to: if the operation on the interface element in the second display interface is detected, determine the moving position and the moving distance of the virtual camera based on the position of the interface element in the second display interface, the position and the shooting direction of the virtual camera; and move the virtual camera based on the moving direction and the moving distance, so that the second display interface is switched to a third display interface, wherein the third display interface is a display interface centered on the interface element.

[0053] With reference to the first aspect and the above implementation manners, in some implementations of the first aspect, the processing module is further configured to: if the operation on the component of the target smart device is detected, determine the moving position and the moving distance of the virtual camera based on the position of the component of the target smart device in the target display interface, the position and the shooting direction of the virtual camera; and move the virtual camera based on the moving direction and the moving distance, so that the second display interface is switched to a third display interface, wherein the third display interface is a display interface centered on the target smart device.

[0054] With reference to the first aspect and the above implementation manners, in some implementations of the first aspect, the processing module is specifically configured to: collect current state information of the target smart device through at least one sensor in the target smart device; and obtain the current state information collected by the at least one sensor when it is detected that the target smart device and the vehicle are in a connected state.

[0055] In a third aspect, a vehicle is provided, including a memory and a processor, the memory is configured to store executable program code, and the processor is configured to call and run the executable program code from the memory, so that the vehicle executes the method in the first aspect or any possible implementation manner of the first aspect.

[0056] In a fourth aspect, a computer program product is provided, which includes computer program code, when the computer program code is run on a computer, so that the computer executes the method in the first aspect or any possible implementation manner of the first aspect.

[0057] In a fifth aspect, a computer readable storage medium is provided, which stores a computer program. When the computer program is executed, the method in the first aspect or any possible implementation manner of the first aspect is implemented. BRIEF DESCRIPTION OF DRAWINGS

[0058] Figure 1 is a scenario schematic view provided by an embodiment of the present application;

[0059] Figure 2 is a display interface schematic view of a vehicle screen provided by an embodiment of the present application;

[0060] Figure 3 is a display interface schematic view of a vehicle screen provided by an embodiment of the present application;

[0061] Figure 4 is another display interface schematic view of a vehicle screen provided by an embodiment of the present application;

[0062] Figure 5 is a schematic flow chart of a display method of a vehicle provided by an embodiment of the present application;

[0063] Figure 6 is another schematic flow chart of a display method of a vehicle provided by an embodiment of the present application;

[0064] Figure 7 is a structural schematic view of a display device of a vehicle provided by an embodiment of the present application;

[0065] Figure 8 is a structural schematic view of a vehicle provided by an embodiment of the present application. DETAILED DESCRIPTION

[0066] The technical solutions in the present application will be described clearly and exhaustively in combination with the drawings. In the description of the embodiments of the present application, unless otherwise specified, “ / ” represents or, for example, A / B can represent A or B: the “and / or” in the text only describes the association relationship of the associated objects, which means that there can be three relationships, for example, A and / or B, which means that there are three cases of A alone, A and B together, and B alone. In addition, in the description of the embodiments of the present application, “multiple” means two or more than two.

[0067] Hereinafter, the terms “first” and “second” are only used for description purposes, and cannot be understood as implying or suggesting relative importance or implicitly indicating the number of indicated technical features. Therefore, the features defined with “first” and “second” can explicitly or implicitly include one or more features.

[0068] In the prior art, the display interface of the vehicle machine system is usually a functional operation interface, and lacks scene construction of the vehicle machine system and optimization of user experience. When the vehicle is in a specific scene (for example, an outdoor scene), due to independent distribution of functions of the vehicle machine system and less state display information of the intelligent device, the user needs to switch back and forth between different functional interfaces, which is relatively cumbersome and affects the user experience. Therefore, how to display the vehicle screen to improve the user experience is a technical problem to be solved at present.

[0069] Therefore, the present application provides a display method of a vehicle, a display device, a vehicle and a storage medium. When it is detected that a target intelligent device is in a connection state with the vehicle, current state information of the target intelligent device is acquired; a second display interface is generated according to the current state information and a first display interface, and the second display interface is displayed. Through the embodiments of the present application, the state information of the target intelligent device can be intuitively displayed in the second display interface in the target use scene, avoiding the user switching between different interfaces, improving the convenience of user operation, and further improving the user experience.

[0070] Figure 1 is a scene schematic diagram provided by an embodiment of the present application.

[0071] As shown in scene 100 in Figure 1 , the scene 100 includes a central control screen 110 of the vehicle. When the vehicle is in a target use scene (for example, an outdoor scene), the central control screen of the vehicle displays a display interface corresponding to the target use scene, and the display interface includes scene elements in the outdoor scene such as the vehicle, the tent and the like, thereby creating an outdoor atmosphere through the scene elements.

[0072] For example, the display interface of the central control screen 110 can be as shown in display interface 200 in Figure 2 , the display interface 200 includes different interface elements and intelligent devices; wherein the interface elements include a vehicle element 201, a tent element 202, a bonfire element 208, a camping table and chair element; and the intelligent devices include a drone device 203, a walkie-talkie 204, a smart refrigerator 205, a smart water cup 206, a smart aromatherapy 207 and a projection screen 209. Figure 2

[0073] Figure 2 , the display interface 200 includes different interface elements and intelligent devices; wherein the interface elements include a vehicle element 201, a tent element 202, a bonfire element 208, a camping table and chair element; and the intelligent devices include a drone device 203, a walkie-talkie 204, a smart refrigerator 205, a smart water cup 206, a smart aromatherapy 207 and a projection screen 209.

[0074] For example, as shown in display interface 200 in Figure 2 ​As shown, the status information of each smart device can be displayed in a preset area near the device. For example, the area above the drone device 203 displays the drone device's battery information "Battery: 48%"; the area above the walkie-talkie displays the walkie-talkie's frequency band information "Frequency: A433.100"; the area above the smart water cup 206 displays the smart water cup's status information (liquid temperature) "Hot drink"; the area above the smart aromatherapy diffuser 207 displays the smart aromatherapy's set duration information "10 minutes"; and the area below the smart refrigerator 205 displays the smart refrigerator's temperature information "-10℃", etc.

[0075] For example, Figure 2 The interface elements shown are used to create an outdoor atmosphere or to implement specific functions corresponding to the interface elements; the smart devices in the display interface are displayed in the form of components, and the components of the smart devices can be used to control the smart devices.

[0076] Among them, vehicle element 201 is the center of the scene in the display interface, serving as the core connection point between functions and the scene; tent element 202 symbolizes the outdoor camping scene and is located in the display area next to the vehicle; campfire element 208 is the core element for creating the scene atmosphere, forming a viewing area with camping table and chair elements and a projection screen. The smart refrigerator 205 in the smart device is adjacent to the camping table and supports switching between refrigeration modes; the walkie-talkie is placed in the table and chair area for voice communication or navigation; the projection screen is located opposite the campfire, forming a viewing area with the camping table and chair elements.

[0077] It should be noted that by manipulating the interface elements or smart devices in the display interface 200, the corresponding functions of the interface elements or smart devices can be realized, combined with... Figure 3 and Figure 4 The diagram shown illustrates the display interface of the vehicle screen.

[0078] For example, when the vehicle element 201 in the display interface 200 is clicked, the vehicle enters a 3D viewing mode; as... Figure 3 The diagram in (a) shows the display interface of the car viewing mode. In the 3D car viewing mode, the details of the vehicle are displayed from all angles through high-definition 3D modeling. Users can view the exterior design of the vehicle through the 3D car model, including body lines, paint texture, vehicle outline and headlight details, etc.

[0079] For example, when the tent element 202 in the display interface 200 is clicked, the vehicle enters a nap mode; as Figure 3The diagram in (b) shows the display interface of the nap mode; it displays the set duration of the nap mode. After the user sets the duration and clicks start, the vehicle enters the nap mode. The nap mode provides a resting environment for the user inside the vehicle, helping them recover their energy in a short time. It typically creates a suitable resting environment through sound and visuals, such as playing natural environmental sound effects (like rain, forest, birdsong) or white noise, and displaying natural scenery images, providing visual enjoyment while allowing the user to feel immersed and relax.

[0080] For example, when the smart refrigerator 205 in the display interface 200 is clicked, if the smart refrigerator is connected to the vehicle, the control interface of the smart refrigerator will be displayed in the display interface 200; Figure 3 The diagram shown in (c) illustrates the control interface of the smart refrigerator. The smart refrigerator can be turned on or off, its working mode can be selected, and its temperature or cooling efficiency can be adjusted. The smart refrigerator can be controlled through its control interface.

[0081] For example, when the projection screen 209 in the display interface 200 is clicked, the vehicle enters the movie viewing mode (or movie viewing space), such as... Figure 4 The image shows a schematic diagram of the viewing mode interface. In viewing mode, users can select and play video clips.

[0082] It should be noted that the above Figure 1 to Figure 4 The interface display method shown in the scenario is only one possible display method in actual application, and does not limit the interface display method used in actual application. The specific interface display method can be determined according to the actual situation, and is not limited here.

[0083] Figure 5 This is a schematic flowchart illustrating a vehicle display method provided in an embodiment of this application.

[0084] For example, Figure 5 The method 500 shown can be executed by the vehicle; or by the vehicle's infotainment system; or by a processor or chip in the vehicle.

[0085] like Figure 5 As shown, the vehicle display method 500 includes S510 to S540, which are described in detail below.

[0086] S510: The vehicle is detected to be in the target usage scenario, and the first display interface corresponding to the target usage scenario is obtained.

[0087] The first display interface includes components of preset smart devices.

[0088] It can be understood that the first display interface is a display interface corresponding to the target use scenario, and the preset smart devices in the first display interface are smart devices corresponding to the target use scenario, that is, the preset smart devices are preset smart devices associated with the target use scenario. For example, when the target use scenario is an outdoor scenario, the preset smart devices are smart devices corresponding to the outdoor scenario; when the target use scenario is a camping scenario, the preset smart devices are smart devices corresponding to the camping scenario.

[0089] In an implementation manner, current weather information and time information are acquired; it is detected that the vehicle is in the target use scenario, and an interface background of the first display interface is determined based on the weather information and the time information; the first display interface is obtained based on the interface background and the components of the preset smart devices.

[0090] For example, when the target use scenario is an outdoor scenario, the first display interface includes an interface background, interface elements, and components of preset smart devices; the interface background is a background generated according to current time information and weather information, the interface elements are used to create an outdoor scenario atmosphere, and the components of the preset smart devices are used to implement control functions of the smart devices.

[0091] In the embodiments of the present application, the interface background is generated according to the current weather information and time information, that is, the generated interface background is different when the weather information and the time information are different; that is, the interface background can change with the change of the weather information and the time information; ensuring that the dynamic change of the interface background of the first display interface can be realized, so that the display interface in the target use scenario is more immersive, and the visual experience of the user is improved.

[0092] For example, the target use scenario includes an outdoor scenario; the first display interface includes an interface background, interface elements, and components of preset smart devices; in the outdoor scenario, the interface elements include at least one of a vehicle element, a tent element, and a bonfire element; and each smart device includes at least one of a smart refrigerator, a intercom, a smart water cup, a smart incense, and a projection screen.

[0093] For example, when the target use scenario is an outdoor scenario, the first display interface includes an interface background, interface elements, and components of preset smart devices; the interface background is a background generated according to current time information and weather information, the interface elements are used to create an outdoor scenario atmosphere, and the components of the preset smart devices are used to implement control functions of the smart devices.

[0094] Optionally, when the target use scenario is an outdoor scenario, the first display interface can be as shown in the display interface 200 in Figure 2 The display content of the first display interface can refer to the related description of the real interface 200 in Figure 2 This will not be described here again.

[0095] S520, when it is detected that the target intelligent device in the preset intelligent device is in a connected state with the vehicle, current state information of the target intelligent device is acquired.

[0096] For example, in order to acquire the state information of the target intelligent device (such as a smart water cup, a smart refrigerator, etc.) in the vehicle, an integrated Internet of Things (IoT) system is usually required, which collects and processes the data of each target intelligent device through a standardized communication protocol and interface.

[0097] Optionally, the connection mode of the target intelligent device and the vehicle includes but is not limited to Wi-Fi connection, Bluetooth connection, Controller Area Network (CAN) connection, etc. According to the device type and connection mode of the target intelligent device, a suitable communication protocol is selected to ensure that the vehicle and the target intelligent device can effectively communicate.

[0098] Further, when it is detected that the target device in the preset intelligent device is in a connected state with the vehicle, the current state information of the target intelligent device is acquired through at least one sensor in the target intelligent device.

[0099] Specifically, the target intelligent device includes at least one sensor, and the sensor includes a temperature sensor, a humidity sensor and a power sensor; the state information of the target intelligent device is collected through the at least one sensor in the target intelligent device; when it is detected that the target intelligent device is in a connected state with the vehicle, the state information collected by the at least one sensor is acquired.

[0100] For example, the at least one sensor is used to collect the current state information of the target intelligent device, and the collected data is uploaded to the vehicle networking platform through a selected communication protocol; wherein the temperature sensor is used to collect the temperature information of the target intelligent device, the humidity sensor is used to collect the humidity information of the target intelligent device, and the power sensor is used to determine the power information of the target intelligent device.

[0101] Exemplarily, taking the target smart device as a smart refrigerator as an example, the current state information of the target smart device is exemplified. The temperature, humidity and state of stored articles in the smart refrigerator are monitored by at least one sensor in the smart refrigerator. The smart refrigerator is provided with a Wi-Fi module, communicates with the vehicle networking platform through a specific transmission protocol, collects temperature and humidity data every minute, and uploads the data to the vehicle networking platform.

[0102] In the embodiment of the present application, since the target smart device includes at least one sensor, the state information of the target smart device can be collected through the at least one sensor in the target smart device. When the target smart device and the vehicle are in a connected state, the vehicle determines the state information of the target smart device by acquiring the data collected by the sensor.

[0103] In S530, a second display interface is generated based on the first display interface and the current state information of the target smart device.

[0104] In the second display interface, the current state information of the target smart device and the components of the preset smart device are included.

[0105] In an implementation manner, a to-be-displayed region of the components of the target smart device in the first display interface is acquired. Based on the to-be-displayed region, a candidate display region which has a distance less than a preset distance threshold from the to-be-displayed region is determined. A target display region is determined in the candidate display region. The current state information of the target smart device is added to the target display region in the first display interface to obtain the second display interface.

[0106] Exemplarily, based on the to-be-displayed region of the components of the target smart device, a candidate display region is determined. The candidate display region is a region in the first display interface which has a distance less than a preset distance threshold from the to-be-displayed region, and a target display region is determined in the candidate display region.

[0107] It can be understood that the target display region is a region for displaying the current state information of the target smart device. If the distance between the target display region and the to-be-displayed region of the target smart device is large, the user may not be able to quickly determine the target smart device corresponding to the current display state. Therefore, in order to ensure that the target smart device corresponds to the current state information of the target smart device, the current state information of the target smart device is displayed in a display region which is close to the components of the target smart device (i.e., the distance between the display region and the components of the target smart device is less than a preset distance threshold).

[0108] Optionally, when the target display region is determined in the candidate display region, the target display region is a region in the candidate display region except the first display region; and the first display region is a display region in the first display interface in which the interface element and the component of the smart device are located, i.e., the first display region is a display region in the candidate display region except the display region in which the interface element and the component of the smart device are located.

[0109] It should be noted that, in the second display interface, when the interface element or the component of the target smart device is operated, the corresponding function is implemented (for example, see the related description in Figure 3 With Figure 4 , and when the current display state of the target display region is operated, the corresponding function is also implemented (for example, clicking the current display state displays the description information of the current state of the target smart device or displays the historical state information of the target smart device). If the current display state of the target smart device is displayed in the region in which the component of the target smart device is located, when the user operates the component of the target smart device, a false touch may be generated. Therefore, in order to avoid the false touch, the target display region is determined in the display region in the candidate display region except the display region in which the interface element and the component of the smart device are located.

[0110] In the embodiments of the present application, since the distance between the candidate display region and the to-be-displayed region is less than the preset distance threshold, the distance between the target display region in which the current state information is displayed and the candidate display region of the component of the target display device is less than the preset distance threshold, i.e., the distance between the component of the target display device and the current state information of the target display device is relatively close, which ensures that in the second display interface, the component of the target display device corresponds to the state information of the target display device, and the state information of the target display device can be displayed more intuitively.

[0111] In an implementation manner, if it is detected that the first smart device corresponding to the target use scenario and the vehicle are in a connection state, the component of the first smart device and the current state information of the first smart device are determined; the first smart device is a smart device except the preset smart device; and the second display interface is generated based on the first display interface, the current state information of the target smart device, the component of the first smart device, and the current state information of the first smart device.

[0112] Exemplarily, the first smart device corresponds to a smart device other than the preset smart device in the target use scenario; therefore, when it is detected that the first smart device is in a connection state with the vehicle, in order to display the state information of the smart device in a connection state with the vehicle (including the target smart device and the first smart device) in the second display interface, the second display interface is generated according to the first display interface, the current state information of the target smart device, and the component of the first smart device and the current state information of the first smart device.

[0113] S540, displaying the second display interface in the screen of the vehicle.

[0114] Exemplarily, the second display interface is obtained by adding the state information of the target smart device into the target display area of the first display interface. For example, the second display interface can be as shown in Figure 2 .

[0115] In an implementation manner, if an operation on the component of the target smart device is detected in the second display interface, a target control interface of the target smart device is displayed in the second display interface; the target smart device is controlled through the target control interface; and the target control interface is used to realize the control function of the target smart device.

[0116] Exemplarily, if an operation on the component of the target smart device is detected in the second display interface, a target control interface of the target smart device is displayed in the second display interface; and the operation on the component of the target smart device can be a click operation or a sliding operation. The application does not limit the interaction mode of the component. The target control interface of the target smart device is triggered by the operation on the component of the target smart device, and the target smart device is controlled through the target control interface.

[0117] For example, when the target smart device, i.e., the smart refrigerator, is clicked, the target control interface of the smart refrigerator is displayed in the second display interface, as shown in (c) of Figure 3 .

[0118] In the embodiments of the application, the target control interface is a control interface obtained by adding a control window of the target smart device in the second display interface; therefore, when the target smart device is controlled through the target control interface, it is not necessary to switch between interfaces, and the target smart device can be directly controlled through the target display interface, so that the user operation is more convenient, and the operation experience of the user is improved.

[0119] In one implementation, if an operation on an interface element in the second display interface is detected, the movement position and distance of the virtual camera are determined based on the position of the interface element in the second display interface, the position of the virtual camera, and its shooting direction. Based on the movement direction and distance, the virtual camera is moved to switch the second display interface to a third display interface. The third display interface is a display interface centered on interface elements, including vehicle elements, tent elements, and campfire elements.

[0120] For example, if an operation on a vehicle element in the second display interface is detected, the second display interface switches to a third display interface centered on the vehicle element (e.g., ...). Figure 3 (as shown in (a)); if an operation on the tent element is detected, the second display interface switches to a third display interface centered on the tent element (as shown in (a)); Figure 3 As shown in (b)), the current view is from inside the tent, looking outwards; if an operation on the campfire element in the second display interface is detected, the second display interface switches to a display interface centered on the campfire element (e.g., Figure 3 (as shown in (a)).

[0121] It is understandable that the above method of switching the displayed image by moving the virtual camera is a "one-shot" technology switch. By moving the virtual camera, different functional modules are seamlessly connected, avoiding the feeling of interface fragmentation.

[0122] In the embodiments of this application, the movement position and distance of the virtual camera are determined based on the position of the interface elements in the target display interface, the position of the virtual camera, and the shooting direction. The virtual camera is then moved to switch the second display interface to the third display interface. Since the switch from the second to the third display interface is achieved by moving the virtual camera, the abruptness of the interface transition is eliminated, making the process smoother and more natural.

[0123] Optionally, when an interface element in the second display interface is clicked, the corresponding dynamic effects of each interface element are displayed; for example, clicking the tent element transitions the screen to a nighttime starry sky scene; clicking the projection screen triggers a gradual animation of the projection light, which, together with the projection light effects of the projection screen, further creates a scene atmosphere that matches the target usage scenario.

[0124] In one possible implementation, if the target smart device includes a projection screen, and an operation on a component of the projection screen in the second display interface is detected, the vehicle is controlled to activate cinema mode or the viewing space (e.g., Figure 4If the playing operation on the target content is started in the cinema mode, the vehicle is controlled to project the target content in the projection curtain. The projection curtain is controlled to realize the projection operation through the second display interface, so that the projection demand of the user in the outdoor scene can be met, and the operation is convenient.

[0125] In the above embodiment, when it is detected that the target smart device is in a connection state with the vehicle, current state information of the target smart device is acquired; and the second display interface is generated according to the first display interface and the current state information of the target smart device. Since the first display interface includes components of the preset smart device, and the second display interface is an interface generated according to the first display interface and the current state information of the target smart device, when the second display interface is displayed on the screen of the vehicle, the components of the preset smart device and the current state information of the target smart device can be displayed. Compared with the prior art, in which the user needs to switch different display interfaces through multiple operations to acquire the state information of the target smart device, the state information of each target smart device can be intuitively displayed in the second display interface in the target use scenario, the user is avoided from switching in different interfaces, the convenience of user operation is improved, and the user experience is improved.

[0126] Figure 6 FIG. 6 is a schematic flowchart of another display method of a vehicle provided by an embodiment of the present application.

[0127] Figure 6 The method 600 shown in the figure can be executed by the vehicle, or can be executed by the infotainment system of the vehicle; or can be executed by a processor or a chip in the vehicle.

[0128] As shown in the figure, the display method 600 of the vehicle includes S601 to S610, and the following describes S601 to S610 in detail. Figure 6

[0129] S601, it is detected that the vehicle is in a target use scenario, and a first display interface corresponding to the target use scenario is acquired.

[0130] Optionally, the implementation of S601 can refer to the related description of S510 in Figure 5 , and details are not described herein.

[0131] S602, a preset smart device corresponding to the target use scenario is determined.

[0132] For example, the preset smart device corresponding to the target use scenario is determined; that is, the preset smart device is a preset smart device associated with the target use scenario.

[0133] ​For example, if the target use scenario is a long-distance travel scenario, the corresponding preset smart devices can include a vehicle-mounted intelligent navigation instrument, a driver fatigue monitoring device, a foldable inflatable mattress, and a multifunctional vehicle-mounted power supply device. The vehicle-mounted intelligent navigation instrument is used to determine the real-time road conditions and optimize the path according to the real-time road conditions. The driver fatigue monitoring device is used to perform face recognition and trigger an alarm when the user is in a fatigue driving state. The foldable inflatable mattress can be inflated and deflated by a vehicle-mounted air pump. The multifunctional vehicle-mounted power supply device is used to provide power for devices in the vehicle.

[0134] For example, if the target use scenario is an outdoor camping scenario, the corresponding preset smart devices can include Figure 2 The various smart devices shown in the above embodiments can also include a vehicle-mounted solar cooking box, a smart outdoor lighting device, and a water purification device.

[0135] It should be noted that the above is an example of the target use scenario and the preset smart devices corresponding to the target use scenario, and does not limit the use scenarios and smart devices corresponding to the use scenarios that can be included in actual applications. The specific use scenarios and smart devices corresponding to the use scenarios can be determined according to actual conditions, and are not limited herein.

[0136] S603, determining a target smart device in the preset smart devices that is in a connected state with the vehicle.

[0137] For example, a target smart device in the preset smart devices that is in a connected state with the vehicle is determined. The connection mode of the target smart device with the vehicle includes, but is not limited to, a Wi-Fi connection, a Bluetooth connection, a Controller Area Network (CAN) connection, and the like. According to the device type and connection mode of the target smart device, a suitable communication protocol is selected to ensure effective communication between the vehicle and the target smart device.

[0138] S604, obtaining current state information of the target smart device.

[0139] For example, the current state information of the target smart device is collected by at least one sensor in the target smart device. When it is detected that the target smart device is in a connected state with the vehicle, the vehicle obtains the state information collected by the at least one sensor. The current state information of the target smart device includes, but is not limited to, power information, temperature information, humidity information, and operation information of a control operation.

[0140] Optionally, the implementation of S602 to S604 can refer to the related description of S520 in Figure 5

[0141] ​S605, acquire an initial display region of the target smart device in the first display interface.

[0142] For example, the initial display region of the target smart device is a preset display region.

[0143] S606, determine a candidate display region according to the initial display region.

[0144] For example, the candidate display region is determined according to the initial display region, and the distance between the candidate display region and the initial display region is less than a preset distance threshold.

[0145] S607, determine a target display region in the candidate display region.

[0146] For example, the target display region is determined as a region in the candidate display region, except for a region in which an interface element and a component of the preset smart device are located.

[0147] S608, add the current state information of the target smart device to the target display region to obtain a second display interface.

[0148] For example, the current state information of the target smart device is added to the target display region to obtain the second display interface, that is, the second display interface is a display interface obtained by adding the current state information of the target smart device to the first display interface.

[0149] Optionally, the implementation manners of S605 to S608 can refer to the related description of S530 in Figure 5 , and details are not described herein.

[0150] S609, if an operation on a component of the target smart device is detected, display a target control interface of the target smart device in the second display interface.

[0151] For example, if an operation on a component of the target smart device in the second display interface is detected, display the target control interface in the second display interface; the target control interface is used for controlling the target smart device.

[0152] S610, control the target smart device through the target control interface.

[0153] Optionally, the implementation manners of S609 to S610 can refer to the related description of S540 in Figure 5 , and details are not described herein.

[0154] In the embodiments of this application, the current status information of the target smart device is added and displayed in the target display area to obtain a second display interface. This ensures that the components of the preset smart device and the current status information of the target smart device can be displayed in the second display interface, avoiding the need for the user to switch between different interfaces, improving the convenience of user operation, and thus enhancing the user experience. Furthermore, by displaying the target control interface of the target smart device in the second display interface, control of each target smart device can be achieved within the second display interface, making operation more convenient and improving the user's operating experience.

[0155] Understandably, the technical method of this application integrates operational functions into the display interface corresponding to the target usage scenario by combining functional requirements and visual elements. Through reasonable layout and visual design, the function and scene are deeply integrated. Users can complete operations by clicking on components of smart devices or interface elements in the interface, creating an atmosphere consistent with the target usage scenario. After clicking on different smart device components, the display interface switches seamlessly through "one-shot" technology, connecting different functional modules, avoiding interface fragmentation, eliminating the abruptness of function switching, and making the scene experience more fluid and natural. This solves the problem of fragmented user experience caused by functional design lacking a sense of scene; it dynamically changes the elements in the scene according to user operations, satisfying users' emotional needs for intuitive access to functions and immersive experience.

[0156] The above text combined Figure 1 to Figure 6 The vehicle display method provided in the embodiments of this application is described in detail below; the following will be combined with Figure 7 and Figure 8 The apparatus embodiments of this application are described in detail below. It should be understood that the apparatus in the embodiments of this application can perform the various methods described in the foregoing embodiments of this application, that is, the specific working processes of the various products described below can be referred to the corresponding processes in the foregoing method embodiments.

[0157] Figure 7 This is a schematic diagram of the structure of a vehicle display device provided in an embodiment of this application.

[0158] For example, such as Figure 7 As shown, the vehicle's display device 700 includes:

[0159] The acquisition module 710 is used to detect that the vehicle is in a target usage scenario and acquire the first display interface corresponding to the target usage scenario; wherein, the first display interface includes components of a preset smart device; when it is detected that the target smart device in the preset smart device is connected to the vehicle, the current status information of the target smart device is acquired;

[0160] The processing module 720 is configured to generate a second display interface based on the first display interface and current state information of the target smart device; the second display interface includes the current state information of the target smart device and components of the preset smart device; and the second display interface is displayed on a screen of the vehicle.

[0161] Optionally, as an embodiment, the acquisition module 710 is specifically configured to acquire a display area of the components of the target smart device in the first display interface.

[0162] The processing module 720 is specifically configured to determine a candidate display area with a distance less than a preset distance threshold based on the display area, determine a target display area in the candidate display area, add the current state information of the target smart device to the target display area in the first display interface, and obtain the second display interface.

[0163] Optionally, as an embodiment, the acquisition module 710 is further configured to acquire current weather information and time information.

[0164] The processing module 720 is specifically configured to detect that the vehicle is in a target use scenario, determine an interface background in the first display interface based on the weather information and the time information, and obtain the first display interface based on the interface background and the components of the preset smart device.

[0165] Optionally, as an embodiment, the processing module 720 is specifically configured to determine components of a first smart device and current state information of the first smart device if it is detected that the first smart device corresponding to the target use scenario and the vehicle are in a connected state; the first smart device is a smart device other than the preset smart device; and the second display interface is generated based on the first display interface, the current state information of the target smart device, the components of the first smart device, and the current state information of the first smart device.

[0166] Optionally, as an embodiment, the processing module 720 is further configured to display a target control interface of the target smart device in the second display interface if an operation on the components of the target smart device is detected in the second display interface, and control the target smart device through the target control interface; the target control interface is used to implement a control function on the target smart device.

[0167] Optionally, as an embodiment, the processing module 720 is further configured to determine a movement position and a movement distance of a virtual camera based on a position of an interface element in the second display interface, the position and a shooting direction of the virtual camera if an operation on the interface element in the second display interface is detected, move the virtual camera based on the movement direction and the movement distance, and switch the second display interface to a third display interface; the third display interface is a display interface centered on the interface element.

[0168] Optionally, as an embodiment, the processing module 720 is further configured to: if the operation on the component of the target smart device is detected, determine a moving position and a moving distance of the virtual camera based on the position of the component of the target smart device in the target display interface, the position and the shooting direction of the virtual camera; and move the virtual camera based on the moving direction and the moving distance, so that the second display interface is switched to a third display interface; wherein the three display interfaces are display interfaces centered on the target smart device.

[0169] Optionally, as an embodiment, the processing module 720 is specifically configured to: collect state information of the target smart device through at least one sensor in the target smart device; and obtain the state information collected by the at least one sensor when it is detected that the target smart device is in a connected state with the vehicle.

[0170] It should be noted that the display device of the vehicle described above is embodied in the form of a functional unit. The term "module" herein can be implemented in the form of software and / or hardware, and no specific limitation is made.

[0171] For example, the "module" can be a software program, a hardware circuit or a combination of both, which realizes the above functions. The hardware circuit can include an application specific integrated circuit (ASIC), an electronic circuit, a processor (such as a shared processor, a dedicated processor or a group processor, etc.) and a memory for executing one or more software or firmware programs, a combination logic circuit and / or other suitable components supporting the described functions.

[0172] Therefore, the units of each example described in the embodiments of the present application can be realized in the form of electronic hardware or a combination of computer software and electronic hardware. Whether the functions are performed in hardware or software depends on the specific application and design constraints of the technical solution. A person skilled in the art can use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of the present application.

[0173] Figure 8 FIG. 1 is a structural schematic diagram of a vehicle according to an embodiment of the present application.

[0174] For example, the vehicle 800 includes a processor 810, a memory 820 and executable program code 830.

[0175] Exemplarily, the vehicle 800 comprises one or more processors 810, which can support the vehicle 800 to implement the display method of the vehicle in the method embodiments. The processor 810 can be a general-purpose processor or a special-purpose processor. For example, the processor 810 can be a central processing unit (CPU), a digital signal processor (DSP), an application specific integrated circuit (ASIC), a field programmable gate array (FPGA) or other programmable logic device, such as a discrete gate, transistor logic device or discrete hardware component.

[0176] Exemplarily, the processor 810 can be used to control the vehicle 800, execute a software program, and process data of the software program. The vehicle 800 can further comprise a communication unit to implement input (reception) and output (transmission) of signals.

[0177] Exemplarily, the vehicle 800 can comprise one or more memories 820, which have executable program codes 830 stored thereon. The executable program codes 830 can be run by the processor 810 to generate instructions, so that the processor 810 executes the display method of the vehicle described in the above method embodiments according to the instructions.

[0178] Optionally, the memory 820 can further store data. Optionally, the processor 810 can further read the data stored in the memory 820. The data can be stored in the same storage address as the executable program codes 830, or the data can be stored in different storage addresses from the executable program codes 830.

[0179] Exemplarily, the processor 810 and the memory 820 can be separately arranged or integrated together, for example, integrated on a system on chip (SOC) of the terminal device.

[0180] Exemplarily, the memory 820 can be configured to store a program related to the display method of the vehicle provided in the embodiments of the present application, and the processor 820 can be configured to invoke the executable program code 830 stored in the memory 820 to execute the display method of the vehicle in the embodiments of the present application when the vehicle is controlled; for example, detecting that the vehicle is in a target use scenario, obtaining a first display interface corresponding to the target use scenario; wherein the first display interface includes components of a preset smart device; when it is detected that a target smart device in the preset smart device is in a connected state with the vehicle, obtaining current state information of the target smart device; generating a second display interface based on the first display interface and the current state information of the target smart device; wherein the second display interface includes the current state information of the target smart device and the components of the preset smart device; and displaying the second display interface in a screen of the vehicle.

[0181] The present application also provides a computer readable storage medium, which stores a computer program, and the program is executed by a processor to implement the steps of the display method of the vehicle in any of the above embodiments.

[0182] The computer readable storage medium can include, but is not limited to, any type of disk, including a floppy disk, an optical disk, a Digital Video Disc (DVD), a Compact Disc Read-Only Memory (CD-ROM), a microdrive, and a magneto-optical disk, a Read-Only Memory (ROM), a Random Access Memory (RAM), an Erasable Programmable Read-Only Memory (EPROM), an Electrically Erasable Programmable Read-Only Memory (EEPROM), a Dynamic Random Access Memory (DRAM), a Video Random Access Memory (VRAM), a flash memory device, a magnetic or optical card, a nanosystem (including a molecular memory IC), or any type of medium or device suitable for storing instructions and / or data.

[0183] The present application also provides a computer program product, which, when running on a computer, causes the computer to execute the above-mentioned related steps to implement the display method of the vehicle in the above embodiments.

[0184] In addition, the vehicle provided by the embodiments of the present application can be a chip, a component or a module, and the vehicle can include a connected processor and a memory; the memory is configured to store instructions, and the processor is configured to invoke and execute the instructions to enable the chip to perform the display method of the vehicle in any of the embodiments.

[0185] The vehicle, the computer readable storage medium, the computer program product or the chip provided by the present application are all configured to perform the display method of the corresponding vehicle provided above, and thus the beneficial effects achieved thereby can refer to those of the display method of the corresponding vehicle provided above, which will not be repeated here.

[0186] From the above description of the embodiments, those skilled in the art can understand that, for the convenience and brevity of description, only the division of the above functional modules is taken as an example for illustration, and in actual application, the above functions can be completed by different functional modules according to needs, that is, the internal structure of the device is divided into different functional modules to complete all or part of the functions described above.

[0187] In the embodiments provided by the present application, it should be understood that the disclosed device and method can be implemented in other ways. For example, the device embodiments described above are only schematic, and the division of the modules or units is only a logical function division, and there can be another division way in actual implementation, for example, a plurality of units or components can be combined or integrated into another device, or some features can be ignored or not executed. In addition, the displayed or discussed mutual coupling or direct coupling or communication connection can be indirect coupling or communication connection through some interfaces, devices or units, and can be electrical, mechanical or other forms.

[0188] The above only serves as a specific implementation of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical range disclosed by the present application, which should be covered by the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.

Claims

1. A method for displaying a vehicle, characterized in that, The method includes: The vehicle is detected to be in a target usage scenario, and a first display interface corresponding to the target usage scenario is obtained; wherein, the first display interface includes components of a preset smart device; When it is detected that the target smart device in the preset smart devices is connected to the vehicle, the current status information of the target smart device is obtained; A second display interface is generated based on the first display interface and the current state information of the target smart device; wherein, the second display interface includes the current state information of the target smart device and the components of the preset smart device; The second display interface is displayed on the screen of the vehicle.

2. The method according to claim 1, characterized in that, The step of generating a second display interface based on the first display interface and the current state information of the target smart device includes: Obtain the displayable area of ​​the components of the target smart device in the first display interface; Based on the area to be displayed, candidate display areas are determined whose distance from the area to be displayed is less than a preset distance threshold; and among the candidate display areas, the target display area is determined. The current status information of the target smart device is added to the target display area in the first display interface to obtain the second display interface.

3. The method according to claim 1, characterized in that, Also includes: Get the current weather and time information; The step of detecting that the vehicle is in a target usage scenario and obtaining the first display interface corresponding to the target usage scenario includes: The vehicle is detected to be in the target usage scenario. Based on the weather information and the time information, the interface background in the first display interface is determined. The first display interface is obtained based on the interface background and the components of the preset smart device.

4. The method according to claim 1, characterized in that, Also includes: If it is detected that the first smart device corresponding to the target usage scenario is connected to the vehicle, the components of the first smart device and the current state information of the first smart device are determined; wherein, the first smart device is a smart device other than a preset smart device; The step of generating a second display interface based on the first display interface and the current state information of the target smart device includes: The second display interface is generated based on the first display interface, the current state information of the target smart device, the components of the first smart device, and the current state information of the first smart device.

5. The method according to any one of claims 1 to 4, characterized in that, Also includes: If an operation on a component of the target smart device is detected in the second display interface, the target control interface of the target smart device is displayed in the second display interface; The target intelligent device is controlled through the target control interface; wherein, the target control interface is used to implement the control function of the target intelligent device.

6. The method according to any one of claims 1 to 4, characterized in that, Also includes: If an operation on an interface element in the second display interface is detected, the movement position and movement distance of the virtual camera are determined based on the position of the interface element in the second display interface, the position of the virtual camera, and the shooting direction. Based on the direction of movement and the distance of movement, the virtual camera is moved so that the second display interface switches to the third display interface; wherein, the third display interface is a display interface centered on the interface element.

7. The method according to claim 1, characterized in that, The target intelligent device includes at least one sensor, which includes a temperature sensor, a humidity sensor, and a power sensor. When it is detected that the target smart device in the preset smart devices is connected to the vehicle, the step of obtaining the current status information of the target smart device includes: The current status information of the target intelligent device is collected through at least one sensor in the target intelligent device; When the target smart device is detected to be connected to the vehicle, the current status information collected by the at least one sensor is acquired.

8. A display device for a vehicle, characterized in that, The device includes: The acquisition module is used to detect that the vehicle is in a target usage scenario and acquire a first display interface corresponding to the target usage scenario; wherein, the first display interface includes components of a preset smart device; The processing module is configured to, when detecting that the target smart device in the preset smart devices is connected to the vehicle, acquire the current status information of the target smart device; generate a second display interface based on the first display interface and the current status information of the target smart device; wherein the second display interface includes the current status information of the target smart device and the components of the preset smart device; and display the second display interface on the screen of the vehicle.

9. A vehicle, characterized in that, The vehicles include: Memory, used to store executable program code; A processor for calling and running the executable program code from the memory, causing the vehicle to perform the method as described in any one of claims 1 to 7.

10. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores a computer program that, when executed, implements the method as described in any one of claims 1 to 7.

Citation Information

Patent Citations

  • Lens switching method and device in game, and electronic equipment

    CN111803946A

  • Task starting method and electronic equipment

    CN114077455A

  • Interaction method, vehicle and storage medium

    CN114851847A

  • Instrument interaction method, instrument interaction device, instrument interaction equipment and readable storage medium

    CN115431763A

  • Cabin visual angle switching method, device and equipment and vehicle

    CN115848138A