Vehicle control method and device, vehicle and storage medium

By displaying target prompt information in the vehicle display screen and monitoring the sun protection demand area using technologies such as hyperspectral imaging, the problem of sunburn risks for users in the vehicle is solved, and intelligent sun protection treatment is achieved, and the sun protection effect is improved.

CN120363835APending Publication Date: 2025-07-25GREAT WALL MOTOR CO LTD
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Patent Information

Application Number
CN202510557740.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-29
Publication Date
2025-07-25

AI Technical Summary

Technical Problem

The prior art cannot effectively reduce the risk of sunburn in vehicles, especially when the ultraviolet intensity is high, and it cannot provide accurate sun protection suggestions, resulting in poor sun protection effect.

Method used

By displaying target prompt information on the display screen in the vehicle, users are prompted to turn on the sun protection function, monitor and process the sun protection demand area, use hyperspectral imaging, multispectral fluorescence imaging and computer vision technology to identify the sun protection demand area, and display sun protection suggestions when the sun visor is unfolded.

Benefits of technology

It effectively reduces the risk of sunburn by users, improves the intelligence of sun protection function, ensures that users detect and deal with sunburn risks in a timely manner, and meets users' sun protection needs.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention provides a vehicle control method and device, a vehicle and a storage medium, and the method relates to the field of vehicles, and comprises the steps: obtaining the position information of a target user if it is detected that the vehicle comprises the target user with the sunburn risk; based on the position information, a first display screen and a second display screen corresponding to the target user are determined, the first display screen is arranged on a sun shield of the vehicle, the first display screen has a target function of monitoring a sun block demand area of the target user, and the second display screen is at least one display screen which is in an on state and is different from the first display screen in the vehicle; if it is detected that the target function is in the closed state, determining a target display screen in the first display screen and the second display screen; and target prompt information is displayed in the target display screen, and the target prompt information is used for prompting to start the target function and carrying out sunscreen processing on the sunscreen demand area. According to the method, the sunburn risk of the user can be reduced, so that the sunscreen requirement of the user is met.
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Description

Technical Field

[0001] The present application relates to the field of vehicles, and more specifically, to a control method, a control device, a vehicle and a storage medium for a vehicle in the field of vehicles. Background Art

[0002] When a vehicle is in motion, if it is detected that the ultraviolet intensity is relatively high, there may be a risk of sunburn for the users inside the vehicle. Therefore, how to reduce the risk of sunburn for users to meet their sun protection needs is a technical problem that needs to be solved currently. Summary of the Invention

[0003] The present application provides a control method, a control device, a vehicle and a storage medium for a vehicle. When it is detected that a target function in a first display screen is in a closed state, the target prompt information is displayed in the target display screen; the target function is prompted to be turned on and the sun protection required area is sun-protected through the target prompt information, so as to reduce the risk of sunburn for users, thereby meeting the sun protection needs of users.

[0004] In a first aspect, a control method for a vehicle is provided, and the method includes:

[0005] If it is detected that there is a target user in the vehicle who is at risk of sunburn, obtain the location information of the target user;

[0006] Based on the location information, determine a first display screen and a second display screen corresponding to the target user. The first display screen is arranged on the sun visor of the vehicle, and the first display screen has a target function for monitoring the sun protection required area of the target user. The second display screen is at least one display screen that is in an on state inside the vehicle and is different from the first display screen;

[0007] If it is detected that the target function is in a closed state, determine the target display screen among the first display screen and the second display screen;

[0008] Display the target prompt information in the target display screen, where the target prompt information is used to prompt to turn on the target function and perform sun protection treatment on the sun protection required area.

[0009] In an embodiment of the present application, when there is a target user at risk of sunburn in the vehicle, the first display screen and the second display screen are determined; if the target function is in the off state, the target display screen is determined from the first display screen and the second display screen, and the target prompt message is displayed on the target display screen. Since the first display screen has the target function of monitoring the sun protection required area of the target user; when the target function is in the off state, the sun protection required area of the target user cannot be monitored, resulting in the target user at risk of sunburn being unable to promptly detect the risk of sunburn and take sun protection measures; therefore, in this solution, when the target function is in the off state, the target prompt message is displayed on the target display screen; the target prompt message is used to prompt to turn on the target function and perform sun protection treatment on the sun protection required area; ensuring that the target user can promptly detect the risk of sunburn and promptly perform sun protection treatment on the sun protection required area, thereby reducing the sunburn risk of the target user to meet the sun protection needs of the user.

[0010] In combination with the first aspect, in some implementation manners of the first aspect, it further includes:

[0011] After the preset duration for displaying the target prompt message, the status information of the target function is obtained;

[0012] If the target function is in the off state and the current target user is at risk of sunburn, the target prompt message is continuously displayed on the target display screen until the target function is turned on.

[0013] In an embodiment of the present application, after the preset duration for displaying the target prompt message, if the target function is in the off state and the target user is still at risk of sunburn, it means that the target function has not been turned on in response to the target prompt message, and the sun protection required area of the target user cannot be monitored through the target function; therefore, the target prompt message is continuously output to ensure that the target user is reminded of the current risk of sunburn and the user is prompted to turn on the target function to monitor the sun protection required area.

[0014] In combination with the first aspect and the above implementation manners, in some implementation manners of the first aspect, determining the target display screen from the first display screen and the second display screen includes:

[0015] Determine whether the first display screen is in the on state;

[0016] If the first display screen is in the on state, the first display screen is determined as the target display screen;

[0017] If the first display screen is in the off state, the display screen closest to the target user among the second display screens is determined as the target display screen.

[0018] In an embodiment of the present application, when the first display screen is in the on state, the first display screen is determined as the target display screen; when the first display screen is not in the on state, the screen closest to the user among the second display screens is determined as the target display screen. Since the target function is a function in the first display screen; therefore, when the first display screen is in the on state, priority is given to determining the first display screen as the target display screen. The user can view the target prompt information and the sun protection requirement area displayed by the target function in the first display screen without having to browse back and forth among multiple display screens, which is more convenient. When the first display screen is not in the on state, the screen closest to the target user is determined as the target display screen, facilitating the user to view the target prompt information.

[0019] Combined with the first aspect and the above implementation, in some implementations of the first aspect, it further includes:

[0020] If it is detected that there is a target user in the vehicle at risk of sunburn, control the target function of the first display screen to turn on;

[0021] Through the target function, prompt the target user to perform sun protection treatment on the sun protection requirement area.

[0022] In an embodiment of the present application, if it is detected that there is a target user in the vehicle at risk of sunburn, control the target function of the first display screen to turn on; ensure that when there is a target user at risk of sunburn, the target function can be automatically turned on, avoiding manual operation by the user, thereby improving the intelligence level of the target function.

[0023] Combined with the first aspect and the above implementation, in some implementations of the first aspect, controlling the target function of the first display screen to turn on includes:

[0024] Based on the location information, determine whether the target user is in the driver's seat of the vehicle;

[0025] If the target user is not in the driver's seat of the vehicle, control the target function in the first display screen to turn on;

[0026] If the target user is in the driver's seat of the vehicle, obtain the vehicle state of the vehicle;

[0027] Based on the vehicle state, control the target function to turn on.

[0028] In an embodiment of the present application, based on the location information of the target user, it is determined whether the target user is in the driver's seat of the vehicle. If the target user is not in the driver's seat, when the target user views the target function on the first display screen, it will not affect the driving safety of the vehicle. Therefore, the target function is controlled to be turned on to ensure that the safety of the vehicle is not affected. If the target user is in the driver's seat of the vehicle, when the target user views the target function on the first display screen, it may affect the driving safety of the vehicle. Therefore, based on the vehicle state, the target function is controlled to be turned on.

[0029] Combined with the first aspect and the above implementation manners, in some implementation manners of the first aspect, controlling the target function to be turned on based on the vehicle state includes:

[0030] If the vehicle state is in a parked state, control the target function to be turned on;

[0031] If the vehicle state is in a driving state, output a first prompt message, where the first prompt message is used to prompt the target user to view the sun protection requirement area after parking;

[0032] After outputting the first prompt message, obtain the updated state of the vehicle;

[0033] When the updated state indicates that the vehicle is in a parked state, control the target function to be turned on.

[0034] In an embodiment of the present application, when the vehicle is in a parked state, the target user in the driver's seat will not affect the driving safety of the vehicle when viewing the first display screen. Therefore, the target function is controlled to be turned on. When the vehicle is in a driving state, the target user (i.e., the driver) in the driver's seat may be distracted when viewing the first display screen, affecting the driving safety of the vehicle. Therefore, a first prompt message is output to prompt the target user to view the sun protection requirement area after parking, avoiding affecting the driving safety of the vehicle and ensuring the safety of the vehicle when monitoring the sun protection of the users inside the vehicle.

[0035] Combined with the first aspect and the above implementation manners, in some implementation manners of the first aspect, the first display screen is fixed on the housing of the first sun visor of the vehicle. Before controlling the first display screen to be turned on, it further includes:

[0036] Obtain the state information of the first sun visor;

[0037] If the first sun visor is in a closed state, control the first sun visor to be unfolded;

[0038] When the sun visor is in an unfolded state, turn on the first display screen.

[0039] In an embodiment of the present application, the first display screen is fixed on the housing of the first sun visor. Before controlling the first display screen to be turned on, the first sun visor is controlled to be unfolded. When the sun visor is in the unfolded state, the first display screen is turned on; it is ensured that the housing of the first sun visor does not block the first display screen.

[0040] In a second aspect, a control device for a vehicle is provided. The device includes:

[0041] An acquisition module, configured to acquire the position information of a target user if it is detected that there is a target user at risk of sunburn in the vehicle;

[0042] A processing module, configured to determine, based on the position information, a first display screen and a second display screen corresponding to the target user. The first display screen is disposed on the sun visor of the vehicle, and the first display screen has a target function of monitoring the sun protection required area of the target user. The second display screen is at least one display screen that is in an on state in the vehicle and is different from the first display screen; if it is detected that the target function is in an off state, a target display screen is determined among the first display screen and the second display screen; and a target prompt message is displayed on the target display screen, where the target prompt message is used to prompt to turn on the target function and perform sun protection processing on the sun protection required area.

[0043] In combination with the second aspect, in some implementation manners of the second aspect, the acquisition module is further configured to: after a preset duration of displaying the target prompt message, acquire the status information of the target function; the processing module is further configured to: if the target function is in an off state and the current target user is at risk of sunburn, continuously display the target prompt message on the target display screen until the target function is turned on.

[0044] In combination with the second aspect and the above implementation manners, in some implementation manners of the second aspect, the processing module is specifically configured to: determine whether the first display screen is in an on state; if the first display screen is in an on state, determine the first display screen as the target display screen; if the first display screen is in an off state, determine the display screen closest to the target user among the second display screens as the target display screen.

[0045] In combination with the second aspect and the above implementation manners, in some implementation manners of the second aspect, the processing module is further configured to: if it is detected that there is a target user at risk of sunburn in the vehicle, control the target function of the first display screen to be turned on; and prompt the target user to perform sun protection processing on the sun protection required area through the target function.

[0046] Combined with the second aspect and the above implementation manners, in some implementation manners of the second aspect, the processing module is specifically configured to: determine whether the target user is in the driver's seat of the vehicle based on the position information; if the target user is not in the driver's seat of the vehicle, control the target function in the first display screen to be turned on; if the target user is in the driver's seat of the vehicle, obtain the vehicle state of the vehicle; and control the target function to be turned on based on the vehicle state.

[0047] Combined with the second aspect and the above implementation manners, in some implementation manners of the second aspect, the processing module is specifically configured to: if the vehicle state is in a parked state, control the target function to be turned on; if the vehicle state is in a driving state, output a first prompt message, where the first prompt message is used to prompt the target user to check the sun protection requirement area after parking; after outputting the first prompt message, obtain the updated state of the vehicle; and control the target function to be turned on when the updated state indicates that the vehicle is in a parked state.

[0048] Combined with the second aspect and the above implementation manners, in some implementation manners of the second aspect, the first display screen is fixed on the housing of the first sun visor of the vehicle; the obtaining module is further configured to: obtain the state information of the first sun visor; the processing module is further configured to: if the first sun visor is in a closed state, control the first sun visor to be unfolded; and turn on the first display screen when the sun visor is in an unfolded state.

[0049] In a third aspect, a vehicle is provided, including a memory and a processor, where the memory is used to store executable program code, and the processor is used 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.

[0050] In a fourth aspect, a computer program product is provided, including: computer program code, when the computer program code runs on a computer, enabling the computer to execute the method in the first aspect or any possible implementation manner of the first aspect.

[0051] In a fifth aspect, a computer-readable storage medium is provided, where the computer-readable storage medium stores a computer program, and when the computer program is executed, the method in the first aspect or any possible implementation manner of the first aspect is implemented. Description of the Drawings

[0052] Figure 1 is a schematic diagram of a scenario provided by an embodiment of the present application;

[0053] Figure 2 is a schematic diagram of a display interface of an intelligent mirror provided by an embodiment of the present application;

[0054] Figure 3It is a schematic diagram of the display interface of another intelligent mirror provided by an embodiment of the present application;

[0055] Figure 4 It is a schematic flowchart of a vehicle control method provided by an embodiment of the present application;

[0056] Figure 5 It is a schematic flowchart of another vehicle control method provided by an embodiment of the present application;

[0057] Figure 6 It is a schematic flowchart of yet another vehicle control method provided by an embodiment of the present application;

[0058] Figure 7 It is a schematic diagram of the structure of a vehicle control device provided by an embodiment of the present application;

[0059] Figure 8 It is a schematic diagram of the structure of a vehicle provided by an embodiment of the present application. Detailed implementation manners

[0060] Next, the technical solutions in the present application will be clearly and elaborately described in conjunction with the accompanying drawings. Among them, in the description of the embodiments of the present application, unless otherwise specified, " / " means "or". For example, A / B may represent A or B. The "and / or" in the text is only a description of the association relationship of the associated objects, indicating that there can be three relationships. For example, A and / or B may represent: A exists alone, A and B exist simultaneously, and B exists alone. In addition, in the description of the embodiments of the present application, "a plurality of" means two or more than two.

[0061] Hereinafter, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as implying or suggesting relative importance or implicitly indicating the quantity of the indicated technical features. Thus, the features defined with "first" and "second" may explicitly or implicitly include one or more of such features.

[0062] When the vehicle is in motion, if it is detected that the ultraviolet intensity is relatively high, it may cause a risk of sunburn to the users inside the vehicle. In the prior art, when it is detected that there is a risk of sunburn to the users inside the vehicle, the sunroof of the vehicle is controlled to close or the air conditioner of the vehicle is controlled to turn on. However, by controlling the closing of the vehicle window or the turning on of the air conditioner, only physical shielding can be achieved to reduce the risk of sunburn to the users, and accurate makeup suggestions cannot be provided to the users when the sunburn risk occurs, which cannot meet the sun protection needs of the users and the sun protection effect is poor. Therefore, how to reduce the risk of sunburn to the users to meet the sun protection needs of the users is a technical problem that needs to be solved currently.

[0063] In view of this, the present application provides a vehicle control method, a control device, a vehicle and a storage medium. The method can determine the target display screen and display target prompt information in the target display screen when it is detected that the target function in the first display screen is in an off state; the target prompt information can be used to prompt the user to turn on the target function and perform sun protection treatment on the sun protection requirement area to reduce the user's risk of sunburn, thereby meeting the user's sun protection needs.

[0064] Figure 1 It is a schematic diagram of a scenario provided in an embodiment of the present application.

[0065] For example, in a vehicle environment, in order to ensure the makeup needs of users in the vehicle, a makeup mirror is generally integrated into the sun visor. Figure 1 As shown in the scene 100 in FIG. 1 , the makeup mirror 110, the makeup mirror 120, the instrument screen 130, the central control screen 140 and the co-pilot screen 150 are included; wherein the makeup mirror 110 and the makeup mirror 120 can be display screens made of materials such as light emitting diodes (LEDs) to realize functions such as artificial intelligence (AI) makeup, AI skin monitoring, and beauty tutorial browsing to help users perform makeup and skin monitoring; that is, the makeup mirror 110 and the makeup mirror 120 are smart mirrors. The smart mirror is located on the shell of the sun visor; when the sun visor is unfolded, the user can see the display content in the smart mirror; when the sun visor is folded, the user cannot see the display content in the smart mirror due to the obstruction of the shell.

[0066] It is understandable that multiple smart mirrors can be configured in the vehicle to meet the makeup needs of users at different locations in the vehicle; for example, Figure 1 The makeup mirror 110 is used to meet the makeup needs of the user in the main driving seat. Figure 1 The makeup mirror 120 is used to meet the makeup needs of the user in the front passenger seat.

[0067] Optionally, the smart mirror has a touch device, and the content displayed on the smart mirror can be selected through the touch device in the smart mirror.

[0068] Figure 2 It is a schematic diagram of a display interface of a smart mirror provided in an embodiment of the present application.

[0069] For example, the display interface of the smart mirror is as follows: Figure 2 As shown in the display interface 200 in the figure, the smart mirror can realize multiple functions such as sun protection monitoring, photo skin testing, virtual makeup trial and beauty makeup class to meet the user's usage needs. That is, the smart mirror is a display screen in the vehicle for realizing specific functions (including sun protection monitoring, photo skin testing, virtual makeup trial and beauty makeup class, etc.).

[0070] Among them, the sunscreen monitoring function is used to monitor the sunscreen-required areas on the user's face (i.e., the facial areas where the user has a sunscreen requirement), so as to prompt the user to perform sunscreen treatment on the sunscreen-required areas.

[0071] Optionally, the smart mirror can adopt hyperspectral imaging technology, multispectral fluorescence imaging technology or computer vision and image analysis technology to detect the sunscreen-required areas of the user.

[0072] Among them, hyperspectral imaging technology can capture the reflection information of the facial skin in multiple spectral bands. Since the reflectance of sunscreen products and the skin itself is different for different spectra, by analyzing the hyperspectral image, the areas on the face where sunscreen products are applied and the areas where sunscreen products are not applied can be accurately identified; the thickness of the sunscreen product can also be judged according to the reflectance difference.

[0073] Multispectral fluorescence imaging technology utilizes the characteristic that certain sunscreen components emit fluorescence when excited by light of a specific wavelength, and images the face through a specific fluorescence imaging device. The areas without sunscreen application will not have fluorescence signals, while the areas with sunscreen application will show corresponding fluorescence images, thus intuitively reflecting the application situation of the sunscreen product on the face and determining whether there are areas where the sunscreen product is not applied or unevenly applied.

[0074] Computer vision and image analysis technology refers to the technology of using a high-definition camera to capture facial images and then using computer vision algorithms to process and analyze the images; by identifying changes in features such as skin color and texture, the application situation of the sunscreen product is judged. For example, in the areas where the sunscreen product is evenly applied, the skin color will be relatively uniform, while in the areas where the sunscreen product is not applied or unevenly applied, there will be differences in color and texture from the surrounding areas, and the facial areas that need to be sunscreen-treated can be detected based on this.

[0075] Exemplarily, when the sunscreen monitoring function is turned on, the display interface of the sunscreen monitoring function is as Figure 3 shown.

[0076] Figure 3 It is a schematic diagram of the display interface of another smart mirror provided by an embodiment of the present application.

[0077] Exemplarily, as shown in the display interface 300 in Figure 3 the uneven sunscreen areas, sunscreen index and sunscreen suggestions are displayed in the display interface of the sunscreen monitoring function.

[0078] Optionally, the uneven sunscreen areas can be sunscreen-required areas. The sunscreen-required areas represent the facial areas where the user has a sunscreen requirement. The user can perform sunscreen treatment according to the sunscreen-required areas in the smart mirror. For example, apply sunscreen products in the sunscreen-required areas.

[0079] Exemplarily, the sun protection monitoring function can analyze the facial image information of the user to determine which areas of the user's face are applied with sun protection products, which areas are not applied with sun protection products or the sun protection products are unevenly applied, and mark them in the user's facial image. The user can apply sun protection products according to the marked uneven sun protection areas, thereby reducing the user's risk of sunburn. The sun protection index is used to represent the user's sun protection level. The higher the sun protection index, the better the current sun protection effect. The sun protection advice is the sun protection advice given for the user's current sun protection effect to reduce the user's risk of sunburn.

[0080] It should be noted that Figure 2 The display interface in Figure 3 is an example of the display interface of the smart mirror, used to represent the functions that the smart mirror can achieve; the present application does not specifically limit the display interface in the smart mirror.

[0081] Next, in combination with the scenario in Figure 1 and Figure 2 the display interface in Figure 3 the control method of the vehicle in Figure 4 will be further described.

[0082] Figure 4 is a schematic flowchart of a vehicle control method provided by an embodiment of the present application.

[0083] Exemplarily, Figure 4 the method 400 shown can be executed by the vehicle; or can be executed by a processor or chip in the vehicle.

[0084] As Figure 4 shown, the vehicle control method 400 includes S410 to S440, and S410 to S440 will be described in detail below.

[0085] S410, if it is detected that there is a target user with a risk of sunburn in the vehicle, obtain the location information of the target user.

[0086] Wherein, the target user is a user in the vehicle with a risk of sunburn.

[0087] It can be understood that since the light in different positions in the vehicle is different, that is, the intensity of ultraviolet rays irradiated on users in different positions in the vehicle is different, and the sunburn risks of users in different positions are different; therefore, when there are multiple users in the vehicle, some users among the multiple users in the vehicle with a risk of sunburn are determined as target users.

[0088] Exemplarily, the vehicle can determine whether each user in the vehicle has a risk of sunburn according to the current environmental parameters of the vehicle; and determine the users with a risk of sunburn as target users.

[0089] Specifically, environmental parameters are obtained, where the environmental parameters include one or more of parameters such as weather information, the position information of the vehicle, temperature, humidity, and ultraviolet intensity; it is determined whether the user in the vehicle has a risk of sunburn according to the environmental parameters.

[0090] For example, an ultraviolet sensor is installed in the vehicle; the ultraviolet intensity at different positions in the vehicle is monitored in real time through the ultraviolet sensor; when the ultraviolet intensity reaches the first preset level (the ultraviolet intensity reaches level 4 or above stipulated by the World Health Organization), it is determined that the user at this position has a risk of sunburn. The temperature and humidity are collected by the temperature sensor and humidity sensor in the vehicle; when the temperature is greater than the preset temperature (for example, 30 °C) and the humidity is lower than the preset humidity (for example, 40%), when the ultraviolet level reaches the second preset level (the ultraviolet level reaches level 3 or above), it is determined that the user at this position has a risk of sunburn.

[0091] It can be understood that since a high-temperature and low-humidity environment (the temperature is greater than the preset temperature and the humidity is lower than the preset humidity) will cause the user's skin moisture to be lost faster, thereby reducing the skin's resistance to ultraviolet rays (that is, the skin is in a relatively vulnerable state); in this case, even if the ultraviolet intensity is low, it will cause the user to have a risk of sunburn. Therefore, the second preset level is less than the first preset level.

[0092] Optionally, the geographical location of the vehicle is obtained through the vehicle's positioning system, and the sunshine duration of this geographical location is determined in combination with the weather information of this geographical location; if the user is in the vehicle for a long time and in a time period with a long sunshine duration (for example, from 10 am to 4 pm), it is determined that the user has a risk of sunburn.

[0093] It should be noted that the above is an example description of the sunburn risk detection method; this application does not make specific limitations on the specific environmental parameters and the detection method of sunburn risk.

[0094] S420. Based on the position information, the first display screen and the second display screen corresponding to the target user are determined.

[0095] Among them, the first display screen has the target function of monitoring the sun protection demand area of the target user; that is, the first display screen has a target function, and the target function is used to monitor the sun protection demand area of the target user, and the sun protection demand area is the facial area where the target user needs to perform sun protection treatment. The second display screen is at least one display screen in the vehicle that is in an on state and different from the first display screen.

[0096] Exemplarily, the first display screen is set on the sun visor of the vehicle, and the first display screen can be an intelligent mirror (such as shown in 110 and 120 in Figure 1 ) set in the sun visor housing.

[0097] Exemplarily, according to the location information, determine the first display screen corresponding to the target user; if the target user is in the driver's seat, the first display screen is the intelligent mirror in the driver's seat (as shown by 110 in Figure 1 ); if the user is in the passenger seat, the first display screen is the intelligent mirror in the passenger seat (as shown by 120 in Figure 1 ).

[0098] It can be understood that the first display screen can be a display screen made of light-emitting diode materials to achieve specific functions; among them, the specific functions include sunscreen monitoring, skin testing by taking pictures, virtual makeup try-on, and beauty classes, etc.

[0099] In a possible implementation manner, if it is detected that there is a target user with a risk of sunburn in the vehicle, control the target function of the first display screen to be turned on; through the target function, prompt the target user to perform sunscreen treatment on the sunscreen demand area.

[0100] Among them, the target function is used to monitor the sunscreen demand area of the user; the target function can be the Figure 2 sunscreen monitoring function shown in

[0101] Exemplarily, if it is detected that there is a target user with a risk of sunburn in the vehicle; control the target function of the first display screen to be turned on; and mark the sunscreen demand area of the target user through the target function, and prompt the target user to perform sunscreen treatment on the sunscreen demand area; among them, the sunscreen treatment includes applying sunscreen products to the sunscreen demand area.

[0102] In the embodiments of the present application, if it is detected that there is a target user with a risk of sunburn in the vehicle, control the target function of the first display screen to be turned on; ensure that when there is a target user with a risk of sunburn, the target function can be automatically turned on, avoiding manual operation by the user, and ensuring that the intelligence level of the target function can be improved.

[0103] Optionally, the target function can be an ultraviolet (UV) monitoring function; the UV monitoring function refers to the function of real-time detecting and analyzing the ultraviolet radiation intensity through functional devices or sensors, so that the user can understand the ultraviolet intensity in the environment and facilitate the user to take corresponding protective measures.

[0104] Specifically, based on the location information, determine whether the target user is in the driver's seat of the vehicle; if the target user is not in the driver's seat of the vehicle, control the target function in the first display screen to be turned on; if the target user is in the driver's seat of the vehicle, obtain the vehicle state of the vehicle; based on the vehicle state, control the target function to be turned on.

[0105] It can be understood that when the target function is turned on, the target user may not be able to perceive the road conditions of the current road while viewing the display content in the target function. Therefore, according to the location information of the target user (i.e., whether the target user is in the driver's seat) and the state of the vehicle (i.e., whether the vehicle is in a driving state), it is determined whether the target function affects the safety of the vehicle.

[0106] Exemplarily, according to the location information of the target user, it is determined whether the target user is in the driver's seat of the vehicle. If the target user is not in the driver's seat, when the target user views the target function on the first display screen, it will not affect the driving safety of the vehicle. Therefore, the target function is controlled to be turned on to ensure that the safety of the vehicle is not affected. If the target user is in the driver's seat of the vehicle, when the target user views the target function on the first display screen, it may affect the driving safety of the vehicle. Therefore, according to the vehicle state, the target function is controlled to be turned on.

[0107] Exemplarily, based on the vehicle state, controlling the target function to be turned on includes: if the vehicle state is in a parked state, controlling the target function to be turned on; if the vehicle state is in a driving state, outputting a first prompt message for prompting the target user to view the sun protection requirement area after parking; after outputting the first prompt message, obtaining the updated state of the vehicle; when the updated state indicates that the vehicle is in a parked state, controlling the target function to be turned on.

[0108] In the embodiments of the present application, when the vehicle is in a parked state, the target user in the driver's seat will not affect the driving safety of the vehicle when viewing the first display screen. Therefore, the target function is controlled to be turned on. When the vehicle is in a driving state, the first display screen may cause the driver (i.e., the target user is the driver) to be distracted and affect the driving safety of the vehicle when the target user in the driver's seat views the first display screen. Therefore, a first prompt message is output to prompt the target user to view the sun protection requirement area after parking, so as to avoid affecting the driving safety of the vehicle and ensure the safety of the vehicle when monitoring the sun protection of the users in the vehicle.

[0109] Optionally, the first display screen is fixed on the housing of the first sun visor of the vehicle. Before controlling the first display screen to be turned on, it further includes: obtaining the state information of the first sun visor; if the first sun visor is in a closed state, controlling the first sun visor to be unfolded; when the sun visor is in an unfolded state, turning on the first display screen.

[0110] Exemplarily, the first display screen is fixed on the housing of the first sun visor; for example, the intelligent mirror corresponding to the driver's seat is fixed on the sun visor of the driver's seat (such as Figure 1 110 in Figure 1120) in it; when the sun visor is in the closed state, the sun visor drives the intelligent mirror to fit on the top of the vehicle cockpit, resulting in the user being unable to view the display content of the intelligent mirror. Therefore, when controlling the first display screen to turn on to enable the target function, obtain the status information of the first sun visor, and when the first sun visor is in the unfolded state, turn on the first display screen.

[0111] In an embodiment of the present application, the first display screen is fixed on the housing of the first sun visor. Before controlling the first display screen to turn on, control the first sun visor to unfold. When the sun visor is in the unfolded state, turn on the first display screen; ensure that the housing of the first sun visor does not block the first display screen, that is, ensure that the first display screen is in the unfolded state, and ensure that the user can see the display content in the first display screen.

[0112] S430, if it is detected that the target function is in the closed state, determine the target display screen among the first display screen and the second display screen.

[0113] Among them, the target display screen is used to display the target prompt information; the target prompt information is used to prompt to turn on the target function and perform sun protection treatment on the sun protection required area.

[0114] It can be understood that since the target function is used to monitor the sun protection required area of the target user; therefore, when it is detected that there is a target user with a risk of sunburn in the vehicle, if the target function is in the closed state, the target user cannot determine the sun protection required area, and thus cannot perform sun protection treatment on the sun protection required area in time; resulting in the user having a risk of sunburn. Therefore, when it is detected that the target function is in the closed state, determine the target display screen and prompt the user to turn on the target function through the target display screen.

[0115] In one implementation, determine whether the first display screen is in the on state; if the first display screen is in the on state, determine the first display screen as the target display screen; if the first display screen is in the off state, determine the display screen in the second display screen that is closest to the target user as the target display screen.

[0116] It can be understood that since the target function is a function in the first display screen; therefore, when the target function is closed, there are two possible situations. The first is the situation where the target function is closed and the first display screen is on, that is, the first display screen is in the lit state, but the target function in the first display screen is in the closed state (for example, when the user is using the first display screen, closes the target function but turns on other functions other than the target function); the second is the situation where the target function is closed and the first display screen is off, that is, the first display screen is in the off state and the target function is in the closed state.

[0117] Exemplarily, when the first display screen is in the on state, the first display screen is determined as the target display screen; when the first display screen is not in the on state, the screen closest to the user among the second display screens is determined as the target display screen. Since the target function is located in the first display screen, when the first display screen is in the on state, it is preferentially considered to determine the first display screen as the target display screen. The user can view the target prompt information and the sun protection requirement area displayed by the target function in the first display screen without having to view back and forth among multiple display screens, which is more convenient. When the first display screen is not in the on state, the screen closest to the target user among the second display screens is determined as the target display screen, facilitating the user to view the target prompt information.

[0118] It should be noted that when it is detected that there is a target user with a risk of sunburn in the vehicle, the vehicle controls the target function of the first display screen to be automatically turned on. If the first display screen is turned off or does not meet the usage conditions (for example, the first display screen cannot be automatically turned on, the housing of the sun visor blocks the first display screen, etc.), or the user manually turns off the first display screen or the target function, resulting in the failure of the target function (that is, the target function is in the off state) and the inability to monitor the sun protection of the target user, resulting in a relatively high risk of sunburn for the user. Therefore, it is necessary to determine the target display screen and display the target prompt information on the target display screen, so as to prompt the user to turn on the target function and perform sun protection treatment on the sun protection requirement area when the target function is turned off. Thus, when the target function is turned off, the risk of sunburn of the user can be reduced through the target prompt information, meeting the sun protection needs of the user.

[0119] S440, display the target prompt information on the target display screen.

[0120] Exemplarily, display the target prompt information on the target display screen, and prompt to turn on the target function and perform sun protection treatment on the sun protection requirement area through the target prompt information.

[0121] Among them, the target prompt information can be displayed in the form of a pop-up window on the main interface of the target display screen, or can be scrolled and displayed in the vehicle information prompt area, and can be accompanied by a sound prompt to facilitate attracting the driver's attention.

[0122] For example, the target user with a risk of sunburn is located in the passenger seat of the vehicle, and the corresponding first display screen is fixed on the housing of the sun visor in the passenger seat (the first display screen is Figure 1The intelligent mirror shown as 120 in []. The second display screen is at least one screen that is lit up in the vehicle except for the first display screen. The second display screen includes an instrument panel screen 130, a central control screen 140, and a co-pilot screen 150. If the target function is in the closed state and the first display screen 120 is in the on state, the first display screen is determined as the target display screen, and the target prompt message is displayed on the first display screen; if the target function is in the closed state and the first display screen 120 is in the off state, the display screen with the smallest distance from the target user among the second display screens is determined as the target display screen, that is, the co-pilot screen 150 is determined as the target display screen; and the target prompt message is displayed on the co-pilot screen; the target prompt message can be "You currently have a risk of sunburn. Please turn on the sun protection monitoring function of the intelligent mirror to assist you in accurately applying makeup to the sun protection required areas in the intelligent mirror."

[0123] It should be noted that the above are examples of the position of the target user, the first display screen, the second display screen, and the target prompt message, and this application is not limited thereto.

[0124] In one implementation, after the preset duration of displaying the target prompt message, the status information of the target function is obtained; if the target function is in the closed state and the current target user has a risk of sunburn, the target prompt message is continuously displayed on the target display screen until the target function is turned on.

[0125] Exemplarily, after the preset duration of displaying the target prompt message, if the target function is in the closed state and the target user still has a risk of sunburn, it means that the target function has not been turned on in response to the target prompt message; the sun protection required area of the target user cannot be monitored; therefore, the target prompt message is continuously output to ensure that the target user is reminded of the current risk of sunburn.

[0126] For example, the preset duration is 2 minutes. After the duration of displaying the prompt message reaches 2 minutes, if the target user still has a risk of sunburn, the status of the target function is detected again; if the target function is in the closed state, the target prompt message is continuously displayed on the target display screen.

[0127] Optionally, when the target prompt message is displayed, a prompt voice is played synchronously. By means of voice prompt, the user's attention to the risk of sunburn is improved, and it is avoided that the user misses the prompt content of the target prompt message due to not watching the target display screen.

[0128] In the above embodiments, when there is a target user at risk of sunburn in the vehicle, the first display screen and the second display screen are determined; if the target function is in the off state, the target display screen is determined from the first display screen and the second display screen, and the target prompt message is displayed on the target display screen. Since the first display screen has the target function of monitoring the sun protection required area of the target user; when the target function is in the off state, the sun protection required area of the target user cannot be monitored, resulting in the target user at risk of sunburn being unable to detect the sunburn risk in time and take sun protection measures; therefore, in this solution, when the target function is in the off state, the target prompt message is displayed on the target display screen; the target prompt message is used to prompt to turn on the target function and perform sun protection treatment on the sun protection required area; ensuring that the target user can detect the sunburn risk in time and perform sun protection treatment on the sun protection required area in time, thereby reducing the sunburn risk of the target user to meet the sun protection needs of the user.

[0129] Figure 5 It is a schematic flowchart of another vehicle control method provided by an embodiment of the present application.

[0130] Figure 5 The method 500 shown can be executed by the vehicle; or can be executed by a processor or chip in the vehicle.

[0131] As Figure 5 shown, the vehicle control method 500 includes S501 to S508, and S501 to S508 will be described in detail below.

[0132] S501, according to the environmental information of the vehicle, determine the target user in the vehicle at risk of sunburn.

[0133] Exemplarily, the environmental information includes parameters such as weather information, vehicle position information, temperature, humidity, and ultraviolet intensity; according to each parameter in the environmental information, determine the target user in the vehicle at risk of sunburn.

[0134] For example, if the ultraviolet intensity reaches the first preset level, it is determined that the user at this position is at risk of sunburn; or, if the temperature is greater than the preset temperature and the humidity is lower than the preset humidity, when the ultraviolet level reaches the second preset level, it is determined that the user at this position is at risk of sunburn.

[0135] Optionally, the implementation manner of S501 can refer to Figure 4 the relevant description of S410 in; details are not described here again.

[0136] S502, determine the first display screen corresponding to the target user.

[0137] Exemplarily, determine the first display screen corresponding to the target user; wherein, the first display screen has a target function of monitoring the sun protection demand area of the target user, and the sun protection demand area of the target user is monitored through the target function of the first display screen.

[0138] Exemplarily, if there are at least two intelligent mirrors in the vehicle, according to the position information of the target user, the intelligent mirror adjacent to the target user is determined as the first display screen; the target user is monitored for sun protection through the first display screen, that is, the sun protection demand area of the target user is determined.

[0139] S503, whether the target user is located in the driver's seat of the vehicle; if so, execute S504; if not, execute S506.

[0140] Exemplarily, determine whether the target user is located in the driver's seat of the vehicle; if the target user is located in the driver's seat, obtain the vehicle state; if the target user is not located in the driver's seat, control the target function in the first display screen to be turned on.

[0141] S504, obtain the vehicle state.

[0142] Wherein, the vehicle state includes a driving state and a parking state.

[0143] Exemplarily, when the target user is located in the driver's seat of the vehicle, when the target user is viewing the display content in the target function, it may be impossible to perceive the current road conditions; therefore, it is necessary to determine whether the target function affects the safety of the vehicle according to the position information of the target user (that is, whether the target user is located in the driver's seat) and the state of the vehicle (that is, whether the vehicle is in a driving state), so as to determine the timing of turning on the target function.

[0144] S505, control the target function to be turned on according to the vehicle state.

[0145] Exemplarily, when the vehicle is in a parking state, control the target function to be turned on; when the vehicle is in a driving state, output a first prompt message, and the first prompt message is used to prompt the target user to check the sun protection demand area after parking; detect the vehicle state after outputting the first prompt message, and when it is detected that the vehicle is in a parking state, turn on the target function.

[0146] Since when the vehicle is in a driving state, when the target user located in the driver's seat (that is, the target user is the driver) views the first display screen, the first display screen may cause the driver to be distracted and affect the driving safety of the vehicle. Therefore, output a first prompt message to prompt the target user to check the sun protection demand area after parking, avoid affecting the driving safety of the vehicle, and ensure the safety of the vehicle when monitoring the sun protection of the users in the vehicle.

[0147] S506, control the target function in the first display screen to be turned on.

[0148] Exemplarily, when the target user is not in the driver's seat of the vehicle, whether the vehicle is in a driving state or not, turning on the target function will not affect the safety of the vehicle; therefore, control the target function to turn on to perform sun protection monitoring on the target user.

[0149] Optionally, the implementation manners of S502 to S506 can refer to the relevant descriptions in S420 in Figure 4 ; details are not described herein again.

[0150] S507, if it is detected that the target function is in the off state, determine the target display screen.

[0151] Exemplarily, if the target function is in the off state (for example, the user manually turns off the target function), determine the target display screen.

[0152] Exemplarily, determine the target display screen according to the first display screen and the second display screen; if the first display screen is in the on state, determine the first display screen as the target display screen; if the first display screen is in the off state, determine the screen with the smallest distance from the target user in the second display screen as the target display screen; ensure that the user can easily view the prompt information on the target display screen.

[0153] Optionally, the implementation manner of S507 can refer to the relevant descriptions in S430 in Figure 4 ; details are not described herein again.

[0154] S508, display the target prompt information on the target display screen.

[0155] Exemplarily, display the target prompt information on the target display screen; prompt to turn on the target function through the target prompt information and perform sun protection treatment on the sun protection required area. The target prompt information can be displayed in a pop-up window form on the main interface of the target display screen, or can be scrolled and displayed in the vehicle information prompt area, and can be accompanied by a sound prompt at the same time to attract the driver's attention.

[0156] Optionally, the implementation manner of S508 can refer to the relevant descriptions in S440 in Figure 4 ; details are not described herein again.

[0157] In an embodiment of the present application, when the target user is in the driver's seat, the target function is controlled to be turned on according to the vehicle state to ensure that it will not interfere with the driving behavior of the user in the driver's seat; when the vehicle is not in the driver's seat, the target function in the first display screen is controlled to be turned on, and the target function is turned on for sunburn monitoring on the premise of ensuring the driving safety of the vehicle. After controlling the target function to be turned on, the state of the target function is detected; if the target function is in the off state, a target prompt message is displayed on the target display screen to ensure that when the target function is in the off state, the target user is prompted to turn on the target function through the target prompt message; ensure that the target user can promptly detect the sunburn risk and promptly perform sun protection treatment on the sun protection required area.

[0158] Figure 6 It is a schematic flowchart of another vehicle control method provided by an embodiment of the present application.

[0159] Figure 6 The method 600 shown can be executed by a vehicle; or can be executed by a processor or chip in the vehicle.

[0160] As Figure 6 shown, the vehicle control method 600 includes S601 to S618, and S601 to S618 will be described in detail below.

[0161] S601, if it is detected that the user has a sunburn risk, obtain the vehicle state of the vehicle.

[0162] Exemplarily, it is detected whether the user has a sunburn risk according to the environmental information. If it is detected that the user has a sunburn risk, obtain the vehicle state of the vehicle; the vehicle state includes that the vehicle is in a driving state or the vehicle is in a stationary state.

[0163] S602, whether the vehicle state is a stationary state; if so, execute S609; if not, execute S603.

[0164] Exemplarily, it is judged whether the vehicle state is a stationary state; if the vehicle is in a stationary state, the intelligent mirror at the adjacent position of the user is turned on and a risk prompt is given to prompt the user that there is a current sunburn risk; if the vehicle is not in a stationary state (that is, the vehicle is in a driving state), it is judged whether the user is the driver.

[0165] S603, whether the user is the driver; if so, execute S604; if not, execute S609.

[0166] Exemplarily, it is judged whether the user is the driver; if the user is the driver, control the sunburn monitoring function to remain off; if the user is not the driver, the intelligent mirror at the adjacent position of the user is turned on and a risk prompt is given.

[0167] S604, control the sunburn monitoring function to remain off.

[0168] Exemplarily, when the vehicle is in a driving state and the user at risk of sunburn is the driver, the sun protection monitoring function is controlled to remain closed to avoid interference of the display interface of the sun protection monitoring function to the driver and affect the driving safety of the vehicle.

[0169] S605, prompt the user in the instrument panel that there is a risk of sunburn and recommend checking the sun protection detection result after parking.

[0170] Exemplarily, after controlling the sun protection monitoring function to remain closed, prompt the user in the driver's seat in the instrument panel that there is a risk of sunburn and recommend checking the sun protection detection result after parking.

[0171] S606, whether the sun visor is in the open state currently; if so, execute S607.

[0172] Exemplarily, judge whether the sun visor is in the open state currently; if so, judge whether the vehicle is in a stationary state.

[0173] Optionally, if the sun visor is not in the open state, control the sun visor to unfold and judge whether the vehicle is in a stationary state after the sun visor unfolds.

[0174] S607, whether the vehicle is in a stationary state; if so, execute S608; if not, execute S605.

[0175] Exemplarily, judge whether the vehicle is in a stationary state; if the vehicle is in a stationary state, the intelligent mirror automatically opens and activates the sun protection monitoring function; perform sun protection monitoring through the sun protection monitoring function; if the vehicle is not in a stationary state, continue to prompt the user in the instrument panel that there is a risk of sunburn and recommend checking the sun protection monitoring result after parking.

[0176] S608, the intelligent mirror automatically opens and activates the sun protection monitoring function.

[0177] Exemplarily, when the vehicle is in a stationary state and the sun protection monitoring function will not affect the driving safety of the vehicle, the intelligent mirror automatically opens and activates the sun protection monitoring function to avoid manual operation by the user and improve the intelligence level of the sun protection monitoring function on the premise of ensuring the safety of the vehicle.

[0178] S609, the intelligent mirror at the adjacent position of the user opens and gives a risk prompt.

[0179] Exemplarily, the smart mirror at the adjacent position of the user is turned on and a risk prompt is given, prompting the user of the risk of sunburn and prompting the user to perform sun protection treatment on the sun protection required area; wherein, the smart mirror at the adjacent position of the user is turned on to facilitate the user to view the display content of the smart mirror. For example, when the user is in the driver's seat, the smart mirror at the driver's seat is turned on and a risk prompt is given; when the user is in the passenger seat, the smart mirror at the passenger seat is turned on and a risk prompt is given.

[0180] S610, the sun protection monitoring function is automatically activated.

[0181] Exemplarily, when the smart mirror is turned on, the sun protection monitoring function is automatically activated, and the sun protection required area of the user is monitored through the sun protection monitoring function, so that the user can perform sun protection treatment according to the sun protection required area marked in the display interface of the sun protection monitoring function.

[0182] S611, whether the user has the risk of sunburn; if so, execute S612.

[0183] Exemplarily, it is judged whether the user has the risk of sunburn; if so, when it is detected that the user performs a closing operation on the sun protection monitoring function, the state of the smart mirror is obtained.

[0184] Optionally, if the user does not have the risk of sunburn, the sun protection monitoring function is controlled to be turned off.

[0185] S612, if it is detected that the user performs a closing operation on the sun protection monitoring function, the state of the smart mirror is obtained.

[0186] Exemplarily, if it is detected that the user performs a closing operation on the sun protection monitoring function, the state of the smart mirror is obtained. Since when the user turns off the sun protection monitoring function, the sun protection monitoring function can be turned off in the smart mirror and the smart mirror is kept turned on; or the smart mirror is turned off so that the target function in the smart mirror is turned off.

[0187] S613, whether the smart mirror is in the on state; if so, execute S614; if not, execute S615.

[0188] Exemplarily, it is judged whether the smart mirror is in the on state; if the smart mirror is in the on state, a prompt message is displayed in the smart mirror; if the smart mirror is not in the on state, a prompt message is displayed on the display screen at the adjacent position of the user.

[0189] S614, a prompt message is displayed in the smart mirror.

[0190] Exemplarily, if the intelligent mirror is in the on state, a prompt message is displayed on the intelligent mirror; wherein, the prompt message is used to prompt the user that there is a current risk of sunburn, and it is recommended to turn on the sun protection monitoring function of the intelligent mirror to facilitate precise makeup replenishment according to the sun protection monitoring function, so as to reduce the risk of sunburn.

[0191] S615, display a prompt message on the display screen adjacent to the user.

[0192] Exemplarily, if the intelligent mirror is in the off state, a prompt message is displayed on the display screen adjacent to the user, facilitating the user to view the prompt message.

[0193] S616, whether the intelligent mirror is in the on state; if so, execute S617; if not, execute S618.

[0194] Exemplarily, after displaying the prompt message, determine whether the intelligent mirror is in the on state; if the intelligent mirror is in the on state, automatically restore the sun protection monitoring function; if the intelligent mirror is in the off state, continuously display the prompt message to prompt the user to turn on the sun protection monitoring function in the intelligent mirror.

[0195] S617, automatically restore the sun protection monitoring function.

[0196] Exemplarily, if the intelligent mirror is in the on state, automatically restore the sun protection monitoring function, and detect the sun protection demand area of the user through the sun protection monitoring function.

[0197] S618, continuously display the prompt message.

[0198] Exemplarily, if the intelligent mirror is in the off state, continuously display the prompt message to prompt the user to turn on the sun protection monitoring function in the intelligent mirror.

[0199] In the embodiments of the present application, when the system detects that the user has a sun protection risk, according to the user's location and vehicle status, through the linkage between the intelligent mirror and other display screens, on the premise of ensuring safety first, turn on the sun protection monitoring function of the intelligent mirror to help the user determine the sun protection demand area that needs sun protection makeup replenishment, so as to reduce the sunburn risk of the vehicle. At the same time, two different levels of intervention measures are automatically enabled for the user; wherein, the primary intervention measure is that when it is detected that the user has a sunburn risk, the sun protection monitoring function is automatically activated; the secondary intervention measure is that when it is detected that the user closes the sun protection monitoring function, a prompt message is displayed to prompt the user to turn on the intelligent mirror and the sun protection monitoring function in the intelligent mirror; thereby reducing the sun protection risk and achieving the purpose of precise makeup replenishment to resist the sun protection risk.

[0200] The above text combines Figures 1 to 6 and describes in detail the control method of the vehicle provided by the embodiments of the present application; hereinafter, it will be combined with Figure 7 and Figure 8Describe in detail the device embodiments of the present application. It should be understood that the devices in the embodiments of the present application can execute the various methods in the foregoing embodiments of the present application. That is, for the specific working processes of the following various products, reference can be made to the corresponding processes in the foregoing method embodiments.

[0201] Figure 7 It is a schematic structural diagram of a control device for a vehicle provided by an embodiment of the present application.

[0202] Exemplarily, as Figure 7 shown, the vehicle control device 700 includes:

[0203] An acquisition module 710, configured to obtain the location information of a target user if it is detected that there is a target user in the vehicle who is at risk of sunburn;

[0204] A processing module 720, configured to determine a first display screen and a second display screen corresponding to the target user based on the location information. The first display screen is disposed on the sun visor of the vehicle, and the first display screen has a target function of monitoring the sun protection requirement area of the target user. The second display screen is at least one display screen that is in an on state in the vehicle and is different from the first display screen. If it is detected that the target function is in an off state, determine a target display screen among the first display screen and the second display screen; display a target prompt message on the target display screen, where the target prompt message is used to prompt to turn on the target function and perform sun protection processing on the sun protection requirement area.

[0205] Optionally, as an embodiment, the acquisition module is further configured to: after a preset duration of displaying the target prompt message, obtain the status information of the target function; the processing module is further configured to: if the target function is in an off state and the current target user is at risk of sunburn, continuously display the target prompt message on the target display screen until the target function is turned on.

[0206] Optionally, as an embodiment, the processing module is specifically configured to: determine whether the first display screen is in an on state; if the first display screen is in an on state, determine the first display screen as the target display screen; if the first display screen is in an off state, determine the display screen closest to the target user among the second display screens as the target display screen.

[0207] Optionally, as an embodiment, the processing module is further configured to: if it is detected that there is a target user in the vehicle who is at risk of sunburn, control the target function of the first display screen to be turned on; prompt the target user to perform sun protection processing on the sun protection requirement area through the target function.

[0208] Optionally, as an embodiment, the processing module is specifically configured to: determine whether the target user is in the driver's seat of the vehicle based on the location information; if the target user is not in the driver's seat of the vehicle, control the target function in the first display screen to be turned on; if the target user is in the driver's seat of the vehicle, obtain the vehicle state of the vehicle; and control the target function to be turned on based on the vehicle state.

[0209] Optionally, as an embodiment, the processing module is specifically configured to: if the vehicle state is in a parked state, control the target function to be turned on; if the vehicle state is in a driving state, output a first prompt message for prompting the target user to check the sun protection requirement area after parking; after outputting the first prompt message, obtain the updated state of the vehicle; and when the updated state indicates that the vehicle is in a parked state, control the target function to be turned on.

[0210] Optionally, as an embodiment, the first display screen is fixed on the housing of the first sun visor of the vehicle; the obtaining module is further configured to: obtain the state information of the first sun visor; the processing module is further configured to: if the first sun visor is in a closed state, control the first sun visor to be unfolded; and when the sun visor is in an unfolded state, turn on the first display screen.

[0211] It should be noted that the above control device of the vehicle is embodied in the form of functional units. The term "module" here can be implemented in software and / or hardware forms, and no specific limitation is made thereto.

[0212] For example, the "module" can be a software program, a hardware circuit, or a combination of the two that implements the above functions. The hardware circuit may include an application specific integrated circuit (ASIC), an electronic circuit, a processor (such as a shared processor, a dedicated processor, or a group of processors, etc.) for executing one or more software or firmware programs, a memory, a merged logic circuit, and / or other suitable components that support the described functions.

[0213] Therefore, the units of the examples described in the embodiments of the present application can be implemented by electronic hardware, or a combination of computer software and electronic hardware. Whether these functions are executed in a hardware or software manner depends on the specific application and design constraints of the technical solution. A professional technician can use different methods for each specific application to implement the described functions, but such implementation should not be considered to exceed the scope of the present application.

[0214] Figure 8 It is a schematic structural diagram of a vehicle provided by an embodiment of the present application.

[0215] Exemplarily, the vehicle 800 includes: a processor 810, a memory 820, and an executable program code 830.

[0216] Exemplarily, vehicle 800 includes one or more processors 810, and the one or more processors 810 can support vehicle 800 to implement the control 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 devices, such as discrete gates, transistor logic devices, or discrete hardware components.

[0217] Exemplarily, the processor 810 can be used to control the vehicle 800, execute software programs, and process the data of the software programs. Vehicle 800 can also include a communication unit for realizing the input (receiving) and output (sending) of signals.

[0218] Exemplarily, vehicle 800 can include one or more memories 820, on which there is executable program code 830. The executable program code 830 can be run by the processor 810 to generate instructions, so that the processor 810 executes the control method of the vehicle described in the above method embodiments according to the instructions.

[0219] Optionally, data can also be stored in the memory 820. Optionally, the processor 810 can also read the data stored in the memory 820. The data can be stored at the same storage address as the executable program code 830, or the data can be stored at a different storage address from the executable program code 830.

[0220] Exemplarily, the processor 810 and the memory 820 can be set separately or integrated together. For example, they can be integrated on a system on chip (SOC) of the terminal device.

[0221] Exemplarily, the memory 820 can be used to store relevant programs of the vehicle control method provided in the embodiments of the present application. The processor 820 can be used to call the executable program code 830 stored in the memory 820 when controlling the vehicle, and execute the vehicle control method of the embodiments of the present application. For example, if it is detected that there is a target user in the vehicle who is at risk of sunburn, obtain the location information of the target user; based on the location information, determine the first display screen and the second display screen corresponding to the target user. The first display screen is arranged on the sun visor of the vehicle, and the first display screen has the target function of monitoring the sun protection requirement area of the target user. The second display screen is at least one display screen that is in an on state in the vehicle and is different from the first display screen; if it is detected that the target function is in an off state, determine the target display screen among the first display screen and the second display screen; display the target prompt information on the target display screen, where the target prompt information is used to prompt to turn on the target function and perform sun protection processing on the sun protection requirement area.

[0222] The present application also provides a computer-readable storage medium, on which a computer program is stored, and when the program is executed by a processor, it implements the steps of the vehicle control method in any of the foregoing embodiments.

[0223] Among them, the computer-readable storage medium can include but is not limited to any type of disk, including floppy disks, optical disks, digital versatile discs (DVDs), compact disc read-only memories (CD-ROMs), microdrives, and magneto-optical disks, read-only memories (ROMs), random access memories (RAMs), erasable programmable read-only memories (EPROMs), electrically erasable programmable read-only memories (EEPROMs), dynamic random access memories (DRAMs), video random access memories (VRAMs), flash memory devices, magnetic cards or optical cards, nanosystems (including molecular memory ICs), or any type of medium or device suitable for storing instructions and / or data.

[0224] The present application also provides a computer program product, when the computer program product runs on a computer, it causes the computer to execute the above relevant steps to implement a vehicle control method in the above embodiments.

[0225] In addition, the vehicle provided by the embodiments of the present application may specifically be a chip, a component or a module, and the vehicle may include a processor and a memory connected to each other; wherein, the memory is used to store instructions, and when the vehicle runs, the processor may call and execute the instructions to enable the chip to execute a vehicle control method in the above embodiments.

[0226] Among them, the vehicle, computer-readable storage medium, computer program product or chip provided by the present application are all used to execute the corresponding vehicle control method provided above. Therefore, the beneficial effects that can be achieved can refer to the beneficial effects in the corresponding vehicle control method provided above, and will not be elaborated here.

[0227] Through the description of the above embodiments, those skilled in the art can understand that for the convenience and conciseness of description, only the above division of each functional module is used as an example. In actual applications, the above functions can be allocated to 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.

[0228] 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 illustrative. For example, the division of modules or units is only a logical function division. In actual implementation, there may be other division methods. For example, multiple units or components can be combined or integrated into another device, or some features can be ignored or not executed. Another point is that the displayed or discussed coupling or direct coupling or communication connection to each other can be through some interfaces, and the indirect coupling or communication connection of the device or unit can be in an electrical, mechanical or other form.

[0229] The above content is only the specific implementation manner of the present application, but the protection scope of the present application is not limited thereto. Any person skilled in the art can easily think of changes or substitutions within the technical scope disclosed by the present application, and all 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 control method for a vehicle, characterized in that, The method includes: If a target user at risk of sunburn is detected in the vehicle, obtain the location information of the target user; Based on the location information, determine a first display screen and a second display screen corresponding to the target user, where the first display screen is disposed on the sun visor of the vehicle, the first display screen has a target function of monitoring a sun protection requirement area of the target user, and the second display screen is at least one display screen that is turned on in the vehicle and is different from the first display screen; If it is detected that the target function is in a closed state, determine a target display screen among the first display screen and the second display screen; Display target prompt information on the target display screen, where the target prompt information is used to prompt to turn on the target function and perform sun protection processing on the sun protection requirement area.

2. The method according to claim 1, wherein It further includes: After a preset duration of displaying the target prompt information, obtain the status information of the target function; If the target function is in the closed state and the current target user is at risk of sunburn, continuously display the target prompt information on the target display screen until the target function is turned on.

3. The method according to claim 1, wherein The determining the target display screen among the first display screen and the second display screen includes: Determine whether the first display screen is in an on state; If the first display screen is in an on state, determine the first display screen as the target display screen; If the first display screen is in a closed state, determine the display screen closest to the target user among the second display screens as the target display screen.

4. The method according to claim 1, wherein It further includes: If it is detected that a target user at risk of sunburn is included in the vehicle, control the target function of the first display screen to be turned on; Prompt the target user to perform sun protection processing on the sun protection requirement area through the target function.

5. The method according to claim 4, characterized in that, The controlling the target function of the first display screen to be turned on includes: Based on the location information, determine whether the target user is in the driver's seat of the vehicle; If the target user is not in the driver's seat of the vehicle, control the target function in the first display screen to be turned on; If the target user is in the driver's seat of the vehicle, obtain the vehicle state of the vehicle; Based on the vehicle state, control the target function to be turned on.

6. The method according to claim 5, wherein The controlling the target function to be turned on based on the vehicle state includes: If the vehicle state is in a parked state, control the target function to be turned on; If the vehicle state is in a driving state, output a first prompt information, where the first prompt information is used to prompt the target user to check the sun protection requirement area after parking; After outputting the first prompt information, obtain the updated state of the vehicle; When the updated state indicates that the vehicle is in the parked state, control the target function to be turned on.

7. The method according to claim 5, wherein The first display screen is fixed on the housing of the first sun visor of the vehicle. Before controlling the first display screen to be turned on, it further includes: Obtain the status information of the first sun visor; If the first sun visor is in a closed state, control the first sun visor to be unfolded; When the sun visor is in an unfolded state, turn on the first display screen.

8. A control device for a vehicle, characterized in that, The device includes: An acquisition module, configured to acquire location information of a target user if it is detected that there is a target user with a risk of sunburn in the vehicle; A processing module, configured to determine a first display screen and a second display screen corresponding to the target user based on the location information, where the first display screen is disposed on a sun visor of the vehicle, the first display screen has a target function of monitoring a sun protection required area of the target user, and the second display screen is at least one display screen that is in an on state and different from the first display screen in the vehicle; if it is detected that the target function is in an off state, determine a target display screen from the first display screen and the second display screen; and display a target prompt message on the target display screen, where the target prompt message is used to prompt to turn on the target function and perform sun protection processing on the sun protection required area.

9. A vehicle, characterized in that, The vehicle includes: A memory, configured to store executable program code; A processor, configured to call and run the executable program code from the memory, so that the vehicle executes the method according to any one of claims 1 to 7.

10. A computer-readable storage medium, characterized in that, A computer program is stored in the computer-readable storage medium, and when the computer program is executed, the method according to any one of claims 1 to 7 is implemented.