Vehicle control method, vehicle, and storage medium

By enabling intelligent linkage between the display screen and ambient lighting in the vehicle, and automatically adjusting configuration parameters, the problem of inconsistent overall atmosphere between the display screen and ambient lighting is solved, improving user experience and visual effects.

WO2026157701A1PCT designated stage Publication Date: 2026-07-30GREAT WALL MOTOR CO LTD
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Patent Information

Authority / Receiving Office
WO · WO
Patent Type
Applications
Current Assignee / Owner
GREAT WALL MOTOR CO LTD
Filing Date
2025-12-19
Publication Date
2026-07-30

AI Technical Summary

Technical Problem

In existing technologies, the displays and ambient lighting in vehicles lack flexible parameter adjustment mechanisms, resulting in inconsistent overall atmosphere and a poor user experience.

Method used

By responding to the user's configuration operations, the system determines the linked objects of the display screen and ambient lights, and automatically adjusts the configuration parameters of the display screen and ambient lights based on the current configuration parameters of the linked objects and the user's configuration parameters to achieve intelligent linkage.

Benefits of technology

It enhances the visual appeal and user experience of the vehicle interior, achieving harmony and consistency between the display screen and the ambient lighting.

✦ Generated by Eureka AI based on patent content.

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Abstract

A vehicle control method (200), a vehicle, and a storage medium. The method (200) comprises: S210, in response to a configuration operation on a first object, acquiring a first configuration parameter corresponding to the configuration operation; S220, determining a second object displayed in linkage with the first object; S230, on the basis of the current configuration parameter of the second object and the first configuration parameter, determining a target configuration parameter of the second object; and S240, controlling the first object to be displayed using the first configuration parameter, and controlling the second object to be displayed using the target configuration parameter, wherein the first object is either one of an atmosphere lamp (140, 150) and a display screen (110, 120, 130) in a vehicle, and the second object is the other one of the atmosphere lamp (140, 150) and the display screen (110, 120, 130) other than the first object. The method (200) can realize intelligent linkage between a display screen (110, 120, 130) and an atmosphere lamp (140, 150) in a vehicle, thereby improving the visual effect of a vehicle cabin.
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Description

Vehicle control methods, vehicles and storage media Technical Field

[0001] This application relates to the field of vehicle technology, and more specifically, to a vehicle control method, a vehicle, and a storage medium in the field of vehicle technology. Background Technology

[0002] With the development of vehicle control technology, the parameters of displays and ambient lighting in vehicles can be adjusted according to user needs. In existing technologies, displays and ambient lighting often use fixed parameters, and the adjustment process is relatively complex. When users adjust the parameters of displays or ambient lighting according to their preferences, there is a lack of flexible parameter adjustment mechanisms, resulting in an inconsistent overall atmosphere in the vehicle.

[0003] Therefore, how to achieve intelligent linkage between the vehicle's display screen and ambient lighting to enhance the visual effect of the vehicle's cabin has become a key issue that urgently needs to be addressed. Summary of the Invention

[0004] This application provides a vehicle control method, a vehicle, and a storage medium. The method enables intelligent linkage between the display screen and ambient lighting in the vehicle, thereby enhancing the visual effect of the vehicle cabin.

[0005] Firstly, a vehicle control method is provided, the method comprising:

[0006] In response to a configuration operation on a first object, the system obtains the first configuration parameters corresponding to the configuration operation; determines a second object that is displayed in conjunction with the first object; determines the target configuration parameters of the second object based on the current configuration parameters of the second object and the first configuration parameters; controls the first object to be displayed with the first configuration parameters, and controls the second object to be displayed with the target configuration parameters; wherein, the first object is either the ambient light or the display screen in the vehicle; and the second object is the other object between the ambient light and the display screen besides the first object.

[0007] In the embodiments of this application, configuring a configuration object (i.e., a first object, such as a display screen or ambient light) can determine a linked object (i.e., a second object) that is displayed in conjunction with the configuration object, and determine the first configuration parameter corresponding to the configuration operation performed on the configuration object. Based on the current configuration parameter of the linked object and the first configuration parameter, the target configuration parameter of the second object can be determined. Since the target configuration parameter of the linked object is determined based on the current configuration parameter of the linked object and the first configuration parameter of the configuration object, the configuration parameter of the configuration object can be adjusted by configuring the configuration operation of the configuration object, and the configuration parameter of the linked object can be automatically adjusted. This enables the linkage between the display screen and the ambient light in the vehicle, improving the overall visual effect inside the vehicle and thus enhancing the user's riding experience. In conjunction with the first aspect, in some possible implementations, determining the target configuration parameter of the second object based on the current configuration parameter of the second object and the first configuration parameter includes:

[0008] When the first object is a display screen, the target configuration parameter is determined based on the first target parameter, the second target parameter, the current configuration parameter, and the first configuration parameter; when the first object is an ambient light, the target configuration parameter is determined based on the current display content of the second object, the current configuration parameter, and the first configuration parameter; wherein, the first target parameter is used to indicate whether the configuration parameters of each first object in the vehicle are the same; the second target parameter is used to indicate whether the configuration parameters of each second object in the vehicle are the same.

[0009] In the embodiments of this application, when the configuration object is a display screen, since the target configuration parameters of the linked object are determined based on the first target parameter and the second target parameter, and considering whether the displays in the vehicle are linked with each other and whether the ambient lights are linked, different display control logics can be implemented in different situations to determine the target configuration parameters so that the ambient lights and the display screen are linked. When the configuration object is an ambient light, the target configuration parameters are determined based on the current display content, current configuration parameters, and the first configuration parameter of the linked object. Since the display content of the display screen is taken into account, the target configuration parameters can be adjusted when specific content is displayed on the display screen. Therefore, it ensures both driving safety and the needs of special users, while maximizing the consistency of the interior visual effect.

[0010] In conjunction with the first aspect and the above implementation methods, in some possible implementation methods, when the first object is a display screen, the target configuration parameters are determined based on the first target parameter, the second target parameter, the current configuration parameters of the second object, and the first configuration parameter, including:

[0011] When the first target parameter indicates that the configuration parameters of each first object are the same, and the second target parameter indicates that the configuration parameters of each second object are the same, or when the first target parameter indicates that the configuration parameters of each first object are different, and the second target parameter indicates that the configuration parameters of each second object are different, the target configuration parameter is determined based on the first configuration parameter; when the first target parameter indicates that the configuration parameters of each first object are the same, and the second target parameter indicates that the configuration parameters of each second object are different, the target configuration parameter is determined based on the current configuration parameter and the first configuration parameter.

[0012] In the embodiments of this application, when the configuration object is a display screen, if the configuration parameters of each display screen in the vehicle are the same and the configuration parameters of each ambient light are the same, or if the configuration parameters of each display screen in the vehicle are different and the configuration parameters of each ambient light are different, if the configuration parameters of the display screen are to be adjusted, it is necessary to determine the target configuration parameters based on the first configuration parameters of the display screen and adjust the configuration parameters of the ambient light to the target configuration parameters to achieve coordination between the display screen and the ambient light display. When the configuration parameters of each display screen in the vehicle are the same and the configuration parameters of each ambient light are different, since the configuration parameters of each ambient light are different, it is necessary to determine the target configuration parameters based on the current configuration parameters of the ambient light and the first configuration parameters of the display screen, that is, to determine the configuration parameters for each ambient light with different configuration parameters, thereby improving the overall coordination of the vehicle interior through the linkage of the display screen and the ambient light, thereby improving the user's visual experience.

[0013] In combination with the first aspect and the above implementation methods, some possible implementation methods also include:

[0014] Determine the target percentage of the first configuration parameter among all display screens in the vehicle; when the first target parameter indicates that the configuration parameters of each first object are different, and the second target parameter indicates that the configuration parameters of each second object are the same, if the target percentage is greater than a preset percentage threshold, determine the target configuration parameter based on the first configuration parameter; when the first target parameter indicates that the configuration parameters of each first object are different, and the second target parameter indicates that the configuration parameters of each second object are the same, if the target percentage is less than or equal to a preset percentage threshold, determine the target configuration parameter based on the second configuration parameter; wherein, the second configuration parameter is the configuration parameter with the largest percentage among all display screens in the vehicle. In the embodiments of this application, when the configuration object is a display screen, and the configuration parameters of each display screen in the vehicle are different, while the configuration parameters of each ambient light are the same, a target proportion of the first configuration parameter among the configuration parameters of all display screens in the vehicle is determined. If the target proportion is greater than a preset proportion threshold, a target configuration parameter is determined based on the first configuration parameter. At this time, most display screens in the vehicle display the first configuration parameter. Determining the target configuration parameter of the ambient light based on the first configuration parameter can improve the overall visual effect inside the vehicle. If the target proportion is less than or equal to the preset proportion threshold, the target configuration parameter is determined based on the configuration parameter with the largest proportion among the configuration parameters of all display screens in the vehicle, thereby improving the visual coordination between the display screen and the ambient light and thus improving the user's visual experience.

[0015] In combination with the first aspect and the above implementation methods, some possible implementation methods also include:

[0016] Obtain a preset mapping relationship; determine a third configuration parameter based on the first configuration parameter and the preset mapping relationship; determine a target configuration parameter based on the current configuration parameter and the first configuration parameter, including: if the difference between the third configuration parameter and the current configuration parameter is less than a preset threshold, determine the target configuration parameter based on the first configuration parameter and the preset mapping relationship.

[0017] In the embodiments of this application, considering the preset mapping relationship and the first configuration parameter, the first configuration parameter to be adjusted to the display screen can be mapped using the preset mapping relationship to obtain the third configuration parameter of the ambient light corresponding to the first configuration parameter; the third configuration parameter is compared with the current configuration parameter. If the difference is small, it means that the display effect presented by the current configuration parameter of the ambient light is small compared with the display effect to be adjusted to the display screen. At this time, the ambient light is adjusted based on the display effect to be adjusted to the display screen, which can improve the consistency of the display effect in the vehicle.

[0018] In combination with the first aspect and the above implementation methods, in some possible implementation methods, determining the second object that is displayed in conjunction with the first object includes: when the first target parameter indicates that the configuration parameters of each first object are different, and the second target parameter indicates that the configuration parameters of each second object are different, determining the second object that is displayed in conjunction with the first object based on the distance between each second object and the first object in the vehicle; when the first target parameter indicates that the configuration parameters of each first object are different, and the second target parameter indicates that the configuration parameters of each second object are the same, determining each second object as the object that is displayed in conjunction with the first object.

[0019] In the embodiments of this application, when the configuration parameters of each first object in the vehicle are different, and the configuration parameters of each second object are different, the second object (i.e. the linked object) that is linked to the first object (i.e. the configuration object) is determined based on the distance between each second object and the first object. Therefore, the linked object can be determined according to the spatial distribution of each linked object in the vehicle, thereby more accurately determining the linked object and achieving a consistent visual effect for the whole vehicle.

[0020] Combining the first aspect and the above implementation methods, in some possible implementation methods, the second objects that are displayed in conjunction with the first object are determined based on the distance between each second object in the vehicle and the first object, including:

[0021] If the number of first objects corresponding to the configuration operation is at least two, determine the distance between each second object and each first object corresponding to the configuration operation; if there is a target second object and at least two first objects corresponding to the configuration operation at the same distance, determine the target first object based on the proportion of the first configuration parameters corresponding to the at least two first objects; and determine the target second object as the linked display object of the target first object.

[0022] In the embodiments of this application, when there are at least two first objects corresponding to the configuration operation, and there are at least two first objects whose distances are the same between the target second object and the first objects corresponding to the configuration operation, and the configuration parameters of each first object in the vehicle are different, and the configuration parameters of each second object are different, the target first object is determined based on the proportion of the first configuration parameters corresponding to at least two first objects; it is possible to accurately determine the linked object when there are multiple configuration objects at the same time, thereby achieving the consistency of the visual effect of the whole vehicle.

[0023] Secondly, a vehicle control device is provided, the device comprising:

[0024] The acquisition module is used to acquire the first configuration parameters corresponding to the configuration operation in response to the configuration operation on the first object;

[0025] The processing module is used to determine a second object that is linked to the first object for display; determine the target configuration parameters of the second object based on the current configuration parameters of the second object and the first configuration parameters; control the first object to display with the first configuration parameters, and control the second object to display with the target configuration parameters; wherein, when the first object is a display screen, the second object is a target ambient light; when the first object is an ambient light, the second object is a target display screen; the first object is either the ambient light or the display screen in the vehicle; the second object is the other one between the ambient light and the display screen, excluding the first object.

[0026] It should be understood that the extensions, limitations, explanations, and descriptions of the relevant content in the first aspect above also apply to the same content in the second aspect. In a third aspect, a vehicle is provided, including a memory and a processor; 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, causing the vehicle to perform the vehicle control method in the first aspect or any possible implementation thereof.

[0027] Fourthly, a computer program product is provided, comprising: computer program code, which, when run on a computer, causes the computer to execute the vehicle control method in the first aspect or any possible implementation thereof.

[0028] Fifthly, a computer-readable storage medium is provided that stores computer program code, which, when executed on a computer, causes the computer to perform the vehicle control method of the first aspect or any possible implementation thereof.

[0029] The technical solution provided in this application allows for the configuration of a configuration object (i.e., a first object, such as a display screen or ambient light). By configuring the configuration object, a linked object (i.e., a second object) can be determined, and the configuration operation performed on the configuration object corresponds to a first configuration parameter. Based on the current configuration parameters of the linked object and the first configuration parameter, the target configuration parameters of the second object can be determined. Since the target configuration parameters of the linked object are determined based on its current configuration parameters and the first configuration parameter, the configuration parameters of the configuration object can be adjusted through configuration operations, and the configuration parameters of the linked object can be automatically adjusted. This enables the linkage between the display screen and ambient light in the vehicle, improving the overall visual effect inside the vehicle and enhancing the user's riding experience. Attached Figure Description

[0030] Figure 1 is a schematic diagram of a vehicle control method provided in an embodiment of this application;

[0031] Figure 2 is a schematic flowchart of a vehicle control method provided in an embodiment of this application;

[0032] Figure 3 is a schematic flowchart of an ambient light control method that links with a display screen according to an embodiment of this application;

[0033] Figure 4 is a schematic flowchart of another method for controlling ambient lighting in conjunction with a display screen, provided in an embodiment of this application.

[0034] Figure 5 is a schematic flowchart of another method for controlling ambient lighting in conjunction with a display screen, provided in an embodiment of this application.

[0035] Figure 6 is a schematic flowchart of another method for controlling ambient lighting in conjunction with a display screen, provided in an embodiment of this application.

[0036] Figure 7 is a schematic flowchart of a control method for a display screen to be linked with ambient lighting according to an embodiment of this application;

[0037] Figure 8 is a structural schematic diagram of a vehicle control device provided in an embodiment of this application;

[0038] Figure 9 is a structural schematic diagram of a vehicle provided in an embodiment of this application. Detailed Implementation

[0039] The technical solutions in this application will be clearly and thoroughly described below with reference to the accompanying drawings. In the description of the embodiments of this application, unless otherwise stated, " / " means "or," for example, A / B can mean A or B. "And / or" in the text is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A existing alone, A and B existing simultaneously, and B existing alone. Furthermore, in the description of the embodiments of this application, "multiple" refers to two or more than two.

[0040] In the following text, the terms "first" and "second" are used for descriptive purposes only and should not be construed as implying or suggesting relative importance or implicitly indicating the number of technical features reflected. Therefore, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. With the development of vehicle control technology, displays and ambient lighting in vehicles have gradually become important components of cabin design, creating a comfortable in-vehicle atmosphere through the display effects of the displays and the lighting effects of the ambient lights. However, in the prior art, displays and ambient lights in vehicles typically use fixed display parameters. When users adjust the parameters of the displays or ambient lights, the lack of control logic between the displays and ambient lights prevents them from being linked, requiring complex manual operations. This cumbersome operation makes it difficult to adjust in real time according to the user's driving needs, thus reducing the user's driving experience.

[0041] The following diagram, with reference to Figure 1, illustrates the application scenarios of this solution.

[0042] Figure 1 is a schematic diagram of a vehicle control method provided in an embodiment of this application. As shown in Figure 1, the vehicle 100 includes, exemplarily, an instrument panel 110, a central control screen 120, a passenger-side entertainment screen 130, door interior ambient lighting 140, and a central console ambient lighting 150. If a user performs a configuration operation on the passenger-side entertainment screen 130, adjusting its color temperature configuration parameter from 50 to 80, it indicates that the user's intention is to adjust the display effect inside the vehicle to a warm tone. However, due to the lack of control logic between the display screen and the ambient lighting, the central console ambient lighting 150 cannot automatically adjust according to the user's configuration operation on the passenger-side entertainment screen 130.

[0043] In view of this, embodiments of this application provide a vehicle control method, a vehicle, and a storage medium. This method can realize intelligent linkage between a display screen and ambient lighting in a vehicle, improving the visual effect in the vehicle cabin. By responding to a user's configuration operation on the display screen or ambient lighting, the method can determine the first configuration parameter corresponding to the configuration operation, determine the second object that will be linked with the display screen or ambient lighting, determine the target display parameter based on the first configuration parameter and the current configuration parameter of the second object, control the first object to display with the first configuration parameter, and control the second object to display with the target configuration parameter. For example, if a user configures the passenger-side entertainment screen 130 by adjusting its color temperature configuration parameter from 50 to 80, it indicates that the user's intention is to adjust the display effect inside the vehicle to a warmer color tone. The user then determines the center console ambient light 150, which is linked to the passenger-side entertainment screen 130 for display. Based on the first configuration parameter of the passenger-side entertainment screen (e.g., display screen color temperature configuration parameter 80) and the current configuration parameter of the center console ambient light 150 (e.g., ambient light color temperature configuration parameter 60), the user determines the target configuration parameter (e.g., ambient light color temperature configuration parameter 85). This allows the passenger-side entertainment screen 130 to display with color temperature configuration parameter 80, and the center console ambient light 150 to display with color temperature configuration parameter 85, thereby achieving intelligent linkage between the display screen and the ambient light in the vehicle and enhancing the visual effect of the vehicle cabin.

[0044] The following describes in detail a vehicle control method provided by an embodiment of this application with reference to Figure 2.

[0045] Figure 2 is a schematic flowchart of a vehicle control method provided in an embodiment of this application. As shown in Figure 2, method 200 includes steps S210 to S240, which will be described in detail below.

[0046] For example, the vehicle control method 200 shown in FIG2 can be executed by the vehicle; or by the processor in the vehicle; or by the chip in the processor of the vehicle.

[0047] S210. In response to the configuration operation on the first object, obtain the first configuration parameter corresponding to the configuration operation.

[0048] The first object refers to either the ambient lighting or the display screen in the vehicle; the ambient lighting can include: dot ambient lighting, strip ambient lighting, and panel ambient lighting, which can be configured on the center console, door interior, dashboard, and other parts of the vehicle; the display screen is an information display device in the vehicle, which can display on-board computer information, audio information, video information, navigation information, and alarm information, etc.; the configuration operation can be parameter configuration operations such as brightness adjustment, contrast adjustment, saturation adjustment, color temperature adjustment, and color adjustment; the first configuration parameter can be configuration parameters such as brightness, contrast, saturation, color temperature, and color.

[0049] For example, the in-vehicle infotainment (IVI) system can obtain the user's configuration operation to increase the brightness configuration parameter of the central control screen (for example, increasing the brightness configuration parameter from 40 to 60). The IVI responds to the configuration operation and obtains the first configuration parameter (brightness configuration parameter 60) corresponding to the configuration operation.

[0050] Optionally, this configuration can be performed by the user manually clicking on the touch area on the central control screen, or by the user issuing a voice command.

[0051] Optionally, the configuration of each display screen can be performed by the user through the touch function of each screen. For example, the user can click the settings function of the passenger-side entertainment screen to increase the contrast of the screen. Alternatively, the configuration can be performed through the central control screen. For example, the user can click the settings function of the central control screen and select to adjust the configuration parameters of the target display screen, which can include all displays in the vehicle. The configuration of each ambient light can also be performed through the central control screen. For example, the user can click the settings function of the central control screen, select ambient light adjustment, and customize the color, color temperature, and brightness of the ambient lights in each zone. Alternatively, the ambient lights in all zones can be set to a uniform color, meaning that changes to the configuration parameters of one zone's ambient light will change the ambient lights in the other zones accordingly.

[0052] It should be noted that the brightness configuration parameter refers to the intensity of the light output by the display screen. In the embodiments of this application, a brightness configuration parameter of 50 can indicate that the intensity of the light output by the display screen is 50% of the maximum output light intensity. For example, if the maximum brightness of the display screen is 1000 nits, a brightness configuration parameter of 50 means that the brightness of the display screen is set to 500 nits. The color temperature configuration parameter can also be called color temperature parameter, color temperature, display color temperature, and hue parameter, etc. It is used to adjust the hue of the display device, affecting the visual effect of the picture. It is usually measured in Kelvin (K), indicating whether the hue of the light source is biased towards a warm hue (such as red or yellow) or a cool hue (such as blue). The higher the value of the color temperature configuration parameter, the closer the hue of the light source is to a cool hue, and the lower the value, the closer the hue is to a warm hue. The contrast configuration parameter is the brightness difference between the brightest and darkest parts of the display screen. High contrast means that the difference between the bright and dark parts of the image is obvious. The color configuration parameter can also be called color configuration parameter, color parameter, display color, or color balance parameter, and is used to adjust the values ​​of each color channel in the Red-Green-Blue (RGB) color mode of the display screen to achieve the effect of adjusting the color display.

[0053] S220. Determine the second object that is displayed in conjunction with the first object.

[0054] The first object is either the ambient light or the display screen in the vehicle, and the second object is the other object in the ambient light or the display screen besides the first object.

[0055] For example, if a user is detected configuring parameters on the display screen, the display screen can be identified as the first object and the ambient light as the second object. For example, upon detecting a user's parameter configuration operation on the display screen, the parameter configuration command and the configuration object are sent to the IVI system. The IVI system then identifies the display screen as the first object and the ambient light as the second object.

[0056] In one implementation, if a user is detected configuring parameters on one of the displays in the vehicle, all displays in the vehicle are identified as the first object, and all ambient lights in the vehicle are identified as the second object.

[0057] In one implementation, if a user is detected configuring parameters on a display screen in the vehicle, all display screens in the vehicle are identified as the first object, and some ambient lights in the vehicle are identified as the second object.

[0058] In one implementation, if a user is detected configuring parameters on a display screen in the vehicle, the display screen configured by the user is identified as the first object, and all ambient lights in the vehicle are identified as the second object.

[0059] In one implementation, if a user is detected configuring parameters on a display screen in the vehicle, the display screen configured by the user is identified as the first object, and some of the ambient lights in the vehicle are identified as the second object.

[0060] In one implementation, if it is detected that a user has performed parameter configuration operations on some of the ambient lights in the vehicle, all the ambient lights in the vehicle are identified as the first object, and all the displays in the vehicle are identified as the second object.

[0061] In one implementation, if a user is detected configuring parameters for some ambient lights in the vehicle, all ambient lights in the vehicle are identified as the first object, and some displays in the vehicle are identified as the second object.

[0062] In one implementation, if it is detected that a user has performed parameter configuration operations on some of the ambient lights in the vehicle, the ambient lights whose parameters have been configured by the user are identified as the first object, and some of the displays in the vehicle are identified as the second object.

[0063] In one implementation, if it is detected that a user has performed parameter configuration operations on some of the ambient lights in the vehicle, the ambient lights whose parameters have been configured by the user are identified as the first object, and all the displays in the vehicle are identified as the second object.

[0064] Unless otherwise stated, in this application, the term "linkage" means that the configuration operation of the first object is associated with the configuration operation of the second object, that is, if the configuration parameters of the first object change due to the configuration operation on it, the configuration parameters of the second object will also change accordingly.

[0065] In one implementation, the above method includes:

[0066] When the first object is a first target ambient light, and the first target parameter indicates that the configuration parameters of each ambient light are different, and the second target parameter indicates that the configuration parameters of each display screen are different, a first target display screen that is linked to the first target ambient light is determined based on the distance between each display screen in the vehicle and the first target ambient light; when the first object is a second target display screen, and the first target parameter indicates that the configuration parameters of each display screen are different, and the second target parameter indicates that the configuration parameters of each ambient light are different, a second target ambient light that is linked to the second target display screen is determined based on the distance between each ambient light in the vehicle and the second target display screen.

[0067] The first target parameter is used to indicate whether the configuration parameters of each first object in the vehicle are the same; the second target parameter is used to indicate whether the configuration parameters of each second object in the vehicle are the same.

[0068] In the embodiments of this application, when the first object is an ambient light, a first target parameter is used to indicate whether the ambient lights in the vehicle are configured in zones, and a second target parameter is used to indicate whether the configuration parameters of the displays in the vehicle are consistent. If the first target parameter indicates that the configuration parameters of the ambient lights are different, that is, it indicates that the ambient lights in the vehicle are configured in zones, then the ambient lights are allowed to set different configuration parameters and be displayed. If the first target parameter indicates that the configuration parameters of the ambient lights are the same, that is, it indicates that the ambient lights in the vehicle are not configured in zones, then the ambient lights are not allowed to set different configuration parameters. If one ambient light adjusts its configuration parameter, all ambient lights adjust their configuration parameters accordingly, and the configuration parameters of the entire vehicle's ambient lights remain consistent. If the second target parameter indicates that the configuration parameters of the displays are different, then the displays are allowed to set different configuration parameters and be displayed. If the first target parameter indicates that the configuration parameters of the displays are the same, then the displays are not allowed to set different configuration parameters. If one display adjusts its configuration parameter, all displays adjust their configuration parameters accordingly, and the configuration parameters of the entire vehicle's displays remain consistent.

[0069] For example, as shown in Figure 1, when the configuration parameters of each ambient light are different according to the first target parameter, and the configuration parameters of each display screen are different according to the second target parameter, if it is detected that the user adjusts the brightness configuration parameter of the center console ambient light 150 from 40 to 60, the center console ambient light 150 is determined as the first target ambient light. The display screen closest to the center console ambient light 150 among the instrument panel screen 110, the center console screen 120, and the passenger entertainment screen 130 is determined as the first target display screen that displays in conjunction with the center console ambient light 150. That is, the center console screen 120 is determined as the first target display screen, and the configuration parameters of the center console screen 120 are adjusted according to the adjustment of the configuration parameters of the center console ambient light 150. In the above embodiment, the display screen closest to the first target ambient light is determined as the first target display screen. In another embodiment, the distances between each display screen and each ambient light in the vehicle are pre-calibrated. If a display screen has the closest distance to a first target ambient light, that display screen is designated as the first target display screen. For example, as shown in Figure 1, the ambient light closest to the instrument panel screen is the door interior ambient light 140, the ambient light closest to the center console screen 120 is the center console ambient light 150, and the ambient light closest to the passenger entertainment screen 130 is the center console ambient light 150. If the first target ambient light is the door interior ambient light 140, the first target display screen is the instrument panel screen 110; if the first target ambient light is the center console ambient light 150, the first target display screens are the center console screen 120 and the passenger entertainment screen 130. Similarly, the distances between each ambient light and the display screen can be pre-calibrated. If the first target is a display screen, each ambient light only displays in conjunction with the display screen closest to it.

[0070] In one embodiment, when the first object is an ambient light and the second object is a display screen, the configuration parameters of each ambient light in the vehicle are different, and the distance between screen A and ambient light A is equal to the distance between screen A and ambient light B, a prompt message can be sent to the user. The prompt message allows the user to manually choose whether to adjust the configuration parameters of screen A to the display effect of ambient light A or ambient light B.

[0071] In the above solution, if the first object is the first target ambient light, and the configuration parameters of each ambient light are different, and the configuration parameters of each display screen are also different, the first target display screen that is linked to the first target ambient light is determined based on the distance between each display screen and the first target ambient light. After adjusting the first target ambient light, in order not to affect the display of each display screen in the vehicle, the display screen that is closer to the first target ambient light is determined as the display screen that is linked to the first target ambient light. This can achieve the following: when the first target ambient light is adjusted, the configuration parameters of the first target display screen that is closer to it will be automatically adjusted so that the display effect is consistent with the first target ambient light, thereby achieving local consistency of the display effect in the vehicle and improving the user's riding experience. If the first object is the second target display screen, and the configuration parameters of each display screen are different, and the configuration parameters of each ambient light are also different, based on the distance between each ambient light and the first target display screen, the first target ambient light that is linked to the first target display screen is determined. After adjusting the first target display screen, in order not to affect the display of each ambient light in the vehicle, the ambient light that is close to the first target display screen is determined to be the ambient light that is linked to the first target display screen. This can achieve that when the first target display screen is adjusted, the configuration parameters of the first target ambient light that is close to it are automatically adjusted, so that the display effect is consistent with the first target display screen, thereby achieving local consistency of the display effect in the vehicle and improving the user's riding experience.

[0072] S230. Based on the current configuration parameters of the second object and the first configuration parameters, determine the target configuration parameters of the second object.

[0073] In the embodiments of this application, since the display principles of ambient lights and displays are different, when determining the target configuration parameters of the second object, it is necessary to determine them based on the current configuration parameters of the second object and the first configuration parameters of the first object.

[0074] In one implementation, the above method includes:

[0075] When the first object is a display screen, the target configuration parameter is determined based on the first target parameter, the second target parameter, the current configuration parameter, and the first configuration parameter; when the first object is an ambient light, the target configuration parameter is determined based on the current display content of the second object, the current configuration parameter, and the first configuration parameter; wherein, the first target parameter is used to indicate whether the configuration parameters of each first object in the vehicle are the same; the second target parameter is used to indicate whether the configuration parameters of each second object in the vehicle are the same.

[0076] In the embodiments of this application, when a user configures the parameters of the display screen, the target configuration parameters of the ambient light are determined based on whether the configuration parameters of each display screen in the vehicle are the same, whether the configuration parameters of each ambient light in the vehicle are the same, the current configuration parameters of the ambient light, and the first configuration parameters configured by the user for the display screen; when a user configures the parameters of the ambient light, the target configuration parameters of the display screen are determined based on the current display content of the display screen, the current configuration parameters of the display screen, and the first configuration parameters configured by the user for the ambient light.

[0077] In the above scheme, when the first object is a display screen, since the target configuration parameters of the second object are determined based on the first target parameter and the second target parameter, and considering whether the display screens in the vehicle are linked and whether the ambient lights are linked, different display control logics can be implemented in different situations to determine different target configuration parameters so that the ambient lights and the display screen are linked. When the first object is an ambient light, the target configuration parameters are determined based on the current display content, current configuration parameters, and first configuration parameters of the second object. Considering the display content of the display screen, the target configuration parameters can be adjusted when specific content is displayed on the display screen. Since the target configuration parameters are determined based on the current configuration parameters and the first configuration parameters, the configuration parameters of the display screen can change with the changes in the ambient lights, thereby achieving linked display between the display screen and the ambient lights.

[0078] In one implementation, when the first object is a display screen, the above method includes:

[0079] Implementation method 1:

[0080] In the embodiments of this application, when the first target parameter indicates that the configuration parameters of each first object are the same, and the second target parameter indicates that the configuration parameters of each second object are the same, the target configuration parameter is determined based on the first configuration parameter.

[0081] For example, all displays in the vehicle have the same configuration parameters, and the ambient lights are not zoned. All ambient lights have the same configuration parameters. If it is detected that the user performs a configuration operation on any display in the vehicle (for example, adjusting the brightness configuration parameter from 40 to 60), the brightness configuration parameters of the other displays in the vehicle are adjusted to 60. Based on the brightness configuration parameter 60, the corresponding ambient light brightness configuration parameter 70 is determined and the ambient light brightness configuration parameter 70 is determined as the target configuration parameter.

[0082] In one embodiment, a preset mapping relationship can be set, and the target configuration parameter can be determined based on the first configuration parameter and the preset mapping relationship.

[0083] Table 1

[0084] For example, if the configuration operation is a brightness configuration operation, the preset mapping relationship between the first configuration parameter and the target configuration parameter can be as shown in Table 1; when the first configuration parameter is 0, the brightness of the display screen is at its lowest value, and the brightness of the ambient light is set to the lowest value, with the target configuration parameter being 0; when the first configuration parameter is 20, the brightness of the display screen is relatively low. Since the light-emitting area of ​​the display screen is large, and the light intensity of the backlight panel differs from that of the ambient light, the target configuration parameter can be set to 25; when the first configuration parameter is 40, the target configuration parameter can be 50; when the first configuration parameter is 60, since the light-emitting area of ​​the display screen is large, it has a greater impact on the human eye, while the brightness of the ambient light has a smaller impact on the human eye, the target configuration parameter can be set to 75 to maintain a consistent display effect with the display screen; when the first configuration parameter is 80, it can be determined that the user's desired atmosphere is bright, and the target configuration parameter can be set to 100 to achieve a bright atmosphere in the vehicle; when the first configuration parameter is 100, that is, the brightness of the display screen is adjusted to the highest value, the target configuration parameter of the ambient light is also set to the highest value of 100.

[0085] It should be understood that the above is an example of the first configuration parameter and the target configuration parameter when the configuration operation is a brightness configuration operation. Different settings can be made by those skilled in the art according to the specific situation. This is only an example and this application does not limit it in any way.

[0086] In another embodiment, the adjustment ratio of the ambient light's configuration parameters can be determined based on the adjustment ratio of the display screen's configuration parameters by the configuration operation. For example, if a user performs a configuration operation on any display screen in the vehicle (e.g., adjusting the brightness configuration parameter from 40 to 60), it can be determined that the first configuration parameter of the display screen has increased by 20%. Based on the 20% adjustment ratio of the first configuration parameter, the target adjustment ratio of the ambient light's configuration parameters can be determined to be 25%. If the current configuration parameter of the ambient light is 50, then the target configuration parameter is 75%.

[0087] Implementation Method Two:

[0088] In the embodiments of this application, a target proportion of the first configuration parameter in the configuration parameters of all displays in the vehicle is determined; when the first target parameter indicates that the configuration parameters of each first object are different, and the second target parameter indicates that the configuration parameters of each second object are the same, if the target proportion is greater than a preset proportion threshold, a target configuration parameter is determined based on the first configuration parameter; when the first target parameter indicates that the configuration parameters of each first object are different, and the second target parameter indicates that the configuration parameters of each second object are the same, if the target proportion is less than or equal to a preset proportion threshold, a target configuration parameter is determined based on the second configuration parameter.

[0089] Among them, the second configuration parameter is the configuration parameter with the largest proportion among all the configuration parameters of all displays in the vehicle.

[0090] For example, as shown in Figure 1, if a user is detected performing a configuration operation on the central control screen 120 in the vehicle (e.g., adjusting the brightness configuration parameter from 40 to 60), the configuration operation is determined to be a brightness configuration operation, the first configuration parameter is 60, the brightness configuration parameter of the instrument panel 110 is obtained as 60, and the brightness configuration parameter of the passenger entertainment screen is 40. The target proportion of the first configuration parameter among the configuration parameters of all displays is 2 / 3. The target proportion is compared with a preset proportion threshold (e.g., it can be 1 / 2). If the target proportion is greater than the preset proportion threshold, the target configuration parameter is determined based on the first configuration parameter (e.g., the target configuration parameter can be determined based on the first configuration parameter and a preset mapping relationship).

[0091] For example, as shown in Figure 1, if a user is detected performing a configuration operation on the central control screen 120 in the vehicle (e.g., adjusting the brightness configuration parameter from 40 to 60), the configuration operation is determined to be a brightness configuration operation. The first configuration parameter is 60. The brightness configuration parameter of the instrument panel 110 and the passenger entertainment screen is obtained as 50. The target proportion of the first configuration parameter among all display screens is 1 / 3. The target proportion is compared with a preset proportion threshold (e.g., 1 / 2). If the target proportion is less than the preset proportion threshold, the brightness configuration parameter with the largest proportion among all display screens is determined as the second configuration parameter. The second configuration parameter is 50. The target configuration parameter is determined based on the second configuration parameter (e.g., it can be determined based on the second configuration parameter and a preset mapping relationship). Optionally, in one embodiment, a prompt message is sent to the user, which allows the user to manually choose whether to adaptively adjust the configuration parameter of the ambient light.

[0092] For example, a prompt message can be displayed on the central control screen: "Do you want to adjust the ambient lighting of the central control panel synchronously?" If the user touches the area corresponding to "Yes", the target configuration parameter is determined based on the second configuration parameter and the preset mapping relationship; if the user touches the area corresponding to "No", the current configuration parameter 45 is determined as the target configuration parameter.

[0093] In the above implementation, when the first object is a display screen, and the configuration parameters of each display screen in the vehicle are different, while the configuration parameters of each ambient light are the same, the target proportion of the first configuration parameter among the configuration parameters of all display screens in the vehicle is determined. If the target proportion is greater than a preset proportion threshold, the target configuration parameter is determined based on the first configuration parameter. At this time, most display screens in the vehicle display the first configuration parameter. Determining the target configuration parameter of the ambient light based on the first configuration parameter can improve the overall visual effect inside the vehicle. If the target proportion is less than or equal to the preset proportion threshold, the target configuration parameter is determined based on the configuration parameter with the largest proportion among the configuration parameters of all display screens in the vehicle, thereby improving the visual coordination between the display screen and the ambient light and thus improving the user's visual experience.

[0094] Implementation method three:

[0095] In the embodiments of this application, when the first target parameter indicates that the configuration parameters of each first object are the same, and the second target parameter indicates that the configuration parameters of each second object are different, the target configuration parameter is determined based on the current configuration parameter and the first configuration parameter.

[0096] For example, if the configuration parameters of each display screen in the vehicle are the same, and the ambient lights are set in zones with different configuration parameters for each ambient light, if a user is detected to perform a configuration operation on any display screen in the vehicle, the target configuration parameters are determined based on the current configuration parameters of each ambient light and the first configuration parameters of the display screen.

[0097] One implementation also includes:

[0098] Obtain a preset mapping relationship; determine a third configuration parameter based on the first configuration parameter and the preset mapping relationship; determine a target configuration parameter based on the current configuration parameter and the first configuration parameter, including: if the difference between the third configuration parameter and the current configuration parameter is less than a preset threshold, determine the target configuration parameter based on the first configuration parameter and the preset mapping relationship; if the difference between the third configuration parameter and the current configuration parameter is greater than or equal to the preset threshold, determine the current configuration parameter as the target configuration parameter.

[0099] For example, if the configuration parameters of all displays in the vehicle are the same, and the ambient lighting is zoned with different configuration parameters for each ambient light, if a user is detected performing a configuration operation on any display in the vehicle (e.g., adjusting the brightness configuration parameter from 40 to 60), the configuration operation is determined to be a brightness configuration operation, and the first configuration parameter is 60; a preset mapping relationship is obtained, and based on the first configuration parameter and the preset mapping relationship, the third configuration parameter is determined to be 75; when the second object includes the center console ambient light, the difference between the current configuration parameter (e.g., 45) of the center console ambient light and the third configuration parameter is calculated and... A preset threshold (e.g., 20) is compared. If the difference between the current configuration parameter and the third configuration parameter is 35, which is greater than the preset threshold, the current configuration parameter of the center console ambient light is determined as the target configuration parameter, meaning that the brightness configuration of the center console ambient light is not adjusted. When the second object includes the door interior ambient light, the difference between the current configuration parameter (e.g., 60) and the third configuration parameter of the door interior ambient light is compared with the preset threshold (e.g., 20). If the difference between the current configuration parameter and the third configuration parameter is 15, which is less than the preset threshold, the target configuration parameter of the door interior ambient light is determined to be 75.

[0100] Optionally, in one embodiment, if the difference between the third configuration parameter and the current configuration parameter is greater than or equal to a preset threshold, the value between the current configuration parameter and the third configuration parameter can be determined as the target configuration parameter. For example, the value between the current configuration parameter and the third configuration parameter can be determined as the target configuration parameter.

[0101] Optionally, in one embodiment, if the difference between the third configuration parameter and the current configuration parameter is greater than or equal to a preset threshold, a prompt message is sent to the user, which allows the user to manually choose whether to adaptively adjust the configuration parameters of the ambient light.

[0102] For example, when the second object includes the center console ambient light, the difference between the current configuration parameter (e.g., 45) and the third configuration parameter (e.g., 75) of the center console ambient light is compared with a preset threshold (e.g., 20). If the difference between the current configuration parameter and the third configuration parameter is 35, which is greater than the preset threshold, a prompt message is displayed on the center console screen: "Synchronize the adjustment of the center console ambient light?" If the user touches the area corresponding to "Yes", the third configuration parameter 75 is determined as the target configuration parameter; if the user touches the area corresponding to "No", the current configuration parameter 45 is determined as the target configuration parameter.

[0103] In the above implementation, considering the preset mapping relationship and the first configuration parameter, the first configuration parameter to be adjusted on the display screen can be mapped using the preset mapping relationship to obtain the third configuration parameter of the ambient light corresponding to the first configuration parameter. The third configuration parameter is compared with the current configuration parameter. If the difference is small, it means that the display effect presented by the current configuration parameter of the ambient light is not much different from the display effect to be adjusted on the display screen. In this case, adjusting the ambient light based on the display effect to be adjusted on the display screen can improve the consistency of the display effect in the vehicle. If the difference between the third configuration parameter and the current configuration parameter is large, it means that the current display effect of the ambient light is much different from the display effect to be adjusted on the display screen. Determining the current configuration parameter as the target configuration parameter can maintain the display effect of the ambient light, realize intelligent control of the ambient light, and improve the user experience.

[0104] Implementation Method 4:

[0105] In the embodiments of this application, when the first target parameter indicates that the configuration parameters of each first object are different, and the second target parameter indicates that the configuration parameters of each second object are different, the target configuration parameter is determined based on the first configuration parameter.

[0106] For example, the configuration parameters of each display screen in the vehicle are different, and the ambient lights are set in zones with different configuration parameters for each ambient light. If it is detected that the user performs a configuration operation on any display screen in the vehicle (for example, adjusting the brightness configuration parameter of the central control screen from 40 to 60), the corresponding ambient light brightness configuration parameter 70 is determined based on the brightness configuration parameter 60, and the brightness configuration parameter 70 of the central control ambient light is determined as the target configuration parameter.

[0107] In the above solution, when the first object is a display screen, if the configuration parameters of all the display screens in the vehicle are the same, and the configuration parameters of all the ambient lights are the same, or if the configuration parameters of all the display screens in the vehicle are different, and the configuration parameters of all the ambient lights are different, then if the configuration parameters of the display screen are to be adjusted, the target configuration parameters need to be determined based on the first configuration parameters of the display screen, and the configuration parameters of the ambient lights need to be adjusted to the target configuration parameters to achieve coordination between the display screen and the ambient lights. When the configuration parameters of all the display screens in the vehicle are the same, but the configuration parameters of all the ambient lights are different, since the configuration parameters of each ambient light are different, the target configuration parameters need to be determined based on the current configuration parameters of the ambient lights and the first configuration parameters of the display screen, that is, the configuration parameters of each ambient light with different configuration parameters need to be determined. In this way, through the linkage between the display screen and the ambient lights, the overall coordination inside the vehicle is improved, thereby improving the user's visual experience.

[0108] In one implementation, when the first object is an ambient light, it also includes:

[0109] When the currently displayed content includes alarm information, or when the current configuration parameter is a preset configuration parameter, or when the difference between the current configuration parameter and the first configuration parameter exceeds a preset parameter threshold, the current configuration parameter is determined as the target configuration parameter.

[0110] The alarm information includes information on vehicle collision risk, thermal runaway, and brake failure.

[0111] For example, if a user is detected configuring the ambient light, the current display content of display screen A and display screen B is obtained. If the display content of display screen A is alarm information and the display content of display screen B is navigation information, only the current configuration parameters of display screen A are determined as the target configuration parameters of display screen A.

[0112] For example, if the current configuration parameter of the display screen is detected to be a color enhancement setting, the color enhancement setting may include: the color temperature configuration parameter is less than the preset color temperature configuration parameter, the value of each RGB channel is greater than the preset channel value, and the contrast configuration parameter is greater than the preset contrast configuration parameter. When the current configuration parameter meets the above conditions, it is determined that the current configuration parameter is the preset configuration parameter. At this time, the display screen is in the color enhancement setting and does not display in conjunction with the configuration operation of the ambient light.

[0113] For example, if it is detected that the difference between the color configuration parameter and the first configuration parameter in the current configuration parameters of the display exceeds a preset parameter threshold, for example, the current configuration parameter is color configuration parameter (255, 0, 0), the corresponding display color is red, and the first configuration parameter is color configuration parameter (0, 255, 0), the corresponding display color is green, and the preset parameter threshold can be 128, that is, if it is detected that the difference in value of any of the R, G, and B channels in the color configuration parameter is greater than the preset parameter threshold, it is determined that the visual effect presented by the current configuration parameter is significantly different from the visual effect presented by the first configuration parameter, and will not be displayed in conjunction with the configuration operation of the ambient light.

[0114] Optionally, when the display mode is High Dynamic Range (HDR), the display will not synchronize with the ambient lighting configuration. In HDR mode, the display brightness and contrast ratio can be configured to 75. The display typically operates at a frame rate of 60Hz or 120Hz. It can also display with 10-bit or 12-bit color depth, meaning the RGB channel values ​​range from 0 to 1023 or 0 to 4095. When the current display frame rate is detected to be within the HDR mode frame rate, or when the current display color depth is detected to be within the HDR mode color depth, the display will not synchronize with the ambient lighting configuration.

[0115] In the above scheme, when the first object is an ambient light, if the display content or current configuration parameters of the second object meet several preset conditions, the current configuration parameters are determined as the target configuration parameters, meaning the display screen's configuration parameters are not adjusted. This prevents the display screen's configuration parameters from suddenly switching when a vehicle alarm is triggered, thus avoiding driver interference and improving driving safety. When the display effect presented by the current configuration parameters of the display screen differs from the display effect presented by the first configuration parameters of the ambient light, the display screen's configuration parameters are not adjusted. This prevents the display screen from interfering with the driver when switching to a significantly different display effect, improving driving safety. When the current configuration parameters of the display screen are preset configuration parameters, such as color enhancement, if the ambient light's configuration parameters are adjusted, the display screen's configuration parameters are not adjusted to avoid affecting the user's normal viewing of the display screen, thereby improving the user's riding experience.

[0116] S240, Control the first object to be displayed with the first configuration parameters, and control the second object to be displayed with the target configuration parameters.

[0117] For example, the first object is a display screen, and the first configuration parameters include: brightness configuration parameter 50, contrast parameter 40, and color temperature configuration parameter 60; the second object is an ambient light, and the target configuration parameters include: brightness configuration parameter 55, contrast parameter 40, and color temperature configuration parameter 70; the display screen control module can control the display screen to display according to the first configuration parameters, and the ambient light control module can control the ambient light to display according to the target configuration parameters.

[0118] In the above embodiments, by responding to the configuration operation of the first object and determining the first configuration parameter corresponding to the configuration operation, the display parameter of any component in the ambient light or display screen in the vehicle can be determined. Since the target configuration parameter of the second object is determined based on the current configuration parameter of the second object and the first configuration parameter, the configuration parameter of the second object for linkage display can be determined by the configuration operation of the first object. Controlling the first object to display with the first configuration parameter and controlling the second object to display with the target configuration parameter, since the second object is another item in the ambient light or display screen besides the first object, the configuration parameter of the first object can be adjusted by the configuration operation of the first object, and the configuration parameter of the second object can be automatically adjusted, thereby realizing the linkage between the display screen and the ambient light, improving the overall visual effect inside the vehicle, and thus improving the user's riding experience.

[0119] The following examples, with reference to Figures 3 to 6, illustrate different implementation methods when the first object is a display screen and the second object is an ambient light. For instance, the methods shown in Figures 3 to 6 can all be executed by the vehicle; or by the processor in the vehicle; or by a chip in the processor of the vehicle.

[0120] Implementation Method 1: All displays have the same configuration parameters, and all ambient lights have the same configuration parameters.

[0121] Figure 3 is a schematic flowchart of an ambient light control method that links with a display screen according to an embodiment of this application. As shown in Figure 3, method 300 includes S301 to S304, which will be described in detail below.

[0122] S301. In response to a configuration operation on any display screen in the vehicle, obtain the first configuration parameter corresponding to the configuration operation.

[0123] For example, upon receiving a user's configuration operation to increase the brightness configuration parameter of any display screen (e.g., increasing the brightness configuration parameter from 40 to 60), the system responds to the configuration operation and obtains the first configuration parameter (brightness configuration parameter 60) corresponding to the configuration operation.

[0124] S302. Designate all ambient lights in the vehicle as objects that can be linked to the display screen for display.

[0125] In the embodiments of this application, since the configuration parameters of each display screen are the same, the configuration parameters of each ambient light are the same, all ambient lights in the vehicle display the same configuration parameters, and all ambient lights in the vehicle are determined to be linked with the display screen for display.

[0126] S303. Based on the first configuration parameters of the ambient light and the preset mapping relationship, determine the target configuration parameters of the ambient light.

[0127] For example, if the configuration operation is a brightness configuration operation, and the first configuration parameter is 60, the light-emitting area of ​​the display screen is large, which has a greater impact on the human eye, while the brightness of the ambient light has a smaller impact on the human eye. Therefore, the target configuration parameter can be set to 75 to maintain a display effect consistent with the display screen.

[0128] Optionally, the implementation method of S303 can be found in the relevant description of the implementation method of S230 in Figure 2, which will not be repeated here.

[0129] S304. Control all displays to display with the first configuration parameters, and control all ambient lights to display with the target configuration parameters.

[0130] In the embodiments of this application, since the configuration parameters of each display screen are the same and the configuration parameters of each ambient light are the same, the display screen control module can control the display screen to display according to the first configuration parameters, and the ambient light control module can control the ambient light to display according to the target configuration parameters.

[0131] In the above implementation, when the first object is a display screen, and the configuration parameters of each display screen in the vehicle are the same, and the configuration parameters of each ambient light are the same, if the configuration parameters of the display screen are to be adjusted, the target configuration parameters need to be determined based on the first configuration parameters of the display screen, and the configuration parameters of the ambient light are adjusted to the target configuration parameters to achieve the coordination between the display screen and the ambient light display, improve the overall coordination of the vehicle interior, and thus improve the user's visual experience.

[0132] Method 2: The configuration parameters of each display screen are different, while the configuration parameters of each ambient light are the same.

[0133] Figure 4 is a schematic flowchart of another method for controlling ambient light in conjunction with a display screen according to an embodiment of this application; as shown in Figure 4, method 400 includes S401 to S406, which will be described in detail below.

[0134] S401, In response to a configuration operation on a target display screen in the vehicle, obtain the first configuration parameter corresponding to the configuration operation.

[0135] For example, upon receiving a user's configuration operation to increase the brightness configuration parameter of the central control screen (e.g., increasing the brightness configuration parameter from 40 to 60), the system responds to the configuration operation and obtains the first configuration parameter (brightness configuration parameter 60) corresponding to the configuration operation.

[0136] S402. Determine the target percentage of the first configuration parameter among all display screens in the vehicle.

[0137] Optionally, the implementation method of S402 can be found in the relevant description of implementation method two in S230 in Figure 2, which will not be repeated here.

[0138] S403. Determine whether the target percentage is greater than the preset percentage threshold; if yes, execute S404; if no, execute S405.

[0139] In the embodiments of this application, it is determined whether the target proportion is greater than a preset proportion threshold. If the target proportion is greater than the preset proportion threshold, it indicates that the visual effect presented in the current vehicle is mainly presented by the first configuration parameter. In order to ensure the consistency of the visual effect in the vehicle, the target configuration parameter is determined based on the first configuration parameter and the preset mapping relationship, which can further ensure the consistency of the visual effect presented by the ambient light and the display screen. The specific implementation method is shown in S404. If the target proportion is less than or equal to the preset proportion threshold, the effect presented by the first configuration parameter is different from the visual effect presented in the current vehicle. In order to ensure the consistency of the visual effect in the vehicle, the target configuration parameter is determined based on the second configuration parameter and the preset mapping relationship, which can further ensure the consistency of the visual effect presented by the ambient light and the display screen. The specific implementation method is shown in S405.

[0140] S404. Determine the target configuration parameters based on the first configuration parameters and the preset mapping relationship.

[0141] Optionally, the implementation method of S404 can be found in the relevant description of implementation method one in S230 in Figure 2, which will not be repeated here.

[0142] S405. Determine the target configuration parameters based on the second configuration parameters and the preset mapping relationship.

[0143] Among them, the second configuration parameter is the configuration parameter with the largest proportion among all the configuration parameters of all displays in the vehicle.

[0144] Optionally, the implementation method of S405 can be found in the relevant description of implementation method one in S230 in Figure 2, which will not be repeated here.

[0145] S406, Control the target display screen to display the first configuration parameters, and control all ambient lights to display the target configuration parameters.

[0146] In the embodiments of this application, since the configuration parameters of each display screen are different and the configuration parameters of each ambient light are the same, the display screen control module can control the target display screen to display according to the first configuration parameters, and the ambient light control module can control all ambient lights to display according to the target configuration parameters.

[0147] In the above implementation, when the first object is a display screen, and the configuration parameters of each display screen in the vehicle are different, while the configuration parameters of each ambient light are the same, the target proportion of the first configuration parameter among the configuration parameters of all display screens in the vehicle is determined. If the target proportion is greater than a preset proportion threshold, the target configuration parameter is determined based on the first configuration parameter. At this time, most display screens in the vehicle display the first configuration parameter. Determining the target configuration parameter of the ambient light based on the first configuration parameter can improve the overall visual effect inside the vehicle. If the target proportion is less than or equal to the preset proportion threshold, the target configuration parameter is determined based on the configuration parameter with the largest proportion among the configuration parameters of all display screens in the vehicle, thereby improving the visual coordination between the display screen and the ambient light and thus improving the user's visual experience.

[0148] Method 3: All displays have the same configuration parameters, but the configuration parameters of each ambient light are different.

[0149] Figure 5 is a schematic flowchart of another method for controlling ambient light in conjunction with a display screen according to an embodiment of this application; as shown in Figure 5, method 500 includes S501 to S506, which will be described in detail below.

[0150] S501, In response to a configuration operation on any display screen in the vehicle, obtain the first configuration parameter corresponding to the configuration operation.

[0151] For example, upon receiving a user's configuration operation to increase the brightness configuration parameter of any display screen (e.g., increasing the brightness configuration parameter from 40 to 60), the system responds to the configuration operation and obtains the first configuration parameter (brightness configuration parameter 60) corresponding to the configuration operation.

[0152] S502. Obtain the preset mapping relationship and the current configuration parameters of the target ambient light, and determine the third configuration parameter based on the first configuration parameter and the preset mapping relationship.

[0153] Optionally, the implementation method of S502 can be found in the relevant description of implementation method three in S230 in Figure 2, which will not be repeated here.

[0154] S503. Determine whether the difference between the current configuration parameter and the third configuration parameter is less than a preset threshold; if yes, proceed to S504; if no, proceed to S505. In the embodiments of this application, it is determined whether the difference between the current configuration parameter and the third configuration parameter is less than a preset threshold; if the difference between the current configuration parameter and the third configuration parameter is less than the preset threshold, then the target configuration parameter is determined based on the first configuration parameter and the preset mapping relationship, and the specific implementation method is shown in S504; if the difference between the current configuration parameter and the third configuration parameter is greater than or equal to the preset threshold, and there is a difference between the first configuration parameter and the visual effect presented in the current vehicle, in order to ensure the consistency of the visual effect in the vehicle, then the target configuration parameter is determined based on the third configuration parameter and the preset mapping relationship, and the specific implementation method is shown in S505.

[0155] S504. Determine the target configuration parameters based on the first configuration parameters and the preset mapping relationship.

[0156] Optionally, the implementation method of S504 can be found in the relevant description of implementation method one in S230 in Figure 2, which will not be repeated here.

[0157] S505. Determine the target configuration parameters based on the third configuration parameter and the preset mapping relationship.

[0158] Optionally, the implementation method of S505 can be found in the relevant description of implementation method one in S230 in Figure 2, which will not be repeated here.

[0159] S506, Control all displays to display with the first configuration parameters, and control the target ambient light to display with the target configuration parameters.

[0160] In the embodiments of this application, since the configuration parameters of each display screen are the same, while the configuration parameters of each ambient light are different, the display screen control module can control all display screens to display according to the first configuration parameters, and the ambient light control module can control the target ambient light to display according to the target configuration parameters.

[0161] In the above implementation, considering the preset mapping relationship and the first configuration parameter, the first configuration parameter to be adjusted on the display screen can be mapped using the preset mapping relationship to obtain the third configuration parameter of the ambient light corresponding to the first configuration parameter. The third configuration parameter is compared with the current configuration parameter. If the difference is small, it means that the display effect presented by the current configuration parameter of the ambient light is not much different from the display effect to be adjusted on the display screen. In this case, adjusting the ambient light based on the display effect to be adjusted on the display screen can improve the consistency of the display effect in the vehicle. If the difference between the third configuration parameter and the current configuration parameter is large, it means that the current display effect of the ambient light is much different from the display effect to be adjusted on the display screen. Determining the current configuration parameter as the target configuration parameter can maintain the display effect of the ambient light, realize intelligent control of the ambient light, and improve the user experience.

[0162] Implementation Method 4: The configuration parameters of each display screen are different, and the configuration parameters of each ambient light are different.

[0163] Figure 6 is a schematic flowchart of another method for controlling ambient light in conjunction with a display screen according to an embodiment of this application; as shown in Figure 6, method 600 includes S601 to S604, and S601 to S604 will be described in detail below.

[0164] S601. In response to the configuration operation on the second target display screen, obtain the first configuration parameter corresponding to the configuration operation.

[0165] For example, upon receiving a user's configuration operation to increase the brightness configuration parameter of any display screen (e.g., increasing the brightness configuration parameter from 40 to 60), the system responds to the configuration operation and obtains the first configuration parameter (brightness configuration parameter 60) corresponding to the configuration operation.

[0166] S602, The second target ambient light is designated as the object that is linked to the display screen for display.

[0167] For example, as shown in Figure 1, when the configuration parameters of each ambient light are different according to the first target parameter and the configuration parameters of each display screen are different according to the second target parameter, if it is detected that the user adjusts the brightness configuration parameter of the center console ambient light 150 from 40 to 60, the center console ambient light 150 is determined as the first target ambient light. The display screen closest to the center console ambient light 150 among the instrument panel screen 110, the center console screen 120, and the passenger entertainment screen 130 is determined as the first target display screen that displays in conjunction with the center console ambient light 150. Even if the center console screen 120 is determined as the first target display screen, the configuration parameters of the center console screen 120 are adjusted according to the adjustment of the configuration parameters of the center console ambient light 150. Optionally, the implementation of S602 can be found in the relevant description in S220 of Figure 2, and will not be repeated here.

[0168] S603. Based on the first configuration parameters and the preset mapping relationship, determine the target configuration parameters of the second target ambient light.

[0169] Optionally, the implementation method of S603 can be found in the relevant description of implementation method one in S230 in Figure 2, which will not be repeated here.

[0170] S604. Control the second target display screen to display according to the first configuration parameters, and control the second target ambient light to display according to the target configuration parameters. In the embodiments of this application, since the configuration parameters of each display screen are different, and the configuration parameters of each ambient light are different, the display screen control module can control the second target display screen to display according to the first configuration parameters, and the ambient light control module can control the second target ambient light to display according to the target configuration parameters.

[0171] In the above implementation, if the first object is a first target ambient light, and the configuration parameters of each ambient light are different, and the configuration parameters of each display screen are also different, the first target display screen that is linked to the first target ambient light is determined based on the distance between each display screen and the first target ambient light. After adjusting the first target ambient light, in order not to affect the display of each display screen in the vehicle, the display screen that is closer to the first target ambient light is determined as the display screen that is linked to the first target ambient light. This can achieve the following: when the first target ambient light is adjusted, the configuration parameters of the first target display screen that is closer to it are automatically adjusted so that the display effect is consistent with the first target ambient light, thereby achieving local consistency of the display effect in the vehicle and improving the user's riding experience. If the first object is the second target display screen, and the configuration parameters of each display screen are different, and the configuration parameters of each ambient light are also different, based on the distance between each ambient light and the first target display screen, the first target ambient light that is linked to the first target display screen is determined. After adjusting the first target display screen, in order not to affect the display of each ambient light in the vehicle, the ambient light that is close to the first target display screen is determined to be the ambient light that is linked to the first target display screen. This can achieve that when the first target display screen is adjusted, the configuration parameters of the first target ambient light that is close to it are automatically adjusted, so that the display effect is consistent with the first target display screen, thereby achieving local consistency of the display effect in the vehicle and improving the user's riding experience.

[0172] The following example, using Figure 7, illustrates the control method where the first object is an ambient light and the second object is a display screen.

[0173] Figure 7 is a schematic flowchart of a method for controlling a display screen in conjunction with ambient lighting according to an embodiment of this application. As shown in Figure 7, method 700 includes steps S701 to S704, which will be described in detail below.

[0174] For example, the methods shown in Figure 7 can all be executed by a vehicle; or by a processor in the vehicle; or by a chip in a processor mounted in the vehicle.

[0175] S701. In response to the configuration operation on the first object, obtain the first configuration parameter corresponding to the configuration operation.

[0176] For example, upon receiving a user's configuration operation to increase the brightness configuration parameter of the display screen (e.g., increasing the brightness configuration parameter from 40 to 60), the system responds to the configuration operation and obtains the first configuration parameter (brightness configuration parameter 60) corresponding to the configuration operation.

[0177] S702, Determine the second object that is displayed in conjunction with the first object.

[0178] For example, as shown in Figure 1, when the configuration parameters of each ambient light are different according to the first target parameter and the configuration parameters of each display screen are different according to the second target parameter, if it is detected that the user adjusts the brightness configuration parameter of the center console ambient light 150 from 40 to 60, the center console ambient light 150 is determined as the first target ambient light. The display screen closest to the center console ambient light 150 among the instrument panel screen 110, the center console screen 120, and the passenger entertainment screen 130 is determined as the first target display screen that displays in conjunction with the center console ambient light 150. Even if the center console screen 120 is determined as the first target display screen, the configuration parameters of the center console screen 120 are adjusted according to the adjustment of the configuration parameters of the center console ambient light 150. Optionally, the implementation of S702 can be found in the relevant description in S220 of Figure 2, and will not be repeated here.

[0179] S703. Determine whether the current display content of the second object includes alarm information; if yes, execute S704; if no, execute S705.

[0180] In the embodiments of this application, it is determined whether the current display content of the second object includes alarm information; if the current display content of the second object includes alarm information, the configuration parameters of the display screen are not displayed in conjunction with the ambient light, and the current configuration parameters are determined as the target configuration parameters, and the specific implementation method is shown in S704; if the current display content of the second object does not include alarm information, it is further determined whether the current configuration parameters of the display screen are preset configuration parameters, and the specific implementation method is shown in S705.

[0181] Optionally, the implementation of S703 can be found in the relevant description in S230 of Figure 2, which will not be repeated here.

[0182] S704. Set the current configuration parameters as the target configuration parameters.

[0183] Optionally, the implementation of S704 can be found in the relevant description of implementation method one in S230 in Figure 2, which will not be repeated here.

[0184] S705. Determine whether the current configuration parameters of the second object include preset configuration parameters; if yes, execute S704; if no, execute S706. In the embodiments of this application, it is determined whether the current configuration parameters of the second object include preset configuration parameters; if the current configuration parameters of the second object include preset configuration parameters, the configuration parameters of the display screen are not displayed in conjunction with the ambient light, and the current configuration parameters are determined as target configuration parameters, as shown in S704; if the current configuration parameters of the second object do not include preset configuration parameters, it is further determined whether the difference between the current configuration parameters of the second object and the first target parameter exceeds a preset parameter threshold, as shown in S706.

[0185] Optionally, the implementation of S705 can be found in the relevant description in S230 of Figure 2, which will not be repeated here.

[0186] S706. Determine whether the difference between the current configuration parameters of the second object and the first target parameter exceeds the preset parameter threshold; if yes, execute S704; if no, execute S707.

[0187] In the embodiments of this application, it is determined whether the difference between the current configuration parameter of the second object and the first target parameter exceeds a preset parameter threshold; if the difference between the current configuration parameter of the second object and the first target parameter exceeds the preset parameter threshold, the configuration parameter of the display screen is not displayed in conjunction with the ambient light, and the current configuration parameter is determined as the target configuration parameter, as shown in S704; if the difference between the current configuration parameter of the second object and the first target parameter does not exceed the preset parameter threshold, the target configuration parameter is determined based on the first configuration parameter and the preset mapping relationship, as shown in S707.

[0188] Optionally, the implementation of S706 can be found in the relevant description in S230 of Figure 2, which will not be repeated here.

[0189] S707. Determine the target configuration parameters based on the first configuration parameters and the preset mapping relationship.

[0190] Optionally, the implementation of S707 can be found in the description of implementation method one in S230 in Figure 2, which will not be repeated here.

[0191] S708, Control the first object to be displayed with the first configuration parameters, and control the second object to be displayed with the target configuration parameters.

[0192] In the embodiments of this application, the ambient light control module can control the first object to be displayed according to the first configuration parameters, and the display screen control module can control the second object to be displayed according to the target configuration parameters.

[0193] In the above embodiments, by responding to the configuration operation of the first object and determining the first configuration parameter corresponding to the configuration operation, the display parameter of any component in the ambient light or display screen in the vehicle can be determined. Since the target configuration parameter of the second object is determined based on the current configuration parameter of the second object and the first configuration parameter, the configuration parameter of the second object for linkage display can be determined by the configuration operation of the first object. Controlling the first object to display with the first configuration parameter and controlling the second object to display with the target configuration parameter, since the second object is another item in the ambient light or display screen besides the first object, the configuration parameter of the first object can be adjusted by the configuration operation of the first object, and the configuration parameter of the second object can be automatically adjusted, thereby realizing the linkage between the display screen and the ambient light, improving the overall visual effect inside the vehicle, and thus improving the user's riding experience.

[0194] The vehicle control method provided by the embodiments of this application has been described in detail above with reference to Figures 1 to 7; the device embodiments of this application will be described in detail below with reference to Figures 8 and 9. It should be understood that the device in the embodiments of this application can execute the various methods of the foregoing embodiments of this application, that is, the specific working processes of the various products below can be referred to the corresponding processes in the foregoing method embodiments.

[0195] Figure 8 is a schematic diagram of a vehicle control device provided in an embodiment of this application. The device 800 includes an acquisition module 810 and a processing module 820.

[0196] The acquisition module is used to acquire the first configuration parameters corresponding to the configuration operation in response to the configuration operation on the first object.

[0197] The processing module is used to determine a second object that is linked to the first object for display; determine the target configuration parameters of the second object based on the current configuration parameters of the second object and the first configuration parameters; control the first object to display with the first configuration parameters, and control the second object to display with the target configuration parameters; wherein, when the first object is a display screen, the second object is a target ambient light; when the first object is an ambient light, the second object is a target display screen; the first object is either the ambient light or the display screen in the vehicle; the second object is the other one between the ambient light and the display screen, excluding the first object.

[0198] Optionally, as one embodiment, the processing module 820 is specifically used for:

[0199] When the first object is a display screen, the target configuration parameter is determined based on the first target parameter, the second target parameter, the current configuration parameter, and the first configuration parameter; when the first object is an ambient light, the target configuration parameter is determined based on the current display content of the second object, the current configuration parameter, and the first configuration parameter; wherein, the first target parameter is used to indicate whether the configuration parameters of each first object in the vehicle are the same; the second target parameter is used to indicate whether the configuration parameters of each second object in the vehicle are the same.

[0200] Optionally, as one embodiment, the processing module 820 is specifically used for:

[0201] When the first target parameter indicates that the configuration parameters of each first object are the same, and the second target parameter indicates that the configuration parameters of each second object are the same, or when the first target parameter indicates that the configuration parameters of each first object are different, and the second target parameter indicates that the configuration parameters of each second object are different, the target configuration parameter is determined based on the first configuration parameter; when the first target parameter indicates that the configuration parameters of each first object are the same, and the second target parameter indicates that the configuration parameters of each second object are different, the target configuration parameter is determined based on the current configuration parameter and the first configuration parameter.

[0202] Optionally, as an embodiment, the processing module 820 is further configured to:

[0203] Determine the target proportion of the first configuration parameter among all display screens in the vehicle; when the first target parameter indicates that the configuration parameters of each first object are different, and the second target parameter indicates that the configuration parameters of each second object are the same, if the target proportion is greater than a preset proportion threshold, determine the target configuration parameter based on the first configuration parameter; when the first target parameter indicates that the configuration parameters of each first object are different, and the second target parameter indicates that the configuration parameters of each second object are the same, if the target proportion is less than or equal to a preset proportion threshold, determine the target configuration parameter based on the second configuration parameter; wherein, the second configuration parameter is the configuration parameter with the largest proportion among all display screens in the vehicle. Optionally, as an embodiment, the processing module 820 is further used for:

[0204] Obtain a preset mapping relationship; determine a third configuration parameter based on the first configuration parameter and the preset mapping relationship; determine a target configuration parameter based on the current configuration parameter and the first configuration parameter, including: if the difference between the third configuration parameter and the current configuration parameter is less than a preset threshold, determine the target configuration parameter based on the first configuration parameter and the preset mapping relationship.

[0205] Optionally, as one embodiment, the processing module 820 is specifically used for:

[0206] When the first target parameter indicates that the configuration parameters of each first object are different, and the second target parameter indicates that the configuration parameters of each second object are different, the second object that is linked to the first object is determined based on the distance between each second object and the first object in the vehicle; when the first target parameter indicates that the configuration parameters of each first object are different, and the second target parameter indicates that the configuration parameters of each second object are the same, each second object is determined as an object that is linked to the first object.

[0207] Optionally, as one embodiment, the processing module 820 is specifically used for:

[0208] If the number of first objects corresponding to the configuration operation is at least two, determine the distance between each second object and each first object corresponding to the configuration operation; if there is a target second object and at least two first objects corresponding to the configuration operation at the same distance, determine the target first object based on the proportion of the first configuration parameters corresponding to the at least two first objects; and determine the target second object as the linked display object of the target first object.

[0209] It should be noted that the aforementioned vehicle control device 800 is embodied in the form of a functional unit. The term "module" here can be implemented in software and / or hardware, without specific limitations.

[0210] For example, a "module" can be a software program, hardware circuitry, or a combination of both that implements the above-described functions. Hardware circuitry may include application-specific integrated circuits (ASICs), electronic circuitry, a processor (e.g., a shared processor, a proprietary processor, or a group processor) and memory for executing one or more software or firmware programs, integrated logic circuitry, and / or other suitable components that support the described functions.

[0211] Therefore, the units of the various examples described in the embodiments of this application can be implemented in electronic hardware, or a combination of computer software and electronic hardware. Whether these functions are implemented in hardware or software depends on the specific application and design constraints of the technical solution. Those 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 this application.

[0212] Figure 9 is a structural schematic diagram of a vehicle provided in an embodiment of this application.

[0213] For example, vehicle 900 includes processor 910, memory 920 and executable program code 930.

[0214] For example, vehicle 900 includes one or more processors 910 that can support vehicle control methods in the method embodiments of vehicle 900. Processor 910 can be a general-purpose processor or a special-purpose processor. For example, processor 910 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.

[0215] For example, the processor 910 can be used to control the vehicle 900, execute software programs, and process data from the software programs. The vehicle 900 may also include a communication unit for receiving and transmitting signals.

[0216] For example, the vehicle 900 may include one or more memories 920, on which executable program code 930 is stored. The executable program code 930 can be run by the processor 910 to generate instructions, causing the processor 910 to execute the vehicle control method described in the above method embodiments according to the instructions.

[0217] Optionally, the memory 920 may also store data. Optionally, the processor 910 may also read data stored in the memory 920, which may be stored at the same memory address as the executable program code 930, or the data may be stored at a different memory address than the executable program code 930.

[0218] For example, the processor 910 and memory 920 can be configured separately or integrated together, for example, integrated on the system-on-chip (SOC) of the terminal device.

[0219] For example, the memory 920 can be used to store related programs of the vehicle control method provided in the embodiments of this application, and the processor 910 can be used to call the executable program code 930 stored in the memory 920 when controlling the vehicle to execute the vehicle control method of the embodiments of this application.

[0220] For example, the memory 920 can be used to store related programs of the vehicle control method provided in the embodiments of this application, and the processor 910 can be used to call the executable program code 930 stored in the memory 920 when controlling the vehicle to execute the vehicle control method of the embodiments of this application; for example, in response to the configuration operation of the first object, the first configuration parameters corresponding to the configuration operation are obtained; a second object that is displayed in conjunction with the first object is determined; based on the current configuration parameters of the second object and the first configuration parameters, the target configuration parameters of the second object are determined; the first object is controlled to be displayed with the first configuration parameters, and the second object is controlled to be displayed with the target configuration parameters; wherein, the first object is either the ambient light or the display screen in the vehicle; and the second object is the other one besides the first object between the ambient light and the display screen.

[0221] This application also provides a computer-readable storage medium having a computer program stored thereon that, when executed by a processor, implements the steps of the vehicle control method of any of the foregoing embodiments.

[0222] The computer-readable storage medium may include, but is not limited to, any type of disk, including floppy disks, optical disks, Digital Video Discs (DVDs), Compact Disc Read-Only Memory (CD-ROMs), microdrives, and magneto-optical disks, read-only memory (ROMs), random access memory (RAMs), erasable programmable read-only memory (EPROMs), electrically erasable programmable read-only memory (EEPROMs), dynamic random access memory (DRAMs), video random access memory (VRAMs), flash memory devices, magnetic cards or optical cards, nanosystems (including molecular memory ICs), or any type of media or device suitable for storing instructions and / or data.

[0223] This application also provides a computer program product that, when run on a computer, causes the computer to perform the aforementioned related steps to implement a vehicle control method as described in the above embodiments.

[0224] In addition, the electronic device provided in the embodiments of this application may specifically be a chip, component or module. The electronic device may include a connected processor and a memory. The memory is used to store instructions. When the electronic device is running, the processor may call and execute the instructions to make the chip execute a vehicle control method in the above embodiments.

[0225] The vehicle, computer-readable storage medium, computer program product or chip provided in this application are all used to execute the corresponding vehicle control method provided above. Therefore, the beneficial effects that can be achieved can be referred to the beneficial effects of the corresponding vehicle control method provided above, and will not be repeated here.

[0226] Through the above description of the embodiments, those skilled in the art will understand that, for the sake of convenience and brevity, only the division of the above functional modules is used as an example. In actual applications, the above functions can be assigned to different functional modules as needed, that is, the internal structure of the device can be divided into different functional modules to complete all or part of the functions described above.

[0227] In the embodiments provided in this application, it should be understood that the disclosed apparatus and methods can be implemented in other ways. For example, the apparatus embodiments described above are merely illustrative; for instance, the division of modules or units is only a logical functional division, and in actual implementation, there may be other division methods. For example, multiple units or components may be combined or integrated into another device, or some features may be ignored or not executed. Furthermore, the coupling or direct coupling or communication connection shown or discussed may be through some interfaces; the indirect coupling or communication connection between devices or units may be electrical, mechanical, or other forms.

[0228] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the scope of the technology disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A vehicle control method, characterized in that, The method includes: In response to a configuration operation on a first object, obtain the first configuration parameter corresponding to the configuration operation; Identify a second object that is displayed in conjunction with the first object; Based on the current configuration parameters of the second object and the first configuration parameters, determine the target configuration parameters of the second object; The system controls the first object to be displayed with the first configuration parameters, and controls the second object to be displayed with the target configuration parameters; wherein the first object is either the ambient light in the vehicle or the display screen; and the second object is the other of the ambient light and the display screen besides the first object.

2. The method according to claim 1, characterized in that, Determining the target configuration parameters of the second object based on its current configuration parameters and the first configuration parameters includes: When the first object is the display screen, the target configuration parameter is determined based on the first target parameter, the second target parameter, the current configuration parameter, and the first configuration parameter; When the first object is the ambient light, the target configuration parameters are determined based on the current display content of the second object, the current configuration parameters, and the first configuration parameters; Wherein, the first target parameter is used to indicate whether the configuration parameters of each of the first objects in the vehicle are the same; the second target parameter is used to indicate whether the configuration parameters of each of the second objects in the vehicle are the same.

3. The method according to claim 2, characterized in that, When the first object is the display screen, determining the target configuration parameters based on the first target parameter, the second target parameter, the current configuration parameters, and the first configuration parameter includes: When the first target parameter indicates that the configuration parameters of each of the first objects are the same, and the second target parameter indicates that the configuration parameters of each of the second objects are the same, or when the first target parameter indicates that the configuration parameters of each of the first objects are different, and the second target parameter indicates that the configuration parameters of each of the second objects are different, the target configuration parameter is determined based on the first configuration parameter; when the first target parameter indicates that the configuration parameters of each of the first objects are the same, and the second target parameter indicates that the configuration parameters of each of the second objects are different, the target configuration parameter is determined based on the current configuration parameter and the first configuration parameter.

4. The method according to claim 3, characterized in that, Also includes: Determine the target percentage of the first configuration parameter among all display screens in the vehicle; When the first target parameter indicates that the configuration parameters of each first object are different, and the second target parameter indicates that the configuration parameters of each second object are the same, if the target proportion is greater than a preset proportion threshold, the target configuration parameter is determined based on the first configuration parameter. When the first target parameter indicates that the configuration parameters of each of the first objects are different, and the second target parameter indicates that the configuration parameters of each of the second objects are the same, if the target proportion is less than or equal to the preset proportion threshold, the target configuration parameter is determined based on the second configuration parameter; wherein, the second configuration parameter is the configuration parameter with the largest proportion among the configuration parameters of all displays in the vehicle.

5. The method according to claim 3, characterized in that, Also includes: Obtain the fourth configuration parameter of the first object before the configuration operation; The step of determining the target configuration parameters based on the current configuration parameters and the first configuration parameters includes: Based on the first configuration parameter and the fourth configuration parameter, the target adjustment ratio is determined; The target configuration parameters are determined based on the current configuration parameters and the target adjustment ratio.

6. The method according to claim 3, characterized in that, Also includes: Obtain the preset mapping relationship; Based on the first configuration parameter and the preset mapping relationship, the third configuration parameter is determined; The step of determining the target configuration parameters based on the current configuration parameters and the first configuration parameters includes: If the difference between the third configuration parameter and the current configuration parameter is less than a preset threshold, the target configuration parameter is determined based on the first configuration parameter and the preset mapping relationship.

7. The method according to claim 6, characterized in that, The step of determining the target configuration parameters based on the current configuration parameters and the first configuration parameters includes: If the difference between the third configuration parameter and the current configuration parameter is greater than or equal to the preset threshold, the intermediate value between the third configuration parameter and the current configuration parameter is determined as the target configuration parameter.

8. The method according to claim 2, characterized in that, When the first object is the ambient light, determining the target configuration parameters based on the current display content of the second object, the current configuration parameters, and the first configuration parameters includes: When the currently displayed content includes alarm information, or when the current configuration parameter is a preset configuration parameter, or when the difference between the current configuration parameter and the first configuration parameter exceeds a preset parameter threshold, the current configuration parameter is determined as the target configuration parameter; wherein, the alarm information includes at least one of collision risk information, thermal runaway alarm information, and brake failure information.

9. The method according to any one of claims 2 to 8, characterized in that, The step of determining the second object that is displayed in conjunction with the first object includes: When the first target parameter indicates that the configuration parameters of each first object are different, and the second target parameter indicates that the configuration parameters of each second object are different, the second object that is displayed in conjunction with the first object is determined based on the distance between each second object and the first object in the vehicle. When the first target parameter indicates that the configuration parameters of each first object are different, and the second target parameter indicates that the configuration parameters of each second object are the same, each second object is determined as an object that is displayed in conjunction with the first object.

10. The method according to claim 9, characterized in that, The step of determining the second object that is displayed in conjunction with the first object based on the distance between each second object in the vehicle and the first object includes: The second object that is closest to the first object among all the second objects is determined as the second object that is displayed in conjunction with the first object.

11. The method according to claim 9, characterized in that, The step of determining the second object that is displayed in conjunction with the first object based on the distance between each second object in the vehicle and the first object includes: If the number of first objects corresponding to the configuration operation is at least two, determine the distance between each second object and each first object corresponding to the configuration operation; If there are at least two first objects that are at the same distance as the target second object and the first object corresponding to the configuration operation, the target first object is determined based on the proportion of the first configuration parameters corresponding to the at least two first objects; The second target object is identified as the linked display object of the first target object.

12. The method according to claim 9, characterized in that, The step of determining the second object that is displayed in conjunction with the first object based on the distance between each second object in the vehicle and the first object includes: If the number of first objects corresponding to the configuration operation is at least two, determine the distance between each second object and each first object corresponding to the configuration operation; If the target second object is at the same distance as at least two of the first objects corresponding to the configuration operation, a first prompt message is output. The first prompt message is used to prompt the user to select the target first object from the at least two first objects. In response to the selection operation of the first prompt information, the target first object is determined; The second target object is identified as the linked display object of the first target object.

13. The method according to any one of claims 1 to 8, characterized in that, Before controlling the first object to be displayed with the first configuration parameters and controlling the second object to be displayed with the target configuration parameters, the method further includes: Output a second prompt message, which prompts the user to select whether to display the configuration parameters of the second object in a linked manner; controlling the first object to display with the first configuration parameters and controlling the second object to display with the target configuration parameters includes: In response to a target operation on the second prompt information, the first object is controlled to be displayed with the first configuration parameters, and the second object is controlled to be displayed with the target configuration parameters, wherein the target operation is used to indicate that the user selects to display the configuration parameters of the second object in a linked manner.

14. 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 13.

15. 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 13.