Control method and device, vehicle and storage medium

By coordinating the operating mode of the vehicle-side device with the operating mode of the wearable device, the problem of users being unable to conveniently operate the vehicle-side device when taking a nap in the car is solved, thereby improving the convenience of operation and user experience.

CN120697546APending Publication Date: 2025-09-26XIAOMI EV TECH CO LTD +1
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Patent Information

Application Number
CN202510646958.6
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-05-19
Publication Date
2025-09-26

AI Technical Summary

Technical Problem

When users take a nap in the car, they cannot conveniently operate the vehicle-side equipment, which affects the quality of their rest.

Method used

By configuring the operating mode of the vehicle-side device to the first operating mode, the associated wearable device is triggered to enter the second operating mode, and collaborative work between devices is achieved, for example, the wearable device configures the vehicle-side device in the second operating mode.

Benefits of technology

It improves the convenience of equipment operation and enhances the user experience.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention relates to a control method and device, a vehicle and a storage medium, and belongs to the technical field of interactive design and vehicles. The method comprises the following steps: in response to configuration of a vehicle-end device into a first operation mode, configuring a wearable device associated with the vehicle-end device into a second operation mode; wherein the first operation mode and the second operation mode are the same or have a corresponding relation, and the vehicle-end equipment executes at least partial configuration of the wearable equipment in the second operation mode in the first operation mode. Therefore, according to the scheme, when the vehicle-end equipment starts the first operation mode, the wearable equipment can synchronously enter the second operation mode, and the vehicle-end equipment is configured based on the wearable equipment. And through interaction between the wearable device and the intelligent cabin, the operation convenience is improved, and the use experience of the user is further improved.
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Description

Technical Field

[0001] The present disclosure relates to the fields of interactive design and vehicle technology, and in particular to a control method, device, vehicle, and storage medium. Background Art

[0002] When users take a nap in the car, they often adjust the car seat to a completely flat position. However, in this position, users cannot easily operate the vehicle-side devices, which affects the quality of their rest. Summary of the Invention

[0003] The present disclosure provides a control method, device, vehicle, server, and computer-readable storage medium to at least address the problem of inconvenient operation of vehicle-side devices in related technologies. The technical solutions of the present disclosure are as follows:

[0004] According to a first aspect of an embodiment of the present disclosure, a control method is provided, comprising: in response to a vehicle-side device being configured to a first operating mode, configuring a wearable device associated with the vehicle-side device to a second operating mode; wherein, the first operating mode is the same as or has a corresponding relationship with the second operating mode, and the vehicle-side device executes at least part of the configuration of the wearable device in the second operating mode in the first operating mode.

[0005] According to a second aspect of an embodiment of the present disclosure, a control method is provided, including: configuring the operating mode of a vehicle-side device to a first operating mode; wherein the first operating mode is used to trigger the wearable device associated with the vehicle-side device to be configured to a second operating mode, the first operating mode is the same as or has a corresponding relationship with the second operating mode, and the vehicle-side device executes at least part of the configuration of the wearable device in the second operating mode in the first operating mode.

[0006] According to the third aspect of an embodiment of the present disclosure, a control device is provided, including: a configuration module for configuring a wearable device associated with the vehicle-side device to a second operating mode in response to the vehicle-side device being configured to a first operating mode; wherein the first operating mode is the same as or has a corresponding relationship with the second operating mode, and the vehicle-side device executes at least part of the configuration of the wearable device in the second operating mode in the first operating mode.

[0007] According to the fourth aspect of an embodiment of the present disclosure, a control device is provided, including: a configuration module for configuring the operating mode of a vehicle-side device to a first operating mode; wherein the first operating mode is used to trigger the wearable device associated with the vehicle-side device to be configured to a second operating mode, the first operating mode is the same as or has a corresponding relationship with the second operating mode, and the vehicle-side device executes at least part of the configuration of the wearable device in the second operating mode in the first operating mode.

[0008] According to a fifth aspect of an embodiment of the present disclosure, a vehicle is provided, comprising a processor; and a memory for storing instructions executable by the processor; wherein the processor is configured to implement the steps of the method described in the first aspect of the embodiment of the present disclosure.

[0009] According to a sixth aspect of an embodiment of the present disclosure, a computer-readable storage medium is provided, on which computer program instructions are stored. When the program instructions are executed by a processor, the steps of the method described in the first aspect of the embodiment of the present disclosure are implemented.

[0010] The technical solution provided by the embodiments of the present disclosure brings at least the following beneficial effects: in response to the vehicle-side device being configured in the first operating mode, the wearable device associated with the vehicle-side device is configured in the second operating mode, and the vehicle-side device executes at least part of the configuration of the wearable device in the second operating mode in the first operating mode. As a result, when the vehicle-side device turns on the first operating mode, the wearable device can synchronously enter the second operating mode and configure the vehicle-side device based on the wearable device. Through the interaction between the wearable device and the smart cockpit, the convenience of operation is improved, further enhancing the user experience.

[0011] It is to be understood that the foregoing general description and the following detailed description are exemplary and explanatory only and are not restrictive of the disclosure. BRIEF DESCRIPTION OF THE DRAWINGS

[0012] The accompanying drawings herein are incorporated into and constitute a part of the specification, illustrate embodiments consistent with the present disclosure, and together with the description are used to explain the principles of the present disclosure, and do not constitute an improper limitation of the present disclosure.

[0013] Figure 1 is a flow chart showing a control method according to an exemplary embodiment;

[0014] Figure 2 is a flow chart showing a control method according to another exemplary embodiment;

[0015] Figure 3 is a flow chart showing a control method according to another exemplary embodiment;

[0016] Figure 4is a flow chart showing a control method according to another exemplary embodiment;

[0017] Figure 5 is a schematic diagram of a target interface according to an exemplary embodiment;

[0018] Figure 6 is a schematic diagram of a control interface according to an exemplary embodiment;

[0019] Figure 7 is a schematic diagram of a setting interface according to an exemplary embodiment;

[0020] Figure 8 is a schematic diagram of an exit confirmation interface according to an exemplary embodiment;

[0021] Figure 9 is a schematic diagram of a main interface of a wearable device according to an exemplary embodiment;

[0022] Figure 10 is a schematic diagram of a wake-up interface according to an exemplary embodiment;

[0023] Figure 11 is a flow chart showing a control method according to another exemplary embodiment;

[0024] Figure 12 is a flow chart showing a control method according to another exemplary embodiment;

[0025] Figure 13 is a flow chart showing a control method according to another exemplary embodiment;

[0026] Figure 14 is a schematic diagram of a vehicle-side interface according to an exemplary embodiment;

[0027] Figure 15 is a schematic diagram of a linkage interface according to an exemplary embodiment;

[0028] Figure 16 is an interaction diagram illustrating a control method according to an exemplary embodiment;

[0029] Figure 17 is an interaction diagram illustrating a control method according to another exemplary embodiment;

[0030] Figure 18 is an interaction diagram illustrating a control method according to another exemplary embodiment;

[0031] Figure 19 is an interaction diagram illustrating a control method according to another exemplary embodiment;

[0032] Figure 20 is a block diagram of a control device according to an exemplary embodiment;

[0033] Figure 21 is a block diagram of a control device according to another exemplary embodiment;

[0034] Figure 22 is a block diagram of a vehicle according to an exemplary embodiment. DETAILED DESCRIPTION

[0035] In order to enable ordinary persons in the art to better understand the technical solutions of the present disclosure, the technical solutions in the embodiments of the present disclosure will be clearly and completely described below with reference to the accompanying drawings.

[0036] It should be noted that the terms "first," "second," and the like in the specification and claims of the present disclosure and the above-mentioned drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or precedence. It should be understood that the numbers used in this manner are interchangeable where appropriate so that the embodiments of the present disclosure described herein can be implemented in an order other than those illustrated or described herein. The embodiments described in the following exemplary embodiments do not represent all embodiments consistent with the present disclosure. Instead, they are merely examples of apparatus and methods consistent with certain aspects of the present disclosure as detailed in the appended claims.

[0037] Figure 1 is a flow chart of a control method according to an exemplary embodiment. Figure 1 As shown, the control method of the embodiment of the present disclosure includes the following steps:

[0038] S101: In response to the vehicle-side device being configured in the first operating mode, the wearable device associated with the vehicle-side device is configured in the second operating mode.

[0039] It should be noted that the control method of the present embodiment is executed by an electronic device, which may be a wearable device. The control method of the present embodiment can be executed by a control device of the present embodiment, which can be configured in any electronic device to execute the control method of the present embodiment.

[0040] It should be noted that the vehicle-end device in the embodiment of the present disclosure may be a vehicle-mounted terminal.

[0041] Optionally, in response to a user performing a configuration operation on the vehicle-side device, the vehicle-side device is configured to a first operating mode. Optionally, the first operating mode is different from the current operating mode. For example, the current operating mode is driving mode, and the first operating mode is nap mode. For example, the user configures the vehicle-side device to nap mode.

[0042] For example, the user performs configuration operations on the vehicle-side device based on the display screen of the vehicle-mounted terminal. For example, the user clicks a setting control on the display screen to perform configuration operations on the vehicle-side device and configures the vehicle-side device to the first operating mode.

[0043] For example, the user clicks the switch of the first operating mode on the display screen to turn on the first operating mode, thereby configuring the vehicle-side device to the first operating mode.

[0044] Optionally, in response to the vehicle-side device being configured in the first operating mode, a wearable device associated with the vehicle-side device is determined, and the wearable device associated with the vehicle-side device is configured in the second operating mode. Optionally, the wearable device can be a sports tracker, a smart watch, a sports bracelet, or other devices.

[0045] It can be understood that the first operating mode is the same as or corresponds to the second operating mode, and the vehicle-side device executes at least part of the configuration of the wearable device in the second operating mode in the first operating mode.

[0046] For example, the first operating mode of the vehicle-side device is operating mode A, and the second operating mode of the wearable device can be operating mode A, or operating mode B that corresponds to the operating mode.

[0047] Optionally, the correspondence between the first operating mode and the second operating mode can be determined based on information such as the operating status of the device, function activation status, and usage scenarios.

[0048] For example, if the first operating mode and the second operating mode are both applicable to scenario A, it is determined that there is a corresponding relationship between the first operating mode and the second operating mode.

[0049] Optionally, in response to the wearable device being configured to the second operating mode, configuration information is formed by performing a configuration operation on the wearable device, and the configuration information is sent to the vehicle-side device, so that the vehicle-side device can execute at least part of the configuration of the wearable device in the second operating mode in the first operating mode.

[0050] For example, when the wearable device is in the second operating mode, the second operating mode can be configured, for example, the operating time of the second operating mode, the reminder tone of the second operating mode, the reminder time of the second operating mode, etc.

[0051] For example, in response to the vehicle-side device being configured in the first operating mode, the wearable device associated with the vehicle-side device is configured in the second operating mode. The operating duration of the second operating mode is the same as the operating duration of the first operating mode, both of which are 30 minutes. By configuring the operating duration of the second operating mode to 40 minutes, the vehicle-side device configures the operating duration of the first operating mode to 40 minutes.

[0052] For example, in the second operating mode, the wearable device can configure the vehicle-side device. For example, it can configure the vehicle-side air conditioning equipment, configure the vehicle-side playback equipment, etc. to control the vehicle-side. For example, it can configure the control parameters of the vehicle-side device to control the vehicle-side. For example, by configuring the temperature parameters and wind speed parameters of the vehicle-side air conditioning device, it can control the vehicle-side air conditioning device.

[0053] Optionally, in response to the vehicle-side device being configured as the first operating mode, indication information sent by the vehicle-side device can be received to configure the wearable device associated with the vehicle-side device as the second operating mode based on the indication information.

[0054] Optionally, in response to the vehicle-side device being configured as the first operating mode, the vehicle-side device generates indication information for configuring the operating mode of the wearable device, and the wearable device configures the operating mode of the wearable device from the current operating mode to the second operating mode by receiving the indication information sent by the vehicle-side device.

[0055] For example, the configuration information may carry identification information of the second operating mode. The wearable device determines the identification information of the second operating mode by parsing the configuration information and configures the wearable device to the second operating mode.

[0056] Optionally, before responding to the vehicle-side device being configured to the first operating mode, it also includes responding to receiving linkage information from the vehicle-side device, and associating the wearable device and the vehicle-side device based on the linkage information, so that the wearable device associated with the vehicle-side device can be determined.

[0057] For example, there are multiple wearable devices, namely wearable device A, wearable device B and wearable device C. In response to wearable device A receiving linkage information from the vehicle-side device, wearable device A and the vehicle-side device are associated. That is, in response to the vehicle-side device being configured as the first operating mode, wearable device A associated with the vehicle-side device is configured as the second operating mode.

[0058] The control method provided by the embodiments of the present disclosure configures the wearable device associated with the vehicle-side device to a second operating mode in response to the vehicle-side device being configured in a first operating mode. The vehicle-side device executes at least part of the configuration of the wearable device in the second operating mode in the first operating mode. As a result, when the vehicle-side device turns on the first operating mode, the wearable device can synchronously enter the second operating mode and configure the vehicle-side device based on the wearable device. The interaction between the wearable device and the smart cockpit improves operational convenience and further enhances the user experience.

[0059] Figure 2 is a flow chart of a control method according to an exemplary embodiment. Figure 2 As shown, the control method of the embodiment of the present disclosure includes the following steps:

[0060] S201, receiving first indication information sent by the vehicle-side device to enter a first operating mode, in which the vehicle-side device is in a low power consumption state within a set first time period.

[0061] S202: Configure the wearable device to a second operating mode according to the first instruction information.

[0062] Optionally, the vehicle-side device being in a low-power state for a set first duration in the first operating mode means that when the vehicle-side device is in the first operating mode, the vehicle-side device is in a low-power state for a set first duration. For example, the low-power state may be a resting state. The first duration is typically a short duration, for example, 30 minutes or 40 minutes.

[0063] Optionally, by determining the smart terminal device to which the wearable device is connected and connecting the smart terminal device to the vehicle-side device, the wearable device can receive the first indication information of entering the first operating mode sent by the vehicle-side device based on the smart terminal device.

[0064] For example, there are smart terminal device A and smart terminal device B, and the wearable device is connected to the smart terminal device A, such as a Bluetooth connection, and the smart terminal device A is connected to the vehicle-side device, such as a wireless LAN connection. Then, the wearable device can receive the first indication information sent by the vehicle-side device to enter the first operating mode based on the smart terminal device A.

[0065] Optionally, the first indication information may carry identification information of the first operating mode. The wearable device receives the first indication information and parses the first indication information to determine the identification information of the first operating mode, and configures the wearable device to the second operating mode based on the identification information.

[0066] Optionally, if the first operating mode is the same as the second operating mode, the wearable device is configured to the second operating mode, that is, based on the identification information, the operating mode of the wearable device is determined to be the first operating mode.

[0067] Optionally, if there is a correspondence between the first operating mode and the second operating mode, the wearable device is configured to the second operating mode, that is, based on the identification information and the correspondence between the first operating mode and the second operating mode, the second operating mode corresponding to the first operating mode is determined, and the operating mode of the wearable device is determined to be the second operating mode.

[0068] Optionally, after configuring the wearable device associated with the vehicle-side device to the second operating mode, the second operating mode can be exited according to the second indication information sent by the vehicle-side device. In addition, based on the exit of the wearable device from the second operating mode, a third indication information can be sent to the vehicle-side device to instruct the vehicle-side device to exit the first operating mode. Based on the interaction between the vehicle-side device and the wearable device, the collaborative work of the vehicle-side device and the wearable device is achieved.

[0069] For example, the second instruction information for exiting the first operating mode is received from the vehicle-side device, and the second operating mode is exited according to the second instruction information. Optionally, the second instruction information for exiting the first operating mode is received from the vehicle-side device when the first duration of the first operating mode is reached.

[0070] Optionally, the second indication information is used to instruct the wearable device to exit the second operating mode.

[0071] Optionally, after the wearable device exits the second operating mode, it can switch to the operating mode before entering the second operating mode. Optionally, it can also switch to a set operating mode. For example, the wearable device can be pre-set to switch to operating mode A after exiting the second operating mode.

[0072] Optionally, after receiving the first indication information or the second indication information, the wearable device may verify any one of the first indication information and the second indication information, and execute a process corresponding to any one of the indication information after the verification is successful.

[0073] Optionally, after the wearable device associated with the vehicle-side device is configured to the second operating mode, in response to exiting the second operating mode, a third indication information for exiting the second operating mode is sent to the vehicle-side device, and the third indication information is used to instruct the vehicle-side device to exit the first operating mode.

[0074] Optionally, the user can perform an operation to exit the second operating mode on the wearable device to exit the second operating mode, and in response to the exit from the second operating mode, a third indication information of exiting the second operating mode is sent to the vehicle-side device.

[0075] For example, there is a control for exiting the second operating mode on the display interface of the wearable device. The user can exit the second operating mode by clicking the control and send third instruction information for exiting the second operating mode to the vehicle-side device.

[0076] Optionally, after the operating time of the second operating mode reaches a set first duration, the wearable device may exit the second operating mode and send a third instruction message indicating the exit from the second operating mode to the vehicle-side device. For example, if the first duration is 30 minutes, when the wearable device operates in the second operating mode for 30 minutes, the wearable device exits the second operating mode and sends a third instruction message indicating the exit from the second operating mode to the vehicle-side device.

[0077] Optionally, after configuring the wearable device associated with the vehicle-side device to the second operating mode, the wearable device can receive notification messages sent by the vehicle-side device or other smart terminal devices. Optionally, the wearable device can receive notification messages and block them in the second operating mode to prevent the notification messages from affecting the user in the second operating mode.

[0078] Optionally, notification messages can be screened based on their message level. For example, notification messages with a message level less than a set level can be screened. For example, notification messages with a message level greater than or equal to a set level can be prompted, thereby increasing the visibility of important messages.

[0079] The control method provided by the embodiments of the present disclosure receives first instruction information sent by a vehicle-side device to enter a first operating mode, and configures the wearable device to a second operating mode based on the first instruction information. Thus, the operating mode of the wearable device is configured based on the interaction between the vehicle-side device and the wearable device, enhancing inter-device collaboration and providing auxiliary functions for the vehicle-side device.

[0080] Figure 3 is a flow chart of a control method according to an exemplary embodiment. Figure 3 As shown, the control method of the embodiment of the present disclosure includes the following steps:

[0081] S301: In response to the vehicle-side device being configured in the first operating mode, the wearable device associated with the vehicle-side device is configured in the second operating mode.

[0082] The relevant contents of step S301 can be found in the above embodiment and will not be repeated here.

[0083] S302 : Determine first configuration information in response to a configuration operation of a vehicle authorization function.

[0084] S303: Send first configuration information to the vehicle-side device, where the first configuration information is used to configure a vehicle authorization function of the vehicle-side device.

[0085] Optionally, the vehicle authorization function refers to a function that can be configured through the wearable device. For example, the vehicle authorization function includes but is not limited to: operating time, sound played by the vehicle-side device in the first operating mode, temperature and wind speed of the vehicle air conditioner, etc.

[0086] Optionally, the vehicle authorization function is configured by performing a configuration operation on the wearable device, determining first configuration information according to the configuration operation, and configuring the vehicle authorization function based on the first configuration information.

[0087] Optionally, the vehicle authorization function configured on the wearable device and the configuration parameters corresponding to the vehicle authorization function can be determined according to the configuration operation, and then the first configuration information can be generated according to the vehicle authorization function and the configuration parameters.

[0088] Optionally, a vehicle authorization function to be configured and corresponding configuration parameters may be determined based on the first configuration information, and the vehicle authorization function may be configured based on the configuration parameters. For example, if the vehicle authorization function is the operating time, in response to a user configuring the operating time, such as increasing the operating time, the first configuration information may be determined based on the configuration operation, and the operating time of the second operating mode may be increased based on the first configuration information.

[0089] Optionally, based on the communication link between the wearable device and the vehicle-side device, the first configuration information can be sent to the vehicle-side device, and the configuration operation corresponding to the first configuration information on the wearable device side can be synchronized to the vehicle-side device side to configure the vehicle authorization function of the vehicle-side device according to the first configuration information.

[0090] For example, the wearable device side configures the running time of the second running mode, determines the first configuration information according to the configuration operation, and sends the first configuration information to the vehicle-side device, and synchronously configures the running time of the first running mode on the vehicle-side device side.

[0091] For example, the wearable device on the vehicle side configures the temperature of the vehicle air conditioner, determines the first configuration information based on the configuration operation, and by sending the first configuration information to the vehicle-side device, the configuration temperature of the air conditioner can be synchronized on the vehicle-side device to realize the configuration of the vehicle authorization function of the vehicle-side device based on the wearable device.

[0092] Optionally, after configuring the wearable device associated with the vehicle-side device to the second operating mode, the wearable device can also receive the second configuration information of the vehicle-side device and configure the vehicle authorization function based on the second configuration information, thereby synchronizing the configuration of the vehicle-side device to the wearable device.

[0093] Optionally, the wearable device receives the second configuration information sent by the vehicle-side device and configures the vehicle authorization function according to the second configuration information. Optionally, the second configuration information can be the default information of the vehicle-side device, or the vehicle authorization function can be configured based on the vehicle-side device and the second configuration information is generated.

[0094] For example, in response to the vehicle-side device being configured as the first operating mode, the operating duration of the first operating mode is the default duration of the vehicle-side device, and the second configuration information is generated based on the default duration. The wearable device configures the operating duration of the second operating mode to the default duration by receiving the second configuration information.

[0095] Optionally, the first indication information may carry second configuration information. The wearable device receives the first indication information sent by the vehicle-side device and obtains the second configuration information from the first indication information to configure the vehicle authorization function according to the second configuration information.

[0096] For example, in response to the vehicle-side device being configured as the first operating mode, the user configures the operating duration of the first operating mode on the vehicle-side device, and generates second configuration information based on the configured duration. The wearable device configures the operating duration of the second operating mode to the configured duration by receiving the second configuration information.

[0097] Optionally, after receiving the first indication information, the wearable device may receive second configuration information sent by the vehicle-side device, and configure the vehicle authorization function according to the second configuration information.

[0098] The control method provided by the embodiments of the present disclosure configures the wearable device associated with the vehicle-side device to a second operating mode in response to the vehicle-side device being configured in a first operating mode. Based on the configuration operation of the vehicle authorization function, the method determines first configuration information, configures the vehicle authorization function based on the first configuration information, and transmits the first configuration information to the vehicle-side device. This allows for simultaneous configuration of the wearable device and the smart cockpit, improving operational convenience and user experience.

[0099] Figure 4 is a flow chart of a control method according to an exemplary embodiment. Figure 4 As shown, the control method of the embodiment of the present disclosure includes the following steps:

[0100] S401: In response to the vehicle-side device being configured in the first operating mode, the wearable device associated with the vehicle-side device is configured in the second operating mode.

[0101] The relevant contents of step S401 can be found in the above embodiment and will not be repeated here.

[0102] S402: Displaying a target interface corresponding to the second operating mode on the display screen.

[0103] Optionally, after the wearable device associated with the vehicle-side device is configured in the second operating mode, the target interface corresponding to the second operating mode can be displayed on the display screen of the wearable device. For example, before entering the second operating mode, the display screen of the wearable device can display the current system time. When entering the second operating mode, the target interface corresponding to the second operating mode can be displayed on the display screen.

[0104] for example, Figure 5 The target interface shown is a schematic diagram, and the target interface includes at least one of the following contents: the current system time, the remaining time of the second operating mode, and the prompt information of the second operating mode. Figure 5 In the example, the display screen of the wearable device is a circular display screen, and the target interface is also a circular interface.

[0105] Optionally, after the target interface corresponding to the second operating mode is displayed on the display screen, the user can perform a first operation on the display screen to switch the display interface of the display screen, for example, from the target interface to another interface.

[0106] Optionally, in response to a first operation on the display screen, a control interface for the second operating mode is displayed on the display screen. Optionally, the first operation includes, but is not limited to, a sliding operation, a clicking operation, etc., wherein the clicking operation includes a double-click operation and a long press operation. Alternatively, a target button on the wearable device may be pressed to trigger the first operation on the display screen.

[0107] For example, in response to the user sliding the display screen from left to right, the first operation of the display screen is triggered, so that the control interface of the second operating mode can be displayed on the display screen.

[0108] for example, Figure 6 The control interface shown in the figure includes at least one of the following controls: a mode setting control and a mode end control. The mode setting control is used to enter the vehicle authorization function setup interface. The mode end control is used to enter the exit confirmation interface for the second operating mode. Figure 6 In the embodiment, the display screen of the wearable device is a circular display screen, and the control interface is also a circular interface.

[0109] Optionally, the user can operate the mode setting control, such as clicking the mode setting control to enter the setting interface of the vehicle authorization function. That is, in response to the second operation of the mode setting control, the setting interface is displayed on the display screen to configure the vehicle authorization function in the setting interface of the vehicle authorization function.

[0110] for example, Figure 7The schematic diagram of the settings interface shown in FIG. The settings interface includes function settings controls corresponding to the vehicle authorization function. If there is one vehicle authorization function, the settings interface includes one function settings control corresponding to the vehicle authorization function; if there are multiple vehicle authorization functions, the settings interface includes multiple function settings controls corresponding to the multiple vehicle authorization functions. Figure 7 In the example, the display screen of the wearable device is a circular display screen, and the setting interface is also a circular interface.

[0111] Optionally, the user can operate the function setting control, such as clicking the function setting control to enter the function configuration interface corresponding to the function setting control. That is, in response to the fourth operation of the function setting control, the function configuration interface corresponding to the function setting control is displayed.

[0112] Optionally, the user may configure the vehicle authorization function on the function configuration interface to determine the first configuration information. That is, in response to the configuration operation on the function configuration interface, the first configuration information is determined according to the configuration operation, and the configuration of the vehicle authorization function is updated based on the first configuration information.

[0113] Optionally, the user can operate the mode end control, such as clicking the mode end control, to enter the exit confirmation interface of the second operating mode. That is, in response to the third operation of the mode end control, the exit confirmation interface is displayed on the display screen to confirm whether to exit the second operation on the exit confirmation interface.

[0114] for example, Figure 8 The schematic diagram of the exit confirmation interface shown in FIG. The exit confirmation interface includes at least one of the following: the current system time, an exit prompt, an exit confirmation control, and an exit rejection control. The exit confirmation control is used to confirm the exit from the second operating mode. The exit rejection control is used to reject the exit from the second operating mode. Figure 8 In the example, the display screen of the wearable device is a circular display screen, and the exit confirmation interface is also a circular interface.

[0115] Optionally, the user can operate the exit confirmation control on the exit confirmation interface, such as clicking the exit confirmation control, thereby exiting the second operating mode and switching the display interface of the display screen. In other words, in response to the fifth operation of the exit confirmation control, the second operating mode is exited and the main interface of the wearable device is displayed on the display screen.

[0116] for example, Figure 9 Shown is a schematic diagram of the main interface of the wearable device, which includes the current system time. Figure 9 In the embodiment, the display screen of the wearable device is a circular display screen, and the main interface is also a circular interface.

[0117] Optionally, the user can operate the exit rejection control on the exit confirmation interface, such as clicking the exit rejection control, thereby rejecting the exit from the second operating mode and switching the display interface of the display screen. That is, in response to the sixth operation of the exit rejection control, the second operating mode is maintained and the control interface is displayed on the display screen. The schematic diagram of the control interface is as follows Figure 6 shown.

[0118] In the embodiment of the present disclosure, by operating different controls of the wearable device, the display interface of the wearable device can be switched, and the configuration operation of the vehicle authorization function or the exit of the second operating mode can be implemented on different display interfaces, thereby realizing convenient configuration of the vehicle authorization function and flexible operation of the second operating mode.

[0119] Optionally, after configuring the wearable device associated with the vehicle-side device to the second operating mode, the cumulative time the wearable device enters the second operating mode can also be counted, and based on the cumulative time, it can be determined whether the user needs to be woken up to prompt the user that the second operating mode is about to end.

[0120] Optionally, a wake-up interface may be displayed on the display screen, and a wake-up message may be sent to perform a wake-up operation on the user.

[0121] For example, a second duration may be set, and based on the second duration and the accumulated duration, it is determined whether to display the wake-up interface on the display screen, wherein the second duration is shorter than the first duration.

[0122] Optionally, in response to the accumulated time reaching a set second time, a wake-up interface is displayed on the display screen.

[0123] for example, Figure 10 The figure shows a schematic diagram of the wake-up interface. The wake-up interface includes at least one of the following: the current system time, a wake-up prompt, a mode delay control, and a mode end control. The mode delay control is used to delay the second operating mode. The mode end control is used to enter the exit confirmation interface of the second operating mode. Figure 10 In the embodiment, the display screen of the wearable device is a circular display screen, and the wake-up interface is also a circular interface.

[0124] Optionally, the user can operate the mode delay control on the wake-up interface, such as clicking the mode delay control, to extend the duration of the second operating mode. In other words, in response to the seventh operation of the mode delay control, the second operating mode is maintained, and the remaining time of the target interface is updated according to the delay time configured by the mode delay control, and the updated target interface is displayed on the display screen.

[0125] Optionally, after the display screen displays the updated main interface, the accumulated time the wearable device has been in the second operating mode can continue to be counted, and in response to the accumulated time reaching a set time, a wake-up message is issued. Optionally, the wake-up message can be in the form of a vibration or an alarm. Optionally, the user can set the form of the wake-up message, and the set form of the wake-up message is issued when the accumulated time reaches the set time.

[0126] In the embodiment of the present disclosure, by timing the cumulative time that the wearable device enters the second operating mode and determining whether to wake up the user after the cumulative time reaches the second time, a flexible wake-up strategy can be implemented to adapt to different scenarios and improve the user experience.

[0127] Optionally, after the wake-up interface is displayed on the display screen, at least one of the following is further included: in response to the third operation of the mode end control, an exit confirmation interface is displayed on the display screen, and the schematic diagram of the exit confirmation interface is as shown in FIG. Figure 8 shown.

[0128] Furthermore, in response to the fifth operation of the exit confirmation control on the exit confirmation interface, the second operation mode is exited, and the main interface of the wearable device is displayed on the display screen. The schematic diagram of the main interface is as follows: Figure 9 shown.

[0129] Optionally, in response to the sixth operation of the exit rejection control on the exit confirmation interface, the second operation mode is maintained, and a wake-up interface is displayed on the display screen. The schematic diagram of the wake-up interface is as follows: Figure 10 shown.

[0130] Optionally, when the display interface before entering the exit confirmation interface is a control interface, in response to the sixth operation of the exit rejection control on the exit confirmation interface, the control interface is displayed on the display screen. When the display interface before entering the exit confirmation interface is a wake-up interface, in response to the sixth operation of the exit rejection control on the exit confirmation interface, the wake-up interface is displayed on the display screen.

[0131] The control method provided by the embodiments of the present disclosure configures the wearable device associated with the vehicle-side device to a second operating mode in response to the vehicle-side device being configured in a first operating mode. The target interface corresponding to the second operating mode can be displayed on the wearable device's display screen. Thus, by displaying the target interface, the user can intuitively perceive the remaining time in the second operating mode and the current system time, thereby enabling precise time control and helping the user better manage time.

[0132] Figure 11 is a flow chart of a control method according to an exemplary embodiment. Figure 11 As shown, the control method of the embodiment of the present disclosure includes the following steps:

[0133] S1101, configure the operating mode of the vehicle-side device to the first operating mode.

[0134] It should be noted that the control method of the disclosed embodiment is executed by an electronic device, which may be a vehicle-side device. The control method of the disclosed embodiment can be executed by a control device of the disclosed embodiment, which can be configured in any electronic device to execute the control method of the disclosed embodiment.

[0135] Optionally, the operating mode of the vehicle-side device may be configured to the first operating mode based on the user's target operation. Optionally, the user may perform a target operation on a display interface set on the vehicle-side device to configure the operating mode of the vehicle-side device to the first operating mode.

[0136] For example, the user selects the operating mode of the vehicle-side device on the display interface A of the vehicle-side device. If the user performs a target operation on the first operating mode, the operating mode of the vehicle-side device can be configured as the first operating mode.

[0137] For example, the display interface A includes multiple operating modes. If the user clicks on the first operating mode and determines to perform the target operation on the first operating mode, the operating mode of the vehicle-side device can be configured as the first operating mode.

[0138] For example, the display interface A includes multiple operating modes and switches corresponding to multiple operating modes. If the user clicks the switch of the first operating mode, turns on the first operating mode, and determines to perform the target operation on the first operating mode, the operating mode of the vehicle-side device can be configured as the first operating mode.

[0139] It can be understood that the first operating mode is used to trigger the wearable device associated with the vehicle-side device to be configured into the second operating mode. The first operating mode is the same as or has a corresponding relationship with the second operating mode. The vehicle-side device executes at least part of the configuration of the wearable device in the second operating mode in the first operating mode.

[0140] Optionally, after configuring the operating mode of the vehicle-side device to the first operating mode, the vehicle-side device can send a first indication information to the wearable device to enter the first operating mode. The first indication information is used to configure the wearable device to the second operating mode, thereby triggering the wearable device associated with the vehicle-side device to be configured to the second operating mode, thereby realizing real-time interaction between the vehicle-side device and the wearable device.

[0141] Optionally, the wearable device may further send a request message for the first indication information to the vehicle-side device to request the vehicle-side device to send the first indication information. In other words, after receiving the request message, the vehicle-side device sends the first indication information to the wearable device to trigger the wearable device associated with the vehicle-side device to be configured in the second operating mode.

[0142] Optionally, the first operating mode is the same as or corresponds to the second operating mode. For example, the first operating mode of the vehicle-side device is operating mode A, and the second operating mode of the wearable device can be operating mode A, or operating mode B that corresponds to the operating mode.

[0143] Optionally, the correspondence between the first operating mode and the second operating mode may be determined based on information such as the operating status of the device, function activation status, and usage scenarios.

[0144] For example, if the first operating mode and the second operating mode are both applicable to scenario A, it is determined that there is a corresponding relationship between the first operating mode and the second operating mode.

[0145] Optionally, the vehicle-side device executes at least part of the configuration of the wearable device in the second operating mode in the first operating mode, can perform configuration operations on the wearable device to form configuration information, and by sending the configuration information to the vehicle-side device, the vehicle-side device can execute at least part of the configuration of the wearable device in the second operating mode in the first operating mode.

[0146] For example, when the wearable device is in the second operating mode, the second operating mode can be configured, for example, the operating time of the second operating mode, the reminder tone of the second operating mode, the reminder time of the second operating mode, etc.

[0147] For example, in the second operating mode, the wearable device can configure the vehicle-side device. For example, it can configure the vehicle-side air conditioning equipment, configure the vehicle-side playback equipment, etc., so that the vehicle-side device can perform at least part of the configuration of the wearable device. For example, it can configure the control parameters of the vehicle-side device, such as the temperature parameters and wind speed parameters of the vehicle-side air conditioning equipment.

[0148] Optionally, the operating mode of the vehicle-side device is configured as the first operating mode, which can control the vehicle-side device to be in a low-power state within a set first time period, and control the seat to adjust from the driving posture to the target posture corresponding to the first operating mode, so that the user can obtain better comfort and optimize the driving experience.

[0149] For example, the low-power state refers to the state of the vehicle-side device when the user is resting in the vehicle. For example, by configuring the vehicle-side device's operating mode to the first operating mode, the seat can be controlled to adjust from the driving position to the lying position, and the lying position is used as the target position corresponding to the first operating mode.

[0150] Optionally, after configuring the operating mode of the vehicle-side device to the first operating mode, the vehicle-side device can receive notification messages from the vehicle and filter the notification messages according to the message levels of the notification messages to avoid interference to the user by too many messages.

[0151] Optionally, the notification message can be a notification message received by the vehicle-side device from the vehicle itself, such as a vehicle failure, vehicle abnormality, etc. The notification message can also be a notification message received by a smart terminal device connected to the vehicle-side device, such as a contact message, application message, etc.

[0152] Optionally, the vehicle-side device receives the notification message and determines the message level of the notification message, determines a set level, and compares the set level with the message level to determine whether to prompt the notification message.

[0153] Optionally, in response to a message level exceeding a set level, a notification message is prompted. For example, if the message level of a vehicle failure notification message exceeds a set level, a notification message of the vehicle failure type is prompted. For example, if the message level of a vehicle external environment abnormality notification message exceeds a set level, a notification message of the vehicle external environment abnormality type is prompted.

[0154] For example, if the message level of a contact message or an application message is less than or equal to the set level, the contact message or the application message can be blocked.

[0155] Optionally, after configuring the operating mode of the vehicle-side device to the first operating mode, you can also exit the first operating mode. In response to exiting the first operating mode, a second indication information for exiting the first operating mode is sent to the wearable device, where the second indication information is used to instruct the wearable device to exit the second operating mode.

[0156] Optionally, the first operating mode may be exited by performing an exit operation on a display interface set by the user on the vehicle-side device. For example, the user operates a control for exiting the first operating mode to exit the first operating mode.

[0157] Optionally, a third instruction message for exiting the second operating mode sent by the wearable device may be received, and the first operating mode may be exited according to the third instruction message. In other words, the vehicle-side device may exit the first operating mode based on the third instruction message from the wearable device. Furthermore, when the vehicle-side device exits the first operating mode, the second instruction message for exiting the first operating mode may be sent to the wearable device. This allows for synchronous exit of the vehicle-side device and the wearable device, ensuring information synchronization and consistency between the devices.

[0158] The control method provided by the embodiments of the present disclosure configures the vehicle-side device's operating mode to the first operating mode. In the first operating mode, the vehicle-side device executes at least part of the configuration of the wearable device in the second operating mode. This allows the wearable device to synchronously enter the second operating mode when the vehicle-side device is in the first operating mode, and configure the vehicle-side device based on the wearable device. The interaction between the wearable device and the smart cockpit improves operational convenience and further enhances the user experience.

[0159] Figure 12 is a flow chart of a control method according to an exemplary embodiment. Figure 12 As shown, the control method of the embodiment of the present disclosure includes the following steps:

[0160] S1201, configure the operating mode of the vehicle-side device to the first operating mode.

[0161] The relevant contents of step S1201 can be found in the above embodiment and will not be repeated here.

[0162] S1202: Receive first configuration information of a vehicle authorization function sent by a wearable device.

[0163] S1203: Configure the vehicle authorization function based on the first configuration information.

[0164] Optionally, the vehicle authorization function refers to a function that can be configured through the wearable device. For example, the vehicle authorization function includes but is not limited to: operating time, sound played by the vehicle-side device in the first operating mode, temperature and wind speed of the vehicle air conditioner, etc.

[0165] Optionally, by performing a configuration operation on the vehicle authorization function on the wearable device and determining the first configuration information according to the configuration operation, the vehicle-side device can receive the first configuration information of the vehicle authorization function sent by the wearable device.

[0166] Optionally, a vehicle authorization function to be configured and corresponding configuration parameters may be determined based on the first configuration information, and the vehicle authorization function may be configured according to the configuration parameters. For example, the first configuration information may include the vehicle authorization function to be configured and the corresponding configuration parameters, so that the vehicle authorization function to be configured may be determined based on the first configuration information, and the vehicle authorization function may be configured according to the corresponding configuration parameters.

[0167] For example, the wearable device side configures the running time of the second running mode, determines the first configuration information according to the configuration operation, and synchronously configures the running time of the first running mode on the vehicle-side device side by receiving the first configuration information.

[0168] For example, the wearable device performs a configuration operation on the vehicle air conditioner temperature on the vehicle side, determines the first configuration information according to the configuration operation, receives the first configuration information, and synchronizes the configuration temperature of the air conditioner on the vehicle side.

[0169] Optionally, the first configuration information sent by the wearable device can be received based on the communication link between the wearable device and the vehicle-side device. For example, the smart terminal device connected to the wearable device is determined, and the smart terminal device is connected to the vehicle-side device, thereby establishing a communication link between the wearable device and the vehicle-side device.

[0170] Optionally, the vehicle authorization function can also be configured on the vehicle-side device side, and the second configuration information can be determined based on the configuration operation. By sending the second configuration information to the wearable device, the vehicle authorization function on the wearable device side can be configured.

[0171] Optionally, the second configuration information may be determined based on a configuration operation performed by the user on the vehicle-side device. For example, if the user modifies the operating time of the first operating mode on the vehicle-side device, the second configuration information may be determined to be the configured operating time. For example, if the user modifies the vehicle air conditioning temperature on the vehicle-side device, the second configuration information may be determined to be the configured air conditioning temperature.

[0172] Optionally, in response to the configuration operation of the vehicle authorization function on the vehicle-side device, the second configuration information is determined and sent to the wearable device, wherein the second configuration information is used to configure the vehicle authorization function on the wearable device side, thereby realizing the synchronous configuration of the vehicle-side device and the wearable device, and realizing the synchronous transmission of information between multiple devices.

[0173] The control method provided by the embodiments of the present disclosure configures the vehicle-side device's operating mode to a first operating mode, receives first configuration information sent by a wearable device, and configures the vehicle authorization function based on the first configuration information. This allows for simultaneous configuration of the wearable device and the vehicle-side device, thereby improving operational convenience and user experience.

[0174] Figure 13 is a flow chart of a control method according to an exemplary embodiment. Figure 13 As shown, the control method of the embodiment of the present disclosure includes the following steps:

[0175] S1301, configure the operating mode of the vehicle-side device to the first operating mode.

[0176] The relevant contents of step S1301 can be found in the above embodiment and will not be repeated here.

[0177] S1302, displaying the vehicle-side interface corresponding to the first operating mode on the display screen.

[0178] Optionally, after the vehicle-side device's operating mode is configured as the first operating mode, a vehicle-side interface corresponding to the first operating mode may be displayed on the display screen of the vehicle-side device. For example, before entering the first operating mode, the display screen of the vehicle-side device may display the current system time, and after entering the first operating mode, the vehicle-side interface corresponding to the first operating mode may be displayed on the display screen.

[0179] for example, Figure 14 The diagram shows a schematic diagram of the vehicle-side interface, which includes at least one of the following: the current system time, the remaining time in the second operating mode, a mode start control, and a mode exit control. The mode start control is used to configure the vehicle-side device's operating mode to the first operating mode. The mode exit control is used to exit the first operating mode.

[0180] Optionally, the user can operate the mode start control, such as clicking the mode start control, to configure the operating mode of the vehicle-side device. That is, in response to the first operation of the mode start control, the operating mode of the vehicle-side device is configured to the first operating mode.

[0181] Optionally, the user can operate the mode exit control, such as clicking the mode exit control, to exit the first operating mode and switch the display interface of the vehicle-side device. In other words, in response to the second operation of the mode exit control, the vehicle-side main interface is displayed on the display screen.

[0182] In the embodiment of the present disclosure, by controlling the start and exit of the first operating mode based on different controls, the flexibility and configurability of the operation can be improved, and by controlling the start and exit of the first operating mode through operating controls, the operation process can be simplified.

[0183] Optionally, in order to make the vehicle enter the driving mode, after exiting the first operating mode, the vehicle-side main interface can be displayed on the display screen, and the seat can be controlled to adjust from the target posture corresponding to the first operating mode to the driving posture.

[0184] Optionally, after configuring the operating mode of the vehicle-side device to the first operating mode, in order to reduce the vehicle's power consumption and realize intelligent mode switching, the brightness of the display screen can be reduced, and the controls on the vehicle-side interface can be hidden, and only time-related information can be displayed.

[0185] That is, after exiting the first operating mode, the brightness of the display screen can be restored, and controls and time-related information can be displayed at the same time, thereby enhancing the functionality of the vehicle.

[0186] Optionally, before sending the first indication information to the wearable device associated with the vehicle-side device, the vehicle-side device can also be linked with the wearable device, and the first indication information can be sent to the wearable device linked with the vehicle-side device. The first indication information can be accurately sent to the wearable device to avoid mistransmission of information.

[0187] Optionally, when a wearable device is linked to a vehicle-side device, the first indication information can be sent directly to the wearable device. For example, if there are wearable device A and wearable device B, and neither wearable device A nor wearable device B is linked to the vehicle-side device, a linkage relationship can be established between wearable device B and the vehicle-side device based on the vehicle-side device's linkage operation on wearable device B, and the vehicle-side device can then send the first indication information to wearable device B.

[0188] For example, there are wearable device A and wearable device B, and wearable device B has a linkage relationship with the vehicle-side device. The vehicle-side device can directly send the first indication information to the wearable device B.

[0189] Optionally, the vehicle-side device and the wearable device can be linked based on the calling instruction of the vehicle-side device linkage interface.

[0190] Optionally, in response to the calling instruction of the linkage interface, the linkage interface is displayed on the display screen. For example, Figure 15 The diagram shows a linkage interface, which includes at least controls for the wearable device. For example, a call instruction can be triggered by a user performing a setting operation on the vehicle-side device. For example, the vehicle-side device currently displays the vehicle-side main interface. The user triggers the call instruction for the linkage interface by swiping up, down, left, or right on the vehicle-side main interface, or by long-pressing the vehicle-side main interface.

[0191] Optionally, the user can operate the controls of the wearable device to link the wearable device. That is, in response to the third operation on the controls of the wearable device, the linkage function with the wearable device is activated. Optionally, when there are multiple wearable devices, the wearable device on which the linkage function is to be activated can be determined based on the vehicle-side device linkage interface, and the fourth operation on the controls of the wearable device can be performed to disable the linkage function with the wearable device.

[0192] The control method provided by the embodiment of the present disclosure configures the operating mode of the vehicle-side device to the first operating mode, and can display the vehicle-side interface corresponding to the first operating mode on the display screen. Thus, by displaying the vehicle-side interface and starting the first operating mode based on the vehicle-side interface, an intuitive interactive interface is provided to the user, thereby improving the convenience of operation.

[0193] Figure 16is an interaction diagram showing a control method according to an exemplary embodiment, such as Figure 16 As shown, the control method of the embodiment of the present disclosure includes the following steps:

[0194] S1601, configure the operating mode of the vehicle-side device to the first operating mode.

[0195] S1602, the vehicle-side device sends a first indication message to the wearable device.

[0196] S1603: The wearable device is configured to a second operating mode according to the first instruction information.

[0197] S1604: The wearable device determines first configuration information according to the configuration operation.

[0198] S1605: Send first configuration information to the vehicle-side device.

[0199] S1606, the vehicle-side device configures the vehicle authorization function based on the first configuration information.

[0200] In the control method provided by the embodiments of the present disclosure, a vehicle-side device enters a first operating mode and sends first instruction information to a wearable device to instruct the wearable device to enter a second operating mode. By performing configuration operations on the wearable device to obtain first configuration information, and then sending the first configuration information to the vehicle-side device, configuration operations performed on the wearable device can be synchronized with the vehicle-side device, achieving synchronized modification of information, thereby improving operational convenience and user experience.

[0201] Figure 17 is an interaction diagram showing a control method according to an exemplary embodiment, such as Figure 17 As shown, the control method of the embodiment of the present disclosure includes the following steps:

[0202] S1701, the vehicle-end device determines the second configuration information according to the configuration operation.

[0203] S1702, the vehicle-side device sends second configuration information to the wearable device.

[0204] S1703: The wearable device configures the vehicle authorization function based on the second configuration information.

[0205] The control method provided by the embodiment of the present disclosure obtains second configuration information by performing configuration operations on the vehicle-side device side, and sends the second configuration information to the wearable device side, thereby realizing configuration operations based on the vehicle-side device, synchronously modifying the configuration of the wearable device, and realizing synchronous modification of information.

[0206] Figure 18is an interaction diagram showing a control method according to an exemplary embodiment, such as Figure 18 As shown, the control method of the embodiment of the present disclosure includes the following steps:

[0207] S1801, the vehicle-side device exits the first operating mode.

[0208] S1802, the vehicle-side device sends a second indication message to the wearable device.

[0209] S1803: The wearable device exits the second operating mode according to the second instruction information.

[0210] The control method provided by the embodiments of the present disclosure realizes synchronous exit of the operating mode by exiting the first operating mode on the vehicle-side device and sending a second indication message to the wearable device to instruct the wearable device to exit the second operating mode, thereby avoiding repeated operations on multiple devices and improving the convenience of operation.

[0211] Figure 19 is an interaction diagram showing a control method according to an exemplary embodiment, such as Figure 19 As shown, the control method of the embodiment of the present disclosure includes the following steps:

[0212] S1901: The wearable device exits the second operating mode.

[0213] S1902, the wearable device sends a third indication message to the vehicle-side device.

[0214] S1903, the vehicle-end device exits the first operating mode according to the third instruction information.

[0215] The control method provided by the embodiments of the present disclosure realizes synchronous exit of the operating mode by exiting the second operating mode on the wearable device side and sending a third indication message to the vehicle-side device to instruct the vehicle-side device to exit the first operating mode, thereby avoiding repeated operations on multiple devices and improving the convenience of operation.

[0216] Figure 20 FIG. 1 is a block diagram of a control device according to an exemplary embodiment. Figure 20 The control device 100 of the embodiment of the present disclosure includes: a configuration module 110.

[0217] The configuration module 110 is configured to configure the wearable device associated with the vehicle-side device to a second operating mode in response to the vehicle-side device being configured to the first operating mode;

[0218] Among them, the first operating mode is the same as or corresponds to the second operating mode, and the vehicle-side device executes at least part of the configuration of the wearable device in the second operating mode in the first operating mode.

[0219] In one embodiment of the present disclosure, the configuration module 110 is also used to: receive first indication information sent by the vehicle-side device to enter a first operating mode, in which the vehicle-side device is in a low power consumption state within a set first time period; and configure the wearable device to a second operating mode according to the first indication information.

[0220] In one embodiment of the present disclosure, the configuration module 110 is further used to: determine first configuration information in response to a configuration operation of a vehicle authorization function; and send the first configuration information to a vehicle-side device, wherein the first configuration information is used to configure the vehicle authorization function of the vehicle-side device.

[0221] In one embodiment of the present disclosure, the configuration module 110 is further used to: receive second configuration information sent by the vehicle-end device; and configure the vehicle authorization function according to the second configuration information.

[0222] In one embodiment of the present disclosure, the configuration module 110 is further configured to: receive a notification message, and shield the notification message in the second operating mode.

[0223] In one embodiment of the present disclosure, the configuration module 110 is further used to: display a target interface corresponding to the second operating mode on the display screen, and the target interface includes at least one of the following contents: the current system time; the remaining time of the second operating mode; and the prompt information of the second operating mode.

[0224] In one embodiment of the present disclosure, the configuration module 110 is also used to: display a control interface of the second operating mode on the display screen in response to a first operation on the display screen, and the control interface includes at least one of the following controls: a mode setting control for entering a setting interface of a vehicle authorization function; and a mode end control for entering an exit confirmation interface of the second operating mode.

[0225] In one embodiment of the present disclosure, the configuration module 110 is further configured to: display a setting interface on the display screen in response to a second operation of the mode setting control; and display an exit confirmation interface on the display screen in response to a third operation of the mode end control.

[0226] In one embodiment of the present disclosure, the setting interface includes a function setting control corresponding to the vehicle authorization function, and the configuration module 110 is also used to: display the function configuration interface corresponding to the function setting control in response to the fourth operation of the function setting control; determine the first configuration information according to the configuration operation in response to the configuration operation of the function configuration interface, and update the configuration of the vehicle authorization function based on the first configuration information.

[0227] In one embodiment of the present disclosure, the configuration module 110 is further used to: time the cumulative duration of the wearable device entering the second operating mode; in response to the cumulative duration reaching the set second duration, display a wake-up interface on the display screen, the second duration is less than the first duration, and the wake-up interface includes at least one of the following: the current system time; wake-up prompt information; a mode delay control for delaying the second operating mode; and a mode end control for entering the exit confirmation interface of the second operating mode.

[0228] In one embodiment of the present disclosure, the configuration module 110 is also used to: continue to maintain the second operating mode in response to the seventh operation of the mode delay control; update the remaining time of the target interface according to the delay time configured by the mode delay control, and display the updated target interface on the display screen.

[0229] The control device provided in an embodiment of the present disclosure configures the wearable device associated with the vehicle-side device to a second operating mode in response to the vehicle-side device being configured in a first operating mode. The vehicle-side device executes at least part of the configuration of the wearable device in the second operating mode in the first operating mode. As a result, when the vehicle-side device turns on the first operating mode, the wearable device can synchronously enter the second operating mode and configure the vehicle-side device based on the wearable device. The interaction between the wearable device and the smart cockpit improves the convenience of operation and further enhances the user experience.

[0230] Figure 21 FIG. 1 is a block diagram of a control device according to an exemplary embodiment. Figure 21 The control device 200 of the embodiment of the present disclosure includes: a configuration module 210.

[0231] A configuration module 210, configured to configure the operation mode of the vehicle-side device to a first operation mode;

[0232] Among them, the first operating mode is used to trigger the wearable device associated with the vehicle-side device to be configured into the second operating mode. The first operating mode is the same as or has a corresponding relationship with the second operating mode. The vehicle-side device executes at least part of the configuration of the wearable device in the second operating mode in the first operating mode.

[0233] In one embodiment of the present disclosure, the configuration module 210 is further used to control the vehicle-side device to be in a low power consumption state within a set first time period.

[0234] In one embodiment of the present disclosure, the configuration module 210 is further configured to: send first indication information for entering the first operating mode to the wearable device, where the first indication information is used to configure the wearable device to the second operating mode.

[0235] In one embodiment of the present disclosure, the configuration module 210 is further configured to: receive first configuration information of the vehicle authorization function sent by the wearable device; and configure the vehicle authorization function based on the first configuration information.

[0236] In one embodiment of the present disclosure, the configuration module 210 is further used to: determine second configuration information in response to a configuration operation of the vehicle authorization function on the vehicle-side device; and send the second configuration information to the wearable device, wherein the second configuration information is used to configure the vehicle authorization function on the wearable device side.

[0237] In one embodiment of the present disclosure, the configuration module 210 is further configured to: in response to exiting the first operating mode, send second indication information of exiting the first operating mode to the wearable device, wherein the second indication information is used to instruct the wearable device to exit the second operating mode.

[0238] In one embodiment of the present disclosure, the configuration module 210 is further configured to: receive a notification message and determine a message level of the notification message; and prompt the notification message in response to the message level being greater than a set level.

[0239] In one embodiment of the present disclosure, the configuration module 210 is also used to: display the vehicle-side interface corresponding to the first operating mode on the display screen, and the vehicle-side interface includes at least one of the following contents: current system time; remaining time of the first operating mode; mode start control; mode exit control.

[0240] In one embodiment of the present disclosure, the configuration module 210 is further used to: display the linkage interface on the display screen in response to a call instruction of the linkage interface, where the linkage interface includes at least controls of the wearable device; and start the linkage function with the wearable device in response to a third operation of the controls of the wearable device.

[0241] In one embodiment of the present disclosure, the configuration module 210 is further configured to: control the seat to adjust from the driving posture to the target posture corresponding to the first operating mode.

[0242] In one embodiment of the present disclosure, the configuration module 210 is further used to: display the vehicle-side main interface on the display screen; and control the seat to adjust from the target posture corresponding to the first operating mode to the driving posture.

[0243] In one embodiment of the present disclosure, the configuration module 210 is further used to: reduce the brightness of the display screen; hide the controls on the vehicle-side interface and only display time-related information.

[0244] In one embodiment of the present disclosure, the configuration module 210 is further configured to restore the brightness of the display screen and simultaneously display controls and time-related information.

[0245] The control device provided in the embodiments of the present disclosure configures the vehicle-side device's operating mode to the first operating mode. The vehicle-side device, in the first operating mode, executes at least part of the configuration of the wearable device in the second operating mode. This allows the wearable device to simultaneously enter the second operating mode when the vehicle-side device is in the first operating mode, and configures the vehicle-side device based on the wearable device, improving operational convenience and further enhancing the user experience.

[0246] Figure 22 is a block diagram of a vehicle according to an exemplary embodiment. For example, vehicle 300 may be a hybrid vehicle, a non-hybrid vehicle, an electric vehicle, a fuel cell vehicle, or another type of vehicle. Vehicle 300 may be an autonomous vehicle, a semi-autonomous vehicle, or a non-autonomous vehicle.

[0247] Reference Figure 22 Vehicle 300 may include various subsystems, such as an infotainment system 301, a perception system 302, a decision-making and control system 303, a drive system 304, and a computing platform 305. Vehicle 300 may also include more or fewer subsystems, and each subsystem may include multiple components. Furthermore, each subsystem and each component of vehicle 300 may be interconnected via wired or wireless means.

[0248] In some embodiments, the infotainment system 301 may include a communication system, an entertainment system, a navigation system, and the like.

[0249] The perception system 302 may include several sensors for sensing information about the environment surrounding the vehicle 300. For example, the perception system 302 may include a global positioning system (which may be a GPS system, a BeiDou system, or another positioning system), an inertial measurement unit (IMU), a laser radar, a millimeter-wave radar, an ultrasonic radar, and a camera.

[0250] The decision control system 303 may include a computing system, a vehicle controller, a steering system, a throttle, and a braking system.

[0251] Drive system 304 may include components that provide power to vehicle 300. In one embodiment, drive system 304 may include an engine, a power source, a transmission system, and wheels. The engine may be an internal combustion engine, an electric motor, an air compression engine, or a combination thereof. The engine is capable of converting energy provided by the power source into mechanical energy.

[0252] Some or all functions of the vehicle 300 are controlled by a computing platform 305. The computing platform 305 may include at least one processor 351 and a memory 352. The processor 351 may execute instructions 353 stored in the memory 352.

[0253] The processor 351 can be any conventional processor, such as a commercially available CPU. The processor can also include a graphics processor (GPU), a field programmable gate array (FPGA), a system on chip (SOC), an application specific integrated circuit (ASIC), or a combination thereof.

[0254] The memory 352 can be implemented by any type of volatile or non-volatile memory device or a combination thereof, such as static random access memory (SRAM), electrically erasable programmable read-only memory (EEPROM), erasable programmable read-only memory (EPROM), programmable read-only memory (PROM), read-only memory (ROM), magnetic memory, flash memory, magnetic disk or optical disk.

[0255] In addition to instructions 353 , memory 352 may also store data, such as road maps, route information, and data on the vehicle's location, direction, speed, etc. The data stored in memory 352 may be used by computing platform 305 .

[0256] In an embodiment of the present disclosure, the processor 351 may execute the instruction 353 to implement all or part of the steps of the control method provided by the present disclosure.

[0257] In order to implement the above embodiments, the present disclosure further provides a computer-readable storage medium having computer program instructions stored thereon, which implement the steps of the control method provided by the present disclosure when the program instructions are executed by a processor.

[0258] Alternatively, the computer-readable storage medium may be a ROM, a random access memory (RAM), a CD-ROM, a magnetic tape, a floppy disk, an optical data storage device, or the like.

[0259] Other embodiments of the present disclosure will readily occur to those skilled in the art after considering the specification and practicing the invention disclosed herein. This disclosure is intended to cover any variations, uses, or adaptations of the present disclosure that follow the general principles of the present disclosure and include common knowledge or customary techniques in the art not disclosed herein. The description and examples are to be considered as exemplary only, with the true scope and spirit of the present disclosure being indicated by the following claims.

[0260] It should be understood that the present disclosure is not limited to the exact structures that have been described above and shown in the drawings, and that various modifications and changes can be made without departing from the scope thereof. The scope of the present disclosure is limited only by the appended claims.

Claims

1. A control method, characterized in that: The method comprises: In response to the vehicle-end device being configured in the first operating mode, configuring the wearable device associated with the vehicle-end device to a second operating mode; Among them, the first operating mode is the same as or corresponds to the second operating mode, and the vehicle-side device executes at least part of the configuration of the wearable device in the second operating mode in the first operating mode.

2. The method according to claim 1, characterized in that In response to the vehicle-end device being configured in the first operating mode, configuring the wearable device associated with the vehicle-end device to the second operating mode includes: receiving first indication information sent by the vehicle-end device to enter the first operating mode, wherein the vehicle-end device is in a low power consumption state for a set first time period in the first operating mode; According to the first indication information, the wearable device is configured to the second operating mode.

3. The method according to claim 1, characterized in that After configuring the wearable device associated with the vehicle-side device to the second operating mode, the method further includes: In response to a configuration operation of a vehicle authorization function, determining first configuration information; The first configuration information is sent to the vehicle-end device, wherein the first configuration information is used to configure a vehicle authorization function of the vehicle-end device.

4. The method according to claim 1, wherein After configuring the wearable device associated with the vehicle-side device to the second operating mode, the method further includes: Receiving second configuration information sent by the vehicle-end device; The vehicle authorization function is configured according to the second configuration information.

5. The method according to claim 1, wherein After configuring the wearable device associated with the vehicle-side device to the second operating mode, the method further includes: A notification message is received, and the notification message is shielded in the second operating mode.

6. The method according to any one of claims 1 to 5, characterized in that After configuring the wearable device associated with the vehicle-side device to the second operating mode, the method further includes: A target interface corresponding to the second operating mode is displayed on the display screen, where the target interface includes at least one of the following contents: Current system time; the remaining time of the second operating mode; Prompt information for the second operating mode.

7. The method according to claim 6, characterized in that After displaying the target interface corresponding to the second operating mode on the display screen, the method further includes: In response to the first operation on the display screen, a control interface of the second operating mode is displayed on the display screen, where the control interface includes at least one of the following controls: Mode setting control, used to enter the setting interface of the vehicle authorization function; Mode end control, used to enter the exit confirmation interface of the second operating mode.

8. The method according to claim 7, characterized in that After the control interface of the second operating mode is displayed on the display screen, the method further includes at least one of the following: In response to a second operation of the mode setting control, displaying the setting interface on the display screen; In response to a third operation of the mode end control, the exit confirmation interface is displayed on the display screen.

9. The method according to claim 8, characterized in that The setting interface includes a function setting control corresponding to the vehicle authorization function, and after the setting interface is displayed on the display screen, the further comprising: In response to a fourth operation of the function setting control, displaying a function configuration interface corresponding to the function setting control; In response to a configuration operation on the function configuration interface, first configuration information is determined according to the configuration operation, and the configuration of the vehicle authorization function is updated based on the first configuration information.

10. The method according to claim 6, characterized in that After configuring the wearable device associated with the vehicle-side device to the second operating mode, the method further includes: timing the cumulative duration of the wearable device entering the second operating mode; In response to the accumulated duration reaching a set second duration, a wake-up interface is displayed on the display screen, the second duration is less than the first duration, and the wake-up interface includes at least one of the following: Current system time; Wake-up reminder information; A mode delay control, used for delaying the second operating mode; Mode end control, used to enter the exit confirmation interface of the second operating mode.

11. The method according to claim 10, characterized in that After the wake-up interface is displayed on the display screen, the method further includes: In response to a seventh operation of the mode delay control, continuing to maintain the second operating mode; According to the delay time configured by the mode delay control, the remaining time of the target interface is updated, and the updated target interface is displayed on the display screen.

12. A control method, characterized in that: The method comprises: Configuring the operating mode of the vehicle-side device to the first operating mode; In which, the first operating mode is used to trigger the wearable device associated with the vehicle-side device to be configured into the second operating mode. The first operating mode is the same as or has a corresponding relationship with the second operating mode. The vehicle-side device executes at least part of the configuration of the wearable device in the second operating mode in the first operating mode.

13. The method according to claim 12, characterized in that After configuring the operating mode of the vehicle-side device to the first operating mode, the method further includes: Control the vehicle-side device to be in a low power consumption state within a set first time period.

14. The method according to claim 12, characterized in that After configuring the operating mode of the vehicle-side device to the first operating mode, the method further includes: First indication information for entering the first operating mode is sent to the wearable device, where the first indication information is used to configure the wearable device to the second operating mode.

15. The method according to claim 12, characterized in that After configuring the operating mode of the vehicle-side device to the first operating mode, the method further includes: receiving first configuration information of a vehicle authorization function sent by the wearable device; The vehicle authorization function is configured based on the first configuration information.

16. The method according to claim 12, characterized in that After configuring the operating mode of the vehicle-side device to the first operating mode, the method further includes: In response to a configuration operation of the vehicle authorization function on the vehicle-side device, determining second configuration information; The second configuration information is sent to the wearable device, wherein the second configuration information is used to configure the vehicle authorization function on the wearable device side.

17. The method according to claim 12, wherein: After configuring the operating mode of the vehicle-side device to the first operating mode, the method further includes: In response to exiting the first operating mode, second indication information for exiting the first operating mode is sent to the wearable device, wherein the second indication information is used to instruct the wearable device to exit the second operating mode.

18. The method according to claim 12, characterized in that After configuring the operating mode of the vehicle-side device to the first operating mode, the method further includes: receiving a notification message and determining a message level of the notification message; In response to the message level being greater than a set level, prompting the notification message.

19. The method according to any one of claims 12 to 18, characterized in that Before configuring the operating mode of the vehicle-side device to the first operating mode, the method further includes: Displaying a vehicle-side interface corresponding to the first operating mode on a display screen, wherein the vehicle-side interface includes at least one of the following contents: Current system time; the remaining time of the first operating mode; Mode start controls; Modal exit control.

20. The method according to claim 19, wherein Before sending the first instruction information for entering the first operating mode to the wearable device, the method further includes: In response to a calling instruction of a linkage interface, displaying the linkage interface on the display screen, wherein the linkage interface at least includes a control of the wearable device; In response to a third operation of the control of the wearable device, a linkage function with the wearable device is started.

21. The method according to any one of claims 12 to 18, wherein: After configuring the operating mode of the vehicle-side device to the first operating mode, the method further includes: The seat is controlled to adjust from a driving posture to a target posture corresponding to the first operating mode.

22. The method according to claim 19, wherein After exiting the first operating mode, the method further includes at least one of the following: Displaying the vehicle-side main interface on the display screen; The seat is controlled to adjust from a target posture corresponding to the first operating mode to a driving posture.

23. The method according to claim 19, wherein After configuring the operating mode of the vehicle-side device to the first operating mode, the method further includes: reducing the brightness of the display screen; The controls on the vehicle-side interface are hidden, and only time-related information is displayed.

24. The method according to claim 23, wherein After exiting the first operating mode, the method further includes: The brightness of the display screen is restored, and the control and the time-related information are displayed simultaneously.

25. A control device, characterized in that: The device comprises: a configuration module, configured to configure the wearable device associated with the vehicle-side device to a second operating mode in response to the vehicle-side device being configured to the first operating mode; Among them, the first operating mode is the same as or corresponds to the second operating mode, and the vehicle-side device executes at least part of the configuration of the wearable device in the second operating mode in the first operating mode.

26. The device according to claim 25, characterized in that The configuration module is further used to: receiving first indication information sent by the vehicle-end device to enter the first operating mode, wherein the vehicle-end device is in a low power consumption state for a set first time period in the first operating mode; According to the first indication information, the wearable device is configured to the second operating mode.

27. The device according to claim 25, characterized in that The configuration module is further used to: In response to a configuration operation of a vehicle authorization function, determining first configuration information; The first configuration information is sent to the vehicle-end device, wherein the first configuration information is used to configure a vehicle authorization function of the vehicle-end device.

28. The device according to claim 25, characterized in that The configuration module is further used to: Receiving second configuration information sent by the vehicle-end device; The vehicle authorization function is configured according to the second configuration information.

29. A control device, characterized in that: The device comprises: A configuration module, configured to configure the operation mode of the vehicle-side device to a first operation mode; In which, the first operating mode is used to trigger the wearable device associated with the vehicle-side device to be configured into the second operating mode. The first operating mode is the same as or has a corresponding relationship with the second operating mode. The vehicle-side device executes at least part of the configuration of the wearable device in the second operating mode in the first operating mode.

30. The device according to claim 29, characterized in that The configuration module is further used to: First indication information for entering the first operating mode is sent to the wearable device, where the first indication information is used to configure the wearable device to the second operating mode.

31. The device according to claim 29, characterized in that The configuration module is further used to: receiving first configuration information of a vehicle authorization function sent by the wearable device; The vehicle authorization function is configured based on the first configuration information.

32. The device according to claim 29, characterized in that The configuration module is further used to: In response to a configuration operation of the vehicle authorization function on the vehicle-side device, determining second configuration information; The second configuration information is sent to the wearable device, wherein the second configuration information is used to configure the vehicle authorization function on the wearable device side.

33. A vehicle, characterized in that: include: processor; a memory for storing processor-executable instructions; Wherein, the processor is configured to: Implement the steps of the method according to any one of claims 1 to 24.

34. A computer-readable storage medium having computer program instructions stored thereon, characterized in that: When the program instructions are executed by a processor, the steps of the method according to any one of claims 1 to 24 are implemented.