Method and device for controlling vehicle-mounted equipment, and vehicle

The cloud-based Internet of Vehicles system stores the binding relationship between the vehicle account and the smart device account, which solves the problem that users need to log in to the smart device account repeatedly, realizes the synchronization of multi-end account information, and improves the user's car use experience.

CN114827939BActive Publication Date: 2025-08-26GUANGZHOU AUTOMOBILE GROUP CO LTD
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Patent Information

Application Number
CN202110042550.X
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-01-13
Publication Date
2025-08-26
Estimated Expiration
2041-01-13

AI Technical Summary

Technical Problem

In the prior art, users need to log in to the smart device account again when logging in to the car machine account, resulting in cumbersome operations and unable to provide a good car use experience.

Method used

The cloud-based Internet of Vehicles system pre-storages the binding relationship between the vehicle account and the smart device account. After the user logs into the vehicle account, he sends a smart device account login request to synchronize the smart device account information to the on-board voice system to realize the synchronization of multi-terminal account information.

Benefits of technology

When users start the on-board voice system on the vehicle terminals of different vehicles, they do not need to log in to the smart device account to perform voice control, which greatly improves the car usage experience.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The present invention discloses a method for controlling an on-board device, comprising: after a user logs into a vehicle-mounted account, sending a smart device account login request to a cloud-based vehicle-connected network system; the smart device account login request is used to trigger the cloud-based vehicle-connected network system to query and issue the smart device account information bound to the vehicle-mounted account based on a pre-stored binding relationship between the vehicle-mounted account and the smart device account; receiving the smart device account information issued by the cloud-based vehicle-connected network system, and synchronizing the smart device account information to the on-board voice system, so that the on-board voice system carries the smart device account information to log in to the cloud-based smart device system. The present invention also discloses a corresponding on-board device control device and a vehicle. By adopting an embodiment of the present invention, the login status data of the account is stored in a background database, and multi-terminal synchronization is supported, so that the account can be logged in free of charge, thereby improving the user's car-using experience.
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Description

Technical Field

[0001] The present invention relates to the field of vehicle technology, and in particular to a control method and device for vehicle-mounted equipment, and a vehicle. Background Art

[0002] In recent years, with the development of connected vehicle (IoV) and Internet of Things (IoT) technologies, cars have become connected to the internet and homes. Users can log in to their in-vehicle intelligent entertainment terminal (AVNT terminal) with their vehicle-mounted account, then use the in-vehicle voice control system (VR) to log in to their account on the cloud-based smart device system (IoT platform) and control smart devices, such as their home appliances, through voice control.

[0003] However, the inventors found that the existing technology has at least the following problems: when the user logs back in to the car computer account, the user needs to log in to the IoT platform account on the car computer again in order to perform voice control on the corresponding smart device. This process is relatively cumbersome and cannot provide users with a good car experience. Summary of the Invention

[0004] The purpose of the embodiments of the present invention is to provide a control method, device and vehicle for vehicle-mounted equipment, which can realize multi-terminal synchronization of account information, solve the problem that the user needs to log in to the smart device account again after logging into the vehicle account, thereby improving the user's car experience.

[0005] To achieve the above objectives, an embodiment of the present invention provides a method for controlling an in-vehicle device, comprising:

[0006] After the user logs in to the vehicle computer account, a smart device account login request is sent to the cloud-based vehicle networking system; the smart device account login request is used to trigger the cloud-based vehicle networking system to query and issue the smart device account information bound to the vehicle computer account based on the pre-stored binding relationship between the vehicle computer account and the smart device account;

[0007] Receive the smart device account information sent by the cloud-based Internet of Vehicles system, and synchronize the smart device account information to the in-vehicle voice system, so that the in-vehicle voice system can log in to the cloud-based smart device system with the smart device account information.

[0008] As an improvement to the above solution, the method for establishing the binding relationship between the vehicle computer account and the smart device account includes:

[0009] After the user logs in to the vehicle computer account and logs in to the smart device account for the first time, the vehicle computer account information and the smart device account information are uploaded to the cloud-based Internet of Vehicles system, so that the cloud-based Internet of Vehicles system establishes and stores the binding relationship between the vehicle computer account and the smart device account.

[0010] As an improvement to the above solution, the control method of the vehicle-mounted device further includes:

[0011] After the user logs in to the vehicle account, a personalized configuration loading request is sent to the cloud-based vehicle networking system; the personalized configuration loading request is used to trigger the cloud-based vehicle networking system to query the personalized configuration parameters bound to the vehicle account based on the pre-stored binding relationship between the vehicle account and the personalized configuration parameters and issue the personalized configuration parameters;

[0012] Receive the personalized configuration parameters issued by the cloud-based Internet of Vehicles system, and send the personalized configuration parameters to the on-board ECU, so that the on-board ECU executes and updates the personalized configuration of the vehicle.

[0013] As an improvement to the above solution, the method for establishing the binding relationship between the vehicle account and the personalized configuration parameters includes:

[0014] After the user logs in to the vehicle account, the vehicle personalized configuration instruction input by the user is received and sent to the vehicle ECU; the vehicle personalized configuration instruction is used to trigger the vehicle ECU to execute the corresponding personalized configuration and return the personalized configuration parameters after execution;

[0015] The vehicle computer account information and the personalized configuration parameters are uploaded to a cloud-based Internet of Vehicles system, so that the cloud-based Internet of Vehicles system establishes and stores a binding relationship between the vehicle computer account and the personalized configuration parameters.

[0016] An embodiment of the present invention further provides a control device for an on-vehicle device, comprising:

[0017] An account login request sending module is used to send a smart device account login request to the cloud-based Internet of Vehicles system after the user logs in to the vehicle computer account; the smart device account login request is used to trigger the cloud-based Internet of Vehicles system to query and send the smart device account information bound to the vehicle computer account based on the pre-stored binding relationship between the vehicle computer account and the smart device account;

[0018] The account information receiving module is used to receive the smart device account information sent by the cloud-based Internet of Vehicles system and synchronize the smart device account information to the in-vehicle voice system, so that the in-vehicle voice system can log in to the cloud-based smart device system with the smart device account information.

[0019] As an improvement to the above solution, the control device of the vehicle-mounted equipment further includes:

[0020] The account information uploading module is used to upload the vehicle computer account information and the smart device account information to the cloud-based Internet of Vehicles system after the user logs in to the vehicle computer account and logs in to the smart device account for the first time, so that the cloud-based Internet of Vehicles system establishes and stores the binding relationship between the vehicle computer account and the smart device account.

[0021] As an improvement to the above solution, the control device of the vehicle-mounted equipment further includes:

[0022] A personalized configuration loading request sending module is used to send a personalized configuration loading request to the cloud-based Internet of Vehicles system after the user logs in to the vehicle-based account; the personalized configuration loading request is used to trigger the cloud-based Internet of Vehicles system to query the personalized configuration parameters bound to the vehicle-based account based on the pre-stored binding relationship between the vehicle-based account and the personalized configuration parameters and send the personalized configuration parameters;

[0023] The personalized configuration parameter receiving module is used to receive the personalized configuration parameters issued by the cloud-based vehicle networking system and send the personalized configuration parameters to the on-board ECU so that the on-board ECU executes and updates the personalized configuration of the vehicle.

[0024] As an improvement to the above solution, the control device of the vehicle-mounted equipment further includes:

[0025] The personalized configuration instruction transceiver module is used to receive the vehicle personalized configuration instruction input by the user after the user logs in to the vehicle account, and send the vehicle personalized configuration instruction to the vehicle ECU; the vehicle personalized configuration instruction is used to trigger the vehicle ECU to execute the corresponding personalized configuration and return the personalized configuration parameters after execution;

[0026] The personalized configuration parameter uploading module is used to upload the vehicle account information and the personalized configuration parameters to the cloud-based Internet of Vehicles system, so that the cloud-based Internet of Vehicles system establishes a binding relationship between the vehicle account and the personalized configuration parameters and stores them.

[0027] An embodiment of the present invention also provides a control device for a vehicle-mounted device, comprising a processor, a memory, and a computer program stored in the memory and configured to be executed by the processor, wherein when the processor executes the computer program, it implements a control method for the vehicle-mounted device as described in any one of the above items.

[0028] An embodiment of the present invention further provides a vehicle, comprising an on-board device and a control device; wherein the control device is the control device of the on-board device described in any one of the above.

[0029] Compared with the prior art, the present invention discloses a method, device and vehicle for controlling in-vehicle equipment, which pre-stores the binding relationship between the user's in-vehicle account and its smart device account, as well as the account information of the smart device account, through a cloud-based Internet of Vehicles system. After the user logs in to the in-vehicle account, a smart device account login request is sent to the cloud-based Internet of Vehicles system, so that the cloud-based Internet of Vehicles system queries the smart device account information bound to the in-vehicle account and sends it down. The smart device account information is synchronized to the in-vehicle voice system so that the in-vehicle voice system logs in to the cloud-based smart device system. The present invention stores the login status data of the smart device account through the cloud-based Internet of Vehicles system and supports multi-terminal synchronization, so that when the user starts the in-vehicle voice system on the in-vehicle terminal of different vehicles for voice control, there is no need to manually log in to the smart device account, and the user can log in to the cloud-based smart device system to control the relevant smart devices, which greatly improves the user's car experience. BRIEF DESCRIPTION OF THE DRAWINGS

[0030] Figure 1 1 is a schematic structural diagram of a control system of an on-vehicle device in a first embodiment of the present invention;

[0031] Figure 2 This is a schematic diagram of the steps of a method for controlling an on-vehicle device provided in the first embodiment of the present invention;

[0032] Figure 3 This is a schematic diagram of the steps of a method for controlling an on-vehicle device provided in the second embodiment of the present invention;

[0033] Figure 4 This is a schematic diagram of the steps of a method for controlling an on-vehicle device provided in the third embodiment of the present invention;

[0034] Figure 5 1 is a schematic diagram of a workflow for executing personalized configuration upload by a control system of an on-board device according to an embodiment of the present invention;

[0035] Figure 6 This is a schematic diagram of the steps of a method for controlling an on-vehicle device provided by a fourth embodiment of the present invention;

[0036] Figure 7 1 is a schematic diagram of a workflow for executing personalized configuration distribution by a control system of an on-board device according to an embodiment of the present invention;

[0037] Figure 8 This is a schematic structural diagram of a control device for an on-vehicle device provided in a fifth embodiment of the present invention;

[0038] Figure 9 This is a structural diagram of a control device for an on-vehicle device provided in Example 6 of the present invention. DETAILED DESCRIPTION

[0039] The following will clearly and completely describe the technical solutions in the embodiments of the present invention in conjunction with the accompanying drawings. Obviously, the described embodiments are only part of the embodiments of the present invention, not all of the embodiments. All other embodiments obtained by ordinary technicians in this field based on the embodiments of the present invention without making any creative efforts shall fall within the scope of protection of the present invention.

[0040] A control method for a vehicle-mounted device provided in the first embodiment of the present invention can be applied to Figure 1 Specifically, see Figure 1 , is a structural diagram of a control system of an on-board device in an embodiment of the present invention, wherein the control system of the on-board device includes an on-board intelligent entertainment terminal, an on-board device, a cloud-based Internet of Vehicles system, and a cloud-based intelligent device system.

[0041] Among them, the cloud-based Internet of Vehicles system, also known as the TSP backend, is mainly responsible for the storage of identity account information of each user in the cloud, account registration, and account login authentication.

[0042] The cloud-based smart device system, also known as the IOT platform, is primarily responsible for communication and signal transmission between the cloud and the smart devices of designated users, so as to enable users to control the smart devices.

[0043] The in-vehicle intelligent entertainment terminal, also known as the AVNT terminal, has A for audio, V for video, N for navigation, and T for wireless communication. In an embodiment of the present invention, the AVNT terminal includes an AVNT terminal and a display screen and input device connected to the AVNT terminal. In one embodiment, the display screen can be a touch screen, i.e., a display screen with integrated input capabilities.

[0044] The vehicle-mounted device includes an in-vehicle voice system, namely a VR device, which is mainly responsible for recognizing user semantics and forwarding user commands.

[0045] Furthermore, the TSP backend communicates with the AVNT terminal via a wireless network to transfer information. In one embodiment, the TSP backend provides a data upload interface and a data download interface. When a user logs into the AVNT terminal, the data upload interface or the data download interface is invoked to enable information exchange between the AVNT terminal and the TSP backend. The AVNT terminal and the in-vehicle voice system can be connected via a CAN bus to enable information exchange.

[0046] See also Figure 2, is a schematic diagram of the steps of a method for controlling an in-vehicle device provided in Example 1 of the present invention. The method for controlling an in-vehicle device provided in Example 1 of the present invention can be executed by the in-vehicle intelligent entertainment terminal, i.e., the AVNT terminal. This embodiment is described using the AVNT terminal as the execution subject.

[0047] In an embodiment of the present invention, the control method of the vehicle-mounted device specifically includes steps S11 to S12:

[0048] S11. After the user logs in to the vehicle computer account, a smart device account login request is sent to the cloud-based vehicle networking system; the smart device account login request is used to trigger the cloud-based vehicle networking system to query and issue the smart device account information bound to the vehicle computer account based on the pre-stored binding relationship between the vehicle computer account and the smart device account.

[0049] Specifically, the cloud-based IoV system, or TSP backend, pre-stores the binding relationship between the user's vehicle-mounted account and their smart device account, as well as the smart device account information. The vehicle-mounted account is the user's account for logging into the AVNT terminal. After registering a vehicle-mounted account, the user can log in to the vehicle-mounted account by scanning a login QR code or entering their account and password on the vehicle's AVNT terminal. The smart device account is the user's account for logging into the IoT platform. After logging into the AVNT terminal, the user can further log in to their smart device account and control corresponding smart devices, such as the user's home appliances and smart bracelets, through the in-vehicle voice system.

[0050] In this embodiment of the present invention, after a user logs in to their vehicle-mounted account on the AVNT terminal of any vehicle, they invoke the data delivery interface provided by the TSP backend to send a smart device account login request to the TSP backend to request the loading of the smart device account bound to the vehicle-mounted account. The smart device account login request carries the vehicle-mounted account information logged in on the AVNT terminal.

[0051] The TSP backend performs login authentication on the vehicle computer account according to the smart device account login request uploaded by the AVNT terminal. After the authentication is passed, the TSP backend queries the smart device account bound to the vehicle computer account and sends the smart device account information to the AVNT terminal through the data sending interface.

[0052] S12: Receive the smart device account information sent by the cloud-based Internet of Vehicles system, and synchronize the smart device account information to the in-vehicle voice system, so that the in-vehicle voice system carries the smart device account information to log in to the cloud-based smart device system.

[0053] The AVNT terminal receives the smart device account information sent by the TSP backend, thereby obtaining a login token for the IoT platform. When the in-vehicle voice system on the vehicle is activated, the AVNT terminal synchronizes the smart device account information with the in-vehicle voice system, allowing the in-vehicle voice system to obtain the login token and log in to the IoT platform.

[0054] When the user inputs a control instruction for controlling a smart device into the in-vehicle voice system, the in-vehicle voice system recognizes the user's control instruction and logs in to the IOT platform with the login token. The IOT platform authenticates the login token and instruction information, and after authentication, distributes it to the smart device specified by the user to execute the user's control instruction.

[0055] A first embodiment of the present invention provides a method for controlling an in-vehicle device. The TSP backend pre-stores the binding relationship between a user's in-vehicle account and their smart device account, as well as the account information of the smart device account. After the user logs in to the in-vehicle account, the user sends a smart device account login request to the TSP backend via the AVNT terminal. The TSP backend queries and sends the smart device account information bound to the in-vehicle account. The AVNT terminal synchronizes the smart device account information to the in-vehicle voice system. The present invention stores the login status data of the smart device account through the TSP backend and supports multi-terminal synchronization. This allows users to start the in-vehicle voice system for voice control on the in-vehicle terminal of different vehicles without having to manually log in to the smart device account. Instead, they can log in to the IOT platform to control the relevant smart devices, greatly improving the user's car experience.

[0056] See also Figure 3 , is a schematic diagram of the steps of a vehicle-mounted device control method provided by the second embodiment of the present invention. The vehicle-mounted device control method provided by the second embodiment of the present invention is further implemented on the basis of the first embodiment and can be executed by the AVNT terminal. This embodiment is described using the AVNT terminal as the execution subject. The vehicle-mounted device control method is executed by the following steps S21 to S23:

[0057] S21. After the user logs in to the vehicle computer account and logs in to the smart device account for the first time, the vehicle computer account information and the smart device account information are uploaded to the cloud-based Internet of Vehicles system, so that the cloud-based Internet of Vehicles system establishes and stores the binding relationship between the vehicle computer account and the smart device account.

[0058] In this embodiment of the present invention, when a user first registers their smart device account, they log in to their vehicle-mounted account on the AVNT terminal and then log in to the smart device account on the vehicle-mounted terminal for the first time to access the IoT platform. The AVNT terminal then locally stores the vehicle-mounted account information and the smart device account information, and uploads both to the TSP backend via the data upload interface provided by the TSP backend. The TSP backend authenticates the account information uploaded by the AVNT terminal. Once authentication is successful, a binding relationship is established between the vehicle-mounted account and the smart device account, and the information is updated and stored in the backend database.

[0059] S22. After the user logs in to the vehicle computer account, a smart device account login request is sent to the cloud-based vehicle networking system; the smart device account login request is used to trigger the cloud-based vehicle networking system to query and issue the smart device account information bound to the vehicle computer account based on the pre-stored binding relationship between the vehicle computer account and the smart device account.

[0060] S23: Receive the smart device account information sent by the cloud-based Internet of Vehicles system, and synchronize the smart device account information to the in-vehicle voice system, so that the in-vehicle voice system carries the smart device account information to log in to the cloud-based smart device system.

[0061] After a user logs in to his vehicle account on the AVNT terminal of any vehicle, he can send a smart device account login request to the TSP background through the AVNT terminal, and obtain the smart device account information corresponding to the vehicle account issued by the TSP background, and synchronize it to the in-vehicle voice system.

[0062] In the embodiment of the present invention, the execution process of steps S22 and S23 is the same as steps S11 and S12 in the first embodiment, and the technical effects achieved are similar, which will not be repeated here.

[0063] The second embodiment of the present invention provides a method for controlling an in-vehicle device. When a user logs in to a smart device account on a vehicle computer for the first time, the AVNT terminal uploads the user's vehicle computer account information and the smart device account information to the TSP backend, so that the TSP backend establishes and stores the binding relationship between the user's vehicle computer account and its smart device account. After the user logs in to the vehicle computer account, the AVNT terminal sends a smart device account login request to the TSP backend. The TSP backend queries and sends the smart device account information bound to the vehicle computer account. The AVNT terminal synchronizes the smart device account information to the in-vehicle voice system. The present invention stores the login status data of the smart device account through the TSP backend and supports multi-terminal synchronization, so that when the user starts the in-vehicle voice system on the vehicle computer end of different vehicles for voice control, he can log in to the IOT platform to control the relevant smart devices without manually logging in to the smart device account, which greatly improves the user's car experience.

[0064] A control method for an in-vehicle device provided in the third embodiment of the present invention is further implemented on the basis of the first or second embodiment and can be executed by the in-vehicle intelligent entertainment terminal, i.e., the AVNT terminal. This embodiment is described with the AVNT terminal as the execution subject.

[0065] It should be noted that, see Figure 1 The vehicle-mounted device control system includes an in-vehicle intelligent entertainment terminal, in-vehicle devices, a cloud-based Internet of Vehicles system, and a cloud-based intelligent device system. The in-vehicle devices also include an in-vehicle ECU, which is connected to the vehicle's seats, rearview mirrors, ambient mirrors, air conditioning, or other in-vehicle actuators to control these, enabling personalized vehicle configuration. The AVNT terminal and the in-vehicle ECU can be connected via a CAN bus to exchange information.

[0066] See also Figure 4-5 , Figure 4 This is a schematic diagram of the steps of a method for controlling an on-vehicle device provided in the third embodiment of the present invention. Figure 5 Schematic diagram of the workflow of the control system of the vehicle-mounted device in the embodiment of the present invention for executing the personalized configuration upload. In the embodiment of the present invention, the control method of the vehicle-mounted device further includes steps S31 to S32:

[0067] S31. After the user logs in to the vehicle account, a personalized configuration loading request is sent to the cloud-based vehicle networking system; the personalized configuration loading request is used to trigger the cloud-based vehicle networking system to query the personalized configuration parameters bound to the vehicle account based on the pre-stored binding relationship between the vehicle account and the personalized configuration parameters and issue them.

[0068] Specifically, after establishing a binding relationship between the user's vehicle-mounted account and the user's smart device account in the TSP system, a binding relationship is further established between the user's vehicle-mounted account and the personalized configuration parameters set by the user. The personalized configuration parameters are configuration parameter information generated by the user's personalized configuration of the vehicle's onboard actuators, such as seats and rearview mirrors.

[0069] In an embodiment of the present invention, after a user logs in to his or her vehicle account on the AVNT terminal of any vehicle, the user calls the data sending interface provided by the TSP backend and sends a personalized configuration loading request to the TSP backend, wherein the personalized configuration loading request carries the vehicle account information logged in to the AVNT terminal.

[0070] The TSP backend performs login authentication on the vehicle computer account according to the personalized configuration loading request uploaded by the AVNT terminal. After the authentication is passed, the TSP backend queries the personalized configuration parameters bound to the vehicle computer account and sends the personalized configuration parameters to the AVNT terminal through the data sending interface.

[0071] S32: Receive personalized configuration parameters issued by the cloud-based Internet of Vehicles system, and send the personalized configuration parameters to the on-board ECU, so that the on-board ECU executes and updates the personalized configuration of the vehicle.

[0072] The AVNT terminal receives the personalized configuration parameters sent by the TSP background, displays the parameter information on the AVNT terminal display screen, and sends the personalized configuration parameters to the vehicle-mounted ECU for execution, thereby controlling the corresponding vehicle-mounted execution device to perform the corresponding work.

[0073] The third embodiment of the present invention provides a method for controlling an onboard device, wherein the TSP background pre-stores the binding relationship between the user's vehicle account and the personalized configuration parameters of the vehicle-mounted execution device. After the user logs in to the vehicle account, a personalized configuration loading request is sent to the TSP background through the AVNT terminal. The TSP background queries the personalized configuration parameters bound to the vehicle account and sends them down. The AVNT terminal sends the personalized configuration parameters to the vehicle-mounted ECU for execution. The present invention stores the personalized configuration of the vehicle through the TSP background and supports multi-terminal synchronization, so that after the user logs in to the vehicle account on the vehicle terminal of different vehicles, there is no need to send personalized configuration instructions to the vehicle-mounted ECU again, and the vehicle-mounted ECU can control the corresponding vehicle-mounted execution device to execute the work, which greatly improves the user's car experience.

[0074] The fourth embodiment of the present invention provides a method for controlling an in-vehicle device, which is further implemented on the basis of the third embodiment and can be executed by the AVNT terminal. This embodiment is described with the AVNT terminal as the execution subject. Figure 6-7 , Figure 6 This is a schematic diagram of the steps of a method for controlling an on-vehicle device provided by a fourth embodiment of the present invention; Figure 7 The following is a flowchart of the process of executing personalized configuration and issuing a personalized configuration by the control system of the vehicle-mounted device according to an embodiment of the present invention. The method for establishing the binding relationship between the vehicle-mounted device account and the personalized configuration parameters is performed by the following steps S41 to S42:

[0075] S41. After the user logs in to the vehicle account, receive the vehicle personalized configuration instruction input by the user and send the vehicle personalized configuration instruction to the vehicle ECU; the vehicle personalized configuration instruction is used to trigger the vehicle ECU to execute the corresponding personalized configuration and return the personalized configuration parameters after execution.

[0076] In an embodiment of the present invention, after a user logs in to a vehicle account on the vehicle's AVNT terminal, he or she can input corresponding vehicle personalized configuration instructions through the input device of the AVNT terminal. The AVNT terminal sends the vehicle personalized configuration instructions to the on-board ECU, so that the on-board ECU controls the vehicle's seats, rearview mirrors and other on-board actuators to perform operations according to the user's vehicle personalized configuration instructions, and returns the generated personalized configuration parameters to the AVNT terminal.

[0077] S42: Upload the vehicle computer account information and the personalized configuration parameters to a cloud-based Internet of Vehicles system, so that the cloud-based Internet of Vehicles system establishes and stores a binding relationship between the vehicle computer account and the personalized configuration parameters.

[0078] The AVNT terminal receives the personalized configuration parameters returned by the vehicle ECU and stores them locally. It then initiates a vehicle configuration parameter upload request to the TSP backend by invoking the data upload interface provided by the TSP backend, carrying the vehicle account information and the personalized configuration parameters. The TSP backend authenticates the account information uploaded by the AVNT terminal and, upon successful authentication, establishes a binding relationship between the vehicle account and the personalized configuration parameters. The newly uploaded vehicle personalized configuration parameters are bound to the vehicle account as the latest configuration items and updated and stored in the backend database. Upon successful update, the TSP backend notifies the AVNT terminal of the successful update.

[0079] Based on this, when a user logs in to his vehicle account on the AVNT terminal of any vehicle, he can send a personalized configuration loading request to the TSP background through the AVNT terminal, and obtain the personalized configuration parameters corresponding to the vehicle account issued by the TSP background, and send them to the on-board ECU for execution.

[0080] The fourth embodiment of the present invention provides a method for controlling an onboard device. After the user logs in to the vehicle account on the vehicle side, the vehicle is personalized configured, and the personalized configuration parameters are uploaded to the TSP background through the AVNT terminal, so that the TSP background establishes a binding relationship between the user's vehicle account and the personalized configuration parameters of the vehicle. After the user logs in to his vehicle account on any vehicle, he sends a personalized configuration loading request to the TSP background through the AVNT terminal. The TSP background queries the personalized configuration parameters bound to the vehicle account and sends them down. The AVNT terminal sends the personalized configuration parameters to the on-board ECU for execution. The present invention stores the personalized configuration of the vehicle through the TSP background and supports multi-terminal synchronization. Therefore, after the user logs in to the vehicle account on the vehicle side of different vehicles, there is no need to send personalized configuration instructions to the on-board ECU again. The on-board ECU can control the corresponding on-board execution device to execute the work, which greatly improves the user's car experience.

[0081] See also Figure 8 , is a structural diagram of a control device for an on-board device provided by the fifth embodiment of the present invention. A control device 50 for an on-board device provided by the fifth embodiment of the present invention comprises an account login request sending module 51 and an account information receiving module 52; wherein,

[0082] The account login request sending module 51 is used to send a smart device account login request to the cloud-based Internet of Vehicles system after the user logs in to the vehicle account; the smart device account login request is used to trigger the cloud-based Internet of Vehicles system to query and issue the smart device account information bound to the vehicle account based on the pre-stored binding relationship between the vehicle account and the smart device account.

[0083] The account information receiving module 52 is used to receive the smart device account information sent by the cloud-based Internet of Vehicles system and synchronize the smart device account information to the in-vehicle voice system, so that the in-vehicle voice system can log in to the cloud-based smart device system with the smart device account information.

[0084] As a preferred embodiment, the control device 50 of the vehicle-mounted device further includes an account information uploading module 53:

[0085] The account information uploading module 53 is used to upload the vehicle computer account information and the smart device account information to the cloud-based Internet of Vehicles system after the user logs in to the vehicle computer account and logs in to the smart device account for the first time, so that the cloud-based Internet of Vehicles system establishes and stores the binding relationship between the vehicle computer account and the smart device account.

[0086] It should be noted that the control device of a vehicle-mounted equipment provided in Example 5 of the present invention is used to execute all the process steps of the control method of a vehicle-mounted equipment described in Example 1 or 2 above. The working principles and beneficial effects of the two correspond one to one, and therefore will not be repeated here.

[0087] The fifth embodiment of the present invention provides a control device for an onboard device. When a user logs in to a smart device account for the first time on a vehicle, the account information uploading module 53 uploads the user's vehicle account information and the smart device account information to the TSP backend, so that the TSP backend establishes and stores the binding relationship between the user's vehicle account and their smart device account. After the user logs in to the vehicle account in any vehicle, the account login request sending module 51 sends a smart device account login request to the TSP backend. The TSP backend queries the smart device account information bound to the vehicle account and sends it down. The account information receiving module 52 synchronizes the received smart device account information to the vehicle voice system. The present invention stores the login status data of the smart device account through the TSP backend and supports multi-terminal synchronization. This allows the user to start the vehicle voice system on the vehicle end of different vehicles for voice control without manually logging into the smart device account, and can log in to the IOT platform to control the relevant smart devices, greatly improving the user's car experience.

[0088] See also Figure 9 , is a structural diagram of a control device for an on-board device provided by Example 6 of the present invention. Example 6 of the present invention is further implemented on the basis of Example 5, and provides a control device 60 for an on-board device, further comprising: a personalized configuration loading request sending module 61 and a personalized configuration parameter receiving module 62; wherein,

[0089] The personalized configuration loading request sending module 61 is used to send a personalized configuration loading request to the cloud-based Internet of Vehicles system after the user logs in to the vehicle account. The personalized configuration loading request is used to trigger the cloud-based Internet of Vehicles system to query the personalized configuration parameters bound to the vehicle account based on the pre-stored binding relationship between the vehicle account and the personalized configuration parameters and send the personalized configuration parameters.

[0090] The personalized configuration parameter receiving module 62 is used to receive the personalized configuration parameters issued by the cloud-based Internet of Vehicles system and send the personalized configuration parameters to the on-board ECU, so that the on-board ECU executes and updates the personalized configuration of the vehicle.

[0091] As a preferred embodiment, the control device 60 of the vehicle-mounted device further includes: a personalized configuration instruction transceiver module 63 and a personalized configuration parameter upload module 64; wherein,

[0092] The personalized configuration instruction transceiver module 63 is used to receive the vehicle personalized configuration instruction input by the user after the user logs in to the vehicle account, and send the vehicle personalized configuration instruction to the vehicle ECU; the vehicle personalized configuration instruction is used to trigger the vehicle ECU to execute the corresponding personalized configuration and return the personalized configuration parameters after execution;

[0093] The personalized configuration parameter uploading module 64 is used to upload the vehicle account information and the personalized configuration parameters to the cloud-based Internet of Vehicles system, so that the cloud-based Internet of Vehicles system establishes and stores the binding relationship between the vehicle account and the personalized configuration parameters.

[0094] It should be noted that the control device of a vehicle-mounted equipment provided in Example 6 of the present invention is used to execute all the process steps of the control method of a vehicle-mounted equipment described in Example 3 or 4 above. The working principles and beneficial effects of the two correspond one to one, and therefore will not be repeated here.

[0095] A sixth embodiment of the present invention provides a control device for an in-vehicle device. After a user logs in to their vehicle-mounted account on the vehicle-mounted terminal, the personalized configuration instruction transceiver module 63 receives the user's personalized configuration instructions and sends them to the vehicle-mounted ECU for personalized configuration of the vehicle. The account information upload module 64 uploads the personalized configuration parameters returned by the vehicle-mounted ECU after execution to the TSP backend, enabling the TSP backend to establish a binding relationship between the user's vehicle-mounted account and the vehicle's personalized configuration parameters. After the user logs in to their vehicle-mounted account on any vehicle, the personalized configuration load request sending module 61 sends a personalized configuration load request to the TSP backend. The TSP backend queries the personalized configuration parameters bound to the vehicle-mounted account and issues them. The personalized configuration parameter receiving module 62 sends the personalized configuration parameters to the vehicle-mounted ECU for execution. The present invention stores the vehicle's personalized configuration on the TSP backend and supports multi-terminal synchronization. This allows the vehicle-mounted ECU to control the corresponding on-vehicle actuators to execute their functions, even if the user logs in to their vehicle-mounted account on the vehicle-mounted terminal on different vehicles. This significantly improves the user's vehicle-mounted experience.

[0096] Embodiment 7 of the present invention provides a control device for an in-vehicle device, comprising a processor, a memory, and a computer program stored in the memory and configured to be executed by the processor. When the processor executes the computer program, the control method for the in-vehicle device described in any of Embodiments 1 to 4 above is implemented. The control method for the in-vehicle device can be specifically described in the description of Embodiments 1 to 4 above, and further details are omitted here.

[0097] Those skilled in the art will appreciate that all or part of the processes in the above-described method embodiments can be implemented by instructing related hardware through a computer program. The program can be stored in a computer-readable storage medium, and when executed, the program can include the processes in the above-described method embodiments. The storage medium can be a magnetic disk, an optical disk, a read-only memory (ROM), or a random access memory (RAM).

[0098] Embodiment 8 of the present invention provides a vehicle, including an on-board device and a control device; wherein the control device is the control device of the on-board device described in embodiment 5 or 6.

[0099] The above is a preferred embodiment of the present invention. It should be pointed out that for ordinary technicians in this technical field, several improvements and modifications can be made without departing from the principles of the present invention. These improvements and modifications are also considered to be within the scope of protection of the present invention.

Claims

1. A method for controlling an on-vehicle device, characterized in that: include: After the user logs in to the car account, a smart device account login request is sent to the cloud-based car networking system; The smart device account login request is used to trigger the cloud-based Internet of Vehicles system to query and issue the smart device account information bound to the vehicle computer account based on the pre-stored binding relationship between the vehicle computer account and the smart device account; Receiving the smart device account information issued by the cloud-based Internet of Vehicles system, and synchronizing the smart device account information to the in-vehicle voice system, so that the in-vehicle voice system logs into the cloud-based smart device system with the smart device account information; The method for establishing the binding relationship between the vehicle computer account and the smart device account includes: After the user logs in to the vehicle computer account and logs in to the smart device account for the first time, the vehicle computer account and the smart device account information are uploaded to the cloud-based Internet of Vehicles system, so that the cloud-based Internet of Vehicles system establishes and stores the binding relationship between the vehicle computer account and the smart device account.

2. The method for controlling an in-vehicle device according to claim 1, wherein: The control method further includes: After the user logs in to the vehicle account, a personalized configuration loading request is sent to the cloud-based vehicle networking system; the personalized configuration loading request is used to trigger the cloud-based vehicle networking system to query the personalized configuration parameters bound to the vehicle account based on the pre-stored binding relationship between the vehicle account and the personalized configuration parameters and issue the personalized configuration parameters; Receive the personalized configuration parameters issued by the cloud-based Internet of Vehicles system, and send the personalized configuration parameters to the on-board ECU, so that the on-board ECU executes and updates the personalized configuration of the vehicle.

3. The method for controlling an in-vehicle device according to claim 2, wherein: The method for establishing the binding relationship between the vehicle account and the personalized configuration parameters includes: After the user logs in to the vehicle account, the vehicle personalized configuration instruction input by the user is received and sent to the vehicle ECU; the vehicle personalized configuration instruction is used to trigger the vehicle ECU to execute the corresponding personalized configuration and return the personalized configuration parameters after execution; The vehicle computer account and the personalized configuration parameters are uploaded to a cloud-based Internet of Vehicles system, so that the cloud-based Internet of Vehicles system establishes and stores a binding relationship between the vehicle computer account and the personalized configuration parameters.

4. A control device for an on-vehicle device, characterized in that: include: The account login request sending module is used to send a smart device account login request to the cloud-based Internet of Vehicles system after the user logs in to the vehicle account; The smart device account login request is used to trigger the cloud-based Internet of Vehicles system to query and issue the smart device account information bound to the vehicle computer account based on the pre-stored binding relationship between the vehicle computer account and the smart device account; An account information receiving module is used to receive the smart device account information sent by the cloud-based Internet of Vehicles system and synchronize the smart device account information to the in-vehicle voice system, so that the in-vehicle voice system can log in to the cloud-based smart device system with the smart device account information; The control device further comprises: The account information uploading module is used to upload the vehicle computer account and the smart device account information to the cloud-based Internet of Vehicles system after the user logs in to the vehicle computer account and logs in to the smart device account for the first time, so that the cloud-based Internet of Vehicles system establishes and stores the binding relationship between the vehicle computer account and the smart device account.

5. The control device for an in-vehicle device according to claim 4, wherein: The control device further comprises: A personalized configuration loading request sending module is used to send a personalized configuration loading request to the cloud-based Internet of Vehicles system after the user logs in to the vehicle-based account; the personalized configuration loading request is used to trigger the cloud-based Internet of Vehicles system to query the personalized configuration parameters bound to the vehicle-based account based on the pre-stored binding relationship between the vehicle-based account and the personalized configuration parameters and send the personalized configuration parameters; The personalized configuration parameter receiving module is used to receive the personalized configuration parameters issued by the cloud-based vehicle networking system and send the personalized configuration parameters to the on-board ECU so that the on-board ECU executes and updates the personalized configuration of the vehicle.

6. The control device for an in-vehicle device according to claim 5, wherein: The control device further comprises: The personalized configuration instruction transceiver module is used to receive the vehicle personalized configuration instruction input by the user after the user logs in to the vehicle account, and send the vehicle personalized configuration instruction to the vehicle ECU; the vehicle personalized configuration instruction is used to trigger the vehicle ECU to execute the corresponding personalized configuration and return the personalized configuration parameters after execution; The personalized configuration parameter uploading module is used to upload the vehicle computer account and the personalized configuration parameters to the cloud-based Internet of Vehicles system, so that the cloud-based Internet of Vehicles system establishes a binding relationship between the vehicle computer account and the personalized configuration parameters and stores them.

7. A control device for an on-vehicle device, characterized in that: The vehicle-mounted device comprises a processor, a memory, and a computer program stored in the memory and configured to be executed by the processor, wherein when the processor executes the computer program, the vehicle-mounted device control method according to any one of claims 1 to 3 is implemented.

8. A vehicle, characterized in that: It includes a vehicle-mounted device and a control device; wherein the control device is the control device of the vehicle-mounted device according to any one of claims 4 to 6.

Citation Information

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