WO2024066855A1 - Procédé de traitement et appareil de traitement pour un dispositif monté sur véhicule - Google Patents

Procédé de traitement et appareil de traitement pour un dispositif monté sur véhicule Download PDF

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Publication number
WO2024066855A1
WO2024066855A1 PCT/CN2023/115327 CN2023115327W WO2024066855A1 WO 2024066855 A1 WO2024066855 A1 WO 2024066855A1 CN 2023115327 W CN2023115327 W CN 2023115327W WO 2024066855 A1 WO2024066855 A1 WO 2024066855A1
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WIPO (PCT)
Prior art keywords
vehicle
mounted device
image
information
application
Prior art date
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PCT/CN2023/115327
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English (en)
Chinese (zh)
Inventor
唐文玲
Original Assignee
中国第一汽车股份有限公司
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Publication of WO2024066855A1 publication Critical patent/WO2024066855A1/fr

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Classifications

    • HELECTRICITY
    • H04ELECTRIC COMMUNICATION TECHNIQUE
    • H04LTRANSMISSION OF DIGITAL INFORMATION, e.g. TELEGRAPHIC COMMUNICATION
    • H04L67/00Network arrangements or protocols for supporting network services or applications
    • H04L67/01Protocols
    • H04L67/12Protocols specially adapted for proprietary or special-purpose networking environments, e.g. medical networks, sensor networks, networks in vehicles or remote metering networks
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F16/00Information retrieval; Database structures therefor; File system structures therefor
    • G06F16/60Information retrieval; Database structures therefor; File system structures therefor of audio data
    • G06F16/68Retrieval characterised by using metadata, e.g. metadata not derived from the content or metadata generated manually
    • G06F16/683Retrieval characterised by using metadata, e.g. metadata not derived from the content or metadata generated manually using metadata automatically derived from the content
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F9/00Arrangements for program control, e.g. control units
    • G06F9/06Arrangements for program control, e.g. control units using stored programs, i.e. using an internal store of processing equipment to receive or retain programs
    • G06F9/44Arrangements for executing specific programs
    • G06F9/451Execution arrangements for user interfaces
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V10/00Arrangements for image or video recognition or understanding
    • G06V10/10Image acquisition
    • G06V10/12Details of acquisition arrangements; Constructional details thereof
    • GPHYSICS
    • G06COMPUTING; CALCULATING OR COUNTING
    • G06VIMAGE OR VIDEO RECOGNITION OR UNDERSTANDING
    • G06V10/00Arrangements for image or video recognition or understanding
    • G06V10/70Arrangements for image or video recognition or understanding using pattern recognition or machine learning
    • G06V10/764Arrangements for image or video recognition or understanding using pattern recognition or machine learning using classification, e.g. of video objects
    • G06V10/765Arrangements for image or video recognition or understanding using pattern recognition or machine learning using classification, e.g. of video objects using rules for classification or partitioning the feature space

Definitions

  • the present disclosure relates to the field of intelligent vehicles, and in particular, to a processing method and a processing device for vehicle-mounted equipment.
  • the vehicle computer system can provide users with vehicle-mounted ETC-related equipment applications and online services for users to use.
  • ETC Electronic Toll Collection
  • the vehicle computer system is difficult to accurately know whether the vehicle is equipped with ETC equipment, the vehicle computer system cannot provide ETC-related equipment applications and online services in a timely manner, which will cause users to be unable to use ETC equipment normally.
  • the embodiments of the present disclosure provide a method and a device for processing an on-board device, so as to at least solve the technical problem of low recognition accuracy of the on-board device status of a vehicle in the related art.
  • a method for processing an in-vehicle device comprising: in response to powering on a vehicle, scanning an interior space of the vehicle to obtain a scanning result, wherein the scanning result is used to indicate whether the vehicle is equipped with the in-vehicle device; in response to the scanning result being that the in-vehicle device has been installed in the vehicle, acquiring a device image of the in-vehicle device; determining a device application corresponding to the in-vehicle device based on the device image; and displaying the device application on a display interface of the vehicle, wherein the device application is configured to execute at least one function corresponding to the in-vehicle device.
  • determining a device application corresponding to the vehicle-mounted device based on the device image includes: extracting device information of the vehicle-mounted device in the device image; matching the device information based on a supplier information library to obtain supplier information of the vehicle-mounted device; and determining the device application based on the supplier information.
  • scanning the interior space of the vehicle to obtain a scanning result includes: scanning a preset area in the interior space by an image acquisition device installed at a preset position to obtain a scanning result, wherein the preset area is set to install the vehicle-mounted equipment.
  • the method after displaying the device application on the display interface of the vehicle, the method also includes: extracting the current device status of the vehicle-mounted device based on the device image; judging whether the vehicle-mounted device is damaged based on the current device status; in response to damage to the vehicle-mounted device, outputting a first prompt message, wherein the first prompt message is used to prompt repair or replacement of the vehicle-mounted device; in response to the vehicle-mounted device not being damaged, determining a target function from at least one function based on the current device status.
  • a target function is determined from at least one function based on the current device status, including: retrieving a historical device status of the on-board device, wherein the historical device status is the device status of the on-board device extracted after the vehicle was last powered on; determining a replacement status of the on-board device based on the current device status and the historical device status, wherein the replacement status is used to indicate whether the on-board device of the vehicle has been replaced; and displaying a target function corresponding to the replacement status in at least one function through a device application.
  • the target function includes at least one of the following: an activation function, and other functions except the activation function; the target function corresponding to the replacement state in at least one function is displayed through a device application, including: when the replacement state is that the on-board equipment of the vehicle is replaced, the activation function is displayed through the device application; when the replacement state is that the on-board equipment of the vehicle is not replaced, other functions except the activation function are displayed through the device application.
  • the device information includes at least one of the following: device model, device appearance features.
  • the method further includes: in response to the scanning result indicating that the vehicle-mounted device is not installed in the vehicle, outputting a prompt message, wherein the prompt message is used to indicate that the vehicle-mounted device is not installed in the vehicle.
  • a processing device for a vehicle-mounted device including: a scanning component, configured to scan the interior space of a vehicle in response to the vehicle being powered on to obtain a scanning result, wherein the scanning result is used to indicate whether the vehicle is equipped with the vehicle-mounted device; an acquisition component, configured to acquire a device image of the vehicle-mounted device in response to the scanning result indicating that the vehicle-mounted device has been installed in the vehicle; a determination component, configured to determine a device application corresponding to the vehicle-mounted device based on the device image; and a display component, configured to display the device application on a display interface of the vehicle, wherein the device application is configured to execute at least one function corresponding to the vehicle-mounted device.
  • a vehicle comprising: one or more processors; a storage device configured to store one or more programs; when the one or more programs are executed by one or more processors, the one or more processors execute the processing method of the vehicle-mounted equipment of the above-mentioned embodiment.
  • an electronic device comprising: one or more processors; a storage device configured to store one or more programs; when one or more programs are stored by one or more processors; Execution enables one or more processors to execute the processing method of the vehicle-mounted device of the above embodiment.
  • a computer-readable storage medium including a stored program, wherein when the program is running, the device where the computer-readable storage medium is located is controlled to execute the processing method of the vehicle-mounted device of the above embodiment.
  • the interior space of the vehicle is scanned to obtain a scanning result; further in response to the scanning result that the vehicle-mounted device has been installed in the vehicle, the device image of the vehicle-mounted device is obtained; further based on the device image, the device application corresponding to the vehicle-mounted device is determined; and further the device application is displayed on the display interface of the vehicle.
  • the state of the ETC device inside the vehicle is monitored in real time by image recognition, and it is confirmed that the vehicle has been installed with the vehicle-mounted device according to the scanning result, and the device application corresponding to the vehicle-mounted device is determined according to the device image, so as to display the device application on the display interface of the vehicle, so as to achieve the purpose of judging the state of the vehicle-mounted device in real time, thereby achieving the technical effect of timely matching the corresponding device application according to the real-time acquired ETC device image, and thus solving the technical problem of low recognition accuracy of the vehicle's vehicle-mounted device state in the related technology.
  • FIG1 is a flow chart of a processing method for a vehicle device according to an embodiment of the present disclosure
  • FIG2 is a schematic diagram of an optional vehicle device according to an embodiment of the present disclosure.
  • FIG3 is a flow chart of an optional overall processing method of vehicle equipment according to an embodiment of the present disclosure.
  • FIG. 4 is a schematic diagram of a processing device of a vehicle device according to an embodiment of the present disclosure.
  • an embodiment of a processing method for a vehicle-mounted device is provided. It should be noted that the steps shown in the flowchart of the accompanying drawings can be executed in a computer system such as a set of computer executable instructions, and although a logical order is shown in the flowchart, in some cases, the steps shown or described can be executed in an order different from that shown here.
  • FIG. 1 is a flow chart of a processing method of a vehicle-mounted device according to an embodiment of the present disclosure. As shown in FIG. 1 , the method includes the following steps:
  • Step S102 in response to the vehicle being powered on, scanning the interior space of the vehicle to obtain a scanning result, wherein the scanning result is used to indicate whether the vehicle is equipped with an on-board device.
  • the above-mentioned vehicle can be a vehicle for determining whether an ETC device is installed. If there is an ETC device, the device application corresponding to the device can be displayed according to the ETC device. If there is no ETC device, no display is required.
  • the interior space of the vehicle can be the space formed by the internal structure of the vehicle that can be scanned by the image acquisition device.
  • the image acquisition device can include but is not limited to a camera, a camera, and a scanner.
  • the image acquisition device is often configured as a visual sensing system to monitor the installation status of the ETC device in real time.
  • the above-mentioned scanning result can be to determine whether the vehicle is equipped with an on-board device according to the scanning result after scanning the interior space of the vehicle. For example, after scanning the interior space of the vehicle, a scanning image of the ETC device in the vehicle can be obtained, thereby determining that the ETC device is installed in the vehicle.
  • the on-board device can be a product used in the vehicle and realizes a certain functional application, for example, it can be the ETC device of the vehicle, but it is not limited to this.
  • the vehicle is pre-installed with an image acquisition device at a preset position.
  • the pre-set scanning area in the interior space of the vehicle is scanned in real time, and the scanning result of the ETC device is obtained.
  • the scanning result can display the scanned image, and the vehicle is judged to contain the ETC on-board device based on the scanned image, and the scanning result is transmitted to the vehicle system; if the image of the ETC device is not obtained in the pre-set scanning area, it is determined that the scanning result is that the vehicle does not contain the ETC on-board device. Since the on-board device is not installed in the vehicle, it is not necessary to display the device application on the display interface of the vehicle.
  • the device application can be an ETC application card.
  • the preset position may be to install an image acquisition device above the rear seat of the vehicle so as to acquire
  • the vehicle-mounted device image can also be obtained by placing a movable video recording device at a position where the vehicle-mounted device can be captured, and obtaining the device image through the network.
  • the vehicle can be powered on in a repair shop or when the user is driving the vehicle.
  • the vehicle will start scanning the interior space of the vehicle when it is powered on in a 4S repair shop; when the user is driving the vehicle, a timed automatic scan can be set, and the interior of the vehicle will be automatically scanned when the vehicle is powered on on a certain day of a week or a month.
  • the user or the operator of the 4S shop can also manually operate the image acquisition device to scan the interior space of the vehicle and obtain the current status of the vehicle-mounted equipment. From image acquisition to installing the corresponding application software and online services in the vehicle system, no manual operation is required for related ETC services.
  • Step S104 in response to the scanning result indicating that the vehicle-mounted device has been installed in the vehicle, obtaining a device image of the vehicle-mounted device.
  • the above-mentioned device image may be a scanned image of a related vehicle-mounted device obtained after scanning the interior of the vehicle, for example, it may be a scanned image of an ETC device, but is not limited thereto.
  • multiple scanned images can be obtained, and the multiple scanned images can be stored in the storage device of the vehicle.
  • the device image can be determined from the multiple scanned images. Among them, the device image can be the last scanned image of the multiple scanned images, and the device image can also be the clearest scanned image of the ETC device among the multiple scanned images.
  • the scanning result can be determined based on the scanned image, and the next step can be determined based on the scanning result. This can save memory space and save time for subsequent work such as extracting the device image, thereby improving processing efficiency and better serving subsequent work such as image acquisition and analysis.
  • Step S106 determining the device application corresponding to the vehicle-mounted device based on the device image.
  • the above-mentioned device applications may be online applications included in the corresponding vehicle-mounted equipment, for example, they may be applications such as automatic payment, activation application, ETC equipment maintenance, and cancellation application.
  • the device information of ETC in the device image can be extracted from the scanned image of the vehicle-mounted device, and then matched with the extracted device information according to the supplier information library, so that the device application corresponding to the ETC device can be determined according to the supplier information.
  • the vehicle system extracts the ETC device information in the device image based on the scanned image of the vehicle-mounted device, and then matches the extracted device information according to the supplier information library, so that the device application corresponding to the ETC device can be determined based on the supplier information.
  • the operator matches the type of vehicle-mounted equipment with the information provided by the supplier, and directly installs the corresponding device applications and online services into the vehicle system. If the user needs to replace the vehicle-mounted equipment, he needs to go to the 4S store to replace it. The operator of the 4S store will update and delete the device applications in the vehicle system according to the user's newly replaced vehicle-mounted equipment, so as to determine the device applications corresponding to the current vehicle-mounted equipment.
  • the acquired device image can be uploaded to a cloud server, key information in the device image can be extracted in the cloud server, and compared with the supplier's information database based on the extracted key information to obtain the device application corresponding to the ETC device.
  • the cloud server can transmit the application software corresponding to the ETC device back to the vehicle.
  • the ETC device can only use the device applications related to the ETC device provided by the supplier of the ETC device, it is necessary to accurately identify the type of vehicle-mounted equipment in order to match the corresponding supplier-related device applications.
  • the current image recognition object method can accurately identify the category and size of the object through the image, and thus analyze the relevant information of the object based on the category and size of the object.
  • the type and name of the currently scanned vehicle-mounted device are determined by matching the features and size of the acquired device image with the vehicle-mounted device database. This can more efficiently and accurately analyze the type of vehicle-mounted equipment, and then match more accurate device application software, thereby improving the accuracy of vehicle device application matching.
  • Step S108 displaying the device application on the display interface of the vehicle, wherein the device application is configured to execute at least one function corresponding to the vehicle-mounted device.
  • the above-mentioned display interface may be an operating interface touched when adjusting the vehicle-mounted display device, for example, it may be a display touch screen or an entertainment display screen in front of the rear seat, but is not limited thereto.
  • the current state of the vehicle-mounted device is obtained based on the acquired device image, and then the vehicle-mounted device is judged whether it is damaged based on the scanned image. If the device is damaged, a prompt message is output, and the display interface prompts the user to repair or replace the vehicle-mounted device; if the device is not damaged, the historical device state of the vehicle-mounted device is retrieved and compared with the current device state to determine the replacement state of the vehicle-mounted device, and the currently required application function is determined from the function based on the replacement state of the vehicle-mounted device and displayed on the display interface.
  • the vehicle can display device-related applications and device information on the display interface, including the activation function agreement of the supplier for the corresponding vehicle-mounted equipment, the corresponding billing information, the interface for connecting the supplier, the merchant, and the user, and the matching after-sales information, so that users can understand the installed vehicle-mounted equipment, and it is also convenient for the 4S store operators to match the relevant application software and online services according to the relevant equipment information, so as to provide better services, let users use the vehicle-mounted equipment more conveniently, and bring users a better experience.
  • the user can be guided to use the relevant equipment application software on the display interface, and the user can be guided to understand the relevant online services, so that the user can better understand the vehicle-mounted equipment.
  • the vehicle system When the ETC device is installed, the vehicle system will automatically pop up the application entrance interface on the display interface. If the user enters the device application software for the first time, the display screen will first show the name and model of the device, the corresponding billing information, the interface for connecting to suppliers, merchants, and users, and matching after-sales information. The user confirms the device-related information and then enters the next interface to display the activation function agreement for the corresponding vehicle-mounted device. When the user chooses to agree to the activation, the display page will automatically activate the vehicle-mounted device. After activating the vehicle-mounted device, the user will be guided to operate the relevant device functions and the specific location of the corresponding function operation button will be informed to the user by enlarging a certain area.
  • determining the device application corresponding to the vehicle-mounted device based on the device image includes: extracting the device information of the vehicle-mounted device in the device image; matching the device information based on the supplier information library to obtain the supplier information of the vehicle-mounted device; and determining the device application based on the supplier information.
  • the device information includes at least one of the following: device model, device appearance features, etc.
  • the above-mentioned equipment information can be the manufacturer of the ETC equipment, the types and models of ETC equipment on the market collected by the relevant agencies, equipment function attributes and equipment cost prices, etc.
  • the supplier information database can be an information database where the vehicle equipment supplier stores all equipment-related information.
  • the supplier information can be the relevant information of the supplier, which can be but not limited to: the supplier's name, supplier contact information, and supplier basic information registration form.
  • the vehicle system extracts the relevant information of the ETC device in the scanned image based on the acquired vehicle-mounted device, and uploads the extracted ETC device information to the cloud.
  • the relevant information of the ETC device is matched with the information in the supplier information database to obtain the corresponding supplier information and device information of the ETC device, and then the corresponding ETC device application of the ETC device is determined based on the supplier information.
  • FIG. 2 is a schematic diagram of a vehicle device according to an embodiment of the present disclosure. As shown in Figure 2, the cloud matches the device information sent by the image acquisition device with the device information provided by three different suppliers A, B, and C.
  • the device information including the display appearance of the device, the functions supported by the device, and the manufacturer information of the device need to be matched one by one to obtain the accurate information of the current device, and further determine the corresponding supplier information based on the accurate device information, so as to accurately determine the device applications included in the on-board device based on the supplier information, so that the on-board system can match more accurate on-board device application software and online services.
  • scanning the interior space of the vehicle to obtain a scanning result includes: scanning a preset area in the interior space by an image acquisition device installed at a preset position to obtain a scanning result, wherein the preset area is set to install the vehicle-mounted equipment.
  • the above-mentioned image acquisition device can be a device with a camera function, and can output the acquired image to other devices, and can be, but not limited to, a camera, a camera, or a scanner.
  • the preset position can be a preset position for installing the image acquisition device, and can be, but not limited to, the middle position above the rear seat of the vehicle.
  • the preset area can be a preset area that the image acquisition device needs to scan to install the ETC device, for example, it can be the front windshield of the vehicle, but not limited to this.
  • FIG2 is a schematic diagram of a vehicle device according to an embodiment of the present disclosure.
  • an image acquisition device can be installed in the middle above the rear seat of the vehicle.
  • the image acquisition device can scan all areas of the front seat of the vehicle so as to detect all areas in the front where the ETC device may be installed, thereby obtaining the existence status information and device information of the ETC device, and sending the obtained information to the cloud.
  • the vehicle system will have different processing methods.
  • the scanning result shows that there is no ETC on-board device in the vehicle
  • the vehicle display screen will not display the corresponding device application entrance, but only output a prompt message to remind the user that the vehicle does not have an ETC device installed; if the scanning result shows that there is an ETC on-board device in the vehicle, the device image of the on-board device will be obtained and the device status will be determined.
  • the method further includes: extracting the current device status of the vehicle-mounted device based on the device image; judging whether the vehicle-mounted device is damaged based on the current device status; in response to the vehicle-mounted device being damaged, outputting first prompt information, wherein the first prompt information is used to prompt the vehicle-mounted device to be repaired or replaced; in response to the vehicle-mounted device not being damaged, selecting from at least one function based on the current device status; Determine the target function.
  • the target function mentioned above may be a function that the user currently needs to use, which may be, but is not limited to, an activation function, a logout function, and an automatic payment function.
  • the device status may be the existence status of the vehicle-mounted device, which is set to identify whether the ETC can be used normally, and may be divided into, but is not limited to, complete or damaged.
  • the current device state of the ETC device is extracted according to the acquired scanned image, and whether the ETC device is damaged is determined according to the scanned image.
  • the scanned image shows that the ETC device is incomplete, it is determined that the ETC device is damaged, and a prompt message is output to prompt the user to replace or repair the ETC;
  • the scanned image shows that the ETC device is complete, it is determined that the ETC device is not damaged, and the function required by the current user is determined from the function according to the current device state.
  • Figure 2 is a schematic diagram of a vehicle device according to an embodiment of the present disclosure.
  • the ETC device when it is determined that the current device state is different from the previous device state, the ETC device needs to be reactivated before it can be used normally, and the target function is determined to be an activation function.
  • the display screen will first display the name and model of the device, the corresponding billing information, the interface of the three parties of the supplier, the merchant, and the user, and the matching after-sales information, so that the user can determine the relevant information of the device.
  • the next step is to display the activation function agreement of the corresponding vehicle-mounted device.
  • the display page When the user chooses to agree to the activation, the display page will automatically activate the vehicle-mounted device. After activating the vehicle-mounted device, the user is guided to operate the relevant device functions, and the specific location of the corresponding function operation button is informed to the user by enlarging a certain area.
  • a target function is determined from at least one function based on the current device status, including: retrieving a historical device status of the on-board device, wherein the historical device status is the device status of the on-board device extracted after the vehicle was last powered on; determining a replacement status of the on-board device based on the current device status and the historical device status, wherein the replacement status is used to indicate whether the on-board device of the vehicle has been replaced; and displaying a target function corresponding to the replacement status in at least one function through a device application.
  • the historical device status mentioned above can be a historical record of the device status recorded by the vehicle system, which records data such as the type of vehicle-mounted device, supplier data, device display appearance, functions supported by the device, manufacturer information, etc.
  • the historical device status of the ETC is retrieved and compared with the current device status of the ETC. If the current on-board device status is consistent with the historical device status, it indicates that the current device has not been replaced.
  • the vehicle system will record and store them in real time, recording the current parameter values and the corresponding time.
  • the image acquisition device will recognize the different states of the current ETC, thereby displaying different parameters on the vehicle display screen. This will facilitate ETC applications or 4S stores to provide an ETC device status interface when they need to retrieve ETC device data, retrieve the parameters of the ETC device in real time, and check the number of times the ETC device has been replaced and the time of replacement, so that users and 4S stores can trace back problems and hold accountable.
  • the target function includes at least one of the following: an activation function, and other functions except the activation function; the target function corresponding to the replacement state of at least one function is displayed through a device application, including: when the replacement state is that the on-board equipment of the vehicle is replaced, the activation function is displayed through the device application; when the replacement state is that the on-board equipment of the vehicle is not replaced, other functions except the activation function are displayed through the device application.
  • the above activation function can be to use a certain tool to realize the corresponding function to wake up the internal application state.
  • the activation function can be to activate the ETC function, and the ETC function can be used normally to realize functions such as automatic payment.
  • Other functions can be functions other than the ETC device activation function, which can include but not limited to: extension process, bill display, merchant docking interface, etc.
  • the device status can be modified in real time through the image acquisition device. If the vehicle-mounted device is installed for the first time or replaced, the ETC device application will automatically pop up on the vehicle's smart screen, activate the corresponding device and guide the user to use the ETC device-related applications.
  • the method further includes: in response to the scanning result indicating that the vehicle-mounted device is not installed in the vehicle, outputting a prompt message, wherein the prompt message is used to indicate that the vehicle-mounted device is not installed in the vehicle.
  • the status of the on-board equipment is monitored in real time through the image acquisition device. If the ETC device installed in the vehicle is not scanned at the preset position, it is determined that the vehicle has no ETC device, and this information is transmitted to the vehicle computer.
  • the vehicle's display screen will display a prompt message, which can prompt the user through text, images, video, voice, etc. that the vehicle has no ETC device installed, and the ETC application entrance will not be displayed.
  • FIG3 is a flow chart of an optional overall vehicle equipment processing method according to an embodiment of the present disclosure.
  • the image acquisition device scans a pre-set scanning area in the interior space of the vehicle and obtains a scanning result. If the scanning result shows that the vehicle does not contain an ETC on-board device, the vehicle display screen does not display the corresponding device application entrance, but only outputs a prompt message to prompt the user that the vehicle is not equipped with an ETC device. If the scanning result shows that the vehicle contains an ETC on-board device, the device image of the on-board device is obtained, and the device status is determined.
  • the device information in the device image is extracted, and the extracted device information is uploaded to the cloud.
  • the cloud generates a query based on the extracted device information and the received ETC information.
  • the information in the equipment information database of each supplier is matched to obtain the supplier information of the current on-board equipment, so that the on-board equipment on the vehicle can be connected with the vehicle manufacturer to better activate related application software and online services, determine the relevant equipment application according to the supplier information, and retrieve the historical status of the equipment, and determine the replacement status of the on-board equipment according to the current equipment status and the historical equipment status, so as to display the relevant equipment information, equipment application entrance and corresponding functions on the vehicle display screen; if the equipment status is damaged, a prompt message is output to tell the user or 4S shop that the on-board equipment needs to be repaired or replaced, so as to realize real-time monitoring of the on-board equipment status, and prompt the user and 4S shop to install the on-board equipment in time, so as to provide relevant services to the user in time.
  • a processing device for a vehicle-mounted device which can execute the processing method for the vehicle-mounted device in the above embodiment.
  • the specific implementation method and preferred application scenario are the same as the above embodiment and will not be repeated here.
  • FIG4 is a schematic diagram of a processing device of a vehicle-mounted device according to an embodiment of the present disclosure. As shown in FIG4 , the device includes the following parts: a scanning component 40 , an acquisition component 42 , a determination component 44 and a display component 46 .
  • the scanning component 40 is configured to scan the interior space of the vehicle in response to the vehicle being powered on, and obtain a scanning result, wherein the scanning result is used to indicate whether the vehicle is equipped with an on-board device;
  • An acquisition component 42 is configured to acquire a device image of the vehicle-mounted device in response to a scanning result indicating that the vehicle-mounted device has been installed in the vehicle;
  • a determination component 44 is configured to determine a device application corresponding to the vehicle-mounted device based on the device image
  • the display component 46 is configured to display the device application on the display interface of the vehicle, wherein the device application is configured to execute at least one function corresponding to the vehicle-mounted device.
  • the above-mentioned scanning component 40, acquisition component 42, determination component 44 and display component 46 can be run in a vehicle or a vehicle-mounted device as part of the device, and the functions implemented by the above-mentioned components can be executed by the processor in the vehicle or the vehicle-mounted device.
  • the determination component includes: a first extraction component, configured to extract device information of the vehicle-mounted device in the device image; a first acquisition component, configured to match the device information based on the supplier information library to obtain the supplier information of the vehicle-mounted device; and a first determination component, configured to determine the device application based on the supplier information.
  • the scanning component includes: a scanning component configured to scan a preset area in the internal space through an image acquisition device installed at a preset position to obtain a scanning result, wherein the preset area is set to install a vehicle-mounted device.
  • the display component includes: a second extraction component, configured to extract the current device status of the vehicle-mounted device based on the device image; a judgment component, configured to judge whether the vehicle-mounted device is damaged based on the current device status; a first output component, configured to output a first prompt message in response to damage to the vehicle-mounted device, wherein the first prompt message is configured to prompt the vehicle-mounted device to be repaired or replaced; a second determination component, configured to determine a target function from at least one function based on the current device status in response to the vehicle-mounted device not being damaged.
  • the second determination component includes: a calling subcomponent configured to call a historical device state of the vehicle-mounted device, wherein the historical device state is the device state of the vehicle-mounted device extracted after the vehicle was last powered on; a first determination subcomponent configured to determine a replacement state of the vehicle-mounted device based on the current device state and the historical device state, wherein, The replacement status is used to indicate whether the vehicle's onboard equipment has been replaced; the display subcomponent is configured to display a target function corresponding to the replacement status in at least one function through a device application.
  • the display subcomponent is also configured to display the activation function through the device application when the vehicle-mounted device is replaced in the replacement state; and display other functions except the activation function through the device application when the vehicle-mounted device is not replaced in the replacement state.
  • the device information includes at least one of the following: device model, device appearance features.
  • the device further includes: a second output component, configured to output a prompt message in response to a scanning result indicating that the vehicle-mounted device is not installed in the vehicle, wherein the prompt message is used to indicate that the vehicle-mounted device is not installed in the vehicle.
  • a second output component configured to output a prompt message in response to a scanning result indicating that the vehicle-mounted device is not installed in the vehicle, wherein the prompt message is used to indicate that the vehicle-mounted device is not installed in the vehicle.
  • the above-mentioned second output component can be operated in a vehicle or an on-board device as a part of the device, and the functions implemented by the above-mentioned component can be executed by a processor in the vehicle or the on-board device.
  • a vehicle comprising: one or more processors; a storage device configured to store one or more programs; when the one or more programs are executed by one or more processors, the one or more processors execute the processing method of the vehicle-mounted equipment of the above-mentioned embodiment.
  • the processor may be configured to perform the following steps:
  • Step S1 in response to the vehicle being powered on, scanning the interior space of the vehicle to obtain a scanning result, wherein the scanning result is used to indicate whether the vehicle is equipped with an on-board device;
  • Step S2 in response to the scanning result indicating that the vehicle-mounted device has been installed in the vehicle, obtaining a device image of the vehicle-mounted device;
  • Step S3 determining the device application corresponding to the vehicle-mounted device based on the device image
  • Step S4 displaying the device application on the display interface of the vehicle, wherein the device application is configured to execute at least one function corresponding to the vehicle-mounted device.
  • the processor may also be configured to perform the following steps: extracting device information of the vehicle-mounted device in the device image; matching the device information based on a supplier information library to obtain supplier information of the vehicle-mounted device; and determining the device application based on the supplier information.
  • the processor can also be configured to perform the following steps: scan the interior space of the vehicle to obtain a scanning result, including: scanning a preset area in the interior space by an image acquisition device installed at a preset position to obtain a scanning result, wherein the preset area is set to install the vehicle-mounted equipment.
  • the processor may also be configured to perform the following steps: after displaying the device application on the display interface of the vehicle, extracting the current device status of the vehicle-mounted device based on the device image; determining the vehicle-mounted device status based on the current device status; whether the vehicle-mounted equipment is damaged; in response to the vehicle-mounted equipment being damaged, outputting a first prompt message, wherein the first prompt message is used to prompt the vehicle-mounted equipment to be repaired or replaced; in response to the vehicle-mounted equipment not being damaged, determining a target function from at least one function based on the current equipment status.
  • the processor can also be configured to perform the following steps: retrieve the historical device status of the on-board device, wherein the historical device status is the device status of the on-board device extracted after the vehicle was last powered on; determine the replacement status of the on-board device based on the current device status and the historical device status, wherein the replacement status is used to indicate whether the on-board device of the vehicle has been replaced; and display a target function corresponding to the replacement status in at least one function through a device application.
  • the target function includes at least one of the following: an activation function, other functions except the activation function, and the processor may also be configured to perform the following steps: when the vehicle-mounted device of the vehicle is in a replacement state and is replaced, the activation function is displayed through the device application; when the vehicle-mounted device of the vehicle is in a replacement state and is not replaced, other functions except the activation function are displayed through the device application.
  • the processor may also be configured to perform the following steps: in response to a scanning result indicating that the vehicle-mounted device is not installed in the vehicle, outputting a prompt message, wherein the prompt message is used to indicate that the vehicle-mounted device is not installed in the vehicle.
  • an electronic device including: one or more processors; a storage device, configured to store one or more programs; when the one or more programs are executed by one or more processors, the one or more processors execute the processing method of the vehicle-mounted equipment of the above-mentioned embodiment.
  • the processor may be configured to perform the following steps:
  • Step S1 in response to the vehicle being powered on, scanning the interior space of the vehicle to obtain a scanning result, wherein the scanning result is used to indicate whether the vehicle is equipped with an on-board device;
  • Step S2 in response to the scanning result indicating that the vehicle-mounted device has been installed in the vehicle, obtaining a device image of the vehicle-mounted device;
  • Step S3 determining the device application corresponding to the vehicle-mounted device based on the device image
  • Step S4 displaying the device application on the display interface of the vehicle, wherein the device application is configured to execute at least one function corresponding to the vehicle-mounted device.
  • the processor may also be configured to perform the following steps: extracting device information of the vehicle-mounted device in the device image; matching the device information based on a supplier information library to obtain supplier information of the vehicle-mounted device; and determining the device application based on the supplier information.
  • the processor may also be configured to perform the following steps: scanning the interior space of the vehicle to obtain a scanning result, including: scanning a preset area in the interior space by an image acquisition device installed at a preset position to obtain a scan result; The scanning result is displayed, where the preset area is set to install the vehicle-mounted equipment.
  • the processor may also be configured to perform the following steps: after displaying the device application on the vehicle's display interface, extracting the current device status of the vehicle-mounted device based on the device image; determining whether the vehicle-mounted device is damaged based on the current device status; in response to damage to the vehicle-mounted device, outputting a first prompt message, wherein the first prompt message is used to prompt repair or replacement of the vehicle-mounted device; in response to the vehicle-mounted device not being damaged, determining a target function from at least one function based on the current device status.
  • the processor can also be configured to perform the following steps: retrieve the historical device status of the on-board device, wherein the historical device status is the device status of the on-board device extracted after the vehicle was last powered on; determine the replacement status of the on-board device based on the current device status and the historical device status, wherein the replacement status is used to indicate whether the on-board device of the vehicle has been replaced; and display a target function corresponding to the replacement status in at least one function through a device application.
  • the target function includes at least one of the following: an activation function, other functions except the activation function, and the processor may also be configured to perform the following steps: when the vehicle-mounted device of the vehicle is in a replacement state and is replaced, the activation function is displayed through the device application; when the vehicle-mounted device of the vehicle is in a replacement state and is not replaced, other functions except the activation function are displayed through the device application.
  • the processor may also be configured to perform the following steps: in response to a scanning result indicating that the vehicle-mounted device is not installed in the vehicle, outputting a prompt message, wherein the prompt message is used to indicate that the vehicle-mounted device is not installed in the vehicle.
  • a computer-readable storage medium including a stored program, wherein when the program is running, the device where the computer-readable storage medium is located is controlled to execute the processing method of the vehicle-mounted device of the above embodiment.
  • the computer readable program when executed by a processor, implements the following program code:
  • Step S1 in response to the vehicle being powered on, scanning the interior space of the vehicle to obtain a scanning result, wherein the scanning result is used to indicate whether the vehicle is equipped with an on-board device;
  • Step S2 in response to the scanning result indicating that the vehicle-mounted device has been installed in the vehicle, obtaining a device image of the vehicle-mounted device;
  • Step S3 determining the device application corresponding to the vehicle-mounted device based on the device image
  • Step S4 displaying the device application on the display interface of the vehicle, wherein the device application is configured to execute at least one function corresponding to the vehicle-mounted device.
  • the program code when executed by the processor, the program code further implements the following steps: extracting device information of the vehicle-mounted device in the device image; matching the device information based on the supplier information database to obtain the vehicle-mounted device information; vendor information; and determining device applications based on the vendor information.
  • the program code when the computer-readable program is executed by the processor, the program code also implements the following steps: scanning the interior space of the vehicle to obtain a scanning result, including: scanning a preset area in the interior space by an image acquisition device installed at a preset position to obtain a scanning result, wherein the preset area is set to install a vehicle-mounted device.
  • the program code when the computer-readable program is executed by the processor, the program code also implements the following steps: after displaying the device application on the display interface of the vehicle, extracting the current device status of the vehicle-mounted device based on the device image; judging whether the vehicle-mounted device is damaged based on the current device status; in response to damage to the vehicle-mounted device, outputting a first prompt message, wherein the first prompt message is used to prompt the vehicle-mounted device to be repaired or replaced; in response to the vehicle-mounted device not being damaged, determining a target function from at least one function based on the current device status.
  • the program code when the computer-readable program is executed by the processor, the program code also implements the following steps: retrieving the historical device status of the on-board device, wherein the historical device status is the device status of the on-board device extracted after the vehicle was last powered on; determining the replacement status of the on-board device based on the current device status and the historical device status, wherein the replacement status is used to indicate whether the on-board device of the vehicle has been replaced; and displaying a target function corresponding to the replacement status in at least one function through a device application.
  • the target function includes at least one of the following: an activation function, other functions except the activation function, and the computer-readable program, when executed by the processor, also implements the program code of the following steps: when the replacement state is that the on-board equipment of the vehicle is replaced, the activation function is displayed through the device application; when the replacement state is that the on-board equipment of the vehicle is not replaced, other functions except the activation function are displayed through the device application.
  • the program code when executed by the processor, the program code further implements the following steps: in response to the scanning result that the vehicle-mounted device is not installed in the vehicle, outputting a prompt message, wherein the prompt message is used to indicate that the vehicle-mounted device is not installed in the vehicle.
  • Computer readable storage media may include data signals propagated in baseband or as part of a carrier wave, in which readable program code is carried. Such propagated data signals may take a variety of forms, including but not limited to electromagnetic signals, optical signals, or any suitable combination of the above. Computer readable storage media may send, propagate, or transmit programs for use by or in conjunction with an instruction execution system, apparatus, or device.
  • the program code contained in the computer-readable storage medium may be transmitted using any appropriate medium, including but not limited to wireless, wired, optical cable, radio frequency, etc., or any suitable combination of the foregoing.
  • the disclosed technical content can be implemented in other ways.
  • the device embodiments described above are only schematic.
  • the division of the components can be a logical function division. There may be other division methods in actual implementation, such as multiple components or components can be combined or integrated into another system, or some features can be ignored or not executed.
  • Another point is that the mutual coupling or direct coupling or communication connection shown or discussed can be through some interfaces, indirect coupling or communication connection of components or components, which can be electrical or other forms.
  • the components described as separate components may or may not be physically separated, and the components shown as components may or may not be physical components, that is, they may be located in one place or distributed on multiple components. Some or all of the components may be selected according to actual needs to achieve the purpose of the present embodiment.
  • each functional component in each embodiment of the present disclosure may be integrated into a processing component, or each component may exist physically separately, or two or more components may be integrated into one component.
  • the above-mentioned integrated components may be implemented in the form of hardware or in the form of software functional components.
  • the integrated components are implemented in the form of software functional components and sold or used as independent products, they can be stored in a computer-readable storage medium.
  • the computer software product is stored in a storage medium, including several instructions for a computer device (which can be a personal computer, server or network device, etc.) to perform all or part of the steps of the method described in each embodiment of the present disclosure.
  • the aforementioned storage media include: U disk, read-only memory (ROM, Read-Only Memory), random access memory (RAM, Random Access Memory), mobile hard disk, magnetic disk or optical disk, etc., which can store program code.
  • the vehicle equipment processing method and processing device provided by at least some embodiments of the present application have the following beneficial effects: in response to the vehicle being powered on, scanning the interior space of the vehicle to obtain a scanning result; further in response to the scanning result that the vehicle-mounted equipment has been installed in the vehicle, obtaining a device image of the vehicle-mounted equipment; further determining the device application corresponding to the vehicle-mounted equipment based on the device image; and further displaying the device application on the display interface of the vehicle.
  • the status of the ETC equipment inside the vehicle is monitored in real time by image recognition, confirming that the vehicle-mounted equipment has been installed based on the scanning result, and determining the device application corresponding to the vehicle-mounted equipment based on the device image, thereby The device application is displayed on the display interface, so as to achieve the purpose of real-time judgment of the status of the on-board equipment, thereby realizing the technical effect of timely matching the corresponding device application according to the ETC device image acquired in real time, and then solving the technical problem of low recognition accuracy of the vehicle's on-board equipment status in related technologies.

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Abstract

La présente divulgation concerne un procédé de traitement et un appareil de traitement pour un dispositif monté sur véhicule. Le procédé consiste : en réponse à la mise sous tension d'un véhicule, à balayer un espace interne du véhicule pour obtenir un résultat de balayage; en réponse au résultat de balayage indiquant qu'un dispositif monté sur véhicule a été monté sur le véhicule, à acquérir une image de dispositif du dispositif monté sur véhicule; à déterminer, sur la base de l'image de dispositif, une application de dispositif correspondant au dispositif monté sur véhicule; et à présenter l'application de dispositif sur une interface d'affichage du véhicule. Au moyen de la présente divulgation, le problème technique de l'état de la technique de faible précision d'identification d'identification de l'état d'un dispositif monté sur un véhicule est résolu.
PCT/CN2023/115327 2022-09-30 2023-08-28 Procédé de traitement et appareil de traitement pour un dispositif monté sur véhicule WO2024066855A1 (fr)

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