Vehicle registration methods, devices, and vehicle networking platforms
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2023-04-28
- Publication Date
- 2026-08-14
AI Technical Summary
[0004]本发明提供一种车辆注册方法、装置及车联网平台,用以解决现有技术中无法保证车辆注册的有效性的缺陷,实现对车辆的有效注册
[0032]本发明提供的车辆注册方法、装置及车联网平台,通过生产系统生成的订单信息获得目标车辆对应的配置信息,基于订单信息和配置信息对目标车辆进行注册,并获取目标车辆对应的配置信息中的第一目标信息,以基于第一目标信息对注册后的目标车辆进行参数配置,基于目标车辆在当前参数配置下的运行信息确定目标车辆满足下线条件时,确定目标车辆完成注册,从而能够保证注册完成后的车辆成功下线,提高了车辆注册的有效性。
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Figure CN116527749B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of vehicle networking technology, and in particular to a vehicle registration method, device, and vehicle networking platform. Background Technology
[0002] With the gradual development of construction machinery, it is usually necessary to register the corresponding vehicles on the Internet of Vehicles platform in order to facilitate the monitoring and management of each vehicle.
[0003] In related technologies, the on-board terminal (e.g., T-BOX) is typically bound to the vehicle identification number (VIN) while the vehicle is in the production stage, and the vehicle is registered on a vehicle networking platform. However, if the vehicle cannot be taken off the production line normally after registration, the validity of the vehicle registration cannot be guaranteed; that is, the vehicle registration cannot be successfully completed. Summary of the Invention
[0004] This invention provides a vehicle registration method, apparatus, and vehicle networking platform to address the shortcomings of existing technologies that cannot guarantee the effectiveness of vehicle registration, thereby achieving effective vehicle registration.
[0005] This invention provides a vehicle registration method, comprising:
[0006] The system acquires order information generated by the production system, obtains configuration information corresponding to the target vehicle based on the order information, and registers the target vehicle based on the order information and the configuration information; wherein the order information is generated by the production system based on the attribute information of the target vehicle.
[0007] Obtain the first target information from the configuration information, and configure the parameters of the registered target vehicle based on the first target information;
[0008] The system obtains the operating information of the target vehicle under the specified parameter configuration. Based on the operating information, it determines that the target vehicle meets the conditions for decommissioning and completes the registration of the target vehicle.
[0009] According to the vehicle registration method provided by the present invention, obtaining the configuration information corresponding to the target vehicle based on the order information includes:
[0010] The vehicle information of the target vehicle is obtained based on the order information;
[0011] Based on the vehicle information, the configuration information corresponding to the target vehicle is obtained from a preset configuration dataset; wherein, the configuration dataset includes configuration information corresponding to various different vehicle information.
[0012] According to the vehicle registration method provided by the present invention, the vehicle information includes vehicle category and vehicle type; the configuration dataset is constructed by the following method:
[0013] Construct and display a vehicle catalog; wherein the vehicle catalog includes multiple different vehicle categories, and the vehicle types under each vehicle category;
[0014] In response to maintenance instructions for each of the vehicle types, the configuration dataset is generated; wherein the maintenance instructions include configuration information corresponding to the vehicle type under the corresponding vehicle category.
[0015] According to the vehicle registration method provided by the present invention, the step of configuring parameters of the registered target vehicle based on the first target information includes:
[0016] Based on the first target information, a corresponding configuration instruction is generated and sent to the vehicle terminal corresponding to the target vehicle.
[0017] The system receives feedback information sent by the vehicle terminal, and when it determines that the target vehicle has been successfully configured based on the feedback information, it completes the parameter configuration of the target vehicle.
[0018] According to the vehicle registration method provided by the present invention, after registering the target vehicle based on the order information and the configuration information, the method further includes:
[0019] The system obtains the second target information from the configuration information and configures the parameters of the platform vehicle corresponding to the target vehicle based on the second target information; the platform vehicle is used to parse and / or display the data uploaded by the target vehicle.
[0020] According to the vehicle registration method provided by the present invention, the operating information includes one or more of the following: first operating parameter data corresponding to a first preset operating parameter, second operating parameter data corresponding to a target component in the target vehicle, and health status detection data; the health status detection data includes third operating parameter data corresponding to the second preset operating parameter and / or fault code data.
[0021] The first operating parameter data and the health status detection data are obtained during the testing of the target vehicle, and the first operating parameter data is used to detect the data upload status of the target vehicle.
[0022] The second operating parameter data is obtained by sending a lock signal or unlock signal to the target vehicle and acquiring the second operating parameter data corresponding to the target component in the target vehicle during the test.
[0023] According to the vehicle registration method provided by the present invention, the order information includes a first order; the registration of the target vehicle based on the order information and the configuration information includes:
[0024] Based on the first order and the configuration information corresponding to the first order, the chassis of the target vehicle is registered; wherein, the first order includes the attribute information of the chassis of the target vehicle.
[0025] According to the vehicle registration method provided by the present invention, the order information further includes a second order; the registration of the target vehicle based on the order information and the configuration information further includes:
[0026] Based on the second order and the configuration information corresponding to the second order, the target vehicle is registered as a whole; wherein, the second order includes the identification information of the chassis after registration and the attribute information of the whole vehicle.
[0027] The present invention also provides a vehicle registration device, comprising:
[0028] The first data processing module is used to acquire order information generated by the production system, obtain configuration information corresponding to the target vehicle based on the order information, and register the target vehicle based on the order information and the configuration information; wherein, the order information is generated by the production system based on the attribute information of the target vehicle;
[0029] The second data processing module is used to obtain the first target information in the configuration information and configure the parameters of the registered target vehicle based on the first target information.
[0030] The third data processing module is used to obtain the operating information of the target vehicle under the parameter configuration, and to complete the registration of the target vehicle when it is determined that the target vehicle meets the conditions for being taken offline based on the operating information.
[0031] The present invention also provides a vehicle networking platform, which uses the vehicle registration method described above or includes the vehicle registration device described above.
[0032] The vehicle registration method, apparatus, and vehicle networking platform provided by this invention obtain configuration information corresponding to a target vehicle through order information generated by the production system, register the target vehicle based on the order information and configuration information, and obtain the first target information in the configuration information corresponding to the target vehicle. Based on the first target information, the registered target vehicle is configured with parameters. When the target vehicle meets the offline conditions based on the operating information of the target vehicle under the current parameter configuration, the registration of the target vehicle is completed. This ensures that the registered vehicle can be successfully taken offline, thus improving the effectiveness of vehicle registration. Attached Figure Description
[0033] To more clearly illustrate the technical solutions in this invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are some embodiments of this invention. For those skilled in the art, other drawings can be obtained from these drawings without creative effort.
[0034] Figure 1 This is a flowchart illustrating the vehicle registration method provided by the present invention;
[0035] Figure 2 This is a flowchart illustrating the process of obtaining configuration information corresponding to a target vehicle based on order information, provided by the present invention.
[0036] Figure 3 This is a flowchart illustrating the method for constructing the configuration dataset provided by the present invention;
[0037] Figure 4 This is a schematic diagram of the process for configuring parameters of a registered target vehicle based on configuration information, provided by the present invention.
[0038] Figure 5 This is a schematic diagram of the vehicle registration device provided by the present invention;
[0039] Figure 6 This is a schematic diagram of the structure of the electronic device provided by the present invention. Detailed Implementation
[0040] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of this invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some, not all, of the embodiments of this invention. All other embodiments obtained by those skilled in the art based on the embodiments of this invention without creative effort are within the scope of protection of this invention.
[0041] The following is combined with Figures 1 to 4 This invention describes a vehicle registration method. The vehicle registration method of this invention is executed by electronic devices such as servers in a vehicle networking platform, or by the hardware and / or software therein. For example... Figure 1 As shown, the vehicle registration method of the present invention includes at least the following steps:
[0042] S101. Obtain order information generated by the production system, obtain configuration information corresponding to the target vehicle based on the order information, and register the target vehicle based on the order information and the configuration information; wherein, the order information is generated by the production system based on the attribute information of the target vehicle.
[0043] S102. Obtain the first target information from the configuration information, and configure the parameters of the registered target vehicle based on the first target information.
[0044] S103. Obtain the operating information of the target vehicle under the parameter configuration, and when the target vehicle meets the offline conditions based on the operating information, complete the registration of the target vehicle.
[0045] In this embodiment, after vehicle assembly is completed, the vehicle production system (such as a MOM (Manufacturing Operation Management) system) can generate corresponding vehicle order information based on the attribute information of each vehicle and push it to the vehicle networking platform. The order information for each vehicle can form a data queue, and the vehicle networking platform can retrieve the order information from the production system through a subscription. The order information may include a first order corresponding to the chassis and a second order corresponding to the complete vehicle, which can be determined based on the vehicle assembly requirements.
[0046] The attribute information may include a first attribute and a second attribute. The first attribute is an inherent attribute of the vehicle and may include the vehicle model code, vehicle identification number, etc. The second attribute may include the serial numbers of key components of the vehicle. For example, in the first order, the serial numbers of key components may include the serial numbers of the on-board terminal, the dashcam, the engine, and the transmission, etc., while in the second order, the serial numbers of key components may include the vehicle identification number of the registered chassis. The serial numbers of key components can be scanned into the production system by operators.
[0047] The target vehicle is the physical vehicle corresponding to the vehicle identification number in the order information. After obtaining the order information, the vehicle-to-everything (V2X) platform can obtain the configuration information corresponding to the target vehicle based on the order information. For example, it can maintain the configuration information corresponding to different vehicle types in advance on the V2X platform, determine the vehicle type of the target vehicle based on the order information of the target vehicle, and use the configuration information corresponding to the vehicle type of the target vehicle as the configuration information of the target vehicle.
[0048] The configuration information refers to the settings for the vehicle's operational parameters after assembly, such as the CAN communication matrix, fault codes (e.g., DTC (Diagnostic Trouble Code), P code), fuel type, unlocking method, whether to automatically activate the unlocking mechanism, and whether to disable unlocking activation. It can be understood that some configuration information corresponding to the target vehicle can be configured on the target vehicle, and some configurations on the vehicle networking platform can also be fully configured on the target vehicle.
[0049] After obtaining the configuration information corresponding to the target vehicle, the target vehicle can be registered on the vehicle networking platform based on the order information and assembly information. Registration completes the binding of key components and configuration information with the target vehicle; that is, the platform vehicle corresponding to the target vehicle is constructed on the vehicle networking platform. The platform vehicle is a virtual vehicle used to parse and / or display the data uploaded by the target vehicle. Specifically, when the target vehicle only includes the chassis, it can be registered based on the first order. If the target vehicle includes both the chassis and the superstructure, the chassis can be registered first based on the first order, and then the entire vehicle can be registered based on the second order.
[0050] The first target information is the configuration information used to configure the target vehicle, which is part or all of the configuration information corresponding to the target vehicle. After registering the target vehicle, the vehicle-to-everything (V2X) platform can further obtain the first target information from the configuration information corresponding to the target vehicle and configure the parameters of the registered target vehicle based on the first target information. For example, it can generate corresponding configuration instructions based on the first target information and send them to the vehicle terminal corresponding to the target vehicle to control the target vehicle to perform parameter configuration. It can also receive feedback information sent by the vehicle terminal after sending the configuration instructions to the vehicle terminal and determine whether the target vehicle has been successfully configured based on the feedback information. If the configuration is successful, the parameter configuration of the target vehicle is completed. If the configuration fails, it can continue to send corresponding configuration instructions to the vehicle terminal until a preset number of times is reached or the configuration is successful. If the configuration still fails after reaching the preset number of times, an alarm can be triggered to facilitate timely troubleshooting by operators.
[0051] At the same time, after registering the target vehicle, the vehicle network platform can also obtain the second target information in the configuration information corresponding to the target vehicle, and configure the parameters of the platform vehicle corresponding to the target vehicle based on the second target information.
[0052] The offline conditions refer to the conditions at which the production process on the production line ends. Offline conditions can include, but are not limited to, the vehicle passing a test. For example, offline conditions may include, but are not limited to, the vehicle network platform being able to monitor the target vehicle normally, the vehicle's unlocking function being normal, and the vehicle having no malfunctions. After configuring the parameters of the target vehicle, its operating information under that parameter configuration can be obtained. Based on this operating information, it can be determined whether the target vehicle meets the offline conditions. If it does, the target vehicle has successfully gone offline, meaning it has successfully completed registration. If it does not meet the conditions, the registration result is invalid, and the target vehicle can be re-registered or adjusted before re-testing to see if it meets the offline conditions. The specific determination can be based on the reason for the invalid registration result. This enables effective vehicle registration and automatic vehicle offline through the vehicle network platform, eliminating the need for manual judgment of whether a vehicle meets the offline conditions, thus greatly reducing labor costs.
[0053] The specific method for obtaining the target vehicle's operating information under this parameter configuration can be set according to actual needs. For example, it is possible to obtain the parameter data corresponding to the preset parameters of the target vehicle during the debugging process, and determine whether the target vehicle has successfully rolled off the production line based on the parameter data. Alternatively, it is possible to send a detection command to the target vehicle and determine whether the target vehicle has successfully rolled off the production line based on the feedback from the target vehicle.
[0054] This embodiment obtains the configuration information corresponding to the target vehicle through the order information generated by the production system, registers the target vehicle based on the order information and configuration information, and obtains the first target information in the configuration information corresponding to the target vehicle. Based on the first target information, the registered target vehicle is configured with parameters. When the target vehicle meets the offline conditions based on the operating information of the target vehicle under the current parameter configuration, the target vehicle is determined to have completed registration. This ensures that the vehicle can be successfully offline after registration, thus improving the effectiveness of vehicle registration.
[0055] Meanwhile, this embodiment enables automatic vehicle decommissioning, and the registration and decommissioning processes do not require human intervention, greatly reducing labor costs.
[0056] In an exemplary embodiment, such as Figure 2 As shown, obtaining the configuration information corresponding to the target vehicle based on the order information includes:
[0057] S201. Obtain the vehicle information of the target vehicle based on the order information;
[0058] S202. Based on the vehicle information, obtain the configuration information corresponding to the target vehicle from a preset configuration dataset; wherein, the configuration dataset includes configuration information corresponding to various different vehicle information.
[0059] In this embodiment, vehicle information of the target vehicle can be obtained based on the vehicle model code in the order information. The vehicle information can include the vehicle category and the corresponding vehicle type under the vehicle category. The vehicle category can be a mixer truck, dump truck, electric mixer truck, electric dump truck, or special vehicle chassis, etc., and the vehicle type can be the chassis model or the complete vehicle model.
[0060] The configuration dataset can include configuration information corresponding to various vehicle information. The configuration information corresponding to various vehicle information can be maintained in advance in the vehicle networking platform. The vehicle networking platform stores the configuration information corresponding to each vehicle information in the form of a mapping table to form a configuration dataset.
[0061] After obtaining the vehicle information of the target vehicle, the vehicle information of the target vehicle can be matched with the vehicle information in the configuration dataset, and the configuration information corresponding to the successfully matched vehicle information can be used as the configuration information of the target vehicle. This enables the target vehicle to be configured quickly and accurately, and also realizes the registration and parameter configuration of different types of vehicles.
[0062] In an exemplary embodiment, the vehicle information includes vehicle category and vehicle type; such as Figure 3 As shown, the configuration dataset is constructed using the following method:
[0063] S301. Construct and display a vehicle catalog; wherein the vehicle catalog includes multiple different vehicle categories and vehicle types under each vehicle category;
[0064] S302. In response to maintenance instructions for each of the vehicle types, generate the configuration dataset; wherein the maintenance instructions include configuration information corresponding to the vehicle type under the corresponding vehicle category.
[0065] In this embodiment, during the construction of the configuration dataset, a vehicle catalog can be built first and then displayed through a human-computer interaction interface. The vehicle catalog can include various vehicle categories, such as mixer trucks, dump trucks, electric mixer trucks, electric dump trucks, and special-purpose vehicle chassis. Furthermore, each vehicle category can include various vehicle types, such as chassis models and complete vehicle models.
[0066] For each vehicle type displayed on the human-machine interface, the operator can input the maintenance command corresponding to the vehicle type under the corresponding vehicle category through the human-machine interface. The maintenance command can include the configuration information corresponding to the vehicle type, so as to realize the maintenance of the configuration information corresponding to the vehicle type. The configuration information corresponding to all vehicle types in the vehicle catalog constitutes the configuration dataset.
[0067] This embodiment constructs a configuration dataset based on the vehicle catalog, which greatly improves the convenience of data management, querying, and analysis.
[0068] In an exemplary embodiment, such as Figure 4 As shown, configuring parameters for the registered target vehicle based on the first target information includes:
[0069] S401. Generate a corresponding configuration instruction based on the first target information and send it to the vehicle terminal corresponding to the target vehicle;
[0070] S402. Receive feedback information sent by the vehicle terminal, and when it is determined that the target vehicle has been successfully configured based on the feedback information, complete the parameter configuration of the target vehicle.
[0071] In this embodiment, during the parameter configuration process of the registered target vehicle, the vehicle-to-everything (V2X) platform can generate corresponding configuration instructions based on the first target information. For example, for each piece of data in the first target information, a corresponding configuration instruction is generated and sent to the vehicle-mounted terminal corresponding to the target vehicle. The vehicle-mounted terminal corresponding to the target vehicle is the same as the vehicle-mounted terminal bound to the target vehicle during the registration process.
[0072] After receiving the configuration command, the vehicle-mounted terminal transmits it to the corresponding vehicle—that is, the vehicle equipped with the vehicle-mounted terminal. This vehicle can then execute the configuration command to complete its own parameter configuration. Simultaneously, the vehicle also sends the execution result of the configuration command as feedback information to the vehicle-to-everything (V2X) platform via the corresponding vehicle-mounted terminal.
[0073] After receiving feedback information from the vehicle terminal, the vehicle-to-everything (V2X) platform further determines whether the target vehicle has been successfully configured based on the feedback information. If the configuration is successful, it indicates that the target vehicle has completed parameter configuration. If the configuration fails, the platform can continue to send the failed configuration command to the vehicle terminal until a preset number of attempts is reached or the configuration is successful. If the configuration still fails after the preset number of attempts is reached, an alarm can be triggered so that operators can troubleshoot in a timely manner. This effectively ensures the reliability of the parameter configuration results and provides a technical basis for improving the effectiveness of vehicle registration.
[0074] In an exemplary embodiment, after registering the target vehicle based on the order information and the configuration information, the method further includes:
[0075] The system obtains the second target information from the configuration information and configures the parameters of the platform vehicle corresponding to the target vehicle based on the second target information; the platform vehicle is used to parse and / or display the data uploaded by the target vehicle.
[0076] In this embodiment, the second target information is the configuration information used to configure the vehicle-to-everything (V2X) platform from the configuration information corresponding to the target vehicle, such as the CAN communication matrix. It is understood that the second target information may overlap with the first target information. After registering the target vehicle, the V2X platform also obtains the second target information from the configuration information corresponding to the target vehicle and configures the platform vehicle corresponding to the target vehicle based on the second target information. The platform vehicle with the configured parameters can then parse the data uploaded by the target vehicle (e.g., raw CAN message data). This allows the data parsing to be completed jointly by the target vehicle's onboard terminal and the V2X platform, improving data parsing efficiency and reducing the data computation load on the target vehicle's onboard terminal.
[0077] In an exemplary embodiment, the operating information includes one or more of the following: first operating parameter data corresponding to the first preset operating parameter, second operating parameter data corresponding to the target component in the target vehicle, and health status detection data. The health status detection data includes third operating parameter data corresponding to the second preset operating parameter and / or fault code data.
[0078] The first operating parameter data and the health status detection data are obtained during the testing of the target vehicle, and the first operating parameter data is used to detect the data upload status of the target vehicle.
[0079] The second operating parameter data is obtained by sending a lock signal or unlock signal to the target vehicle and acquiring the second operating parameter data corresponding to the target component in the target vehicle during the test.
[0080] In this embodiment, the operating information of the target vehicle under the corresponding parameter configuration may include one or more of the following: first operating parameter data corresponding to the first preset operating parameter, second operating parameter data corresponding to the target component in the target vehicle, and health status detection data.
[0081] The first and second preset operating parameters can be pre-set in the vehicle networking platform or randomly generated by the platform. They may or may not overlap. For example, the first preset operating parameters may include engine speed and switching signals (such as brake signals), while the second preset operating parameters may include hydraulic oil temperature of the superstructure and vehicle air pressure.
[0082] The first set of operating parameter data and health status detection data can be obtained during the testing of the target vehicle. For example, after parameter configuration, during the testing of the target vehicle (such as debugging or road testing), the operating data of the target vehicle can be sent to the vehicle-to-everything (V2X) platform in the form of CAN messages through the onboard terminal installed on the target vehicle. The platform vehicle corresponding to the target vehicle parses the CAN messages to obtain the parsing results of the operating data. The operating data may include parameter data corresponding to each operating parameter of the target vehicle, and may also include fault code data generated during operation. The V2X platform can sample from the parsed parameter data based on the first preset operating parameters to obtain the parameter data corresponding to the first preset operating parameters, and use it as the first operating parameter data. At the same time, the V2X platform can also sample from the parsed parameter data based on the second preset operating parameters to obtain the parameter data corresponding to the second preset operating parameters, and use it as the third operating parameter data.
[0083] The first operating parameter data is used to detect the data upload status of the target vehicle. During the process of determining whether a target vehicle meets the decommissioning conditions based on the first operating parameter data, the vehicle-to-everything (V2X) platform can determine whether the first operating parameter data corresponding to each first preset operating parameter is empty, and obtain the percentage of first preset operating parameters with empty first operating parameter data. If the percentage is less than or equal to a preset ratio, it indicates that the target vehicle's operating data can be uploaded to the V2X platform normally, meaning the V2X platform can monitor the target vehicle normally and determine that the target vehicle meets the decommissioning conditions. If not, it indicates that the V2X platform cannot monitor the target vehicle normally, and the target vehicle does not meet the decommissioning conditions. Adjustments can be made to the target vehicle, and the decommissioning conditions can be re-detected until the target vehicle meets the decommissioning conditions, thus ensuring comprehensive monitoring of successfully registered vehicles by the V2X platform after the vehicle is decommissioned.
[0084] The target component can be a component controlled by the vehicle unlocking function. The second operating parameter data is used to detect the target vehicle's vehicle unlocking function and / or to detect mis-binding of the target vehicle. If the target vehicle needs to activate the vehicle unlocking function, the vehicle unlocking function can be further detected. For example, the vehicle networking platform can send a lock signal or unlock signal to the target vehicle through the vehicle terminal to control the target vehicle to perform locking or unlocking. At the same time, the vehicle networking platform can also obtain the second operating parameter data corresponding to the target component through the vehicle terminal. The second operating parameter data is used to reflect the operating status of the target component. In the process of determining whether the target vehicle meets the decommissioning conditions based on the second operating parameter data, the vehicle networking platform can compare the second operating parameter data with preset parameter values and determine whether the target vehicle meets the decommissioning conditions based on the comparison result. Taking the engine as an example, locking the vehicle limits its speed to idle, while unlocking removes this limitation. During testing, if the engine speed exceeds idle when the accelerator is pressed after the vehicle network platform sends a lock signal, or if the engine speed is less than or equal to idle when the accelerator is pressed after the vehicle network platform sends an unlock signal, it indicates an abnormality in the vehicle's unlocking function or a mis-binding between the vehicle and the on-board terminal during registration, meaning the vehicle does not meet the deregistration requirements. Adjustments or re-registration of the vehicle can be made until it meets the deregistration requirements, thereby improving the effectiveness of the registration results. Specifically, lock and unlock buttons can be set in the vehicle network platform's human-machine interface. The platform can respond to the lock command input via the lock button by sending a lock signal to the target vehicle, and respond to the unlock command input via the unlock button by sending an unlock signal to the target vehicle.
[0085] Health status detection data is used to detect the health status of a target vehicle. Specifically, third operating parameter data is used to detect the vehicle's operational status, and fault code data is used for fault detection. Therefore, the health status of the target vehicle can be determined based on its operational status and / or fault detection results. For example, a vehicle-to-everything (V2X) platform can detect the health status of a target vehicle using real-time health status detection data reported by the onboard terminal and a preset health recognition model within the V2X platform. The specific type of the health recognition model can be set according to actual needs. For instance, if no preset fault codes are found in the health status detection data, and all third operating parameter data are within preset ranges, the target vehicle is determined to be healthy; otherwise, it is determined to be unhealthy.
[0086] Understandably, when a target vehicle is detected to be healthy, it is determined that the target vehicle meets the conditions for decommissioning. When a target vehicle is detected to be unhealthy, it is determined that the target vehicle does not meet the conditions for decommissioning, and an alarm can be issued so that the operator can adjust the target vehicle until the target vehicle meets the conditions for decommissioning. This ensures the successful decommissioning of the vehicle and further improves the effectiveness of the registration results.
[0087] It is understandable that when the operating information includes multiple data such as the first operating parameter data, the second operating parameter data, and the health status detection data, if all multiple data meet the requirements, it indicates that the target vehicle meets the conditions for being decommissioned; otherwise, it indicates that the target vehicle does not meet the conditions for being decommissioned.
[0088] In an exemplary embodiment, the order information includes a first order; registering the target vehicle based on the order information and the configuration information includes:
[0089] Based on the first order and the configuration information corresponding to the first order, the chassis of the target vehicle is registered; wherein, the first order includes the attribute information of the chassis of the target vehicle.
[0090] In this embodiment, the order information may include a first order, which includes the chassis attribute information of the target vehicle; the configuration information corresponding to the first order is the configuration information of the target vehicle obtained based on the first order. The first order and the configuration information corresponding to the first order are used to register the chassis of the target vehicle. The chassis attribute information may include the vehicle model code, vehicle identification number, and serial numbers of key vehicle components.
[0091] When the vehicle-to-everything (V2X) platform receives the first order, it can obtain the configuration information corresponding to the target vehicle based on the order. This configuration information is then used to register the target vehicle's chassis. Furthermore, if the target vehicle's type is a chassis model (i.e., no superstructure is required), registration can be completed after chassis registration. If the target vehicle's type is a complete vehicle model (i.e., a superstructure is required), the platform can send the vehicle identification number (VIN) from the first order to the production system or display it through a human-machine interface to facilitate complete vehicle registration. This further improves the effectiveness of vehicle registration and allows for automatic registration and off-line processing of different vehicle types.
[0092] In an exemplary embodiment, the order information further includes a second order; the registration of the target vehicle based on the order information and the configuration information further includes:
[0093] Based on the second order and the configuration information corresponding to the second order, the target vehicle is registered as a whole; wherein, the second order includes the identification information of the chassis after registration and the attribute information of the whole vehicle.
[0094] In this embodiment, the order information may further include a second order, which includes the chassis identification information and vehicle attribute information of the target vehicle. The configuration information corresponding to the second order is the configuration information of the target vehicle obtained based on the second order. The second order and the configuration information corresponding to the second order are used to register the target vehicle. The chassis identification information may be the vehicle identification number from the first order, and the vehicle attribute information may include the model number, vehicle serial number, etc.
[0095] When the target vehicle's vehicle information is a complete vehicle model, meaning the target vehicle needs to be equipped with a superstructure, the production system can generate a second order based on the chassis identification information and the vehicle's attribute information, and push it to the vehicle networking platform. When the vehicle networking platform receives the second order, it can obtain the configuration information corresponding to the target vehicle based on the second order, and use it as the configuration information corresponding to the second order. Based on the chassis identification information, vehicle attribute information, and configuration information corresponding to the second order, the target vehicle is registered as a whole, which further improves the effectiveness of vehicle registration and can be applied to the automatic registration and decommissioning of different types of vehicles, improving the flexibility and convenience of vehicle registration and decommissioning.
[0096] The vehicle registration device provided by the present invention is described below. The vehicle registration device described below can be referred to in correspondence with the vehicle registration method described above. Figure 5 As shown, the vehicle registration device of the present invention includes at least:
[0097] The first data processing module 501 is used to acquire order information generated by the production system, obtain configuration information corresponding to the target vehicle based on the order information, and register the target vehicle based on the order information and the configuration information; wherein, the order information is generated by the production system based on the attribute information of the target vehicle;
[0098] The second data processing module 502 is used to obtain the first target information in the configuration information and configure the parameters of the registered target vehicle based on the first target information.
[0099] The third data processing module 503 is used to obtain the operating information of the target vehicle under the parameter configuration, and to complete the registration of the target vehicle when it is determined that the target vehicle meets the offline conditions based on the operating information.
[0100] In an exemplary embodiment, the first data processing module 501 is specifically used for:
[0101] The vehicle information of the target vehicle is obtained based on the order information;
[0102] Based on the vehicle information, the configuration information corresponding to the target vehicle is obtained from a preset configuration dataset; wherein, the configuration dataset includes configuration information corresponding to various different vehicle information.
[0103] In an exemplary embodiment, the vehicle information includes vehicle category and vehicle type; it also includes a fourth data processing module, which is used to:
[0104] Construct and display a vehicle catalog; wherein the vehicle catalog includes multiple different vehicle categories, and the vehicle types under each vehicle category;
[0105] In response to maintenance instructions for each of the vehicle types, the configuration dataset is generated; wherein the maintenance instructions include configuration information corresponding to the vehicle type under the corresponding vehicle category.
[0106] In an exemplary embodiment, the second data processing module 502 is specifically used for:
[0107] Based on the first target information, a corresponding configuration instruction is generated and sent to the vehicle terminal corresponding to the target vehicle.
[0108] The system receives feedback information sent by the vehicle terminal, and when it determines that the target vehicle has been successfully configured based on the feedback information, it completes the parameter configuration of the target vehicle.
[0109] In an exemplary embodiment, a fifth data processing module is further included, the fifth data processing module being used for:
[0110] The system obtains the second target information from the configuration information and configures the parameters of the platform vehicle corresponding to the target vehicle based on the second target information; the platform vehicle is used to parse and / or display the data uploaded by the target vehicle.
[0111] In an exemplary embodiment, the operating information includes one or more of the following: first operating parameter data corresponding to the first preset operating parameter, second operating parameter data corresponding to the target component in the target vehicle, and health status detection data. The health status detection data includes third operating parameter data corresponding to the second preset operating parameter and / or fault code data.
[0112] The first operating parameter data and the health status detection data are obtained during the testing of the target vehicle, and the first operating parameter data is used to detect the data upload status of the target vehicle.
[0113] The second operating parameter data is obtained by sending a lock signal or unlock signal to the target vehicle and acquiring the second operating parameter data corresponding to the target component in the target vehicle during the test.
[0114] In an exemplary embodiment, the order information includes a first order; the first data processing module 501 is specifically used for:
[0115] Based on the first order and the configuration information corresponding to the first order, the chassis of the target vehicle is registered; wherein, the first order includes the attribute information of the chassis of the target vehicle.
[0116] In an exemplary embodiment, the order information further includes a second order; the first data processing module 501 is specifically used for:
[0117] Based on the second order and the configuration information corresponding to the second order, the target vehicle is registered as a whole; wherein, the second order includes the identification information of the chassis after registration and the attribute information of the whole vehicle.
[0118] Based on any of the above embodiments, the present invention also provides a vehicle networking platform, which uses the vehicle registration method as described in any of the above embodiments or includes the vehicle registration device as described in any of the above embodiments.
[0119] Figure 6 An example is a schematic diagram of the physical structure of an electronic device, such as... Figure 6 As shown, the electronic device may include a processor 601, a communications interface 602, a memory 603, and a communication bus 604, wherein the processor 601, communications interface 602, and memory 603 communicate with each other via the communication bus 604. The processor 601 can call logical instructions in the memory 603 to execute a vehicle registration method, which includes: obtaining order information generated by a production system, obtaining configuration information corresponding to a target vehicle based on the order information, and registering the target vehicle based on the order information and the configuration information; wherein the order information is generated by the production system based on the attribute information of the target vehicle.
[0120] Obtain the first target information from the configuration information, and configure the parameters of the registered target vehicle based on the first target information;
[0121] The system obtains the operating information of the target vehicle under the specified parameter configuration. Based on the operating information, it determines that the target vehicle meets the conditions for decommissioning and completes the registration of the target vehicle.
[0122] Furthermore, the logical instructions in the aforementioned memory 603 can be implemented as software functional units and, when sold or used as independent products, can be stored in a computer-readable storage medium. Based on this understanding, the technical solution of the present invention, in essence, or the part that contributes to the prior art, or a part of the technical solution, can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the methods described in the various embodiments of the present invention. The aforementioned storage medium includes various media capable of storing program code, such as USB flash drives, portable hard drives, read-only memory (ROM), random access memory (RAM), magnetic disks, or optical disks.
[0123] On the other hand, the present invention also provides a computer program product, the computer program product comprising a computer program stored on a non-transitory computer-readable storage medium, the computer program comprising program instructions, wherein when the program instructions are executed by a computer, the computer is able to execute the vehicle registration method provided by the above methods, the method comprising: obtaining order information generated by a production system, obtaining configuration information corresponding to a target vehicle based on the order information, and registering the target vehicle based on the order information and the configuration information; wherein the order information is generated by the production system based on the attribute information of the target vehicle;
[0124] Obtain the first target information from the configuration information, and configure the parameters of the registered target vehicle based on the first target information;
[0125] The system obtains the operating information of the target vehicle under the specified parameter configuration. Based on the operating information, it determines that the target vehicle meets the conditions for decommissioning and completes the registration of the target vehicle.
[0126] In another aspect, the present invention also provides a non-transitory computer-readable storage medium storing a computer program thereon, which, when executed by a processor, is implemented to perform the vehicle registration methods provided above. The method includes: obtaining order information generated by a production system, obtaining configuration information corresponding to a target vehicle based on the order information, and registering the target vehicle based on the order information and the configuration information; wherein the order information is generated by the production system based on the attribute information of the target vehicle.
[0127] Obtain the first target information from the configuration information, and configure the parameters of the registered target vehicle based on the first target information;
[0128] The system obtains the operating information of the target vehicle under the specified parameter configuration. Based on the operating information, it determines that the target vehicle meets the conditions for decommissioning and completes the registration of the target vehicle.
[0129] The device embodiments described above are merely illustrative. The units described as separate components may or may not be physically separate. The components shown as units may or may not be physical units; that is, they may be located in one place or distributed across multiple network units. Some or all of the modules can be selected to achieve the purpose of this embodiment according to actual needs. Those skilled in the art can understand and implement this without any creative effort.
[0130] Through the above description of the embodiments, those skilled in the art can clearly understand that each embodiment can be implemented by means of software plus necessary general-purpose hardware platforms, and of course, it can also be implemented by hardware. Based on this understanding, the above technical solutions, in essence or the part that contributes to the prior art, can be embodied in the form of a software product. This computer software product can be stored in a computer-readable storage medium, such as ROM / RAM, magnetic disk, optical disk, etc., and includes several instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute the methods described in the various embodiments or some parts of the embodiments.
[0131] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of the present invention, and not to limit them; although the present invention has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some of the technical features; and these modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the spirit and scope of the technical solutions of the embodiments of the present invention.
Claims
1. A vehicle registration method, characterized in that, include: The system acquires order information generated by the production system, obtains configuration information corresponding to the target vehicle based on the order information, and registers the target vehicle based on the order information and the configuration information. The order information is generated by the production system based on the attribute information of the target vehicle after the vehicle assembly is completed. The attribute information includes a first attribute and a second attribute. The first attribute is an inherent attribute of the vehicle and includes a vehicle model code and a vehicle identification number. The second attribute includes the serial number of the vehicle's key components. Obtain the first target information from the configuration information, and configure the parameters of the registered target vehicle based on the first target information; The system obtains the operating information of the target vehicle under the specified parameter configuration. Based on the operating information, it determines that the target vehicle meets the conditions for decommissioning. The registration of the target vehicle is then completed. The target vehicle is the physical vehicle corresponding to the vehicle identification code in the order information. The operating information includes one or more of the following: first operating parameter data corresponding to the first preset operating parameters, second operating parameter data corresponding to the target component in the target vehicle, and health status detection data. The first operating parameter data is obtained during the testing process of the target vehicle and is used to detect the data upload status of the target vehicle. The second operating parameter data is obtained by sending a lock signal or unlock signal to the target vehicle and obtaining the second operating parameter data corresponding to the target component in the target vehicle during the testing process.
2. The vehicle registration method according to claim 1, characterized in that, The step of obtaining the configuration information corresponding to the target vehicle based on the order information includes: The vehicle information of the target vehicle is obtained based on the order information; Based on the vehicle information, the configuration information corresponding to the target vehicle is obtained from a preset configuration dataset; wherein, the configuration dataset includes configuration information corresponding to various different vehicle information.
3. The vehicle registration method according to claim 2, characterized in that, The vehicle information includes vehicle category and vehicle type; the configuration dataset is constructed using the following method: Construct and display a vehicle catalog; wherein the vehicle catalog includes multiple different vehicle categories, and the vehicle types under each vehicle category; In response to maintenance instructions for each of the vehicle types, the configuration dataset is generated; wherein the maintenance instructions include configuration information corresponding to the vehicle type under the corresponding vehicle category.
4. The vehicle registration method according to claim 1, characterized in that, The step of configuring parameters for the registered target vehicle based on the first target information includes: Based on the first target information, a corresponding configuration instruction is generated and sent to the vehicle terminal corresponding to the target vehicle. The system receives feedback information sent by the vehicle terminal, and when it determines that the target vehicle has been successfully configured based on the feedback information, it completes the parameter configuration of the target vehicle.
5. The vehicle registration method according to claim 1, characterized in that, After registering the target vehicle based on the order information and the configuration information, the process further includes: The system obtains the second target information from the configuration information and configures the parameters of the platform vehicle corresponding to the target vehicle based on the second target information; the platform vehicle is used to parse and / or display the data uploaded by the target vehicle.
6. The vehicle registration method according to claim 1, characterized in that, The health status detection data includes third operating parameter data and / or fault code data corresponding to the second preset operating parameters; The health status detection data is obtained during the testing process of the target vehicle.
7. The vehicle registration method according to any one of claims 1 to 6, characterized in that, The order information includes a first order; the registration of the target vehicle based on the order information and the configuration information includes: Based on the first order and the configuration information corresponding to the first order, the chassis of the target vehicle is registered; wherein, the first order includes the attribute information of the chassis of the target vehicle.
8. The vehicle registration method according to claim 7, characterized in that, The order information also includes a second order; the registration of the target vehicle based on the order information and the configuration information further includes: Based on the second order and the configuration information corresponding to the second order, the target vehicle is registered as a whole; wherein, the second order includes the identification information of the chassis after registration and the attribute information of the whole vehicle.
9. A vehicle registration device, characterized in that, include: The first data processing module is used to acquire order information generated by the production system, obtain configuration information corresponding to the target vehicle based on the order information, and register the target vehicle based on the order information and the configuration information; wherein, the order information is generated by the production system based on the attribute information of the target vehicle after the vehicle is assembled, and the attribute information includes a first attribute and a second attribute, the first attribute being the inherent attribute of the vehicle, including the vehicle model code and vehicle identification number, and the second attribute including the serial number of the vehicle's key components; The second data processing module is used to obtain the first target information in the configuration information and configure the parameters of the registered target vehicle based on the first target information. The third data processing module is used to acquire the operating information of the target vehicle under the parameter configuration, and to complete the registration of the target vehicle when it is determined that the target vehicle meets the offline conditions based on the operating information. The target vehicle is the physical vehicle corresponding to the vehicle identification code in the order information. The operating information includes one or more of the following: first operating parameter data corresponding to the first preset operating parameters, second operating parameter data corresponding to the target component in the target vehicle, and health status detection data. The first operating parameter data is obtained during the testing process of the target vehicle and is used to detect the data upload status of the target vehicle. The second operating parameter data is obtained by sending a lock signal or unlock signal to the target vehicle and acquiring the second operating parameter data corresponding to the target component in the target vehicle during the testing process.
10. A vehicle networking platform, characterized in that, The vehicle networking platform includes the vehicle registration device as described in claim 9.
Citation Information
Patent Citations
Vehicle information processing method and device and vehicle operation management platform
CN112528389A
Vehicle-mounted terminal offline configuration method and system, storage medium and equipment
CN114968313A