Internet of vehicles function adaptation method and system, and tsp platform
By obtaining project codes and vehicle model names from the bill of materials system during vehicle development, generating vehicle model group information, and automatically matching vehicle networking functions using a pre-built relational database, the problem of difficulty in matching vehicle model names with project codes was solved, achieving fast and accurate vehicle networking function adaptation, and reducing error risks and labor costs.
Patent Information
- Application Number
- CN202411861331.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2044-12-17
AI Technical Summary
During vehicle development, the vehicle model name is represented by the project code during the project development phase, which makes it difficult for the vehicle networking function adaptation personnel to match the vehicle model name with the project code, increasing the risk of adaptation errors and manpower costs.
By obtaining project codes and vehicle model names from the bill of materials system, vehicle model group information containing project codes is generated, and vehicle networking functions are automatically matched using a pre-built relational database, or manually matched by function adaptation personnel, ensuring fast and accurate vehicle networking function adaptation.
This reduces the risk of errors and manpower costs associated with adapting vehicle networking functions, improves adaptation efficiency, and ensures rapid and accurate matching of vehicle model information and functional adaptation.
Smart Images

Figure CN119814843B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of vehicle networking function adaptation, and in particular to a vehicle networking function adaptation method, system and TSP platform. BACKGROUND
[0002] In the vehicle development process, in order to meet the individual needs of customers, the same vehicle model may give rise to multiple designs, such as different interiors, exteriors, power systems, etc., that is, each design of the same vehicle model corresponds to different vehicle model information, and needs to be individually adapted to the vehicle networking function on the TSP (Telematics Service Provider, vehicle networking information service provider) platform based on the vehicle model information. However, due to the fact that the vehicle model name is represented by a project code in the project development stage in view of information security requirements, and is converted into the formal vehicle model name in the production stage, the function adaptation personnel have difficulty in corresponding between the vehicle model name and the project code, which increases the risk of adaptation errors and human costs, and needs to be improved. SUMMARY
[0003] Therefore, the purpose of the present application is to provide a vehicle networking function adaptation method, system and TSP platform to solve the problems of adaptation error risk and high human cost in the vehicle networking function adaptation process of vehicles.
[0004] To achieve the above purpose, the present application provides a vehicle networking function adaptation method, comprising:
[0005] obtaining first vehicle model information of a bill of materials system and second vehicle model information of a whole vehicle management system; wherein the first vehicle model information comprises a matching project code and a first vehicle model name, and the second vehicle model information comprises a second vehicle model name;
[0006] generating vehicle group information with the project code as the first field based on the first vehicle model information and the second vehicle model information with the same first vehicle model name and the second vehicle model name;
[0007] matching vehicle networking functions corresponding to the vehicle group information.
[0008] Further, the matching vehicle networking functions corresponding to the vehicle group information comprises:
[0009] matching database vehicle group information identical to the vehicle group information in a pre-constructed relational database based on the vehicle group information, and determining whether the matching is successful;
[0010] in response to determining that the matching is successful, taking database vehicle networking functions corresponding to the database vehicle group information as vehicle networking functions adapted to the vehicle group information;
[0011] In response to determining that the matching fails, the corresponding Internet of Vehicles function configured by the function adaptation personnel is configured as the Internet of Vehicles function adapted to the vehicle model group information.
[0012] Further, the matching of the vehicle model group information with the same database vehicle model group information in the pre-constructed relational database based on the vehicle model group information and the determination of whether the matching succeeds, comprises:
[0013] Identifying a project code field in the vehicle model group information, searching for a first label database field same as the project code field in the pre-constructed relational database;
[0014] In response to determining that the first label database field same as the project code field is matched, identifying remaining fields in the vehicle model group information, and matching a second label database field with the remaining fields in a sub-database with the first label database field, the similarity of which reaches a preset value;
[0015] In response to determining that the second label database field with the similarity to the remaining fields reaching the preset value is matched, it is determined that the matching succeeds.
[0016] The above technical solution provides a specific process of matching the vehicle model group information with the data in the relational database. The matching process is related to the framework of the pre-construction process of the relational database. The relational database itself is also established by the R&D personnel. The R&D personnel is more sensitive to the project code in the vehicle R&D stage, and the project code is unique. Therefore, the project code is used as a first label database field of the relational database, and a second label database field representing the remaining fields in the vehicle model group information except the project code is stored under the first label database field. Therefore, when the TSP platform performs automatic Internet of Vehicles function matching on the generated vehicle model group information, the project code in the vehicle model group information is first identified to quickly lock the first label database field, and then the remaining fields are searched under the first label database field. If the second label database field with the similarity to the remaining fields reaching the preset value is matched, it is determined that the matching succeeds. If the second label database field is not matched, it is determined that the matching fails. The above matching process conforms to the logical framework of the relational database constructed by the R&D personnel, and can quickly and accurately realize the automatic matching process of the TSP platform.
[0017] Further, the matching of the vehicle model group information with the same database vehicle model group information in the pre-constructed relational database based on the vehicle model group information and the determination of whether the matching succeeds, comprises:
[0018] The vehicle model group information and the Internet of Vehicles function adapted by the function adaptation personnel are stored into a target sub-database of the relational database, and are configured as new database vehicle model group information and database Internet of Vehicles function with a mapping relationship;
[0019] The target sub-database takes the project code in the database vehicle group information corresponding to the second vehicle group information as a first tag database field, and takes the remaining fields as second tag database fields.
[0020] The above technical solution enables the function adaptation personnel to quickly correspond to the vehicle model in the research and development stage through the project code as a keyword, and to input the Internet of Vehicles function adapted to the vehicle group information, that is, the Internet of Vehicles function adaptation is completed, and the TSP platform stores the vehicle group information and the corresponding Internet of Vehicles function in the target sub-database of the relational database, so as to enrich the relational database and provide more abundant and reliable data for the subsequent automatic adaptation process of the TSP platform.
[0021] Further, the second vehicle information further includes vehicle model, style information, and configuration information.
[0022] The vehicle group information containing the project code is generated based on the first vehicle information and the second vehicle information with the same first vehicle name and second vehicle name, and includes:
[0023] The power type of the vehicle is determined in the vehicle model, the style type of the vehicle is determined in the style information, and the configuration level of the vehicle is determined in the configuration information.
[0024] The project code is determined as the first field, and the vehicle group information of the power type, the style type, and / or the configuration level field of the vehicle is combined.
[0025] The above technical solution takes the project code identified in the first vehicle information as the first field, and takes the power type, the style type, and the configuration level obtained after the preprocessing of the vehicle model, the style information, and the configuration information in the second vehicle information through S301 as the remaining fields to form the vehicle group information, so that the vehicle group information covers the necessary characteristic fields for the subsequent automatic Internet of Vehicles function adaptation of the TSP platform and the Internet of Vehicles function adaptation of the function adaptation personnel. In addition, the fields in the vehicle group information except the project code are obtained by simplifying part of the fields in the second vehicle information, so that the vehicle group information is also relatively concise, which facilitates the subsequent automatic Internet of Vehicles function adaptation of the TSP platform and the Internet of Vehicles function adaptation of the function adaptation personnel.
[0026] Further, the second vehicle information further includes: vehicle model, style information, configuration information, and vehicle pictures.
[0027] The vehicle group information containing the project code is generated based on the first vehicle information and the second vehicle information with the same first vehicle name and second vehicle name, and includes:
[0028] determine at least one iconic area image in the vehicle picture based on the second vehicle model name, the vehicle model number, the style information, and the configuration information;
[0029] determine a vehicle model group information with the item code as a first field and the iconic area image of the vehicle.
[0030] The above technical solution takes the item code identified in the first vehicle model information as a first field and the iconic area image determined from the second vehicle model information as a remaining field to form a vehicle model group information, which is applicable to a vehicle model with obvious distinguishing features (i.e., iconic area image), that is, the distinguishing features correspond to only one specific vehicle model, facilitating subsequent TSP platform to quickly and automatically perform vehicle networking function adaptation and function adaptation personnel to intuitively and quickly perform vehicle networking function adaptation.
[0031] Further, the first vehicle model information of the bill of materials system and the second vehicle model information of the vehicle management system include:
[0032] obtain initial first vehicle model information of the bill of materials system, integrate and process the initial first vehicle model information to determine the first vehicle model information;
[0033] obtain initial second vehicle model information of the vehicle management system, integrate and process the initial second vehicle model information to determine the second vehicle model information;
[0034] The first vehicle model information takes the first vehicle model name as a first field, and the second vehicle model information takes the second vehicle model name as a first field.
[0035] The above technical solution integrates and processes the obtained multiple initial first vehicle model information to obtain the first vehicle model information with the first vehicle model name as a first field, and integrates and processes the obtained multiple initial first vehicle model information to obtain the second vehicle model information with the second vehicle model name as a first field, that is, the first vehicle model information and the second vehicle model information both take the vehicle model name as a first field, and when the first vehicle model name and the second vehicle model name are the same, it indicates that the pairing is successful, facilitating subsequent TSP platform to quickly compare the first vehicle model name and the second vehicle model name in the first vehicle model information and the second vehicle model information through the first field, and to achieve quick and accurate pairing of the first vehicle model information and the second vehicle model information.
[0036] Based on the same inventive concept, the disclosure also provides a vehicle networking function adaptation system, including a bill of materials system, a vehicle management system, and a TSP platform, wherein the bill of materials system stores first vehicle model information including matching item codes and first vehicle model names, the vehicle management system stores second vehicle model information including second vehicle model names;
[0037] The TSP platform comprises:
[0038] The acquisition module is configured to acquire first vehicle model information of a bill of materials system and second vehicle model information of a vehicle management system; wherein the first vehicle model information comprises a matching item code and a first vehicle model name, and the second vehicle model information comprises a second vehicle model name;
[0039] The vehicle model group information generation module is configured to generate vehicle model group information with the item code as a first field based on the first vehicle model information and the second vehicle model information with the same first vehicle model name and second vehicle model name.
[0040] The Internet of Vehicles function adaptation module is configured to match an Internet of Vehicles function corresponding to the vehicle model group information.
[0041] Based on the same inventive concept, the present disclosure also provides an electronic device comprising a memory, a processor, and a computer program stored on the memory and executable by the processor, wherein the processor implements the method described above when executing the computer program.
[0042] Based on the same inventive concept, the present disclosure also provides a TSP platform, which is the electronic device described above.
[0043] As can be seen from the above, the Internet of Vehicles function adaptation method, system and TSP platform provided by the present application, wherein in the method, the first vehicle model information comprising an item code and a first vehicle model name is acquired in a bill of materials system, and the second vehicle model information comprising a second vehicle model name is acquired in a vehicle management system; the first vehicle model name in the first vehicle model information and the second vehicle model name in the second vehicle model information are compared, and if the first vehicle model name and the second vehicle model name are the same, then the vehicle model group information with the item code as a first field can be generated based on the corresponding first vehicle model information and second vehicle model information. The TSP platform will automatically match the Internet of Vehicles function corresponding to the vehicle model group information based on historical matching records or a pre-constructed relationship database about the correspondence between the vehicle model group information and the Internet of Vehicles function. For the vehicle model group information that does not match the Internet of Vehicles function, it will be pushed to the function adaptation personnel for Internet of Vehicles adaptation, and no matter the automatic adaptation process of the TSP platform or the manual adaptation process of the function adaptation personnel, the item code is used as the keyword to quickly and accurately correspond to the vehicle model, so as to improve the Internet of Vehicles function adaptation efficiency. BRIEF DESCRIPTION OF DRAWINGS
[0044] In order to more clearly illustrate the technical solutions in the present application or related art, the following will briefly introduce the drawings needed to be used in the embodiments or related art description. Obviously, the drawings in the following description are only embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0045] Figure 1 Flowchart of the vehicle networking function adaptation method of the embodiment of the present application Figure 1 ;
[0046] Figure 2 Flowchart of the vehicle networking function adaptation method of the embodiment of the present application Figure 2 ;
[0047] Figure 3 Flowchart of the vehicle networking function adaptation method of the embodiment of the present application Figure 3 ;
[0048] Figure 4 Flowchart of the vehicle networking function adaptation method of the embodiment of the present application Figure 4 ;
[0049] Figure 5 Structure diagram of the vehicle networking function adaptation system of the embodiment of the present application
[0050] Figure 6 Schematic diagram of the electronic device of the embodiment of the present application. DETAILED DESCRIPTION
[0051] In order to make the objectives, technical solutions and advantages of the present application clearer, the present application will be further described in detail below with reference to specific embodiments and drawings.
[0052] It should be noted that, unless otherwise defined, the technical terms or scientific terms used in the embodiments of the present application should be understood as the general meaning understood by those skilled in the art to which the embodiments of the present application belong. The terms “first”, “second” and similar terms used in the embodiments of the present application do not represent any order, number or importance, but are only used to distinguish different components. The terms “include” or “contain” and similar terms mean that the elements or objects before the terms cover the elements or objects listed after the terms and their equivalents, and do not exclude other elements or objects. The terms “connect” or “connected” and similar terms are not limited to physical or mechanical connections, but can include electrical connections, whether direct or indirect. The terms “up”, “down”, “left”, “right” and the like only represent relative positional relationships, which may change accordingly when the absolute positions of the described objects change.
[0053] In the vehicle development process, in order to meet the individual needs of customers, the same vehicle model may give rise to multiple designs, such as different interiors, exteriors, power systems, etc. That is, the same vehicle model corresponds to multiple vehicle model information, which can be vehicle model name + vehicle model number + style information + configuration information, hereinafter referred to as vehicle model four code information, for example:
[0054] Vehicle model information in the development stage is:
[0055] 006_1234567890HEV_Basic Model-Black Interior_ABC 101 Elite Edition
[0056] The model information in the formal production stage is as follows:
[0057] L_1234567890HEV_Basic Model-Manual Transmission-Black Interior-ABC 101 Elite Edition;
[0058] L_1234567890HEV_Basic Model-Automatic Transmission-Black Interior-ABC 101 Elite Edition;
[0059] L_1234567890HEV_Basic model-Unmanned driving-Black interior_ABC 101 Elite Edition.
[0060] Take the four-digit information of the vehicle model "XXL_1234567890HEV_Basic Model-Manual Transmission-Black Interior_ABC 101 Elite Edition" as an example, where XXL is the model name, 1234567890HEV is the vehicle model, Basic Model-Manual Transmission-Black Interior is the style information, and ABC 101 Elite Edition is the configuration information.
[0061] In addition, the four-code information of different models can be adapted to different Internet of Vehicles functions, among which the Internet of Vehicles functions include: (1) Smart cockpit function: including a large-size full LCD instrument panel; (2) Voice interaction function: controlling various functions of the vehicle through voice, such as navigation, music playback, air conditioning adjustment, etc.; (3) Head-up display (HUD) function: projecting important driving information onto the windshield to improve driving safety and convenience; (4) Smart seat function: enabling the seat to have multi-directional adjustment, heating, ventilation, massage and other functions; (5) Remote control function: the owner can use the mobile phone application to remotely control the vehicle, such as locking / unlocking the door, starting the engine, adjusting the temperature settings, etc.; (6) Vehicle diagnosis and maintenance function: the Internet of Vehicles system can monitor various parameters and sensor data of the vehicle, provide timely fault alarms, and remind the owner to perform maintenance.
[0062] In the related art, the TSP platform obtains the four-code information of the vehicle model from the VMS (Vehicle Management System), and a function adaptation personnel adapts the Internet of Vehicles function for each four-code information of the vehicle model. However, since the vehicle model name is represented by the project code in the project research and development stage due to the information security requirement or the name is not determined, and the project code is converted into the formal vehicle model name in the production and sales stage, the function adaptation personnel (also the research and development personnel in the project research and development stage) has difficulty in corresponding between the vehicle model name and the project code, thereby increasing the adaptation error risk and the labor cost of the function adaptation personnel in adapting the Internet of Vehicles function based on the four-code information of the vehicle model.
[0063] However, the VMS is an integrated central platform specially designed for vehicle manufacturers, sales companies and distributors to manage the whole life cycle of the vehicle from production, procurement, sales, after-sales service to three-package warranty in an efficient and transparent manner. The project code in the vehicle research and development stage is meaningless to the VMS, and considering the security requirement, the VMS will not be provided with the project code in the vehicle research and development stage. Therefore, the VMS cannot provide the TSP platform with the project code in the vehicle research and development stage, which only exists in the GBOM (General Bill of Material) system (hereinafter referred to as “material list system”).
[0064] In order to solve the problem of the adaptation error risk and the labor cost increased due to the difficulty in corresponding between the vehicle model name and the project code, the applicant finds that the project code and the vehicle model name corresponding to the project code (i.e. the first vehicle model information in the subsequent embodiments, wherein the vehicle model name needs to be decrypted before being obtained if it is in the security state in the GBOM system) can be obtained from the GBOM system, and the four-code information of the vehicle model (i.e. the second vehicle model information in the subsequent embodiments) can be obtained from the VMS. Based on the first vehicle model information and the second vehicle model information with the same vehicle model name, the vehicle model group information containing the project code field is generated, and the TSP platform stores the historical matching record or the database about the corresponding relationship between the vehicle model group information and the Internet of Vehicles function. Therefore, the Internet of Vehicles function matched with the vehicle model group information can be automatically corresponded by taking the project code as the keyword, and the automatic adaptation of the Internet of Vehicles function is completed, thereby saving labor and improving efficiency. For the vehicle model group information that cannot match the Internet of Vehicles function in the database, the function adaptation personnel can match the vehicle model group information, and the function adaptation personnel can quickly correspond to the vehicle model in the research and development stage, thereby quickly and accurately adapting the Internet of Vehicles function.
[0065] The embodiments of the present application will be described in detail below with reference to the accompanying drawings.
[0066] In some embodiments, reference is made to Figure 1A vehicle networking function adaptation method is executed by a TSP platform, and the method comprises the following steps:
[0067] In S101, first vehicle model information of a bill of materials system and second vehicle model information of a whole vehicle management system are acquired.
[0068] The first vehicle model information comprises matched item codes and a first vehicle model name, and the second vehicle model information comprises a second vehicle model name.
[0069] The bill of materials system is a system for managing product bills of materials in the vehicle industry, for example, an engine, a rearview mirror, a radar, etc. corresponding to an item code, and after a vehicle is converted from research and development to production, the vehicle model name corresponding to the item code can be determined. The bill of materials system also stores the vehicle model name (i.e. the first vehicle model name in this embodiment) corresponding to the item code. The whole vehicle management system stores information such as a vehicle model name (i.e. the second vehicle model name in this embodiment), a whole vehicle type, style information (such as a basic version-manual transmission-black interior), configuration information (such as ABC 101 elite version), etc. The bill of materials system and the whole vehicle management system are both provided with an API interface, and the TSP platform will acquire the matched item codes and the first vehicle model name in the bill of materials system as the first vehicle model information through the API interface, and acquire the matched second vehicle model name, whole vehicle type, style information, and configuration information in the whole vehicle management system as the second vehicle model information.
[0070] In S102, first vehicle model information and second vehicle model information are generated based on the first vehicle model name being the same as the second vehicle model name, and the vehicle model group information is generated with the item code as the first field.
[0071] It should be noted that, in order to facilitate the TSP platform to automatically match the vehicle networking function based on the vehicle model group information in the subsequent steps, or the function adaptation personnel to manually match the vehicle networking function based on the vehicle model group information, this step is mainly to acquire the item code corresponding to the second vehicle model information. Therefore, the TSP platform will store the acquired first vehicle model information, and identify the second vehicle model name in the acquired second vehicle model information as a search item to search for the first vehicle model information with the same vehicle model name in the stored multiple first vehicle model information. Thus, the item code corresponding to the second vehicle model information can be acquired.
[0072] Specifically, when new second vehicle model information is stored in the TSP platform's storage database, a comparator in the storage database compares the second vehicle model name in the second vehicle model information with the first vehicle model names in the multiple stored first vehicle model information to see if they are identical. If so, vehicle model group information is generated based on the project code corresponding to the first vehicle model name and the second vehicle model information. For example, if the TSP platform obtains the second vehicle model information "XXXL_1234567890HEV_Basic Model - Manual Transmission - Black Interior - ABC 101 Elite Edition," the comparator uses the second vehicle model name "XXXL" in the second vehicle model information to search the storage database for first vehicle model information with the same model name "XXXL." If the first vehicle model information that is successfully compared is "006_XXXL," vehicle model group information is generated based on "006" and "XXXL_1234567890HEV_Basic Model - Manual Transmission - Black Interior - ABC 101 Elite Edition."
[0073] The process of generating vehicle model group information can be a simple combination process, or a combination after extracting key information. However, no matter which processing method is used, the complete project code field must be retained. In order for subsequent function matching personnel to be able to quickly and accurately match the vehicle model in the vehicle development stage, the project code field can be presented as the first field of the vehicle model group information.
[0074] S103: Matching the Internet of Vehicles function corresponding to the vehicle model group information.
[0075] In this step, the TSP platform will use the project code as at least one of the key search terms, and automatically match the Internet of Vehicles functions corresponding to the vehicle model group information based on historical matching records or a pre-built relational database about the correspondence between vehicle model group information and Internet of Vehicles functions. Vehicle model group information that is not matched with the Internet of Vehicles function will be pushed to the function adapter. The function adapter can quickly match the vehicle model in the R&D stage through the keyword "project code" and enter the Internet of Vehicles functions that are adapted to the vehicle model group information, that is, the Internet of Vehicles function adaptation is completed.
[0076] Specifically, the pre-built relational database includes database vehicle model group information and database Internet of Vehicles functions with corresponding relationships. The TSP platform can match the database vehicle model group information that is the same as the vehicle model group information in the pre-built relational database based on the vehicle model group information, and determine whether the match is successful; in response to determining that the match is successful, the database Internet of Vehicles function corresponding to the database vehicle model group information is used as the Internet of Vehicles function adapted to the vehicle model group information; in response to determining that the match fails, the corresponding Internet of Vehicles function configured by the function adaptation personnel is used as the Internet of Vehicles function adapted to the vehicle model group information.
[0077] In this embodiment, first vehicle model information including a project code and a first vehicle model name is obtained from the bill of materials system, and second vehicle model information including a second vehicle model name is obtained from the vehicle management system. The first vehicle model name in the first vehicle model information is compared with the second vehicle model name in the second vehicle model information. If the first vehicle model name and the second vehicle model name are the same, vehicle model group information including a project code field can be generated based on the corresponding first vehicle model information and second vehicle model information. The TSP platform automatically matches the vehicle model group information with the corresponding vehicle model function based on historical matching records or a pre-built relational database of the correspondence between vehicle model group information and vehicle model function. Vehicle model group information that does not match the vehicle model function will be pushed to the function adapter for vehicle model function adaptation. Whether the TSP platform's automatic adaptation process or the function adapter's manual adaptation process, the project code is used as a keyword to quickly and accurately match the vehicle model, thereby improving the efficiency of vehicle model function adaptation.
[0078] As described in the above embodiments, the pre-built relational database includes database vehicle model group information and database vehicle networking functions with corresponding relationships. The following embodiments further illustrate how to match database vehicle model group information that is identical to the vehicle model group information in the pre-built relational database based on the vehicle model group information.
[0079] In some embodiments, the vehicle group information is matched with the vehicle group information in the pre-built relational database, and it is determined whether the match is successful. Figure 2 ,include:
[0080] S201 : Identify the project code field in the vehicle model group information, and search the pre-built relational database for a primary tag database field that is identical to the project code field.
[0081] It should be noted that the pre-construction process of the relational database also uses the project code field as the first-level label database field, and stores the vehicle model information of multiple remaining fields corresponding to the project code under the first-level label database field. For example, the project code is "006", that is, 006 is the first-level label database field, and the remaining fields corresponding to 006, "1234567890HEV_Basic Model-Manual Transmission_ABC 101 Elite Edition", "1234567890HEV_Basic Model-Automatic Transmission_ABC101 Elite Edition", etc. are used as the second-level label database fields under "006".
[0082] In this step, the TSP platform first identifies the item code field in the vehicle model group information. Taking the item code field as the first field, the TSP platform directly identifies the first field in the vehicle model group information, and takes the item code represented by the first field as the search term to match the first-level tag database field in the pre-constructed relational database.
[0083] S202, in response to determining that the first-level tag database field identical to the item code field is matched, identifying the remaining fields in the vehicle model group information, and matching the second-level tag database field with the remaining fields in the sub-database with the first-level tag database field to the similarity reaching a preset value.
[0084] In this step, after locking the first-level tag database field identical to the item code, the remaining fields in the vehicle model group information are identified, and the remaining fields in the vehicle model group information are searched. For example, the remaining fields are the whole vehicle model + style information + configuration information, and the example is "1234567890HEV_ basic version - manual - black interior ABC 101 elite version". The second-level tag database field with the similarity reaching a preset value to the remaining fields is searched in the database. The preset value of the similarity can be set to 100% or 90%. For example, the first and second-level tag database fields in the relational database are "1234567890HEV_ basic version - manual - ABC 101 elite version". The similarity of the remaining fields to the second-level tag database field reaches 95%, which is greater than the preset 90%, indicating that the matching is successful.
[0085] S203, in response to determining that the second-level tag database field with the similarity reaching a preset value to the remaining fields is matched, determining that the matching is successful; in response to not matching the first-level tag database field identical to the first field, or not matching the second-level tag database field identical to the remaining fields, determining that the matching fails.
[0086] The embodiment provides a specific process of matching vehicle type group information with data in a relational database. The matching process is related to the framework of the pre-construction process of the relational database. The relational database itself is also established by a developer who is more sensitive to project codes in a vehicle development stage and unique, so that the project codes are taken as first-level tag database fields of the relational database and second-level tag database fields representing remaining fields of the vehicle type group information except the project codes are stored under the first-level tag database fields. Therefore, when the TSP platform performs automatic Internet of Vehicles function matching on generated vehicle type group information, the project codes in the vehicle type group information are identified first to quickly lock the first-level tag database fields, and the remaining fields are searched under the first-level tag database fields. If second-level tag database fields similar to the remaining fields and reaching a preset value are matched, it is considered that the matching is successful. If no second-level tag database fields are matched, it is considered that the matching fails. The matching process conforms to the logical framework of the relational database constructed by the developer and can quickly and accurately realize the automatic matching process of the TSP platform.
[0087] In some embodiments, after the corresponding Internet of Vehicles function configured by the function adaptation personnel is taken as the Internet of Vehicles function adapted to the vehicle type group information, the method further includes:
[0088] The vehicle type group information and the Internet of Vehicles function adapted by the function adaptation personnel are stored into a target sub-database of the relational database as new database vehicle type group information and database Internet of Vehicles function with a mapping relationship. The target sub-database takes the project code in the database vehicle type group information corresponding to the second vehicle type group information as a first-level tag database field and takes the remaining fields as second-level tag database fields.
[0089] In the embodiment, the function adaptation personnel can quickly correspond to the vehicle type in the development stage through the project code as a keyword and input the Internet of Vehicles function adapted to the vehicle type group information. After the Internet of Vehicles function adaptation is completed, the TSP platform stores the vehicle type group information and the corresponding Internet of Vehicles function into the target sub-database of the relational database to enrich the relational database and provide more abundant and reliable data for the subsequent automatic adaptation process of the TSP platform.
[0090] In the foregoing embodiment, it is mentioned that the vehicle type group information containing the project code can be generated based on the first vehicle type information and the second vehicle type information with the same first vehicle type name and second vehicle type name. However, the first vehicle type information specifically includes the matched project code and the first vehicle type name, and the second vehicle type information can specifically include a whole vehicle model, style information and configuration information. How to generate the vehicle type group information that enables the TSP platform or the function adaptation personnel to adapt the Internet of Vehicles function as soon as possible based on the first vehicle type information and the second vehicle type information still needs to be further solved.
[0091] To solve the above problems, in some embodiments, the first vehicle model information and the second vehicle model information based on the first vehicle model name being the same as the second vehicle model name in step S102 are used to generate vehicle group information containing the item code, and the vehicle group information is referenced Figure 3 , further comprising:
[0092] S301, determining the power type of the vehicle in the vehicle model number, determining the style type of the vehicle in the style information, and determining the configuration level of the vehicle in the configuration information.
[0093] This step provides a process for preprocessing the second vehicle model information, preparing for subsequent generation of vehicle group information. Illustratively, the vehicle model number is 1234567890HEV, the determined power type is PHEV, i.e., the power type is plug-in hybrid; the style information is "base model - manual transmission - black interior", the determined style type is "manual transmission", and the configuration information is "ABC 101 elite edition", the determined configuration information is "elite edition". The above determination process can be achieved by clustering algorithm (such as K-means) to segment the words in the text and obtain the keywords.
[0094] S302, determining the item code as the first field, and combining the vehicle group information of the power type, the style type, and the configuration level field.
[0095] Illustratively, the item code is 006, the power type is PHEV, the style type is manual transmission, and the configuration level is elite edition, then the combined vehicle group information is "006_PHEV_manual transmission_elite edition", which does not cover the vehicle model name. First, the vehicle model name is uncertain, and second, the function adaptation personnel are more sensitive to the item code than the vehicle model name, so the vehicle model name does not need to be reflected.
[0096] In this embodiment, the item code identified in the first vehicle model information is used as the first field, and the vehicle model number, style information, and configuration information identified in the second vehicle model information are used as the remaining fields after preprocessing by S301 to obtain the power type, style type, and configuration level, to form the vehicle group information. This makes the vehicle group information cover the necessary feature fields for subsequent TSP platform automatic vehicle networking function adaptation and function adaptation personnel vehicle networking function adaptation. In addition, the fields in the vehicle group information other than the item code are obtained by simplifying part of the fields in the second vehicle model information, which makes the vehicle group information also relatively refined, facilitating subsequent TSP platform quick automatic vehicle networking function adaptation and function adaptation personnel quick vehicle networking function adaptation.
[0097] The first vehicle model information and the second vehicle model information mentioned in the foregoing embodiments can be used to generate vehicle group information containing the item code based on the same first vehicle model name and second vehicle model name, but the first vehicle model information specifically includes the matching item code and the first vehicle model name, and the second vehicle model information can specifically include the vehicle model number, the style information, the configuration information, and the vehicle picture. How to generate vehicle group information that enables the TSP platform or the function adaptation personnel to quickly adapt the vehicle networking function based on the first vehicle model information and the second vehicle model information remains to be further solved.
[0098] To solve the above problems, in some embodiments, the step S102 of generating vehicle group information containing the item code based on the first vehicle model information and the second vehicle model information with the same first vehicle model name and second vehicle model name, with reference to Figure 4 , further includes:
[0099] S401, determining at least one iconic area image in the vehicle picture based on the second vehicle model name, the vehicle model number, the style information, and the configuration information;
[0100] For example, the second vehicle model name is L, the vehicle model number is 1234567890HEV, the style information is basic version-manual transmission-black interior, the configuration information is ABC 101 elite version, and the vehicle appearance photo and the interior photo. The TSP platform determines that the feature of the vehicle with the second vehicle model information is the center screen based on the above information, and then obtains and stores the center screen part in the vehicle interior photo as the iconic area image.
[0101] S402, determining the item code as the first field and combining the vehicle iconic area image to generate the vehicle group information.
[0102] It should be noted that if the vehicle group information covers the image, the relational database with the image is selected in the matching process, that is, the database vehicle group information in the relational database also covers the image information.
[0103] In this embodiment, the item code identified in the first vehicle model information is used as the first field, and the iconic area image determined from the second vehicle model information is used as the remaining field to form the vehicle group information. The vehicle group information is suitable for vehicles with obvious distinguishing features (i.e., iconic area images), that is, the distinguishing features correspond to only one specific vehicle, which facilitates the subsequent TSP platform to quickly and automatically adapt the vehicle networking function and the function adaptation personnel to intuitively and quickly adapt the vehicle networking function.
[0104] In some embodiments, the first vehicle model information of the bill of materials system and the second vehicle model information of the vehicle management system include:
[0105] The initial first vehicle model information of the bill of materials system is acquired, and the initial first vehicle model information is integrated to determine the first vehicle model information. The first vehicle model information has the first vehicle model name as a first field.
[0106] Specifically, the TSP platform acquires the paired project code and the first vehicle model name in the bill of materials system as initial first vehicle model information through an API interface, and edits the project code and the first vehicle model name as the first vehicle model information with the first vehicle model name as a first field, that is, the first vehicle model information is the first vehicle model name + project code. For example, the initial first vehicle model information is "006" "L", and the integrated first vehicle model information is "L_006". The initial second vehicle model information of the whole vehicle management system is acquired, and the initial second vehicle model information is integrated to determine the second vehicle model information. The second vehicle model information has the second vehicle model name as a first field.
[0107] Specifically, the TSP platform acquires the paired second vehicle model name, whole vehicle model number, style information, and configuration information in the whole vehicle management system as initial second vehicle model information through an API interface, and edits the initial second vehicle model information as the second vehicle model information with the second vehicle model name as a first field, that is, the second vehicle model name + whole vehicle model number + style information + configuration information. For example, the initial second vehicle model information is "L", "1234567890HEV", "base model - manual transmission - black interior", and "ABC 101 elite edition", and the integrated second vehicle model information is "L_1234567890HEV_base model - manual transmission - black interior_ABC 101 elite edition".
[0108] In this embodiment, the plurality of initial first vehicle model information acquired is integrated to obtain the first vehicle model information with the first vehicle model name as a first field, and the plurality of initial first vehicle model information acquired is integrated to obtain the second vehicle model information with the second vehicle model name as a first field, that is, the first vehicle model information and the second vehicle model information both have the vehicle model name as a first field. When the first vehicle model name and the second vehicle model name are the same, it means that the pairing is successful, which facilitates the TSP platform to quickly compare the first vehicle model name and the second vehicle model name in the first vehicle model information and the second vehicle model information through the first field, and to quickly and accurately pair the first vehicle model information and the second vehicle model information.
[0109] In some embodiments, the bill of materials system and the whole vehicle management system are provided with an API interface, the TSP platform acquires the matched item code and the first vehicle model name as the first vehicle model information in the bill of materials system through the API interface, and acquires the matched second vehicle model name, whole vehicle model, style information and configuration information as the second vehicle model information in the whole vehicle management system; the acquired first vehicle model information and second vehicle model information are stored in a message queue, and when the first vehicle model information and the second vehicle model information reach the upper limit of the number of messages in the message queue (for example, 10), the step of generating the vehicle model group information with the item code as the first field based on the first vehicle model information and the second vehicle model information with the same first vehicle model name and second vehicle model name is executed. That is, the matching process of the TSP platform is not performed in real time, but in batches, so as to avoid the occupation and waste of the data processing capacity of the TSP platform in real-time processing.
[0110] It should be noted that the method of the embodiments of the present application can be executed by a single device, such as a computer or a server. The method of the embodiments can also be applied to a distributed scenario, and completed by multiple devices cooperating with each other. In this distributed scenario, one of the multiple devices can only execute one or more steps in the method of the embodiments of the present application, and the multiple devices can interact with each other to complete the method.
[0111] It should be noted that some embodiments of the present application have been described above. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps recited in the claims can be performed in a different order than the order described above and still achieve desirable results. Additionally, the processes depicted in the figures do not necessarily require the particular order shown, or sequential order, to achieve the desired results. In certain implementations, multitasking and parallel processing can be advantageous.
[0112] Based on the same inventive concept, the present application also provides a vehicle networking function adaptation system corresponding to the method of any of the above embodiments.
[0113] Reference Figure 5 , the vehicle networking function adaptation system comprises:
[0114] The bill of materials system 501, the whole vehicle management system 502 and the TSP platform 503, wherein the bill of materials system 501 stores first vehicle model information, the first vehicle model information comprises a matched item code and a first vehicle model name, the whole vehicle management system 502 stores second vehicle model information, and the second vehicle model information comprises a second vehicle model name;
[0115] The TSP platform 503 comprises:
[0116] The acquisition module 503a is configured to acquire first vehicle model information of a bill of materials system and second vehicle model information of a whole vehicle management system; wherein the first vehicle model information comprises a matching item code and a first vehicle model name, and the second vehicle model information comprises a second vehicle model name;
[0117] The vehicle model group information generation module 503b is configured to generate vehicle model group information with the item code as a first field based on first vehicle model information and second vehicle model information with the same first vehicle model name and second vehicle model name.
[0118] The vehicle networking function adaptation module 503c is configured to match a vehicle networking function corresponding to the vehicle model group information.
[0119] Further, the vehicle networking function adaptation module 503c is further configured to:
[0120] match database vehicle model group information same as the vehicle model group information in a pre-constructed relational database based on the vehicle model group information, and determine whether the matching is successful;
[0121] in response to determining that the matching is successful, take a database vehicle networking function corresponding to the database vehicle model group information as a vehicle networking function adapted to the vehicle model group information;
[0122] in response to determining that the matching fails, take a corresponding vehicle networking function configured by a function adaptation personnel as a vehicle networking function adapted to the vehicle model group information.
[0123] Further, the vehicle networking function adaptation module 503c is further configured to:
[0124] identify an item code field in the vehicle model group information, and search for a first label database field same as the item code field in the pre-constructed relational database;
[0125] in response to determining that the first label database field same as the item code field is matched, identify remaining fields in the vehicle model group information, and match a second label database field with a similarity to the remaining fields reaching a preset value in a sub-database with the first label database field;
[0126] in response to determining that the second label database field with the similarity to the remaining fields reaching the preset value is matched, it is determined that the matching is successful; in response to not matching the first label database field same as the first field, or not matching the second label database field same as the remaining fields, it is determined that the matching fails.
[0127] Further, the vehicle networking function adaptation module 503c is further configured to:
[0128] The vehicle model group information and the Internet of Vehicles function adapted by the function adaptation personnel are stored into a target sub-database of a relational database as new database vehicle model group information and database Internet of Vehicles function with a mapping relationship.
[0129] The target sub-database takes the item code in the database vehicle model group information corresponding to the second vehicle model group information as a first tag database field, and takes the remaining fields as second tag database fields.
[0130] Further, the second vehicle model information further includes a whole vehicle model, style information and configuration information; and the vehicle model group information generation module 503b is further configured to:
[0131] determine the power type of the vehicle in the whole vehicle model, determine the style type of the vehicle in the style information, and determine the configuration level of the vehicle in the configuration information.
[0132] determine the item code as the first field, and combine the vehicle model group information of the power type, the style type and the configuration level.
[0133] Further, the second vehicle model information further includes a whole vehicle model, style information, configuration information and vehicle pictures; and the vehicle model group information generation module 503b is further configured to:
[0134] The vehicle model group information containing the item code is generated based on the first vehicle model information and the second vehicle model information with the same first vehicle model name and second vehicle model name, and includes:
[0135] determining at least one landmark area image in the vehicle pictures based on the second vehicle model name, the whole vehicle model, the style information and the configuration information.
[0136] determining the item code as the first field, and combining the vehicle model group information of the landmark area image of the vehicle.
[0137] Further, the acquisition module 503a is further configured to:
[0138] acquire initial first vehicle model information of a bill of materials system, and determine the first vehicle model information based on the initial first vehicle model information.
[0139] acquire initial second vehicle model information of a whole vehicle management system, and determine the second vehicle model information based on the initial second vehicle model information.
[0140] The first vehicle model information takes the first vehicle model name as the first field; and the second vehicle model information takes the second vehicle model name as the first field.
[0141] Based on the same inventive concept, the application also provides an electronic device corresponding to the method of any of the above embodiments, comprising a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the program to implement the vehicle networking function adaptation method of any of the above embodiments.
[0142] Figure 6 A more specific hardware structure of an electronic device is shown, which can include a processor 1010, a memory 1020, an input / output interface 1030, a communication interface 1040, and a bus 1050. The processor 1010, the memory 1020, the input / output interface 1030, and the communication interface 1040 are connected to each other through the bus 1050 for communication within the device.
[0143] The processor 1010 can be implemented by a general-purpose CPU (Central Processing Unit), a microprocessor, an ASIC (Application Specific Integrated Circuit), or one or more integrated circuits, etc., for executing related programs to implement the technical solutions provided by the embodiments of the present specification.
[0144] The memory 1020 can be implemented by a ROM (Read Only Memory), a RAM (Random Access Memory), a static storage device, a dynamic storage device, etc. The memory 1020 can store an operating system and other application programs, and when the technical solutions provided by the embodiments of the present specification are implemented by software or firmware, the related program codes are stored in the memory 1020 and executed by the processor 1010.
[0145] The input / output interface 1030 is used to connect input / output modules to realize information input and output. The input / output modules can be configured as components in the device (not shown in the figure) or externally connected to the device to provide corresponding functions. The input device can include a keyboard, a mouse, a touch screen, a microphone, various sensors, etc., and the output device can include a display, a speaker, a vibrator, an indicator light, etc.
[0146] The communication interface 1040 is used to connect the communication module (not shown in the figure) to realize the communication interaction between the device and other devices. The communication module can realize communication through wired means (such as USB, network cable, etc.) or through wireless means (such as mobile network, WFI, Bluetooth, etc.).
[0147] Bus 1050 includes a path for transferring information between the various components (e.g., processor 1010, memory 1020, input / output interface 1030, and communication interface 1040) of the device.
[0148] It should be noted that although the above device only shows the processor 1010, the memory 1020, the input / output interface 1030, the communication interface 1040 and the bus 1050, but in the specific implementation process, the device can also include other components necessary for normal operation. In addition, those skilled in the art can understand that the above device can also only contain the components necessary to implement the embodiments of the present application, and does not have to contain all the components shown in the figure.
[0149] The electronic device of the above embodiment is used to implement the corresponding vehicle networking function adaptation method in any of the preceding embodiments, and has the beneficial effects of the corresponding method embodiments, which are not repeated here.
[0150] Based on the same inventive concept, corresponding to any of the above embodiment methods, the present application also provides a non-transitory computer readable storage medium, which stores computer instructions for causing the computer to execute the vehicle networking function adaptation method according to any of the above embodiments.
[0151] The computer readable medium of the present embodiment includes permanent and non-permanent, removable and non-removable media, which can be realized by any method or technology to store information. The information can be computer readable instructions, data structures, program modules or other data. Examples of computer storage media include, but are not limited to, phase change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technologies, compact disc read-only memory (CD-ROM), digital versatile disc (DVD) or other optical storage, magnetic cassette, magnetic tape disk storage or other magnetic storage devices, or any other non-transmission medium that can be used to store information accessible by a computing device.
[0152] The computer instructions stored in the storage medium of the above embodiment are used to cause the computer to execute the vehicle networking function adaptation method according to any of the above embodiments, and have the beneficial effects of the corresponding method embodiments, which are not repeated here.
[0153] It can be understood that before using the technical solutions of various embodiments in the present disclosure, the user will be informed of the type, use range, use scenario, etc. of the personal information involved in a proper manner, and the authorization of the user will be obtained.
[0154] For example, in response to receiving the active request of the user, the user is sent prompt information to explicitly prompt the user that the operation requested to be performed will require obtaining and using personal information of the user. Thus, the user can autonomously select whether to provide the personal information to the software or hardware, such as an electronic device, an application program, a server, or a storage medium, performing the operation of the technical solution of the present disclosure according to the prompt information.
[0155] As an optional but non-limiting implementation manner, in response to receiving the active request of the user, the manner of sending the prompt information to the user may, for example, be a pop-up window manner, and the prompt information may be presented in the pop-up window in the form of text. In addition, the pop-up window may also carry a selection control for the user to select to "agree" or "disagree" to provide the personal information to the electronic device.
[0156] It can be understood that the above notification and obtaining of the authorization of the user are only illustrative, and do not limit the implementation manners of the present disclosure, and other manners meeting the relevant laws and regulations can also be applied to the implementation manners of the present disclosure.
[0157] It should be understood by those of ordinary skill in the art that the above discussion of any embodiment is merely exemplary and is not intended to suggest that the scope of the application (including claims) is limited to these examples; under the idea of the present application, the above embodiments or technical features in different embodiments can also be combined, the steps can be implemented in any order, and there are many other changes of different aspects of the embodiments of the present application as described above, which are not provided in detail for the sake of brevity.
[0158] In addition, in order to simplify the description and discussion, and so as not to make the embodiments of the present application difficult to understand, the well-known power / ground connections of integrated circuit (IC) chips and other components can or can not be shown in the provided drawings. In addition, the devices can be shown in the form of block diagrams in order to avoid making the embodiments of the present application difficult to understand, and this also takes into account the fact that the details of the implementation of these block diagram devices are highly dependent on the platform on which the embodiments of the present application are to be implemented (i.e., these details should be fully within the understanding of those skilled in the art). Where specific details (e.g., circuitry) are set forth in order to describe an illustrative embodiment of the present application, it will be apparent to those skilled in the art that the present application can be practiced without these specific details or with an implementation varying from these specific details. Therefore, these descriptions should be considered as illustrative rather than limiting.
[0159] While the present application has been described in connection with certain embodiments thereof, many modifications, substitutions, changes, and of forms will be apparent to those of ordinary skill in the art from the foregoing description. For example, other memory architectures (e.g., dynamic RAM (DRAM)) can use the embodiments discussed.
[0160] Embodiments of the present application are intended to cover all such alterations, modifications, and variations as they can come within the scope of the appended claims. Accordingly, although specific embodiments have been furthered in connection with the present application, any omission, substitution, or change, in principle and in form, made to the present application should be included in the scope of the present application.
Claims
1. A method for adapting V2X functions, characterized in that, The method comprises: Obtaining first vehicle model information of a bill of materials system and second vehicle model information of a vehicle management system; wherein the first vehicle model information comprises a matching item code and a first vehicle model name, and the second vehicle model information comprises a second vehicle model name; Based on the first vehicle model information and the second vehicle model information with the same first vehicle model name and second vehicle model name, generating vehicle group information with the item code as the first field; Based on the vehicle group information, matching database vehicle group information identical to the vehicle group information in a pre-built relational database, and determining whether the matching is successful; in response to determining that the matching is successful, taking the database Internet of Vehicles function corresponding to the database vehicle group information as the Internet of Vehicles function adapted to the vehicle group information.
2. The method of claim 1, wherein, The method further comprises: In response to determining that the matching fails, taking the corresponding Internet of Vehicles function configured by a function adaptation personnel as the Internet of Vehicles function adapted to the vehicle group information.
3. The method of claim 1, wherein, The matching of the vehicle group information in the pre-built relational database and the determination of whether the matching is successful comprise: Identifying the item code field in the vehicle group information, and searching for a first-level tag database field identical to the item code field in the pre-built relational database; In response to determining that the first-level tag database field identical to the item code field is matched, identifying the remaining fields in the vehicle group information, and matching a second-level tag database field with a similarity to the remaining fields reaching a preset value in a sub-database with the first-level tag database field; In response to determining that the second-level tag database field with a similarity to the remaining fields reaching the preset value is matched, determining that the matching is successful.
4. The method of claim 3, wherein, Further comprising: Storing the vehicle group information and the Internet of Vehicles function adapted by the function adaptation personnel into a target sub-database of the relational database, and taking them as new database vehicle group information and database Internet of Vehicles function with a mapping relationship; Wherein, the target sub-database takes the item code in the database vehicle group information corresponding to the second vehicle group information as the first-level tag database field, and takes the remaining fields as the second-level tag database field; Wherein, the second vehicle group information is the vehicle group information adapted by the function adaptation personnel.
5. The method of claim 1, wherein, The second vehicle model information further comprises vehicle model number, style information, and configuration information; The generation of the vehicle group information containing the item code based on the first vehicle model information and the second vehicle model information with the same first vehicle model name and second vehicle model name comprises: Determining the power type of the vehicle in the vehicle model number, determining the style type of the vehicle in the style information, and determining the configuration level of the vehicle in the configuration information; Determining the vehicle group information with the item code as the first field, and combining the power type, the style type, and / or the configuration level field of the vehicle.
6. The method of claim 1, wherein, The second vehicle model information further comprises vehicle model number, style information, configuration information, and vehicle pictures; The generation of the vehicle group information containing the item code based on the first vehicle model information and the second vehicle model information with the same first vehicle model name and second vehicle model name comprises: determine at least one iconic area image in the vehicle picture based on the second vehicle model name, the vehicle model number, the style information, and the configuration information; determine a vehicle model group information field with the item code as the first field and combine the iconic area image of the vehicle.
7. The method of claim 1, wherein, The first vehicle model information of the bill of materials system and the second vehicle model information of the vehicle management system include: obtain initial first vehicle model information of the bill of materials system, and perform integration processing on the initial first vehicle model information to determine the first vehicle model information; obtain initial second vehicle model information of the vehicle management system, and perform integration processing on the initial second vehicle model information to determine the second vehicle model information; The first vehicle model information has the first vehicle model name as the first field, and the second vehicle model information has the second vehicle model name as the first field. 8.A system for V2X function adaptation, characterized in that, It includes: a bill of materials system, a vehicle management system, and a TSP platform, wherein the bill of materials system stores first vehicle model information including matching item codes and first vehicle model names, and the vehicle management system stores second vehicle model information including second vehicle model names; The TSP platform includes: an acquisition module configured to acquire first vehicle model information of a bill of materials system and second vehicle model information of a vehicle management system; wherein the first vehicle model information includes matching item codes and first vehicle model names, and the second vehicle model information includes second vehicle model names; a vehicle model group information generation module configured to generate a vehicle model group information field with the item code as the first field based on first vehicle model information and second vehicle model information with the same first vehicle model name and second vehicle model name; a vehicle networking function adaptation module configured to match database vehicle model group information identical to the vehicle model group information in a pre-constructed relational database based on the vehicle model group information, and determine whether the matching is successful; in response to determining that the matching is successful, the database vehicle networking function corresponding to the database vehicle model group information is determined as a vehicle networking function adapted to the vehicle model group information.
9. An electronic device comprising a memory, a processor, and a computer program stored on the memory and running on the processor, characterized in that, The processor implements the method of any one of claims 1 to 7 when executing the program.
10. A TSP platform comprising the electronic device of claim 9.
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