Vehicle engineering configuration table acquisition method and device, equipment and storage medium
By automatically acquiring configuration dictionary data and engineering configuration tables from vehicle identification information, the problem of high resource consumption caused by manual selection in existing technologies is solved, and efficient and automated configuration table compilation is achieved.
Patent Information
- Application Number
- CN202211167955.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-09-23
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2042-09-23
AI Technical Summary
In existing technologies, compiling vehicle engineering configuration tables requires manual selection of configuration dictionary data and engineering configuration tables from a large amount of data, resulting in a high consumption of human resources.
By acquiring vehicle identification information, configuration dictionary data and engineering configuration tables are automatically obtained, and a second engineering configuration table is automatically compiled using the identification information, reducing manual intervention.
It enables automatic acquisition of configuration dictionary data and project configuration tables, reducing manpower consumption and improving acquisition and compilation efficiency.
Smart Images

Figure CN115481614B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of automobiles and computers, in particular to a vehicle engineering configuration table acquisition method and device, equipment and a storage medium. BACKGROUND
[0002] With the development of industrialization, the electrification, intelligentization and networking of automobiles are also developing rapidly, and the vehicle configurations are also increasing.
[0003] Currently, in the related art, when a new vehicle is added, an engineering configuration table needs to be prepared for the new vehicle according to the configuration information of the new vehicle. For example, when preparing the engineering configuration table for the new vehicle, a configuration management engineer determines an initial engineering configuration table of the new vehicle from a plurality of candidate engineering configuration tables according to the configuration information, and obtains the configuration dictionary data required for preparation from the configuration dictionary data, and then prepares the initial engineering configuration table based on the obtained configuration dictionary data to obtain the final engineering configuration table of the new vehicle.
[0004] However, in the above related art, the initial engineering configuration table and the required configuration dictionary data need to be manually selected and obtained from a large amount of data, which consumes a lot of human resources. SUMMARY
[0005] The embodiments of the present application provide a vehicle engineering configuration table acquisition method, device, equipment and storage medium, provide an automatic acquisition method of configuration dictionary data and a first engineering configuration table, and reduce the consumption of human resources. The technical solution is as follows:
[0006] In one aspect, the embodiments of the present application provide a vehicle engineering configuration table acquisition method, which comprises:
[0007] obtaining identification information of a first vehicle;
[0008] obtaining configuration dictionary data and a first engineering configuration table of the first vehicle according to the identification information of the first vehicle; wherein the configuration dictionary data of the first vehicle is used to store the configuration characteristics and characteristic parameters corresponding to the first vehicle, and the first engineering configuration table of the first vehicle is used to record the correspondence between the initial configuration characteristics and characteristic parameters of the first vehicle;
[0009] obtaining a second engineering configuration table prepared for the first vehicle based on the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle; wherein the second engineering configuration table of the first vehicle is used to record the correspondence between the final configuration characteristics and characteristic parameters of the first vehicle.
[0010] In another aspect, an embodiment of the present application provides a device for obtaining a vehicle engineering configuration table, the device comprising:
[0011] an identification obtaining module configured to obtain identification information of a first vehicle;
[0012] a data obtaining module configured to obtain configuration dictionary data of the first vehicle and a first engineering configuration table of the first vehicle according to the identification information of the first vehicle, wherein the configuration dictionary data of the first vehicle is configured to store configuration features and feature parameters corresponding to the first vehicle, and the first engineering configuration table of the first vehicle is configured to record a correspondence between initial configuration features and feature parameters of the first vehicle;
[0013] a data compiling module configured to obtain a second engineering configuration table compiled for the first vehicle based on the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle, wherein the second engineering configuration table of the first vehicle is configured to record a correspondence between final configuration features and feature parameters of the first vehicle.
[0014] In yet another aspect, an embodiment of the present application provides a computer device, comprising a processor and a memory, wherein the memory stores a computer program, the computer program is loaded and executed by the processor to implement the above-mentioned method for obtaining a vehicle engineering configuration table.
[0015] In yet another aspect, an embodiment of the present application provides a computer readable storage medium, wherein the readable storage medium stores a computer program, the computer program is loaded and executed by the processor to implement the above-mentioned method for obtaining a vehicle engineering configuration table.
[0016] In yet another aspect, a computer program product is provided, when the computer program product is run on a computer device, the computer program product causes the computer device to execute the above-mentioned method for obtaining a vehicle engineering configuration table.
[0017] The technical solution provided by the embodiments of the present application can bring the following beneficial effects:
[0018] The configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle are obtained through the identification information of the first vehicle, on the basis of automatically obtaining the configuration dictionary data and the first engineering configuration table, the second engineering configuration table compiled for the first vehicle based on the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle is obtained, which provides an automatic obtaining method of the configuration dictionary data and the first engineering configuration table, without manually selecting the configuration dictionary data and the first engineering configuration table from a large amount of data, thereby reducing the consumption of human resources and improving the efficiency of obtaining the configuration dictionary data and the first engineering configuration table, and further improving the compiling efficiency of the second engineering configuration table. BRIEF DESCRIPTION OF DRAWINGS
[0019] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed to be used in the embodiment description will be briefly introduced. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative effort based on these drawings.
[0020] Figure 1 is a schematic diagram of a vehicle engineering configuration table processing system provided by an embodiment of the present application;
[0021] Figure 2 is a schematic diagram of a vehicle engineering configuration table processing system;
[0022] Figure 3 is a flowchart of a vehicle engineering configuration table acquisition method provided by an embodiment of the present application;
[0023] Figure 4 is a flowchart of a vehicle engineering configuration table acquisition method provided by another embodiment of the present application;
[0024] Figure 5 is a flowchart of a vehicle engineering configuration table acquisition method provided by another embodiment of the present application;
[0025] Figure 6 is a schematic diagram of a flow of a vehicle engineering configuration table acquisition method;
[0026] Figure 7 is a block diagram of a vehicle engineering configuration table acquisition apparatus provided by an embodiment of the present application;
[0027] Figure 8 is a block diagram of a vehicle engineering configuration table acquisition apparatus provided by another embodiment of the present application;
[0028] Figure 9 is a structural block diagram of a computer device provided by an embodiment of the present application. DETAILED DESCRIPTION
[0029] In order to make the purpose, technical solutions and advantages of the present application more clear, the embodiments of the present application will be further described in detail with reference to the drawings.
[0030] Reference is made to Figure 1 , which shows a schematic diagram of a vehicle engineering configuration table processing system provided by an embodiment of the present application. The vehicle engineering configuration table processing system can include a terminal device 10 and a server 20.
[0031] The terminal device 10 can be an electronic device such as a mobile phone, a tablet computer, a PC (Personal Computer), and the like, and embodiments of the present application are not limited thereto. In some embodiments, the terminal device 10 includes any application program having a function of compiling an engineering configuration table. The application program can be an application program that needs to be downloaded and installed, or can be a small program that is ready to use, and embodiments of the present application are not limited thereto.
[0032] The server 20 is configured to provide a background service for the terminal device 10. The server 20 can be a server, a server cluster composed of multiple servers, or a cloud computing service center. In some embodiments, the server 20 can be a background server of a client of the above-mentioned application program. In an exemplary embodiment, the server 20 provides a background service for multiple terminal devices 10.
[0033] The terminal device 10 and the server 20 can communicate with each other through a network.
[0034] In some embodiments, the server 20 comprises an engineering configuration table compiling block. In some embodiments, the terminal device 10 sends a starting instruction to the server 20 in case of detecting the starting instruction for the engineering configuration table compiling block, and the server 20 starts the engineering configuration table compiling block. Correspondingly, the engineering configuration table compiling block obtains the identification information of the first vehicle through the terminal device 10 after being started. Then, the engineering configuration table compiling block obtains the first engineering configuration table of the first vehicle from the database according to the identification information of the first vehicle, and obtains the configuration dictionary data of the first vehicle from the configuration dictionary data downloaded from the server 20 according to the identification information of the first vehicle. Then, the engineering configuration table compiling block sends the first engineering configuration table of the first vehicle and the configuration dictionary data of the first vehicle to the terminal device 10. Then, the terminal device 10 imports the first engineering configuration table of the first vehicle and the configuration dictionary data of the first vehicle into the compiling tool to obtain the second engineering configuration table compiled for the first vehicle, and stores the second engineering configuration table of the first vehicle in the database. In some embodiments, the server 20 further comprises an engineering configuration table checking block and an engineering configuration table comparing block. In case of detecting the checking operation of the second engineering configuration table of the first vehicle, the terminal device 10 informs the server 20 to start the engineering configuration table checking block, and the engineering configuration table checking block checks the second engineering configuration table of the first vehicle to obtain the checking result of the second vehicle. In case of detecting the comparing operation of the second engineering configuration table of the first vehicle, the terminal device 10 starts the engineering configuration table comparing block through the server 20, and the engineering configuration table comparing block compares the second engineering configuration table of the first vehicle to obtain the difference information between the first vehicle and other vehicles. In some embodiments, the engineering configuration table compiling block, the engineering configuration table checking block and the engineering configuration table comparing block can be collectively referred to as an engineering configuration table processing block. The database can be stored in the server 20 or other electronic devices, which is not limited in the embodiments of the present application.
[0035] It should be noted that the above Figure 2 are only exemplary and explanatory, and in the exemplary embodiments, the functions of the terminal device 10 and the server 20 can be flexibly set and adjusted, which is not limited in the embodiments of the present application. For example, the engineering configuration table compiling device is arranged in the terminal device 10 under the condition that the load is allowed.
[0036] Please refer to Figure 3 , which shows a flowchart of a method for obtaining a vehicle engineering configuration table provided by an embodiment of the present application. The method can be applied to Figure 1The terminal device 10 and / or the server 20 of the vehicle engineering configuration table processing system, as the execution subject of each step, can be the terminal device 10 and / or the server 20 (hereinafter collectively referred to as a computer device). The method can include at least one of the following steps (301-303):
[0037] Step 301, obtaining the identification information of the first vehicle.
[0038] The identification information of the first vehicle is used to indicate the first vehicle. For example, the identification information of the first vehicle includes a unique mark of the first vehicle. In the embodiment of the present application, the computer device obtains the identification information of the first vehicle before preparing the engineering configuration table for the first vehicle.
[0039] In some embodiments, the above-mentioned identification information of the first vehicle can be provided manually by the user to the computer device, or can be automatically generated by the computer device, and the present application does not limit this.
[0040] In one possible implementation, the above-mentioned identification information of the first vehicle is manually provided by the user to the computer device. In some embodiments, the user inputs the identification information of the first vehicle through a visual interface, and the computer device correspondingly obtains the identification information of the first vehicle. For example, the above-mentioned user can be a configuration management engineer of the first vehicle.
[0041] In another possible implementation, the above-mentioned identification information of the first vehicle is automatically generated by the computer device. In some embodiments, when the computer device determines to prepare the second engineering configuration table for the first vehicle, it automatically obtains the related information of the first vehicle, and generates the identification information of the first vehicle according to the related information. For example, the above-mentioned related information of the first vehicle includes the configuration information of the first vehicle, that is, the computer device can automatically generate the corresponding identification information of the first vehicle according to the configuration information of the first vehicle.
[0042] Step 302, obtaining the configuration dictionary data and the first engineering configuration table of the first vehicle according to the identification information of the first vehicle.
[0043] In the embodiments of the present application, after the computer device obtains the identification information of the first vehicle, the computer device obtains the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle according to the identification information of the first vehicle. The configuration dictionary data of the first vehicle is used to store the configuration characteristics and characteristic parameters corresponding to the first vehicle, and the first engineering configuration table of the first vehicle is used to record the correspondence between the initial configuration characteristics and characteristic parameters of the first vehicle. For example, the configuration characteristics and characteristic parameters stored in the configuration dictionary data of the first vehicle are used to modify the first engineering configuration table of the first vehicle to generate a second engineering configuration table of the first vehicle. For example, the first engineering configuration table can also be referred to as an initial engineering configuration table.
[0044] In some embodiments, after the computer device obtains the identification information of the first vehicle, the computer device compiles the identification information of the first vehicle into an interface file, and then calls the interface file by a file calling interface to obtain the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle.
[0045] In a possible implementation, the identification information of the first vehicle further includes configuration dictionary identification information and engineering configuration table identification information. In some embodiments, after the computer device obtains the identification information of the first vehicle, the computer device obtains the configuration dictionary identification information and the engineering configuration table identification information from the identification information, and further obtains the configuration dictionary data of the first vehicle based on the configuration dictionary identification information and obtains the first engineering configuration table of the first vehicle based on the engineering configuration table identification information.
[0046] In another possible implementation, the identification information of the first vehicle includes configuration dictionary identification information and a unique mark of the first vehicle. In some embodiments, after the computer device obtains the identification information of the first vehicle, the computer device obtains the configuration dictionary identification information and the unique mark of the first vehicle from the identification information. For example, the unique mark of the first vehicle is generated according to the configuration information of the first vehicle, and the computer device determines a second vehicle associated with the first vehicle according to the unique mark of the first vehicle. In some embodiments, the second vehicle refers to a vehicle having similar configuration information as the first vehicle, and after the computer device obtains the unique mark of the first vehicle, the computer device determines the vehicle with the highest similarity to the configuration information of the first vehicle as the second vehicle based on the configuration information indicated by the unique mark and takes the unique mark as a reference to traverse the unique marks of other vehicles. In some embodiments, after the computer device obtains the second vehicle, the computer device determines the second engineering configuration table of the second vehicle as the first engineering configuration table of the first vehicle. In some embodiments, after the computer device obtains the configuration dictionary identification information, the computer device obtains the configuration dictionary data of the first vehicle based on the configuration dictionary identification information.
[0047] In some embodiments, the computer device can obtain the configuration dictionary data of the first vehicle from a database or from the configuration dictionary data downloaded from a local server when obtaining the configuration dictionary data of the first vehicle. The local server can be the computer device or another device, and the embodiments of the present application do not limit the local server.
[0048] In some embodiments, the computer device can obtain the first engineering configuration table of the first vehicle from a database or from a Bill of Material (Bom) management system when obtaining the first engineering configuration table of the first vehicle.
[0049] In step 303, a second engineering configuration table for the first vehicle is prepared based on the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle.
[0050] In the embodiments of the present application, after obtaining the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle, the computer device obtains a second engineering configuration table for the first vehicle based on the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle. The second engineering configuration table of the first vehicle is used to record the correspondence between the final configuration characteristics and feature parameters of the first vehicle. The second engineering configuration table can be referred to as a final engineering configuration table.
[0051] In some embodiments, the second engineering configuration table can be prepared by a user based on the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle, or can be automatically prepared by the computer device based on the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle, and the embodiments of the present application do not limit the second engineering configuration table.
[0052] In a possible implementation, the second engineering configuration table is prepared by a user based on the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle. In some embodiments, after obtaining the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle, the computer device clears the local cache data, imports the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle into a preparation block, and prepares the second engineering configuration table for the first vehicle in the preparation block by the user. The local cache data refers to the residual data when the second engineering configuration table is prepared last time.
[0053] In another possible implementation, the second engineering configuration table is automatically compiled by the computer device based on the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle. In some embodiments, after obtaining the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle, the computer device imports the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle into the automatic compilation section, and automatically compiles the corresponding second engineering configuration table for the first vehicle by the automatic compilation section.
[0054] To sum up, in the technical solution provided by the embodiments of the present application, the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle are obtained based on the identification information of the first vehicle, and the second engineering configuration table for the first vehicle is obtained based on the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle, which provides an automatic acquisition method for the configuration dictionary data and the first engineering configuration table, and reduces the consumption of human resources and improves the acquisition efficiency of the configuration dictionary data and the first engineering configuration table, thereby improving the compilation efficiency of the second engineering configuration table from the side.
[0055] Next, the acquisition method of the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle is introduced.
[0056] In the example embodiments, the step 302 includes at least one of the following steps:
[0057] 1. Determine a second vehicle associated with the first vehicle according to the identification information of the first vehicle.
[0058] In the embodiments of the present application, after obtaining the identification information of the first vehicle, the computer device determines a second vehicle associated with the first vehicle according to the identification information of the first vehicle.
[0059] In some embodiments, the second vehicle refers to a vehicle having similar configuration information with the first vehicle. For example, the identification information of the first vehicle is compiled according to the configuration information of the first vehicle, i.e., the identification information of the first vehicle can indicate the configuration information of the first vehicle. After obtaining the identification information of the first vehicle, the computer device takes the identification information of the first vehicle as a reference to traverse the identification information of other vehicles, obtains the configuration information similarity of each other vehicle relative to the first vehicle, and then determines the other vehicle with the highest configuration information similarity as the second vehicle.
[0060] 2. Determine the second engineering configuration table of the second vehicle as the first engineering configuration table of the first vehicle.
[0061] In the embodiments of the present application, after obtaining the second vehicle, the computer device determines the second engineering configuration table of the second vehicle as the first engineering configuration table of the first vehicle. The second engineering configuration table of the second vehicle is used to record the correspondence between the final configuration characteristics and characteristic parameters of the second vehicle.
[0062] In some embodiments, after obtaining the second vehicle, the computer device obtains the second engineering configuration table of the second vehicle from the database according to the identification information of the second vehicle. The database includes the second engineering configuration table of at least one vehicle. Then, in the case that the second engineering configuration table of the second vehicle exists in the database, the second engineering configuration table of the second vehicle is determined as the first engineering configuration table of the first vehicle; in the case that the second engineering configuration table of the associated vehicle does not exist in the database, the first prompt information is sent to the configuration client, wherein the first prompt information is used to prompt that the first engineering configuration table of the first vehicle is not successfully obtained. Exemplarily, the configuration client can be a client used by the user (such as a configuration management engineer). After obtaining the first prompt information, the configuration client displays the first prompt information to the user, and further, the user manually adjusts the identification information of the first vehicle according to the first prompt information to obtain the first engineering configuration table of the first vehicle.
[0063] 3. Obtain the configuration dictionary data of the first vehicle based on the identification information of the first vehicle.
[0064] The configuration dictionary data of the first vehicle refers to the configuration dictionary data required when the second engineering configuration table of the first vehicle is compiled. In the embodiments of the present application, after obtaining the identification information of the first vehicle, the computer device obtains the configuration dictionary data of the first vehicle based on the identification information of the first vehicle. In some embodiments, the configuration dictionary data of the first vehicle can also be referred to as local configuration dictionary data. Exemplarily, the computer device obtains the configuration dictionary data of the first vehicle from the global configuration dictionary data downloaded from the server. The global configuration dictionary data refers to the configuration dictionary data applicable to various vehicles, and the computer device obtains the local configuration dictionary data corresponding to the first vehicle from the global configuration dictionary data when compiling the second engineering configuration table of the first vehicle. The local configuration dictionary data is the configuration dictionary data of the first vehicle.
[0065] In a possible implementation, the identification information of the first vehicle includes configuration dictionary identification information. In some embodiments, after obtaining the identification information of the first vehicle, the computer device obtains the configuration dictionary data of the first vehicle from the configuration dictionary data downloaded from the server based on the configuration dictionary identification information in the identification information of the first vehicle.
[0066] In another possible implementation, the identification information of the first vehicle is written according to configuration information of the first vehicle and configuration dictionary identification information. In some embodiments, after obtaining the identification information of the first vehicle, the computer device obtains the configuration dictionary data of the first vehicle from the configuration dictionary data downloaded by the server according to the configuration dictionary identification information indicated by the identification information of the first vehicle.
[0067] In some embodiments, the configuration dictionary data downloaded by the server can be manually updated by a person or automatically updated by a computer device.
[0068] In summary, in the technical solution provided by the embodiments of the present application, the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle are obtained through the identification information of the first vehicle, an automatic obtaining manner of the configuration dictionary data and the first engineering configuration table is provided, and the obtaining efficiency of the configuration dictionary data and the first engineering configuration table is improved. Moreover, the second engineering configuration table of the second vehicle associated with the first vehicle is determined as the first engineering configuration table of the first vehicle, and the second vehicle has similar configuration information with the first vehicle, i.e., the second engineering configuration table of the second vehicle is similar to the first engineering configuration table of the first vehicle. The second engineering configuration table of the second vehicle is used as the first engineering configuration table of the first vehicle, in the process of compiling the second engineering configuration table of the first vehicle, the modification operation of the first engineering configuration table of the first vehicle is reduced, and the compiling efficiency of the second engineering configuration table of the first vehicle is improved. In addition, in the case that the first engineering configuration table of the first vehicle cannot be obtained through the database, prompt information is sent to the configuration client in time to prompt the user to process the identification information of the first vehicle in time.
[0069] Next, the obtaining manner of the second engineering configuration table of the first vehicle is introduced.
[0070] In the exemplary embodiments, the step 303 includes at least one of the following steps:
[0071] 1. Obtain the conceptual configuration table of the first vehicle;
[0072] 2. Obtain the to-be-modified data of the first vehicle from the configuration dictionary data of the first vehicle based on the conceptual configuration table;
[0073] 3. Modify the first engineering configuration table of the first vehicle according to the to-be-modified data to obtain the second engineering configuration table of the first vehicle.
[0074] The concept configuration table is used to record configuration information of the first vehicle. In some embodiments, the concept configuration table is written by a user according to actual conditions for the first vehicle. In the embodiments of the present application, after the computer device acquires the first engineering configuration table of the first vehicle and the configuration dictionary data of the first vehicle, the computer device acquires the concept configuration table of the first vehicle, and acquires the to-be-modified data of the first vehicle from the configuration dictionary data of the first vehicle based on the concept configuration table, and then modifies the first engineering configuration table of the first vehicle according to the to-be-modified data to obtain the second engineering configuration table of the first vehicle.
[0075] In a possible implementation, when modifying the first engineering configuration table, in a case where the first engineering configuration table of the first vehicle includes the target configuration feature indicated by the to-be-modified data, the computer device replaces the feature parameter corresponding to the target configuration feature in the first engineering configuration table of the first vehicle with the feature parameter corresponding to the target configuration feature in the to-be-modified data, and then generates the second engineering configuration table of the first vehicle.
[0076] In another possible implementation, when modifying the first engineering configuration table, in a case where the first engineering configuration table of the first vehicle does not include the target configuration feature indicated by the to-be-modified data, the computer device adds the correspondence between the target configuration feature and the feature parameter in the to-be-modified data in the first engineering configuration table of the first vehicle, and then generates the second engineering configuration table of the first vehicle.
[0077] It should be noted that the above introduction of the modification method of the first engineering configuration table is only exemplary and explanatory, and in the exemplary embodiments, the first engineering configuration table can be modified flexibly according to actual conditions. For example, the to-be-modified data includes a first target configuration feature and a second target configuration feature, and the first engineering configuration table includes the first target configuration feature but does not include the second target configuration feature. When modifying, the feature parameter corresponding to the first target configuration feature in the to-be-modified data is used to replace the feature parameter corresponding to the first target configuration feature in the first engineering configuration table, and the correspondence between the second target configuration feature and the feature parameter in the to-be-modified data is added in the first engineering configuration table, so as to generate the second engineering configuration table of the first vehicle.
[0078] In some embodiments, there is an association relationship between the configuration features. In the case where the target configuration feature in the first engineering configuration table of the first vehicle changes, the computer device acquires the associated configuration feature corresponding to the target configuration feature, and modifies the feature parameter corresponding to the associated configuration feature according to the to-be-modified information. Wherein, the feature parameter of the associated configuration feature changes with the feature parameter of the target configuration feature. Illustratively, the computer device includes a configuration constraint package for indicating the association relationship between the configuration features. In the case where the computer device detects that the feature parameter of the target configuration feature in the first engineering configuration table of the first vehicle changes, the computer device determines the associated configuration feature based on the configuration constraint package, and prompts the user to adjust the feature parameter of the associated configuration feature. In some embodiments, the configuration constraint package can be updated, deleted, applied to sorting, etc. manually by a person or automatically by a computer device.
[0079] In summary, in the technical scheme provided by the embodiments of the present application, the second engineering configuration table is automatically prepared for the first vehicle through the conceptual configuration table, the engineering configuration table and the configuration dictionary data of the first vehicle, providing an automatic preparation scheme of the second engineering configuration table, which does not need to be prepared manually, reduces the consumption of human resources, saves time, and improves the preparation efficiency of the second engineering configuration table. In addition, in the case where the target configuration feature indicated by the to-be-modified data is included in the first engineering configuration table of the first vehicle, the first engineering configuration table is modified by replacing the feature parameter; in the case where the target configuration feature indicated by the to-be-modified data is not included in the first engineering configuration table of the first vehicle, the corresponding relationship between the target configuration feature and the feature parameter is directly added in the first engineering configuration table, the modification method of the first engineering configuration table is flexible and changeable, and the first engineering configuration table can be modified in a suitable way according to the actual situation, thereby improving the modification efficiency of the first engineering configuration table.
[0080] Reference is made to Figure 4 which shows a flowchart of a vehicle engineering configuration table acquisition method provided by another embodiment of the present application. The method can be applied to Figure 1 The terminal device 10 and / or the server 20 of the vehicle engineering configuration table processing system shown in the figure, and the execution subject of each step can be the terminal device 10 and / or the server 20 (hereinafter collectively referred to as a computer device). The method can include at least one of the following steps (401-404):
[0081] Step 401, acquiring the identification information of the first vehicle.
[0082] Step 402, acquiring the configuration dictionary data and the first engineering configuration table of the first vehicle according to the identification information of the first vehicle.
[0083] In step 403, the configuration dictionary data based on the first vehicle and the first engineering configuration table of the first vehicle are acquired, and a second engineering configuration table prepared for the first vehicle is generated.
[0084] The steps 401-403 described above are the same as the steps 301-303 in the embodiment, which are described in detail in the steps 301-303 in the embodiment, and are not described herein again. Figure 3 The steps 301-303 in the embodiment, which are described in detail in the steps 301-303 in the embodiment, and are not described herein again. Figure 3 The steps 301-303 in the embodiment, which are described in detail in the steps 301-303 in the embodiment, and are not described herein again.
[0085] In step 404, the second engineering configuration table of the first vehicle is checked, and a checking result corresponding to the first vehicle is obtained.
[0086] In the embodiment of the present application, after the computer device acquires the second engineering configuration table of the first vehicle, the computer device can check the second engineering configuration table of the first vehicle to obtain a checking result corresponding to the first vehicle. In some embodiments, the checking of the second engineering configuration table of the first vehicle can be triggered automatically by the computer device or triggered by a user. In one possible implementation, after the computer device acquires the second engineering configuration table of the first vehicle, the computer device automatically checks the second engineering configuration table of the first vehicle. In another possible implementation, after the computer device acquires the second engineering configuration table of the first vehicle, the computer device stores the second engineering configuration table of the first vehicle in a database, and further, when a checking operation for the first vehicle is detected, the computer device acquires the second engineering configuration table of the first vehicle from the database and checks the second engineering configuration table of the first vehicle.
[0087] In some embodiments, when the computer device checks the second engineering configuration table, the computer device acquires at least one configuration feature and at least one feature parameter from the second engineering configuration table of the first vehicle. Then, when each configuration feature has a unique feature parameter, the computer device determines that the checking result corresponding to the first vehicle is qualified. When there is a configuration feature corresponding to multiple feature parameters, the computer device determines that the checking result corresponding to the first vehicle is unqualified, and further, generates unqualified reasons of the first vehicle according to the configuration feature corresponding to multiple feature parameters.
[0088] In some embodiments, after the computer device acquires the checking result of the first vehicle, the computer device displays the checking result to a user, and if the checking result is unqualified, the computer device displays the unqualified reasons of the first vehicle to the user while displaying the checking result.
[0089] To sum up, the technical scheme provided by the embodiment of the present application provides an automatic checking scheme for the second engineering configuration table of the first vehicle, realizes automatic checking of the second engineering configuration table, does not need manual checking of the second engineering configuration table, reduces consumption of human resources, saves time, reduces accidental errors caused by manual checking by checking by the computer device, improves checking efficiency and accuracy of the second engineering configuration table, and moreover, in the case of unqualified checking result, simultaneously determines the unqualified reason, facilitates the user to continue checking the second engineering configuration table according to the unqualified reason in time, and improves subsequent checking efficiency of the user.
[0090] Please refer to Figure 5 , which shows a flowchart of a vehicle engineering configuration table acquisition method provided by another embodiment of the present application. The method can be applied to Figure 1 The terminal device 10 and / or the server 20 of the vehicle engineering configuration table processing system shown in the figure, and the execution subject of each step can be the terminal device 10 and / or the server 20 (hereinafter collectively referred to as a computer device). The method can include at least one of the following steps (501-504):
[0091] Step 501: Obtain the identification information of the first vehicle.
[0092] Step 502: Obtain the configuration dictionary data and the first engineering configuration table of the first vehicle according to the identification information of the first vehicle.
[0093] Step 503: Obtain the second engineering configuration table prepared for the first vehicle based on the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle.
[0094] The above steps 501-503 are the same as steps 301-303 in the embodiment, and details are described in the Figure 3 embodiment and will not be repeated here. Figure 3
[0095] Step 504: Compare the second engineering configuration table of the first vehicle to obtain difference information between the first vehicle and other vehicles.
[0096] In the embodiments of the present application, after obtaining the second engineering configuration table of the first vehicle, the computer device can compare the second engineering configuration table of the first vehicle to obtain difference information between the first vehicle and other vehicles. In some embodiments, the comparison of the second engineering configuration table of the first vehicle can be triggered automatically by the computer device or triggered by the user. In one possible implementation, after obtaining the second engineering configuration table of the first vehicle, the computer device automatically compares the second engineering configuration table of the first vehicle. In another possible implementation, after obtaining the second engineering configuration table of the first vehicle, the computer device stores the second engineering configuration table of the first vehicle in the database, and further, when detecting a comparison operation for the first vehicle, obtains the second engineering configuration table of the first vehicle and the second engineering configuration table of other vehicles from the database, and then compares the second engineering configuration table of the first vehicle and the second engineering configuration table of other vehicles.
[0097] In some embodiments, the other vehicle can be referred to as a third vehicle. When comparing the second engineering configuration table, the computer device obtains a third vehicle corresponding to the first vehicle, and then obtains the second engineering configuration table of the third vehicle according to the identification information of the third vehicle, and generates difference information between the first vehicle and the third vehicle based on the second engineering configuration table of the first vehicle and the second engineering configuration table of the third vehicle. The third vehicle refers to a vehicle of the same vehicle model as the first vehicle but with different configuration information, and / or the third vehicle refers to a vehicle of a different vehicle model from the first vehicle but with the same configuration information except the vehicle model; the second engineering configuration table of the third vehicle is used to record the correspondence between the configuration characteristics and the characteristic parameters of the third vehicle. The third vehicle includes the second vehicle.
[0098] In some embodiments, after obtaining the difference information, the computer device can display the difference information to the user.
[0099] In summary, in the technical scheme provided by the embodiments of the present application, an automatic comparison scheme for the second engineering configuration table of the first vehicle is provided, which realizes automatic comparison of the second engineering configuration table, reduces the consumption of human resources, saves time, reduces accidental errors caused by human comparison, and improves the comparison efficiency and accuracy of the second engineering configuration table.
[0100] In addition, the complete scheme of the method for obtaining the vehicle engineering configuration table in the present application is introduced. Figure 6 The complete scheme of the method for obtaining the vehicle engineering configuration table in the present application is introduced. The specific steps are as follows:
[0101] Step 601, in response to an engineering configuration table compilation instruction for a first vehicle, starting an engineering configuration table compilation section.
[0102] In step 602, the identification information of the first vehicle is acquired.
[0103] In step 603, the configuration dictionary data of the first vehicle is acquired from the local server according to the identification information of the first vehicle.
[0104] In step 604, it is judged whether the first engineering configuration table of the first vehicle exists in the database according to the identification information of the first vehicle. If the first engineering configuration table of the first vehicle does not exist in the database, step 605 is performed; if the first engineering configuration table of the first vehicle exists in the database, step 606 is performed.
[0105] In step 605, the first prompt information is sent to the configuration client, and the first prompt information is used to prompt that the first engineering configuration table of the first vehicle is not successfully acquired.
[0106] In step 606, the first engineering configuration table of the first vehicle is acquired according to the identification information of the first vehicle.
[0107] In step 607, the second engineering configuration table prepared for the first vehicle is acquired based on the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle.
[0108] In step 608, the second engineering configuration table of the first vehicle is checked in response to the checking operation on the first vehicle, and the checking result of the first vehicle is obtained.
[0109] In step 609, the second engineering configuration table of the first vehicle and the second engineering configuration table of the third vehicle are compared in response to the comparison operation on the first vehicle, and the difference information between the first vehicle and the third vehicle is obtained.
[0110] It should be noted that the above introduction of the checking operation and the comparison operation is only exemplary and explanatory. In the exemplary embodiment, the execution order of the checking operation and the comparison operation can be flexibly set and adjusted. For example, the computer device performs the checking operation and the comparison operation simultaneously after acquiring the second engineering configuration table of the first vehicle; or the computer device performs the checking operation and then performs the comparison operation after acquiring the second engineering configuration table of the first vehicle.
[0111] The following is an apparatus embodiment of the present application, which can be used to execute the method embodiments of the present application. For details not disclosed in the apparatus embodiments of the present application, please refer to the method embodiments of the present application.
[0112] Please refer to Figure 7FIG. 7 shows a block diagram of an apparatus for acquiring a vehicle engineering configuration table according to an embodiment of the present application. The apparatus has the functions of the method for acquiring a vehicle engineering configuration table described above, which can be implemented by hardware, or by corresponding software executed by hardware. The apparatus can be a computer device, or can be arranged in a computer device. The apparatus 700 can include an identification acquiring module 710, a data acquiring module 720, and a data compiling module 730.
[0113] The identification acquiring module 710 is configured to acquire identification information of a first vehicle.
[0114] The data acquiring module 720 is configured to acquire configuration dictionary data of the first vehicle and a first engineering configuration table of the first vehicle according to the identification information of the first vehicle, wherein the configuration dictionary data of the first vehicle is used to store configuration features and feature parameters corresponding to the first vehicle, and the first engineering configuration table of the first vehicle is used to record a correspondence between initial configuration features and feature parameters of the first vehicle.
[0115] The data compiling module 730 is configured to acquire a second engineering configuration table of the first vehicle based on the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle, and compile the second engineering configuration table for the first vehicle, wherein the second engineering configuration table of the first vehicle is used to record a correspondence between final configuration features and feature parameters of the first vehicle.
[0116] In an example embodiment, as shown in FIG. 7, the data acquiring module 720 includes a vehicle determining unit 721, an engineering acquiring unit 722, and a dictionary acquiring unit 723. Figure 8
[0117] The vehicle determining unit 721 is configured to determine a second vehicle associated with the first vehicle according to the identification information of the first vehicle.
[0118] The engineering acquiring unit 722 is configured to determine a second engineering configuration table of the second vehicle as a first engineering configuration table of the first vehicle, wherein the second engineering configuration table of the second vehicle is used to record a correspondence between final configuration features and feature parameters of the second vehicle.
[0119] The dictionary acquiring unit 723 is configured to acquire configuration dictionary data of the first vehicle based on the identification information of the first vehicle.
[0120] In an example embodiment, the engineering acquiring unit 722 is further configured to:
[0121] acquire the second engineering configuration table of the second vehicle from a database according to the identification information of the second vehicle, wherein the database includes second engineering configuration tables of at least one vehicle;
[0122] in the case where the second engineering configuration table of the second vehicle exists in the database, performing the step of determining the second engineering configuration table of the second vehicle as the first engineering configuration table of the first vehicle;
[0123] in the case where the second engineering configuration table of the associated vehicle does not exist in the database, sending first prompt information to the configuration client, the first prompt information being used for prompting that the first engineering configuration table of the first vehicle is not successfully acquired.
[0124] In an example embodiment, as shown in Figure 8 The data compiling module 730 includes a concept obtaining unit 731, a data determining unit 732, and a data modifying unit 733.
[0125] The concept obtaining unit 731 is configured to obtain a concept configuration table of the first vehicle, the concept configuration table being used for recording configuration information of the first vehicle.
[0126] The data determining unit 732 is configured to obtain, based on the concept configuration table, to-be-modified data of the first vehicle from configuration dictionary data of the first vehicle.
[0127] The data modifying unit 733 is configured to modify the first engineering configuration table of the first vehicle according to the to-be-modified data, to obtain a second engineering configuration table of the first vehicle.
[0128] In an example embodiment, the data modifying unit 733 is further configured to, in the case where the target configuration feature indicated by the to-be-modified data is included in the first engineering configuration table of the first vehicle, replace a feature parameter corresponding to the target configuration feature in the first engineering configuration table of the first vehicle with a feature parameter corresponding to the target configuration feature, to generate the second engineering configuration table of the first vehicle.
[0129] In an example embodiment, the data modifying unit 733 is further configured to, in the case where the target configuration feature indicated by the to-be-modified data is not included in the first engineering configuration table of the first vehicle, add a corresponding relationship between the target configuration feature and a feature parameter in the first engineering configuration table of the first vehicle, to generate the second engineering configuration table of the first vehicle.
[0130] In an example embodiment, as shown in Figure 8 The apparatus 700 further includes a data checking module 740.
[0131] The data checking module 740 is configured to acquire at least one configuration feature and at least one feature parameter from the second engineering configuration table of the first vehicle; in the case that each of the configuration features has a unique feature parameter, determine that the checking result corresponding to the first vehicle is qualified; in the case that there is a configuration feature corresponding to multiple feature parameters, determine that the checking result corresponding to the first vehicle is unqualified; and generate the unqualified reason of the first vehicle according to the configuration feature corresponding to the multiple feature parameters.
[0132] In an example embodiment, as shown in FIG. 7, the apparatus 700 further includes a data comparison module 750. Figure 8
[0133] The data comparison module 750 is configured to acquire a third vehicle corresponding to the first vehicle; wherein the third vehicle refers to a vehicle of the same vehicle type as the first vehicle and having different configuration information, and / or the third vehicle refers to a vehicle of a different vehicle type from the first vehicle but having the same configuration information except for the vehicle type; acquire a second engineering configuration table of the third vehicle according to the identification information of the third vehicle; wherein the second engineering configuration table of the third vehicle is used to record the correspondence between the configuration features and the feature parameters of the third vehicle; and generate difference information between the first vehicle and the third vehicle based on the second engineering configuration table of the first vehicle and the second engineering configuration table of the third vehicle.
[0134] In summary, in the technical scheme provided by the embodiments of the present application, the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle are acquired through the identification information of the first vehicle, and on the basis of automatically acquiring the configuration dictionary data and the first engineering configuration table, the second engineering configuration table prepared for the first vehicle based on the configuration dictionary data of the first vehicle and the first engineering configuration table of the first vehicle is acquired, which provides an automatic acquisition manner of the configuration dictionary data and the first engineering configuration table, without the need for manual selection of the configuration dictionary data and the first engineering configuration table from a large amount of data, thereby reducing the consumption of human resources and improving the acquisition efficiency of the configuration dictionary data and the first engineering configuration table, and further improving the preparation efficiency of the second engineering configuration table from the side.
[0135] It should be noted that the apparatus provided in the above embodiments is only used as an example for the division of the above functional modules in realizing its functions, and in actual application, the above functions can be completed by different functional modules according to needs, that is, the internal structure of the device is divided into different functional modules to complete all or part of the above described functions. In addition, the apparatus and method embodiments provided in the above embodiments belong to the same concept, and the specific implementation process is described in detail in the method embodiments, which will not be described here.
[0136] Please refer toFigure 9 which shows a structural block diagram of a computer device 900 provided by an embodiment of the present application. The computer device can be a server Figure 1 The device in the vehicle route planning system shown can implement the method for obtaining the vehicle engineering configuration table described above. Specifically:
[0137] The computer device 900 includes a processing unit (such as a CPU (Central Processing Unit), a GPU (Graphics Processing Unit), and an FPGA (Field Programmable Gate Array), etc.) 901, a system memory 904 including a RAM (Random Access Memory) 902 and a ROM (Read Only Memory) 903, and a system bus 905 connecting the system memory 904 and the central processing unit 901. The server 900 further includes a basic I / O system (Input / Output) 906 that helps transfer information between various devices within the computing server, and a mass storage device 907 for storing an operating system 913, application programs 914, and other program modules 912.
[0138] The basic input / output system 906 includes a display 908 for displaying information and an input device 909 such as a mouse, keyboard, etc. for user input. Among them, the display 908 and the input device 909 are both connected to the central processing unit 901 through the input / output controller 910 connected to the system bus 905. The basic input / output system 906 can also include an input / output controller 910 for receiving and processing input from a keyboard, mouse, or electronic stylus, and other devices. Similarly, the input / output controller 910 also provides output to a display screen, printer, or other types of output devices.
[0139] The mass storage device 907 is connected to the central processing unit 901 through a mass storage controller (not shown) connected to the system bus 905. The mass storage device 907 and its associated computer readable medium provide non-volatile storage for the server 900. That is, the mass storage device 907 can include a computer readable medium (not shown) such as a hard disk or a CD-ROM (Compact Disc Read-Only Memory) drive.
[0140] Without loss of generality, the computer readable medium can include computer storage media and communication media. Computer storage media includes volatile and non-volatile, removable and non-removable media implemented in any method or technology for storage of information such as computer readable instructions, data structures, program modules or other data. Computer storage media includes RAM, ROM, EPROM (Erasable Programmable Read Only Memory), EEPROM (Electrically Erasable Programmable Read Only Memory), flash memory or other solid state memory devices, CD-ROM, DVD (Digital Video Disc), or other optical disk storage, magnetic cassettes, magnetic tape, magnetic disk storage or other magnetic storage devices. Of course, the computer storage media is not limited to the above-mentioned several types. The system memory 904 and the mass storage device 907 mentioned above can be collectively referred to as memory.
[0141] According to the embodiments of the present application, the server 900 can also be connected to a remote computer on a network through a network such as the Internet. That is, the server 900 can be connected to the network 912 through the network interface unit 911 connected to the system bus 905, or can be connected to other types of networks or remote computer systems (not shown) using the network interface unit 911.
[0142] The memory stores a computer program, which is loaded by the processor and implements the above-mentioned vehicle engineering configuration table acquisition method.
[0143] In the exemplary embodiments, a computer readable storage medium is also provided, and the storage medium stores a computer program, which, when executed by a processor, implements the above-mentioned vehicle engineering configuration table acquisition method.
[0144] Optionally, the computer readable storage medium can include ROM (Read Only Memory), RAM (Random Access Memory), SSD (Solid State Drives) or optical disk, etc. Among them, the random access memory can include ReRAM (Resistance Random Access Memory) and DRAM (Dynamic Random Access Memory).
[0145] In the example embodiment, a computer program product is also provided, which, when executed by a processor, is used to implement the above-mentioned method for obtaining a vehicle engineering configuration table.
[0146] It should be understood that "multiple" mentioned herein refers to two or more. The "and / or" describes the association relationship of the associated objects, which means that there can be three relationships, for example, A and / or B can represent the following three cases: A exists alone, A and B exist together, and B exists alone. The character " / " generally represents that the associated objects before and after it are in an "or" relationship. In addition, the step numbers described herein only exemplarily show a possible execution order between steps, and in some other embodiments, the above steps can also be executed in a different order from the number order, such as two steps with different numbers being executed at the same time, or two steps with different numbers being executed in an order opposite to the illustration, which is not limited in the embodiments of the present application.
[0147] The above only describes example embodiments of the present application and is not intended to limit the present application. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application shall be included in the protection scope of the present application.
Claims
1. A method of acquiring a vehicle engineering profile table, characterized by, The method comprises: obtaining identification information of a first vehicle; obtaining configuration dictionary data and a first engineering configuration table of the first vehicle according to the identification information of the first vehicle, wherein the configuration dictionary data of the first vehicle is used to store configuration characteristics and characteristic parameters corresponding to the first vehicle, and the first engineering configuration table of the first vehicle is used to record a correspondence between initial configuration characteristics and characteristic parameters of the first vehicle; obtaining a concept configuration table of the first vehicle, wherein the concept configuration table is used to record configuration information of the first vehicle, and the concept configuration table is written by a user according to actual conditions for the first vehicle; based on the concept configuration table, obtaining to-be-modified data of the first vehicle from the configuration dictionary data of the first vehicle; in a case where the first engineering configuration table of the first vehicle includes a target configuration characteristic indicated by the to-be-modified data, obtaining an associated configuration characteristic corresponding to the target configuration characteristic from a configuration constraint package, wherein the configuration constraint package is used to indicate an association relationship between configuration characteristics; replacing a characteristic parameter corresponding to the target configuration characteristic in the first engineering configuration table of the first vehicle with a characteristic parameter corresponding to the target configuration characteristic in the to-be-modified data, and modifying a characteristic parameter of the associated configuration characteristic, to generate a second engineering configuration table of the first vehicle; and / or, in a case where the first engineering configuration table of the first vehicle does not include the target configuration characteristic indicated by the to-be-modified data, adding a correspondence between the target configuration characteristic and a characteristic parameter in the first engineering configuration table of the first vehicle, to generate the second engineering configuration table of the first vehicle; wherein the second engineering configuration table of the first vehicle is used to record a correspondence between final configuration characteristics and characteristic parameters of the first vehicle.
2. The method of claim 1, wherein, The method comprises: determining a second vehicle associated with the first vehicle according to the identification information of the first vehicle; determining a second engineering configuration table of the second vehicle as the first engineering configuration table of the first vehicle, wherein the second engineering configuration table of the second vehicle is used to record a correspondence between final configuration characteristics and characteristic parameters of the second vehicle; obtaining configuration dictionary data of the first vehicle based on the identification information of the first vehicle.
3. The method of claim 2, wherein, After the step of determining the second vehicle associated with the first vehicle according to the identification information of the first vehicle, the method further comprises: obtaining the second engineering configuration table of the second vehicle from a database according to identification information of the second vehicle, wherein the database includes second engineering configuration tables of at least one vehicle; in a case where the second engineering configuration table of the second vehicle exists in the database, performing the step of determining the second engineering configuration table of the second vehicle as the first engineering configuration table of the first vehicle. In a case where a second engineering configuration table of the second vehicle does not exist in the database, a first prompt information is sent to a configuration client, the first prompt information being used for prompting that the first engineering configuration table of the first vehicle is not successfully acquired.
4. The method according to any one of claims 1 to 3, characterized in that, The method further comprises: acquiring at least one configuration feature and at least one feature parameter from the second engineering configuration table of the first vehicle; in a case where each of the configuration features has a unique feature parameter, determining that a verification result corresponding to the first vehicle is qualified; in a case where there is a configuration feature corresponding to a plurality of feature parameters, determining that the verification result corresponding to the first vehicle is unqualified; and generating an unqualified reason of the first vehicle according to the configuration feature corresponding to the plurality of feature parameters.
5. The method of claim 4, wherein, The method further comprises: acquiring a third vehicle corresponding to the first vehicle; wherein the third vehicle refers to a vehicle of the same vehicle type as the first vehicle and having different configuration information, and / or the third vehicle refers to a vehicle of a different vehicle type from the first vehicle but having the same configuration information except for the vehicle type; acquiring a second engineering configuration table of the third vehicle according to identification information of the third vehicle; wherein the second engineering configuration table of the third vehicle is used for recording a correspondence between configuration features and feature parameters of the third vehicle; generating difference information between the first vehicle and the third vehicle based on the second engineering configuration table of the first vehicle and the second engineering configuration table of the third vehicle.
6. An acquisition apparatus of a vehicle engineering configuration table, characterized by comprising: The device comprises: an identification acquisition module configured to acquire identification information of a first vehicle; a data acquisition module configured to acquire configuration dictionary data and a first engineering configuration table of the first vehicle according to the identification information of the first vehicle; wherein the configuration dictionary data of the first vehicle is used for storing configuration features and feature parameters corresponding to the first vehicle, and the first engineering configuration table of the first vehicle is used for recording a correspondence between initial configuration features and feature parameters of the first vehicle. The data compiling module is configured to obtain a concept configuration table of the first vehicle, the concept configuration table being configured to record configuration information of the first vehicle and being compiled by a user according to actual conditions for the first vehicle; based on the concept configuration table, obtain to-be-modified data of the first vehicle from a configuration dictionary data of the first vehicle; in a case where the first engineering configuration table of the first vehicle includes a target configuration feature indicated by the to-be-modified data, obtain an associated configuration feature corresponding to the target configuration feature from a configuration constraint package, the configuration constraint package being configured to indicate an association relationship between configuration features; replace a feature parameter corresponding to the target configuration feature in the first engineering configuration table of the first vehicle with a feature parameter corresponding to the target configuration feature in the to-be-modified data, and modify a feature parameter of the associated configuration feature, to generate a second engineering configuration table of the first vehicle; and / or in a case where the first engineering configuration table of the first vehicle does not include the target configuration feature indicated by the to-be-modified data, add a corresponding relationship between the target configuration feature and a feature parameter in the first engineering configuration table of the first vehicle, to generate the second engineering configuration table of the first vehicle; wherein the second engineering configuration table of the first vehicle is configured to record a corresponding relationship between final configuration features and feature parameters of the first vehicle.
7. A computer device, comprising: The computer device comprises a processor and a memory, and the memory stores a computer program which is loaded and executed by the processor to implement the method for obtaining a vehicle engineering configuration table according to any one of claims 1 to 5.
8. A computer-readable storage medium, characterized in that, The storage medium stores a computer program which is loaded and executed by a processor to implement the method for obtaining a vehicle engineering configuration table according to any one of claims 1 to 5.
9. A computer program product, characterised in that, The computer program product is executed by a processor to implement the method for obtaining a vehicle engineering configuration table according to any one of claims 1 to 5.
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