A method, apparatus and device for generating a vehicle measurement point file

By automating the generation of vehicle measurement point files, the problem of irregular and erroneous arrangement of measurement points caused by traditional manual filling is solved, thus improving the efficiency of vehicle appearance measurement and recording.

CN116107980BActive Publication Date: 2026-03-03AVATR CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-02-28
Publication Date
2026-03-03

AI Technical Summary

Technical Problem

The generation of traditional vehicle measurement point files relies on manual filling, which leads to irregular arrangement of test points, errors in filling, and delays, affecting the efficiency of vehicle appearance measurement and recording.

Method used

By obtaining the encoding instructions of the vehicle measurement point file, the system automatically acquires the inspection point information and items, and generates or updates the measurement point file according to the inspection point information and file encoding rules, including the measurement point code, parallelism code, and symmetry code, thus generating a vehicle measurement point file with inspection codes and items.

Benefits of technology

This avoids errors and delays caused by manual filling out of forms by testers, and improves the efficiency of vehicle appearance measurement and recording.

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Abstract

The embodiment of the present application relates to the technical field of automobile, and discloses a kind of vehicle measuring point file generation method, device and equipment, the vehicle measuring point file generation method includes: obtaining the encoding instruction of vehicle measuring point file, and in response to the encoding instruction, the detection point information of the vehicle is obtained and the detection item corresponding to the detection point information;According to the detection point information, the file encoding rule corresponding to the detection point information is determined;According to the detection point information and the file encoding rule, the detection code corresponding to the detection point is determined;According to the detection code of the detection point and the detection item of the detection point information, the vehicle measuring point file is generated or updated.Application of the technical scheme of the present application can avoid the influence of irregular arrangement of detection points, filling errors and untimely problems when test personnel manually fill in the generation of measuring point file on vehicle appearance measurement and recording efficiency.
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Description

Technical Field

[0001] This invention relates to the field of automotive technology, specifically to a method, apparatus, and device for generating vehicle measurement point files. Background Technology

[0002] A vehicle measurement point file is a standard document used for the objective and quantitative evaluation of a vehicle's appearance. It records parameter information related to the vehicle's appearance. The data in the vehicle measurement point file is generated by testers conducting actual measurements and compiling the acquired vehicle data into the file.

[0003] With the development of the automotive industry, users have increasingly higher demands for vehicle appearance and refinement. To ensure vehicles have designs that better meet user needs, the accuracy requirements for vehicle measurement point files are also increasing. However, traditional vehicle measurement point design relies on manual input by testers, who manually enter basic information such as measurement point numbers, clearance and surface difference standards, and parallelism and symmetry indicators. Furthermore, the lack of standardized table and text formats results in low efficiency and a high error rate. Especially in actual project development, the vehicle clearance and surface difference standards and measurement point information need frequent updates, which can lead to untimely and inaccurate updates to the vehicle measurement point files, ultimately affecting the overall vehicle appearance evaluation results and project progress. Summary of the Invention

[0004] In view of the above problems, embodiments of the present invention provide a method, apparatus and equipment for generating vehicle measurement point files, which are used to solve the problems in the prior art where irregular arrangement of test points, as well as errors and untimely filling in of the test point files by testers, affect the efficiency of vehicle appearance measurement and recording.

[0005] According to one aspect of the present invention, a method for generating vehicle measurement point files is provided, the method comprising:

[0006] The system obtains the encoding instructions for the vehicle measurement point file and, in response to the encoding instructions, obtains the vehicle's detection point information and the detection items corresponding to the detection point information.

[0007] Based on the detection point information, determine the file encoding rules corresponding to the detection point information;

[0008] Based on the detection point information and the file encoding rules, determine the detection code corresponding to the detection point;

[0009] The vehicle test point file is generated or updated based on the test point code and the test items of the test point information.

[0010] In one implementation, the detection encoding includes a measurement point encoding; the detection point information includes the number of detection points and the sorting method of the detection points; and the file encoding rule includes a measurement point encoding rule.

[0011] The step of determining the detection code corresponding to the detection point based on the detection point information and the file encoding rule includes:

[0012] Based on the number of detection points, the sorting method of the detection points, and the coding rules of the detection points, the detection point number in the detection point code is generated;

[0013] Based on the sorting method and coding rules of the detection points, a position identifier is generated in the measurement point code; the combination of the measurement point number in the measurement point code and the position identifier is used to indicate the positional relationship between multiple detection points.

[0014] In one implementation, the detection encoding includes parallelism encoding; the detection point information includes the number of detection points, the sorting method of the detection points, and the parallelism standard; and the file encoding rules include parallelism encoding rules.

[0015] The step of determining the detection code corresponding to the detection point based on the detection point information and the file encoding rule includes:

[0016] Based on the sorting method of the detection points and the parallelism coding rules, a position identifier in the parallelism code is generated; the position identifier in the parallelism code is used to indicate the positional relationship between multiple detection points.

[0017] In one implementation, the detection encoding includes symmetry encoding; the detection point information includes the number of detection points, the sorting method of the detection points, and the symmetry standard; and the file encoding rule includes symmetry encoding rules.

[0018] The step of determining the detection code corresponding to the detection point based on the detection point information and the file encoding rule includes:

[0019] Based on the number of detection points, the symmetry standard, the sorting method of the detection points, and the file encoding rules, the measurement point number in the symmetry code is determined; the position identifier in the symmetry code is used to indicate the positional relationship between multiple detection points.

[0020] In one implementation, the detection point information includes: identification information of the detection area, importance information, or detection type; the detection code includes area identifier, importance identifier, and type identifier.

[0021] The step of determining the detection code corresponding to the detection point based on the detection point information and the encoding rule includes:

[0022] Based on the identification information of the detection area and the coding rule, an area identifier is generated in the detection code, and the area identifier is used to indicate the detection area corresponding to the detection point;

[0023] Based on the importance information and the coding rules, an importance identifier is generated in the detection code, and the importance identifier is used to indicate the importance of the detection point;

[0024] Based on the detection type and the encoding rule, a type identifier is determined in the detection encoding, and the type identifier is used to indicate the detection type of the detection point.

[0025] In one implementation, the step of obtaining the vehicle's inspection point information and inspection items in response to the encoded instructions includes:

[0026] In response to the encoding instruction, the detection point information and detection items corresponding to the detection point are determined in the vehicle's measurement point requirement file; or, in response to the encoding instruction, the detection point information and detection items corresponding to the detection point are identified in the vehicle's clearance and discontinuity drawing.

[0027] In one implementation, the detection point information and detection items corresponding to the detection point are obtained from the vehicle's detection point requirement file;

[0028] The step of generating or updating the vehicle measurement point file based on the detection code of the detection point and the detection items of the detection point information specifically includes:

[0029] Obtain the first text information of the test item in the vehicle's test point requirement file, and determine the second text information of the test item in the vehicle's test point file based on the first text information.

[0030] According to another aspect of the present invention, a vehicle measurement point file generation apparatus is provided, comprising: an acquisition module, a file encoding rule determination module, a detection encoding determination module, and a file generation or update module.

[0031] The acquisition module is used to acquire the encoding instructions of the vehicle measurement point file, and in response to the encoding instructions, acquire the vehicle's detection point information and the detection items corresponding to the detection point information;

[0032] The file encoding rule determination module is used to determine the file encoding rule corresponding to the detection point information based on the detection point information;

[0033] The detection code determination module is used to determine the detection code corresponding to the detection point based on the detection point information and the file encoding rules;

[0034] The file generation or update module is used to generate or update the vehicle measurement point file based on the detection code of the detection point and the detection items of the detection point information.

[0035] In an optional embodiment, the file encoding rule determination module is further configured to include a test point encoding rule if the test point information includes the number of test points and the sorting method of the test points.

[0036] The detection code determination module is further configured to generate the measurement point number in the measurement point code based on the number of detection points, the sorting method of the detection points, and the measurement point coding rule;

[0037] Based on the sorting method and coding rules of the detection points, a position identifier is generated in the measurement point code; the combination of the measurement point number in the measurement point code and the position identifier is used to indicate the positional relationship between multiple detection points.

[0038] In an optional embodiment, the file encoding rule determination module is further configured to determine that the file encoding rule includes a parallelism encoding rule if the detection point information includes the number of detection points, the sorting method of the detection points, and the parallelism standard.

[0039] The detection code determination module is further configured to generate a position identifier in the parallelism code according to the sorting method of the detection points and the parallelism coding rule; the position identifier in the parallelism code is used to indicate the positional relationship between multiple detection points.

[0040] In an optional embodiment, the file encoding rule determination module is further configured to determine that the file encoding rule includes a symmetry encoding rule if the detection point information includes the number of detection points, the sorting method of the detection points, and the symmetry standard.

[0041] The detection code determination module is further configured to determine the test point number in the symmetry code based on the number of test points, the symmetry standard, the sorting method of the test points, and the file encoding rules; the position identifier in the symmetry code is used to indicate the positional relationship between multiple test points.

[0042] In an optional embodiment, the detection code determination module is further configured to generate a region identifier in the detection code based on the identification information of the detection region and the coding rule, wherein the region identifier is used to indicate the detection region corresponding to the detection point;

[0043] Based on the importance information and the coding rules, an importance identifier is generated in the detection code, and the importance identifier is used to indicate the importance of the detection point;

[0044] Based on the detection type and the encoding rule, a type identifier is determined in the detection encoding, and the type identifier is used to indicate the detection type of the detection point.

[0045] In one implementation, the acquisition module is further configured to, in response to the encoding instruction, determine the detection point information and detection items corresponding to the detection point in the vehicle's measurement point requirement file; or, in response to the encoding instruction, identify the detection point information and detection items corresponding to the detection point in the vehicle's gap and discontinuity drawing.

[0046] In one implementation, the file generation or update module is further configured to obtain first text information of the test item in the vehicle's test point requirement file, and determine second text information of the test item in the vehicle's test point file based on the first text information.

[0047] According to another aspect of the present invention, a device for generating vehicle measurement point files is provided, comprising: a processor, a communication interface, a memory, and a communication bus.

[0048] The processor, communication interface, and memory communicate with each other via a communication bus. The communication interface is used to communicate with other network elements, such as clients or other servers. The processor executes programs, specifically the relevant steps described in the short link generation method embodiment.

[0049] Memory is used to store programs. Memory may include high-speed RAM, and may also include non-volatile memory, such as at least one disk drive.

[0050] The program can be invoked by the processor to cause the short link generation device to perform the following operations:

[0051] The system obtains the encoding instructions for the vehicle measurement point file and, in response to the encoding instructions, obtains the vehicle's detection point information and the detection items corresponding to the detection point information.

[0052] Based on the detection point information, determine the file encoding rules corresponding to the detection point information;

[0053] Based on the detection point information and the file encoding rules, determine the detection code corresponding to the detection point;

[0054] The vehicle test point file is generated or updated based on the test point code and the test items of the test point information.

[0055] In one implementation, the detection encoding includes a measurement point encoding; the detection point information includes the number of detection points and the sorting method of the detection points; and the file encoding rule includes a measurement point encoding rule.

[0056] The step of determining the detection code corresponding to the detection point based on the detection point information and the file encoding rule includes:

[0057] Based on the number of detection points, the sorting method of the detection points, and the coding rules of the detection points, the detection point number in the detection point code is generated;

[0058] Based on the sorting method and coding rules of the detection points, a position identifier is generated in the measurement point code; the combination of the measurement point number in the measurement point code and the position identifier is used to indicate the positional relationship between multiple detection points.

[0059] In one implementation, the detection encoding includes parallelism encoding; the detection point information includes the number of detection points, the sorting method of the detection points, and the parallelism standard; and the file encoding rules include parallelism encoding rules.

[0060] The step of determining the detection code corresponding to the detection point based on the detection point information and the file encoding rule includes:

[0061] Based on the sorting method of the detection points and the parallelism coding rules, a position identifier in the parallelism code is generated; the position identifier in the parallelism code is used to indicate the positional relationship between multiple detection points.

[0062] In one implementation, the detection encoding includes symmetry encoding; the detection point information includes the number of detection points, the sorting method of the detection points, and the symmetry standard; and the file encoding rule includes symmetry encoding rules.

[0063] The step of determining the detection code corresponding to the detection point based on the detection point information and the file encoding rule includes:

[0064] Based on the number of detection points, the symmetry standard, the sorting method of the detection points, and the file encoding rules, the measurement point number in the symmetry code is determined; the position identifier in the symmetry code is used to indicate the positional relationship between multiple detection points.

[0065] In one implementation, the detection point information includes: identification information of the detection area, importance information, or detection type; the detection code includes area identifier, importance identifier, and type identifier.

[0066] The step of determining the detection code corresponding to the detection point based on the detection point information and the encoding rule includes:

[0067] Based on the identification information of the detection area and the coding rule, an area identifier is generated in the detection code, and the area identifier is used to indicate the detection area corresponding to the detection point;

[0068] Based on the importance information and the coding rules, an importance identifier is generated in the detection code, and the importance identifier is used to indicate the importance of the detection point;

[0069] Based on the detection type and the encoding rule, a type identifier is determined in the detection encoding, and the type identifier is used to indicate the detection type of the detection point.

[0070] In one implementation, the step of obtaining the vehicle's inspection point information and inspection items in response to the encoded instructions includes:

[0071] In response to the encoding instruction, the detection point information and detection items corresponding to the detection point are determined in the vehicle's measurement point requirement file; or, in response to the encoding instruction, the detection point information and detection items corresponding to the detection point are identified in the vehicle's clearance and discontinuity drawing.

[0072] In one implementation, the detection point information and detection items corresponding to the detection point are obtained from the vehicle's detection point requirement file;

[0073] The step of generating or updating the vehicle measurement point file based on the detection code of the detection point and the detection items of the detection point information specifically includes:

[0074] Obtain the first text information of the test item in the vehicle's test point requirement file, and determine the second text information of the test item in the vehicle's test point file based on the first text information.

[0075] According to another aspect of the present invention, a computer-readable storage medium is provided, the storage medium storing at least one executable instruction that causes a device / apparatus for generating vehicle measurement point files to perform the following operations:

[0076] The system obtains the encoding instructions for the vehicle measurement point file and, in response to the encoding instructions, obtains the vehicle's detection point information and the detection items corresponding to the detection point information.

[0077] Based on the detection point information, determine the file encoding rules corresponding to the detection point information;

[0078] Based on the detection point information and the file encoding rules, determine the detection code corresponding to the detection point;

[0079] The vehicle test point file is generated or updated based on the test point code and the test items of the test point information.

[0080] In one implementation, the detection encoding includes a measurement point encoding; the detection point information includes the number of detection points and the sorting method of the detection points; and the file encoding rule includes a measurement point encoding rule.

[0081] The step of determining the detection code corresponding to the detection point based on the detection point information and the file encoding rule includes:

[0082] Based on the number of detection points, the sorting method of the detection points, and the coding rules of the detection points, the detection point number in the detection point code is generated;

[0083] Based on the sorting method and coding rules of the detection points, a position identifier is generated in the measurement point code; the combination of the measurement point number in the measurement point code and the position identifier is used to indicate the positional relationship between multiple detection points.

[0084] In one implementation, the detection encoding includes parallelism encoding; the detection point information includes the number of detection points, the sorting method of the detection points, and the parallelism standard; and the file encoding rules include parallelism encoding rules.

[0085] The step of determining the detection code corresponding to the detection point based on the detection point information and the file encoding rule includes:

[0086] Based on the sorting method of the detection points and the parallelism coding rules, a position identifier in the parallelism code is generated; the position identifier in the parallelism code is used to indicate the positional relationship between multiple detection points.

[0087] In one implementation, the detection encoding includes symmetry encoding; the detection point information includes the number of detection points, the sorting method of the detection points, and the symmetry standard; and the file encoding rule includes symmetry encoding rules.

[0088] The step of determining the detection code corresponding to the detection point based on the detection point information and the file encoding rule includes:

[0089] Based on the number of detection points, the symmetry standard, the sorting method of the detection points, and the file encoding rules, the measurement point number in the symmetry code is determined; the position identifier in the symmetry code is used to indicate the positional relationship between multiple detection points.

[0090] In one implementation, the detection point information includes: identification information of the detection area, importance information, or detection type; the detection code includes area identifier, importance identifier, and type identifier.

[0091] The step of determining the detection code corresponding to the detection point based on the detection point information and the encoding rule includes:

[0092] Based on the identification information of the detection area and the coding rule, an area identifier is generated in the detection code, and the area identifier is used to indicate the detection area corresponding to the detection point;

[0093] Based on the importance information and the coding rules, an importance identifier is generated in the detection code, and the importance identifier is used to indicate the importance of the detection point;

[0094] Based on the detection type and the encoding rule, a type identifier is determined in the detection encoding, and the type identifier is used to indicate the detection type of the detection point.

[0095] In one implementation, the step of obtaining the vehicle's inspection point information and inspection items in response to the encoded instructions includes:

[0096] In response to the encoded instructions, the test point information and test items corresponding to the test points are determined in the vehicle's test point requirement file;

[0097] Alternatively, in response to the encoded instructions, the detection point information and detection items corresponding to the detection points can be identified in the vehicle's clearance and gap drawings.

[0098] In one implementation, the detection point information and detection items corresponding to the detection point are obtained from the vehicle's detection point requirement file;

[0099] The step of generating or updating the vehicle measurement point file based on the detection code of the detection point and the detection items of the detection point information specifically includes:

[0100] Obtain the first text information of the test item in the vehicle's test point requirement file, and determine the second text information of the test item in the vehicle's test point file based on the first text information.

[0101] The technical solution of this invention obtains the detection point information and detection items to be detected based on the encoding instructions of the vehicle measurement point file, and generates a standard detection code based on the detection point information, thereby generating or updating the vehicle measurement point file with the detection code and detection items. By applying the technical solution of this application, the problem of irregular arrangement of detection points, as well as errors and untimely filling in when testers manually fill in the measurement point file can be avoided, which affects the efficiency of vehicle appearance measurement and recording.

[0102] The above description is merely an overview of the technical solutions of the embodiments of the present invention. In order to better understand the technical means of the embodiments of the present invention and to implement them in accordance with the contents of the specification, and to make the above and other objects, features and advantages of the embodiments of the present invention more apparent and understandable, specific embodiments of the present invention are described below. Attached Figure Description

[0103] The accompanying drawings are for illustrative purposes only and are not intended to limit the invention. Furthermore, the same reference numerals denote the same parts throughout the drawings. In the drawings:

[0104] Figure 1 A flowchart illustrating an embodiment of the vehicle measurement point file generation method provided by the present invention is shown.

[0105] Figure 2 A schematic diagram of an embodiment of the vehicle measurement point file generation device provided by the present invention is shown;

[0106] Figure 3 A schematic diagram of an embodiment of the vehicle measurement point file generation device provided by the present invention is shown. Detailed Implementation

[0107] Exemplary embodiments of the invention will now be described in more detail with reference to the accompanying drawings. While exemplary embodiments of the invention are shown in the drawings, it should be understood that the invention can be implemented in various forms and should not be limited to the embodiments set forth herein.

[0108] Figure 1 This diagram illustrates a flowchart of an embodiment of a method for generating vehicle measurement point files according to the present invention. The method is executed by a vehicle measurement point file generation device. Figure 1 As shown, the method for generating the vehicle measurement point file includes the following steps:

[0109] Step 110: Obtain the encoding instructions of the vehicle measurement point file, and in response to the encoding instructions, obtain the vehicle's detection point information and the detection items corresponding to the detection point information.

[0110] In practical applications, the vehicle's inspection point information and the corresponding inspection items can be obtained from the vehicle's inspection point requirement document or from the vehicle's clearance and discontinuity drawings. The inspection point requirement document is a standardized document formulated based on the overall vehicle inspection point design, and the data source of the inspection point requirement document is the vehicle's clearance and discontinuity drawings. In the early stages of the overall vehicle inspection point design, the inspection point requirement document may be incomplete or partially non-standard. In this case, it is advisable to directly obtain the vehicle's inspection point information and the corresponding inspection items from the vehicle's clearance and discontinuity drawings.

[0111] The encoding instructions for the vehicle measurement point file can be used to reorganize the data in the measurement point requirement file based on the content of the measurement point requirement file to determine the data in the vehicle measurement point file. Alternatively, based on the information in the vehicle's gap and discontinuity drawings, the corresponding data information can be determined on the template of the vehicle measurement point file.

[0112] The detection point information includes identification information of the detection area. For example, the detection area can be a region within a vehicle exterior component, such as the front hood. Due to the curvature and size of the detection area, multiple detection points can be selected within it to achieve fine division of the detection area. Furthermore, the number of detection points in each detection area can be the same or different; this application does not limit the number of detection points in different detection areas.

[0113] It should be understood that gaps exist between vehicle exterior components, and these gaps also affect the overall appearance of the vehicle, thus requiring measurement. For example, a detection area may include only one vehicle exterior component, an area composed of multiple vehicle exterior components, or a portion of a single vehicle exterior component. If a detection area is composed of multiple vehicle exterior components, the gaps between these components are also within that detection area. When selecting detection points, some will be located within these gaps, ensuring that these detection points more accurately reflect the appearance characteristics of the detection area.

[0114] For example, a detection point is a point within a detection area. Multiple detection points can form a line or a surface within the detection area. By measuring the information of all detection points in the detection area, it can be reflected whether the detection area meets the design requirements. In some embodiments, since the positions, curvatures, sizes, etc., of different detection areas on the vehicle are not exactly the same, the number of detection points selected for different detection areas can be the same or different. This application embodiment does not limit the number of detection points selected for each detection area.

[0115] Step 120: Determine the file encoding rule corresponding to the detection point information based on the detection point information.

[0116] The different detection point information will result in different vehicle measurement point files. In this embodiment, it is necessary to determine the corresponding file encoding rules based on the detection point information to obtain different types of detection codes. Specifically, the detection codes include measurement point codes, parallelism codes, or symmetry codes.

[0117] For example, if the detection point information includes the number of detection points and the sorting method of the detection points, then the detection point code needs to be reflected in the vehicle detection point file. Correspondingly, the file encoding rules include the detection point encoding rules.

[0118] For example, if the detection point information includes the number of detection points, the sorting method of the detection points, and the parallelism standard, then the parallelism code needs to be reflected in the vehicle detection point file. Correspondingly, the file encoding rules include the parallelism encoding rules.

[0119] For example, if the detection point information includes the number of detection points, the sorting method of the detection points, and the symmetry standard, then the symmetry encoding needs to be reflected in the vehicle measurement point file. Correspondingly, the file encoding rules include symmetry encoding rules.

[0120] Step 130: Determine the detection code corresponding to the detection point based on the detection point information and the file encoding rules.

[0121] Specifically, for the measurement point coding, it is necessary to generate the measurement point number in the measurement point code according to the number of detection points, the sorting method of the detection points and the measurement point coding rule; and to generate the position identifier in the measurement point code according to the sorting method of the detection points and the measurement point coding rule; the combination of the measurement point number and the position identifier is used to indicate the positional relationship between multiple detection points.

[0122] For example, when determining the measurement point code, it is necessary to first obtain the number of measurement points and the measurement point sorting method, and then encode the measurement points according to the number of measurement points and the measurement point sorting method in the area to be tested, generating measurement point codes that are the same as the number of measurement points.

[0123] Specifically, the sorting methods for detection points include three types: self-symmetric, symmetric, and asymmetric. If the sorting method is self-symmetric, the test point numbers need to be divided into two groups according to the self-symmetric method. When the number of test points is odd, the test point number of the middle test point is kept unique. For example, if the number of test points is 2, quantity codes 01 and 01 can be generated as the test point numbers. For another example, if the number of test points is 5, quantity codes 01, 02, 03, 02, and 01 can be generated as the test point numbers, so that the values ​​of the test point numbers are also in a self-symmetric state.

[0124] Because the positional relationship of different detection points needs to be considered during the measurement process, positional identifiers reflecting the sorting method of the detection points are set based on the detection point numbers. For example, the identifiers L and R are added after the detection point numbers of two groups of detection points to distinguish between the left and right sides. Taking a quantity of 2 detection points as an example, the obtained detection point codes can be 01-L and 01-R. Taking a quantity of 4 detection points as an example, the combination of detection point number and positional identifier can be generated as: 01-L, 02-L, 02-R, 01-R as the detection point number codes.

[0125] However, it should be understood that if the sorting method of the detection points is self-symmetric, they can only be divided into two groups when the number of detection points is even. When the number of detection points is odd, it is known that there must be an intermediate detection point with the same number of detection points on both sides. Therefore, this detection point can be used to divide the detection points into two groups and an intermediate detection point. The two groups of detection points are labeled with L and R respectively, and the intermediate detection point is labeled with U. Taking the number of detection points as an example, the obtained detection point codes can be 01-L, 02-U and 01-R respectively.

[0126] If the sorting method of the detection points is symmetrical, the test point numbers of the detection points need to be divided into two groups according to the symmetrical distribution of the detection points. For example, if the number of detection points is 2, quantity codes 01 and 01 can be generated as the test point numbers. For another example, if the number of detection points is 10, quantity codes 01, 02, 03, 04, 05, 05, 04, 03, 02, and 01 can be generated as the test point numbers, so that the values ​​of the test point numbers are also symmetrical. After the test point numbers are completed, L and R identifiers are added to the test point numbers of the two groups of measurement points respectively to form two groups of test point codes with the same number of points.

[0127] If the sorting method of the detection points is asymmetrical, then a measurement point number is assigned to each detection point in sequence according to the sorting method. For example, if there are 2 detection points, quantity codes 01 and 02 can be generated as measurement point numbers. Similarly, if there are 10 detection points, quantity codes 01, 02, 03, 04, 05, 06, 04, 08, 09, and 10 can be generated as measurement point numbers. After the measurement point numbers are assigned, a "U" identifier is added to the measurement point number to form the measurement point code. It should be noted that a hyphen can be used between the measurement point number and the letter identifier during measurement point coding; the specific connection method is not limited in this application.

[0128] Specifically, regarding parallelism coding, in this embodiment of the invention, when the detection point information includes a parallelism standard, it indicates that the parallelism of multiple detection points needs to be measured. In this case, the detection coding includes parallelism coding, and the position identifier in the parallelism coding needs to be generated according to the sorting method of the detection points and the parallelism coding rules; the position identifier is used to indicate the positional relationship between multiple detection points.

[0129] Specifically, since parallelism requires at least two detection points, it is necessary to determine that the value of the parallelism standard is greater than zero. When the sorting method of the detection points is self-symmetric or asymmetric, the number of parallelism codes is one, which consists of a number and a position identifier (U identifier). When the sorting method of the detection points is symmetric, there will be two parallelism codes. An L identifier and an R identifier are added after the number of the parallelism code as position codes.

[0130] Specifically, regarding parallelism coding, in this embodiment of the invention, when the detection point information includes a symmetry standard, it indicates that the symmetry of multiple detection points needs to be measured. In this case, the detection coding includes symmetry coding, and the measurement point number and position identifier in the symmetry coding need to be generated according to the sorting method of the detection points and the symmetry coding rules. The position identifier of the symmetry coding is used to indicate the positional relationship between multiple detection points.

[0131] Specifically, symmetry coding will only be performed on the detection points if the number of detection points is greater than zero, the detection point information includes symmetry requirements, and the sorting method is symmetrical. There is only one symmetry code, and the measurement point number in the symmetry code can be set by the user, and there is only one. The position identifier U of the symmetry code is set after the measurement point.

[0132] It should be noted that, in order to enable the detection code to contain more detection information, in this embodiment of the invention, the detection point information includes: identification information of the detection area, importance information or detection type; the detection code includes area identification, importance identification and type identification.

[0133] Specifically, based on the identification information of the detection area and the coding rule, an area identifier is generated in the detection code, which is used to indicate the detection area corresponding to the detection point; based on the importance information and the coding rule, an importance identifier is generated in the detection code, which is used to indicate the importance of the detection point; based on the detection type and the coding rule, a type identifier is determined in the detection code, which is used to indicate the detection type of the detection point.

[0134] For example, to indicate the location of a detection point, a region identifier is introduced to indicate the detection area corresponding to the detection point. The region identifier includes at least one of the region number and region location. The region identifier can be a mixed alphanumeric format; the region location describes the position of the detection area on the vehicle.

[0135] For example, the importance of detection points can be divided into different levels, and different importance indicators can be used to distinguish them. When determining the code of the detection points, the importance level can be read directly to obtain the importance indicator.

[0136] For example, a type identifier can be added to the detection code to indicate the detection type of the detection point. For example, the detection type is gap (GA) and discontinuity (FL). Different acquisition parameters can be set for the same detection area. For example, in the same detection area, it is required to obtain the data information of the detection point, or it is required to obtain the parallelism information of the structure (parallelism needs to be reflected through the detection point), or it is required to obtain the symmetry information of the structure (symmetry needs to be reflected through the detection point).

[0137] In this case, type identification can be used for differentiation. Different detection types can be pre-coded for differentiation. In determining the type identification, for the measurement point coding, if the detection type is gap, the type identification is determined as GA, and if the detection type is discontinuity, the type identification is determined as FL; for the parallelism coding, if the detection type is gap, the type identification is determined as GP (gap parallelism), and if the detection type is discontinuity, the type identification is determined as FP (discontinuity parallelism); for the symmetry coding, if the detection type is gap, the type identification is determined as GS (gap symmetry), and if the detection type is discontinuity, the type identification is determined as FS (discontinuity symmetry).

[0138] To more clearly illustrate the embodiments of this solution, Tables 1 and 2 below provide an implementation process of this solution.

[0139] Table 1

[0140] Area Identification Detection type Parallelism Standard Symmetry Standard Number of testing points sort by Importance A1 gap 1.2 1.2 2 Self-symmetry C A1 Displacement 1.2 7 asymmetry C A2 gap 1 1 7 symmetry C

[0141] Table 1 shows the obtained detection point information. Based on Table 1, the measurement point code, parallelism code, and symmetry code in Table 2 can be obtained.

[0142] Table 2

[0143]

[0144]

[0145] Step 140: Generate or update the vehicle measurement point file based on the detection code of the detection point and the detection items of the detection point information.

[0146] The aforementioned detection items refer to the data content that needs to be detected for the detection code. Of course, in actual use, the detection standards or detection accuracy corresponding to the detection content of the detection items can also be given in the vehicle measurement point file.

[0147] This invention provides a method for generating vehicle measurement point files. First, an encoding instruction for the vehicle measurement point file is obtained, and in response to the encoding instruction, the vehicle's inspection point information and the corresponding inspection items are obtained. Then, based on the inspection point information, a file encoding rule corresponding to the inspection point information is determined. Next, based on the inspection point information and the file encoding rule, a detection code corresponding to the inspection point is determined. Finally, based on the detection code of the inspection point and the inspection items of the inspection point information, the vehicle measurement point file is generated or updated. By applying the technical solution of this application, the required inspection point information and inspection items can be obtained based on the encoding instruction of the vehicle measurement point file, and a standard detection code can be generated based on the inspection point information, thereby generating or updating a vehicle measurement point file with detection codes and inspection items. This avoids the problems of irregular inspection point arrangement, errors, and untimely filling in when testers manually fill in and generate measurement point files, which affect the efficiency of vehicle appearance measurement and recording.

[0148] In this embodiment, if the test point information and test items corresponding to the test point are obtained from the vehicle's test point requirement file, the first text information of the test items in the vehicle's test point requirement file can also be obtained, and based on the first text information, the second text information of the test items in the vehicle's test point file can be determined. In this way, the text information of the test point requirement file can be retained. For example, for some information in the test point information or test items, a special format or background is set in the test point requirement file to emphasize it or to express a predetermined meaning to the tester. Therefore, the above method can be used to retain the corresponding special format or background in the vehicle test point file to ensure that the tester can obtain the complete information in the test point requirement file.

[0149] Figure 2 A schematic diagram of an embodiment of a vehicle measurement point file generation device provided by the present invention is shown. Figure 2 As shown, the vehicle measurement point file generation device 200 includes: an acquisition module 210, a file encoding rule determination module 220, a detection code determination module 230, and a file generation or update module 240.

[0150] The acquisition module 210 is used to acquire the encoding instructions of the vehicle measurement point file, and in response to the encoding instructions, acquire the vehicle's detection point information and the detection items corresponding to the detection point information.

[0151] The file encoding rule determination module 220 is used to determine the file encoding rule corresponding to the detection point information based on the detection point information;

[0152] The detection code determination module 230 is used to determine the detection code corresponding to the detection point based on the detection point information and the file encoding rules;

[0153] The file generation or update module 240 is used to generate or update the vehicle measurement point file based on the detection code of the detection point and the detection items of the detection point information.

[0154] In an optional embodiment, the file encoding rule determination module 220 is further configured to include a test point encoding rule if the test point information includes the number of test points and the sorting method of the test points.

[0155] The detection code determination module 230 is further configured to generate the measurement point number in the measurement point code based on the number of detection points, the sorting method of the detection points, and the measurement point coding rule;

[0156] Based on the sorting method and coding rules of the detection points, a position identifier is generated in the measurement point code; the combination of the measurement point number in the measurement point code and the position identifier is used to indicate the positional relationship between multiple detection points.

[0157] In an optional embodiment, the file encoding rule determination module 220 is further configured to determine that the file encoding rule includes a parallelism encoding rule if the detection point information includes the number of detection points, the sorting method of the detection points, and the parallelism standard.

[0158] The detection coding determination module 230 is further configured to generate a position identifier in the parallelism code according to the sorting method of the detection points and the parallelism coding rule; the position identifier of the parallelism code is used to indicate the positional relationship between multiple detection points.

[0159] In an optional embodiment, the file encoding rule determination module 220 is further configured to determine that the file encoding rule includes a symmetry encoding rule if the detection point information includes the number of detection points, the sorting method of the detection points, and the symmetry standard.

[0160] The detection code determination module 230 is further configured to determine the test point number in the symmetry code based on the number of test points, the symmetry standard, the sorting method of the test points, and the file encoding rules; the position identifier in the symmetry code is used to indicate the positional relationship between multiple test points.

[0161] In an optional embodiment, the detection code determination module 230 is further configured to generate a region identifier in the detection code based on the identification information of the detection region and the coding rule, wherein the region identifier is used to indicate the detection region corresponding to the detection point;

[0162] Based on the importance information and the coding rules, an importance identifier is generated in the detection code, and the importance identifier is used to indicate the importance of the detection point;

[0163] Based on the detection type and the encoding rule, a type identifier is determined in the detection encoding, and the type identifier is used to indicate the detection type of the detection point.

[0164] In one implementation, the acquisition module 210 is further configured to, in response to the encoding instruction, determine the detection point information and detection items corresponding to the detection point in the vehicle's test point requirement file;

[0165] Alternatively, in response to the encoded instructions, the detection point information and detection items corresponding to the detection points can be identified in the vehicle's clearance and gap drawings.

[0166] In one implementation, the file generation or update module 240 is further configured to obtain the first text information of the test item in the vehicle's test point requirement file, and determine the second text information of the test item in the vehicle's test point file based on the first text information.

[0167] This invention provides a vehicle measurement point file generation device that obtains the detection point information and detection items to be detected based on the encoding instructions of the vehicle measurement point file, and generates a standard detection code based on the detection point information, thereby generating or updating a vehicle measurement point file with detection codes and detection items. By applying the technical solution of this application, the problem of irregular arrangement of detection points, errors in filling and untimely filling in when testers manually fill in the generated measurement point file can be avoided, which affects the efficiency of vehicle appearance measurement and recording.

[0168] Figure 3 The diagram shows a structural schematic of an embodiment of the vehicle measurement point file generation device provided by the present invention. The specific embodiments of the present invention do not limit the specific implementation of the vehicle measurement point file generation device.

[0169] like Figure 3As shown, the device for generating the vehicle measurement point file may include: a processor 302, a communications interface 304, a memory 306, and a communication bus 308.

[0170] The processor 302, communication interface 304, and memory 306 communicate with each other via communication bus 308. Communication interface 304 is used to communicate with other network elements such as clients or other servers. The processor 302 executes program 310, specifically performing the relevant steps described in the embodiment of the method for generating vehicle measurement point files.

[0171] Specifically, program 310 may include program code, which includes computer-executable instructions.

[0172] Processor 302 may be a central processing unit (CPU), an application-specific integrated circuit (ASIC), or one or more integrated circuits configured to implement embodiments of the present invention. The device for generating vehicle measurement point files includes one or more processors, which may be processors of the same type, such as one or more CPUs; or processors of different types, such as one or more CPUs and one or more ASICs.

[0173] Memory 306 is used to store program 310. Memory 306 may include high-speed RAM memory, and may also include non-volatile memory, such as at least one disk storage device.

[0174] Specifically, program 310 can be called by processor 302 to cause the device generating the vehicle measurement point file to perform the following operations:

[0175] The system obtains the encoding instructions for the vehicle measurement point file and, in response to the encoding instructions, obtains the vehicle's detection point information and the detection items corresponding to the detection point information.

[0176] Based on the detection point information, determine the file encoding rules corresponding to the detection point information;

[0177] Based on the detection point information and the file encoding rules, determine the detection code corresponding to the detection point;

[0178] The vehicle test point file is generated or updated based on the test point code and the test items of the test point information.

[0179] In one implementation, the detection encoding includes measurement point encoding; the detection point information includes the number of detection points and the sorting method of the detection points; and the file encoding rule includes measurement point encoding rules.

[0180] The step of determining the detection code corresponding to the detection point based on the detection point information and the file encoding rule includes:

[0181] Based on the number of detection points, the sorting method of the detection points, and the coding rules of the detection points, the detection point number in the detection point code is generated;

[0182] Based on the sorting method and coding rules of the detection points, a position identifier is generated in the measurement point code; the combination of the measurement point number in the measurement point code and the position identifier is used to indicate the positional relationship between multiple detection points.

[0183] In one implementation, the detection encoding includes parallelism encoding; the detection point information includes the number of detection points, the sorting method of the detection points, and the parallelism standard; and the file encoding rules include parallelism encoding rules.

[0184] The step of determining the detection code corresponding to the detection point based on the detection point information and the file encoding rule includes:

[0185] Based on the sorting method of the detection points and the parallelism coding rules, a position identifier in the parallelism code is generated; the position identifier in the parallelism code is used to indicate the positional relationship between multiple detection points.

[0186] In one implementation, the detection encoding includes symmetry encoding; the detection point information includes the number of detection points, the sorting method of the detection points, and the symmetry standard; and the file encoding rules include symmetry encoding rules.

[0187] The step of determining the detection code corresponding to the detection point based on the detection point information and the file encoding rule includes:

[0188] Based on the number of detection points, the symmetry standard, the sorting method of the detection points, and the file encoding rules, the measurement point number in the symmetry code is determined; the position identifier in the symmetry code is used to indicate the positional relationship between multiple detection points.

[0189] In one implementation, the detection point information includes: identification information of the detection area, importance information, or detection type; the detection code includes area identifier, importance identifier, and type identifier.

[0190] The step of determining the detection code corresponding to the detection point based on the detection point information and the encoding rule includes:

[0191] Based on the identification information of the detection area and the coding rule, an area identifier is generated in the detection code, and the area identifier is used to indicate the detection area corresponding to the detection point;

[0192] Based on the importance information and the coding rules, an importance identifier is generated in the detection code, and the importance identifier is used to indicate the importance of the detection point;

[0193] Based on the detection type and the encoding rule, a type identifier is determined in the detection encoding, and the type identifier is used to indicate the detection type of the detection point.

[0194] In one implementation, the step of obtaining the vehicle's inspection point information and inspection items in response to the encoded instructions includes:

[0195] In response to the encoding instruction, the detection point information and detection items corresponding to the detection point are determined in the vehicle's measurement point requirement file; or, in response to the encoding instruction, the detection point information and detection items corresponding to the detection point are identified in the vehicle's clearance and discontinuity drawing.

[0196] In one implementation, the detection point information and detection items corresponding to the detection point are obtained from the vehicle's detection point requirement file;

[0197] The step of generating or updating the vehicle measurement point file based on the detection code of the detection point and the detection items of the detection point information specifically includes:

[0198] Obtain the first text information of the test item in the vehicle's test point requirement file, and determine the second text information of the test item in the vehicle's test point file based on the first text information.

[0199] This invention provides a vehicle measurement point file generation device that obtains the detection point information and detection items to be detected based on the encoding instructions of the vehicle measurement point file, and generates a standard detection code based on the detection point information, thereby generating or updating a vehicle measurement point file with detection codes and detection items. By applying the technical solution of this application, the problem of irregular arrangement of detection points, as well as errors and untimely filling in when testers manually fill in the generated measurement point file can be avoided, which affects the efficiency of vehicle appearance measurement and recording.

[0200] This invention provides a computer-readable storage medium storing at least one executable instruction. When the executable instruction is executed on a vehicle measurement point file generation device / apparatus, it causes the vehicle measurement point file generation device / apparatus to perform the vehicle measurement point file generation method in any of the above method embodiments.

[0201] Specifically, the executable instructions can be used to cause the device / organization that generates the vehicle measurement point file to perform the following operations:

[0202] The system obtains the encoding instructions for the vehicle measurement point file and, in response to the encoding instructions, obtains the vehicle's detection point information and the detection items corresponding to the detection point information.

[0203] Based on the detection point information, determine the file encoding rules corresponding to the detection point information;

[0204] Based on the detection point information and the file encoding rules, determine the detection code corresponding to the detection point;

[0205] The vehicle test point file is generated or updated based on the test point code and the test items of the test point information.

[0206] In one implementation, the detection encoding includes measurement point encoding; the detection point information includes the number of detection points and the sorting method of the detection points; and the file encoding rule includes measurement point encoding rules.

[0207] The step of determining the detection code corresponding to the detection point based on the detection point information and the file encoding rule includes:

[0208] Based on the number of detection points, the sorting method of the detection points, and the coding rules of the detection points, the detection point number in the detection point code is generated;

[0209] Based on the sorting method and coding rules of the detection points, a position identifier is generated in the measurement point code; the combination of the measurement point number in the measurement point code and the position identifier is used to indicate the positional relationship between multiple detection points.

[0210] In one implementation, the detection encoding includes parallelism encoding; the detection point information includes the number of detection points, the sorting method of the detection points, and the parallelism standard; and the file encoding rules include parallelism encoding rules.

[0211] The step of determining the detection code corresponding to the detection point based on the detection point information and the file encoding rule includes:

[0212] Based on the sorting method of the detection points and the parallelism coding rules, a position identifier in the parallelism code is generated; the position identifier in the parallelism code is used to indicate the positional relationship between multiple detection points.

[0213] In one implementation, the detection encoding includes symmetry encoding; the detection point information includes the number of detection points, the sorting method of the detection points, and the symmetry standard; and the file encoding rules include symmetry encoding rules.

[0214] The step of determining the detection code corresponding to the detection point based on the detection point information and the file encoding rule includes:

[0215] Based on the number of detection points, the symmetry standard, the sorting method of the detection points, and the file encoding rules, the measurement point number in the symmetry code is determined; the position identifier in the symmetry code is used to indicate the positional relationship between multiple detection points.

[0216] In one implementation, the detection point information includes: identification information of the detection area, importance information, or detection type; the detection code includes area identifier, importance identifier, and type identifier.

[0217] The step of determining the detection code corresponding to the detection point based on the detection point information and the encoding rule includes:

[0218] Based on the identification information of the detection area and the coding rule, an area identifier is generated in the detection code, and the area identifier is used to indicate the detection area corresponding to the detection point;

[0219] Based on the importance information and the coding rules, an importance identifier is generated in the detection code, and the importance identifier is used to indicate the importance of the detection point;

[0220] Based on the detection type and the encoding rule, a type identifier is determined in the detection encoding, and the type identifier is used to indicate the detection type of the detection point.

[0221] In one implementation, the step of obtaining the vehicle's inspection point information and inspection items in response to the encoded instructions includes:

[0222] In response to the encoding instruction, the detection point information and detection items corresponding to the detection point are determined in the vehicle's measurement point requirement file; or, in response to the encoding instruction, the detection point information and detection items corresponding to the detection point are identified in the vehicle's clearance and discontinuity drawing.

[0223] In one implementation, the detection point information and detection items corresponding to the detection point are obtained from the vehicle's detection point requirement file;

[0224] The step of generating or updating the vehicle measurement point file based on the detection code of the detection point and the detection items of the detection point information specifically includes:

[0225] Obtain the first text information of the test item in the vehicle's test point requirement file, and determine the second text information of the test item in the vehicle's test point file based on the first text information.

[0226] This invention provides a computer-readable storage medium that obtains the detection point information and detection items to be detected based on the encoding instructions of the vehicle measurement point file, and generates a standard detection code based on the detection point information, thereby generating or updating a vehicle measurement point file with the detection code and detection items. By applying the technical solution of this application, the problem of irregular arrangement of detection points, as well as errors and delays in filling in the measurement point file when testers manually fill in the generated measurement point file can be avoided, which affects the efficiency of vehicle appearance measurement and recording.

[0227] The algorithms or displays provided herein are not inherently related to any particular computer, virtual system, or other device. Furthermore, the embodiments of this invention are not directed to any particular programming language.

[0228] Numerous specific details are set forth in the specification provided herein. However, it will be understood that embodiments of the invention may be practiced without these specific details. Similarly, for the sake of brevity and to aid in understanding one or more aspects of the invention, in the description of exemplary embodiments of the invention above, various features of the embodiments are sometimes grouped together in a single embodiment, figure, or description thereof. The claims, which follow the detailed description, are hereby expressly incorporated into that detailed description, wherein each claim itself is a separate embodiment of the invention.

[0229] Those skilled in the art will understand that the modules in the device of the embodiment can be adaptively changed and placed in one or more devices different from that embodiment. Modules, units, or components in the embodiment can be combined into a single module, unit, or component, and further, they can be divided into multiple sub-modules, sub-units, or sub-components, except that at least some of such features and / or processes or units are mutually exclusive.

[0230] It should be noted that the above embodiments are illustrative of the invention and not restrictive, and that those skilled in the art can devise alternative embodiments without departing from the scope of the appended claims. In the claims, any reference signs placed between parentheses should not be construed as limiting the claims. The word "comprising" does not exclude the presence of elements or steps not listed in the claims. The word "a" or "an" preceding an element does not exclude the presence of a plurality of such elements. The invention can be implemented by means of hardware comprising several different elements and by means of a suitably programmed computer. In the unit claims enumerating several means, several of these means may be embodied by the same item of hardware. The use of the words first, second, and third, etc., does not indicate any order. These words can be interpreted as names. The steps in the above embodiments, unless otherwise specified, should not be construed as limiting the order of execution.

Claims

1. A method of generating a vehicle measurement point file, characterized by, The method for generating the vehicle measurement point file comprises: obtaining an encoding instruction of a vehicle measurement point file, and in response to the encoding instruction, obtaining detection point information of the vehicle and a detection item corresponding to the detection point information; determining a file encoding rule corresponding to the detection point information according to the detection point information; determining a detection code corresponding to the detection point according to the detection point information and the file encoding rule; generating or updating the vehicle measurement point file according to the detection code of the detection point and the detection item of the detection point information; wherein, if the detection code comprises a measurement point code, the detection point information comprises a number of detection points and an ordering mode of the detection points, and the file encoding rule comprises a measurement point code rule, the step of determining the detection code corresponding to the detection point according to the detection point information and the file encoding rule comprises: generating a measurement point number in the measurement point code according to the number of detection points, the ordering mode of the detection points and the measurement point code rule; generating a position identifier in the measurement point code according to the ordering mode of the detection points and the measurement point code rule; the combination of the measurement point number in the measurement point code and the position identifier is used to indicate the positional relationship between the plurality of detection points; if the detection code comprises a parallelism code, the detection point information comprises a number of detection points, an ordering mode of the detection points and a parallelism standard, and the file encoding rule comprises a parallelism code rule, the step of determining the detection code corresponding to the detection point according to the detection point information and the file encoding rule comprises: generating a position identifier in the parallelism code according to the ordering mode of the detection points and the parallelism code rule; the position identifier in the parallelism code is used to indicate the positional relationship between the plurality of detection points; if the detection code comprises a symmetry code, the detection point information comprises a number of detection points, an ordering mode of the detection points and a symmetry standard, and the file encoding rule comprises a symmetry code rule, the step of determining the detection code corresponding to the detection point according to the detection point information and the file encoding rule comprises: determining a measurement point number in the symmetry code according to the number of detection points, the symmetry standard, the ordering mode of the detection points and the file encoding rule; a position identifier in the symmetry code is used to indicate the positional relationship between the plurality of detection points.

2. The method of claim 1, wherein, The detection point information comprises identification information, importance information or detection type of a detection area; the detection code comprises area identification, importance identification and type identification; the step of determining the detection code corresponding to the detection point according to the detection point information and the encoding rule comprises: generating the area identification in the detection code according to the identification information of the detection area and the encoding rule, the area identification being used to indicate the detection area corresponding to the detection point; generating the importance identification in the detection code according to the importance information and the encoding rule, the importance identification being used to indicate the importance of the detection point. According to the detection type and the coding rule, a type identifier in the detection coding is determined, the type identifier being used to indicate the detection type of the detection point.

3. The method of claim 1, wherein, In response to the coding instruction, the detection point information of the vehicle and the detection item are acquired, including: In response to the coding instruction, the detection point information and the detection item corresponding to the detection point are determined in the detection point requirement file of the vehicle; Or, In response to the coding instruction, the detection point information and the detection item corresponding to the detection point are identified in the gap drawing of the vehicle.

4. The method of claim 3, wherein, If the detection point information and the detection item corresponding to the detection point are acquired from the detection point requirement file of the vehicle, then the vehicle detection point file is generated or updated according to the detection coding of the detection point and the detection item of the detection point information, specifically including: The first text information of the detection item in the detection point requirement file of the vehicle is acquired, and the second text information of the detection item in the vehicle detection point file is determined based on the first text information.

5. An apparatus for generating a vehicle measurement point file, characterized by The vehicle detection point file generation device includes: An acquisition module is configured to acquire a coding instruction of a vehicle detection point file, and in response to the coding instruction, acquire detection point information of the vehicle and a detection item corresponding to the detection point information; A file coding rule determination module is configured to determine a file coding rule corresponding to the detection point information according to the detection point information; A detection coding determination module is configured to determine a detection coding corresponding to the detection point according to the detection point information and the file coding rule; A file generation or update module is configured to generate or update the vehicle detection point file according to the detection coding of the detection point and the detection item of the detection point information; The file coding rule determination module is further configured to, if the detection point information includes the number of detection points and the sorting mode of the detection points, the file coding rule includes a detection point coding rule; The detection coding determination module is further configured to generate a detection point number in the detection point coding according to the number of detection points, the sorting mode of the detection points and the detection point coding rule; According to the sorting mode of the detection point and the detection point coding rule, a position identifier in the detection point coding is generated; and a combination of the detection point number of the detection point coding and the position identifier is used to indicate the positional relationship between the plurality of detection points; The file coding rule determination module is further configured to, if the detection point information includes the number of detection points, the sorting mode of the detection points and the parallel degree standard, determine that the file coding rule includes a parallel degree coding rule; The detection coding determination module is further configured to generate a position identifier in the parallel degree coding according to the sorting mode of the detection point and the parallel degree coding rule; and the position identifier in the parallel degree coding is used to indicate the positional relationship between the plurality of detection points; The file coding rule determination module is further configured to, if the detection point information includes the number of detection points, the sorting mode of the detection points and the symmetry degree standard, determine that the file coding rule includes a symmetry degree coding rule; The detection code determination module is further configured to, if the detection code comprises symmetry code, the detection point information comprises a number of detection points, an ordering manner of the detection points, and a symmetry standard, and the file coding rule comprises a symmetry coding rule, determine a detection point number in the symmetry code according to the number of detection points, the symmetry standard, the ordering manner of the detection points, and the file coding rule; and a position identifier in the symmetry code is used to indicate a position relationship between the detection points.

6. A vehicle measurement point file generation device characterized by comprising: Comprise: a processor, a memory, a communication interface, and a communication bus, the processor, the memory, and the communication interface complete communication with each other through the communication bus; The memory is used to store at least one executable instruction, and the executable instruction causes the processor to perform the operations of the vehicle detection point file generation method according to any one of claims 1-4.

7. A computer readable storage medium characterized in that, The storage medium stores at least one executable instruction, and the executable instruction causes the vehicle detection point file generation device / apparatus to perform the operations of the vehicle detection point file generation method according to any one of claims 1-4 when the vehicle detection point file generation device / apparatus runs.

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