CN113590882A - Automobile circuit electronic atlas integrating method - Google Patents

Automobile circuit electronic atlas integrating method Download PDF

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CN113590882A
CN113590882A CN202110886764.5A CN202110886764A CN113590882A CN 113590882 A CN113590882 A CN 113590882A CN 202110886764 A CN202110886764 A CN 202110886764A CN 113590882 A CN113590882 A CN 113590882A
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directory
atlas
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CN113590882B (en
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雷以文
李彬
王煜
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Wuhan Pinzhi Automobile Technology Co ltd
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    • G06FELECTRIC DIGITAL DATA PROCESSING
    • G06F40/00Handling natural language data
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Abstract

The invention belongs to the technical field of automobile aftermarket maintenance, and particularly relates to an automobile circuit electronic album integration method. The method receives and arranges technical data of a client vehicle type, manufactures a catalogue frame table according to the compiling specification of a circuit atlas of an automobile host factory, defines and manufactures a definition table by components, and draws an SVG (scalable vector graphics) graph; then integrating all the parts together through an integration tool to generate an electronic album XML directory file and a complete circuit album; the convenience is brought to the after-market maintenance and calling; the circuit atlas automatic content integration method adopts a system tool to automatically integrate the circuit atlas content, greatly improves the efficiency of circuit atlas integration, reduces wrong contents caused by manual development, and ensures the technical accuracy of circuit atlas deliveries.

Description

Automobile circuit electronic atlas integrating method
Technical Field
The invention belongs to the technical field of automobile aftermarket maintenance, and particularly relates to an automobile circuit electronic album integration method.
Background
Along with the improvement of the electrification and the intelligent degree of the automobile, the structure and the principle of the electric appliance of the automobile are more and more complex. The circuit atlas has become an indispensable technical basis in the technical service after the automobile sale. The circuit atlas plays an important role in diagnosing the electric appliance faults of the service station.
The circuit atlas mainly comprises a system circuit diagram, a terminal diagram, a wiring harness layout diagram, a pin definition list and the like. These content quantities and file types are numerous. Such as: the circuit diagram and layout diagram of the system are in SVG format, and the number of the single vehicle type is about 150. The terminal graph is also in an SVG format, and about 300 vehicle models exist in a single vehicle. The stitch definition is in EXCEL format, with roughly 2000 lines of data for a single vehicle model. The data are finally integrated and output manually by adopting a traditional circuit diagram development mode, the integration workload is large, and the condition of data loss or error is easy to occur to influence the quality of the delivered goods.
Disclosure of Invention
Aiming at solving the problems of the defects and the shortcomings of the prior art; the invention aims to provide an automobile circuit electronic album integrating method which is simple in structure, reasonable in design and convenient to use, and adopts a system tool to automatically integrate the circuit album content, so that the circuit diagram integrating efficiency is greatly improved, wrong contents caused by manual development are reduced, and the technical accuracy of circuit album deliveries is ensured.
In order to achieve the purpose, the invention adopts the technical scheme that: the integration method comprises the following steps:
the method comprises the following steps: editing directory frame information; receiving and sorting technical data of a client vehicle type, making a catalog frame according to a circuit atlas compiling specification and filling information; the general directory framework comprises information elements such as a secondary directory, a tertiary directory, a quaternary directory, a description column and the like;
the secondary catalog content is classified according to drawing information and elements related to circuit atlas development, and mainly comprises the following steps: 1. fuses, relays; 2. wiring harness and connector arrangement thereof; 3. arranging a grounding point; 4. a power distribution map; 5. information such as a system circuit diagram; the next-level catalogues are all expanded and subdivided around the classification of the previous-level catalogues;
in addition, the title name in the corresponding generated XML file, the name of the input SVG picture file, and the names of other part elements in the working process all use the title name in the four-level directory of the table as a reference standard;
step two: inputting an SVG picture for making, and making and standardizing a vehicle type input SVG picture; the input SVG graph is divided into two types: one is used for making terminal graphs, and the file name rules are as follows: "number" + "space" + "terminal name"; the other is used for manufacturing outside the terminal diagram, and the naming mode is consistent with the last-level directory name of the directory framework in the step one;
step three: editing terminal definition information, editing the terminal definition information according to drawing information, and filling the information; the terminal definition information should include the following: the wire harness, the circuit atlas connector number, the circuit atlas connector name, the pin of the wire harness connector, the wire number, the wire color, the wire diameter, the configuration description, the function and the like;
step four: editing terminal definition information, editing the terminal definition information according to drawing information, and filling the information; the terminal definition information should include the following: the wire harness, the circuit atlas connector number, the circuit atlas connector name, the pin of the wire harness connector, the wire number, the wire color, the wire diameter, the configuration description, the function and the like;
if the vehicle types have the same vehicle type and different configurations, modifying the second column of titles into the configuration names corresponding to the first name, and modifying the third column of titles into the configuration names corresponding to the second name; and inputting a corresponding second connector name in a third column; meanwhile, the corresponding layout diagram and the system diagram also need to be modified;
step five: fuse/relay information editing, wherein the fuse/relay information comprises information such as fuses, relay types, numbers, names, rated currents, descriptions and the like;
step six: storing the file; newly building a source file input folder sourcefile and a source file output folder targetfile;
after the terminal definition table information, the terminal name information, the fuse/relay information and the directory frame information are finished, the terminal definition table information, the terminal name information, the fuse/relay information and the directory frame information are stored in a sourcefile directory of a new folder, all SVG (scalable vector graphics) are placed in new folder graphics, and the graphics folder is placed under the sourcefile folder; the folder sourcefile is a software toolkit root folder;
step seven: and performing information input setting on the integration tool, wherein the required input information comprises the following steps:
a. vehicle type code-the code of the developed vehicle type of the host factory
b. Manual title-project name of the development project
c. Vehicle type-type of the vehicle type
d. Input directory-source area of input file
e. Output directory-output file storage area
The 'vehicle type code' is used for making a lower corner mark of each page of a circuit atlas, a lower right corner figure number of an SVG figure, a 'manual title' is used for a cover display title, a 'picture letter' is a last letter of the lower right corner figure number of the SVG figure, an 'input directory' is set as a source file input folder, namely 'sourcefile' in the sixth step, and an 'output directory' is set as an output folder after integration, namely 'targetfile' in the sixth step; after the setting is finished, automatically integrating the XML source file;
step eight: identifying, calling and integrating information of each text content to complete development of a text part catalog of the circuit atlas;
A. identifying directory frame text information, and automatically forming each XML file directory and a corresponding ditamap file in a targetfile folder;
B. identifying title names, inserting corresponding information, automatically identifying the title names according to XML file directory title names, associating terminal definition information, terminal name information, the same title names in fuse/relay information and all definition information related to the same title names, and integrating the information into XML files corresponding to the titles; the integration and the insertion of the SVG are accurately corresponding by identifying the terminal name;
C. outputting according to the set input information, outputting the information of the vehicle type code to the lower corner mark of each page of the circuit atlas and the lower right corner figure number of the SVG picture, and outputting the picture letters to the lower right corner figure number of each SVG picture; outputting the information of the 'manual title' and the 'vehicle type code' to a ditamap file name;
step nine: checking the problems, wherein in the integration process, the tool can generate a problem list according to the material integration condition;
step ten: and (4) publishing the manual, calling the XML files of the front description template and the following abbreviation template of the universal circuit atlas, editing, supplementing and perfecting other contents of each XML source file, and then inserting the contents into the ditamap file according to the sequence of the directory frame to complete the development and publishing of the circuit atlas.
Preferably, each SVG graph input in the second step is provided with a graph layer number, and the graph layer name for making the lower right corner of the graph is a 'graph number'; the naming convention is "platform code of vehicle type" + "circuit album number" + "-" + "chapter mark" + "running water" + "lower case letter".
Preferably, the content of the "belonging wire harness" needs to be standardized and unified according to the wire harness name in the directory frame in the step one, otherwise, the corresponding belonging wire harness cannot be found.
Preferably, the naming rule of the layout directory framework configured by two of the fourth steps is as follows: "Placement diagram/System diagram name" + "-" + "configuration Specification/second, three List configuration name".
Preferably, the directory name setting generation format of each XML file automatically formed in the step eight a item is as follows: "chapter mark" + "space" + "title name" + "-" + "vehicle type code" + ". dita"; the chapter number is identified and numbered according to the title grade of the directory frame, the default first-level directory is a circuit atlas, the number is the digital code of the circuit atlas of the host factory, and the second-level, third-level and fourth-level directories are subdivided on the basis of the first-level directory;
wherein; the filename of the ditamap file is set as: "manual title" + "vehicle type code" + "ditamap".
After adopting the structure, the invention has the beneficial effects that: the circuit atlas automatic content integration method adopts a system tool to automatically integrate the circuit atlas content, greatly improves the efficiency of circuit atlas integration, reduces wrong contents caused by manual development, and ensures the technical accuracy of circuit atlas deliveries.
Drawings
To more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the present invention is described in detail by the following specific embodiments and the accompanying drawings.
FIG. 1 is a flow chart of the present invention;
Detailed Description
In order that the objects, aspects and advantages of the invention will become more apparent, the invention will be described by way of example only, and in connection with the accompanying drawings. It is to be understood that such description is merely illustrative and not intended to limit the scope of the present invention. Moreover, in the following description, descriptions of well-known structures and techniques are omitted so as to not unnecessarily obscure the concepts of the present invention.
It should be noted that, in order to avoid obscuring the present invention with unnecessary details, only the structures and/or processing steps closely related to the scheme according to the present invention are shown in the drawings, and other details not so relevant to the present invention are omitted.
Example (b): description of development process of certain automobile circuit atlas
1. Work background
And integrating the finished original file of the circuit atlas into an XML file and a ditamap.
2. Equipment & tools
EXCEL and AI software and automatic integration tool
3. Operation sequence and steps
3.1 catalog framework fabrication
And editing second, third and fourth-level catalog information in a catalog frame according to the actual development condition of the vehicle type and the xxx automobile circuit atlas compilation specification.
Note that: the table corresponds to the title name in the generated XML file, the name of the input SVG image file, and all the tables are referred to by the table in the operation process.
3.2 input SVG Picture making
A. And standardizing the input SVG of the vehicle type. The input SVG pictures are divided into two types, one is used for making terminal pictures, and the other SVG pictures are used for making other terminal pictures. The file name rule of the terminal graph is as follows: the "number" + "space" + "terminal name", and the file names of the remaining figures are consistent with the last-level directory name of the 3.1 directory frame.
B. Layer naming rules in the SVG picture: the layer name used to make the picture number at the bottom right corner of the picture is the "picture number".
C. Layer naming rules in the SVG picture: the layer name used to make the picture number at the bottom right corner of the picture is the "picture number".
3.3 terminal definition information editing
The input terminal definition information is completely filled, and the wire harness connector list is judged and manufactured according to the column contents of the 'belonging wire harness', 'circuit atlas connector number' and 'circuit atlas connector name'. The pin number of each terminal is judged according to the maximum pin number in the provided SVG picture, each pin definition of the terminal is manufactured according to the wire harness connector pin and the function of the wire harness connector pin, and the short transverse lines can be automatically filled by the software with the empty function.
Note that: the content of the 'belonging wire harness column' needs to be standardized according to the wire harness name in the directory frame, otherwise, the corresponding belonging wire harness cannot be found; the inserts can be separated by using name numbers of right books, and can also be separated according to the connector mode.
3.4 terminal name information editing
The terminal name information is used for list content production below the system diagram; all the terminal connector numbers are input in the first column, and the connector names are input in the second column.
Note that: if the vehicle type has the condition that the connectors have the same serial numbers and different names, the second row of titles needs to be modified into the configuration corresponding to the first name, and the third row of titles needs to be modified into the configuration corresponding to the second name; and the corresponding second type of connector name is entered in the third column.
The arrangement diagram and the system diagram corresponding to the situation with the same number and different names also need to be modified. The layout directory framework naming rules for both configurations are: "layout/system diagram name" + "-" + "configuration caption/second, three columns of header text".
3.5 fuse/Relay information editing
And editing and inputting the fuse, the relay type, the serial number, the name, the rated current, the description and the like.
3.6 software execution
And storing the terminal definition information, the terminal name information, the fuse/relay information and the directory frame information in a sourcefile directory after the terminal definition information, the terminal name information, the fuse/relay information and the directory frame information are completed, putting all the SVG pictures into a graphics folder, and putting the graphics folder under the sourcefile folder.
After the preparation work is finished, double-click software is opened, and the operation page is entered after login; the model number is input as two digits and used for making a file name of an SVG (scalable vector graphics), the model code is used for making a lower corner mark of each page of a circuit atlas, the picture number of the lower right corner of the SVG, the manual title is used for displaying a title of a front cover, the picture letter is a last letter of the picture number of the lower right corner of the SVG, the vehicle type can select new energy and a traditional vehicle, the input directory needs to be selected as the position of the sourcefile of an input folder, and the output directory is set as targetfile. After the setting is finished, clicking 'execute' to start automatic integration.
The functions of the automatic integration tool: automatically integrating the XML file and checking the content of the circuit atlas; an integration part: the method can generate XML files according to the directory framework, the table of terminal definition, terminal name, relay fuse and the like and SVG graphics which are input by people, and finally the XML files are released into manuals.
The directory framework determines the number and the name of the generated XML files and the bookmarks and chapters of the PDF; the terminal definition determines a terminal definition part in a manual; the terminal name determines the connector list portion of the manual; the relay fuses determine the fuse list part of the manual.
In addition, the integration tool in the verification function can extract information such as SVG (scalable vector graphics), tables and file names to perform data proofreading: 1. checking consistency between the fuse diagram and the list; 2. the consistency of the fuse amperage in the system graph and the amperage in the list; 3. checking whether the fuses of the system diagram of the same chapter are repeated; 4. checking whether the pins of the graphic elements of the same chapter system are drawn repeatedly; 5. checking whether the component numbers in the whole manual are consistent; 6. checking the difference between the element number and the name in the terminal definition and the terminal name of the input table; 7. checking whether the number of pins of the terminal definition table and the SVG terminal sub-graph is consistent or not; 8. checking whether all the grounding point numbers are consistent, and whether chapters are absent or redundant; 9. and (4) checking whether names in the SVG picture, the frame and the terminal name table are consistent or not, so that picture links are lost.
3.7 perfecting the document
And opening the output folder, perfecting the XML file, checking the generated 'problem list', checking whether a problem prompt exists, and analyzing and modifying the problem. After completion, the PDF can be issued to view the integration condition.
4. Matters of attention
4.1 the input SVG needs a picture layer of 'picture number' for making the picture number.
4.2 the connection between the switching point and the line of the system diagram needs to be standardized, and the connection distance cannot be too far away.
4.3 when the numbers of the connectors are the same and the names of the connectors are different, the related layout drawing and the system drawing are reflected in the directory frame and are divided into two drawings; if in the form of a configuration box in a single drawing, the software may not be able to correctly recognize the connector name and layout drawing.
4.4 when the second list in the system diagram is switched to a pin of the relay, the software cannot be correctly linked to the corresponding page number, and manual improvement is needed.

Claims (5)

1. An automobile circuit electronic atlas integration method is characterized in that: the integration method comprises the following steps:
the method comprises the following steps: editing directory frame information; receiving and sorting technical data of a client vehicle type, making a catalog frame according to a circuit atlas compiling specification and filling information; the general directory framework comprises information elements such as a secondary directory, a tertiary directory, a quaternary directory, a description column and the like;
the secondary catalog content is classified according to drawing information and elements related to circuit atlas development, and mainly comprises the following steps: 1. fuses, relays; 2. wiring harness and connector arrangement thereof; 3. arranging a grounding point; 4. a power distribution map; 5. information such as a system circuit diagram; the next-level catalogues are all expanded and subdivided around the classification of the previous-level catalogues;
in addition, the title name in the corresponding generated XML file, the name of the input SVG picture file, and the names of other part elements in the working process all use the title name in the four-level directory of the table as a reference standard;
step two: inputting an SVG picture for making, and making and standardizing a vehicle type input SVG picture; the input SVG graph is divided into two types: one is used for making terminal graphs, and the file name rules are as follows: "number" + "space" + "terminal name"; the other is used for manufacturing outside the terminal diagram, and the naming mode is consistent with the last-level directory name of the directory framework in the step one;
step three: editing terminal definition information, editing the terminal definition information according to drawing information, and filling the information; the terminal definition information should include the following: the wire harness, the circuit atlas connector number, the circuit atlas connector name, the pin of the wire harness connector, the wire number, the wire color, the wire diameter, the configuration description, the function and the like;
step four: editing terminal definition information, editing the terminal definition information according to drawing information, and filling the information; the terminal definition information should include the following: the wire harness, the circuit atlas connector number, the circuit atlas connector name, the pin of the wire harness connector, the wire number, the wire color, the wire diameter, the configuration description, the function and the like;
if the vehicle types have the same vehicle type and different configurations, modifying the second column of titles into the configuration names corresponding to the first name, and modifying the third column of titles into the configuration names corresponding to the second name; and inputting a corresponding second connector name in a third column; meanwhile, the corresponding layout diagram and the system diagram also need to be modified;
step five: fuse/relay information editing, wherein the fuse/relay information comprises information such as fuses, relay types, numbers, names, rated currents, descriptions and the like;
step six: storing the file; newly building a source file input folder sourcefile and a source file output folder targetfile;
after the terminal definition table information, the terminal name information, the fuse/relay information and the directory frame information are finished, the terminal definition table information, the terminal name information, the fuse/relay information and the directory frame information are stored in a sourcefile directory of a new folder, all SVG (scalable vector graphics) are placed in new folder graphics, and the graphics folder is placed under the sourcefile folder; the folder sourcefile is a software toolkit root folder;
step seven: and performing information input setting on the integration tool, wherein the required input information comprises the following steps:
a. vehicle type code-the code of the developed vehicle type of the host factory
b. Manual title-project name of the development project
c. Vehicle type-type of the vehicle type
d. Input directory-source area of input file
e. Output directory-output file storage area
The 'vehicle type code' is used for making a lower corner mark of each page of a circuit atlas, a lower right corner figure number of an SVG figure, a 'manual title' is used for a cover display title, a 'picture letter' is a last letter of the lower right corner figure number of the SVG figure, an 'input directory' is set as a source file input folder, namely 'sourcefile' in the sixth step, and an 'output directory' is set as an output folder after integration, namely 'targetfile' in the sixth step; after the setting is finished, automatically integrating the XML source file;
step eight: identifying, calling and integrating information of each text content to complete development of a text part catalog of the circuit atlas;
A. identifying directory frame text information, and automatically forming each XML file directory and a corresponding ditamap file in a targetfile folder;
B. identifying title names, inserting corresponding information, automatically identifying the title names according to XML file directory title names, associating terminal definition information, terminal name information, the same title names in fuse/relay information and all definition information related to the same title names, and integrating the information into XML files corresponding to the titles; the integration and the insertion of the SVG are accurately corresponding by identifying the terminal name;
C. outputting according to the set input information, outputting the information of the vehicle type code to the lower corner mark of each page of the circuit atlas and the lower right corner figure number of the SVG picture, and outputting the picture letters to the lower right corner figure number of each SVG picture; outputting the information of the 'manual title' and the 'vehicle type code' to a ditamap file name;
step nine: checking the problems, wherein in the integration process, the tool can generate a problem list according to the material integration condition;
step ten: and (4) publishing the manual, calling the XML files of the front description template and the following abbreviation template of the universal circuit atlas, editing, supplementing and perfecting other contents of each XML source file, and then inserting the contents into the ditamap file according to the sequence of the directory frame to complete the development and publishing of the circuit atlas.
2. The method for integrating the electronic atlas of automotive circuits of claim 1, wherein the method comprises the following steps: each SVG picture input in the second step is provided with a picture layer number for making a picture layer name at the lower right corner of the picture as a 'picture number'; the naming convention is "platform code of vehicle type" + "circuit album number" + "-" + "chapter mark" + "running water" + "lower case letter".
3. The method for integrating the electronic atlas of automotive circuits of claim 1, wherein the method comprises the following steps: and the content of the 'belonging wire harness' needs to be standardized and unified according to the wire harness name in the directory frame in the step one, otherwise, the corresponding belonging wire harness cannot be found.
4. The method for integrating the electronic atlas of automotive circuits of claim 1, wherein the method comprises the following steps: the naming rule of the layout chart directory frame configured by two kinds in the fourth step is as follows: "Placement diagram/System diagram name" + "-" + "configuration Specification/second, three List configuration name".
5. The method for integrating the electronic atlas of automotive circuits of claim 1, wherein the method comprises the following steps: the directory name setting and generating format of each XML file automatically formed in the item in the step eight A is as follows: "chapter mark" + "space" + "title name" + "-" + "vehicle type code" + ". dita"; the chapter number is identified and numbered according to the title grade of the directory frame, the default first-level directory is a circuit atlas, the number is the digital code of the circuit atlas of the host factory, and the second-level, third-level and fourth-level directories are subdivided on the basis of the first-level directory;
wherein; the filename of the ditamap file is set as: "manual title" + "vehicle type code" + "ditamap".
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