CN111460792B - Auxiliary editing and correcting method and device and storage medium - Google Patents

Auxiliary editing and correcting method and device and storage medium Download PDF

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CN111460792B
CN111460792B CN201910048711.9A CN201910048711A CN111460792B CN 111460792 B CN111460792 B CN 111460792B CN 201910048711 A CN201910048711 A CN 201910048711A CN 111460792 B CN111460792 B CN 111460792B
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reference information
item
processed
calibrated
compiled
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CN111460792A (en
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耿红霞
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New Founder Holdings Development Co ltd
Beijing Founder Electronics Co Ltd
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New Founder Holdings Development Co ltd
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Abstract

The application provides an auxiliary editing and correcting method, an auxiliary editing and correcting device and a storage medium. The method comprises the following steps: acquiring a plurality of items to be processed in a file to be compiled and calibrated; taking each item to be processed as a main item, and searching the reference information associated with the main item in the file to be compiled and calibrated to obtain a search result; and displaying the search result. The method can solve the problems of lower efficiency and waste of human resources caused by manual implementation of auxiliary editing and correcting work to a certain extent.

Description

Auxiliary editing and correcting method and device and storage medium
Technical Field
The present application relates to the field of auxiliary editing and correction technologies, and in particular, to an auxiliary editing and correction method and apparatus, and a storage medium.
Background
Auxiliary editing and correction are important quality assurance in the file production process, and are generally used for editing and correcting structural contents of files, such as tool books. At present, different structural requirements are provided for different types of files, and the normal use of the files is directly influenced by the structural content, so that the current auxiliary editing and correcting work is generally born by editors.
In other words, the existing auxiliary editing and correcting work is manually implemented, which has the problems of lower auxiliary editing and correcting efficiency and waste of human resources.
Disclosure of Invention
The application provides an auxiliary editing and correcting method and device and a storage medium, which can solve the problems of lower efficiency and waste of human resources caused by manually realizing auxiliary editing and correcting work to a certain extent.
In a first aspect, the present application provides an auxiliary editing and correcting method, including:
acquiring a plurality of items to be processed in a file to be compiled and calibrated;
taking each item to be processed as a main item, and searching the reference information associated with the main item in the file to be compiled and calibrated to obtain a search result;
and displaying the search result.
In a second aspect, the present application provides an auxiliary editing and correcting device, comprising:
the acquisition module is used for acquiring a plurality of items to be processed in the file to be compiled and calibrated;
the retrieval module is used for taking each item to be processed as a main item, retrieving the reference information associated with the main item in the file to be compiled and calibrated, and obtaining a retrieval result;
and the display module is used for displaying the search result.
In a third aspect, the present application provides an auxiliary braiding device comprising:
a memory;
a processor; and
a computer program;
wherein the computer program is stored in the memory and configured to be executed by the processor to implement the method according to the first aspect.
In a fourth aspect, the present application provides a computer-readable storage medium having a computer program stored thereon,
the computer program is executed by a processor to implement the method as described in the first aspect.
According to the auxiliary editing and correcting method, the device and the storage medium, all the items in the target file are acquired, then each item is used as the main item to automatically search the reference information and display the search result, so that the auxiliary editing and correcting of the reference information is automatically realized by a machine in a software mode, and compared with the prior art of manually realizing the auxiliary editing and correcting, the technical scheme provided by the embodiment of the application can effectively improve the auxiliary editing and correcting efficiency and save the manpower resource cost and the time cost.
Drawings
The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the disclosure and together with the description, serve to explain the principles of the disclosure.
FIG. 1 is a schematic flow chart of an auxiliary editing and correcting method according to an embodiment of the present application;
FIG. 2 is a schematic diagram of a display mode of a search result according to an embodiment of the present application;
FIG. 3 is a schematic flow chart of a retrieval process for a main entry according to an embodiment of the present application;
FIG. 4 is a schematic diagram of a search sample according to an embodiment of the present application;
FIG. 5 is a schematic diagram of another search sample provided by an embodiment of the present application;
FIG. 6 is a schematic diagram of another search sample provided by an embodiment of the present application;
FIG. 7 is a schematic diagram of another search sample provided by an embodiment of the present application;
FIG. 8 is a schematic diagram of another search sample provided by an embodiment of the present application;
FIG. 9 is a schematic diagram of another search sample provided by an embodiment of the present application;
FIG. 10 is a schematic diagram of another search sample provided by an embodiment of the present application;
FIG. 11 is a functional block diagram of an auxiliary editing and calibrating device according to an embodiment of the present application;
fig. 12 is a schematic physical structure diagram of an auxiliary editing and calibrating device according to an embodiment of the present application.
Specific embodiments of the present disclosure have been shown by way of the above drawings and will be described in more detail below. These drawings and the written description are not intended to limit the scope of the disclosed concepts in any way, but rather to illustrate the disclosed concepts to those skilled in the art by reference to specific embodiments.
Detailed Description
Reference will now be made in detail to exemplary embodiments, examples of which are illustrated in the accompanying drawings. When the following description refers to the accompanying drawings, the same numbers in different drawings refer to the same or similar elements, unless otherwise indicated. The implementations described in the following exemplary examples are not representative of all implementations consistent with the present disclosure. Rather, they are merely examples of apparatus and methods consistent with some aspects of the present disclosure as detailed in the accompanying claims.
First, the terms involved in the present application will be explained:
auxiliary collation refers to standardized processing and collation of constructs from structural aspects, such as some structural issues, proper noun use, and other unification issues.
The implementation is an important component for auxiliary editing and checking, and is used for checking the see relation among the items so as to reduce unnecessary repeated text release and prevent see empty, thereby being capable of improving the information entropy value of the tool book.
An entry comprising: a header for defining a name of an item and a body for interpreting the header.
For example, the word item B is referred to in the text of the item a, and the item B can be regarded as the reference information of the item a by referring to implementation, so that only the reference information B needs to be indicated in the text of the item a, and the explanation of the item B in the text of the item a is not repeated. In short, the reference implementation is used to establish an association relationship between the master entry and the reference information.
The specific application scene of the application is a see-through implementation scheme in an auxiliary editing and correcting scene. The current reference implementation is generally verified by manual implementation by staff in a redacted organization. However, this implementation is also applicable to small-volume files, and when reference is made to a large-volume tool book, the number of the tool book entries may be thousands, and still the reference is manually implemented, which clearly requires a large labor cost and a time cost, and may seriously affect the auxiliary editing and correcting progress.
The auxiliary editing and correcting method provided by the application aims to solve the technical problems in the prior art and provides the following solving ideas: by means of the searching mode, the computer searches the reference information for each item, and automatically outputs and displays the searching result, so that the effects of saving labor cost and time cost are achieved.
The following describes the technical scheme of the present application and how the technical scheme of the present application solves the above technical problems in detail with specific embodiments. The following embodiments may be combined with each other, and the same or similar concepts or processes may not be described in detail in some embodiments. Embodiments of the present application will be described below with reference to the accompanying drawings.
Example 1
The embodiment of the application provides an auxiliary editing and correcting method. Referring to fig. 1, the method includes the following steps:
s102, acquiring a plurality of to-be-processed items in a file to be compiled and calibrated.
Specifically, the plurality of entries to be processed are for the same file to be compiled. The embodiment of the application is not particularly limited to the type of the files to be compiled and calibrated to which the plurality of items to be processed belong, and the files can be any files with reference relations. Specifically, it may include, but is not limited to: the tool books, such as chinese dictionary, professional tool books, etc., are not intended to limit the scope of application of the present solution.
In the specific implementation of this solution, the implementation of this step may be at least implemented in the following ways:
in one mode, for files to be compiled and calibrated with a special format, such as a dictionary, the files to be compiled and calibrated with the special format can be extracted according to the content meeting the special format, so as to obtain a plurality of items to be processed.
For example, for a certain class of files to be compiled and calibrated, the entries are all expressed as 'XXX', and only the content with the 'XXX' format is extracted from the files to be compiled and calibrated to serve as the entries to be processed. For another type of files to be edited and calibrated, the entries of the files are marked with the symbols at the left upper corner of the text, so that the content with the symbols at the left upper corner of the files to be edited and calibrated is only required to be extracted to serve as the entries to be processed.
And secondly, carrying out semantic recognition on the files to be compiled and calibrated to obtain a plurality of items to be processed. Before the item to be processed is identified by adopting the semantic identification mode, the item rule is required to be preset, and further, when the scheme is implemented, the fields identified by the semantic identification mode can be respectively matched with the preset item rule, and further, the fields meeting the preset item rule are obtained to serve as the item to be processed.
And thirdly, receiving the to-be-processed items obtained by the processed to-be-edited and calibrated file. The processing of the files to be compiled and calibrated may be performed by other processors, other devices, or manually, which is not particularly limited in the embodiment of the present application.
It should be noted that, when implemented, this step may be implemented by the foregoing method alone, or may be implemented by a combination of at least two of the foregoing methods. For example, the method can be implemented by a combination of the first mode and the second mode, so as to complete the acquisition of the to-be-processed item from both aspects of content and format. For example, the method can be implemented by combining the first mode and the third mode, and in one possible design, the method can process the received processed items in the first mode again, and the finally processed items are taken as to-be-processed items.
S104, each item to be processed is used as a main item, and the reference information associated with the main item is searched in the file to be compiled and calibrated, so that a search result is obtained.
The step is used for searching the reference information of each item to be processed to obtain the search result of each item to be processed. When the scheme is specifically implemented, the association rule needs to be preset in advance, so that when the step is executed, searching is performed according to the preset association rule. The specific implementation of this step is described later.
S106, displaying the search result.
Specifically, in the embodiment of the application, each item to be processed is used as a main item to be searched and a search result is obtained, so that when the search result of the main item is displayed, the search results of a plurality of main items are involved. In this regard, the embodiment of the present application specifically provides two possible display modes:
and the first display mode is used for simultaneously displaying the search results of the plurality of to-be-processed items in a list mode.
That is, the detailed search results of the aforementioned plurality of pending items may be displayed in a list manner.
And a second display mode for respectively displaying the search result of each item to be processed.
That is, for each item to be processed, the retrieval result thereof is displayed separately.
The search result may be displayed in a combination manner, in addition to the display manner of any one of the foregoing display manners alone. At this time, fig. 2 shows one possible display manner.
The left list as shown in fig. 2 lists the heads of all the items to be processed (items a to Z), and the user can view the retrieval result of any item to be processed by clicking on the item.
As shown in fig. 2, if the user currently clicks on item B, main item information, that is, the header and body of item B, is displayed in the right displayable area of the interface. Since "see item D in detail" is referred to in the text of item B, the information of the see item, that is, the header and the text of item D (not described in detail, denoted by xxxx) is further displayed on the right side of item B.
In addition, as shown in fig. 2, error reference information (specific contents are not identified in fig. 2) for performing error-braking time indication in the case where the search result of the aforementioned S104 is a reference error or a reference blanking is further shown below the reference entry information.
It should be noted that, in the embodiment of the present application, one main entry may correspond to a plurality of reference entries, and in some special scenarios, reference entry information and error reference information may exist at the same time as shown in fig. 2. For example, a main entry corresponds to a plurality of reference entries, wherein one reference entry is complete as shown in fig. 2, resulting in one reference entry information, and one reference entry is incomplete, at which point the display will be made at the wrong reference information.
Thus, in the manner shown in fig. 2, all the entries of the file to be compiled and calibrated can be displayed in a list manner, and further, the detailed search result of each entry is checked through clicking and other operations.
It should be noted that fig. 2 is only one possible display mode, and is not used to illustrate the present application. For example, in another possible design, when the search results of the aforementioned plurality of items to be processed are displayed in a list manner, it is also possible to realize this by displaying the head in a list manner and displaying the search results thereof under the items after a click or the like viewing operation.
Based on the design, the technical scheme provided by the embodiment of the application can automatically realize auxiliary editing and correcting of the reference information by a machine in a software mode, and compared with the prior art of manually realizing auxiliary editing and correcting, the technical scheme provided by the embodiment of the application can effectively improve the auxiliary editing and correcting efficiency and save the manpower resource cost and the time cost.
The search method of S104 related to the above-described steps will be specifically described below. Specifically, each item to be processed is used as a main item to be searched, and a searching mode for each main item is shown in fig. 3. As shown in fig. 3, the step S104 specifically includes:
s1042, retrieving whether the reference information of the current main item exists in the file to be compiled and calibrated. If yes, executing S1044; if not, S1048 is performed.
The association relation between the main item and the reference information meets a preset association rule.
S1044, detecting whether the reference information is complete. If yes, executing S1046; if not, S1048 is performed.
Whether the entry is complete is used to determine whether the see-through information is satisfactory. Specifically, the embodiment of the application measures whether the reference information is complete or not from two aspects of the reference information and the association relation between the items.
Specifically, if the reference information has only a header and no text, that is, if the text of the reference information is empty, the reference information is incomplete.
Or if the reference information is not recorded in the file to be compiled, the reference information is incomplete. Specifically, in this case, in addition to the error reference information being displayed in the subsequent step S106, a prompt message may be further output to prompt the user to supplement the item.
Or if the association relationship between the reference information and the main entry is not established, that is, there is a case of "no answer at all", the reference information is incomplete. At this time, as in the case of the aforementioned unreceived case, in addition to displaying the error reference information in S106, a prompt message may be further output to prompt the user to perfect the association between the main entry and the reference information.
S1046, the association relationship between the reference information and the main entry is taken as the search result.
S1048, determining that the retrieval result of the main item is wrong.
In other words, if the reference information does not exist, or if the reference information is incomplete, the search result of the main entry is determined to be the erroneous reference.
As mentioned above, the implementation of step S104 is mainly used for retrieving the reference information that the association relationship between the reference information and the main entry satisfies the preset association rule, and the preset association rule according to the embodiment of the present application may include, but is not limited to, at least one of the following: indication field, indication character, symmetry relationship, subordinate relationship, same category relationship.
Moreover, it should be noted that, referring to information related to the embodiment of the present application may include, but is not limited to: other items or figures. And the specific description is carried out in combination with preset association rules.
The above 5 association rules are specifically described below.
1) The indication field indicates that the current main item has the reference information of the reference association relation in the form of text indication.
Wherein the text indication may be used to indicate another item, or a drawing under another item.
In a possible implementation scenario, as shown in fig. 4 to 8, if a word indicating word such as "i.e." xxx "," see "xxx '", "detailed" xxx' "," see "xxx '", and "detailed see" xxx' "appears in the body of the current main entry, it may be determined that" xxx "is the reference information of the main entry. Further, by identifying whether the reference information is complete, different search results are obtained, see fig. 3, which is not repeated.
In this design, as shown in fig. 5 and 6, there may be situations where there are no other paraphrases in the main entry's text and there is a need to see directly the other entry. Further, as shown in fig. 4, 7, and 8, there may be only a very brief explanation of the entries, and the details need to participate in other entries. This ensures that the entry referred to for further interpretation of the meaning of the term is also found in the dictionary, avoiding the entry from falling empty.
In another possible implementation scenario, some of the entries need to be pictorial to further aid the reader in understanding the paraphrasing, and are therefore pictorial, but the pictorial of some of the relevant entries is essentially identical, and it is not necessary to attach the same type of pictorial, but only to see the pictorial of his strip. Thus, in the embodiment of the present application, if a drawing indication such as "see 'XX' drawing one" appears in the body of the current main entry, the 'XX' drawing one may be taken as the reference information of the main entry.
2) Indicating characters, namely indicating the reference information with the reference association relation with the current main item in the form of symbols.
Specifically, if a noun appears in the body of the current main entry, and a corresponding term is used to explain this, and it is indeed necessary to see, the main entry may be marked with a symbol. For example, the upper left hand corner of the noun in the main entry body is marked with the symbol "x".
For example, if the main entry "should be" has the text: the twelfth law in twelve laws is "and the item of twelve laws can be used as the reference information of the main item of" clock ".
3) The symmetry relationship, i.e. the reference information having symmetry relationship for the main entry is retrieved.
Specifically, the symmetrical relation can be preset in a self-defined mode according to the requirement, or can be confirmed according to the indication of the characters.
The custom presets may be preset according to conventional concepts. For example, in the entry "lift", the paraphrasing portion refers to symmetry of "post" and in the entry "left", the paraphrasing portion refers to opposite "right".
By the word indication, if the text of the main entry shows "symmetry of" XX "," opposite to "XX", the word indication keyword is shown in fig. 9 and 10, and thus, the symmetric relationship between XX and the current main entry can be determined.
4) The subordinate relationship refers to a child entry and a parent entry between the main entry and the reference entry. It may generally include: the lower level entry refers to the upper level entry, i.e. the child entry refers to the parent entry. Alternatively, in some rare cases, it may also occur that the upper level entry references the lower level entry, i.e., the parent entry references the child entry.
Taking the child entry as an example referring to the parent entry, the buttress dam can be divided into a flat dam, a double arch dam and a head dam according to the panel type, and the three terms are the child entries of the buttress dam, and although the child entries are special bars, the common content is compared, and the individuality content is not highlighted, so that the system introduction is more suitable in the parent entry of the buttress dam. Therefore, the paraphrasing of the three sub-entries is as follows: see "buttress dam". Meanwhile, it is also necessarily required to refer to child entries in parent entries.
In the process of implementing the see-through based on the affiliation, the item with the affiliation can be automatically extracted through an embedded affiliation item database and provided for editing to be checked. For the items which are determined to belong to the subordinate relations, the line specification of the main item and the sub item must meet the requirements, and the system can also automatically judge according to some rules. Such as whether the parent entry contains a word of "child entry". The system may prompt for these key rules.
5) The same category relation means that the main item and the reference information belong to the same category.
In particular, the concentration of information within a strip is more convenient for the explanation of the problem, and also for the reader to understand, as is the case with the establishment of a see-through strip. One bar is taken as a positive bar, and the other one or more entries are taken as reference bars.
For example, "major pair", "minor pair" and "triple pair" are assistant of captain, they are different only in terms of height, and the work of the branch pipes is slightly different, and other connotations are about the same. Thus, a "major pair" may be used as the primary entry, and a "minor" and a "triple" may be used as the reference entry (see information).
In the implementation process of the see-through based on the same-category relation, the same-category item can be automatically extracted through an embedded similar item database according to the database, the prompt according to the system is edited, on one hand, the see-through relation of the main item and the see item is confirmed, and on the other hand, the uniform style of the similar item can be ensured. Meanwhile, the system can also automatically judge whether the positive entry contains the sub-entry.
Through the scheme, the embodiment of the application can realize the implementation of the reference of the files to be compiled and calibrated, and compared with the prior art of manually realizing auxiliary compiling and calibrating, the technical scheme provided by the embodiment of the application can effectively improve the auxiliary compiling and calibrating efficiency and save the manpower resource cost and the time cost.
It is to be understood that some or all of the steps or operations in the above embodiments are merely examples, and that other operations or variations of the various operations may also be performed by embodiments of the present application. Furthermore, the various steps may be performed in a different order presented in the above embodiments, and it is possible that not all of the operations in the above embodiments are performed.
Example two
Based on the auxiliary editing and correcting method provided by the first embodiment, the embodiment of the application further provides a device embodiment for realizing the steps and the method in the embodiment of the method.
Referring to fig. 11, an embodiment of the present application provides an auxiliary editing and calibrating device 1100, including:
an obtaining module 1110, configured to obtain a plurality of to-be-processed entries in a to-be-compiled file;
the retrieving module 1120 is configured to retrieve, from the to-be-calibrated file, reference information associated with the main entry by using each of the to-be-processed entries as a main entry, so as to obtain a retrieval result;
and a display module 1130, configured to display the search result.
In one possible design, the retrieving module 1120 is specifically configured to:
each item to be processed is used as a main item, whether the reference information exists or not is searched in the file to be compiled and calibrated, and the association relation between the main item and the reference information meets a preset association rule;
if the reference information exists, detecting whether the reference information is complete;
and if the reference information is complete, taking the association relation between the reference information and the main item as the retrieval result.
In addition, the retrieving module 1120 is further configured to:
if the reference information does not exist, determining that the search result of the main item is wrong reference; or,
and if the reference information is incomplete, determining the search result of the main item as the error reference.
The association rule according to the embodiment of the application comprises at least one of the following: indication field, indication character, symmetry relationship, subordinate relationship, same category relationship.
The reference information related to the embodiment of the application comprises: other items or figures.
In one possible design, the display module 1130 is specifically configured to:
simultaneously displaying the search results of the plurality of to-be-processed items in a list mode; and/or respectively displaying the retrieval result of each item to be processed.
The auxiliary editing and correcting device 1100 of the embodiment shown in fig. 11 may be used to implement the technical solution of the above-mentioned method embodiment, and the implementation principle and technical effects may be further referred to the related description in the method embodiment, and optionally, the auxiliary editing and correcting device 1100 may be a server or a terminal device.
It should be understood that the division of the modules of the auxiliary editing device 1100 shown in fig. 11 is merely a division of a logic function, and may be fully or partially integrated into a physical entity or may be physically separated. And these modules may all be implemented in software in the form of calls by the processing element; or can be realized in hardware; it is also possible that part of the modules are implemented in the form of software called by the processing element and part of the modules are implemented in the form of hardware. For example, the search module 1120 may be a processing element that is set up separately, may be integrated into a chip of the auxiliary calibration device 1100, such as a terminal, or may be stored in a memory of the auxiliary calibration device 1100 in a program form, and the functions of the above modules may be called and executed by a processing element of the auxiliary calibration device 1100. The implementation of the other modules is similar. In addition, all or part of the modules can be integrated together or can be independently implemented. The processing element described herein may be an integrated circuit having signal processing capabilities. In implementation, each step of the above method or each module above may be implemented by an integrated logic circuit of hardware in a processor element or an instruction in a software form.
In addition, an embodiment of the present application provides an auxiliary editing and calibrating device, please refer to fig. 12, the auxiliary editing and calibrating device 1200 includes:
a memory 1210;
a processor 1220; and
a computer program;
wherein the computer program is stored in the memory 1210 and configured to be executed by the processor 1220 to implement the method as described in the above embodiments.
In addition, as shown in fig. 12, a transceiver 1230 is further provided in the auxiliary editing and correcting device 1200 for data transmission or communication with other devices, which is not described herein.
As shown in fig. 12, the memory 1210, the processor 1220 and the transceiver 1230 are connected and communicate by a bus.
Furthermore, an embodiment of the present application provides a readable storage medium having stored thereon a computer program to be executed by a processor to implement the method according to embodiment one.
The embodiment of the application provides an auxiliary editing and correcting system, which comprises the following components: an auxiliary calibration device as described in fig. 11 or fig. 12.
Since each module in this embodiment is capable of executing the method shown in embodiment one, a part of this embodiment which is not described in detail can be referred to the description related to embodiment one.
Other embodiments of the disclosure will be apparent to those skilled in the art from consideration of the specification and practice of the disclosure disclosed herein. This application is intended to cover any adaptations, uses, or adaptations of the disclosure following, in general, the principles of the disclosure and including such departures from the present disclosure as come within known or customary practice within the art to which the disclosure pertains. It is intended that the specification and examples be considered as exemplary only, with a true scope and spirit of the disclosure being indicated by the following claims.

Claims (10)

1. An auxiliary editing and correcting method, comprising the steps of:
obtaining a plurality of items to be processed in a file to be compiled and calibrated, wherein the obtaining mode at least comprises the following steps: extracting the content of a preset symbol from the file to be compiled and calibrated as the item to be processed;
taking each item to be processed as a main item, and searching the reference information associated with the main item in the file to be compiled and calibrated to obtain a search result;
displaying the search result;
the step of taking each item to be processed as a main item, searching the reference information associated with the main item in the file to be compiled and calibrated to obtain a search result, wherein the step of obtaining the search result comprises the following steps:
each item to be processed is used as a main item, whether the reference information exists or not is searched in the file to be compiled and calibrated, and the association relation between the main item and the reference information meets a preset association rule;
if the reference information exists, detecting whether the reference information is complete or not according to the reference information or the association relation;
if the reference information is complete, taking the association relationship between the reference information and the main item as the retrieval result;
wherein the association rule includes at least one of: indication field, indication character, symmetry relationship, subordinate relationship, same category relationship.
2. The method according to claim 1, wherein the method further comprises:
if the reference information does not exist, determining that the search result of the main item is wrong reference; or,
and if the reference information is incomplete, determining the search result of the main item as the error reference.
3. The method according to any one of claims 1 or 2, wherein the reference information comprises: other items or figures.
4. The method according to any one of claims 1 or 2, wherein the displaying the search result comprises:
simultaneously displaying the search results of the plurality of to-be-processed items in a list mode; and/or respectively displaying the retrieval result of each item to be processed.
5. An auxiliary braiding and correcting device, comprising:
the acquisition module is used for acquiring a plurality of items to be processed in the file to be compiled and calibrated, wherein the acquisition mode at least comprises the following steps: extracting the content of a preset symbol from the file to be compiled and calibrated as the item to be processed;
the retrieval module is used for taking each item to be processed as a main item, retrieving the reference information associated with the main item in the file to be compiled and calibrated, and obtaining a retrieval result;
the display module is used for displaying the search result;
the retrieval module is specifically configured to:
each item to be processed is used as a main item, whether the reference information exists or not is searched in the file to be compiled and calibrated, and the association relation between the main item and the reference information meets a preset association rule;
if the reference information exists, detecting whether the reference information is complete or not according to the reference information or the association relation;
if the reference information is complete, taking the association relationship between the reference information and the main item as the retrieval result;
wherein the association rule includes at least one of: indication field, indication character, symmetry relationship, subordinate relationship, same category relationship.
6. The apparatus of claim 5, wherein the retrieval module is further configured to:
if the reference information does not exist, determining that the search result of the main item is wrong reference; or,
and if the reference information is incomplete, determining the search result of the main item as the error reference.
7. The apparatus according to any one of claims 5 or 6, wherein the reference information comprises: other items or figures.
8. The device according to any one of claims 5 or 6, wherein the display module is specifically configured to:
simultaneously displaying the search results of the plurality of to-be-processed items in a list mode; and/or respectively displaying the retrieval result of each item to be processed.
9. An auxiliary braiding and correcting device, comprising:
a memory;
a processor; and
a computer program;
wherein the computer program is stored in the memory and configured to be executed by the processor to implement the method of any one of claims 1 to 4.
10. A computer-readable storage medium, having a computer program stored thereon,
the computer program being executed by a processor to implement the method of any one of claims 1 to 4.
CN201910048711.9A 2019-01-18 2019-01-18 Auxiliary editing and correcting method and device and storage medium Active CN111460792B (en)

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