Automatic collection method, system and equipment for electronic archives of power infrastructure project and storage medium
By pre-setting standard and standardized archiving catalogs and association rules in power infrastructure projects, electronic documents are automatically collected, solving the problems of low collection efficiency and high error rate. This enables timely archiving and standardized management of documents, and promotes information sharing and collaborative work.
Patent Information
- Application Number
- CN202511444524.4
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-10
- Publication Date
- 2026-01-09
AI Technical Summary
In power infrastructure projects, the collection of electronic documents is inefficient and has a high error rate. Furthermore, the lack of unified management standards and specifications leads to chaotic document management, affecting project progress and information sharing.
By pre-setting a standard and regulated archive directory for power infrastructure projects, configuring association rules between electronic document templates and the archive directory, and establishing an association mapping relationship between the archive directory ID and the electronic document template ID, the automatic collection of electronic documents can be achieved.
It has enabled the automated collection of electronic documents, improved collection efficiency and accuracy, ensured timely archiving and standardized management of documents, and promoted information sharing and internal collaboration within the enterprise.
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Figure CN121301281A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of electronic archives collection, and in particular to an automatic collection method, system and device for electronic archives of power infrastructure projects and a storage medium. BACKGROUND
[0002] In the implementation process of power infrastructure projects, a large number of electronic files will be generated, such as design drawings, construction records, acceptance reports, equipment data, etc. These electronic files are important records and assets of power infrastructure projects, and are of key significance for the subsequent maintenance, reconstruction, audit and historical tracing of the project. In the traditional mode, the collection of electronic files of power infrastructure projects mainly relies on manual operation. The staff needs to manually identify the type, project phase and professional field of each electronic file, and then store it in the corresponding physical or electronic folder. However, with the continuous expansion and increasing complexity of power infrastructure projects, the number of electronic files grows exponentially, and the manual collection method gradually exposes many drawbacks.
[0003] On the one hand, the manual collection is inefficient: facing the massive amount of electronic files, the staff needs to spend a lot of time and effort to sort and arrange them, which not only prolongs the period of file collection, but also may cause the file collection to be not timely, affecting the overall progress of the project.
[0004] On the other hand, manual collection is prone to errors: due to human factors such as staff negligence and misjudgment of file types, electronic files may be incorrectly classified, making it difficult to find and use the files later, and even causing important files to be lost or missed.
[0005] In addition, there is a lack of unified standards and norms in file management for power infrastructure projects in different regions and different projects: each project team may collect electronic files according to their own habits and methods, resulting in chaotic file management and making it difficult to share and integrate information, which not only increases the communication cost within the enterprise, but also is not conducive to the overall management and monitoring of power infrastructure projects. SUMMARY
[0006] Therefore, the present application provides an automatic collection method, system and device for electronic archives of power infrastructure projects, which can effectively solve the problems of low collection efficiency, high error rate and lack of unified standards and norms in file management in the prior art.
[0007] The technical solution of the present application is as follows:
[0008] An automatic collection method for electronic archives of power infrastructure projects, specifically comprising:
[0009] A preset standard specification power infrastructure project filing directory;
[0010] Configure an association rule of an electronic file template and the power infrastructure project filing directory, and establish an association mapping relationship between a power infrastructure project filing directory ID and an electronic file template ID;
[0011] When receiving an uploaded electronic file, automatically collect the uploaded electronic file into the corresponding power infrastructure project filing directory according to the association mapping relationship.
[0012] As a further optional solution of the power infrastructure project electronic archive automatic collection method, the preset standard specification power infrastructure project filing directory specifically includes:
[0013] A preset operation of an intelligent archive directory is obtained;
[0014] A standardized power infrastructure project filing directory with a multi-level directory structure is generated according to the preset operation of the intelligent archive directory.
[0015] As a further optional solution of the power infrastructure project electronic archive automatic collection method, the standardized power infrastructure project filing directory with a multi-level directory structure generated according to the preset operation of the intelligent archive directory specifically includes:
[0016] A multi-level directory hierarchy parameter and an archive classification standard of each directory in the preset operation are parsed;
[0017] According to the power industry archive standard specification, the parsed directory parameters are checked for compliance to obtain checked directory parameters;
[0018] According to the checked directory parameters, a multi-level directory structure is automatically constructed, and a unique filing directory ID is generated for each directory node;
[0019] An electronic file template association interface is preset for each directory node.
[0020] As a further optional solution of the power infrastructure project electronic archive automatic collection method, the checking of the parsed directory parameters for compliance according to the power industry archive standard specification specifically includes:
[0021] According to the power industry archive standard specification, the parsed directory parameters are checked for naming rules, coding rules, and hierarchical relationship;
[0022] If the checking for naming rules, coding rules, and hierarchical relationship all pass, a check pass identifier conforming to the power industry standard is generated; otherwise, the non-compliant parameter position is located.
[0023] As a further optional solution of the electric power infrastructure project electronic archive automatic collection method, the association rule of the configured electronic file template and the archive directory establishes the association mapping relationship between the archive directory ID and the electronic file template ID, specifically including:
[0024] In the preset standardized electric power infrastructure project archive directory, select any archive directory node;
[0025] Associate at least one electronic file template with the node, and specify the applicable scope of the electronic file template;
[0026] Generate a mapping relationship data pair of the archive directory node ID and the selected electronic file template ID.
[0027] As a further optional solution of the electric power infrastructure project electronic archive automatic collection method, the uploaded electronic file specifically includes:
[0028] Obtain an electronic file template from the electronic file collection system server to prepare, and obtain a prepared electronic file;
[0029] Perform electronic signature operation on the prepared electronic file to obtain a native electronic file, and transmit it to the electronic file collection system server.
[0030] As a further optional solution of the electric power infrastructure project electronic archive automatic collection method, the electronic signature operation on the prepared electronic file specifically includes:
[0031] After obtaining the prepared electronic file, call the electronic signature module;
[0032] Verify the current user identity and signature authority according to the electronic signature module;
[0033] After verification, obtain the electronic signature image of the current user, and encrypt and bind the electronic signature image with the file hash value to generate a native electronic file containing timestamp, signature information and digital certificate.
[0034] An electric power infrastructure project electronic archive automatic collection system, comprising:
[0035] A project archive directory preset module for presetting a standard specification electric power infrastructure project archive directory;
[0036] An association mapping relationship establishment module for configuring an association rule of the electronic file template and the electric power infrastructure project archive directory, and establishing an association mapping relationship between the electric power infrastructure project archive directory ID and the electronic file template ID;
[0037] The aggregation module is used to automatically aggregate uploaded electronic files into the corresponding power infrastructure project archive directory according to the association mapping relationship when the uploaded electronic files are received.
[0038] A computing device includes a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the computer program to implement the steps of the automatic collection method for electronic archives of power infrastructure projects described above.
[0039] A computer-readable storage medium storing a computer program, which, when executed by a processor, implements the steps of the automatic collection method for electronic archives of power infrastructure projects described above.
[0040] The beneficial effects of this invention are as follows: By establishing an association mapping relationship between the archive directory ID and the electronic document template ID, when the server receives the uploaded electronic document, it can automatically complete the collection operation based on this relationship. The entire process requires no manual intervention, realizing the automation of the collection process, greatly improving processing efficiency, and enabling rapid handling of the large number of electronic documents generated in power infrastructure projects. This significantly improves the speed of electronic document collection, shortens the document collection cycle, and ensures timely document archiving, reducing the impact of document backlog on project progress. By pre-setting a standard and regulated power infrastructure project archive directory and configuring association rules between electronic document templates and the archive directory, automatic collection is performed strictly according to these rules. The clarity and stability of the rules avoid human intervention. The system effectively mitigates interference from various factors, ensuring the accuracy of document collection and significantly reducing the probability of errors such as incorrect document classification and collection location. This guarantees the accurate placement of electronic documents, providing a reliable foundation for subsequent document retrieval and use. A standardized archiving directory is pre-set in the electronic document collection system server, and all electronic documents are collected and managed according to this unified standard. Regardless of the project or stage at which electronic documents are generated, they can be stored according to the same rules, achieving standardized and regulated document management. This facilitates information sharing and integration, establishes unified standards and specifications for electronic archive management in power infrastructure projects, standardizes internal document management within the enterprise, facilitates document retrieval, statistics, and monitoring, and promotes inter-departmental collaboration. Attached Figure Description
[0041] To more clearly illustrate the technical solutions in the embodiments of the present invention or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0042] Fig. 1This is a flowchart illustrating an automatic collection method for electronic archives of power infrastructure projects according to the present invention.
[0043] Fig. 2 This is a schematic diagram of the composition of an automatic electronic archive collection system for power infrastructure projects according to the present invention;
[0044] Fig. 3 This is a schematic diagram of the composition of a computing device according to the present invention. Detailed Implementation
[0045] The technical solutions in the embodiments of the present invention will be clearly and completely described below. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of them. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0046] refer to Figs. 1 to 3 A method for automatically collecting electronic archives of power infrastructure projects, specifically including:
[0047] A pre-defined standard and specification archive catalog of power infrastructure projects.
[0048] In some embodiments, the preset standard specification for power infrastructure project archiving catalog specifically includes:
[0049] Retrieve the preset operations of the intelligent archive catalog;
[0050] A standardized power infrastructure project archive catalog with a multi-level directory structure is generated based on the preset operations of the intelligent archive catalog.
[0051] Specifically, by acquiring the preset operations of the intelligent archive catalog, the electronic document collection system server can automatically generate a standardized power infrastructure project archive catalog with a multi-level directory structure. Compared with manually creating the catalog, this greatly saves time and manpower costs, making the catalog generation process more efficient and faster. The preset operations of the intelligent archive catalog can be flexibly set according to the characteristics of different power infrastructure projects, quickly generating a standardized archive catalog that matches them. This can quickly adapt to the document collection needs of various projects and reduce the preparation time in the project start-up phase.
[0052] The pre-defined standard archive directory provides clear guidance for the collection of electronic files. During the subsequent file collection process, staff or the system can accurately determine the category and storage location of the files based on this directory, avoiding file collection errors caused by differences in human understanding or arbitrary storage. The multi-level directory structure makes the archive directory hierarchical, and various types of files can be classified in detail according to project stage, professional field, and other dimensions. This clear structure helps to accurately collect files and facilitates the subsequent search and retrieval of specific files.
[0053] The system pre-sets a standardized archive directory, ensuring that a unified document management standard is implemented in different power infrastructure projects. Regardless of the size or complexity of the project, the same directory structure and collection rules are followed, which is conducive to the standardization and normalization of internal document management. The standardized archive directory facilitates the supervision and auditing of document management. Managers can check the document collection status according to the pre-set directory structure, promptly identify and correct non-standard operations, and ensure the quality of document management.
[0054] In some embodiments, generating a standardized power infrastructure project archive catalog with a multi-level catalog structure based on preset operations of the intelligent archive catalog specifically includes:
[0055] Analyze the multi-level directory hierarchy parameters and file classification standards of each directory level in the preset operations;
[0056] According to the standards and specifications for power industry archives, the parsed directory parameters are verified for compliance, resulting in verified directory parameters.
[0057] Based on the verified directory parameters, a multi-level directory structure is automatically constructed, and a unique archive directory ID is generated for each directory node;
[0058] Pre-set an interface for associating electronic document templates in each directory node.
[0059] Specifically, the system analyzes the multi-level directory hierarchy parameters and file classification standards of each directory in the preset operation, and performs compliance verification based on the power industry's file standards and specifications. This effectively avoids misunderstandings and errors that may occur when manually setting up the directory. Through precise analysis and rigorous verification, it ensures that the generated directory parameters fully comply with industry standards. Traditional directory generation methods rely on human experience and understanding of standards, which are prone to omissions and errors. This technical solution replaces manual operation with an intelligent analysis and verification process, which greatly reduces the probability of human error and improves the accuracy of directory generation.
[0060] The system automatically constructs a multi-level directory structure based on the verified directory parameters, eliminating the need for manual directory creation at each level. This saves significant manpower and time costs and enables rapid and efficient directory generation. Its advantages are particularly evident for large-scale power infrastructure projects, as it can significantly shorten the preparation time in the early stages of the project. The intelligent archive directory preset operation can be flexibly configured according to the characteristics of different power infrastructure projects, and can quickly generate corresponding standardized archive directories based on preset information. This allows for rapid adaptation to the needs of various projects and improves the efficiency of project initiation and document management.
[0061] A unique archive directory ID is generated for each directory node, ensuring the uniqueness and identifiability of the directory. In the subsequent collection, query and management of electronic files, each directory node can be located accurately, avoiding the problems of directory confusion and file collection errors. The standardized multi-level directory structure and unique directory ID help to establish a standardized file management process. From file collection and storage to retrieval and utilization, each link can be operated according to unified rules, improving the standardization and normalization level of file management.
[0062] An interface for associating electronic file templates is preset in each directory node, which facilitates the association of electronic file templates with directories in the future. When an electronic file is uploaded, it can be quickly and accurately collected into the corresponding directory based on the association between the template and the directory, which further improves the efficiency and accuracy of file collection. Through the association between the directory and the template, the process of file generation and collection is automated, reducing manual intervention and improving the overall efficiency of electronic file management in power infrastructure projects.
[0063] In some embodiments, the step of performing compliance verification on the parsed directory parameters according to the power industry archive standards and specifications to obtain the verified directory parameters specifically includes:
[0064] According to the standards and specifications for power industry archives, the parsed directory parameters are validated for naming rules, encoding rules, and hierarchical relationships.
[0065] If the naming rule verification, encoding rule verification, and hierarchical relationship verification all pass, a verification pass identifier conforming to power industry standards will be generated; otherwise, the location of the non-compliant parameter will be identified.
[0066] Specifically, the naming rule verification includes: based on the "Acceptance Procedures for Standardized Commissioning of Power Engineering" and the "Classification Rules for Power Enterprise Archives", keyword matching verification is performed on the names of each level of the directory to verify whether they contain the project stage identifiers (such as "feasibility study" and "construction and installation"), professional classification codes (such as "ZJ" for architecture and "DQ" for electrical engineering) and abbreviations of archive types (such as "JS" for as-built drawings) as specified in the standards, and illegal characters that do not meet the requirements of the standards are removed;
[0067] The coding rule verification specifically includes: according to the hierarchical coding structure specified in the "DA / T 28-2018 Construction Project Archives Management Specification", regular expression verification is performed on the directory code to ensure that the first-level directory uses a 2-letter uppercase code, the second-level directory uses a combination of "2 letters + 2 numbers", and the third-level directory uses a coding format of "4 numbers + 2 extension codes", and the code is unique and not repeated within the same level;
[0068] The hierarchical relationship verification specifically includes: verifying whether the directory hierarchy satisfies the three-level nested relationship of "project stage → professional classification → archive type" according to the tree-like hierarchical structure defined in the "Electric Industry Archive Classification Table", prohibiting cross-level associations or isolated nodes, and detecting whether there are circular dependencies in the directory tree through a topology sorting algorithm.
[0069] Configure the association rules between the electronic document template and the archive directory, and establish the association mapping relationship between the archive directory ID and the electronic document template ID.
[0070] In some embodiments, configuring the association rules between the electronic document template and the archive directory, and establishing the association mapping relationship between the archive directory ID and the electronic document template ID, specifically includes:
[0071] In the preset standardized power infrastructure project archive directory, select any archive directory node;
[0072] Associate at least one electronic document template with this node and specify the scope of application of the electronic document template;
[0073] Generate a mapping data pair between the node ID of the archive directory and the selected electronic document template ID.
[0074] Specifically, after establishing the mapping relationship between the archive directory ID and the electronic document template ID, when the electronic document collection system server receives the uploaded electronic document, it can quickly determine the directory node where the document should be collected based on the mapping relationship, thus achieving automatic collection. Compared with manual judgment and collection, this greatly shortens the document processing time and improves the overall collection efficiency. It is especially suitable for the rapid processing of a large number of electronic documents in power infrastructure projects. Staff do not need to manually select the archive directory for each document. They only need to ensure that the electronic document uses the correct template to automatically complete the collection operation, simplifying the document collection process, reducing manual intervention, and making the document collection work more efficient and smooth.
[0075] By configuring association rules and clarifying the scope of application of electronic document templates, clear standards and bases are provided for the collection of electronic documents. The collection is carried out strictly in accordance with the preset mapping relationship, avoiding misjudgment and incorrect collection that may be caused by inaccurate understanding of file types and contents during manual collection. This ensures the accuracy of file collection. The unified association rules and mapping relationship ensure that similar electronic documents uploaded by different people at different times can be collected into the same directory node, ensuring the consistency and continuity of data.
[0076] This association mapping relationship makes the correspondence between electronic document templates and archive directories clear and easy to understand. Managers can easily view and manage the electronic document templates associated with each directory node, as well as the scope of application of the templates. This facilitates unified management and maintenance of document templates and archive directories. When the archiving requirements or document templates of power infrastructure projects change, only the association rules and mapping relationships need to be adjusted, without the need for large-scale adjustments to the already collected documents. This allows for rapid adaptation to new business needs and improves the flexibility and adaptability of management.
[0077] Upon receiving an uploaded electronic file, the system automatically aggregates the uploaded electronic file into the corresponding power infrastructure project archive directory based on the aforementioned association mapping relationship.
[0078] In some embodiments, uploading electronic files specifically includes:
[0079] The electronic document template is obtained from the electronic document collection system server and used for compilation to obtain the compiled electronic document;
[0080] The compiled electronic documents are electronically signed to obtain the original electronic documents, which are then transmitted to the electronic document collection system server.
[0081] Specifically, the electronic document collection system server automatically collects uploaded electronic documents into the corresponding archive directory based on the association mapping relationship. This automated process avoids the oversights and errors that may occur during manual collection, and greatly improves the speed and accuracy of document collection. For example, when a large number of documents are generated in power infrastructure projects, they can be quickly classified and stored to ensure timely archiving. Electronic document templates are obtained from the electronic document collection system server for compilation, which ensures the consistency of electronic documents in terms of format, content structure, etc. The unified template makes the documents meet the collection requirements at the generation stage, reducing subsequent collection problems caused by non-standard formats and further improving overall efficiency.
[0082] Once compiled, an electronic signature is applied to create a native electronic document. Electronic signature technology ensures the authenticity and integrity of the document and prevents it from being tampered with during transmission and storage. In power infrastructure projects, the authenticity and accuracy of documents are crucial, and electronic signatures provide strong assurance for the credibility of documents. The native electronic document is then submitted to the collection system. This native file format is easier for the system to recognize, store, and manage, and allows for better indexing and retrieval of documents, thus improving the convenience of document management.
[0083] The system simplifies the management process of electronic documents from generation to collection. Staff only need to compile documents according to the template, sign and submit them, and the electronic document collection system server will automatically complete the subsequent collection work, reducing the complexity and workload of manual operation and making the management process smoother.
[0084] In some embodiments, the electronic signing operation on the compiled electronic document specifically includes:
[0085] After obtaining the completed electronic document, call the electronic signature module;
[0086] The electronic signature module verifies the current user's identity and signature permissions.
[0087] After successful verification, the system obtains the current user's electronic signature image, encrypts and binds the electronic signature image with the file hash value, and generates a native electronic file containing a timestamp, signer information, and digital certificate.
[0088] Specifically, the electronic signature module verifies the current user's identity and signing authority. Only users with legitimate permissions can perform electronic signature operations. This step effectively prevents unauthorized users from tampering with and forging documents, ensuring the legality and authenticity of the electronic document's source. After successful verification, the current user's electronic signature image is obtained and encrypted and bound to the document's hash value, generating a native electronic document containing a timestamp, signer information, and digital certificate. This encryption and binding ensures that the electronic signature is closely associated with the document content. Any minor alteration to the document content will cause a change in the hash value, thereby invalidating the electronic signature and further enhancing the document's security and immutability.
[0089] The generated digital certificate provides authoritative authentication for electronic documents. In various business scenarios of power infrastructure projects, such as contract signing and project acceptance, native electronic documents with digital certificates are more credible and can be recognized and accepted by relevant parties. To a certain extent, they have the same legal effect as paper documents with seals. The timestamp accurately records the operation time of the electronic signature, providing reliable proof of the document's generation and signing time. In case of disputes or when it is necessary to trace the document's history, the timestamp can serve as an important time basis, enhancing the document's credibility and traceability.
[0090] The resulting native electronic documents contain a wealth of information, such as signer information and timestamps. This information is stored integrated with the document content, facilitating unified management by the electronic document collection system. Based on this information, documents can be classified, retrieved, and statistically analyzed, improving the efficiency and convenience of document management. When it is necessary to trace the signing process of a document, the complete information such as timestamps, signer information, and digital certificates in the native electronic documents can provide clear clues. It is possible to accurately understand when and by whom the document was signed, as well as the verification of the legality of the signing, which helps to resolve potential disputes and problems.
[0091] An automatic electronic archive collection system for power infrastructure projects includes:
[0092] The project archive directory preset module is used to preset a standard and compliant archive directory for power infrastructure projects.
[0093] The association mapping relationship establishment module is used to configure the association rules between the electronic document template and the power infrastructure project archive directory, and to establish the association mapping relationship between the power infrastructure project archive directory ID and the electronic document template ID;
[0094] The aggregation module is used to automatically aggregate uploaded electronic files into the corresponding power infrastructure project archive directory according to the association mapping relationship when the uploaded electronic files are received.
[0095] A computing device includes a memory, a processor, and a computer program stored in the memory and executable on the processor, wherein the processor executes the computer program to implement the steps of the automatic collection method for electronic archives of power infrastructure projects described above.
[0096] A computer-readable storage medium storing a computer program, which, when executed by a processor, implements the steps of the automatic collection method for electronic archives of power infrastructure projects described above.
[0097] The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present invention should be included within the protection scope of the present invention.
Claims
1. A method for automatically collecting electronic archives of power infrastructure projects, characterized in that, Specifically, it includes: A pre-defined standard and specification archive catalog of power infrastructure projects; Configure association rules between electronic document templates and the power infrastructure project archive directory, and establish an association mapping relationship between the power infrastructure project archive directory ID and the electronic document template ID; Upon receiving an uploaded electronic file, the system automatically aggregates the uploaded electronic file into the corresponding power infrastructure project archive directory based on the aforementioned association mapping relationship.
2. The method for automatically collecting electronic archives of power infrastructure projects according to claim 1, characterized in that, The pre-defined standard specification for power infrastructure project archiving catalog specifically includes: Retrieve the preset operations of the intelligent archive catalog; A standardized power infrastructure project archive catalog with a multi-level directory structure is generated based on the preset operations of the intelligent archive catalog.
3. The method for automatically collecting electronic archives of power infrastructure projects according to claim 2, characterized in that, The process of generating a standardized power infrastructure project archive catalog with a multi-level catalog structure based on the preset operations of the intelligent archive catalog specifically includes: Analyze the multi-level directory hierarchy parameters and file classification standards of each directory level in the preset operations; According to the standards and specifications for power industry archives, the parsed directory parameters are verified for compliance, resulting in verified directory parameters. Based on the verified directory parameters, a multi-level directory structure is automatically constructed, and a unique archive directory ID is generated for each directory node; Pre-set an interface for associating electronic document templates in each directory node.
4. The method for automatically collecting electronic archives of power infrastructure projects according to claim 3, characterized in that, According to the standards and specifications for power industry archives, the parsed directory parameters are verified for compliance to obtain the verified directory parameters, which specifically include: According to the standards and specifications for power industry archives, the parsed directory parameters are validated for naming rules, encoding rules, and hierarchical relationships. If the naming rule verification, encoding rule verification, and hierarchical relationship verification all pass, a verification pass identifier conforming to power industry standards will be generated; otherwise, the location of the non-compliant parameter will be identified.
5. The method for automatically collecting electronic archives of power infrastructure projects according to claim 1, characterized in that, The configuration rules for associating electronic document templates with the archive directory establish a mapping relationship between the archive directory ID and the electronic document template ID, specifically including: Select any archive directory node from the preset standardized power infrastructure project archive directory; Associate at least one electronic document template with this node and specify the scope of application of the electronic document template; Generate a mapping data pair between the node ID of the archive directory and the selected electronic document template ID.
6. The method for automatically collecting electronic archives of power infrastructure projects according to claim 1, characterized in that, The uploaded electronic files specifically include: The electronic document template is obtained from the electronic document collection system server and used for compilation to obtain the compiled electronic document; The compiled electronic documents are electronically signed to obtain the original electronic documents, which are then transmitted to the electronic document collection system server.
7. The method for automatically collecting electronic archives of power infrastructure projects according to claim 6, characterized in that, The electronic signing operation for the compiled electronic documents specifically includes: After obtaining the completed electronic document, call the electronic signature module; The electronic signature module verifies the current user's identity and signature permissions. After successful verification, the system obtains the current user's electronic signature image, encrypts and binds the electronic signature image with the file hash value, and generates a native electronic file containing a timestamp, signer information, and digital certificate.
8. An automatic electronic archive collection system for power infrastructure projects, characterized in that, include: The project archive directory preset module is used to preset a standard and compliant archive directory for power infrastructure projects. The association mapping relationship establishment module is used to configure the association rules between the electronic document template and the power infrastructure project archive directory, and to establish the association mapping relationship between the power infrastructure project archive directory ID and the electronic document template ID; The aggregation module is used to automatically aggregate uploaded electronic files into the corresponding power infrastructure project archive directory according to the association mapping relationship when the uploaded electronic files are received.
9. A computing device, characterized in that, The method includes a memory, a processor, and a computer program stored in the memory and executable on the processor. When the processor executes the computer program, it implements the steps of the automatic collection method for electronic archives of power infrastructure projects according to any one of claims 1-7.
10. A computer-readable storage medium, characterized in that, The storage medium stores a computer program, which, when executed by a processor, implements the steps of the automatic collection method for electronic archives of power infrastructure projects as described in any one of claims 1-7.
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