Method, device, and storage medium for updating security responsibility information

By using backend system communication with databases and natural language processing technology, the safety responsibility information of power supply companies is automatically updated, solving the problems of low efficiency and poor content quality in existing technologies, and realizing dynamic updating and efficient management of safety responsibility information.

CN116991861BActive Publication Date: 2026-04-28GUANGDONG POWER GRID CO LTD DONGGUAN POWER SUPPLY BUREAU +1
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
GUANGDONG POWER GRID CO LTD DONGGUAN POWER SUPPLY BUREAU
Filing Date
2023-08-16
Publication Date
2026-04-28

AI Technical Summary

Technical Problem

The safety responsibility information of power supply companies cannot be updated automatically, resulting in low efficiency, poor content quality, and an inability to dynamically adapt to changes in safety management needs through manual updates.

Method used

By communicating with multiple databases through the backend system, it automatically obtains and populates safety production laws, regulations, standards, operating procedures, and unit functions into safety responsibility information templates, and uses natural language processing and knowledge graph technology to achieve automatic updates of safety responsibility information.

Benefits of technology

It enables automatic updating of safety responsibility information, improving efficiency and content quality, and dynamically adapting to changes in the safety management needs of power supply companies.

✦ Generated by Eureka AI based on patent content.

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Abstract

The application provides a safety responsibility information updating method, an updating device and a storage medium. The method comprises the following steps: sending first request information to a first database, wherein the first request information is used for indicating that it is requested to detect whether first data has been updated, and the first data at least comprises safety production laws and regulations of a power supply enterprise, safety production standard specifications of the power supply enterprise, safety production management systems of the power supply enterprise and safety production operation rules of the power supply enterprise; acquiring the first data from the first database and acquiring second data from a second database in the case that feedback information from the first database is received, wherein the feedback information is used for indicating that the first data has been updated; filling the first data and the second data into a safety responsibility information template to obtain updated safety responsibility information. The method solves the problem that the safety responsibility information of the power supply enterprise cannot be automatically updated in the prior art.
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Description

Technical Field

[0001] This application relates to the field of safety management technology for power supply enterprises, and more specifically, to a method for updating safety responsibility information, a device for updating safety responsibility information, a storage medium, a processor, and a system for updating safety responsibility information. Background Technology

[0002] The Power Supply Enterprise Safety Responsibility Information System (including the Safety Responsibility List System) is a management system that, based on the power supply enterprise's safety production standards and requirements, details the safety responsibilities and tasks of organizations, departments, and positions at all levels into specific list items, and conducts regular inspections, evaluations, and assessments. This system aims to clarify the safety responsibilities of organizations, departments, and positions at all levels, strengthen safety awareness, standardize safety behavior, improve safety management levels, and prevent and reduce the occurrence of safety accidents.

[0003] In existing technologies, the safety responsibility information of power supply companies cannot be automatically updated. Currently, the safety responsibility information of power supply companies is typically updated manually. The disadvantages of manual updating are as follows:

[0004] (1) Manually publishing and updating safety responsibility information requires a lot of human, material and time resources, which is inefficient;

[0005] (2) Manual updates of safety responsibility information may result in omissions, duplications, or unreasonable items, leading to poor quality of the safety responsibility information.

[0006] (3) It is impossible to dynamically update safety responsibility information, making it difficult to adapt to changes in the safety management needs of power supply companies. Summary of the Invention

[0007] The main objective of this application is to provide a method, device, storage medium, processor, and system for updating safety responsibility information, so as to at least solve the problem that the safety responsibility information of power supply enterprises cannot be automatically updated in the prior art.

[0008] To achieve the above objectives, according to one aspect of this application, a method for updating safety responsibility information is provided. This method is applied to a backend, which is communicatively connected to a first database and a second database. The method includes: sending a first request to the first database, the first request indicating a request to detect whether first data has been updated, the first data including at least: safety production laws and regulations of the power supply enterprise, safety production standards and specifications of the power supply enterprise, safety production management system of the power supply enterprise, and safety production operating procedures of the power supply enterprise; upon receiving feedback information from the first database, retrieving the first data from the first database and retrieving second data from the second database, the feedback indicating that the first data has been updated, the second data including at least: the names and functions of various levels of units of the power supply enterprise, the units including organizations, departments, and positions; and filling the first data and the second data into a safety responsibility information template to obtain updated safety responsibility information, the safety responsibility information template being safety responsibility information without the first data and the first data.

[0009] Optionally, the backend is also communicatively connected to a third database, which stores multiple security responsibility information templates. Each security responsibility information template corresponds one-to-one with a unit. The process of filling the security responsibility information template with the first data and the second data to obtain updated security responsibility information includes: a first acquisition step, acquiring first target data from the second data, wherein the first target data is the second data belonging to a target unit, and the target unit is one of multiple units; a second acquisition step, acquiring second target data from the first data based on the first target data, and acquiring a target security responsibility information template from the third database based on the second target data, wherein the second target data is the first data belonging to the target unit, and the target security responsibility information template is the security responsibility information template corresponding to the target unit; a filling step, filling the target security responsibility information template with the first target data and the second target data to obtain the updated security responsibility information corresponding to the target unit, wherein each unit corresponds one-to-one with the updated security responsibility information; repeating the first acquisition step, the second acquisition step, and the filling step at least once in sequence until the updated security responsibility information corresponding to each unit is obtained.

[0010] Optionally, the first target data and the second target data are filled into the target security responsibility information template to obtain the updated security responsibility information corresponding to the target unit, including: based on natural language processing technology and knowledge graph technology, the first target data and the second target data are filled into the target security responsibility information template to obtain the updated security responsibility information corresponding to the target unit.

[0011] Optionally, the method further includes: constructing multiple safety responsibility information templates based on the work information of each unit, wherein each unit corresponds one-to-one with the safety responsibility information template, and the work information includes at least the name of the project undertaken by the unit, the content of the project, and the basis of the project; and storing all the safety responsibility information templates in the third database.

[0012] Optionally, the backend is also connected to a fourth database and a frontend. After filling the security responsibility information template with the first data and the second data to obtain updated security responsibility information, the method further includes: deleting the security responsibility information corresponding to each of the units in the fourth database, and storing the updated security responsibility information corresponding to each of the units in the fourth database. The security responsibility information corresponds one-to-one with the units, and the updated security responsibility information corresponds one-to-one with the units. Upon receiving a second request information from the frontend, the updated security responsibility information corresponding to the second request information is retrieved from the fourth database, and the updated security responsibility information corresponding to the second request information is sent to the frontend. The second request information corresponds one-to-one with the updated security responsibility information, and the second request information indicates that the corresponding updated security responsibility information is being viewed.

[0013] Optionally, the backend is also connected to the frontend for communication. Before sending the first request information to the first database, the method further includes: detecting whether a third request information is received from the frontend, wherein the third request information is used to characterize an add operation, a modify operation, or a delete operation on the first data; and updating the first data in the first database based on the third request information if the third request information is received.

[0014] According to another aspect of this application, a device for updating safety responsibility information is provided. This device is applied to a backend, which is communicatively connected to a first database and a second database. The backend includes: a sending unit, configured to send a first request message to the first database, the first request message indicating a request to detect whether first data has been updated, the first data including at least: safety production laws and regulations of the power supply enterprise, safety production standards and specifications of the power supply enterprise, safety production management system of the power supply enterprise, and safety production operation procedures of the power supply enterprise; an acquisition unit, configured to acquire the first data from the first database and acquire second data from the second database upon receiving feedback information from the first database, the feedback information indicating that the first data has been updated, the second data including at least: the names and functions of various levels of units of the power supply enterprise, the units including organizations, departments, and positions; and a filling unit, configured to fill the first data and the second data into a safety responsibility information template to obtain updated safety responsibility information, the safety responsibility information template being the safety responsibility information without the first data and the first data.

[0015] According to another aspect of this application, a computer-readable storage medium is provided, the computer-readable storage medium including a stored program, wherein, when the program is executed, it controls the device where the computer-readable storage medium is located to perform any of the aforementioned methods for updating security responsibility information.

[0016] According to another aspect of this application, a processor is provided for running a program, wherein the program executes any of the aforementioned automatic update methods for security responsibility information.

[0017] According to one aspect of this application, a system for updating safety responsibility information is provided, comprising: a first database; a second database; a third database; a fourth database; a front-end; and a back-end, wherein the back-end is communicatively connected to the first database, the second database, the third database, the fourth database, and the front-end, and the back-end is used to execute any of the methods for updating the safety responsibility information described above.

[0018] By applying the technical solution of this application, upon receiving feedback information from the first database at the backend, it is determined that the power supply enterprise's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures have been updated. At this point, the updated power supply enterprise's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures are retrieved from the first database, and the names and functions of each level of unit are retrieved from the second database. The updated power supply enterprise's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures, as well as the names and functions of each level of unit, are then filled into the safety responsibility information template to obtain updated safety responsibility information. This achieves automatic updating of safety responsibility information and solves the problem that the safety responsibility information of power supply enterprises cannot be automatically updated in the prior art. Attached Figure Description

[0019] The accompanying drawings, which form part of this application, are used to provide a further understanding of this application. The illustrative embodiments and descriptions of this application are used to explain this application and do not constitute an undue limitation of this application. In the drawings:

[0020] Figure 1 A flowchart illustrating a method for updating safety responsibility information according to an embodiment of this application is shown.

[0021] Figure 2 A structural block diagram of a safety responsibility information updating device provided according to an embodiment of this application is shown. Detailed Implementation

[0022] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. This application will now be described in detail with reference to the accompanying drawings and embodiments.

[0023] To enable those skilled in the art to better understand the present application, the technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present application, and not all embodiments. Based on the embodiments in the present application, all other embodiments obtained by those of ordinary skill in the art without creative effort should fall within the scope of protection of the present application.

[0024] It should be noted that the terms "first," "second," etc., in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate for the embodiments of this application described herein. Furthermore, the terms "comprising" and "having," and any variations thereof, are intended to cover non-exclusive inclusion; for example, a process, method, system, product, or apparatus that comprises a series of steps or units is not necessarily limited to those steps or units explicitly listed, but may include other steps or units not explicitly listed or inherent to such processes, methods, products, or apparatus.

[0025] As described in the background section, the safety responsibility information of power supply companies cannot be automatically updated in the prior art. To solve the problem of the inability to automatically update the safety responsibility information of power supply companies in the prior art, the embodiments of this application provide a method for updating safety responsibility information, a device for updating safety responsibility information, a storage medium, a processor, and a system for updating safety responsibility information.

[0026] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention.

[0027] This embodiment provides a method for updating security responsibility information running in the backend. It should be noted that the steps shown in the flowchart in the accompanying drawings can be executed in a computer system such as a set of computer-executable instructions. Also, although a logical order is shown in the flowchart, in some cases, the steps shown or described may be executed in a different order than that shown here.

[0028] Specifically, the aforementioned backends are connected to the first database and the second database respectively.

[0029] Figure 1 This is a flowchart of a method for updating security responsibility information according to an embodiment of this application. Figure 1 As shown, the method includes the following steps:

[0030] Step S201: Send a first request message to the first database. The first request message is used to indicate whether the first data has been updated. The first data includes at least: the safety production laws and regulations of the power supply enterprise, the safety production standards and specifications of the power supply enterprise, the safety production management system of the power supply enterprise, and the safety production operation procedures of the power supply enterprise.

[0031] Specifically, the aforementioned first database is used to store the safety production laws and regulations, safety production standards and specifications, safety production management systems, and safety production operating procedures of the power supply enterprises. The backend periodically sends the aforementioned first request information to the first database (for example, on the 31st of each month) to periodically determine whether the safety production laws and regulations, safety production standards and specifications, safety production management systems, and safety production operating procedures of the power supply enterprises have been updated, and to periodically determine whether safety responsibility information needs to be updated. This allows for dynamic updating of safety responsibility information through first feedback information, enhancing the flexibility and adaptability of safety responsibility information and adapting to changes in the safety management needs of power supply enterprises.

[0032] Specifically, the aforementioned backend also communicates with the frontend.

[0033] In order to automatically update the safety production laws and regulations, safety production standards and specifications, safety production management systems, and safety production operating procedures of power supply enterprises in the first database, the method further includes the following steps before step S201:

[0034] Detect whether a third request message has been received from the aforementioned front end. The aforementioned third request message is used to indicate that an add operation, a modify operation, or a delete operation has been performed on the aforementioned first data.

[0035] Upon receiving the aforementioned third request information, the first data in the aforementioned first database is updated based on the aforementioned third request information.

[0036] In this embodiment, in some implementations, the "add" operation involves adding one or more provisions to the power supply company's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures. The "modify" operation involves modifying one or more provisions to these same provisions. The "delete" operation involves deleting one or more provisions from these same provisions. When the backend receives a third request from the frontend, it updates the power supply company's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures in the first database based on the "add," "modify," and "delete" operations in the third request. This achieves automatic updating of the power supply company's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures in the first database.

[0037] Step S202: Upon receiving feedback information from the first database, retrieve the first data from the first database and the second data from the second database. The feedback information is used to indicate that the first data has been updated.

[0038] The second set of data mentioned above includes at least the names and functions of the various levels of units of the aforementioned power supply enterprises, including organizations, departments, and positions.

[0039] Specifically, the second database is used to store the names and functions of the various levels of units of the power supply enterprise. When the backend receives feedback information from the first database, it determines that the power supply enterprise's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures have been updated. At this time, the updated safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures of the power supply enterprise are retrieved from the first database, and the names and functions of the various levels of units are retrieved from the second database.

[0040] Step S203: Fill the aforementioned first data and second data into the safety responsibility information template to obtain updated safety responsibility information.

[0041] The aforementioned safety responsibility information template is for safety responsibility information that has not been filled in with the aforementioned first data and the aforementioned first data.

[0042] Specifically, the updated safety production laws and regulations, safety production standards and specifications, safety production management systems, and safety production operating procedures of power supply enterprises, as well as the names and functions of units at all levels, are filled into the safety responsibility information template to obtain updated safety responsibility information. This achieves automatic updating of safety responsibility information and solves the problem that the safety responsibility information of power supply enterprises cannot be automatically updated in the existing technology.

[0043] Specifically, the aforementioned backend is also connected to a third database, which stores multiple security responsibility information templates, each corresponding to one of the aforementioned entities.

[0044] The above step S203 can be implemented as follows:

[0045] Step S2031, first acquisition step, acquiring first target data from the second data, wherein the first target data is the second data belonging to the target unit, and the target unit is one of the multiple units mentioned above;

[0046] Step S2032, the second acquisition step, based on the first target data, acquires second target data from the first data, and based on the second target data, acquires a target security responsibility information template from the third database, wherein the second target data is the first data belonging to the target unit, and the target security responsibility information template is the security responsibility information template corresponding to the target unit;

[0047] Specifically, using named entity recognition technology in natural language processing, entities are extracted from the power supply company's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operation procedures based on the name and functions of the target unit. The entities include the name of the target unit, the functions of the target unit, and the laws, regulations, systems, and procedures that the target unit is responsible for implementing.

[0048] Step S2033, filling step, fill the above first target data and the above second target data into the above target security responsibility information template to obtain the above updated security responsibility information corresponding to the above target unit, and the above unit corresponds one-to-one with the above updated security responsibility information;

[0049] Step S2034: Repeat the first acquisition step, the second acquisition step, and the filling step at least once in sequence until the updated security responsibility information corresponding to each of the above-mentioned units is obtained.

[0050] In this embodiment, the power supply company is composed of various levels of units. Upon receiving feedback information from the first database, it needs to update the safety responsibility information of each unit. When updating the safety responsibility information of a unit, the functions and names of the unit are obtained from the second database. Based on the functions and names of the unit, the regulations belonging to the unit are obtained from the safety production laws, regulations, standards, management systems, and operating procedures in the first database. Based on the functions and names of the unit, the corresponding safety responsibility information template is obtained from the third database. The regulations belonging to the unit and the functions and names of the unit are filled into the corresponding safety responsibility information template to obtain the updated safety responsibility information of the unit. This realizes the updating of the unit's safety responsibility information, realizes the automatic generation, publication, and updating of safety responsibility information of organizations, departments, and positions at all levels, avoids the shortcomings of manual compilation, publication, and updating, and improves the quality and efficiency of safety responsibility information content.

[0051] The above step S2033 includes:

[0052] Based on natural language processing and knowledge graph technologies, the first target data and the second target data are filled into the target security responsibility information template to obtain the updated security responsibility information corresponding to the target unit.

[0053] In this embodiment, in some implementations, the aforementioned natural language processing technology further includes relation extraction, semantic analysis, and other technologies. The aforementioned knowledge graph technology includes knowledge representation, knowledge reasoning, and knowledge fusion technologies. Named entity recognition technology, relation extraction technology, semantic analysis technology, knowledge representation technology, knowledge reasoning technology, and knowledge fusion technology are used to extract the regulations belonging to the target unit and the functions and names of the target unit from safety production laws, regulations, standards, management systems, and operating procedures, and fill them into the corresponding safety responsibility information template of the target unit to obtain the updated safety responsibility information of the target unit. Specifically, relation extraction technology and semantic analysis in natural language processing are utilized. The technology defines the semantic relationships between two or more entities mentioned above. Using these entities and semantic relationships, a knowledge graph is established. Utilizing the knowledge graph's knowledge representation, reasoning, and fusion technologies, a relationship graph is constructed based on the target unit's name, functions, and security responsibilities. The target unit's security responsibilities refer to the laws, regulations, systems, and procedures it is responsible for implementing. Based on the relationship graph between the target unit's functions and security responsibilities, the target unit's name, functions, and security responsibilities are filled into the target unit's corresponding security responsibility information template, resulting in updated security responsibility information for the target unit.

[0054] To improve the update rate of safety responsibility information, the above methods also include:

[0055] Based on the work information of the aforementioned units, multiple safety responsibility information templates are constructed. Each of the aforementioned units corresponds one-to-one with the aforementioned safety responsibility information template. The aforementioned work information includes at least the name of the project undertaken by the aforementioned unit, the content of the aforementioned project, and the basis for the aforementioned project.

[0056] Specifically, in some implementation methods, the project name is: XX City XX District Power Grid Renovation Project; the project content is: to renovate 43 low-voltage distribution areas connected to 2 10KV lines; the basis for the project is: with the rapid economic development of the district, more and more people live here, resulting in a sharp increase in the power load of the distribution area, which can no longer meet the current demand.

[0057] All the aforementioned safety responsibility information templates are stored in the aforementioned third database.

[0058] In this embodiment, a safety responsibility information template corresponding to each unit is pre-built based on the name, content, and basis of the project each unit is responsible for, and the safety responsibility information template corresponding to each unit is stored in a third database. When updating the safety responsibility information, the safety responsibility information template is directly called, and then the safety production laws and regulations, standards and specifications, management systems and operating procedures, as well as the unit's functions and name are filled into the safety responsibility information template to obtain the updated safety responsibility information.

[0059] Specifically, the aforementioned backend is also connected to a fourth database and to a frontend.

[0060] To facilitate viewing the updated security responsibility information, after step S203, the method further includes:

[0061] The aforementioned safety responsibility information corresponding to each of the aforementioned entities is deleted from the aforementioned fourth database, and the aforementioned updated safety responsibility information corresponding to each of the aforementioned entities is stored in the aforementioned fourth database. The aforementioned safety responsibility information corresponds one-to-one with the aforementioned entities, and the aforementioned updated safety responsibility information corresponds one-to-one with the aforementioned entities.

[0062] Upon receiving the second request information from the aforementioned front end, the updated security responsibility information corresponding to the second request information is retrieved from the aforementioned fourth database, and the updated security responsibility information corresponding to the second request information is sent to the aforementioned front end. The second request information and the updated security responsibility information are in one-to-one correspondence, and the second request information indicates that the corresponding updated security responsibility information can be viewed.

[0063] In this embodiment, after obtaining the updated security responsibility information, that is, after obtaining the updated security responsibility information of each unit, the backend deletes the original security responsibility information of each unit in the fourth database and stores the updated security responsibility information of each unit in the fourth database. In some implementations, the second request information includes the name of the unit. When the backend receives the second request information, it retrieves the updated security responsibility information of the unit from the fourth database based on the name of the unit in the second request information and returns the updated security responsibility information of the unit to the frontend to ensure convenient viewing of the updated security responsibility information.

[0064] Following step S203, the method further includes:

[0065] Upon receiving the second feedback information from the aforementioned front end, third data is obtained from the aforementioned front end. The third data includes the execution result of updating the security responsibility information and the execution difficulty of updating the security responsibility information. The execution result includes one of the following: excellent, good, average, poor, and extremely poor. The execution difficulty includes one of the following: difficult, average, and easy.

[0066] The aforementioned third data is input into the optimization model to obtain optimization opinions, which are modifications to the aforementioned first data. The optimization model is obtained by training a neural network using multiple sets of historical data. Each set of historical data includes at least the aforementioned third data and the aforementioned optimization opinions acquired within the historical period. Alternatively, the aforementioned optimization opinions can be determined using a logistic regression algorithm based on the aforementioned third data.

[0067] In this embodiment, based on the execution results and execution difficulty of updating safety responsibility information, a neural network or logistic regression algorithm is used to determine the proposed modifications to the power supply company's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures, providing a basis for the formulation of laws, regulations, systems, and procedures.

[0068] Through the above embodiments, upon receiving feedback information from the first database at the backend, it is determined that the power supply company's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures have been updated. At this time, the updated power supply company's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures are retrieved from the first database, and the names and functions of each level of unit are retrieved from the second database. The updated power supply company's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures, as well as the names and functions of each level of unit, are then filled into the safety responsibility information template to obtain updated safety responsibility information. This achieves automatic updating of safety responsibility information and solves the problem that the safety responsibility information of power supply companies cannot be automatically updated in the prior art.

[0069] This application also provides a device for updating security responsibility information. This device is applied to a backend, which is communicatively connected to a first database and a second database. It should be noted that the device for updating security responsibility information in this application can be used to execute the method for updating security responsibility information provided in this application. This device is used to implement the above embodiments and preferred embodiments; details already described will not be repeated. As used below, the term "module" can refer to a combination of software and / or hardware that performs a predetermined function. Although the device described in the following embodiments is preferably implemented in software, hardware implementation, or a combination of software and hardware, is also possible and contemplated.

[0070] The following describes the device for updating safety responsibility information provided in the embodiments of this application.

[0071] Figure 2 This is a schematic diagram of a device for updating security responsibility information according to an embodiment of this application. Figure 2 As shown, the device includes:

[0072] The sending unit 10 is used to send a first request information to the first database. The first request information is used to indicate whether the first data has been updated. The first data includes at least: the safety production laws and regulations of the power supply enterprise, the safety production standards and specifications of the power supply enterprise, the safety production management system of the power supply enterprise, and the safety production operation procedures of the power supply enterprise.

[0073] Specifically, the aforementioned first database is used to store the safety production laws and regulations, safety production standards and specifications, safety production management systems, and safety production operating procedures of the power supply enterprises. The backend periodically sends the aforementioned first request information to the first database (for example, on the 31st of each month) to periodically determine whether the safety production laws and regulations, safety production standards and specifications, safety production management systems, and safety production operating procedures of the power supply enterprises have been updated, and to periodically determine whether safety responsibility information needs to be updated. This allows for dynamic updating of safety responsibility information through first feedback information, enhancing the flexibility and adaptability of safety responsibility information and adapting to changes in the safety management needs of power supply enterprises.

[0074] Specifically, the aforementioned backend also communicates with the frontend.

[0075] To automatically update the safety production laws and regulations, safety production standards and specifications, safety production management systems, and safety production operating procedures of power supply enterprises in the first database, the aforementioned device includes a detection unit and an update unit.

[0076] The aforementioned detection unit is used to detect whether a third request information is received from the aforementioned front end. The aforementioned third request information is used to characterize the addition, modification, and deletion operations performed on the aforementioned first data.

[0077] The aforementioned update unit is configured to update the first data in the first database based on the third request information received.

[0078] In this embodiment, in some implementations, the "add" operation involves adding one or more provisions to the power supply company's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures. The "modify" operation involves modifying one or more provisions to these same provisions. The "delete" operation involves deleting one or more provisions from these same provisions. When the backend receives a third request from the frontend, it updates the power supply company's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures in the first database based on the "add," "modify," and "delete" operations in the third request. This achieves automatic updating of the power supply company's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures in the first database.

[0079] The acquisition unit 20 is configured to, upon receiving feedback information from the first database, acquire the first data from the first database and acquire the second data from the second database, wherein the feedback information is used to indicate that the first data has been updated.

[0080] The second set of data mentioned above includes at least the names and functions of the various levels of units of the aforementioned power supply enterprises, including organizations, departments, and positions.

[0081] Specifically, the second database is used to store the names and functions of the various levels of units of the power supply enterprise. When the backend receives feedback information from the first database, it determines that the power supply enterprise's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures have been updated. At this time, the updated safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures of the power supply enterprise are retrieved from the first database, and the names and functions of the various levels of units are retrieved from the second database.

[0082] The filling unit 30 is used to fill the first data and the second data into the safety responsibility information template to obtain updated safety responsibility information. The safety responsibility information template is the safety responsibility information that has not been filled with the first data and the second data.

[0083] Specifically, the updated safety production laws and regulations, safety production standards and specifications, safety production management systems, and safety production operating procedures of power supply enterprises, as well as the names and functions of units at all levels, are filled into the safety responsibility information template to obtain updated safety responsibility information. This achieves automatic updating of safety responsibility information and solves the problem that the safety responsibility information of power supply enterprises cannot be automatically updated in the existing technology.

[0084] Specifically, the aforementioned backend is also connected to a third database, which stores multiple security responsibility information templates, each corresponding to one of the aforementioned entities.

[0085] The aforementioned filling unit includes a first acquisition module, a second acquisition module, a filling module, and a repeating module.

[0086] The first acquisition module is used to perform a first acquisition step, acquiring first target data from the second data, wherein the first target data is the second data belonging to a target unit, and the target unit is one of the multiple units.

[0087] The second acquisition module is used to perform the second acquisition step, based on the first target data, to acquire second target data from the first data, and based on the second target data, to acquire a target security responsibility information template from the third database. The second target data is the first data belonging to the target unit, and the target security responsibility information template is the security responsibility information template corresponding to the target unit.

[0088] Specifically, using named entity recognition technology in natural language processing, entities are extracted from the power supply company's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operation procedures based on the name and functions of the target unit. The entities include the name of the target unit, the functions of the target unit, and the laws, regulations, systems, and procedures that the target unit is responsible for implementing.

[0089] The aforementioned filling module is used to fill the aforementioned first target data and the aforementioned second target data into the aforementioned target security responsibility information template to obtain the aforementioned updated security responsibility information corresponding to the aforementioned target unit, and the aforementioned unit corresponds one-to-one with the aforementioned updated security responsibility information;

[0090] The aforementioned repeating module is used to execute the first acquisition step, the second acquisition step, and the filling step at least once in sequence until the updated security responsibility information corresponding to each of the aforementioned units is obtained.

[0091] In this embodiment, the power supply company is composed of various levels of units. Upon receiving feedback information from the first database, it needs to update the safety responsibility information of each unit. When updating the safety responsibility information of a unit, the functions and names of the unit are obtained from the second database. Based on the functions and names of the unit, the regulations belonging to the unit are obtained from the safety production laws, regulations, standards, management systems, and operating procedures in the first database. Based on the functions and names of the unit, the corresponding safety responsibility information template is obtained from the third database. The regulations belonging to the unit and the functions and names of the unit are filled into the corresponding safety responsibility information template to obtain the updated safety responsibility information of the unit. This realizes the updating of the unit's safety responsibility information, realizes the automatic generation, publication, and updating of safety responsibility information of organizations, departments, and positions at all levels, avoids the shortcomings of manual compilation, publication, and updating, and improves the quality and efficiency of safety responsibility information content.

[0092] The aforementioned filling module is used to fill the aforementioned first target data and the aforementioned second target data into the aforementioned target security responsibility information template based on natural language processing technology and knowledge graph technology, so as to obtain the aforementioned updated security responsibility information corresponding to the aforementioned target unit.

[0093] In this embodiment, in some implementations, the aforementioned natural language processing technology further includes relation extraction, semantic analysis, and other technologies. The aforementioned knowledge graph technology includes knowledge representation, knowledge reasoning, and knowledge fusion technologies. Named entity recognition technology, relation extraction technology, semantic analysis technology, knowledge representation technology, knowledge reasoning technology, and knowledge fusion technology are used to extract the regulations belonging to the target unit and the functions and names of the target unit from safety production laws, regulations, standards, management systems, and operating procedures, and fill them into the corresponding safety responsibility information template of the target unit to obtain the updated safety responsibility information of the target unit. Specifically, relation extraction technology and semantic analysis in natural language processing are utilized. The technology defines the semantic relationships between two or more entities mentioned above. Using these entities and semantic relationships, a knowledge graph is established. Utilizing the knowledge graph's knowledge representation, reasoning, and fusion technologies, a relationship graph is constructed based on the target unit's name, functions, and security responsibilities. The target unit's security responsibilities refer to the laws, regulations, systems, and procedures it is responsible for implementing. Based on the relationship graph between the target unit's functions and security responsibilities, the target unit's name, functions, and security responsibilities are filled into the target unit's corresponding security responsibility information template, resulting in updated security responsibility information for the target unit.

[0094] To improve the update rate of safety responsibility information, the above-mentioned device also includes a construction unit and a storage unit.

[0095] The aforementioned building unit is used to construct multiple safety responsibility information templates based on the work information of each of the aforementioned units. Each of the aforementioned units corresponds one-to-one with the aforementioned safety responsibility information template. The aforementioned work information includes at least the name of the project that the aforementioned unit is responsible for, the content of the aforementioned project, and the basis for the aforementioned project.

[0096] Specifically, in some implementation methods, the project name is: XX City XX District Power Grid Renovation Project; the project content is: to renovate 43 low-voltage distribution areas connected to 2 10KV lines; the basis for the project is: with the rapid economic development of the district, more and more people live here, resulting in a sharp increase in the power load of the distribution area, which can no longer meet the current demand.

[0097] The aforementioned storage unit is used to store all the aforementioned security responsibility information templates into the aforementioned third database.

[0098] In this embodiment, a safety responsibility information template corresponding to each unit is pre-built based on the name, content, and basis of the project each unit is responsible for, and the safety responsibility information template corresponding to each unit is stored in a third database. When updating the safety responsibility information, the safety responsibility information template is directly called, and then the safety production laws and regulations, standards and specifications, management systems and operating procedures, as well as the unit's functions and name are filled into the safety responsibility information template to obtain the updated safety responsibility information.

[0099] Specifically, the aforementioned backend is also connected to a fourth database and to a frontend.

[0100] To facilitate viewing the updated safety responsibility information, the aforementioned device also includes a first processing unit and a second processing unit.

[0101] The first processing unit is used to delete the security responsibility information corresponding to each of the above-mentioned units in the fourth database, and to store the updated security responsibility information corresponding to each of the above-mentioned units in the fourth database. The security responsibility information corresponds one-to-one with the above-mentioned units, and the updated security responsibility information corresponds one-to-one with the above-mentioned units.

[0102] The second processing unit is configured to, upon receiving a second request information from the front end, retrieve the updated security responsibility information corresponding to the second request information from the fourth database, and send the updated security responsibility information corresponding to the second request information to the front end. The second request information and the updated security responsibility information are in one-to-one correspondence, and the second request information indicates that the corresponding updated security responsibility information can be viewed.

[0103] In this embodiment, after obtaining the updated security responsibility information, that is, after obtaining the updated security responsibility information of each unit, the backend deletes the original security responsibility information of each unit in the fourth database and stores the updated security responsibility information of each unit in the fourth database. In some implementations, the second request information includes the name of the unit. When the backend receives the second request information, it retrieves the updated security responsibility information of the unit from the fourth database based on the name of the unit in the second request information and returns the updated security responsibility information of the unit to the frontend to ensure convenient viewing of the updated security responsibility information.

[0104] Through the above embodiments, upon receiving feedback information from the first database at the backend, it is determined that the power supply company's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures have been updated. At this time, the updated power supply company's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures are retrieved from the first database, and the names and functions of each level of unit are retrieved from the second database. The updated power supply company's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures, as well as the names and functions of each level of unit, are then filled into the safety responsibility information template to obtain updated safety responsibility information. This achieves automatic updating of safety responsibility information and solves the problem that the safety responsibility information of power supply companies cannot be automatically updated in the prior art.

[0105] The aforementioned security responsibility information updating device includes a processor and a memory. The sending unit, acquiring unit, and filling unit are all stored as program units in the memory, and the processor executes these program units stored in the memory to achieve the corresponding functions. All of the aforementioned modules are located in the same processor; alternatively, the modules may be located in different processors in any combination.

[0106] The processor contains a kernel, which retrieves the corresponding program units from memory. One or more kernels can be configured, and adjusting kernel parameters can address the problem of power supply companies' safety responsibility information not being automatically updated in existing technologies.

[0107] The memory may include non-permanent memory in computer-readable media, such as random access memory (RAM) and / or non-volatile memory, such as read-only memory (ROM) or flash RAM, and the memory includes at least one memory chip.

[0108] This invention provides a computer-readable storage medium including a stored program, wherein, when the program is executed, it controls the device containing the computer-readable storage medium to perform a method for updating the security responsibility information.

[0109] Specifically, the methods for updating safety responsibility information include:

[0110] Step S201: Send a first request message to the first database. The first request message is used to indicate whether the first data has been updated. The first data includes at least: the safety production laws and regulations of the power supply enterprise, the safety production standards and specifications of the power supply enterprise, the safety production management system of the power supply enterprise, and the safety production operation procedures of the power supply enterprise.

[0111] Step S202: Upon receiving feedback information from the first database, retrieve the first data from the first database and the second data from the second database. The feedback information is used to indicate that the first data has been updated.

[0112] The second set of data mentioned above includes at least the names and functions of the various levels of units of the aforementioned power supply enterprises, including organizations, departments, and positions.

[0113] Step S203: Fill the aforementioned first data and second data into the safety responsibility information template to obtain updated safety responsibility information.

[0114] The aforementioned safety responsibility information template is for safety responsibility information that has not been filled in with the aforementioned first data and the aforementioned first data.

[0115] This invention provides a processor for running a program, wherein the program executes the method for updating the security responsibility information during runtime.

[0116] Specifically, the methods for updating safety responsibility information include:

[0117] Step S201: Send a first request message to the first database. The first request message is used to indicate whether the first data has been updated. The first data includes at least: the safety production laws and regulations of the power supply enterprise, the safety production standards and specifications of the power supply enterprise, the safety production management system of the power supply enterprise, and the safety production operation procedures of the power supply enterprise.

[0118] Step S202: Upon receiving feedback information from the first database, retrieve the first data from the first database and the second data from the second database. The feedback information is used to indicate that the first data has been updated.

[0119] The second set of data mentioned above includes at least the names and functions of the various levels of units of the aforementioned power supply enterprises, including organizations, departments, and positions.

[0120] Step S203: Fill the aforementioned first data and second data into the safety responsibility information template to obtain updated safety responsibility information.

[0121] The aforementioned safety responsibility information template is for safety responsibility information that has not been filled in with the aforementioned first data and the aforementioned first data.

[0122] This invention provides a system for updating safety responsibility information, comprising: a first database; a second database; a third database; a fourth database; a front-end; and a back-end. The back-end is communicatively connected to the first database, the second database, the third database, the fourth database, and the front-end, respectively. The back-end is used to execute the method for updating the safety responsibility information.

[0123] Specifically, the methods for updating safety responsibility information include:

[0124] Step S201: Send a first request message to the first database. The first request message is used to indicate whether the first data has been updated. The first data includes at least: the safety production laws and regulations of the power supply enterprise, the safety production standards and specifications of the power supply enterprise, the safety production management system of the power supply enterprise, and the safety production operation procedures of the power supply enterprise.

[0125] Step S202: Upon receiving feedback information from the first database, retrieve the first data from the first database and the second data from the second database. The feedback information is used to indicate that the first data has been updated.

[0126] The second set of data mentioned above includes at least the names and functions of the various levels of units of the aforementioned power supply enterprises, including organizations, departments, and positions.

[0127] Step S203: Fill the aforementioned first data and second data into the safety responsibility information template to obtain updated safety responsibility information.

[0128] The aforementioned safety responsibility information template is for safety responsibility information that has not been filled in with the aforementioned first data and the aforementioned first data.

[0129] The devices mentioned in this article can be servers, PCs, tablets, mobile phones, etc.

[0130] This application also provides a computer program product, which, when executed on a data processing device, is suitable for executing an initialization program having at least the following method steps:

[0131] Step S201: Send a first request message to the first database. The first request message is used to indicate whether the first data has been updated. The first data includes at least: the safety production laws and regulations of the power supply enterprise, the safety production standards and specifications of the power supply enterprise, the safety production management system of the power supply enterprise, and the safety production operation procedures of the power supply enterprise.

[0132] Step S202: Upon receiving feedback information from the first database, retrieve the first data from the first database and the second data from the second database. The feedback information is used to indicate that the first data has been updated.

[0133] The second set of data mentioned above includes at least the names and functions of the various levels of units of the aforementioned power supply enterprises, including organizations, departments, and positions.

[0134] Step S203: Fill the aforementioned first data and second data into the safety responsibility information template to obtain updated safety responsibility information.

[0135] The aforementioned safety responsibility information template is for safety responsibility information that has not been filled in with the aforementioned first data and the aforementioned first data.

[0136] It is obvious to those skilled in the art that the modules or steps of the present invention described above can be implemented using general-purpose computing devices. They can be centralized on a single computing device or distributed across a network of multiple computing devices. They can be implemented using computer-executable program code, and thus can be stored in a storage device for execution by a computing device. In some cases, the steps shown or described can be performed in a different order than those described herein, or they can be fabricated as separate integrated circuit modules, or multiple modules or steps can be fabricated as a single integrated circuit module. Thus, the present invention is not limited to any particular combination of hardware and software.

[0137] Those skilled in the art will understand that embodiments of this application can be provided as methods, systems, or computer program products. Therefore, this application can take the form of a completely hardware embodiment, a completely software embodiment, or an embodiment combining software and hardware aspects. Furthermore, this application can take the form of a computer program product embodied on one or more computer-usable storage media (including but not limited to disk storage, CD-ROM, optical storage, etc.) containing computer-usable program code.

[0138] This application is described with reference to flowchart illustrations and / or block diagrams of methods, apparatus (systems), and computer program products according to embodiments of this application. It will be understood that each block of the flowchart illustrations and / or block diagrams, and combinations of blocks in the flowchart illustrations and / or block diagrams, can be implemented by computer program instructions. These computer program instructions can be provided to a processor of a general-purpose computer, special-purpose computer, embedded processor, or other programmable data processing apparatus to produce a machine, such that the instructions, which execute via the processor of the computer or other programmable data processing apparatus, generate instructions for implementing the flowchart... Figure 1 One or more processes and / or boxes Figure 1 A device that provides the functions specified in one or more boxes.

[0139] These computer program instructions may also be stored in a computer-readable storage medium that can direct a computer or other programmable data processing device to function in a particular manner, such that the instructions stored in the computer-readable storage medium produce an article of manufacture including instruction means, which are implemented in a process Figure 1 One or more processes and / or boxes Figure 1 The function specified in one or more boxes.

[0140] These computer program instructions may also be loaded onto a computer or other programmable data processing equipment to cause a series of operational steps to be performed on the computer or other programmable equipment to produce a computer-implemented process, thereby providing instructions that execute on the computer or other programmable equipment for implementing the process. Figure 1 One or more processes and / or boxes Figure 1 The steps of the function specified in one or more boxes.

[0141] In a typical configuration, a computing device includes one or more processors (CPU), input / output interfaces, network interfaces, and memory.

[0142] Memory may include non-persistent memory in computer-readable media, such as random access memory (RAM) and / or non-volatile memory, such as read-only memory (ROM) or flash RAM. Memory is an example of computer-readable media.

[0143] Computer-readable media includes both permanent and non-permanent, removable and non-removable media that can store information using any method or technology. Information can be computer-readable instructions, data structures, modules of programs, or other data. Examples of computer storage media include, but are not limited to, phase-change memory (PRAM), static random access memory (SRAM), dynamic random access memory (DRAM), other types of random access memory (RAM), read-only memory (ROM), electrically erasable programmable read-only memory (EEPROM), flash memory or other memory technologies, CD-ROM, digital versatile optical disc (DVD) or other optical storage, magnetic tape, magnetic magnetic disk storage or other magnetic storage devices, or any other non-transferable medium that can be used to store information accessible by a computing device. As defined herein, computer-readable media does not include transient computer-readable media, such as modulated data signals and carrier waves.

[0144] It should also be noted that the terms "comprising," "including," or any other variations thereof are intended to cover non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements includes not only those elements but also other elements not expressly listed, or elements inherent to such process, method, article, or apparatus. Unless otherwise specified, an element defined by the phrase "comprising one..." does not exclude the presence of other identical elements in the process, method, article, or apparatus that includes that element.

[0145] As can be seen from the above description, the embodiments of this application achieve the following technical effects:

[0146] 1) In the method for updating safety responsibility information in this application, upon receiving feedback information from the first database at the backend, it is determined that the power supply enterprise's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures have been updated. At this time, the updated safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures of the power supply enterprise are obtained from the first database, and the names and functions of each level of unit are obtained from the second database. The updated safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures of the power supply enterprise, as well as the names and functions of each level of unit, are filled into the safety responsibility information template to obtain the updated safety responsibility information. This achieves automatic updating of safety responsibility information and solves the problem that the safety responsibility information of power supply enterprises cannot be automatically updated in the prior art.

[0147] 2) The safety responsibility information updating device of this application, upon receiving feedback information from the first database at the back end, determines that the power supply enterprise's safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures have been updated. At this time, it retrieves the updated safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures from the first database, and retrieves the names and functions of each level of unit from the second database. The updated safety production laws and regulations, safety production standards and specifications, safety production management system, and safety production operating procedures, as well as the names and functions of each level of unit, are then filled into the safety responsibility information template to obtain updated safety responsibility information. This achieves automatic updating of safety responsibility information and solves the problem that the safety responsibility information of power supply enterprises cannot be automatically updated in the prior art.

[0148] The above description is merely a preferred embodiment of this application and is not intended to limit this application. Various modifications and variations can be made to this application by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this application should be included within the protection scope of this application.

Claims

1. A method for updating safety responsibility information, characterized in that, The method for updating security responsibility information is applied to a backend, which is communicatively connected to a first database and a second database, and the method includes: Send a first request message to the first database. The first request message is used to indicate whether the first data has been updated. The first data includes at least: the safety production laws and regulations of the power supply enterprise, the safety production standards and specifications of the power supply enterprise, the safety production management system of the power supply enterprise, and the safety production operation procedures of the power supply enterprise. Upon receiving feedback information from the first database, the first data is retrieved from the first database, and the second data is retrieved from the second database. The feedback information is used to indicate that the first data has been updated. The second data includes at least the names and functions of the various levels of units of the power supply enterprise, wherein the units include organizations, departments and positions. The first data and the second data are filled into the safety responsibility information template to obtain updated safety responsibility information. The safety responsibility information template is the safety responsibility information without the first data and the first data. The backend is also connected to a third database, which stores multiple security responsibility information templates. Each security responsibility information template corresponds one-to-one with the unit. The first data and the second data are filled into the security responsibility information template to obtain updated security responsibility information, including: The first acquisition step involves acquiring first target data from the second data, wherein the first target data is the second data belonging to a target unit, and the target unit is one of a plurality of units; The second acquisition step involves obtaining second target data from the first target data based on the first target data, and obtaining a target security responsibility information template from the third database based on the second target data. The second target data is the first data belonging to the target unit, and the target security responsibility information template is the security responsibility information template corresponding to the target unit. The filling step involves filling the first target data and the second target data into the target security responsibility information template to obtain the updated security responsibility information corresponding to the target unit, wherein the unit and the updated security responsibility information correspond one-to-one. The first acquisition step, the second acquisition step, and the filling step are repeated at least once in sequence until the updated security responsibility information corresponding to each of the units is obtained.

2. The method according to claim 1, characterized in that, The first target data and the second target data are filled into the target security responsibility information template to obtain the updated security responsibility information corresponding to the target unit, including: Based on natural language processing and knowledge graph technologies, the first target data and the second target data are filled into the target security responsibility information template to obtain the updated security responsibility information corresponding to the target unit.

3. The method according to claim 1, characterized in that, The method further includes: Based on the work information of each unit, multiple safety responsibility information templates are constructed, with each unit corresponding to one of the safety responsibility information templates. The work information includes at least the name of the project that the unit is responsible for, the content of the project, and the basis for the project. All the aforementioned safety responsibility information templates are stored in the third database.

4. The method according to claim 1, characterized in that, The backend is also connected to a fourth database and to a frontend. After filling the security responsibility information template with the first data and the second data to obtain updated security responsibility information, the method further includes: The security responsibility information corresponding to each of the aforementioned units is deleted from the fourth database, and the updated security responsibility information corresponding to each of the aforementioned units is stored in the fourth database. The security responsibility information corresponds one-to-one with each of the aforementioned units, and the updated security responsibility information corresponds one-to-one with each of the aforementioned units. Upon receiving a second request from the front end, the updated security responsibility information corresponding to the second request is retrieved from the fourth database, and the updated security responsibility information corresponding to the second request is sent to the front end. The second request and the updated security responsibility information are in one-to-one correspondence, and the second request indicates that the corresponding updated security responsibility information can be viewed.

5. The method according to claim 1, characterized in that, The backend is also connected to the frontend for communication. Before sending the first request information to the first database, the method further includes: Detect whether a third request message is received from the front end, the third request message being used to indicate that an add operation, a modify operation, or a delete operation is performed on the first data; Upon receiving the third request information, the first data in the first database is updated based on the third request information.

6. A device for updating safety responsibility information, characterized in that, The security responsibility information updating device is applied to a backend, which is communicatively connected to a first database and a second database, and the backend includes: The sending unit is used to send a first request information to the first database. The first request information is used to indicate whether the first data has been updated. The first data includes at least: the safety production laws and regulations of the power supply enterprise, the safety production standards and specifications of the power supply enterprise, the safety production management system of the power supply enterprise, and the safety production operation procedures of the power supply enterprise. The acquisition unit is configured to acquire the first data from the first database and the second data from the second database upon receiving feedback information from the first database. The feedback information is used to indicate that the first data has been updated. The second data includes at least the names and functions of the various levels of units of the power supply enterprise, wherein the units include organizations, departments and positions. A filling unit is used to fill the first data and the second data into a security responsibility information template to obtain updated security responsibility information, wherein the security responsibility information template is security responsibility information without filling the first data and the first data; The backend is also connected to a third database, which stores multiple security responsibility information templates. Each security responsibility information template corresponds to a specific unit. The filling unit includes a first acquisition module, a second acquisition module, a filling module, and a repeating module. The first acquisition module is used to perform a first acquisition step, acquiring first target data from the second data, wherein the first target data is the second data belonging to a target unit, and the target unit is one of the plurality of units; The second acquisition module is used to perform a second acquisition step, based on the first target data, to acquire second target data from the first data, and based on the second target data, to acquire a target security responsibility information template from the third database, wherein the second target data is the first data belonging to the target unit, and the target security responsibility information template is the security responsibility information template corresponding to the target unit; The filling module is used to perform a filling step, filling the first target data and the second target data into the target security responsibility information template to obtain the updated security responsibility information corresponding to the target unit, and the unit and the updated security responsibility information correspond one-to-one; The repeating module is used to repeat the first acquisition step, the second acquisition step, and the filling step at least once in sequence until the updated security responsibility information corresponding to each of the units is obtained.

7. A computer-readable storage medium, characterized in that, The computer-readable storage medium includes a stored program, wherein, when the program is executed, it controls the device containing the computer-readable storage medium to perform the method for updating security responsibility information as described in any one of claims 1 to 5.

8. A processor, characterized in that, The processor is used to run a program, wherein the program executes the method for updating security responsibility information as described in any one of claims 1 to 5.

9. A system for updating safety responsibility information, characterized in that, include: First database; Second database; Third database; Fourth database; front end; The backend is communicatively connected to the first database, the second database, the third database, the fourth database, and the frontend, and is used to execute the method for updating security responsibility information as described in any one of claims 1 to 5.

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