Enterprise digital security management method, system, device and storage medium
By building an enterprise security management database, identifying and analyzing security management objects, and automating data collection and updating security management entries, the problem of low efficiency in change management and data collection in enterprise security management systems has been solved, achieving efficient security management across levels.
Patent Information
- Application Number
- CN202411110355.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-14
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2044-08-14
AI Technical Summary
Existing enterprise security management systems are unable to meet the changing needs of higher-level departments in the process of managing changes to key content and key data. The level of digitalization is inconsistent across different levels or different parts of the same level, resulting in serious information silos, low data collection efficiency and difficulty in ensuring data quality, making it difficult to achieve comprehensive security management.
Build a safety management database for manufacturing enterprises, identify safety management objects, analyze safety management actions, generate safety management entries, receive user change requests through automated data collection and detailed operations, update safety management entries, and generate safety management reports.
It enables changes and adjustments to management information, improves the accuracy and efficiency of security management tasks, and supports cross-level and multi-dimensional security management.
Smart Images

Figure CN118628071B_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of security technology, and specifically relates to a method, system, device and storage medium for enterprise digital security management. Background Technology
[0002] Existing enterprise safety management systems primarily manage the enterprise's own systems, equipment, environment, and personnel, focusing on the enterprise itself and its own safety responsibilities. This results in limited scope, as current management content does not support changes and struggles to meet the evolving needs of higher-level departments regarding key content and data. Furthermore, some enterprises exhibit inconsistent levels of digitization across different levels or even within the same level, and some interfaces are incompatible, making it difficult to achieve comprehensive safety management using a single approach. Data collection through manual entry is time-consuming, often taking several days, and the quality of manually entered data is unreliable, making real-time data acquisition challenging. Information silos remain difficult to break down, rendering existing enterprise safety management systems isolated. Summary of the Invention
[0003] To address the aforementioned problems, the present invention provides, in one aspect, a method for enterprise digital security management, comprising:
[0004] A safety management database for the manufacturing enterprise is constructed, comprising multiple safety management entries, data collection information corresponding to the safety management entries, and detailed action operations for the safety management entries; a safety management change request is received from a user, the request containing a safety management entry identifier and the safety management content to be changed; the safety management entries corresponding to the safety management entry identifiers are updated according to the safety management entry identifiers and the safety management content to be changed; the updated safety management entries are displayed; the data collection information and detailed action operations are updated according to the updated safety management entries; and a safety management report for the manufacturing enterprise is generated and displayed in response to the implementation of the safety management database.
[0005] In the enterprise digital security management method described above, optionally, the construction of the manufacturing enterprise's security management database includes:
[0006] The safety management scope of the manufacturing enterprise is defined; the safety management objects within the safety management scope are identified, wherein the safety management objects are a set of safety management elements; the basic safety management actions of the safety management objects are analyzed and determined; safety management entries are obtained based on the safety management scope, safety management objects, and the basic safety management actions; and a safety management database of the manufacturing enterprise is constructed based on the safety management entries.
[0007] In the enterprise digital security management method described above, the security management scope may optionally include one or more of the following: enterprise, workshop, production line, and geographical region.
[0008] In the enterprise digital security management method described above, optionally, the set of basic security management actions includes multiple aspects such as monitoring, inspection, investigation, statistics, alarm, handling, and reporting.
[0009] In the enterprise digital security management method described above, optionally, the security management change request also includes user identity information;
[0010] The method further includes:
[0011] Based on the user's identity information, determine whether the user has permission to modify the management entry; if the user has permission to modify the management entry, then execute the step of updating the security management entry corresponding to the security management entry identifier based on the security management entry identifier and the security management content to be modified.
[0012] Another aspect of the present invention provides an enterprise digital security management system, which includes:
[0013] A construction device is used to construct a safety management database for a manufacturing enterprise. The safety management database includes multiple safety management entries, data collection information corresponding to the safety management entries, and detailed action operations for the safety management entries. A receiving device is used to receive a safety management change request input by a user. The safety management change request includes a safety management entry identifier and the safety management content to be changed. A first updating device is used to update the safety management entries corresponding to the safety management entry identifiers according to the safety management entry identifiers and the safety management content to be changed. A first display device is used to display the updated safety management entries. A second updating device updates the data collection information and detailed action operations according to the updated safety management entries. A second display device generates and displays a safety management report for the manufacturing enterprise in response to the implementation of the safety management database.
[0014] In the enterprise digital security management system described above, optionally, the construction apparatus includes:
[0015] The system comprises: a segmentation module for segmenting the safety management scope of the manufacturing enterprise; an identification module for identifying safety management objects within the safety management scope, wherein the safety management objects are a set of safety management elements; an analysis and determination module for analyzing and determining the set of basic safety management actions for the safety management objects; an acquisition module for obtaining safety management entries based on the safety management scope, safety management objects, and the basic safety management actions; and a construction module for constructing the safety management database of the manufacturing enterprise based on the safety management entries.
[0016] In the enterprise digital security management system described above, optionally, the security management change request also includes user identity information;
[0017] The system also includes:
[0018] A determining device is configured to determine whether the user has permission to modify the management entry based on the user identity information; a judging device is configured to, if the user has permission to modify the management entry, cause the first updating device to perform the updating of the security management entry corresponding to the security management entry identifier based on the security management entry identifier and the security management content to be modified.
[0019] Another aspect provides a computer device comprising: a memory and a processor, wherein the memory stores a computer program, the computer program being loaded and executed by the processor to implement the enterprise digital security management method as described above.
[0020] Another aspect provides a computer-readable storage medium storing at least one instruction, at least one program, code set, or instruction set, wherein the at least one instruction, at least one program, code set, or instruction set is loaded and executed by a processor to implement the enterprise digital security management method described above.
[0021] The beneficial effects of the technical solution provided by the embodiments of the present invention are as follows:
[0022] It enabled changes and adjustments to management information, improving the accuracy and efficiency of safety management task execution. Attached Figure Description
[0023] Figure 1 A flowchart illustrating an enterprise digital security management method provided in an embodiment of the present invention;
[0024] Figure 2 This is a schematic diagram of the structure of an enterprise digital security management system provided in an embodiment of the present invention. Detailed Implementation
[0025] The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0026] See Figure 1 This invention provides a method for enterprise digital security management, which includes the following steps:
[0027] Step 101: Construct a safety management database for the manufacturing enterprise. The safety management database contains multiple safety management entries.
[0028] Manufacturing enterprises involve product manufacturing and processing, which typically requires corresponding safety management tasks. Currently, the organizational structure of manufacturing enterprises often encompasses multiple levels, and the organizational forms vary between different companies. For example, Company A manages according to the structure of Group → Enterprise → Production Line, Company B manages according to Enterprise → Industrial Park → Production Line, and Company C manages according to Group → Sub-group → Enterprise → Workshop. While these organizational structures differ, each level has its own primary responsibility for safety management, but the management focus and dimensions of attention vary. Each level of management needs to monitor important information in real time, conduct inspections and investigations as required, and perform statistical analysis of relevant data, based on its own safety management responsibilities. Upper-level safety management entities pay attention to relevant alarm information and require lower-level entities to rectify and hold accountable those responsible. Lower-level safety management entities are required to provide safety management-related reports to upper levels as needed.
[0029] The implementation of this step includes, but is not limited to, the following: defining the safety management scope of the manufacturing enterprise; identifying the set of safety management objects within each safety management scope, with a subset of the safety management object set being a set of safety management elements; analyzing and determining the set of safety management actions for the safety management objects; obtaining safety management entries based on the safety management scope, safety management objects, and safety management actions; and constructing the manufacturing enterprise's safety management database based on the safety management entries.
[0030] It should be noted that the scope of safety management is divided by setting up enterprises, workshops, production lines, and areas. The dividing elements include: enterprise, workshop, production line, and area. An enterprise refers to a pre-defined legal entity. A workshop refers to an independent building. A production line refers to a manufacturing unit that completes the production of a specific product according to a production organization form. In practical applications, this can mean: one production line includes one workshop, one production line includes multiple workshops, or one workshop includes multiple production lines; this embodiment does not limit this. An area (or geographical area) refers to a pre-defined geographical range according to management requirements. A single safety management scope can be any one or more of the dividing elements (or a combination of dividing elements). For example, to meet the needs of enterprise digital safety management, a safety management scope is formed. For example: Safety management scope A is workshop XX1 and the surrounding area XX2; safety management scope B is workshop XX3 and production line XX4.
[0031] In identifying safety management objects, based on the management requirements of this level, the scope of safety management is used as the identification unit. According to the safety management requirements, the safety management elements within the scope of safety management are identified, such as personnel, production equipment, production auxiliary equipment, raw materials, semi-finished products, finished products, production environment, sensors, process methods, process flow, offline measurement tools, etc., to determine whether they need to be managed. The identified elements that need to be managed are combined individually or in multiple ways according to the management requirements to form a series of safety management object subsets (or subsets of the safety management object set). All subsets are used as elements to form the safety management object set.
[0032] For example: Identify the elements that need to be managed within the safety management scope B as: personnel, raw materials, semi-finished products, finished products, and production equipment. The subset of safety management objects includes: BO1={personnel}, BO2={raw materials, semi-finished products, finished products}, and BO3={production equipment}. The set of safety management objects BO={BO1,BO2,BO3}.
[0033] Safety management requirements typically involve relevant laws, regulations, standards, operating rules, operation manuals, operational records, and accident handling records from the national, industry, parent company, and company level. Within the scope of safety management, these requirements are formulated item by item. Specifically, safety management requirements are formed by combining the scope of safety management with relevant safety management documents.
[0034] The analysis and determination of safety management actions are conducted in accordance with safety management requirements. Basic safety management actions include seven items: monitoring, inspection, investigation, statistics, alarm, handling, and reporting. A safety management action (or set of basic safety management actions) is formed by combining multiple basic safety management actions. Each safety management action includes a start action and an end action. The start action must begin with a basic safety management action, and the end action must end with a basic safety management action or a no-action action. Action results from subsets of safety management objects can also be combined, and set operations or arithmetic operations can be performed on the action results of multiple subsets of safety management objects. Logical judgments can also be applied to safety management actions. These combinations form the corresponding safety management actions. Safety management actions are settings made to meet safety management requirements. In practical applications, they can be confirmed according to the process of technical data collection – preliminary conception – expert review – final release. Safety management actions are not directly related to safety management elements. For example: safety management scope B, safety management object BO. After analysis, safety management action B-BO1-A0 in BO1 represents: monitoring personnel within the safety management scope B → statistics → reporting; safety management action B-BO2-A0 represents summing the monitoring results of the three safety management elements (raw materials, semi-finished products, and finished products) within the safety management scope B, and performing corresponding basic actions according to logical judgment, specifically:
[0035]
[0036] The entire process described above constitutes this safety management action. Safety management action B-BO3-A0 indicates that the process involves inspecting, compiling statistics, and reporting on the production equipment within the safety management scope B.
[0037] By sequentially confirming the scope of safety management, the subset of safety management objects, and the safety management actions, safety management entries can be formed. For example, the management entries set up are as follows:
[0038]
[0039] The confirmation of data collection information corresponding to security management items can be achieved through two steps: confirming information collection requirements and confirming data sources and collection methods. The confirmation of information collection requirements is accomplished by formulating information collection requirements based on the management content (i.e., security management items). The confirmation of data sources and collection methods supports the automatic generation of form filling systems. This implementation of data collection information solves the problem of low data collection efficiency and achieves efficient collection of multi-dimensional data.
[0040] Specifically: Information collection requirement confirmation steps: According to the security management items, confirm the data to be collected and the data type one by one. The data types mainly include integers, floating-point numbers, characters, strings, booleans, sets, etc.
[0041] Data Source and Acquisition Method Confirmation Steps: Confirm the data source and acquisition method according to the security management items. If the security management scope has the conditions for automatic data acquisition, automatic data acquisition can be achieved using communication protocols, such as Modbus, OPC, BACnet, MQTT, CAN, Profibus, DNP3, Zigbee, Z→wave, HTTP, HTTPS, CoAP, AMQP, RTSP, SFTP, FTP, MQTT→SN, DDS, LMW2M, HART, Modbus TCP, Profinet, EtherCAT, EnOcean, 6LoWPAN, LoRaWAN, MQTT→SN over UDP, RS→232 / RS→485, I2C, SPI, EtherNet / IP, CC→Link, DeviceNet, Fieldbus Foundation FF, WebSocket, KNX, etc. If the security management scope does not have the conditions for automatic data acquisition, generate an HTTP communication protocol form filling system according to the information collection requirements and fill in the form within that system.
[0042] For example: Confirm the data and data type that need to be collected:
[0043] After confirming the data to be collected and its data type, determine the data source and collection method based on the actual conditions. For example, the confirmed data source and collection method are as follows:
[0044] Then, the actions for the safety management items are refined: Based on the safety management items and utilizing the collected multi-dimensional data, the safety management actions are refined, clarifying the data transmission and interaction logic between each basic safety management action. Refinement refers to detailing the required safety management actions according to the actual production situation, clarifying specific requirements, and targeting the safety management actions themselves. Seven basic actions are set within the safety management actions; for example, at this stage, it is necessary to clarify how to monitor and how to collect statistics. The main management actions that can be refined are listed below:
[0045] 1) Monitoring enables real-time monitoring of managed objects, including personnel monitoring (location and actions); production equipment monitoring (status, start-up, stop, standby, fault, etc.), set parameters (e.g., temperature, heating rate, pressure, pressurization rate, speed, etc.), actual process parameters (e.g., temperature, heating rate, pressure, pressurization rate, speed, etc.), and operating data (e.g., voltage, current, power, resistance, vibration frequency, etc.); monitoring of raw materials, semi-finished products, and finished products includes appearance and shape, temperature, humidity, particle size, conductivity, and weight; production environment monitoring includes real-time monitoring of ambient temperature, ambient humidity, ambient brightness, ambient combustible dust, and environmental pollutants; and sensor monitoring includes status (online, offline, fault) and measured data.
[0046] 2) Inspection methods include manual on-site inspection, AGV on-site inspection, manual remote inspection, and intelligent assisted remote inspection. Inspections can detect abnormal issues in safe production.
[0047] 3) The inspection includes personnel, production equipment, raw materials, semi-finished products, finished products, production environment, sensors, process methods, process flow, and offline measurement tools. A normal or abnormal conclusion is given based on pre-set criteria. The inspection can be conducted simultaneously with routine inspections or independently.
[0048] 4) Statistics are analyzed using the results of monitoring, inspection, and investigation as data sources. Specific methods include the statistical analysis of totals, averages, weighted averages, medians and percentiles, modes, standard deviations, variances, extreme values, frequencies, binary linear regression, and outliers, and logical operations are supported.
[0049] 5) The alarm uses the monitoring, statistics, inspection and investigation results as the data source to analyze each management item. After manual or intelligent assisted analysis, the results are given and the conclusion of whether to issue an alarm or not is output for a certain management item.
[0050] 6) Based on the results of monitoring, inspection, investigation, statistics, and alarms, the handling requirements shall be issued manually or with the assistance of artificial intelligence.
[0051] 7) The report mainly consists of compiling the relevant data and documents for each of the above actions in accordance with the safety management requirements of the higher level, using manual or AI-assisted manual work, to provide the higher level with a report that meets the requirements.
[0052] Safety management implementation: Based on detailed safety management actions, with the management content within the management scope as the smallest management unit, safety management is carried out according to the corresponding management actions, and implemented in a cross-level, multi-dimensional enterprise digital security management system.
[0053] 2. Security Management Implementation: A method is proposed that relies on detailed security management actions, with the corresponding management content within the management scope serving as the smallest management unit, to achieve security management. A cross-level, multi-dimensional enterprise digital security management system supports the implementation of the above security management.
[0054] For example, taking sign B-2 as an example, let's refine the safety management actions for this part:
[0055] Monitoring (Raw Materials): Monitor the real-time weight of raw materials at points A1 and A2, and output floating-point numbers JA1 and JA2;
[0056] Monitoring (Semi-finished products): Monitor the real-time weight of semi-finished products at points B1, B2, B3, and B4, and output floating-point numbers JB1, JB2, JB3, and JB4;
[0057] Monitoring (finished product): Monitor the weight of the finished product at C1 and output a floating-point number JC;
[0058] Statistics (Raw Materials): Real-time statistics of the total weight of raw materials at A1 and A2, calculate the total weight of JA1 and JA2, and output TA;
[0059] Statistics (Semi-finished products): Real-time statistics of the total weight of semi-finished products B1, B2, B3, and B4, calculate the total number (total weight) of JB1, JB2, JB3, and JB4, and output TB;
[0060] Statistics (finished products): Real-time statistics of the total weight of finished products at point C1, calculation of the total number of JC, and output of TC;
[0061] Statistics (Hazardous Substances): Sum the totals of raw materials, semi-finished products, and finished products to obtain the totals of TA, TB, and TC, and output TT;
[0062] Compare the values of TT and Q. If TT is greater than Q, an alarm, action, and report are triggered; if TT is less than Q, no action is taken. Q is a preset value.
[0063] Alarms: Based on monitoring and statistical results, corresponding alarms, actions, and reports will be issued. The alarm scheme is "Preset Template - Management Action Input - Alarm Issued". "Preset Template" is an example of "Actions occurring within a certain safety management scope"; "Management Action Input" is an example of entering the alarm template according to the actual management actions that occurred; "Alarm Issued" is an example of issuing an alarm with the management scope and management combination as the alarm item. In practical applications, the alarm content can be "Hazardous substances in workshop XX3 and production line XX4 exceed preset values; please pay attention."
[0064] Handling: The handling plan is "receive alarm - issue handling plan". The handling plan is issued in the enterprise's digital safety management system. The preset suggestions include "accelerate the transportation of finished products in workshop XX3" and "slow down the transportation of raw materials in production line XX4" to support intelligent auxiliary decision-making. Other handling requirements can also be manually issued by on-site safety management personnel.
[0065] Reporting Procedure: The reporting process follows a "preset template - data entry - report issuance" model. Superiors monitor the occurrence and handling of incidents involving excessive storage of restricted substances and report to higher authorities based on the actual handling results. The report content includes the nature of the excessive substance, the quantity exceeding the limit, the handling procedures, and the timeframe for handling.
[0066] After detailing safety management actions, safety management items, corresponding data collection information, and detailed action procedures are termed management units. These management units are combined to construct a digital safety production management system, enabling cross-level, multi-dimensional safety management. Management units are determined by the division of responsibilities across enterprise, workshop, production line, and region levels according to their management scope. Each management unit generates and uploads a report.
[0067] Step 102: Receive a security management change request input by the user. The security management change request includes a security management entry identifier and the security management content to be changed.
[0068] The scope, objects, and actions of safety management can be modified to create revised management entries. A safety management change request can be triggered by: discovering problems with existing safety management actions that require modification after review; upgrading production processes and equipment, necessitating corresponding modifications to safety management actions; or changes in management requirements.
[0069] To enhance the security of changes, security management change requests also include user identity information;
[0070] This method also includes: determining whether the user has permission to modify the management entry based on the user's identity information; if the user has permission to modify the management entry, then perform step 103 below.
[0071] Step 103: Update the security management entry corresponding to the security management entry identifier based on the security management entry identifier and the security management content to be changed.
[0072] For example: If the safety management action B-BO1-A0 in management item B-1 is changed, B-BO1-A1 will be represented as follows:
[0073]
[0074] The changed management items are as follows:
[0075] After a safety management item is changed, the original safety management item must be updated.
[0076] Step 104: Display the updated security management entries.
[0077] The modified security management entries are integrated with the unchanged security management entries in the original security management information to generate the final security management information. For example, the security management information is as follows:
[0078] Step 105: Update the data collection information and action details according to the updated security management entries.
[0079] After a security management item is updated, the corresponding data collection information and detailed action operations are assessed to determine whether an update is needed. If an update is deemed necessary, the update operation is executed; otherwise, the original information is retained, and no update operation is performed.
[0080] Step 106: In response to the implementation of the safety management database, display the manufacturing company's safety management report.
[0081] Manufacturing companies that implement this safety management database will be able to view and receive safety management reports.
[0082] The above technical solution enables the modification and adjustment of management information, thereby improving the accuracy and efficiency of safety management task execution.
[0083] See Figure 2 The present invention provides an enterprise digital security management system, which includes: a building device 201, a receiving device 202, a first updating device 203, a first display device 204, a second updating device 205, and a second display device 206.
[0084] The system includes a construction device 201 for constructing a safety management database for the manufacturing enterprise. This database contains multiple safety management entries, corresponding data collection information, and detailed action operations for each entry. A receiving device 202 receives user-input safety management change requests, which include safety management entry identifiers and the content to be changed. A first updating device 203 updates the safety management entries corresponding to the identifiers based on the identifiers and the content to be changed. A first display device 204 displays the updated safety management entries. A second updating device 205 updates the data collection information and detailed action operations based on the updated safety management entries. A second display device 206, in response to the implementation of the safety management database, generates and displays a safety management report for the manufacturing enterprise.
[0085] Optionally, the construction device includes: a segmentation module, an identification module, an analysis and determination module, an acquisition module, and a construction module. The segmentation module is used to segment the safety management scope of the manufacturing enterprise. The identification module is used to identify the safety management objects within the safety management scope; the safety management objects are a set of safety management elements. The analysis and determination module is used to analyze and determine the set of basic safety management actions for the safety management objects. The acquisition module is used to obtain safety management entries based on the safety management scope, safety management objects, and basic safety management actions. The construction module is used to construct the manufacturing enterprise's safety management database based on the safety management entries.
[0086] Optionally, the security management change request may also include user identity information; the system further includes a determining device and a judging device. The determining device is used to determine whether the user has permission to change the management entry based on the user identity information. The judging device is used to, if the user has permission to change the management entry, instruct the first updating device to update the security management entry corresponding to the security management entry identifier based on the security management entry identifier and the security management content to be changed.
[0087] Optionally, the scope of the safety management includes one or more of the following: enterprise, workshop, production line, and geographical area.
[0088] Optionally, the set of basic safety management actions includes multiple aspects such as monitoring, inspection, investigation, statistics, alarm, handling, and reporting.
[0089] It should be noted that the enterprise digital security management system provided in the above embodiments is only illustrated by the division of the above functional modules in the context of enterprise digital security management. In actual applications, the above functions can be assigned to different functional modules as needed, that is, the internal structure of the device can be divided into different functional modules to complete all or part of the functions described above. In addition, the enterprise digital security management system provided in the above embodiments and the enterprise digital security management method embodiments belong to the same concept, and the specific implementation process can be found in the method embodiments, which will not be repeated here.
[0090] One embodiment of the present invention provides a computer device comprising: a memory and a processor. The processor is connected to the memory and configured to execute the aforementioned enterprise digital security management method based on instructions stored in the memory. The number of processors can be one or more, and the processor can be single-core or multi-core. The 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, and the memory includes at least one memory chip. Examples of computer-readable media described below are possible examples of such media.
[0091] One embodiment of the present invention provides a computer-readable storage medium storing at least one instruction, at least one program, code set, or instruction set thereon. The at least one instruction, at least one program, code set, or instruction set is loaded and executed by a processor to implement the aforementioned enterprise digital security management method. The computer-readable storage medium includes: permanent and non-permanent, removable and non-removable media, and information storage can be implemented by any method or technology. Information can be computer-readable instructions, data structures, program modules, 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, disk storage or other magnetic storage devices, or any other non-transfer medium, which can be used to store information accessible by a computing device.
[0092] As is known from common technical knowledge, this invention can be implemented through other embodiments that do not depart from its spirit or essential characteristics. Therefore, the disclosed embodiments described above are merely illustrative in all respects and are not the only ones. All modifications within the scope of this invention or its equivalents are included in this invention.
Claims
1. A digital security management method for enterprises, characterized in that, The method includes: A safety management database for manufacturing enterprises is constructed, which includes multiple safety management entries, data collection information corresponding to the safety management entries, and detailed operation descriptions of the safety management entries. Receive a security management change request input by the user, wherein the security management change request includes a security management item identifier and the security management content to be changed; Update the security management entry corresponding to the security management entry identifier based on the security management entry identifier and the security management content to be changed; Display updated security management entries; The data collection information and detailed action operations are updated according to the updated security management entries. The data collection information is confirmed through information collection requirement confirmation and data source and collection method confirmation. Information collection requirement confirmation includes: confirming the data and data types to be collected item by item according to the security management entries. Data source and collection method confirmation includes: confirming the data source and collection method according to the security management entries. If the security management scope has the conditions for automatic data collection, automatic data collection is supported using communication protocols; if the security management scope does not have the conditions for automatic data collection, an HTTP communication protocol form filling system is generated according to the information collection requirements, and the form is filled in within this system. In response to the implementation of the safety management database, the safety management report of the manufacturing enterprise is displayed; The construction of the safety management database for the manufacturing enterprise includes: Define the scope of safety management for the manufacturing enterprise; Identify the safety management objects within the scope of the safety management, wherein the safety management objects are a collection of safety management elements. In identifying the safety management objects, based on the management requirements of this level, the safety management scope is used as the identification unit, and the safety management elements within the scope of the safety management are identified according to the safety management requirements. The safety management elements include: personnel, production equipment, production auxiliary equipment, raw materials, semi-finished products, finished products, production environment, sensors, process methods, process flow, and offline measurement tools. Analyze and determine the set of basic safety management actions for the aforementioned safety management object; Safety management items are obtained based on the scope of safety management, the objects of safety management, and the basic actions of safety management. Construct the safety management database of the manufacturing enterprise based on the aforementioned safety management items; The scope of the safety management includes one or more of the following: enterprises, workshops, production lines, and geographical areas; The set of basic safety management actions includes multiple aspects such as monitoring, inspection, investigation, statistics, alarms, handling, and reporting.
2. The enterprise digital security management method according to claim 1, characterized in that, The security management change request also includes user identity information; The method further includes: Determine whether the user has permission to modify the management entry based on the user identity information; If the user has permission to modify the management entry, then the step described above is executed to update the security management entry corresponding to the security management entry identifier based on the security management entry identifier and the security management content to be modified.
3. A digital security management system for enterprises, characterized in that, The system includes: A construction device is used to construct a safety management database for a manufacturing enterprise. The safety management database includes multiple safety management entries, data collection information corresponding to the safety management entries, and detailed operation descriptions of the safety management entries. A receiving device is used to receive a security management change request input by a user, wherein the security management change request includes a security management item identifier and the security management content to be changed; The first updating device is used to update the security management entry corresponding to the security management entry identifier according to the security management entry identifier and the security management content to be changed; The first display device is used to display the updated security management entries; The second updating device updates the data collection information and detailed operation based on the updated security management entries. The data collection information is obtained through two steps: confirming the information collection requirements and confirming the data source and collection method. Confirming the information collection requirements includes: confirming the data and data types to be collected item by item according to the security management entries. Confirming the data source and collection method includes: confirming the data source and collection method according to the security management entries; if the security management scope has the conditions for automatic data collection, it supports automatic data collection using communication protocols; if the security management scope does not have the conditions for automatic data collection, it generates an HTTP communication protocol form filling system according to the information collection requirements and fills in the form within the system. The second display device, in response to the implementation of the safety management database, generates and displays the safety management report of the manufacturing enterprise; the construction device includes: The partitioning module is used to partition the safety management scope of the manufacturing enterprise; The identification module is used to identify safety management objects within the scope of the safety management. The safety management objects are a collection of safety management elements. In identifying safety management objects, based on the management requirements of this level, the safety management scope is used as the identification unit. According to the safety management requirements, the safety management elements within the scope of the safety management are identified. The safety management elements include: personnel, production equipment, production auxiliary equipment, raw materials, semi-finished products, finished products, production environment, sensors, process methods, process flow, and offline measurement tools. The analysis and determination module is used to analyze and determine the set of basic safety management actions for the safety management object. The module is used to obtain security management entries based on the security management scope, security management object, and the basic security management actions. A construction module is used to construct the safety management database of the manufacturing enterprise based on the safety management entries; The scope of safety management includes one or more of the following: enterprises, workshops, production lines, and geographical areas. The set of basic safety management actions includes multiple aspects such as monitoring, inspection, investigation, statistics, alarms, handling, and reporting.
4. The enterprise digital security management system according to claim 3, characterized in that, The security management change request also includes user identity information; The system also includes: A determining device is used to determine, based on the user identity information, whether the user has permission to modify the management entry; The determining device is configured to, if the user has permission to modify the management entry, cause the first updating device to perform the updating of the security management entry corresponding to the security management entry identifier based on the security management entry identifier and the security management content to be modified.
5. A computer device, characterized in that, The computer device includes a memory and a processor, wherein the memory stores a computer program, which is loaded and executed by the processor to implement the enterprise digital security management method as described in any one of claims 1-2.
6. A computer-readable storage medium, characterized in that, The computer-readable storage medium stores at least one instruction, at least one program, code set, or instruction set, wherein the at least one instruction, at least one program, code set, or instruction set is loaded and executed by a processor to implement the enterprise digital security management method as described in any one of claims 1-2.
Citation Information
Patent Citations
Intelligent engineering supervision platform based on big data
CN116993051A