Fire-fighting supervision auxiliary decision-making system
By establishing a fire management database and a fire protection facility database, and setting up a data update supervision module and a data sorting center, the problems of data update and information security in the fire supervision auxiliary decision-making system are solved, the scientificity and effectiveness of decision-making are achieved, and information security protection capabilities are enhanced.
Patent Information
- Application Number
- CN202510184956.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-19
- Publication Date
- 2025-06-06
AI Technical Summary
The existing fire supervision-assisted decision-making system has challenges in data updates and information security, which leads to lagging decision-making basis, affecting scientificity and effectiveness, and also facing cybersecurity threats.
By establishing a fire management database and a fire protection facility database, data standardization and encryption processing are carried out, and a data update supervision module and data sorting center are established to achieve timely update and analysis of data and generate decision reports and suggestions.
It realizes timely updates of data and security of information, improves the scientificity and effectiveness of decision-making, and enhances the system's information security protection capabilities.
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Figure CN120106376A_ABST
Abstract
Description
Technical Field
[0001] The present invention relates to the technical field of fire supervision, and in particular to a fire supervision auxiliary decision-making system. Background Art
[0002] The existing fire supervision decision-making support system still has the following drawbacks in actual use:
[0003] The fire supervision decision support system is an intelligent system that uses modern information technology and automated data collection, analysis and processing functions to quickly generate various reports and suggestions, greatly reducing the time for manual data processing and plan making, so that fire supervision personnel can devote more energy to actual supervision and inspection and hidden danger rectification work, improving the overall efficiency of fire supervision work, and providing support and assistance for fire supervision work. However, fire-related data is dynamically changing, such as changes in the use function of the venue, maintenance and updating of fire protection facilities, and personnel flow; if the system data cannot be updated in time, it will lead to a lag in decision-making basis and fail to reflect the actual fire safety situation, which in turn affects the scientificity and effectiveness of the decision, and the system involves a large amount of fire-sensitive information. With the continuous development of information technology, network security threats are becoming increasingly complex and diverse, and the system's information security protection faces great challenges. Summary of the invention
[0004] The purpose of the present invention is to provide a fire supervision decision-making support system to solve the problem that fire-related data is dynamically changing, such as changes in the use function of the venue, maintenance and updates of fire-fighting facilities, and the flow of personnel; if the system data cannot be updated in time, the decision-making basis will be delayed and unable to reflect the actual fire safety situation, thereby affecting the scientificity and effectiveness of the decision, and the system involves a large amount of fire-sensitive information. With the continuous development of information technology, network security threats are becoming increasingly complex and diverse, and the system's information security protection faces greater challenges.
[0005] In order to achieve the above-mentioned object, the present invention provides the following technical solutions: A fire supervision decision-making support system includes establishing a fire management database and a fire facility database;
[0006] The fire management database standardizes the various types of data collected to make them have a unified format and specification, and integrates them into the fire management database to obtain a standard fire management database;
[0007] Establish a data update supervision module; merge the results of online updates and offline inspections, integrate the updated data, and promptly supervise and handle any discrepancies between online updates and offline inspection data;
[0008] The fire-fighting facility database collects and organizes the distribution data of fire-fighting facilities in various regions, and encrypts the fire-fighting facility database;
[0009] A data collation center will be established to import the updated data information of the fire management database of the fire area and the data information of the fire facilities database of the corresponding area into the data collation center. The data collation center will analyze and process the collected data and quickly generate various reports and suggestions.
[0010] Furthermore, the fire management database standardizes the various types of data collected to make them have a unified format and specification, and integrates them into the fire management database to obtain a standard fire management database, which specifically includes:
[0011] Collect fire-related data from multiple channels, such as personnel flow data in the venue, personnel density, frequency of use of evacuation routes, historical fire accident records, time, cause, loss, etc. of previous fires, as well as weather data. Climate conditions have a certain impact on the occurrence and spread of fires, such as temperature, humidity, wind speed, etc., and integrate and standardize these scattered data to form a comprehensive and accurate fire information database to provide a data basis for subsequent analysis and decision-making.
[0012] Furthermore, the dispersed data are integrated and standardized to form a comprehensive and accurate fire information database, which provides a data basis for subsequent analysis and decision-making, and also includes:
[0013] Based on the collected data, the analytic hierarchy process is used to evaluate and analyze the fire risks in various places, identify high-risk areas, units and links, and issue early warning information in a timely manner.
[0014] Furthermore, the data update supervision module is set up to merge the results of online updates and offline inspections, integrate the updated data, and promptly supervise and handle any discrepancies between the online update and offline inspection data, specifically including:
[0015] Firefighters from all regions will update the reported data online in a timely manner, such as changes in the use functions of the venues, maintenance and updates of firefighting facilities, and the flow of personnel;
[0016] Offline firefighters conduct regular on-site inspections, upload the inspected fire data, and compare it with the updated data online.
[0017] Furthermore, the timely supervision and handling of discrepancies between online update and offline inspection data also includes:
[0018] If the online updated data is inconsistent with the offline updated data, it can be divided into the following situations:
[0019] If the offline firefighters have not found any changes in the online updated data, they need to verify with the online firefighters who reported the data to confirm the update results.
[0020] For offline updated data, if the online firefighters fail to update it in time, the offline firefighters shall promptly notify the online firefighters to update the data.
[0021] Furthermore, the fire-fighting facility database collects and organizes the distribution data of fire-fighting facilities in various regions, and encrypts the fire-fighting facility database, specifically including:
[0022] Collect fire-related data from multiple channels, such as fire-fighting facility information of buildings, fire inspection records, fire accident data, fire management status of units, etc., and integrate and standardize these scattered data to form a comprehensive and accurate fire-fighting facility database to provide a data basis for subsequent analysis and decision-making.
[0023] Furthermore, the encryption of the fire protection facility database also includes:
[0024] Based on the encryption algorithm, the access rights to the fire protection facility database are reduced and the network supply is defended.
[0025] Furthermore, the data collation center is established to import the data information of the fire management database of the updated fire area and the data information of the fire facility database of the corresponding area into the data collation center, and the data collation center analyzes and processes the collected data to quickly generate various reports and suggestions, including:
[0026] The fire management database imports the regional fire details into the data collation center. The data collation center obtains the facility information of the corresponding area from the fire facility database through the regional fire details. The data integration center integrates and analyzes the regional fire details in the fire management database with the facility information of the corresponding area to obtain a decision-making report.
[0027] Furthermore, obtaining the decision report also includes:
[0028] When fire supervision personnel conduct on-site inspections, the system can provide them with detailed inspection checklists, inspection standards, relevant laws and regulations, and other information to help inspectors complete inspections accurately and quickly and avoid missing important inspection items. It can also record findings and problems during the inspection process to facilitate subsequent tracking and processing.
[0029] Furthermore, the rapid generation of various reports and suggestions also includes:
[0030] By analyzing and mining large amounts of data, the system can provide decision-making support and advice to fire supervisors, offer the best rectification plan, and provide reference for formulating more scientific and reasonable fire prevention and control strategies, assisting fire supervisors in making scientific and reasonable decisions.
[0031] Compared with the prior art, the fire supervision decision-making auxiliary system provided by the present invention has the following beneficial effects:
[0032] The fire supervision and decision-making support system establishes a fire management database and a fire facility database; the fire management database standardizes the various types of data collected to make them have a unified format and specification, and integrates them into the fire management database to obtain a standard fire management database; establishes a data update supervision module; merges the results of online updates and offline inspections, integrates the updated data, and promptly supervises and handles any differences between the online update and offline inspection data; the fire facility database collects and organizes the distribution data of fire facilities in various regions, and encrypts the fire facility database; establishes a data collation center, and imports the data information of the fire management database of the updated fire area and the data information of the fire facility database of the corresponding area into the data collation center, which analyzes and processes the collected data and quickly generates various reports and suggestions. BRIEF DESCRIPTION OF THE DRAWINGS
[0033] In order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings required for use in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments recorded in the present invention. For ordinary technicians in this field, other drawings can also be obtained based on these drawings.
[0034] Figure 1 It is a schematic diagram of the overall process of the present invention;
[0035] Figure 2 It is a module block diagram of the present invention. DETAILED DESCRIPTION
[0036] In order to enable those skilled in the art to better understand the technical solution of the present invention, the present invention will be further described in detail below with reference to the accompanying drawings.
[0037] See also Figure 1 , 2 , fire supervision and decision-making support system, including the establishment of fire management database and fire facilities database;
[0038] Fire management database, standardizes all types of collected data to make them have a unified format and specification, and integrates them into the fire management database to obtain a standard fire management database;
[0039] Establish a data update supervision module; merge the results of online updates and offline inspections, integrate the updated data, and promptly supervise and handle any discrepancies between online updates and offline inspection data;
[0040] Firefighting facility database, which collects and organizes the distribution data of firefighting facilities in various regions and encrypts the firefighting facility database;
[0041] A data collation center will be established to import the updated data information of the fire management database of the fire area and the data information of the fire facilities database of the corresponding area into the data collation center. The data collation center will analyze and process the collected data and quickly generate various reports and suggestions.
[0042] The fire management database standardizes all types of collected data to make them have a unified format and specification, and integrates them into the fire management database to obtain a standard fire management database, which specifically includes:
[0043] Collect fire-related data from multiple channels, such as personnel flow data in the venue, personnel density, frequency of use of evacuation routes, historical fire accident records, time, cause, loss, etc. of previous fires, as well as weather data. Climate conditions have a certain impact on the occurrence and spread of fires, such as temperature, humidity, wind speed, etc., and integrate and standardize these scattered data to form a comprehensive and accurate fire information database to provide a data basis for subsequent analysis and decision-making.
[0044] These scattered data are integrated and standardized to form a comprehensive and accurate fire information database, which provides a data basis for subsequent analysis and decision-making, including:
[0045] Based on the collected data, the analytic hierarchy process is used to evaluate and analyze the fire risks in various places, identify high-risk areas, units and links, and issue early warning information in a timely manner.
[0046] Establish a data update supervision module; merge the results of online updates and offline inspections, integrate the updated data, and promptly supervise and handle any discrepancies between online updates and offline inspection data, including:
[0047] Firefighters from all regions will update the reported data online in a timely manner, such as changes in the use functions of the venues, maintenance and updates of firefighting facilities, and the flow of personnel;
[0048] Offline firefighters conduct regular on-site inspections, upload the inspected fire data, and compare it with the updated data online.
[0049] If there are discrepancies between online update and offline inspection data, timely supervision and handling will be carried out, including:
[0050] If the online updated data is inconsistent with the offline updated data, it can be divided into the following situations:
[0051] If the offline firefighters have not found any changes in the online updated data, they need to verify with the online firefighters who reported the data to confirm the update results.
[0052] For offline updated data, if the online firefighters fail to update it in time, the offline firefighters shall promptly notify the online firefighters to update the data.
[0053] Firefighting facility database collects and organizes the distribution data of firefighting facilities in various regions, and encrypts the firefighting facility database, including:
[0054] Collect fire-related data from multiple channels, such as fire-fighting facility information of buildings, fire inspection records, fire accident data, fire management status of units, etc., and integrate and standardize these scattered data to form a comprehensive and accurate fire-fighting facility database to provide a data basis for subsequent analysis and decision-making.
[0055] The fire protection facility database is encrypted, including:
[0056] Based on the encryption algorithm, the access rights to the fire protection facility database are reduced and the network supply is defended.
[0057] Establish a data collation center, import the data information of the fire management database of the updated fire area and the data information of the fire facility database of the corresponding area into the data collation center, and the data collation center will analyze and process the collected data and quickly generate various reports and suggestions, including:
[0058] The fire management database imports the regional fire details into the data collation center. The data collation center obtains the facility information of the corresponding area from the fire facility database through the regional fire details. The data integration center integrates and analyzes the regional fire details in the fire management database with the facility information of the corresponding area to obtain a decision-making report.
[0059] Get a decision report, including:
[0060] When fire supervision personnel conduct on-site inspections, the system can provide them with detailed inspection checklists, inspection standards, relevant laws and regulations, and other information to help inspectors complete inspections accurately and quickly and avoid missing important inspection items. It can also record findings and problems during the inspection process to facilitate subsequent tracking and processing.
[0061] Quickly generate a variety of reports and recommendations, including:
[0062] By analyzing and mining large amounts of data, the system can provide decision-making support and advice to fire supervisors, offer the best rectification plan, and provide reference for formulating more scientific and reasonable fire prevention and control strategies, assisting fire supervisors in making scientific and reasonable decisions.
[0063] The above description is only by way of illustration of certain exemplary embodiments of the present invention. It is undoubted that those skilled in the art can modify the described embodiments in various ways without departing from the spirit and scope of the present invention. Therefore, the above drawings and descriptions are illustrative in nature and should not be construed as limiting the scope of protection of the claims of the present invention.
Claims
1. Fire supervision decision support system, characterized in that: Including the establishment of fire management database and fire facilities database; The fire management database standardizes the various types of data collected to make them have a unified format and specification, and integrates them into the fire management database to obtain a standard fire management database; Establish a data update supervision module; Merge the results of online updates and offline inspections, integrate the updated data, and promptly supervise and handle any discrepancies between online updates and offline inspection data; The fire-fighting facility database collects and organizes the distribution data of fire-fighting facilities in various regions, and encrypts the fire-fighting facility database; A data collation center will be established to import the updated data information of the fire management database of the fire area and the data information of the fire facilities database of the corresponding area into the data collation center. The data collation center will analyze and process the collected data and quickly generate various reports and suggestions.
2. The fire supervision decision support system according to claim 1 is characterized in that: The fire management database standardizes the various types of data collected to make them have a unified format and specification, and integrates them into the fire management database to obtain a standard fire management database, which specifically includes: Collect fire-related data from multiple channels, such as personnel flow data in the venue, personnel density, frequency of use of evacuation routes, historical fire accident records, time, cause, loss, etc. of previous fires, as well as weather data. Climate conditions have a certain impact on the occurrence and spread of fires, such as temperature, humidity, wind speed, etc., and integrate and standardize these scattered data to form a comprehensive and accurate fire information database to provide a data basis for subsequent analysis and decision-making.
3. The fire supervision decision support system according to claim 2 is characterized in that: The above mentioned data are integrated and standardized to form a comprehensive and accurate fire information database, which provides a data basis for subsequent analysis and decision-making, and also includes: Based on the collected data, the analytic hierarchy process is used to evaluate and analyze the fire risks in various places, identify high-risk areas, units and links, and issue early warning information in a timely manner.
4. The fire supervision decision support system according to claim 1 is characterized in that: The data update supervision module is established to merge the results of online updates and offline inspections, integrate the updated data, and promptly supervise and handle any discrepancies between the online update and offline inspection data, including: Firefighters from all regions will update the reported data online in a timely manner, such as changes in the use functions of the venues, maintenance and updates of firefighting facilities, and the flow of personnel; Offline firefighters conduct regular on-site inspections, upload the inspected fire data, and compare it with the updated data online.
5. The fire supervision decision support system according to claim 4 is characterized in that: If there are discrepancies between online update and offline inspection data, timely supervision and handling shall also include: If the online updated data is inconsistent with the offline updated data, it can be divided into the following situations: If the offline firefighters have not found any changes in the online updated data, they need to verify with the online firefighters who reported the data to confirm the update results. For offline updated data, if the online firefighters fail to update it in time, the offline firefighters shall promptly notify the online firefighters to update the data.
6. The fire supervision decision support system according to claim 1 is characterized in that: The fire-fighting facility database collects and organizes the distribution data of fire-fighting facilities in various regions, and performs encryption processing on the fire-fighting facility database, specifically including: Collect fire-related data from multiple channels, such as fire-fighting facility information of buildings, fire inspection records, fire accident data, fire management status of units, etc., and integrate and standardize these scattered data to form a comprehensive and accurate fire-fighting facility database to provide a data basis for subsequent analysis and decision-making.
7. The fire supervision decision support system according to claim 6 is characterized in that: The fire protection facility database is encrypted, and further includes: Based on the encryption algorithm, the access rights to the fire protection facility database are reduced and the network supply is defended.
8. The fire supervision decision support system according to claim 1 is characterized in that: The data collation center is established to import the data information of the fire management database of the updated fire area and the data information of the fire facility database of the corresponding area into the data collation center. The data collation center analyzes and processes the collected data and quickly generates various reports and suggestions, including: The fire management database imports the regional fire details into the data collation center. The data collation center obtains the facility information of the corresponding area from the fire facility database through the regional fire details. The data integration center integrates and analyzes the regional fire details in the fire management database with the facility information of the corresponding area to obtain a decision-making report.
9. The fire supervision decision support system according to claim 8, characterized in that: The decision report obtained also includes: When fire supervision personnel conduct on-site inspections, the system can provide them with detailed inspection checklists, inspection standards, relevant laws and regulations, and other information to help inspectors complete inspections accurately and quickly and avoid missing important inspection items. It can also record findings and problems during the inspection process to facilitate subsequent tracking and processing.
10. The fire supervision decision support system according to claim 8, characterized in that: The rapid generation of various reports and recommendations also includes: By analyzing and mining large amounts of data, the system can provide decision-making support and advice to fire supervisors, offer the best rectification plan, and provide reference for formulating more scientific and reasonable fire prevention and control strategies, assisting fire supervisors in making scientific and reasonable decisions.