Fire-fighting facility data analysis processing system based on internet of things
By using IoT technology to monitor and compare data of fire protection facilities in real time, the problem of damage caused by untimely inspection of fire protection facilities has been solved, enabling timely repair of damaged facilities and reducing fire risk.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- ZHONGKE DATA CLOUD (HUBEI) TECH CO LTD
- Filing Date
- 2022-07-22
- Publication Date
- 2026-04-28
AI Technical Summary
With limited human resources, fire protection facilities cannot be inspected every day, resulting in damage that cannot be repaired in a timely manner, increasing the risk of fire.
An IoT-based fire protection facility data analysis and processing system is adopted. Through the monitoring system, IoT verification terminal and community fire protection data management center, the system collects and compares fire protection facility data in real time, identifies damaged facilities, and notifies community units to repair them.
It enables real-time monitoring and location repair of fire protection facilities, reducing the risk of fire caused by facility damage and lowering the workload for community units.
Smart Images

Figure CN117499420B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of fire protection facility monitoring, and in particular to a fire protection facility data analysis and processing system based on the Internet of Things. Background Technology
[0002] Fire protection facilities refer to fixed facilities such as automatic fire alarm systems, indoor fire hydrants, and outdoor fire hydrants within buildings. Automatic fire protection facilities are divided into electrical system automatic facilities and water system automatic facilities. Electrical fire safety testing utilizes internationally advanced high-tech instruments and equipment, combined with traditional inspection methods, to conduct comprehensive quantitative monitoring of electrical facilities based on modern physical phenomena such as heat radiation, acoustic emission, and electromagnetic emission during operation. This provides a more comprehensive, scientific, and accurate reflection of the existence, degree of danger, and precise location of electrical fire hazards, and allows for timely implementation of corresponding corrective measures to eliminate hazards and prevent electrical fire accidents.
[0003] Under normal circumstances, fire protection facilities need to be inspected. However, due to limited human resources, it is not possible to inspect fire protection facilities every day. If fire protection facilities are damaged between two inspections, they may become unusable. If the damaged fire protection facilities are not inspected and repaired, the risk to community residents will be greatly increased if a fire occurs nearby. Therefore, a fire protection facility data analysis and processing system based on the Internet of Things is proposed. Summary of the Invention
[0004] The purpose of this invention is to address the shortcomings of existing technologies by proposing an Internet of Things-based fire protection facility data analysis and processing system.
[0005] To achieve the above objectives, the present invention adopts the following technical solution:
[0006] A fire protection facility data analysis and processing system based on the Internet of Things includes a monitoring system, an Internet of Things calibration terminal, a community fire protection data management center, an information collection module, an information calibration module, a community fire protection data storage receiving terminal, and community units;
[0007] The monitoring system monitors each floor of the community. The IoT calibration terminal calibrates the integrity of the fire protection facilities and exports the calibration data. The community fire protection data management center stores and uploads the fire protection data recorded daily by the community. The information collection module receives the data uploaded and exported by the IoT calibration terminal and the community fire protection data management center. The information calibration module compares the data from the community fire protection data management center with the data from the IoT calibration terminal. The community fire protection data storage receiving terminal receives data from the information calibration module. The community unit is the basic installation unit for the fire protection facilities.
[0008] The community fire data management center includes a fire information input terminal and a fire information storage terminal. The fire information input terminal inputs daily fire inspection information and stores the information in the input terminal. The IoT verification terminal includes an image data acquisition module, a fire facility image acquisition module, an image comparison module, and a data export module. The fire facility image acquisition module captures images of fire equipment on various streets and floors through the monitoring system. The fire facility image acquisition module collects images of normal fire facilities from the network. The image comparison module compares the images in the image data acquisition module with those in the fire facility image acquisition module. The data export module exports the comparison data.
[0009] The above technical solution involves: firstly, collecting data on fire-fighting facilities through a monitoring system, an IoT verification terminal, and a community fire data management center. Simultaneously, the IoT verification terminal filters out fire-fighting facilities whose images show damage. Then, the information collection and calibration module compares the data from the community fire data management center and the IoT verification terminal. If the information in the community fire data management center and the IoT verification terminal does not match—for example, if the data from the community fire data management center shows that the fire-fighting facilities are intact, but the data from the IoT verification terminal shows that the fire-fighting facilities are damaged—then the status of these fire-fighting facilities will be fed back to the community fire data storage receiving terminal.
[0010] Preferably, the information calibration module includes a community fire information analysis module, an IoT screen information collection system, a community information and IoT information calibration terminal, and a calibration result sending terminal. The community fire information analysis module receives data from the community fire data management center in the information collection module. The IoT screen information collection system collects information from the IoT calibration terminal. The community information and IoT information calibration terminal compares the community information with the data from the IoT information terminal. The calibration result sending terminal sends the information.
[0011] Preferably, the community fire protection data storage receiving terminal includes a server receiving terminal, a display terminal, and a signal transmission terminal. The server receiving terminal is used to receive data from the calibration result sending terminal, the display terminal is used to display the data from the server receiving terminal, and the signal transmission terminal is used to transmit the comparison results.
[0012] Preferably, the community unit includes a signal receiving terminal, a fire protection facility maintenance photo storage terminal, and a maintenance data sending terminal. The fire protection facility maintenance photo storage terminal is a port used to store the repaired fire protection facilities, and the maintenance data sending terminal is used to send back the repaired data.
[0013] Preferably, the community information and IoT information verification terminal includes an image information receiving end, a community fire information receiving end, an image information and community record information comparison module, and an information inaccuracy reminder module. The image information receiving end receives image data and verified data from the IoT verification terminal. The image information and community record information comparison module is used to compare the data in the community fire data management center with the verified data in the IoT verification terminal. The information inaccuracy reminder module is used to remind users when there is an error in the data compared between the community fire data management center and the IoT verification terminal.
[0014] Preferably, the image data acquisition module and the fire protection facility image acquisition module in the IoT calibration terminal collect information about fire protection facilities from the monitoring system and collect normal images from the network, respectively. Then, all the images are imported into the image comparison module. The normal images from the network are used as a reference module to establish a comparison model. The images in the image data acquisition module are then compared with the normal images to determine whether the fire protection facilities are intact.
[0015] Preferably, the community fire information analysis module in the information calibration module extracts data from the community fire data management center, while the IoT screen information collection system receives data from the data export module. Both then import the information into the community information and IoT information verification terminal. The community information and IoT information verification terminal analyzes the data to check if the information is consistent. The analysis process involves comparing the images of damaged fire-fighting facilities with the information recorded by the community. If they are inconsistent, an inaccurate information alert module is sent to the information inaccurate alert module, which then sends the information to the community fire storage data receiving terminal via the message collection module.
[0016] Preferably, the community unit and the community fire protection data storage receiver are used in conjunction. The community fire protection data storage receiver can receive all the data, and the server receiver receives the data from the calibration result sending terminal. The data includes the comparison data in the information calibration module and the floor image data in the IoT calibration terminal. If the image shows that the fire protection facilities are damaged and the data in the community fire protection data management center does not match the data in the image, the community unit is notified to handle the problem through the signal transmission terminal. The community unit will also receive the rectification information and the image information at the same time, which is convenient for locating the fire protection facilities. After the rectification is completed, the repaired fire protection facilities are photographed and then the data is resent back to the server receiver through the maintenance data sending terminal.
[0017] The beneficial effects of this invention are as follows:
[0018] This invention collects data on fire protection facilities through a monitoring system, an IoT verification terminal, and a community fire protection data management center. The IoT verification terminal also filters out fire protection facilities showing damage in the images. Then, the information collection and calibration module compares the data from the community fire protection data management center and the IoT verification terminal. If the information in the community fire protection data management center and the IoT verification terminal does not match—for example, the data in the community fire protection data management center shows that the fire protection facilities are intact, but the data in the IoT verification terminal shows that the fire protection facilities are damaged—then the status of these fire protection facilities will be fed back to the community fire protection data storage receiving terminal. This technical means prevents fire protection facilities from being damaged after inspection and thus unusable in the event of a fire. The server receiving terminal in this invention receives data from the verification result sending terminal, including comparison data from the information calibration module and floor image data from the IoT verification terminal. Firstly, if the image shows that the fire protection facilities are damaged, and the data in the community fire protection data management center does not match the image data, the community unit is notified through the signal transmission terminal to handle the issue. The specific area of the damaged fire protection facilities is determined through the image, reducing the workload for the community unit. Attached Figure Description
[0019] Figure 1 This is a schematic diagram of the system in this invention;
[0020] Figure 2 This is a schematic diagram of the community information and Internet of Things information verification terminal in this invention;
[0021] Figure 3 This is a schematic diagram of the system structure of Comparative Example 1 in this invention. Detailed Implementation
[0022] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Example
[0023] like Figure 1-2 As shown, a fire protection facility data analysis and processing system based on the Internet of Things includes a monitoring system, an Internet of Things calibration terminal, a community fire protection data management center, an information collection module, an information calibration module, a community fire protection data storage receiving terminal, and community units;
[0024] The monitoring system monitors each floor of the community. The IoT calibration terminal calibrates the integrity of the fire protection facilities and exports the calibration data. The community fire protection data management center stores and uploads the fire protection data recorded daily by the community. The information collection module receives the data uploaded and exported by the IoT calibration terminal and the community fire protection data management center. The information calibration module compares the data from the community fire protection data management center with the data from the IoT calibration terminal. The community fire protection data storage receiving terminal receives data from the information calibration module. The community unit is the basic installation unit for the fire protection facilities.
[0025] The community fire data management center includes a fire information input terminal and a fire information storage terminal. The fire information input terminal inputs daily fire inspection information and stores the information in the input terminal. The IoT verification terminal includes an image data acquisition module, a fire facility image acquisition module, an image comparison module, and a data export module. The fire facility image acquisition module captures images of fire equipment on various streets and floors through the monitoring system. The fire facility image acquisition module collects images of normal fire facilities from the network. The image comparison module compares the images in the image data acquisition module with those in the fire facility image acquisition module. The data export module exports the comparison data.
[0026] The information calibration module includes a community fire information analysis module, an IoT screen information collection system, a community information and IoT information calibration terminal, and a calibration result sending terminal. The community fire information analysis module receives data from the community fire data management center in the information collection module. The IoT screen information collection system collects information from the IoT calibration terminal. The community information and IoT information calibration terminal compares the community information with the data from the IoT information terminal. The calibration result sending terminal sends the information.
[0027] The community fire protection data storage receiving terminal includes a server receiving terminal, a display terminal, and a signal transmission terminal. The server receiving terminal is used to receive data from the verification result sending terminal, the display terminal is used to display the data from the server receiving terminal, and the signal transmission terminal is used to transmit the comparison results.
[0028] The community unit includes a signal receiving terminal, a fire protection facility maintenance photo storage terminal, and a maintenance data sending terminal. The fire protection facility maintenance photo storage terminal is a port used to store the repaired fire protection facilities, and the maintenance data sending terminal is used to send back the repaired data.
[0029] The community information and IoT information verification terminal includes an image information receiving end, a community fire information receiving end, an image information and community record information comparison module, and an information inaccuracy reminder module. The image information receiving end receives image data and verified data from the IoT verification terminal. The image information and community record information comparison module is used to compare the data in the community fire data management center with the verified data in the IoT verification terminal. The information inaccuracy reminder module is used to remind users when there is an error in the data compared between the community fire data management center and the IoT verification terminal.
[0030] Working principle: The specific steps for using this invention are as follows:
[0031] S1. Information Collection: The image data collection module and the fire-fighting facility image collection module in the IoT calibration terminal collect information about fire-fighting facilities from the monitoring system and collect normal images from the network. Then, all the images are imported into the image comparison module. The normal images from the network are used as a reference module, and a comparison model is established based on this. Then, the images in the image data collection module are compared with the normal images to determine whether the fire-fighting facilities are intact.
[0032] S1.1: The community fire information analysis module in the information calibration module will extract data from the community fire data management center through the information collection module;
[0033] S1.2: Extracted Content: The information collected and calibration module extracts information about areas where fire protection facilities are damaged from the community fire data management center.
[0034] S2. Information Comparison: The IoT screen information collection system receives data from the data export module, and then both import the information into the community information and IoT information verification terminal. The community information and IoT information verification terminal analyzes the data to check whether the information is consistent. The analysis process involves comparing the pictures of damaged fire-fighting facilities with the information recorded by the community. If they are inconsistent, the system will send an information inaccuracy reminder module.
[0035] S3. Information Transmission: If the information calibration module detects inconsistencies between the data in the community fire safety data management center and the IoT calibration terminal, it will send a message to the inaccurate information alert module. The inaccurate information alert module will then transmit the information to the community fire safety data storage receiver via the message collection module.
[0036] S31. Fire protection facility information processing: The community unit and the community fire protection data storage receiving terminal are used in conjunction. First, the community fire protection data storage receiving terminal can receive all the data. The server receiving terminal receives the data from the calibration result sending terminal. The data includes the comparison data in the information calibration module and the floor image data in the IoT calibration terminal. If the image shows that the fire protection facility is damaged and the data in the community fire protection data management center does not match the data in the image, the community unit will be notified to handle it through the signal transmission terminal.
[0037] S32. Feedback on Fire Protection Facility Repair: The community will receive both rectification information and image information to facilitate the location of fire protection facilities. After rectification is completed, photos of the repaired fire protection facilities will be taken and then the data will be resent back to the server receiver through the maintenance data sending terminal.
[0038] like Figure 3 As shown, a fire protection facility data analysis and processing system based on the Internet of Things includes a monitoring system, an Internet of Things calibration terminal, a community fire protection data management center, an information collection module, an information calibration module, a community fire protection data storage receiving terminal, and community units;
[0039] The monitoring system monitors each floor of the community. The IoT calibration terminal calibrates the integrity of the fire protection facilities and exports the calibration data. The community fire protection data management center stores and uploads the fire protection data recorded daily by the community. The information collection module receives the data uploaded and exported by the IoT calibration terminal and the community fire protection data management center. The information calibration module compares the data from the community fire protection data management center with the data from the IoT calibration terminal. The community fire protection data storage receiving terminal receives data from the information calibration module. The community unit is the basic installation unit for the fire protection facilities.
[0040] The community fire data management center includes a fire information input terminal and a fire information storage terminal. The fire information input terminal inputs daily fire inspection information and stores the information in the input terminal. The IoT verification terminal includes an image data acquisition module, a fire facility image acquisition module, an image comparison module, and a data export module. The fire facility image acquisition module captures images of fire equipment on various streets and floors through the monitoring system. The fire facility image acquisition module collects images of normal fire facilities from the network. The image comparison module compares the images in the image data acquisition module with those in the fire facility image acquisition module. The data export module exports the comparison data.
[0041] Furthermore, the information calibration module includes a community fire information analysis module, an IoT screen information collection system, a community information and IoT information calibration terminal, and a calibration result sending terminal. The community fire information analysis module receives data from the community fire data management center in the information collection module. The IoT screen information collection system collects information from the IoT calibration terminal. The community information and IoT information calibration terminal compares the community information with the data from the IoT information terminal. The calibration result sending terminal sends the information.
[0042] Furthermore: the community fire protection data storage receiving terminal includes a server receiving terminal, a display terminal, and a signal transmission terminal. The server receiving terminal is used to receive data from the calibration result sending terminal, the display terminal is used to display the data from the server receiving terminal, and the signal transmission terminal is used to transmit the comparison results.
[0043] Furthermore: the community unit includes a signal receiving terminal, a fire protection facility maintenance photo storage terminal, and a maintenance data sending terminal. The fire protection facility maintenance photo storage terminal is a port used to store the repaired fire protection facilities, and the maintenance data sending terminal is used to send back the repaired data.
[0044] Furthermore, the community fire information analysis module in the information calibration module extracts data from the community fire data management center, while the IoT screen information collection system receives data from the data export module. Both then import the information into the community information and IoT information verification terminal. The community information and IoT information verification terminal analyzes the data to check if the information is consistent. The analysis process involves comparing the images of damaged fire-fighting facilities with the information recorded by the community. If they are inconsistent, an inaccurate information alert module is sent to the information inaccurate alert module. The inaccurate information alert module then sends the information to the community fire storage data receiving terminal through the message collection module.
[0045] Furthermore: The community unit and the community fire protection data storage receiver are used in conjunction. First, the community fire protection data storage receiver can receive all the data. The server receiver first receives the data from the calibration result sending terminal. The data includes the comparison data in the information calibration module and the floor image data in the IoT calibration terminal. If the image shows that the fire protection facilities are damaged and the data in the community fire protection data management center does not match the data in the image, the community unit is notified to handle it through the signal transmission terminal. The community will also receive the rectification information and the image information at the same time, which is convenient for locating the fire protection facilities. After the rectification is completed, the repaired fire protection facilities are photographed and then the data is resent back to the server receiver through the maintenance data sending terminal.
[0046] The technical solutions of Example 1 and Comparative Example 1 in the above comparative examples are the same, except that Comparative Example 1 does not set up an Internet of Things calibration terminal. In this case, the information collection module directly transmits all the information to the information calibration module. The information calibration module has to handle the data calculation of the community fire data management center and all the screens of the monitoring system. The huge amount of calculation will cause the information calibration module to process data at a significant speed when in use.
[0047] The above description is only a preferred embodiment of the present invention, but the scope of protection of the present invention is not limited thereto. Any equivalent substitutions or modifications made by those skilled in the art within the scope of the technology disclosed in the present invention, based on the technical solution and inventive concept of the present invention, should be covered within the scope of protection of the present invention.
Claims
1. A fire protection facility data analysis and processing system based on the Internet of Things, characterized in that, This includes a monitoring system, an IoT calibration terminal, a community fire data management center, an information collection module, an information calibration module, a community fire data storage receiver, and community units; The monitoring system monitors each floor of the community. The IoT calibration terminal calibrates the integrity of the fire protection facilities and exports the calibration data. The community fire protection data management center stores and uploads the fire protection data recorded daily by the community. The information collection module receives the data uploaded and exported by the IoT calibration terminal and the community fire protection data management center. The information calibration module compares the data from the community fire protection data management center with the data from the IoT calibration terminal. The community fire protection data storage receiving terminal receives data from the information calibration module. The community unit is the basic installation unit for the fire protection facilities. The community fire data management center includes a fire information input terminal and a fire information storage terminal. The fire information input terminal inputs daily fire inspection information and stores the information in the fire information input terminal. The IoT verification terminal includes an image data acquisition module, a fire facility image acquisition module, an image comparison module, and a data export module. The fire facility image acquisition module captures images of fire equipment on various streets and floors through the monitoring system. The fire facility image acquisition module collects images of normal fire facilities from the network. The image comparison module compares the images in the image data acquisition module with those in the fire facility image acquisition module. The data export module exports the comparison data. The information calibration module includes a community fire information analysis module, an IoT screen information collection system, a community information and IoT information calibration terminal, and a calibration result sending terminal. The community fire protection data storage receiving terminal includes a server receiving terminal, a display terminal, and a signal transmission terminal; The community unit includes a signal receiving terminal, a fire-fighting facility maintenance photo storage terminal, and a maintenance data sending terminal; The image data acquisition module and the fire-fighting facility image acquisition module in the IoT calibration terminal collect information about fire-fighting facilities from the monitoring system and normal images from the network, respectively. Then, all the images are imported into the image comparison module. The normal images from the network are used as a reference module, and a comparison model is established based on this. Then, the images in the image data acquisition module are compared with the normal images to determine whether the fire-fighting facilities are intact. The community fire information analysis module in the information calibration module extracts data from the community fire data management center, while the IoT screen information collection system receives data from the data export module. Both then import the information into the community information and IoT information verification terminal. The community information and IoT information verification terminal analyzes the data to check if the information is consistent. The analysis process involves comparing the images of damaged fire-fighting facilities with the information recorded by the community. If they are inconsistent, an inaccurate information alert module is sent to the information inaccurate alert module. The inaccurate information alert module then sends the information to the community fire storage data receiving terminal through the message collection module. The community unit and the community fire protection data storage receiver are used in conjunction. The community fire protection data storage receiver can receive all the data, and the server receiver receives the data from the calibration result sending terminal. The data includes the comparison data in the information calibration module and the floor image data in the IoT calibration terminal. If the image shows that the fire protection facilities are damaged and the data in the community fire protection data management center does not match the data in the image, the community unit will be notified to handle it through the signal transmission terminal. The community unit will also receive the rectification information and the image information at the same time, which is convenient for locating the fire protection facilities. After the rectification is completed, the repaired fire protection facilities are photographed and then the data is resent back to the server receiver through the maintenance data sending terminal.
2. The fire protection facility data analysis and processing system based on the Internet of Things according to claim 1, characterized in that, The community fire information analysis module receives data from the community fire data management center in the information collection module. The IoT screen information collection system collects information from the IoT verification terminal. The community information and IoT information verification terminal compare the community information with the data from the IoT information terminal. The verification result sending terminal sends the information.
3. The fire protection facility data analysis and processing system based on the Internet of Things according to claim 1, characterized in that, The server receiving end is used to receive data from the calibration result sending terminal, the display terminal is used to display the data from the server receiving end, and the signal transmission terminal is used to transmit the comparison results.
4. The fire protection facility data analysis and processing system based on the Internet of Things according to claim 1, characterized in that, The fire protection facility maintenance photo storage terminal is a port used to store the repaired fire protection facilities, and the maintenance data sending terminal is used to send back the repaired data.
5. The fire protection facility data analysis and processing system based on the Internet of Things according to claim 1, characterized in that, The community information and IoT information verification terminal includes an image information receiving end, a community fire information receiving end, an image information and community record information comparison module, and an information inaccuracy reminder module. The image information receiving end receives image data and verified data from the IoT verification terminal. The image information and community record information comparison module is used to compare the data in the community fire data management center with the verified data in the IoT verification terminal. The information inaccuracy reminder module is used to remind users when there is an error in the data compared between the community fire data management center and the IoT verification terminal.
Citation Information
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