Comprehensive management and control method and system for fire-fighting equipment
By setting up monitoring devices in the fire-fighting equipment monitoring area, collecting data to judge maintenance needs, calculating maintenance emergency levels and assigning instructions, the problems of low management reliability and lag in the existing fire-fighting equipment management model are solved, and accurate and timely control of fire-fighting equipment is achieved, and management efficiency and safety are improved.
Patent Information
- Application Number
- CN202510303190.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-14
- Publication Date
- 2025-06-13
AI Technical Summary
The existing fire-fighting equipment management model has low management reliability and lag. Regular manual inspections rely on the consciousness of patrol personnel, and are prone to problems such as missed inspections and off-posts, resulting in insufficient accuracy and effectiveness.
A comprehensive fire-fighting equipment management method and system is adopted to collect monitoring data through the fire-fighting equipment monitoring devices arranged in each fire-fighting monitoring area, determine whether maintenance is needed, determine the maintenance location and target equipment, calculate the maintenance emergency level, generate management allocation instructions and send them to the target maintenance personnel terminal to perform equipment management control.
Accurate and timely control of fire-fighting equipment, improve management efficiency, avoid problems of lagging management and insufficient accuracy, and ensure the normal operation of fire-fighting equipment and the safety of people's lives and property.
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Figure CN120132289A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the technical field of fire equipment management, and particularly to a comprehensive management and control method and system for fire equipment. Background Art
[0002] With the rapid development of economy and technology, the urban population density has been continuously increasing. When a fire occurs, if it is not controlled in time, it often causes huge economic losses and casualties. Therefore, the fire protection system is the basic infrastructure for urban safety and the foundation for the fire department to carry out rescue and emergency work. Among them, the fire equipment in the fire protection system is an important facility for fire prevention and disaster relief, which plays an important role in ensuring the safety of people's lives and property. It is particularly important to ensure its normal operation.
[0003] In the prior art, the status of fire equipment is usually tracked and recorded by means of regular manual inspection. During the inspection, it is necessary to check whether the fire equipment has expired, is damaged, etc., and make paper records and file them. That is, the current management mode for fire equipment mainly relies on the self-awareness of inspection personnel, and there are problems such as replacement of inspection personnel, missed inspection, off-duty, and failure to inspect according to regulations and time. Therefore, there are technical problems of low management reliability and lag in fire equipment. In addition, due to the fact that the management mode of regular manual inspection is often affected by the inspection experience of the maintenance personnel themselves, this management mode is prone to technical problems of insufficient accuracy and effectiveness. Therefore, there is an urgent need to propose a solution that can accurately and timely manage and control fire equipment. Summary of the Invention
[0004] This application provides a comprehensive management and control method and system for fire equipment to at least solve the technical problems of low management reliability and lag in fire equipment existing in the prior art.
[0005] The first aspect of the embodiments of this application proposes a comprehensive management and control method for fire equipment, and the method includes:
[0006] Collect monitoring data of each fire monitoring area by using fire equipment monitoring devices arranged in each fire monitoring area, and determine whether each fire monitoring area needs to be repaired according to the monitoring data of each fire monitoring area;
[0007] When the fire monitoring area needs to be repaired, determine the target repair equipment at the repair location in the fire monitoring area and the abnormal state index value of the target repair equipment;
[0008] Determine the repair emergency level of the target repair equipment according to the abnormal state index value of the target repair equipment;
[0009] Determine a management allocation instruction based on the emergency repair level of the target repair equipment, send the management allocation instruction to the target maintenance personnel terminal, and then perform equipment control in the fire monitoring area;
[0010] Among them, the management allocation instruction includes: repair location, target repair equipment number, pre-planned repair route, repair operation steps, and repair completion time.
[0011] Preferably, the determination of whether each fire monitoring area needs repair according to the monitoring data of each fire monitoring area includes:
[0012] Based on the monitoring data of each fire monitoring area, determine whether each device in each fire monitoring area is abnormal;
[0013] When the equipment in the fire monitoring area is abnormal, determine whether the fire monitoring area is in a preset repair completion area. If so, the fire monitoring area needs repair.
[0014] Further, when the fire monitoring area needs repair, determining the target repair equipment at the repair location in the fire monitoring area includes:
[0015] Centering on the repair location, search for multiple fire equipment emergency storage devices within a preset first search range;
[0016] Obtain the first registration information of multiple fire equipment emergency storage devices;
[0017] Based on the first registration information of multiple fire equipment emergency storage devices, respectively determine the first comprehensive weighted scores of multiple fire equipment emergency storage devices, and screen out the maximum value of the first comprehensive weighted score;
[0018] Use the fire equipment emergency storage device corresponding to the maximum value of the first comprehensive weighted score as the target repair equipment;
[0019] Among them, the first registration information includes: storage device location, storage device importance level, type of fire equipment stored, and fire equipment storage capacity.
[0020] Further, the abnormal state index value of the target repair equipment is determined based on the monitoring data of the fire monitoring area.
[0021] Further, the calculation formula for the emergency repair level of the target repair equipment is as follows:
[0022] P = μ(x 1 w 1 +x 2 w 2 +x 3 w3 )(w 1 +w 2 +w 3 )
[0023] Wherein, P is the emergency repair level of the target equipment to be repaired, μ is the mapping relationship value between the preset emergency repair level and the abnormal weighted average duration, x 1 is the undetected duration of the equipment, w 1 is the weight of the preset undetected duration of the equipment, x 2 is the missing duration of the equipment, w 2 is the weight of the preset missing duration of the equipment, x 3 is the failure duration of the equipment, w 3 is the weight of the preset failure duration of the equipment.
[0024] Further, before sending the management allocation instruction to the target maintenance personnel terminal, it further includes:
[0025] Centering on the repair location, search for multiple maintenance personnel terminals within a preset second search range;
[0026] Obtain the second registration information of multiple said maintenance personnel terminals and the location information of multiple said maintenance personnel terminals;
[0027] Based on the second registration information of multiple said maintenance personnel terminals and the location information of multiple said maintenance personnel terminals, respectively determine the second comprehensive weighted scores of multiple said maintenance personnel terminals, and screen out the maximum value of the second comprehensive weighted scores;
[0028] Use the maintenance personnel terminal corresponding to the maximum value of the second comprehensive weighted score as the target maintenance personnel terminal;
[0029] Wherein, the second registration information includes: the repair skill evaluation index, repair success rate, repair area and repair authority of the registered maintenance personnel.
[0030] Further, after sending the management allocation instruction to the target maintenance personnel terminal, it includes:
[0031] Obtain the current location of the target maintenance personnel terminal;
[0032] Determine the first arrival duration from the current location of the target maintenance personnel terminal to the location of the target equipment to be repaired, and calculate the second arrival duration from the location of the target equipment to be repaired to the repair location;
[0033] When the total duration of the first arrival duration and the second arrival duration is greater than the preset duration threshold, send an acceleration arrival prompt message to the target maintenance personnel terminal;
[0034] When the total duration between the first arrival duration and the second arrival duration is less than or equal to a preset duration threshold, a normal arrival prompt message is sent to the target maintenance staff terminal and displayed on the target maintenance staff terminal.
[0035] Further, the method further includes:
[0036] When the equipment in the fire monitoring area is abnormal and the fire monitoring area is not in a preset maintenance completion area, a maintenance normal prompt message is generated and displayed.
[0037] An embodiment of the second aspect of the present application provides a comprehensive fire equipment control system, including:
[0038] An acquisition module, configured to collect monitoring data of each fire monitoring area by using fire equipment monitoring devices arranged in each fire monitoring area, and determine whether each fire monitoring area needs maintenance according to the monitoring data of each fire monitoring area;
[0039] A first determination module, configured to determine the target maintenance equipment and the abnormal state index value of the target maintenance equipment at the maintenance location in the fire monitoring area when the fire monitoring area needs maintenance;
[0040] A second determination module, configured to determine the maintenance emergency level of the target maintenance equipment according to the abnormal state index value of the target maintenance equipment;
[0041] A control module, configured to determine a management allocation instruction based on the maintenance emergency level of the target maintenance equipment, send the management allocation instruction to the target maintenance staff terminal, and then perform equipment control in the fire monitoring area;
[0042] Wherein, the management allocation instruction includes: a maintenance location, a target maintenance equipment number, a pre-planned maintenance route, maintenance operation steps, and a maintenance completion time.
[0043] An embodiment of the third aspect of the present application provides a computer-readable storage medium, on which a computer program is stored, and when the program is executed by a processor, the method described in the embodiment of the first aspect is implemented.
[0044] The technical solutions provided by the embodiments of the present application at least bring the following beneficial effects:
[0045] The present application provides a comprehensive management and control method and system for fire-fighting equipment. The method includes: collecting monitoring data of each fire-fighting monitoring area by using fire-fighting equipment monitoring devices deployed in each fire-fighting monitoring area, and judging whether each fire-fighting monitoring area needs maintenance according to the monitoring data of each fire-fighting monitoring area; when the fire-fighting monitoring area needs maintenance, determining the target maintenance equipment and the abnormal state index value of the target maintenance equipment at the maintenance location in the fire-fighting monitoring area; determining the maintenance emergency level of the target maintenance equipment according to the abnormal state index value of the target maintenance equipment; determining a management allocation instruction based on the maintenance emergency level of the target maintenance equipment, and sending the management allocation instruction to the target maintenance personnel terminal, and then performing equipment management and control in the fire-fighting monitoring area; wherein, the management allocation instruction includes: maintenance location, target maintenance equipment number, pre-planned maintenance route, maintenance operation steps and maintenance completion time. The technical solution provided by the present application gives corresponding maintenance instructions to the target maintenance personnel for different abnormal state indexes, so as to realize more accurate monitoring of each fire-fighting equipment through accurate and timely management allocation on the basis of ensuring management efficiency.
[0046] Additional aspects and advantages of the present application will be given in part in the following description, become apparent in part from the following description, or be learned through the practice of the present application. Brief Description of the Drawings
[0047] The above and / or additional aspects and advantages of the present application will become apparent and easy to understand from the following description of the embodiments in conjunction with the drawings, wherein:
[0048] Figure 1 is a flowchart of a comprehensive management and control method for fire-fighting equipment according to an embodiment of the present application;
[0049] Figure 2 is a first structural diagram of a comprehensive management and control system for fire-fighting equipment according to an embodiment of the present application;
[0050] Figure 3 is a second structural diagram of a comprehensive management and control system for fire-fighting equipment according to an embodiment of the present application;
[0051] Figure 4 is a third structural diagram of a comprehensive management and control system for fire-fighting equipment according to an embodiment of the present application;
[0052] Figure 5 is a schematic diagram of the connection between a comprehensive management and control system for fire-fighting equipment and a fire-fighting equipment monitoring device according to an embodiment of the present application;
[0053] Reference Signs
[0054] An information processing device 11, a maintenance staff terminal 12, a fire-fighting equipment emergency storage device 13, and a fire-fighting equipment monitoring device 14. Detailed implementation manners
[0055] The embodiments of the present application will be described in detail below. The examples of the embodiments are shown in the accompanying drawings, in which the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are intended to explain the present application, and should not be construed as limiting the present application.
[0056] A fire-fighting equipment comprehensive management and control method and system proposed by the present application. The method includes: collecting monitoring data of each fire-fighting monitoring area by using fire-fighting equipment monitoring devices arranged in each fire-fighting monitoring area, and judging whether each fire-fighting monitoring area needs to be repaired according to the monitoring data of each fire-fighting monitoring area; when the fire-fighting monitoring area needs to be repaired, determining the target repair equipment at the repair location in the fire-fighting monitoring area and the abnormal state index value of the target repair equipment; determining the repair emergency level of the target repair equipment according to the abnormal state index value of the target repair equipment; determining a management allocation instruction based on the repair emergency level of the target repair equipment, and sending the management allocation instruction to the target maintenance staff terminal, and then performing equipment control of the fire-fighting monitoring area; wherein, the management allocation instruction includes: repair location, target repair equipment number, pre-planned repair route, repair operation steps, and repair completion time. The technical solution proposed by the present application gives corresponding repair instructions to the target maintenance staff for different abnormal state indexes, so as to realize more accurate monitoring of each fire-fighting equipment through precise and timely management allocation on the basis of ensuring management efficiency.
[0057] A fire-fighting equipment comprehensive management and control method and system according to an embodiment of the present application will be described below with reference to the accompanying drawings.
[0058] Embodiment 1
[0059] Figure 1 As shown in the flowchart of a fire-fighting equipment comprehensive management and control method provided according to an embodiment of the present application, Figure 1 the method includes:
[0060] Step 1: Collect monitoring data of each fire-fighting monitoring area by using fire-fighting equipment monitoring devices arranged in each fire-fighting monitoring area, and judge whether each fire-fighting monitoring area needs to be repaired according to the monitoring data of each fire-fighting monitoring area;
[0061] In the embodiments of the present disclosure, judging whether each fire-fighting monitoring area needs to be repaired according to the monitoring data of each fire-fighting monitoring area includes:
[0062] Determine whether each device in each fire monitoring area is abnormal based on the monitoring data of each fire monitoring area;
[0063] When a device in the fire monitoring area is abnormal, determine whether the fire monitoring area is in a preset area where maintenance has been completed. If so, the fire monitoring area needs to be maintained.
[0064] It should be noted that fire-fighting equipment is an important part of the fire-fighting system, which can play roles such as fire prevention and fire extinguishing. For the entire fire-fighting system, it generally includes at least a water source, a water network, water pumps, fire-fighting equipment, and a central control system. Among them, the water source mainly includes self-provided water tanks, municipal water supply hydropower stations' water networks, and groundwater extraction, etc. The water source of the fire-fighting system should meet the stable supply and sufficient reserve of the fire-fighting water source to provide a large amount of fire-fighting water in time when a fire occurs. The water network mainly includes two parts: the main pipe and the branch pipe. The hydropower station water network of the fire-fighting system further needs to meet the water supply capacity of the fire-fighting water source and the usage requirements of the building. It mainly includes two parts: the main pipe and the branch pipe. The main pipe refers to the main water supply pipeline, and the branch pipe refers to the water supply pipeline led out from the main pipeline and supplying water to each hydropower station sprinkler system. The water pump is one of the important devices in the fire-fighting system. It can lift the water pressure in the water source to a certain height and ensure the stability of the water pressure in the water network. Generally, water pumps are divided into two types: electrically driven and diesel-driven, and an automatic switching power supply method is adopted to ensure the reliability of the fire pump. The central control system plays a control role in the fire-fighting system. It mainly adopts a linkage control method, that is, when a fire detector detects a fire, it will automatically send a signal to the central control system and feedback the alarm signal of the monitored area back to the fire control room, start the automatic control device of the fire-fighting system, turn on the water pump, and send the fire-fighting water to the sprinkler head for fire extinguishing.
[0065] Fire-fighting equipment at least includes fire extinguishers, fire alarms, sprinkler systems, and fire hydrants. Fire extinguishers are one of the most common fire-fighting equipment, which can extinguish fires in the initial stage of a fire and effectively reduce the spread and loss of the fire. Fire alarms are devices that can detect fires in time and notify people. Generally, there are two types: automatic and manual. Automatic fire alarms can automatically detect changes in smoke or temperature and emit alarm signals. Manual fire alarms can be manually operated by personnel to emit alarm signals. In daily life, people should often check and maintain fire alarms to ensure their normal operation. The sprinkler system refers to the equipment in the fire-fighting system used to spray fire-fighting water. The water source is sent to the water network through a water pump. When a fire occurs, the sprinkler system controls the opening and closing of the sprinkler heads and sprays water to the fire scene for fire extinguishing. A fire hydrant is an emergency fire-fighting equipment, and its main function is to provide water source for fire trucks. When a fire occurs, the fire hydrant can be used by water supply fire trucks, and the water from the fire hydrant can quickly extinguish the fire during the fire extinguishing process, playing an effective role in suppressing the continuous rise of the fire.
[0066] It should be noted that when the fire equipment monitoring device analyzes the monitored data it collects and finds that there are abnormal states such as abnormal equipment placement, abnormal equipment operation parameters, equipment shutdown, equipment damage, and equipment aging in the corresponding monitored area, a fire equipment management request is generated accordingly. In this way, the fire equipment comprehensive control system can obtain the fire equipment management request sent by the fire equipment monitoring device through the information processing device, and detect the equipment management requirements carried by the fire equipment management request, so as to obtain the corresponding equipment management requirements. That is, the fire equipment management request is used to instruct the fire equipment comprehensive control system to detect it and obtain the corresponding equipment management requirements.
[0067] It should be noted that before the step of detecting the fire equipment management request and obtaining the corresponding equipment management requirements, it also includes: multiple fire equipment monitoring devices respectively monitor each fire equipment in each monitored area of the fire water system, and obtain the corresponding monitored data, analyze each monitored data respectively to obtain an analysis result, generate a fire equipment management request according to the analysis result, and send the fire equipment management request to the fire equipment comprehensive control system.
[0068] The fire equipment management request carries the equipment management requirements corresponding to the analysis result, and the analysis result includes one or more combinations of abnormal equipment placement, abnormal equipment operation parameters, equipment shutdown, equipment damage, and equipment aging. For example, when the analysis result is equipment shutdown, the equipment management requirements carried by the generated fire equipment management request will carry the equipment start-up requirements corresponding to the equipment shutdown for instructing equipment start-up. And when the analysis result is equipment damage, the equipment management requirements will carry the equipment repair requirements corresponding to the equipment damage for instructing equipment repair. At the same time, since each piece of monitored data corresponds to each fire equipment in each monitored area, it is possible to conduct a complete monitoring of all fire equipment in all monitored areas and achieve regional comprehensive management.
[0069] When the equipment management requirement is an equipment repair requirement, detect the repair location carried in the equipment repair requirement and judge whether it is in the pre-stored repaired area.
[0070] Specifically, when the device management requirement is a device maintenance requirement, it indicates that the fire equipment monitoring device analyzes that there is a problem with the target fire equipment through the corresponding monitoring data collected from the fire equipment. Then, the fire equipment comprehensive management and control system detects the maintenance location carried by the device maintenance requirement and compares it with the pre-stored maintenance completion area, so as to determine whether the maintenance location is within the pre-stored maintenance completion area. Among them, the device management requirements include device maintenance requirements, device replacement requirements, or device deactivation requirements, and different device requirements are correspondingly generated based on different monitoring data; and regardless of the type of device management requirement, it will carry a maintenance location as a subsequent maintenance reminder.
[0071] Step 2: When the fire monitoring area needs maintenance, determine the target maintenance equipment and the abnormal state index value of the target maintenance equipment at the maintenance location within the fire monitoring area;
[0072] In the embodiment of the present disclosure, the determination of the target maintenance equipment at the maintenance location within the fire monitoring area when the fire monitoring area needs maintenance includes:
[0073] Centering on the maintenance location, search for multiple fire equipment emergency storage devices within a preset first search range;
[0074] Obtain the first registration information of multiple fire equipment emergency storage devices;
[0075] Based on the first registration information of multiple fire equipment emergency storage devices, respectively determine the first comprehensive weighted scores of multiple fire equipment emergency storage devices, and screen out the maximum value of the first comprehensive weighted score;
[0076] Take the fire equipment emergency storage device corresponding to the maximum value of the first comprehensive weighted score as the target maintenance equipment;
[0077] Among them, the first registration information includes: storage device location, storage device importance level, type of fire equipment stored, and fire equipment storage capacity.
[0078] It should be noted that the maintenance completion area is an identification information of a maintenance completion area formed by the maintenance personnel inputting or marking after they perform daily maintenance on all fire equipment in an area. That is, as an identification information, it is marked by the corresponding maintenance personnel on the maintenance personnel terminal they carry and stored in the fire equipment comprehensive management and control system.
[0079] When the maintenance location is in the maintenance completed area, it indicates that there are target maintenance devices to be processed in the maintenance completed area. It should be further noted that since the maintenance completed area is marked by the maintenance personnel after their regular maintenance operations for storage in the integrated fire equipment management and control system. Based on the area determination between the maintenance location and the maintenance completed area, corresponding abnormal problems such as possible undetected or damaged fire equipment can be accurately identified, so as to avoid the phenomenon of maintenance lag where abnormal fire equipment in the maintenance completed area can only be detected until the next maintenance date in related technologies.
[0080] After the area determination between the maintenance location and the maintenance completed area, identify the target maintenance device at the maintenance location according to the equipment maintenance requirements, and obtain the abnormal state indicators of the target maintenance device. That is, by detecting the equipment maintenance requirements, synchronously obtain the equipment code corresponding to the target maintenance device carried and the carried abnormal state indicators. Among them, the abnormal state indicators at least include at least one of the undetected equipment duration, the missing equipment duration, and the equipment failure duration.
[0081] Furthermore, the abnormal state indicator value of the target maintenance device is determined based on the monitoring data of the fire monitoring area.
[0082] It should be noted that the analysis results also include: the undetected equipment duration, the missing equipment duration, and the equipment failure duration.
[0083] Step 3: Determine the maintenance emergency level of the target maintenance device according to the abnormal state indicator value of the target maintenance device;
[0084] In the embodiments of the present disclosure, the calculation formula for the maintenance emergency level of the target maintenance device is as follows:
[0085] P = μ(x 1 w 1 +x 2 w 2 +x 3 w 3 )(w 1 +w 2 +w 3 )
[0086] In the formula, P is the maintenance emergency level of the target maintenance device, μ is the mapping relationship value between the preset maintenance emergency level and the abnormal weighted average duration, x 1 is the undetected equipment duration, w 1 is the preset weight of the undetected equipment duration, x 2 is the missing equipment duration, w 2 is the preset weight of the missing equipment duration, x 3 is the equipment failure duration, w 3 is the preset weight of the equipment failure duration.
[0087] It should be noted that after obtaining the abnormal state index, the emergency repair level of the target equipment to be repaired can be calculated based on a preset algorithm; the higher the value of this emergency repair level indicates that the current abnormal state index of the target equipment to be repaired is worse, and it is more necessary for the corresponding maintenance and management personnel to perform corresponding repair operations as soon as possible. In this way, when the emergency repair level exceeds the preset repair safety level, a management allocation instruction matching the equipment repair requirements can be generated, and the management allocation instruction is sent to the terminal of the selected target maintenance and management personnel, so as to indicate the holder of the target maintenance and management personnel terminal (target maintenance and management personnel) to reach the repair location according to the pre-planned repair route and process the target equipment to be repaired according to the repair operation steps through the repair location, target equipment to be repaired number, pre-planned repair route, and repair operation steps carried by the management allocation instruction.
[0088] In this way, through timely output of the corresponding management allocation instruction for corresponding repair indication, the management of fire-fighting equipment can be accurately realized on the basis of ensuring management efficiency, so as to avoid phenomena such as management lag. At the same time, different emergency repair levels can be calculated for different abnormal state indexes to confirm different subsequent management dispatching, that is, through the layered management dispatching, a complete and comprehensive management of fire-fighting equipment is realized.
[0089] In some alternative embodiments of this embodiment, the management allocation instruction carries the repair location, target equipment to be repaired number, pre-planned repair route, repair operation steps and the latest completion time of the repair; the step of sending the management allocation instruction to the target maintenance and management personnel terminal specifically includes: sending the repair location, target equipment to be repaired number, pre-planned repair route, repair operation steps and the latest completion time of the repair carried by the management allocation instruction to the target maintenance and management personnel terminal together.
[0090] Specifically, the pre-planned repair route is a trajectory route starting from the current position of the target maintenance and management personnel terminal, passing through the location of the target fire-fighting equipment emergency storage device and finally reaching the repair location. This management allocation instruction is used to indicate the target maintenance and management personnel terminal to display the repair location, target equipment to be repaired number, pre-planned repair route, repair operation steps and the latest completion time of the repair on the terminal interface, and display the route trajectory guidance of the pre-planned repair route on the terminal interface for guidance. Among them, the target fire-fighting equipment emergency storage device is one of multiple fire-fighting equipment emergency storage devices.
[0091] Step 4: Determine the management allocation instruction based on the emergency repair level of the target equipment to be repaired, send the management allocation instruction to the target maintenance and management personnel terminal, and then perform equipment control in the fire monitoring area;
[0092] Among them, the management allocation instruction includes: the maintenance location, the target maintenance equipment number, the pre-planned maintenance route, the maintenance operation steps, and the maintenance completion time.
[0093] In the embodiment of the present disclosure, before sending the management allocation instruction to the target maintenance personnel terminal, it further includes:
[0094] Centering on the maintenance location, search for multiple maintenance personnel terminals within a preset second search range;
[0095] Obtain the second registration information of multiple said maintenance personnel terminals and the location information of multiple said maintenance personnel terminals;
[0096] Based on the second registration information of multiple said maintenance personnel terminals and the location information of multiple said maintenance personnel terminals, respectively determine the second comprehensive weighted scores of multiple said maintenance personnel terminals, and screen out the maximum value of the second comprehensive weighted score;
[0097] Take the maintenance personnel terminal corresponding to the maximum value of the second comprehensive weighted score as the target maintenance personnel terminal;
[0098] Among them, the second registration information includes: the maintenance skill evaluation index, the maintenance success rate, the maintenance area, and the maintenance authority of the registered maintenance personnel.
[0099] Further, after sending the management allocation instruction to the target maintenance personnel terminal, it includes:
[0100] Obtain the current location of the target maintenance personnel terminal;
[0101] Determine the first arrival duration from the current location of the target maintenance personnel terminal to the location of the target maintenance equipment, and calculate the second arrival duration from the location of the target maintenance equipment to the maintenance location;
[0102] When the total duration of the first arrival duration and the second arrival duration is greater than a preset duration threshold, send an acceleration arrival prompt message to the target maintenance personnel terminal;
[0103] When the total duration between the first arrival duration and the second arrival duration is less than or equal to the preset duration threshold, send a normal arrival prompt message to the target maintenance personnel terminal and display it on the target maintenance personnel terminal.
[0104] In the embodiment of the present disclosure, the method further includes:
[0105] When the equipment in the fire monitoring area is abnormal and the fire monitoring area is not in the preset maintenance completion area, generate a maintenance normal prompt message and display it.
[0106] It should be noted that in some alternative embodiments of this embodiment, after the step of sending the management allocation instruction to the target maintenance and management personnel terminal, the following steps are further included: when receiving the demand acceptance response sent by the target maintenance and management personnel terminal, calculate the first arrival duration from the current location of the target maintenance and management personnel terminal to the location of the target fire equipment emergency storage device, and calculate the second arrival duration from the location of the target fire equipment emergency storage device to the maintenance location; when the total duration between the first arrival duration and the second arrival duration is greater than the preset duration threshold, send an acceleration arrival prompt to the target maintenance and management personnel terminal. And when the total duration between the first arrival duration and the second arrival duration is less than or equal to the preset duration threshold, send a normal arrival prompt to the target maintenance and management personnel terminal.
[0107] Specifically, when receiving the demand acceptance response from the target maintenance and management personnel terminal, it indicates that the maintenance and management personnel holding the target maintenance and management personnel terminal can confirm whether to go based on their own situation after understanding the maintenance location, the target maintenance equipment number, the pre-planned maintenance route, the maintenance operation steps, and the latest completion time of the maintenance. When it is confirmed that they can go, they can send a demand acceptance response to the fire equipment integrated management and control system through the target maintenance and management personnel terminal to indicate the instruction that they can go. In addition, when the fire equipment integrated management and control system receives the demand acceptance response, it can calculate the corresponding arrival duration based on the three locations of the location of the target fire equipment emergency storage device, the current location of the target maintenance and management personnel terminal, and the maintenance location. Thus, when it is analyzed that the arrival duration is too long, that is, when it exceeds the preset duration threshold, an acceleration arrival prompt is sent to the target maintenance and management personnel terminal for prompting. And when it is less than or equal to the preset duration threshold, a normal arrival prompt is sent to the target maintenance and management personnel terminal, and the normal arrival prompt is used to instruct the target maintenance and management personnel terminal to display a normal arrival mark on the terminal interface.
[0108] Among them, the preset duration threshold is positively correlated with the online duration of the target maintenance and management personnel terminal. When the online duration of the target maintenance and management personnel terminal is longer, it indicates that the maintenance and management personnel have performed equipment maintenance and management for a longer time. Then, considering the subsequent maintenance quality of the maintenance and management personnel, the preset duration threshold is adjusted accordingly.
[0109] In some alternative embodiments of the present embodiment, before the step of identifying a target maintenance device at a maintenance location according to the equipment maintenance requirements, it further includes: centering on the maintenance location, searching for a plurality of emergency storage devices for fire-fighting equipment within a preset first search range, obtaining a plurality of first registration information corresponding to the plurality of emergency storage devices for fire-fighting equipment, and determining, according to the plurality of registration information and the distance values between the plurality of emergency storage devices for fire-fighting equipment and the maintenance location respectively, the emergency storage device for fire-fighting equipment with the highest comprehensive weighted score from the plurality of emergency storage devices for fire-fighting equipment, and taking the emergency storage device for fire-fighting equipment with the highest comprehensive weighted score as the target emergency storage device for fire-fighting equipment. Wherein, the first registration information includes the storage device location, the storage device importance level, the type of fire-fighting equipment stored, and the fire-fighting equipment storage quantity.
[0110] Specifically, the comprehensive weighted score can be calculated according to the first registration information according to the following formula: a1z1 + a2z2 + a3z3 + a4z4 = L, where a1 represents the score corresponding to the storage device location, a2 represents the score corresponding to the storage device importance level, a3 represents the score corresponding to the type of fire-fighting equipment stored, a4 represents the score corresponding to the fire-fighting equipment storage quantity, z1 represents the weight corresponding to the storage device location, z2 represents the weight corresponding to the storage device importance level, z3 represents the weight corresponding to the type of fire-fighting equipment, z4 represents the weight corresponding to the fire-fighting equipment storage quantity, and L represents the comprehensive weighted score corresponding to the first registration information. a1, a2, a3, and a4 are generally integers. The farther the storage device location is from the maintenance location, the lower the corresponding score; and the more important the storage device importance level is, the lower the corresponding score; and the more types of fire-fighting equipment are stored, the higher the corresponding score; the more the fire-fighting equipment storage quantity is, the higher the corresponding score. That is, when screening from a plurality of emergency storage devices for fire-fighting equipment, it is mainly considered comprehensively from the four aspects of the storage device location, the storage device importance level, the type of fire-fighting equipment stored, and the fire-fighting equipment storage quantity to select the emergency storage device for fire-fighting equipment with the highest comprehensive weighted score as the target emergency storage device for fire-fighting equipment, so as to selectively allow the holder of the target maintenance personnel terminal to perform operations such as supplementing maintenance tools and fire-fighting equipment when passing by the target emergency storage device for fire-fighting equipment, which is beneficial to the convenience of subsequent processing when arriving at the maintenance location.
[0111] In some alternative embodiments of the present embodiment, after the step of generating a management allocation instruction matching the equipment maintenance requirements according to the maintenance emergency level, it further includes: centering on the maintenance location, searching for a plurality of maintenance personnel terminals within a preset second search range, and obtaining the second registration information of the plurality of maintenance personnel terminals; combining the real-time positions of the plurality of maintenance personnel terminals and the corresponding second registration information of each, screening the maintenance personnel terminals with the comprehensive weighted score from the plurality of maintenance personnel terminals, and taking them as the target maintenance personnel terminals.
[0112] Among them, the second registration information includes the maintenance skill evaluation index, maintenance success rate, maintenance area, and maintenance authority of the registered maintenance personnel. The comprehensive weighted score can be calculated according to the second registration information by the following formula: b1y1 + b2y2 + b3y3 + b4y4 = M, where b1 represents the score corresponding to the maintenance skill evaluation index, b2 represents the score corresponding to the maintenance success rate, b3 represents the score corresponding to the maintenance area, b4 represents the score corresponding to the maintenance authority, y1 represents the weight corresponding to the maintenance skill evaluation index, y2 represents the weight corresponding to the maintenance success rate, y3 represents the weight corresponding to the maintenance area, y4 represents the weight corresponding to the maintenance authority, and M represents the comprehensive weighted score of the second registration information. b1, b2, b3, and b4 are generally integers. The larger the maintenance skill evaluation index, the lower the corresponding score; the larger the maintenance authority, the lower the corresponding score; the larger the maintenance success rate, the higher the corresponding score; the larger the maintenance area range, the higher the corresponding score. That is, when screening from multiple maintenance personnel terminals, it is mainly considered comprehensively from the four aspects of the maintenance skill evaluation index, maintenance success rate, maintenance area, and maintenance authority of the registered maintenance personnel on the maintenance personnel terminal, so as to select the maintenance personnel terminal with the highest comprehensive weighted score as the target maintenance personnel terminal, so as to screen out the most suitable target maintenance personnel terminal for subsequent maintenance deployment, improving management efficiency and accuracy.
[0113] In some alternative embodiments of this embodiment, when the abnormal state index includes one or a combination of two or more of the equipment undetected time, equipment missing time, and equipment failure time, substitute the abnormal state index into a preset calculation formula to obtain the maintenance emergency level of the target maintenance equipment; where the calculation formula is μ(x1w1 + x2w2 + x3w3) / (w1 + w2 + w3) = P, x1 represents the equipment undetected time, x2 represents the equipment missing time, x3 represents the equipment failure time, w1 represents the weight of the equipment undetected time, w2 represents the weight of the equipment missing time, w3 represents the weight of the equipment failure time, and μ represents the mapping relationship between the preset maintenance emergency level and the abnormal weighted average time.
[0114] Specifically, after obtaining the equipment undetected time, equipment missing time, and equipment failure time in the abnormal state index, the maintenance emergency level of the target maintenance equipment can be obtained through a preset algorithm. The higher the value of this maintenance emergency level, the worse the current abnormal state index of the target maintenance equipment, and the more urgent it is for the corresponding maintenance personnel to perform corresponding maintenance operations.
[0115] A comprehensive fire-fighting equipment control method proposed in this embodiment can first detect the maintenance locations carried in the equipment maintenance requirements, so as to analyze whether the maintenance locations are areas where maintenance has been completed, thereby determining that there may be situations such as missed inspections easily caused by manual spot-check methods or equipment damage caused by emergencies. Secondly, calculate the maintenance emergency level according to the abnormal state indicators of the target maintenance equipment, that is, determine the urgency of maintenance. Finally, generate a management allocation instruction based on the maintenance emergency level and send it to the target maintenance personnel terminal, so as to instruct the target maintenance personnel terminal to promptly maintain the target maintenance equipment with relatively large maintenance hidden dangers. In this way, this application improves the management efficiency, accurately realizes the management of fire-fighting equipment, and avoids phenomena such as management lag by promptly outputting corresponding management allocation instructions for corresponding maintenance instructions. At the same time, different maintenance emergency levels can be calculated for different abnormal state indicators to confirm different subsequent management scheduling, that is, through a layered layout of management scheduling, a complete and comprehensive management of fire-fighting equipment is realized.
[0116] In summary, a comprehensive fire-fighting equipment control method proposed in this embodiment gives corresponding maintenance instructions to the target maintenance personnel for different abnormal state indicators, so as to achieve more accurate monitoring of each fire-fighting equipment on the basis of ensuring management efficiency through precise and timely management allocation.
[0117] Embodiment 2
[0118] Figure 2 The following is a structural diagram of a comprehensive fire-fighting equipment control system provided according to an embodiment of the present application. As Figure 2 shown, the system includes:
[0119] A collection module 100, configured to collect monitoring data of each fire-fighting monitoring area by using fire-fighting equipment monitoring devices arranged in each fire-fighting monitoring area, and determine whether each fire-fighting monitoring area needs maintenance according to the monitoring data of each fire-fighting monitoring area;
[0120] A first determination module 200, configured to determine the target maintenance equipment at the maintenance location in the fire-fighting monitoring area and the abnormal state indicator value of the target maintenance equipment when the fire-fighting monitoring area needs maintenance;
[0121] Wherein, the abnormal state indicator value of the target maintenance equipment is determined based on the monitoring data of the fire-fighting monitoring area.
[0122] A second determination module 300, configured to determine the maintenance emergency level of the target maintenance equipment according to the abnormal state indicator value of the target maintenance equipment;
[0123] The control module 400 is used to determine a management allocation instruction based on the emergency repair level of the target repair equipment, send the management allocation instruction to the target maintenance personnel terminal, and then perform equipment control in the fire monitoring area;
[0124] Among them, the management allocation instruction includes: repair location, target repair equipment number, pre-planned repair route, repair operation steps, and repair completion time.
[0125] In the embodiment of the present disclosure, the acquisition module 100 is further used for:
[0126] Determine whether each device in each fire monitoring area is abnormal based on the monitoring data of each fire monitoring area;
[0127] When the device in the fire monitoring area is abnormal, determine whether the fire monitoring area is in a preset repair completion area. If so, the fire monitoring area needs to be repaired.
[0128] In the embodiment of the present disclosure, the first determination module 200 is further used for:
[0129] Search for multiple fire equipment emergency storage devices within a preset first search range centered on the repair location;
[0130] Obtain the first registration information of multiple fire equipment emergency storage devices;
[0131] Based on the first registration information of multiple fire equipment emergency storage devices, respectively determine the first comprehensive weighted scores of multiple fire equipment emergency storage devices, and screen out the maximum value of the first comprehensive weighted score;
[0132] Use the fire equipment emergency storage device corresponding to the maximum value of the first comprehensive weighted score as the target repair equipment;
[0133] Among them, the first registration information includes: storage device location, storage device importance level, type of fire equipment stored, and fire equipment storage capacity.
[0134] In the embodiment of the present disclosure, the calculation formula for the emergency repair level of the target repair equipment is as follows:
[0135] P = μ(x 1 w 1 +x 2 w 2 +x 3 w 3 )(w 1 +w 2 +w 3 )
[0136] Wherein, P is the emergency level of the target maintenance equipment, μ is the mapping relationship value between the preset emergency level of maintenance and the abnormal weighted average duration, and x 1 is the undetected duration of the equipment, and w 1 is the weight of the preset undetected duration of the equipment, and x 2 is the missing duration of the equipment, and w 2 is the weight of the preset missing duration of the equipment, and x 3 is the failure duration of the equipment, and w 3 is the weight of the preset failure duration of the equipment.
[0137] In the embodiment of the present disclosure, the control module 400 is further configured to search for multiple maintenance personnel terminals within a preset second search range centered on the maintenance location before sending the management allocation instruction to the target maintenance personnel terminal;
[0138] Obtain the second registration information of multiple said maintenance personnel terminals and the location information of multiple said maintenance personnel terminals;
[0139] Based on the second registration information of multiple said maintenance personnel terminals and the location information of multiple said maintenance personnel terminals, respectively determine the second comprehensive weighted scores of multiple said maintenance personnel terminals, and screen out the maximum value of the second comprehensive weighted scores;
[0140] Use the maintenance personnel terminal corresponding to the maximum value of the second comprehensive weighted score as the target maintenance personnel terminal;
[0141] Wherein, the second registration information includes: the maintenance skill evaluation index, maintenance success rate, maintenance area and maintenance authority of the registered maintenance personnel.
[0142] In the embodiment of the present disclosure, the control module 400 is further configured to obtain the current position of the target maintenance personnel terminal after sending the management allocation instruction to the target maintenance personnel terminal;
[0143] Determine the first arrival duration from the current position of the target maintenance personnel terminal to the location of the target maintenance equipment, and calculate the second arrival duration from the location of the target maintenance equipment to the maintenance location;
[0144] When the total duration of the first arrival duration and the second arrival duration is greater than the preset duration threshold, send an accelerated arrival prompt message to the target maintenance personnel terminal;
[0145] When the total duration between the first arrival duration and the second arrival duration is less than or equal to the preset duration threshold, send a normal arrival prompt message to the target maintenance personnel terminal and display it on the target maintenance personnel terminal.
[0146] In the embodiments of the present disclosure, as Figure 3 shown, the system further includes:
[0147] A display module 500, configured to generate and display a maintenance normal prompt message when a device in the fire monitoring area is abnormal and the fire monitoring area is not in a preset maintenance completed area.
[0148] It should be noted that the structure of the fire equipment comprehensive management and control system proposed in this embodiment can also be as Figure 4 shown, at least one information processing device 11, multiple maintenance personnel terminals 12, and multiple fire equipment emergency storage devices 13.
[0149] In this embodiment, as Figure 5 shown, the information processing device 11 can be a central processing unit, which has functions such as information reading, processing, and transmission. It is used to establish communication with multiple fire equipment monitoring devices 14 set in different monitoring areas to obtain the monitoring data corresponding to each fire equipment in each monitoring area collected by the fire equipment monitoring device 14. There are multiple maintenance personnel terminals 12, which are respectively held by different maintenance personnel. There are multiple fire equipment emergency storage devices 13, which are respectively set in different places and are used to store various types of fire equipment and corresponding maintenance tools.
[0150] Specifically, in the fire equipment comprehensive management and control system, the information processing device 11 is configured to detect a fire equipment management request and obtain the corresponding equipment management requirement when receiving a fire equipment management request sent by the fire equipment monitoring device 14; when the equipment management requirement is an equipment maintenance requirement, detect the maintenance location carried in the equipment maintenance requirement and determine whether it is in a pre-stored maintenance completed area; when the maintenance location is in the maintenance completed area, identify the target maintenance equipment at the maintenance location according to the equipment maintenance requirement, and obtain the abnormal state index of the target maintenance equipment; calculate the maintenance emergency level of the target maintenance equipment according to the abnormal state index, generate a management allocation instruction matching the equipment maintenance requirement according to the maintenance emergency level, and send the management allocation instruction to the target maintenance personnel terminal; where the target maintenance personnel terminal is one of the multiple maintenance personnel terminals 12.
[0151] The fire-fighting equipment comprehensive management and control system of this embodiment can first detect the maintenance location carried in the equipment maintenance requirements, and then analyze whether the maintenance location is a maintenance completed area, so as to determine whether there may be situations such as missed inspections easily caused by manual spot-check methods or equipment damage caused by emergencies. Secondly, calculate the maintenance emergency level according to the abnormal state indicators of the target maintenance equipment, that is, determine the urgency of the maintenance. Finally, generate a management allocation instruction based on the maintenance emergency level and send it to the target maintenance personnel terminal, so as to instruct the target maintenance personnel terminal to promptly maintain the target maintenance equipment with greater maintenance hidden dangers. In this way, this application manages and allocates each maintenance personnel by promptly outputting a management allocation instruction to the target maintenance personnel terminal, that is, instructs them to carry out corresponding maintenance instructions, so as to minimize the maintenance time when the target maintenance equipment fails, is abnormal, is lost, or is damaged, that is, accurately realize the management of fire-fighting equipment on the basis of ensuring management efficiency and avoid phenomena such as management lag. At the same time, different maintenance emergency levels can be calculated according to different abnormal state indicators to confirm different subsequent management dispatching, that is, through layer-by-layer management dispatching, a complete and comprehensive management mode for fire-fighting equipment is realized.
[0152] In summary, a fire-fighting equipment comprehensive management and control system proposed in this embodiment gives corresponding maintenance instructions to target maintenance personnel according to different abnormal state indicators, so as to realize more accurate monitoring of each fire-fighting equipment on the basis of ensuring management efficiency through accurate and timely management allocation.
[0153] Embodiment III
[0154] To implement the above embodiment, the present disclosure also proposes a computer-readable storage medium, on which a computer program is stored, and when the program is executed by a processor, the method described in Embodiment I is implemented.
[0155] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "example", "specific example", or "some examples" means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present application. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in any one or more embodiments or examples in a suitable manner. In addition, without contradiction, those skilled in the art can combine and combine the different embodiments or examples described in this specification and the features of different embodiments or examples.
[0156] Any process or method description, whether in a flowchart or otherwise described herein, can be understood to represent a module, segment, or portion of code including one or more executable instructions for implementing a customized logical function or process. The scope of the preferred embodiments of the present application includes additional implementations where functions may be executed in a substantially simultaneous manner or in a reverse order according to the functions involved, rather than in the order shown or discussed. This should be understood by those skilled in the art to which the embodiments of the present application pertain.
[0157] Although the embodiments of the present application have been shown and described above, it can be understood that the above embodiments are exemplary and should not be construed as limiting the present application. Those of ordinary skill in the art can make changes, modifications, substitutions, and variations to the above embodiments within the scope of the present application.
Claims
1. A comprehensive management and control method for fire fighting equipment, characterized in that: The method comprises: Using the fire equipment monitoring devices arranged in each fire monitoring area to collect monitoring data of each fire monitoring area, and judging whether each fire monitoring area needs maintenance according to the monitoring data of each fire monitoring area; When the fire monitoring area needs maintenance, determine the target maintenance equipment at the maintenance location in the fire monitoring area and the abnormal state index value of the target maintenance equipment; Determining the maintenance urgency level of the target maintenance equipment according to the abnormal state index value of the target maintenance equipment; Determine a management allocation instruction based on the maintenance emergency level of the target maintenance equipment, send the management allocation instruction to the target maintenance personnel terminal, and then perform equipment management and control in the fire monitoring area; The management allocation instructions include: maintenance location, target maintenance equipment number, pre-planned maintenance route, maintenance operation steps and maintenance completion time.
2. The method according to claim 1, characterized in that The determining whether each fire monitoring area needs maintenance according to the monitoring data of each fire monitoring area includes: Determine whether each device in each fire monitoring area is abnormal based on the monitoring data of each fire monitoring area; When the equipment in the fire monitoring area is abnormal, it is determined whether the fire monitoring area is in a preset maintenance completion area. If so, the fire monitoring area needs maintenance.
3. The method according to claim 2, characterized in that The target maintenance equipment for determining the maintenance location in the fire monitoring area when the fire monitoring area needs maintenance includes: Taking the inspection location as the center, searching for multiple emergency storage devices for fire fighting equipment within a preset first search range; Acquire first registration information of a plurality of fire-fighting equipment emergency storage devices; Determine first comprehensive weighted scores of the plurality of fire equipment emergency storage devices respectively based on the first registration information of the plurality of fire equipment emergency storage devices, and screen out the maximum value of the first comprehensive weighted scores; The fire equipment emergency storage device corresponding to the maximum value of the first comprehensive weighted score is used as the target maintenance equipment; The first registration information includes: the location of the storage device, the importance level of the storage device, the type of fire-fighting equipment stored, and the storage capacity of the fire-fighting equipment.
4. The method according to claim 3, characterized in that The abnormal state index value of the target maintenance equipment is determined based on the monitoring data of the fire monitoring area.
5. The method according to claim 4, characterized in that The calculation formula of the maintenance emergency level of the target maintenance equipment is as follows: P=μ(x1w1+x2w2+x3w3) / (w1+w2+w3) Where P is the maintenance emergency level of the target maintenance equipment, μ is the mapping relationship between the preset maintenance emergency level and the weighted average duration of the abnormality, x1 is the equipment missed detection duration, w1 is the weight of the preset equipment missed detection duration, x2 is the equipment missing duration, w2 is the weight of the preset equipment missing duration, x3 is the equipment failure duration, and w3 is the weight of the preset equipment failure duration.
6. The method according to claim 5, characterized in that Before sending the management allocation instruction to the target maintenance personnel terminal, the method further includes: Taking the maintenance location as the center, searching for multiple maintenance personnel terminals within a preset second search range; Acquire the second registration information of the plurality of maintenance personnel terminals and the location information of the plurality of maintenance personnel terminals; Based on the second registration information of the plurality of maintenance personnel terminals and the location information of the plurality of maintenance personnel terminals, respectively determine the second comprehensive weighted scores of the plurality of maintenance personnel terminals, and screen out the maximum value of the second comprehensive weighted scores; The maintenance personnel terminal corresponding to the maximum value of the second comprehensive weighted score is used as the target maintenance personnel terminal; The second registration information includes: maintenance skill evaluation indicators, maintenance success rate, maintenance area and maintenance authority of the registered maintenance personnel.
7. The method according to claim 6, characterized in that After sending the management allocation instruction to the target maintenance personnel terminal, the method includes: Obtaining the current location of the target maintenance personnel terminal; Determine a first travel time from the current location of the target maintenance personnel terminal to the location of the target maintenance equipment, and calculate a second travel time from the location of the target maintenance equipment to the maintenance location; When the total value of the first rushing time and the second rushing time is greater than a preset time threshold, sending a prompt message for accelerating the rushing to the target maintenance personnel terminal; When the total time value between the first arrival time and the second arrival time is less than or equal to a preset time threshold, normal arrival prompt information is sent to the target maintenance personnel terminal and displayed on the target maintenance personnel terminal.
8. The method according to claim 2, characterized in that The method further comprises: When the equipment in the fire monitoring area is abnormal and the fire monitoring area is not in the preset maintenance completion area, normal maintenance prompt information is generated and displayed.
9. A fire-fighting equipment integrated management and control system, characterized in that: The system comprises: The acquisition module is used to collect monitoring data of each fire monitoring area by using the fire equipment monitoring device arranged in each fire monitoring area, and judge whether each fire monitoring area needs maintenance according to the monitoring data of each fire monitoring area; A first determination module is used to determine the target maintenance equipment and the abnormal state index value of the target maintenance equipment at the maintenance location in the fire monitoring area when the fire monitoring area needs maintenance; A second determination module is used to determine the maintenance urgency level of the target maintenance equipment according to the abnormal state index value of the target maintenance equipment; A management and control module, used to determine a management allocation instruction based on the maintenance emergency level of the target maintenance equipment, and send the management allocation instruction to the target maintenance personnel terminal, and then perform equipment management and control in the fire monitoring area; The management allocation instructions include: maintenance location, target maintenance equipment number, pre-planned maintenance route, maintenance operation steps and maintenance completion time.
10. A computer-readable storage medium having a computer program stored thereon, characterized in that: When the program is executed by a processor, the method according to any one of claims 1 to 8 is implemented.