Method and device for automatic disposal of forest fire on plain, electronic equipment and storage medium
Patent Information
- Application Number
- CN202211359470.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2022-11-02
- Publication Date
- 2026-09-18
- Estimated Expiration
- 2042-11-02
AI Technical Summary
[0002]目前平原林地防灭火主要依靠人员巡查,随着平原生态林人为活动因素增多,防火问题日益严峻,林地游憩娱乐、春季杨柳飞絮、清明烧纸、夏季烧烤等因素增多、不稳定,给人工防火巡查带来了困难
[0041] Fourthly, embodiments of the present invention provide a computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the method as described in any of the implementations of the first aspect.
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Abstract
Description
Technical Field
[0001] This invention relates to the field of fire protection technology, and in particular to an automatic method, device, electronic equipment and storage medium for handling forest fires in plains. Background Technology
[0002] Currently, fire prevention and control in plain forests mainly relies on personnel patrols. However, with the increase in human activities in plain ecological forests, fire prevention issues are becoming increasingly serious. Factors such as recreational activities in forests, spring poplar and willow catkins, burning paper money during the Qingming Festival, and summer barbecues are increasing and becoming more unstable, which brings difficulties to manual fire prevention patrols.
[0003] Currently, in addition to manual detection, fire detection systems can be used to intermittently scan plains and forests to identify fire points. Algorithms can be used to verify the authenticity of suspected fires. However, relying solely on algorithms cannot completely solve the problem; further verification and handling of suspected fire points are necessary. Summary of the Invention
[0004] This invention provides an automatic fire response method, device, electronic equipment, and storage medium for forest fires in plains areas. It acquires fire information through a base station and analyzes the information to determine an automatic fire response plan. It can rationally allocate human and material resources within and around the base station, improve the efficiency of fire verification and handling, and communicate with the forestry bureau's fire prevention center through the base station, thus compensating for the lack of micro-management in the fire protection network of the district / county where the forest area is located.
[0005] In a first aspect, embodiments of the present invention provide an automatic method for handling forest fires in plains, the method comprising:
[0006] Obtain information on forest fires in plains areas;
[0007] Among them, the information on forest fires in plains is obtained through base stations, and the information on forest fires in plains includes: location information, time information, and fire size information;
[0008] Based on location information, staff status information, and fire truck status information, determine the list of staff and fire trucks that are eligible for fire investigation tasks;
[0009] The staff status information includes one or more of the following: staff work tasks, staff work locations, staff status, or staff remarks;
[0010] Fire truck status information includes one or more of the following: fire truck operation task, fire truck operation location, fire truck status, or fire truck remarks;
[0011] The staff in the staff list and the fire trucks in the fire truck list are sorted according to the priority sorting rules to determine the automatic fire response plan;
[0012] The priority ranking rules include one or more of the following: distance rules, time rules, or fire assessment rules; the automatic fire response plan includes: personnel and fire trucks performing fire verification tasks, and base stations that issue fire verification tasks.
[0013] The above-mentioned technical solution obtains fire information through base stations and analyzes the fire information to determine automatic fire response plans. It can rationally allocate human and material resources within and around the base stations, improve the efficiency of fire verification and handling, and communicate with the forestry bureau's fire prevention center through the base stations, thus making up for the lack of micro-management of the fire protection network in the districts and counties where plain forests are located.
[0014] Optionally, the base station is equipped with a fire observation tower, a well house, and a water storage tank; the fire observation tower is equipped with a fire observation camera and hardware network equipment; the hardware network equipment is used for communication.
[0015] Optionally, based on location information, staff status information, and fire truck status information, a list of staff and fire trucks suitable for fire investigation tasks is determined, including:
[0016] Based on location information, staff work locations, and fire truck work locations, select the staff and fire trucks that meet the requirements for fire investigation tasks;
[0017] Based on time information, staff work tasks, and fire truck work tasks, staff and fire trucks that meet the requirements for fire investigation tasks are selected.
[0018] Based on the notes of the staff and the notes of the fire trucks, the staff and fire trucks that meet the requirements for the fire investigation task are selected.
[0019] Based on information about the size of the fire, the status of staff, and the status of fire trucks, staff and fire trucks that meet the requirements for the fire investigation task are selected.
[0020] Optionally, the personnel in the staff list and the fire trucks in the fire truck list are sorted according to priority sorting rules to determine the automatic fire response plan, including:
[0021] The staff in the staff list and the fire trucks in the fire truck list were sorted according to the distance rule, time rule, and fire assessment rule, respectively.
[0022] Based on the weights and ranking results corresponding to the distance rule, time rule, and fire assessment rule, an automatic fire response plan is determined.
[0023] Alternatively, automatic fire suppression methods for plains and forests may also include:
[0024] When performing fire detection tasks, check the water level in the water tank of the base station closest to the fire location. If the water level in the water tank is insufficient, output a command to fill the water tank.
[0025] Output instructions to fully load fire trucks at the base station closest to the fire location.
[0026] Alternatively, automatic fire suppression methods for plains and forests may also include:
[0027] If the distance between the fire location and all base stations exceeds the distance threshold, all fire trucks not performing emergency tasks within a preset distance around the fire location will be retrieved to perform fire verification tasks.
[0028] Alternatively, automatic fire suppression methods for plains and forests may also include:
[0029] If the water supply of fire trucks within the preset distance is insufficient, fire trucks outside the preset distance will be dispatched to replenish the water supply to the fire trucks within the preset distance; or...
[0030] Retrieve vehicles that are currently spraying pesticides within a preset distance and replenish water to the fire trucks within that preset distance.
[0031] The above technical solution sets out emergency response strategies to deal with problems encountered in the execution of fire inspection tasks. In case of emergency, human and material resources can be mobilized as quickly as possible to solve the problem and reduce losses caused by untimely response.
[0032] Secondly, embodiments of the present invention provide an automatic fire suppression device for forest fires in plains areas, the device comprising:
[0033] The acquisition module is used to acquire information on forest fires in plains areas.
[0034] Among them, the information on forest fires in plains is obtained through base stations, and the information on forest fires in plains includes: location information, time information, and fire size information;
[0035] The determination module is used to determine the list of personnel and fire trucks that meet the requirements for fire investigation tasks based on location information, staff status information, and fire truck status information.
[0036] The staff status information includes one or more of the following: staff work tasks, staff work locations, staff status, or staff remarks;
[0037] Fire truck status information includes one or more of the following: fire truck operation task, fire truck operation location, fire truck status, or fire truck remarks;
[0038] The determination module is also used to sort the staff in the staff list and the fire trucks in the fire truck list according to the priority sorting rules, and determine the automatic fire handling plan.
[0039] The priority ranking rules include one or more of the following: distance rules, time rules, or fire assessment rules; the automatic fire response plan includes: personnel and fire trucks performing fire verification tasks, and base stations that issue fire verification tasks.
[0040] Thirdly, embodiments of the present invention provide an electronic device including a memory and a processor, wherein the memory stores a computer program, and the processor executes the program to implement the method as described in any of the implementations of the first aspect.
[0041] Fourthly, embodiments of the present invention provide a computer-readable storage medium having a computer program stored thereon, which, when executed by a processor, implements the method as described in any of the implementations of the first aspect.
[0042] This invention provides an automatic fire suppression method, device, electronic equipment, and storage medium for forest fires in plains areas. The method first acquires forest fire information via a base station. Then, based on location information, staff status information, and fire vehicle status information, a list of personnel and fire vehicles suitable for fire verification is determined. Next, the personnel and fire vehicles are prioritized according to a priority ranking rule to determine an automatic fire suppression plan. This invention acquires and analyzes fire information via a base station to determine an automatic fire suppression plan, enabling the rational allocation of human and material resources within and around the base station, improving the efficiency of fire verification and suppression. Furthermore, the base station allows communication with the forestry bureau's fire prevention center, compensating for the lack of micro-management capabilities in the county-level fire protection network for forest areas.
[0043] It should be understood that the description in the Summary of the Invention is not intended to limit the key or essential features of the embodiments of the present invention, nor is it intended to restrict the scope of the invention. Other features of the invention will become readily apparent from the following description. Attached Figure Description
[0044] The above and other features, advantages, and aspects of the various embodiments of the present invention will become more apparent from the accompanying drawings and the following detailed description. In the drawings, the same or similar reference numerals denote the same or similar elements.
[0045] Figure 1 This is a flowchart of an automatic fire suppression method for forest fires in plains, according to an embodiment of the present invention.
[0046] Figure 2 This is a schematic diagram of the structure of an automatic fire suppression device for forest fires in plains according to an embodiment of the present invention;
[0047] Figure 3 This is a structural diagram of an electronic device according to an embodiment of the present invention. Detailed Implementation
[0048] To enable those skilled in the art to better understand the technical solutions in one or more embodiments of this specification, the technical solutions in one or more embodiments of this specification will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of this specification, and not all of the embodiments. Based on one or more embodiments of this specification, all other embodiments obtained by those skilled in the art without creative effort should fall within the protection scope of this document.
[0049] It should be noted that the embodiments of the present invention are described only to more clearly illustrate the technical solutions of the embodiments of the present invention, and do not constitute a limitation on the technical solutions provided by the embodiments of the present invention.
[0050] Figure 1 This is a flowchart illustrating an automatic fire suppression method for forest fires in plains, according to an embodiment of the present invention. Figure 1 As shown, the method includes:
[0051] S101. Obtain information on forest fires in plains.
[0052] Optionally, information on forest fires in plains areas can be obtained through base stations. This information includes location, time, and fire size.
[0053] Optionally, the base station is equipped with a fire observation tower, a well house, and a water storage tank; the fire observation tower is equipped with a fire observation camera and hardware network equipment; the hardware network equipment is used for communication, enabling communication between base stations and between base stations and the command center.
[0054] Optionally, each base station has a certain monitoring range. Through the grid-like arrangement of base stations on the plain forest, the entire plain forest can be included in the monitoring range of the base stations. In addition, there is a water well near each base station, which supplies water to the water storage tank in the base station, and then the water storage tank supplies water to fire trucks, so that rapid water supply can be achieved when a fire is detected.
[0055] S102. Based on location information, staff status information, and fire vehicle status information, determine the list of staff and fire vehicles that are eligible for the fire investigation task.
[0056] Optionally, the staff status information includes one or more of the following: staff work task, staff work location, staff status, or staff remarks;
[0057] Fire truck status information includes one or more of the following: fire truck operation task, fire truck operation location, fire truck status, or fire truck remarks.
[0058] Optionally, based on location information, staff status information, and fire truck status information, a list of staff and fire trucks suitable for fire investigation tasks is determined, including:
[0059] Based on location information, staff work locations, and fire truck work locations, personnel and fire trucks that meet the requirements for fire investigation tasks are selected.
[0060] For example, staff and fire trucks within a circle with a radius of 10km centered on the location of the fire are selected and added to the list of personnel to perform fire verification tasks.
[0061] Furthermore, based on time information, staff work tasks, and fire truck work tasks, personnel and fire trucks that meet the requirements for fire verification tasks are selected.
[0062] For example, personnel and fire trucks performing tasks are screened out based on the time the fire occurred, leaving only personnel and fire trucks that are qualified to perform fire verification tasks.
[0063] Furthermore, based on the notes of the staff and the fire trucks, staff and fire trucks that meet the requirements for fire investigation are selected.
[0064] For example, based on personnel and fire vehicle remarks, personnel on leave and fire vehicles with malfunctions are screened out, leaving personnel and fire vehicles that are qualified to perform fire inspection tasks.
[0065] Furthermore, based on information about the size of the fire, the status of the staff, and the status of the fire trucks, personnel and fire trucks that meet the requirements for the fire verification task are selected.
[0066] For example, if the fire is large and requires emergency handling, experienced personnel and fire trucks with sufficient water reserves are selected to investigate or handle the fire.
[0067] S103. Sort the staff in the staff list and the fire trucks in the fire truck list according to the priority sorting rules, and determine the automatic fire response plan.
[0068] Optionally, the priority ranking rules include one or more of the following: distance rules, time rules, or fire assessment rules; the automatic fire response plan includes: personnel and fire trucks performing fire verification tasks, and base stations that issue fire verification tasks.
[0069] Optionally, the personnel in the staff list and the fire trucks in the fire truck list are sorted according to priority sorting rules to determine the automatic fire response plan, including:
[0070] The staff in the staff list and the fire trucks in the fire truck list were sorted according to the distance rule, time rule, and fire assessment rule, respectively.
[0071] Based on the weights and ranking results corresponding to the distance rule, time rule, and fire assessment rule, an automatic fire response plan is determined.
[0072] For example, weights are set for distance rules, time rules, and fire intensity assessment rules based on factors such as the time, location, and intensity of the fire.
[0073] Then, according to the distance rule, the staff and fire trucks selected in step S102 are sorted from closest to farthest from the fire point;
[0074] According to the time rules, the staff and fire trucks selected in step S102 are sorted from fastest to slowest according to their estimated arrival time at the fire point; the factors considered in the estimation include: the distance to the fire point, vehicle speed, and whether resupply is needed along the way.
[0075] According to the fire assessment rules, the personnel and fire trucks selected in step S102 are ranked according to the personnel's experience, the water storage status, fuel level, and vehicle usage time of the fire trucks; if the fire is severe, experienced personnel are ranked first, and vehicles in good condition are ranked first.
[0076] Finally, based on the ranking results and weights, the most suitable personnel and fire trucks are selected to carry out the fire verification task.
[0077] Alternatively, automatic fire suppression methods for plains and forests may also include:
[0078] When performing fire detection tasks, check the water level in the water tank of the base station closest to the fire location. If the water level in the water tank is insufficient, output a command to fill the water tank.
[0079] Output instructions to fully load fire trucks at the base station closest to the fire location.
[0080] For example, a fire occurs at point A, and the dispatched inspection team confirms that the fire is very serious and the current manpower and material resources are insufficient to handle the fire at point A. Therefore, the situation is reported to the command center, which then checks the water level in the reservoir of the nearest base station to point A. If the water level in the reservoir is insufficient, the command center orders that the reservoir be filled and that the fire trucks of the base station be fully loaded with water to quickly support point A.
[0081] If the distance between the fire location and all base stations exceeds the distance threshold, all fire trucks not performing emergency tasks within a preset distance around the fire location will be retrieved to perform fire verification tasks.
[0082] Furthermore, if the water supply of fire trucks within the preset distance is insufficient, fire trucks outside the preset distance will be dispatched to replenish the water supply to the fire trucks within the preset distance; or,
[0083] Retrieve vehicles that are currently spraying pesticides within a preset distance and replenish water to the fire trucks within that preset distance.
[0084] For example, if a fire occurs at point B, and the base station finds no suitable fire trucks available for fire verification after screening and sorting, it will dispatch all fire trucks within a 20km radius of point B that are not currently on emergency duty to perform the fire verification task. If, during the task, it is discovered that the fire trucks are running low on water, fire trucks beyond a preset distance will be urgently dispatched to replenish the water supply to fire trucks within that distance. Alternatively, vehicles within the preset distance that are currently spraying pesticides will be dispatched to replenish the water supply to fire trucks within that distance. The fire hoses of vehicles spraying pesticides can also be replaced, allowing them to directly support the fire at point B.
[0085] It should be noted that all location information in this embodiment can be obtained through GPS positioning.
[0086] This embodiment provides an automatic fire response method for forest fires in plains areas. The method first acquires forest fire information via a base station. Then, based on location information, staff status information, and fire vehicle status information, a list of staff and fire vehicles suitable for fire verification is determined. Next, the staff and fire vehicles are prioritized according to a priority ranking rule to determine an automatic fire response plan. This invention acquires and analyzes fire information via a base station to determine an automatic fire response plan. This allows for the rational allocation of human and material resources within and around the base station, improving the efficiency of fire verification and handling. Furthermore, the base station enables communication with the forestry bureau's fire prevention center, compensating for the lack of micro-management capabilities in the county-level fire protection network for forest areas.
[0087] The following combination Figure 2 This application provides a detailed description of the apparatus provided in its embodiments, which can perform the aforementioned automatic fire suppression method for plains and forests.
[0088] For example, Figure 2 This is a schematic diagram of the structure of an automatic fire suppression device for plains forests according to an embodiment of the present invention; as shown below. Figure 2 As shown, the automatic fire suppression device 20 for plains and forests includes:
[0089] The acquisition module 201 is used to acquire information on forest fires in plains.
[0090] Among them, the information on forest fires in plains is obtained through base stations, and the information on forest fires in plains includes: location information, time information, and fire size information.
[0091] The determination module 202 is used to determine the list of personnel and fire trucks that meet the requirements for fire investigation tasks based on location information, staff status information and fire truck status information.
[0092] The staff status information includes one or more of the following: staff work tasks, staff work locations, staff status, or staff remarks;
[0093] Fire truck status information includes one or more of the following: fire truck operation task, fire truck operation location, fire truck status, or fire truck remarks.
[0094] Optionally, the determining module 202 is also used to sort the staff in the staff list and the fire trucks in the fire truck list according to the priority sorting rules, and determine the automatic fire handling plan.
[0095] The priority ranking rules include one or more of the following: distance rules, time rules, or fire assessment rules; the automatic fire response plan includes: personnel and fire trucks performing fire verification tasks, and base stations that issue fire verification tasks.
[0096] Optionally, the base station is equipped with a fire observation tower, a well house, and a water storage tank; the fire observation tower is equipped with a fire observation camera and hardware network equipment; the hardware network equipment is used for communication.
[0097] Optionally, the determining module 202 is also used for:
[0098] Based on location information, staff work locations, and fire truck work locations, select the staff and fire trucks that meet the requirements for fire investigation tasks;
[0099] Based on time information, staff work tasks, and fire truck work tasks, staff and fire trucks that meet the requirements for fire investigation tasks are selected.
[0100] Based on the notes of the staff and the notes of the fire trucks, the staff and fire trucks that meet the requirements for the fire investigation task are selected.
[0101] Based on information about the size of the fire, the status of staff, and the status of fire trucks, staff and fire trucks that meet the requirements for the fire investigation task are selected.
[0102] Optionally, the determination module 202 is also used to sort the staff in the staff list and the fire trucks in the fire truck list according to the distance rule, time rule and fire assessment rule respectively, and then determine the automatic fire response plan according to the weights and sorting results corresponding to the distance rule, time rule and fire assessment rule.
[0103] Optionally, the determination module 202 is also used to check the water level of the water tank of the base station closest to the fire location when performing a fire verification task. If the water level of the water tank is insufficient, it outputs an instruction to fill the water tank; and outputs an instruction to fully load the fire truck of the base station closest to the fire location.
[0104] Optionally, the determining module 202 is also used to, if the distance between the location of the fire and all base stations exceeds a distance threshold, retrieve all fire trucks that are not performing emergency tasks within a preset distance around the location of the fire to perform the fire verification task.
[0105] Optionally, the determining module 202 is further configured to, if the water supply of fire trucks within a preset distance is insufficient, retrieve fire trucks outside the preset distance to replenish the water supply to the fire trucks within the preset distance; or,
[0106] Retrieve vehicles that are currently spraying pesticides within a preset distance and replenish water to the fire trucks within that preset distance.
[0107] This invention also provides a computer electronic device. Figure 3 A schematic diagram of the structure of an electronic device to which embodiments of the present invention can be applied is shown, such as... Figure 3 As shown, the computer electronic device includes a central processing unit (CPU) 301, which can perform various appropriate actions and processes based on programs stored in read-only memory (ROM) 302 or programs loaded from storage section 308 into random access memory (RAM) 303. The RAM 303 also stores various programs and data required for system operation. The CPU 301, ROM 302, and RAM 303 are interconnected via bus 304. An input / output (I / O) interface 305 is also connected to bus 304.
[0108] The following components are connected to I / O interface 305: an input section 306 including a keyboard, mouse, etc.; an output section 307 including a cathode ray tube (CRT), liquid crystal display (LCD), etc., and speakers, etc.; a storage section 308 including a hard disk, etc.; and a communication section 309 including a network interface card such as a LAN card, modem, etc. The communication section 309 performs communication processing via a network such as the Internet. A drive 310 is also connected to I / O interface 305 as needed. A removable medium 311, such as a disk, optical disk, magneto-optical disk, semiconductor memory, etc., is installed on drive 310 as needed so that computer programs read from it can be installed into storage section 308 as needed.
[0109] The flowcharts and block diagrams in the accompanying drawings illustrate the architecture, functionality, and operation of possible implementations of systems, methods, and computer program products according to various embodiments of the present invention. In this regard, each block in a flowchart or block diagram may represent a module, segment, or portion of code containing one or more executable instructions for implementing a specified logical function. It should also be noted that in some alternative implementations, the functions indicated in the blocks may occur in a different order than those indicated in the drawings. For example, two consecutively indicated blocks may actually be executed substantially in parallel, and they may sometimes be executed in reverse order, depending on the functions involved. It should also be noted that each block in the block diagrams and / or flowcharts, and combinations of blocks in the block diagrams and / or flowcharts, can be implemented using a dedicated hardware-based system that performs the specified function or operation, or using a combination of dedicated hardware and computer instructions.
[0110] The modules or modules described in the embodiments of the present invention can be implemented in software or hardware. The described modules or modules can also be housed in a processor. For example, a processor can be described as including an acquisition module 201 and a determination module 202. The names of these modules do not necessarily limit the module itself. For example, the determination module 202 can also be described as "a determination module 202 for determining a list of personnel and a list of fire trucks that meet the requirements for a fire inspection task based on location information, personnel status information, and fire truck status information."
[0111] In another aspect, the present invention also provides a computer-readable storage medium, which may be the computer-readable storage medium included in the automatic plain forest fire control device described in the above embodiments; or it may be a standalone computer-readable storage medium not assembled into an electronic device. The computer-readable storage medium stores one or more programs, which are used by one or more processors to execute the automatic plain forest fire control method described in the present invention.
[0112] The above description is merely a preferred embodiment of the present invention and an explanation of the technical principles employed. Those skilled in the art should understand that the scope of the invention is not limited to the specific combination of the above-described technical features, but also includes other technical solutions formed by arbitrary combinations of the above-described technical features or their equivalents without departing from the inventive concept. For example, technical solutions formed by substituting the above-described features with (but not limited to) technical features with similar functions disclosed in this invention.
Claims
1. An automatic method for handling forest fires in plains areas, characterized in that, include: Obtain information on forest fires in plains areas; The information on forest fires in the plains is obtained through base stations. This information includes location information, time information, and fire size information. Each base station is equipped with a fire observation tower, a well house, and a water storage tank. The fire observation tower is equipped with a fire observation camera and hardware network equipment. The hardware network equipment is used to enable communication between base stations and between base stations and the forestry bureau's fire prevention center. Multiple base stations are arranged in a grid pattern on the forest land. The wells supply water to the water storage tanks, which in turn supply water to fire trucks. Based on the location information, staff status information, and fire vehicle status information, determine the list of staff and fire vehicles that meet the requirements for fire investigation tasks; The staff status information includes one or more of the following: staff work task, staff work location, staff status, or staff remarks; The fire truck status information includes one or more of the following: fire truck operation task, fire truck operation location, fire truck status, or fire truck remarks information; The staff in the staff list and the fire trucks in the fire truck list are sorted according to priority ranking rules to determine an automatic fire response plan. The priority ranking rules include distance rules, time rules, or fire intensity assessment rules. The staff in the staff list and the fire trucks in the fire truck list are sorted according to the distance rules, time rules, and fire intensity assessment rules, respectively. Based on the weights and ranking results corresponding to the distance rules, time rules, and fire intensity assessment rules, an automatic fire response plan is determined. The automatic fire response plan includes: staff and fire trucks performing the fire verification task, and the base station issuing the fire verification task. When sorting according to the time rules, the selected staff and fire trucks are sorted from fastest to slowest according to their estimated arrival time at the fire point. The factors considered in the estimation include: the distance to the fire point, vehicle speed, and whether resupply is needed en route. When sorting according to the fire assessment rules, the selected staff and fire trucks are sorted according to the staff's experience, the fire trucks' water storage status, fuel level, and vehicle usage time. When performing the fire detection task, the water level in the reservoir of the base station closest to the fire location is checked. If the water level in the reservoir is insufficient, an instruction is output to fill the reservoir. An instruction is also output to fully load the fire trucks of the base station closest to the fire location with water. If the water level in the fire trucks within a preset distance is insufficient, fire trucks outside the preset distance are called in to replenish the water in the fire trucks within the preset distance. Alternatively, vehicles within the preset distance that are currently performing spraying tasks are called in to replenish the water in the fire trucks within the preset distance, or the fire nozzles of vehicles performing spraying tasks are replaced to directly support the fire. The step of determining the list of personnel and fire trucks eligible for fire investigation tasks based on the location information, staff status information, and fire truck status information includes: Based on the location information, the work location of the staff, and the work location of the fire trucks, staff and fire trucks that meet the requirements of the fire investigation task are selected. Based on the time information, the staff's work tasks, and the fire truck's work tasks, staff and fire trucks that meet the requirements for the fire investigation task are selected. Based on the staff remarks and fire truck remarks, select the staff and fire trucks that meet the requirements for the fire investigation task; Based on the fire size information, the status of the staff, and the status of the fire trucks, staff and fire trucks that meet the requirements for the fire verification task are selected.
2. The automatic fire suppression method for forest fires in plains areas according to claim 1, characterized in that, Also includes: If the distance between the fire location and all base stations exceeds a distance threshold, all fire trucks not performing emergency tasks within a preset distance around the fire location will be retrieved to perform the fire verification task.
3. An apparatus for implementing the automatic fire suppression method for forest fires in plains areas as described in claim 1 or 2, characterized in that, include: The acquisition module is used to acquire information on forest fires in plains areas. The information on forest fires in the plains is obtained through base stations and includes: location information, time information, and fire size information. The determination module is used to determine the list of personnel and the list of fire trucks that meet the requirements for fire investigation tasks based on the location information, staff status information and fire truck status information. The staff status information includes one or more of the following: staff work task, staff work location, staff status, or staff remarks; The fire truck status information includes one or more of the following: fire truck operation task, fire truck operation location, fire truck status, or fire truck remarks information; The determining module is further configured to sort the staff in the staff list and the fire trucks in the fire truck list according to priority sorting rules, and determine the automatic fire response plan; the priority sorting rules include one or more of the following: distance rules, time rules, or fire assessment rules; the automatic fire response plan includes: staff and fire trucks performing the fire verification task, and base stations that issue the fire verification task.
4. An electronic device, characterized in that, It includes a memory and a processor, wherein the memory stores a computer program, and the processor executes the computer program to implement the method as described in claim 1 or 2.
5. A computer-readable storage medium, characterized in that, The system contains a computer program that, when executed by a processor, implements the method as described in claim 1 or 2.
Citation Information
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