High-Dee cloud fire-fighting intelligent combat terminal

Through the Gaode Map mini program and the 720 panoramic cloud system, the problem of insufficient data support in fire extinguishing operations is solved, real-time and accurate information transmission and facility operations are achieved, and the efficiency and combat efficiency of fire extinguishing and rescue are improved.

CN120387792APending Publication Date: 2025-07-29常熟市消防救援大队
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Patent Information

Application Number
CN202510517829.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-04-24
Publication Date
2025-07-29

AI Technical Summary

Technical Problem

The lack of sufficient data support for fire-fighting operations leads to information asymmetry, chaotic communications, irregular facility operations, inefficient search and rescue efficiency, and disconnection between the front and the rear, which affects the efficiency of fire-fighting and rescue.

Method used

The Gaode Map mini program and the 720 panoramic cloud system are adopted to provide real-life navigation, fast power connection, three-dimensional information display, disinfection and control guidance, building combat data empowerment, combat command front-end and backward communication and seamless group interaction to achieve data integration and real-time sharing.

Benefits of technology

It has improved the efficiency of fire extinguishing and rescue, ensured clear and accurate information transmission, standardized facilities operation, improved search and rescue efficiency, and coordinated the front line and rear command centers to reduce duplicate work and improve combat efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The invention discloses a high-Dee cloud fire-fighting intelligent combat terminal, and belongs to the technical field of fire-fighting rescue. A map applet is developed on an Amap APP, the map applet comprises four layers including a water source layer, a community summary layer, a map group chat layer and an internal attack positioning layer, a 720 panoramic cloud operation interface is implanted into the map applet, and the operation interface comprises a community exterior scene interface, a unit information interface, a building combat interface, a combat command interface and an online interaction interface. The community exterior scene interface records the community exterior scene; the unit information interface comprises a basic information module and an underground information module; the building combat interface comprises a driving-in route unit, a parking position unit, a resident information query unit and a resident information feedback unit; the combat command interface comprises a middle team combat module, a field command module, an auxiliary decision module and a position division module; the online interaction interface is provided with an online interaction chat applet to share combat information. The advantages are that the terminal places combat data in a layered and classified manner, gives combat missions, and improves the efficiency of fire extinguishing and rescue.
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Description

Technical Field

[0001] The present invention belongs to the field of fire fighting and rescue technology, and relates to an AutoNavi cloud fire fighting intelligent combat terminal, specifically a combat terminal that carries data required for fire fighting operations through the AutoNavi map applet and 720 panoramic cloud. Background Art

[0002] Firefighting equipment is becoming increasingly advanced, and tactics are becoming increasingly specialized. While firefighting and rescue effectiveness has improved, the gains are limited, and many shortcomings still hinder it. Current firefighting operations face a significant pain point: a lack of sufficient data support, resulting in many operations being ineffective, or even counterproductive. For example, search and rescue operations are like looking for a needle in a haystack; during attacks, routes are incorrect; searching for water requires running to find it; communications are chaotic and signal loss occurs; during battle reviews, there is no documentation available; when reinforcements are called, the mission is unclear; and when operating firefighting equipment, there is a sense of uncertainty and helplessness.

[0003] For example, firefighting operations often lack effective information, primarily due to information asymmetry. Despite preparedness plans and familiarization cards, accessing information during actual operations is often difficult, with fragmented information consisting of simple images and text that are difficult to remember, resulting in poor overall effectiveness.

[0004] For example, every unit has fixed firefighting equipment, which is crucial for firefighting and rescue operations. However, it's common for officers and soldiers to not know how to use or use them effectively. While many have been trained in fixed firefighting equipment operation, and even paid to obtain fixed firefighting equipment operator certification, the results have been limited. Firstly, after completing their training, officers often forget their skills due to prolonged periods of inactivity. Secondly, there are numerous brands of fire control room operating platforms on the market, and while you only know what you've learned, switching brands often leaves you at the same level of incompetence. This is also true for many property management companies, where non-standard and incorrect operation is commonplace.

[0005] For example, when there is a fire on multiple floors and a large number of rooms need to be searched and rescued, the team station can only cast a wide net and check each room one by one, which is inefficient. At the same time, after the search and rescue of a room is completed, it is customary to report verbally via the radio, and it is impossible to quickly and effectively make a written record of the search and rescue situation in the room, such as whether there is anyone in the room, whether the people in the room have been rescued, whether the room is safe, etc. Oral reports are easy to forget, which causes repeated search and rescue and ineffective search and rescue by themselves and the reinforcement squadron.

[0006] More intractable problems often occur during on-site rescue operations, such as chaos at the fire scene and communication chaos. The more participating squadrons there are, the more chaotic the situation becomes. A major cause of these problems is that information transmission mainly relies on radios, which are subject to too many signal interferences and human factors. Moreover, the fire scene is often noisy, making it impossible for each squadron to clearly and accurately exchange information through radios. Even worse, sometimes information needs to be spread by word of mouth. Most troublesome of all, signal transmission is difficult to record in writing, and a lot of information can only be remembered by the brain. In the highly tense environment of the fire scene, information is easily forgotten, and it is also impossible to comprehensively view and consult information to assist in making decisions. All these factors lead to a disconnection between many front-line fire fighting squadrons and the rear command center, resulting in each acting independently.

[0007] In view of the urgent problems to be solved in the above situation, the applicant has made a beneficial design, and the technical solution to be introduced below was born under this background. Summary of the Invention

[0008] The task of the present invention is to provide a Gaodeyun Fire Fighting Intelligent Operation Terminal, which relies on the Gaode Map to develop a map applet suitable for fire fighting operations, places operation data in layers and categories on the map, and is equipped with a 720 panoramic cloud system, greatly improving the efficiency of fire fighting and rescue.

[0009] The task of the present invention is completed in the following way. A Gaodeyun fire intelligent operation terminal opens a map mini-program on the Gaode Map, and the map mini-program is displayed on mobile terminals and computer terminals. The map mini-program includes a water source layer, a community summary layer, a map group chat, and an interior attack positioning layer. A 720 panoramic cloud system is implanted on the Gaode Map mini-program to form a 720 panoramic cloud operation interface. The 720 panoramic cloud operation interface includes a community exterior scene interface, a unit information interface, a building combat interface, a combat command interface, and an online interaction interface. Among them: The community exterior scene interface records the exterior scenes of all perspectives of the east, south, west, north, and middle of the community in the form of panoramic videos; The unit information interface includes a basic information module and an underground information module. The basic information module includes a graphic and text information unit, a fire control room unit, a pump room unit, and a water source actual scene distribution unit. The underground information module divides the underground into zones, and each zone includes an entrance guidance menu and a parking space query menu; The building combat interface includes a driving route unit, a parking position unit, a household information query unit, and a household information feedback unit for each building; The combat command interface includes a squadron combat module, a scene command post module, an auxiliary decision-making module, and a position division module. In the squadron combat module, a combat task query menu and a combat dynamics upload menu are set. The scene command post module includes a fire scene dynamics query menu and a combat task assignment menu. The auxiliary decision-making module includes four menus: AI configuration problem, AI-assisted decision-making, community initial battle programming demonstration, and community combat key points. In the position division module, the fire-stricken community is divided into positions; In the online interaction interface, an online interaction chat mini-program is set, and through automatic WeChat recognition, users can enter the chat room to interact and share combat information.

[0010] In a specific embodiment of the present invention, the water source layer marks the positions, distances, and states of fire hydrants, pump adapters, and natural rivers; The community summary layer marks building numbers, fire control rooms, pump rooms, contacts, and 720 panoramic clouds; The interior attack positioning layer displays the positions and trajectories of attacking team members; On the map group chat layer, the map can be used to enter the map chat room.

[0011] In another specific embodiment of the present invention, a 720 panoramic cloud system is implanted on the community summary layer to form a 720 panoramic cloud operation interface.

[0012] In yet another specific embodiment of the present invention, the graphic and text information unit records the floor plan of building facilities, the floor plan of fire-fighting facilities, the introduction of the community situation and the hidden danger information; the fire control room unit records the entrance guidance of the fire control room, the start demonstration of the smoke exhaust fan, the start demonstration of the fire broadcast, the start demonstration of the fire pump, and the start demonstration of the fire shutter; the pump room unit records the entrance guidance of the fire pump room and the start demonstration of the fire pump; the actual water source distribution unit marks the positions of the fire hydrants and the pump adapters in the whole community.

[0013] In still another specific embodiment of the present invention, in the building combat interface, the driving route unit makes an animation of the fire truck driving from outside the community to the specific building using a panoramic view; the parking position unit actually draws the optimal parking position of the fire truck in this building and the water supply line; the household information query unit records the household information of this building. When a police situation occurs in this building, firefighters can call the household head on the way to understand the situation, guide safe evacuation, and also accurately help firefighters in search and rescue; the household information feedback unit enables firefighters to quickly record the search and rescue situation throughout the process and also quickly search for the search and rescue situation.

[0014] In still another specific embodiment of the present invention, the building combat interface further includes an in-building video introduction unit. The in-building video introduction unit is to configure virtual hotspots in the actual view of each building, and understand the fire-related information in the building through the virtual hotspot videos.

[0015] In a further specific embodiment of the present invention, in the squadron combat module, the tasks issued by the command headquarters are understood through the combat task query menu, and the combat situation is uploaded to the command headquarters in a timely manner through the combat dynamics upload menu.

[0016] In an even further specific embodiment of the present invention, in the on-site command headquarters module, the command headquarters understands the combat situations of each team station through the fire scene dynamics query menu, issues combat tasks to the participating squadrons through the combat task issuance menu, and guides them to dock at appropriate combat positions.

[0017] In yet a further specific embodiment of the present invention, in the auxiliary decision-making module, the on-site information collected can be quickly filled in by pulling down through the AI problem configuration menu. Through the AI auxiliary decision-making menu, the intelligent decision of deepseek is queried. The operation procedures and key points for attention of the scene demonstration are intuitively understood through the initial combat programming demonstration in the community. In terms of the key points of community combat, the combat experience and lessons in the community are sorted out.

[0018] In an even further specific embodiment of the present invention, the combat terminal is equipped with Feishu, the online multi-dimensional table of WPS, and video recording.

[0019] The present invention has the following effects due to the adoption of the above structure: First, relying on AutoNavi Maps, we developed a custom map app suitable for firefighting operations, placing operational data in layers and categories on the map. We also integrated the 720 Panorama Cloud system into the app, allowing access to the 720 Panorama Cloud interface. Firefighters no longer need to carry any additional equipment during firefighting operations. By simply clicking on the corresponding unit layer on the map via a mobile terminal, they can access the required operational data. This allows firefighting operations to be guided by a single map, greatly improving the effectiveness of firefighting and rescue efforts. Second, extended navigation and precise guidance. On the AutoNavi Maps app layer of this terminal, the location of the residential building, fire control room, pump room, generator room, fire hydrants, etc. are pre-calibrated. When encountering a fire, there is no need to ask for directions again; navigation can be directly directed to the location. Even the location of the fire hydrant can be navigated, solving the bottleneck of navigation not being able to enter the residential area in the past. Third, one-click dialing and quick call connection. On the Gaode Map applet layer of the terminal, a telephone contact icon is established, and the telephone numbers of the community security guard, property manager, fire clerk, community police, etc. associated with the unit are directly entered. In the event of a fire, multiple people can divide the work, without saving or entering numbers. Click the corresponding person's number and dial with one click, quickly understanding comprehensive information, achieving the fastest and most comprehensive verification and grasping the fire alarm; Fourth, information is three-dimensional and real scenes are mastered. On the terminal's 720-degree panoramic cloud operation interface, the unit's text, drawings, and videos are integrated into the panoramic cloud, achieving true text-image mapping and seamless integration of panoramic cloud and video. Real scenes and objects are presented to officers and soldiers, allowing them to clearly, intuitively, and three-dimensionally grasp the required information. At the same time, through the VR map interface menu, they can quickly view information anytime, anywhere, such as water source location, apartment structure, fire escape, building fire protection facilities, underground garage, etc. Fifth, fire control guidance and facility operation demonstrations. On the terminal's 720-degree panoramic cloud operation interface, demonstration operation videos of water pump rooms, smoke exhaust fans, fire curtains, etc. are placed directly in the fire control room unit. Anyone, even if they have no experience with fixed firefighting facilities, can follow the video step-by-step instructions to correctly operate fixed firefighting facilities remotely from the fire control room, truly achieving joint firefighting and firefighting operations. Sixth, building operations, data empowerment. On the terminal's 720 panoramic cloud operation interface, in the panoramic building operation interface, unique operation information is customized for each building, and multiple types of buttons are set. Clicking the buttons can obtain information and guide operations; Seventh, operational command is integrated from beginning to end. The terminal's 720-degree panoramic cloud operation interface introduces WPS documents, Feishu software, and DeepSeek software to enhance database functions and intelligent decision-making support functions. Eighth, seamless grouping and online interaction. On the 720 panoramic cloud operation interface of the terminal, a pre-programmed chat applet is placed in advance. Click to enter, and WeChat will automatically recognize and enter the group chat room. Interactive sending of pictures and texts can be used to communicate the fire scene dynamics. It is possible to freely and seamlessly switch between the chat room and the 720 panoramic cloud operation interface. Description of the Drawings

[0020] Figure 1 It is the overall structural block diagram of the present invention. Detailed Embodiments

[0021] The following describes in detail the specific embodiments of the present invention in conjunction with the drawings. However, the applicant's description of the embodiments is not a limitation of the technical solution. Any change in form rather than substance based on the concept of the present invention should be regarded as the protection scope of the present invention.

[0022] In the following description, any directional or positional concepts involving up, down, left, right, front, and back are based on the positions shown in the corresponding drawings. It is only for the convenience of describing the technical solution provided by the present invention in conjunction with the drawings and simplifying the description. Therefore, it cannot be understood as a special limitation of the technical solution provided by the present invention.

[0023] Please refer to Figure 1 , the present invention relates to a Gaode cloud fire intelligent operation terminal. In the Gaode Map software, preferably on the Gaode Map app, a map applet is developed. The Gaode Map applet consists of a water source layer, a community summary layer, a map group chat, and an interior attack positioning layer. The water source layer calibrates the positions, distances, and status information of fire hydrants, pump connectors, and natural rivers. All unit fire hydrants, pump connectors, and natural rivers are calibrated and entered in the water source layer. Firefighters can not only navigate to them, but also view the performance status of the fire hydrants, know the number of water hoses to be laid, and the water intake positions of natural rivers.

[0024] The community summary layer calibrates information such as building numbers, fire control rooms, pump rooms, contacts, 720 panoramic cloud icons, and gate access. Each building is numbered in the community summary layer, and it is possible to directly navigate to the specific floor. At the same time, the gates are color-coded. Green indicates that large vehicles can pass, yellow indicates that only small vehicles can pass, and red indicates that fire trucks cannot pass. At the same time, the positions of the fire control rooms are also calibrated on the map, and the contact information of relevant personnel such as community security guards, property managers, fire clerks, and community police officers of the unit is entered on the icon, and the numbers can be quickly dialed to understand the situation.

[0025] The interior attack positioning layer can display the positions and trajectories of attacking team members, especially suitable for large-span factories, further ensuring operational safety.

[0026] On the map group chat layer, there is no need to join a group. One can enter the map chat room using the map and send information about the fire scene, as well as pictures and texts. Based on Amap, the present invention stores in advance the information required for fire fighting operations on the corresponding layers for easy direct viewing and retrieval. Especially on the community summary layer, a 720-degree panoramic cloud system is implanted to form a 720-degree panoramic cloud operation interface, greatly expanding the functionality and convenience of this mini-program. At the same time, this mini-program can be shared via WeChat and can be displayed and operated on mobile terminals such as mobile phones and tablets or terminal devices such as computers. All in all, the described intelligent fire fighting operation terminal consists of two parts: the Amap section and the 720-degree panoramic cloud operation interface.

[0027] The described 720-degree panoramic cloud operation interface includes a community exterior view interface, a unit information interface, a building combat interface, a combat command interface, and an online interaction interface. In the community exterior view interface, the exterior views of all perspectives of the east, south, west, north, and middle of the community are recorded in the form of panoramic videos. In this interface, one can understand the environment of the community and its surrounding areas and the positions of each building in the community from different directions such as east, south, west, north, and middle.

[0028] The unit information interface includes a basic information module and an underground information module. The basic information module includes a graphic and text information unit, a fire control room unit, a pump room unit, and a water source actual scene distribution unit.

[0029] In the graphic and text information unit, menus such as building facility floor plans, fire fighting facility floor plans, community situation introductions, and potential hazard information are recorded. One can view the drawings, read the text introductions, and learn about the fire hazards existing in the community.

[0030] The fire control room unit records the entrance guidance to the fire control room, the start demonstration of the smoke exhaust fan, the start demonstration of the fire alarm, the start demonstration of the fire pump, and the start demonstration of the fire shutter. Firefighters can quickly find the location of the fire control room and can also remotely operate the building's fixed fire fighting facilities correctly and quickly according to the demonstration videos of the building's fixed fire fighting facilities in the fire control room.

[0031] The pump room unit records the entrance guidance to the fire pump room and the start demonstration of the fire pump. Firefighters can understand the structure of the pump room and the access route to the pump room, can also understand the relevant parameters of the pump and the fire pool, and can further understand several methods of starting at the pump site.

[0032] The water source actual scene distribution unit marks the positions of fire fighting equipment such as fire hydrants and pump adapters throughout the community, facilitating the quick finding of fire hydrants.

[0033] The underground information module divides the underground into zones, each with an entrance guide menu and a parking space query menu. By querying a parking space number, you can find the underground zone where the space is located. The entrance guide provides firefighters with a video of the entry route to that zone, allowing them to quickly find the specific location. A WPS multidimensional table stores the locations of all parking spaces and important underground storage rooms, creating a database. Links to the query view are placed in this module, ensuring comprehensive parking space search.

[0034] The building operation interface records the entry route unit, parking location unit, resident information query unit, and resident information feedback unit of each building.

[0035] The driving route unit uses the panoramic image to create a fire truck driving animation from the outside of the community to a specific building, guiding the fire truck to arrive quickly in actual combat.

[0036] The parking location unit realistically depicts the optimal parking location and water supply line for the fire truck in the building, thus avoiding confusion in vehicle parking.

[0037] The household information query unit inputs the household information of the building. When receiving an alarm from the building, firefighters can call the householder on the way to understand the situation, guide safe escape, and accurately help firefighters search and rescue.

[0038] The resident information feedback unit allows firefighters to quickly record and track search and rescue progress throughout the entire process, avoiding duplicate and ineffective searches. Specifically, it allows firefighters to accurately identify which rooms do not require rescue, which rooms require immediate rescue, and which rooms can be temporarily deferred. It also fully records the search and rescue progress of personnel at the firefighting and rescue site, ensuring that no one is left behind.

[0039] The building combat interface also includes an in-building video introduction unit. The in-building video introduction unit configures a virtual hotspot in the real-life map of each building. Through the virtual hotspot, users can use video to understand the building's fire elevators, floor structures, apartment structures, indoor fire hydrants, stairwells and vestibules, routes to enter units and other diverse and specific information related to firefighting, thereby broadening the vision of internal attack personnel and allowing them to fight with an open mind.

[0040] The combat command interface includes a squadron combat module, an on-site command module, an auxiliary decision module and a position division module, which links the front-line combat with the rear command.

[0041] The squadron combat module is provided with a combat mission query menu and a combat dynamic upload menu. Through the combat mission query menu, the tasks assigned by the command center can be understood, and through the combat dynamic upload menu, the combat situation can be uploaded to the command center in a timely manner.

[0042] The combat squadron can be fully aware of its own mission situation and the entry and parking of vehicles through the combat mission query menu during the journey. Without the need for guidance, it can start operations upon arrival at the scene. The functions of the combat dynamics upload menu are as follows: Drivers or full-time personnel of each team station can select and fill in a dropdown menu to quickly complete information such as the squadron, vehicle name, time, parked position, location of the team, and mission information. According to the specific situation of the mission selection, if the mission is fire extinguishing, the number of guns and howitzers can be selected; if the mission is search and rescue, the room number and room condition can be filled in.

[0043] The on-site command module includes a fire scene dynamics query menu and a combat mission assignment menu. Through the fire scene dynamics query, the command post can understand the combat situation of each team station at any time and better allocate combat forces. For example, it can flexibly view the missions of each squadron, the water supply, fire extinguishing, interception, and search and rescue forces, and also understand the progress of each mission and whether each squadron needs mission reinforcements. Through the combat mission assignment menu, the command post can assign combat missions to the participating squadrons and guide them to park at appropriate combat positions. Specifically, the communicator of the main combat squadron can click on the combat mission assignment menu in the early stage or the command post can deploy tasks in a dropdown menu, informing the reinforcement squadron of the parked position, arrival location, and tasks to be responsible for.

[0044] The auxiliary decision-making module includes four menus: AI configuration issues, AI-assisted decision-making, programming demonstration for initial combat in communities, and key points for community combat. Through the AI configuration issues menu, on-site information can be quickly filled in by dropdown, such as the time of fire outbreak, type of fire outbreak, fire scene conditions, participating forces, and custom input information, facilitating in-depth thinking by DeepSeek; through the AI-assisted decision-making menu, the intelligent decision-making of DeepSeek can be queried, and a set of reference combat plans can be obtained according to the input situation; through the programming demonstration for initial combat in communities, the operation procedures and key points demonstrated in this scenario can be intuitively understood, and the demonstration combat videos for corresponding police situations can be visually observed, facilitating young commanders to conduct combat operations and further supporting fire extinguishing operations; in terms of key points for community combat, the experience and lessons of community combat are sorted out to avoid repeating mistakes.

[0045] In the position division module, the unit is divided into several combat positions to facilitate the participating squadrons to understand the position of the positions. The participating squadrons can find their own combat positions on the panoramic map according to the combat orders issued by the command post and park according to the positions, avoiding chaotic vehicle parking and affecting combat effectiveness.

[0046] The online interactive interface places a pre-programmed online interactive chat applet. Clicking on it, WeChat will automatically recognize and enter the group chat room, where pictures and texts can be interactively sent to communicate the fire scene dynamics; compared with the map group chat layer, online interaction can be carried out without exiting the 720 panoramic cloud operation interface, which is smoother and more convenient.

[0047] The locations of each building, fire control room, water pump room, generator room, and fire hydrant mentioned in the above interfaces have been marked on the Gaode Map APP. In case of a fire, you can directly navigate there without asking for the route again, and even the location of the fire hydrant can be navigated and guided.

[0048] The described combat terminal is equipped with Feishu, WPS online multi-dimensional table, DeepSeek, panoramic map hotspot, chat programming, etc., further expanding its functions.

Claims

1. A Gaodeyun fire intelligent operation terminal, which opens a map mini-program on the Gaode Map, and the map mini-program is displayed on mobile terminals and computer terminals. It is characterized in that The described map mini-program includes a water source layer, a community summary layer, a map group chat, and an interior attack positioning layer. A 720 panoramic cloud system is implanted in the Amap to form a 720 panoramic cloud operation interface. The 720 panoramic cloud operation interface includes a community exterior view interface, a unit information interface, a building combat interface, a combat command interface, and an online interaction interface, where: The community exterior view interface records the exterior views of all perspectives of the community, including the east, west, south, north, and center, in the form of panoramic videos. The unit information interface includes a basic information module and an underground information module. The basic information module includes a graphic and text information unit, a fire control room unit, a pump room unit, and a water source actual scene distribution unit. The underground information module divides the underground into zones, and each zone includes an entrance guidance menu and a parking space query menu. The building combat interface includes a driving route unit, a parking position unit, a household information query unit, and a household information feedback unit for each building. The combat command interface includes a squadron combat module, a field command post module, an auxiliary decision-making module, and a battle position division module. In the squadron combat module, a combat task query menu and a combat dynamics upload menu are set. The field command post module includes a fire scene dynamics query menu and a combat task assignment menu. The auxiliary decision-making module includes four menus: AI configuration issues, AI-assisted decision-making, initial combat programming demonstration for the community, and key points of community combat. In the battle position division module, the fire-affected community is divided into battle positions. The online interaction interface sets up an online interaction chat mini-program. Through automatic WeChat recognition, users can enter the chat room to interact and share combat information.

2. The Amap Cloud Fire Fighting Intelligent Operation Terminal according to claim 1, characterized in that: The water source layer marks the positions, distances, and statuses of fire hydrants, pump adapters, and natural rivers. The community summary layer marks building numbers, fire control rooms, pump rooms, contacts, and 720 panoramic cloud icons. The interior attack positioning layer shows the positions and trajectories of attacking team members. On the map group chat layer, users can enter the map chat room using the map.

3. The Amap Cloud Fire Fighting Intelligent Operation Terminal according to claim 1, characterized in that: A 720 panoramic cloud system is implanted on the community summary layer to form a 720 panoramic cloud operation interface.

4. The Amap Cloud Fire Fighting Intelligent Operation Terminal according to claim 1, characterized in that: In the graphic and text information unit, the building facility floor plan, fire protection facility floor plan, community situation introduction, and potential hazard information are recorded. In the fire control room unit, the entrance guidance of the fire control room, the start demonstration of the smoke exhaust fan, the start demonstration of the fire alarm, the start demonstration of the fire pump, and the start demonstration of the fire shutter are recorded. In the pump room unit, the entrance guidance of the fire pump room and the start demonstration of the fire pump are recorded. The water source actual scene distribution unit marks the positions of fire hydrants and pump adapters throughout the community.

5. The Aodeliyun fire intelligent operation terminal according to claim 1, characterized in that: In the building combat interface, the driving route unit creates a fire truck driving animation from outside the community to a specific building using a panoramic view; the parking position unit actually draws the optimal parking position of the fire truck in this building and the water supply line; the household information query unit enters the household information of this building. When an alarm occurs in this building, firefighters can call the household head on the way to understand the situation, guide safe evacuation, and also accurately assist firefighters in search and rescue; the household information feedback unit enables firefighters to quickly record the search and rescue situation throughout the process and also quickly search for the search and rescue situation.

6. The Amap Cloud Fire Fighting Intelligent Operation Terminal according to claim 1, wherein: The building combat interface also includes an in-building video introduction unit, which configures virtual hotspots in the real scene map of each building, and through the virtual hotspot videos, relevant fire-related information inside the building can be understood.

7. The intelligent combat terminal for cloud-based fire protection according to claim 1, wherein: In the squadron combat module, the tasks issued by the command headquarters are understood through the combat task query menu, and the combat situation is uploaded to the command headquarters in a timely manner through the combat dynamics upload menu.

8. The Amap Cloud Fire Fighting Intelligent Operation Terminal according to claim 1, characterized in that: In the on-site command headquarters module, the command headquarters understands the combat situations of each team station through the fire scene dynamics query menu, issues combat tasks to the participating squadrons through the combat task issuance menu, and guides them to dock at appropriate combat positions.

9. The Amap Cloud Fire Fighting Intelligent Operation Terminal according to claim 1, characterized in that: In the auxiliary decision-making module, the on-site information collected can be quickly filled in by dropping down through the AI problem configuration menu. Through the AI auxiliary decision-making menu, the intelligent decision-making of deepseek can be queried. The operation procedures and key points of the demonstration in this scenario can be intuitively understood through the initial combat programming demonstration in the community. Regarding the key points of community combat, the experience and lessons of community combat are sorted out.

10. A Gaodeyun fire intelligent operation terminal according to claim 1, characterized in that: The combat terminal is equipped with Feishu, the online multi-dimensional table of WPS, and video recording.