Multi-terminal fusion fire extinguishing and rescue actual combat command system and method
Through the multi-terminal integrated firefighting and rescue practical command system, using the fire cloud database and multi-terminal interaction, the problem of low efficiency of traditional firefighting and rescue information is solved, data visualization and real-time decision support are realized, costs are reduced and the accuracy and efficiency of firefighting and rescue are improved.
Patent Information
- Application Number
- CN202510785577.6
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-06-12
- Publication Date
- 2025-10-17
AI Technical Summary
Traditional manual recording of fire conditions and information search methods are inefficient and cannot meet the needs of fast and accurate firefighting and rescue. Fire commanders lack a unified display platform and scientific data analysis to assist decision-making, and information support is insufficient.
A multi-terminal integrated firefighting and rescue command system is used, including smart mobile terminals, command platform terminals, PC Web terminals, combat terminals and input terminals. Information exchange is carried out through the fire cloud database to achieve data visualization and information push, supporting real-time decision-making.
Significantly reduce costs, and form a "one-picture" for firefighting and rescue based on GIS multi-data fusion, realize the monitoring of major hazardous sources and regional information assistance, and support rapid response and decision-making in actual combat command.
Smart Images

Figure CN120806415A_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the field of fire-fighting information technology, and relates to a multi-terminal fusion fire-fighting and rescue actual combat command system and method. BACKGROUND
[0002] With the rapid development of China's social economy, the process of industrialization and urbanization is accelerating, and the factors affecting public fire safety are increasing. In daily life, traffic accidents, chemical leakage, building fires and other types of dangerous situations are becoming more and more frequent. At the same time, natural disasters or man-made accidents that cross regions, cause great harm and have a wide impact are on the rise, and the scope and complexity of disasters and accidents are expanding, and firefighters are sometimes sacrificed in large-scale fire fighting. Therefore, timely, accurate and effective fire fighting and personnel safety are of great importance.
[0003] Fire-fighting and rescue requires a large amount of accurate comprehensive basic information, and the ability to quickly query these massive data at any time and further comprehensive analysis. These data have spatial distribution characteristics. The traditional manual recording of fire situation and searching for fire unit part information is inefficient, which delays the rescue opportunity and is difficult to meet the further analysis demand. Therefore, it is necessary to introduce a professional geographic information system (GIS) to manage complex spatial data and establish a GIS technology-based fire-fighting and rescue system. With the help of big data map, fire-fighting facilities and building information can be queried and displayed in real time, rescue forces can be deployed, and fire-fighting command decisions can be assisted to achieve fast and accurate fire-fighting and scientific and intelligent management.
[0004] Fire-fighting and rescue emergency response is characterized by a significant amount of information, but the actual amount of information obtained is far from enough. Despite efforts, the information support for fire-fighting and rescue sites is still significantly insufficient. From receiving the call, fire-fighting forces entering the site to site fighting, information collection basically depends on language reports of personal observations, and pre-planning data is difficult to use. For fire-fighting commanders, especially on-site commanders and command teams, a large amount of voice, picture, photography and text information is intertwined, there is a lack of a unified display platform, targeted information cannot be shared in an orderly manner, and scientific data analysis cannot assist decision-making, so there is an urgent need for information construction of an actual combat command platform. SUMMARY
[0005] In order to solve the above technical problems existing in the prior art, the present application provides a multi-terminal fusion fire-fighting and rescue actual combat command system and method.
[0006] The technical method of the embodiment of the present application is implemented as follows:
[0007] In a first aspect, the embodiments of the present application provide a multi-terminal fusion fire-fighting rescue combat command system, which is applied to fire-fighting rescue combat command and includes a multi-terminal and a fire cloud database, and the multi-terminal and the fire cloud database perform information interaction to realize fire-fighting rescue.
[0008] The multi-terminal includes at least an intelligent mobile terminal, a command platform terminal, a PC Web terminal, a combat terminal and an input terminal.
[0009] The intelligent mobile terminal is configured to enter a one-map drawing and fill in alarm information based on a link interface sent by the PC Web terminal in response to an alarm request initiated by an alarm person.
[0010] The command platform terminal is configured to send fire scene information, fire water source position, linkage unit information and fire navigation route to fire combat personnel in response to an alarm task in the alarm request.
[0011] The PC Web terminal is configured to receive the alarm task and visually command fire-fighting rescue through the one-map drawing.
[0012] The combat terminal is configured to respond to real-time update of fire surrounding environment and fire combat personnel information by a user and process data through a background server and a PC Web terminal logic layer to form a fire scene situation map and fire combat personnel state update information.
[0013] The input terminal is configured to generate preplan information through a preplan database by inputting an emergency preplan.
[0014] In some embodiments, the fire cloud database includes an account database, a Web database, a preplan database, a fire personnel database, a one-map database, a fire scene database, a linkage unit database and a fire cloud database.
[0015] In some embodiments, the command platform end comprises: a login verification system, a combat system, a management system;
[0016] The login verification system comprises an acquisition verification module and a cloud verification login module.
[0017] The login verification system is configured to, in response to a user's login verification request, send an acquisition login verification code request to an account verification database through a business layer and complete verification login, and realize corresponding functions by interacting with the account database.
[0018] The combat system comprises a task module, an entering one map module, a task details module, a dialing associated phone module, a navigation module, a query water source module, an immediate investigation module, an entry and exit scanning code module, and a linkage unit module.
[0019] The combat system is configured to receive the alarm task, send the alarm task to relevant information associated personnel, acquire positioning after the user starts positioning under the premise of opening the mobile phone positioning, and thereby let the user enter one map, open one map by clicking on an emergency event, use one map paper and perform auxiliary operation navigation to rush to a fire point, and interact with a one map database in a fire cloud database for information; query water source, linkage unit information, perform on-site investigation, and scan the code of the personnel entering and exiting the fire scene, and interact with a linkage unit database, a fire personnel database, and a fire cloud database in the fire cloud database for information.
[0020] The management system comprises a personal information module and a logout module.
[0021] The management system is configured to respond to a request for viewing personal information, a request for modifying personal information, and a request for exiting the system, interact with the fire personnel database and the account verification database for information, and stop or cut off information interaction with the fire cloud database after exiting.
[0022] In some embodiments, the PC Web end specifically comprises: a login system, a command system, and a maintenance system.
[0023] The login system comprises a login module, a password resetting module, and a logout module.
[0024] The login system is configured to respond to a user login request, a password modifying request, and a password finding request, and interact with the account database and the Web database for information to realize corresponding functions.
[0025] The command system comprises a police receiving module, a map setting module, a preplan information module, a force dispatching module, a rallying point module, a site information association module, a task allocation module, a fire scene personnel information module, and a regulation and support module.
[0026] The command system is used for listening, screening and identifying fire, setting up a map display, and displaying alarm points on a map, and information interaction with the Web database, the map database, the fire site information database, and the fire cloud database; controlling and commanding fire extinguishing, and displaying dispatched fire forces on a map in real time, and sending fire point plans to the fire fighting personnel, and information interaction with the fire personnel database, the linkage unit database, the plan database, and the fire cloud database; real-time monitoring and support of fire site conditions, receiving feedback of the situation of the field operation personnel and the operation terminal, real-time monitoring, task allocation, and timely support, and information interaction with the fire personnel database;
[0027] The maintenance system comprises a personnel management module, a department management module, and a vehicle management module.
[0028] The maintenance system is used for responding to user viewing requests, adding data requests, and modifying data requests, and information interaction with the Web database, the linkage unit database, and the fire personnel database.
[0029] In some embodiments, the operation terminal comprises a fire vehicle, a single-soldier operation device, and a sensor.
[0030] The fire vehicle is used for rushing to and responding to the field command post, performing information display and communication through a vehicle-mounted monitoring screen, displaying vehicle-mounted recorded field dynamic image information through multiple normal state monitoring screens, forming a bottom map of a fire site situation map through a database, incorporating field reports of scouts and information about fire personnel and articles into the fire site situation map, positioning information of a commander platform App and a vehicle operation recorder, enabling visualized command of the command center, and information interaction with the Web database, the fire cloud database, and the map database in the fire cloud database.
[0031] The single-soldier operation device is used for ensuring safety of the operation personnel, setting a gyro base point coordinate to ensure that the position of the fire operation personnel entering a fire building can be displayed on the fire site situation map, and returning personal vital sign data of the fire operation personnel, and information interaction with the Web database and the map database.
[0032] The sensor is used for detecting fire area temperature, humidity, natural gas, methane, hydrogen sulfide, carbon monoxide data, and transmitting the data into a network, monitoring a risk upgrade process of dangerous material combustion, explosion, and leakage of toxic and harmful gas / fluid, collecting and processing meteorological condition data and transmitting the data into a network in real time, incorporating the data into the fire site situation map, and information interaction with the Web database.
[0033] In some embodiments, the input terminal comprises a login and logout module, an information input module, and a plan information module.
[0034] The login and logout module is configured to interact with the account database and the fire cloud database in response to a user's request to log in or log out of a fire grid member account;
[0035] The information input module is configured to collect, aggregate, update, and maintain information to form a basic framework of a "one map"; and interact with the fire cloud database, the one map data, and the linkage unit database.
[0036] The information includes map basic information, active fire station information, satellite station information, and linkage unit information.
[0037] The preplan information module is configured to enable a rescue team to directly obtain a building plan, different fire fighting methods, and the characteristics and disposal methods of a hazard source through preplan information for rapid response to fire fighting and rescue; and interact with the preplan database.
[0038] The preplan information module includes unit preplans, high-rise fire fighting preplans, oil storage tank fire fighting preplans, chemical industrial reagent fire fighting preplans, and hazard sources.
[0039] In some embodiments, the sensors include at least temperature sensors, humidity sensors, infrared sensors, natural gas sensors, methane sensors, hydrogen sulfide sensors, and carbon monoxide sensors.
[0040] In a second aspect, an embodiment of the present application provides a multi-terminal fusion fire fighting and rescue live command method, which includes:
[0041] A multi-terminal and a fire cloud database are provided, and the multi-terminal is connected to the fire cloud database.
[0042] An alarm person sends a distress signal through an intelligent mobile terminal, a fire rescue command center sends a fire alarm information filling link to the alarm person through a Web terminal, the alarm person is automatically positioned after entering the link, selects a fire alarm type, a site of occurrence, and a person trapped situation, can add a photo, a video, and an audio, an alarm information, and upload to the fire cloud database.
[0043] A Web terminal business layer synchronously displays a rescue task, a command center performs a series of deployment, pushes a gathering place and preplan information and a rescue scheme to a fire fighting terminal, and each site preplan information is input through an input terminal and is updated in real time.
[0044] A fire fighting force understands a fire site situation through a mobile terminal App and navigates to the fire site or understands a fire situation through a fire truck on-board monitor, feeds back to the command center if a fire is too fierce and rescue force is insufficient, and the command center increases the force; or contacts surrounding linkage units for support through a live command platform.
[0045] The command center assigns tasks and exchanges information of each fire brigade through fire field management and control, ensures the safety of fire fighters and supports according to the data returned by the on-site operation terminal.
[0046] The multi-terminal fusion fire extinguishing and rescue actual combat command system provided by the embodiment of the present application can significantly reduce the cost without the investment of the underlying hardware of the user, can fuse the multi-element data of fire extinguishing and rescue based on GIS, form a fire extinguishing and rescue "one map" based on big data with the fire extinguishing and rescue actual combat information demand as the core, and provide services for the actual combat command through data visualization and information pushing and the like, can effectively identify and monitor the major hazard sources and key risk points through big data analysis as the technical means, realize the fire risk grading control, provide regional fire information assistance for the actual combat command, and realize the powerful support for the on-site decision through the real-time analysis of the dynamic data generated in the actual combat process, and can realize the information interaction sharing, fire extinguishing and rescue command, fire field information guarantee and the like through the multi-screen association interactive system based on the Internet+. BRIEF DESCRIPTION OF DRAWINGS
[0047] Figure 1 The multi-terminal fusion fire extinguishing and rescue actual combat command platform architecture provided by the embodiment of the present application is shown in the figure;
[0048] Figure 2 The multi-terminal fusion fire extinguishing and rescue actual combat command platform model provided by the embodiment of the present application is shown in the figure;
[0049] Figure 3 The fire field management and control logic diagram of the actual combat command platform provided by the embodiment of the present application is shown in the figure;
[0050] Figure 4 The PC Web end link interface received by the intelligent mobile terminal provided by the embodiment of the present application is shown in the figure;
[0051] Figure 5 The immediate alarm interface of the intelligent mobile terminal provided by the embodiment of the present application is shown in the figure;
[0052] Figure 6 The PC Web end alarm receiving interface provided by the embodiment of the present application is shown in the figure;
[0053] Figure 7 The task reminding interface of the command platform App provided by the embodiment of the present application is shown in the figure;
[0054] Figure 8 The immediate investigation interface of the command platform App provided by the embodiment of the present application is shown in the figure;
[0055] Figure 9The command platform App personnel information interface provided by the embodiment of the present application;
[0056] Figure 10 The PC Web terminal personnel information interface provided by the embodiment of the present application;
[0057] Figure 11 The combat terminal feedback generates a trend chart on the PC Web terminal provided by the embodiment of the present application;
[0058] Figure 12 The preplan information interface entered by the entry terminal on the PC Web terminal provided by the embodiment of the present application;
[0059] Figure 13 The one chart interface generated by the entry terminal entering the fire-fighting cloud information provided by the embodiment of the present application. DETAILED DESCRIPTION
[0060] In order to make the purpose, technical scheme and advantages of the present application clearer, the present application will be further described in detail below with reference to the drawings, and the described embodiments should not be regarded as limiting the present application. All other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.
[0061] In the following description, "some embodiments" are described, which describe a subset of all possible embodiments, but it can be understood that "some embodiments" can be the same subset or different subsets of all possible embodiments, and can be combined with each other without conflict. Unless otherwise defined, all technical and scientific terms used in the embodiments of the present application are the same as the meanings commonly understood by those skilled in the art to which the embodiments of the present application belong. The terms used in the embodiments of the present application are only for the purpose of describing the embodiments of the present application, and are not intended to limit the present application.
[0062] The embodiments of the present application provide a multi-terminal fusion fire extinguishing and rescue actual combat command system, which is applied to fire extinguishing and rescue actual combat command, and comprises a multi-terminal and a fire-fighting cloud database, and the multi-terminal and the fire-fighting cloud database perform information interaction to realize fire extinguishing and rescue.
[0063] The multi-terminal at least comprises an intelligent mobile terminal, a command platform terminal, a PC Web terminal, a combat terminal and an entry terminal.
[0064] The intelligent mobile terminal is used for entering a one chart drawing and filling in alarm information based on a link interface of the PC Web terminal in response to an alarm request initiated by an alarm personnel; the intelligent mobile terminal performs information interaction with a fire scene database and a one chart database in the fire-fighting cloud database;
[0065] The command platform end is used for sending fire scene information, fire water source position, linkage unit information and fire navigation route to fire fighting personnel in response to the alarm task in the alarm request; the command platform end and the account database, the one map database, the fire field database, the linkage unit database and the fire cloud database in the fire cloud end database perform information interaction;
[0066] The PC Web end is used for receiving the alarm task and visually commanding fire extinguishing and rescue through the one map drawing paper; the PC Web end and the account database, the one map database, the fire field database, the preplan database, the fire fighting personnel database, the linkage unit database and the fire cloud database perform information interaction;
[0067] The operation terminal is used for responding to real-time update of fire surrounding environment and fire fighting personnel information by a user; and processing data through a background server and the PC Web end logic layer to form a fire field situation map and fire fighting personnel state update information; the operation terminal and the Web database in the fire cloud end database, the fire field database and the fire fighting personnel database perform information interaction;
[0068] The input terminal is used for generating preplan information through a preplan database by inputting an emergency preplan; the input terminal and the account database and the preplan database perform information interaction.
[0069] The multi-terminal fusion fire extinguishing and rescue actual combat command system provided by the embodiment can significantly reduce cost without the investment of user bottom hardware; based on GIS, the system fuses multi-element data of fire extinguishing and rescue, takes fire extinguishing and rescue actual combat command information demand as a core, forms a fire extinguishing and rescue "one map" based on big data, and provides services for actual combat command through data visualization and information pushing and the like; taking big data analysis as a technical means, the system effectively identifies and monitors major hazard sources and key risk points, realizes fire risk grading control, provides regional fire information assistance for actual combat command, and realizes strong support for on-site decision making through real-time analysis of dynamic data generated in the actual combat process; based on the Internet+, the multi-screen association interactive system can realize information interaction sharing, fire extinguishing and rescue command, fire field information guarantee and the like.
[0070] In some embodiments, the intelligent mobile terminal is used for responding to an alarm request of an alarm person, entering a one map drawing paper and jumping to a browser to fill in alarm information through dialing 119 alarm, receiving a link interface sent by a Web and sending a short message, and performing information interaction with the fire field database and the one map database in the fire cloud end database.
[0071] In some embodiments, the command platform App is used for receiving task assignments of fire fighting forces, going to disaster relief and auxiliary help, and the terminal comprises a login verification system, a combat system and a management system.
[0072] The login verification system responds to a user login verification request, sends a login verification code request to an account verification database through an App service layer, completes verification login, and realizes corresponding functions by interacting with an account database in a fire cloud database.
[0073] The combat system is used for receiving a police task, displaying an alarm person in an App police interface as an emergency event through a fire database, clicking a task detail to view, interacting with a fire database in a fire cloud database, the task detail including alarm information and investigation information, the alarm information including date, time, police location, fire alarm type, occurrence place, personnel trapped, telephone, picture, video and recording provided by a third party alarm person to a task database in the fire cloud database, the investigation information being returned to an investigation information database in the fire cloud database by on-site investigation of a fire fighter; responding to a user start positioning and positioning request, obtaining positioning after the user starts positioning under the premise of starting mobile phone positioning, so as to let the user enter a map, opening the map by clicking the emergency event, and interacting with a map database in the fire cloud database; using a map paper and auxiliary operation to navigate to a fire point, interacting with a map database in the fire cloud database, the auxiliary operation including planning preference, broadcast reminder, road condition viewing, full view map, map direction, zoom in and zoom out; inquiring about water sources around the fire point, interacting with a fire cloud database in the fire cloud database, and displaying the obtained fire water source position in the form of a fire hydrant identifier on an App map interface; user investigation, jumping to an immediate investigation interface opened by a browser through an application programming interface, the immediate investigation interface including a small map, investigation position, investigation topic, investigation abstract, photo or video and recording; dialing a telephone, seeking assistance and help, the dialing telephone dialing a telephone to an alarm person in a navigation module, dialing to a person uploading investigation information in a on-site investigation module, and dialing to a corresponding unit contact in a linkage unit module; fire field personnel exit or enter a fire field to scan a code, and interact with a fire fighter database in the fire cloud database; the scanning bar code is divided into entering fire field personnel and leaving fire field personnel, and the result includes name, team name, date and time; a user request to view linkage units, interacting with a linkage unit database in the fire cloud database, and displaying the obtained linkage unit information on an App page, the linkage unit information including unit name, contact name and telephone.
[0074] The management system interacts with the fire personnel database and the account verification database in the fire cloud database in response to the request for viewing, modifying personal information and exiting the system, and the information interaction with the fire cloud database stops or is cut off after exiting.
[0075] In some embodiments, the PC Web terminal is used for receiving an alarm, dispatching forces and controlling a fire scene, and the terminal comprises a login system, a command system and a maintenance system.
[0076] The login system is used for responding to the request for user login, modifying a password or retrieving a password, and achieving the corresponding functions by interacting with the account database and the Web database in the fire cloud database; the user exits the PC Web terminal, and the information interaction with the fire cloud database stops or is cut off; the login system comprises a login module, a password resetting module and a logout module.
[0077] The command system is used for listening to, screening and identifying a fire and setting a map display, displaying an alarm point on the map, and interacting with the Web database, the map database, the fire scene information database and the fire cloud database in the fire cloud database; the command system is used for commanding and regulating fire extinguishing and commanding, displaying the dispatched fire forces on the map in real time, sending a fire point plan to fire fighting personnel, and interacting with the fire personnel database, the linkage unit database, the plan database and the fire cloud database in the fire cloud database; the command system is used for real-time monitoring and supporting a fire scene, receiving feedback from the field operation personnel and the operation terminal, real-time monitoring, distributing tasks and timely supporting, and interacting with the fire personnel database in the fire cloud database; the command system comprises an alarm receiving module, a map setting module, a plan information module, a force dispatching module, a gathering place module, a field information correlation module, a task distribution module, a fire scene personnel information module and a regulation and support module.
[0078] The maintenance system is used for responding to the request for user viewing, adding or modifying information, and interacting with the Web database, the linkage unit database and the fire personnel database in the fire cloud database; the maintenance system comprises a personnel management module, a department management module and a vehicle management module.
[0079] In some embodiments, the operation terminal is used for rushing to a scene, extinguishing a fire, rescuing equipment and auxiliary equipment and commanding, and the terminal comprises a fire vehicle, a single soldier operation equipment and a sensor.
[0080] The fire vehicle is used for going to and responding to the scene command post, information display and communication are carried out through the vehicle-mounted monitoring screen, multiple normal state monitoring screens are used for displaying, the branch team can call team statistical data, information of personnel of each team in the field and their physical information, the branch team can call equipment statistical data, information of equipment model, performance and key parameters in the field, dynamic image information of the scene shot by the vehicle-mounted camera, physical information of the fighter and equipment parameters, a simple diagram of the burning building and its surrounding environment is drawn, standby / operation area is marked around the burning building, warning area and evacuation channel area are marked, a bottom map of the fire field situation map is formed, the information of the reconnaissance personnel on the scene and the information of the fire personnel are included in the fire field situation map, the positioning information of the commander's command platform App and the vehicle operation recorder is visualized, the command center can visually command, and information interaction is carried out with the Web database in the fire cloud database, the fire cloud database and the one-map database.
[0081] The single soldier combat equipment sets the coordinates of the gyroscope base point to ensure that the position of the fighter entering the fire building can be displayed on the fire field situation map, the hand-held data is displayed on the background server of the command platform App in the form of Bluetooth and can be transmitted back in real time. The physical information of each member and the equipment data can be automatically transmitted back, the personal physical data is automatically and continuously transmitted back, the time sequence data analysis of the personal physical data can determine the physical consumption degree, the comprehensive analysis of the physical data and the positioning instrument data can automatically send a hierarchical early warning to the rear, if the highest level early warning of the relevant personal physical data is not manually eliminated in the original position, the fire special mobile phone will enter the alarm state, and the hand-held device will continuously indicate the position by sound and light.
[0082] The sensor carries the sensor to detect the temperature, humidity and gas data of the fire area, and transmits back after entering the network, monitors the risk upgrading process of dangerous material burning, explosion, toxic and harmful gas / fluid leakage, collects and processes meteorological condition data and transmits back in real time, and includes the data in the fire field situation map, and carries out information interaction with the Web database in the fire cloud database.
[0083] In some embodiments, the input terminal is used for collecting, summarizing, updating and maintaining information, and the terminal includes a login and logout module, an information input module and a preplan information module.
[0084] The login and logout module responds to the request of user login and logout of the fire grid member account, and interacts with the account database of the fire cloud database and the fire cloud database.
[0085] An information input module is used for collecting, summarizing, updating and maintaining information to form a basic framework of "a map"; information of the current fire fighting system and information collected therefrom can be directly read into the platform "a map" category by using an interface program, a grid member system for effectively maintaining and updating fire information needs to be built, the grass-roots fire grid members input through an account to automatically summarize in a table account manner, and are included in the system to ensure the regular updating of "a map" information in a sustainable manner, ensure the integrity and accuracy of the information, realize the automatic classification and orderly preservation of all collected information, add or automatically add collection time and other characteristic parameters to all information, provide a reminder for possible aging information for timely updating, and interact with the fire cloud database, "a map" data and the database of the linkage unit of the fire cloud database; the information of the fire fighting system and the information collected therefrom include map basic information, active fire station information, satellite station information and linkage unit information.
[0086] A preplan information module is used for quick response of fire fighting and rescue and quick understanding of the fire site, through the preplan information, the rescue team can see the building plan, the fire fighting methods of different fires and the characteristics and disposal methods of the dangerous sources, and interact with the preplan database of the fire cloud database; the preplan information module includes unit preplan, high-rise fire fighting preplan, oil storage tank fire fighting preplan, chemical industrial reagent fire fighting preplan and dangerous source.
[0087] In some embodiments, the fire cloud database includes an account database, a Web database, a preplan database, a fire fighter database, a "a map" database, a fire site database, a linkage unit database and a fire cloud database.
[0088] Preferably, the intelligent mobile terminal is one of a smart phone terminal or a smart tablet terminal.
[0089] Preferably, the PC Web end of the command platform faces a notebook computer and a desktop computer.
[0090] Preferably, the App of the command platform faces an Android and an IOS platform.
[0091] Preferably, the input terminal is one of a mobile phone, a computer and a tablet installed with a browser.
[0092] Preferably, the sensor is a temperature sensor, a humidity sensor, an infrared sensor, a natural gas sensor, a methane sensor, a hydrogen sulfide sensor and a carbon monoxide sensor.
[0093] Preferably, the multi-terminal fusion fire fighting and rescue command platform faces a fire rescue command center.
[0094] Preferably, the "a map" paper is based on the Gaode map. Figure 2The developed use of big data cloud computing calls for a large amount of dynamic data collection and analysis, and the fire information is collected and applied to the drawing through VMare virtualization management, Hadoop big data infrastructure and Spark high-performance computing, and the special map for fire fighting is applicable to the special map for fire fighting.
[0095] Preferably, the information interaction is in the fire cloud database special for fire fighting; and the multi-terminal and the database are electrically connected in a bidirectional mode.
[0096] In the following, the exemplary application of the embodiment of the application in an actual application scenario will be described.
[0097] The embodiment of the application also provides a rescue actual combat command platform implementation method, which comprises the following steps:
[0098] (1) providing a multi-terminal and a fire cloud database, and a required login terminal user logs in successfully, and the multi-terminal and the fire cloud database are connected;
[0099] (2) receiving an alarm: an alarm person finds a fire, dials 119 through an intelligent mobile terminal, the fire rescue command center excludes irrelevant fire alarms, sends information to the alarm person through a Web terminal, the alarm person enters the link to automatically locate the position of the alarm person, the alarm person selects a fire alarm type, a place of occurrence, and a person trapped situation, can add a photo, a video and an audio recording, and the alarm information is uploaded to a database;
[0100] (3) commanding and dispatching: a Web terminal business layer synchronously displays a rescue task, a command center performs a series of deployment, pushes a gathering place and preplan information and a scheme to a fire fighting terminal, and each place preplan information is input through an input terminal and is updated in real time;
[0101] (4) rushing to the scene: fire fighting forces understand a fire scene through a mobile terminal App and navigate to go to the scene or understand a fire through a vehicle-mounted monitoring screen of a fire truck, if a fire is too fierce and rescue forces are insufficient, feedback is given to the command center, the command center increases the forces, and the actual combat command platform App can also be used to contact nearby joint units for support,
[0102] (5) fire scene control: the command center performs task allocation and information interaction of each fire fighting team through fire scene control, ensures the safety of fire fighting personnel, and supports according to data returned by a scene operation terminal.
[0103] Preferably, the user verification is performed by filling in a mobile phone number to send a login request, a login verification module accesses a cloud database, determines that the phone number is a verified phone number in an account verification database, calls a third-party short message interface to send a login verification code to the phone number, the phone number is not in the fire cloud database, and the account verification database does not send the verification code, and the login account is a verified mobile phone number in the account database.
[0104] The multi-terminal fusion fire-fighting rescue actual combat command platform, as shown in the figure, comprises a multi-terminal and a fire cloud database. Figure 1
[0105] As shown in the figure, the multi-terminal is composed of a smart mobile terminal, a command platform App, a PC Web terminal, a combat terminal, and an input terminal. Figure 2
[0106] The smart mobile terminal is used for responding to an alarm request of an alarm person, dialing 119 to alarm, receiving a link interface sent by a Web, entering a figure paper, and jumping to a browser to fill in alarm information. Figure 4 Figure 5
[0107] The command platform App comprises: a login verification system, which responds to a user login verification request, sends a login verification code request to an account verification database through an App business layer to complete verification login, and interacts with an account database in the fire cloud database; a combat system, which is used for receiving an alarm task, dialing a phone of a related information associated person, interacting with a fire scene database in the fire cloud database, obtaining a location after starting positioning under the premise of starting positioning of a user, and letting the user enter a figure, opening the figure by clicking an emergency event, using a figure paper and performing auxiliary operation navigation to rush to a fire point, and interacting with a figure database in the fire cloud database; a management system, which responds to a request of viewing, modifying personal data, and exiting the system, interacts with a fire personnel database and the account verification database in the fire cloud database, and stops or cuts off information interaction with the fire cloud database after exiting. Figure 7 Figure 8 Figure 9 The management system responds to a request of viewing, modifying personal data, and exiting the system, interacts with a fire personnel database and the account verification database in the fire cloud database, and stops or cuts off information interaction with the fire cloud database after exiting.
[0108] The PC Web terminal comprises: a login system, which responds to a user login, password modification, or password recovery request, interacts with an account database and a Web database in the fire cloud database to realize corresponding functions, and stops or cuts off information interaction with the fire cloud database after the user exits the PC Web terminal; and a command system, which is used for answering, screening, and identifying a fire and setting a figure display, and displays an alarm point on the figure, as shown in the figure. Figure 13 Figure 6 The system interacts with the Web database, a map database, a fire site information database, and a fire cloud database in the fire cloud database; controls and commands the fire extinguishing; and displays the dispatched fire forces on a map in real time and sends the fire point plan to the fire fighting personnel. Figure 12 The system interacts with the fire personnel database, a linkage unit database, a plan database, and a fire cloud database in the fire cloud database; monitors the fire site in real time, such as Figure 10 The system interacts with the fire personnel database, a linkage unit database, a plan database, and a fire cloud database in the fire cloud database; monitors the fire site in real time, such as Figure 3 The system interacts with the fire personnel database, a linkage unit database, a plan database, and a fire cloud database in the fire cloud database; monitors the fire site in real time, such as
[0109] The operation terminal includes: a fire vehicle: used to rush to and respond to the site command center, display information and communicate through the vehicle-mounted monitoring screen, and display the on-site dynamic image information recorded by the vehicle-mounted camera on the multi-state monitoring screen; a database forms a bottom map of the fire site situation map, reports the site of the scout, and the fire personnel, such as Figure 10 The system interacts with the fire personnel database, a linkage unit database, a plan database, and a fire cloud database in the fire cloud database; monitors the fire site in real time, such as Figure 11 The system interacts with the fire personnel database, a linkage unit database, a plan database, and a fire cloud database in the fire cloud database; monitors the fire site in real time, such as
[0110] The input terminal includes: a login and logout module: responds to the user's request for logging in and logging out of the fire grid employee account, and interacts with the account database and the fire cloud database in the fire cloud database; an information input module: used for collecting, summarizing, updating, and maintaining the basic framework of "a map", such as Figure 13The information of the current fire fighting system and the information of the collection can be incorporated into the platform "one map" category by using the interface program to read in directly, the grid member system for realizing the effective maintenance and update of the fire fighting information needs to be built, the primary fire fighting grid member is automatically summarized in the form of account input, is incorporated into the system, the sustainability is guaranteed to the regular update of "one map" information, the integrity and accuracy of the information are ensured, the automatic classification and ordered preservation of all the collected information are realized, the characteristic parameters such as collection time are added or automatically added to all the information, the possible aging information is reminded and updated in time, and the fire cloud database, one map data and linkage unit database of the fire cloud database are interacted. Figure 12 The preplan database of the fire cloud database is interacted.
[0111] Based on such understanding, the technical solution of the embodiment of the present application or the part that contributes to the related art can be embodied in the form of a software product, the computer software product is stored in a storage medium, includes a plurality of instructions for making a terminal execute all or part of the method described in the embodiments of the present application. The storage medium described above includes: U disk, mobile hard disk, read only memory (ROM, Read Only Memory), magnetic disk or optical disk and various program code storage media. Therefore, the embodiment of the present application is not limited to any specific hardware and software combination.
[0112] Correspondingly, the embodiment of the present application provides a mine ventilation system automatic regulation and control equipment, Figure 4 is the composition structure diagram of the mine ventilation system automatic regulation and control equipment provided by the embodiment of the present application, as shown in Figure 4 The mine ventilation system automatic regulation and control equipment 400 at least includes: a processor 401 and a computer readable storage medium 402 configured to store executable instructions, wherein the processor 401 usually controls the overall operation of the mine ventilation system automatic regulation and control equipment 400. The computer readable storage medium 402 is configured to store instructions and applications executable by the processor 401, and can also cache data to be processed by the processor 401 and modules in the mine ventilation system automatic regulation and control equipment 400, which can be realized by FLASH or RAM.
[0113] In some embodiments, the storage medium can be a computer-readable storage medium, such as a ferroelectric memory (FRAM), a read only memory (ROM), a programmable read only memory (PROM), an erasable programmable read only memory (EPROM), an electrically erasable programmable read only memory (EEPROM), a flash memory, a magnetic surface memory, an optical disk, or a compact disk read only memory (CD-ROM), and the like. It can also be various devices including one or any combination of the above memories.
[0114] In some embodiments, the executable instructions can be in the form of programs, software, modules, scripts, or code, written in any form of programming language, including compiled or interpreted languages, or declarative or procedural languages, and can be deployed in any form, including as a stand-alone program or as a module, component, subroutine, or other unit suitable for use in a computing environment.
[0115] As an example, the executable instructions can or can not correspond to a file in a file system, can be stored in a part of a file that holds other programs or data, such as one or more scripts stored in a hypertext markup language (HTML) document, in a single file dedicated to the program in question, or in multiple coordinated files, such as files that store one or more modules, sub programs, or portions of code. The executable instructions can be deployed to be executed on one electronic device or on multiple electronic devices that are located at one site or that are distributed across multiple sites and that are interconnected through a communication network.
[0116] The above description is merely illustrative of the embodiments of the present application and is not intended to limit the scope of the present application. Any modification, equivalent replacement, and improvement made within the spirit and scope of the present application shall fall within the scope of the present application.
[0117] It is to be understood that the terminology "one embodiment" or "an embodiment" used throughout this specification means that a particular feature, structure or characteristic described is included in at least one embodiment of the application. Therefore, appearances of the phrases "in one embodiment" or "in an embodiment" in various places throughout this specification are not necessarily referring to the same embodiment. Furthermore, the particular features, structures or characteristics can be combined in any suitable manner in one or more embodiments. It is to be understood that the sequence of steps in the above-described various embodiments of the present application does not mean that the execution order of the steps is prior or posterior, and the execution order of the steps should be determined according to their functions and inherent logic, and should not constitute any limitation on the implementation process of the embodiments of the present application. The sequence of the above-described embodiments of the present application is only for description, and does not represent the advantages or disadvantages of the embodiments.
[0118] It should be noted that, in this document, the terms "comprises", "comprising", or any other variation thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus. Without further limitation, an element preceded by "comprises... a" does not, without more constraints, foreclose the existence of additional identical elements in the process, method, article, or apparatus that comprises the recited element. In several embodiments of the present application, it is to be understood that the disclosed apparatus and methods can be implemented in other ways. The above-described apparatus embodiments are merely illustrative, for example, the division of the units is only a logical functional division, and actual implementation can have another division, such as: multiple units or components can be combined, or can be integrated into another system, or some features can be omitted or not executed.
[0119] The above description is only a specific implementation of the present application, but the protection scope of the present application is not limited thereto, and any person skilled in the art can easily think of changes or replacements within the technical scope disclosed by the present application, which should be covered within the protection scope of the present application. Therefore, the protection scope of the present application should be subject to the protection scope of the claims.
Claims
1. A multi-terminal integrated firefighting and rescue combat command system, which is applied to firefighting and rescue combat command, characterized in that: include: Multiple terminals and a fire protection cloud database, wherein the multiple terminals and the fire protection cloud database exchange information to achieve fire fighting and rescue; The multiple terminals include at least a smart mobile terminal, a command platform terminal, a PC Web terminal, a combat terminal, and an input terminal; The smart mobile terminal is used to respond to the alarm request initiated by the alarm personnel, enter the one-picture drawing based on the link interface sent by the PC Web terminal and fill in the alarm information; the smart mobile terminal interacts with the fire scene database and the one-picture database in the fire protection cloud database; The command platform is configured to respond to the alarm task in the alarm request and send fire scene information, fire water source location, linkage unit information, and fire navigation route to firefighters; the command platform exchanges information with the account database, the one-map database, the fire scene database, the linkage unit database, and the fire cloud database in the fire cloud database; The PC Web terminal is used to receive the alarm task and visually command the fire fighting and rescue through the one-picture drawing; the PC Web terminal exchanges information with the account database, the one-picture database, the fire scene database, the emergency plan database, the firefighter database, the linkage unit database, and the fire cloud database; The combat terminal is used to respond to real-time updates from users on the fire surrounding environment and firefighter information; and processes data through the backend server and the PC Web-side logic layer to form a fire scene situation map and firefighter status update information; the combat terminal exchanges information with the Web database, the fire scene database, and the firefighter database in the fire cloud database; The input terminal is used to generate emergency plan information through the emergency plan database by inputting the emergency plan; the input terminal exchanges information with the account database and the emergency plan database.
2. The system according to claim 1, wherein: The fire protection cloud database includes: the account database, the web database, the plan database, the fire personnel database, the one-picture database, the fire scene database, the linkage unit database and the fire protection cloud database.
3. The system according to claim 2, characterized in that The command platform includes: a login verification system, a combat system, and a management system; The login verification system includes an acquisition verification module and a cloud verification login module; The login verification system is used to respond to the user's login verification request, send a request to obtain a login verification code to the account verification database through the business layer and complete the verification login, and realize the corresponding function by interacting with the account database; The combat system includes a task module, a map entry module, a task details module, a call-related phone module, a navigation module, a water source query module, an immediate reconnaissance module, an entry and exit code scanning module, and a linkage unit module; The combat system is used to receive the alarm task and send the alarm task to relevant information related personnel; after the user starts positioning with the mobile phone positioning turned on, the user obtains the positioning so as to enter a map, open the map by clicking on the emergency event, use the map drawing and perform auxiliary operations to navigate to the fire point, and exchange information with a map database in the fire cloud database; query water sources, linkage unit information, conduct on-site investigation, and scan codes for people entering and leaving the fire scene, and exchange information with the linkage unit database, fire personnel database, and fire cloud database in the fire cloud database; The management system includes a personal information module and a logout module; The management system is used to respond to requests to view personal information, modify personal information, and exit the system. The management system interacts with the firefighter database and the account verification database. After exiting, the information interaction with the firefighting cloud database is stopped or disconnected.
4. The system according to claim 2, wherein: The PC Web terminal specifically includes: login system, command system, and maintenance system; The login system includes a login module, a password reset module, and a logout module; The login system is used to respond to user login requests, password modification requests, and password retrieval requests. The login system interacts with the account database and the Web database to implement corresponding functions. The command system includes an alarm receiving module, a drawing setting module, a plan information module, a force dispatching module, a gathering place module, a scene information association module, a task allocation module, a fire scene personnel information module, and a control and support module; The command system is used to answer calls, screen and identify fire situations, and set up a map display, and display the alarm points on a map, and exchange information with the Web database, the map database, the fire scene information database, and the fire cloud database; command the control and direction of fire extinguishing, and display the dispatched firefighting forces on a map in real time, send the fire point plan to the firefighters, and interact with the firefighter database, the linkage unit database, the plan database, and the fire cloud database; monitor and support the fire scene in real time, receive feedback from on-site combat personnel and combat terminals for real-time monitoring, assign tasks and provide timely support, and exchange information with the firefighter database; The maintenance system includes a personnel management module, a department management module, and a vehicle management module; The maintenance system is used to respond to user viewing requests, data addition requests, and data modification requests, and to interact with the Web database, the linkage unit database, and the firefighter database.
5. The system according to claim 2, wherein: The combat terminal includes: fire fighting vehicles, individual combat equipment and sensors; The fire truck is used to rush to and respond to the on-site command center, and displays and communicates information through the on-board monitoring screen. Multiple normal monitoring screens display the on-site dynamic image information taken by the vehicle, and form a base map of the fire situation map through the database. The on-site report of the scout and the information related to the firefighters and items are incorporated into the fire situation map. The commander and fighter command platform app and the positioning information of the vehicle operation recorder allow the command center to visually command and exchange information with the web database, fire cloud database, and one-map database in the fire cloud database; Individual combat equipment is used to ensure the safety of combatants, set the gyroscope base point coordinates to ensure that the position of firefighters entering the fire building can be displayed on the fire situation map, and return the personal vital sign data of the firefighters to exchange information with the web database and the one-image database; The sensor is used to detect the temperature, humidity, natural gas, methane, hydrogen sulfide, and carbon monoxide data in the fire area and transmit them to the network. At the same time, it monitors the escalating process of the risk of hazardous material combustion, explosion, and toxic and harmful gas / fluid leakage, collects and processes meteorological condition data and transmits it in real time, incorporates it into the fire situation map, and interacts with the web database.
6. The system according to claim 2, wherein: The input terminal includes: a login and logout module, an information input module, and a plan information module; The login and logout module is used to respond to user requests to log in and out of the fire grid member account and interact with the account database and the fire cloud database; The information entry module is used to collect, aggregate, update, and maintain information to form the basic framework of "one map"; it interacts with the fire cloud database, the one map data, and the linkage unit database; The information includes basic map information, active fire station information, satellite station information, and linked unit information; The emergency plan information module is used for rapid response to firefighting and rescue. Through the emergency plan information, the rescue team can directly obtain the building floor plan, different fire fighting methods, and the characteristics and treatment methods of the hazard source, and interact with the emergency plan database; The emergency plan information module includes unit emergency plans, high-rise fire extinguishing plans, oil storage tank fire extinguishing plans, chemical industry reagent fire extinguishing plans, and hazardous sources.
7. The system according to claim 5, characterized in that The sensors include at least a temperature sensor, a humidity sensor, an infrared sensor, a natural gas sensor, a methane sensor, a hydrogen sulfide sensor, and a carbon monoxide sensor.
8. A multi-terminal integrated firefighting and rescue combat command method, characterized in that: The method comprises: Providing multiple terminals and a fire protection cloud database, and establishing a connection between the multiple terminals and the fire protection cloud database; The alarm personnel sends a distress signal through a smart mobile terminal, and the fire rescue command center sends a fire alarm information filling link to the alarm personnel through the web terminal. After the alarm personnel enters the link, the alarm personnel's position is automatically located. The alarm personnel selects the fire type, location, and trapped personnel situation, and can add photos, videos, and recordings, as well as alarm information, and upload them to the fire cloud database; The web-side business layer displays rescue missions simultaneously, and the command center makes a series of arrangements, pushing assembly location and emergency plan information and rescue plans to the firefighting operation terminal. Emergency plan information for each location is entered and updated in real time through the input terminal. Firefighters can use the mobile app to understand the fire scene and navigate to it, or use the fire truck's onboard monitoring screen to understand the fire situation. If the fire is too intense and the firefighting force is insufficient, the firefighting force will be informed to the command center, which will dispatch additional forces. Alternatively, the firefighting force can contact surrounding units for support through the actual combat command platform. The command center allocates tasks and exchanges information among fire brigades through fire scene management and control, ensuring the safety of firefighters and providing support based on data sent back by on-site combat terminals.