A fire dispatch management and monitoring method and system

By generating a two-layer correlation diagram and building a scheduling management system for the plan decision-making submodule and real-time decision-making submodule, the problem of low level of fire rescue informationization is solved, and more efficient fire rescue informationization and command and dispatching capabilities are achieved, and the informatization and dispatching management capabilities of port fire emergency rescue are improved.

CN116543530BActive Publication Date: 2025-08-12NINGBO PORT FIRE CONTROL TECH SERVICE CO LTD +1
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Patent Information

Application Number
CN202310664858.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2023-06-06
Publication Date
2025-08-12
Estimated Expiration
2043-06-06

AI Technical Summary

Technical Problem

In the existing technology, the degree of informatization of fire rescue is low, the command and dispatch capabilities are insufficient, and the information technology support is lacking, especially in the handling of major disasters, which lacks key information and intelligent command and dispatch capabilities.

Method used

Collect basic information in the target area to generate a two-layer correlation diagram, build a scheduling management module including a plan decision submodule and a real-time decision submodule, receive alarm event information, determine the scheduling decision plan and execution instructions, send scheduling execution information to the target terminal, and monitor and coordinate the plan through the real-time decision submodule, generate and adjust scheduling information for real-time scheduling management.

Benefits of technology

The informatization level of fire rescue and command and dispatch capabilities have been improved, and more efficient on-site emergency rescue management has been achieved.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention discloses a method and system for fire dispatch management and monitoring, which relates to the field of data processing technology. The method comprises: collecting basic information of a target area, generating a replica map of the area, building a dispatch management module including a pre-plan decision submodule and a real-time decision submodule, receiving alarm event information, determining a dispatch decision plan and a dispatch execution instruction by the pre-plan decision submodule, sending dispatch execution information to a target terminal based on the dispatch decision plan and the dispatch execution instruction, monitoring and coordinating the dispatch decision plan execution based on the real-time decision submodule, generating adjusted dispatch information, matching the adjusted dispatch information with the target terminal, and performing real-time dispatch management based on the matching results. The present invention solves the technical problems of low fire rescue informationization and low command and dispatch capabilities in the prior art, and achieves the technical effect of improving the fire rescue informationization and command and dispatch capabilities.
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Description

Technical Field

[0001] The present invention relates to the technical field of data processing, and in particular to a method and system for fire dispatch management and monitoring. Background Art

[0002] Most ports are multifunctional, comprehensive, modern deep-water ports that integrate inland ports, estuary ports, and seaports. Port areas contain a variety of flammable, explosive, and high-risk combustible materials. An explosion or leak of these materials could cause serious accidents, resulting in casualties, property damage, and significant environmental pollution. However, current port rescue efforts primarily consist of firefighting companies' squadrons and fire safety personnel from various terminal companies. Port emergency rescue efforts are currently underdeveloped and rely heavily on traditional firefighting and rescue methods, lacking the technical support of information technology. This is particularly true for major disaster response, where critical information and intelligent command and dispatch capabilities are lacking. Summary of the Invention

[0003] The present application provides a method and system for fire dispatch management and monitoring, which is used to solve the technical problems of low level of informationization of fire rescue and low command and dispatch capabilities in the existing technology.

[0004] The first aspect of the present application provides a method for fire dispatch management and monitoring, the method comprising: collecting basic information of a target area and generating a regional replica map, wherein the regional replica map is a two-layer association map; building a dispatch management module based on the regional replica map, wherein the dispatch management module comprises a plan decision submodule and a real-time decision submodule, and the real-time decision submodule is wirelessly connected to a dispatch device; receiving alarm event information, determining a dispatch decision plan based on the plan decision submodule, and a dispatch execution instruction is a synchronously generated information; sending dispatch execution information to a target terminal based on the dispatch decision plan and the dispatch execution instruction, and the target terminal having a temporary interaction function; monitoring and coordinating the dispatch decision plan based on the real-time decision submodule, and generating adjusted dispatch information; matching the adjusted dispatch information with the target terminal, and performing real-time dispatch management based on the matching result.

[0005] The second aspect of the present application provides a fire dispatch management and monitoring system, the system comprising: an area replica map generation module, the area replica map generation module is used to collect basic information of the target area and generate an area replica map, the area replica map is a two-layer association map; a dispatch management module construction module, the dispatch management module construction module is used to build a dispatch management module based on the area replica map, the dispatch management module includes a plan decision submodule and a real-time decision submodule, the real-time decision submodule is wirelessly connected to the dispatch equipment; a dispatch decision scheme determination module, the dispatch decision scheme determination module is used to receive alarm event information based on the plan The decision-making submodule determines the scheduling decision plan, and the scheduling execution instruction is the synchronous generation information; the scheduling execution information sending module, the scheduling execution information sending module is used to send scheduling execution information to the target terminal based on the scheduling decision plan and the scheduling execution instruction, and the target terminal has a temporary interaction function; the adjustment scheduling information generation module, the adjustment scheduling information generation module is used to monitor and coordinate the scheduling decision plan based on the real-time decision submodule, and generate adjustment scheduling information; the real-time scheduling management module, the real-time scheduling management module is used to match the adjustment scheduling information with the target terminal, and perform real-time scheduling management based on the matching result.

[0006] One or more technical solutions provided in this application have at least the following technical effects or advantages:

[0007] The present application provides a method for fire dispatch management and monitoring, which relates to the field of data processing technology. By collecting basic information of the target area, generating a regional replica map, building a dispatch management module including a plan decision submodule and a real-time decision submodule, receiving alarm event information, the plan decision submodule determines the dispatch decision plan and dispatch execution instructions, and based on the dispatch decision plan and dispatch execution instructions, sends dispatch execution information to the target terminal. Based on the real-time decision submodule, the dispatch decision plan is monitored and coordinated, and adjustment dispatch information is generated. The adjusted dispatch information is matched with the target terminal, and real-time dispatch management is performed based on the matching results. This solves the technical problems of low informationization level and low command and dispatch capability of fire rescue in the existing technology, and achieves the technical effect of improving the informationization level and command and dispatch capability of fire rescue. BRIEF DESCRIPTION OF THE DRAWINGS

[0008] In order to more clearly illustrate the technical solutions in the embodiments of the present invention, the following briefly introduces the drawings required for use in the description of the embodiments. Obviously, the drawings described below are only some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying any creative work.

[0009] Figure 1A flowchart of a method for fire dispatch management and monitoring provided in an embodiment of the present application;

[0010] Figure 2 A schematic diagram of a process for generating a regional replica map in a method for fire dispatch management and monitoring provided in an embodiment of the present application;

[0011] Figure 3 A flowchart of determining a dispatch decision plan in a fire dispatch management and monitoring method provided in an embodiment of the present application;

[0012] Figure 4 A schematic diagram of the system structure for fire dispatch management and monitoring provided in an embodiment of the present application.

[0013] Explanation of the accompanying symbols: regional replica map generation module 11, scheduling management module construction module 12, scheduling decision plan determination module 13, scheduling execution information sending module 14, adjustment scheduling information generation module 15, real-time scheduling management module 16. DETAILED DESCRIPTION

[0014] The present application provides a method for fire dispatch management and monitoring, which is used to solve the technical problems of low level of informationization of fire rescue and low command and dispatch capabilities in the existing technology.

[0015] The following will be combined with the accompanying drawings in the embodiments of this application to clearly and completely describe the technical solutions in the embodiments of this application. Obviously, the embodiments described are only some of the embodiments of this application, not all of them. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without making any creative work are within the scope of protection of this application.

[0016] It should be noted that the terms "first", "second", etc. in the specification and claims of this application and the above-mentioned drawings are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that the data used in this way can be interchangeable where appropriate, so that the embodiments of the application described herein can be implemented in an order other than those illustrated or described herein. In addition, the terms "including" and "having" and any variations thereof are intended to cover non-exclusive inclusions. For example, a process, method, system, product, or server that includes a series of steps or units is not necessarily limited to those steps or units clearly listed, but may include other steps or modules that are not clearly listed or inherent to these processes, methods, products, or devices.

[0017] Example 1

[0018] like Figure 1 As shown, the present application provides a method for fire dispatch management and monitoring, the method comprising:

[0019] S100: Collect basic information of the target area and generate a regional replica map, wherein the regional replica map is a double-layer association map;

[0020] Specifically, by checking the site layout of the target port and conducting an on-site inspection of the target port, basic information such as the distribution and usage of the functional areas of the target port is collected, including static information, such as the distribution of equipment and buildings, and dynamic information, such as the paths of ships and vehicles. The overall area distribution map of the target port is generated from the collected basic information of the target port, and the local areas that need to be focused on fire control are screened out and detailed maps are drawn. Then, the overall area distribution map of the target port and the detailed maps of the local areas are placed in two different layers, and links are established between the detailed maps of each local area and the overall area to generate a regional replica map with two associated layers, which can be used as basic data for the subsequent construction of the scheduling management module.

[0021] Further, such as Figure 2 As shown, step S100 in this embodiment of the application further includes:

[0022] S110: Building a regional distribution map based on the basic information of the target area, where the regional distribution map is a general overview of the target area;

[0023] S120: Determine multiple refined scanning areas, and build sub-level diffraction patterns based on basic information of the target area;

[0024] S130: Positioning the sub-level diffraction pattern in the regional distribution map to determine layer association information;

[0025] S140: Based on the layer association information, the regional distribution map and the sub-level diffraction map are mapped and connected to generate the regional replica map, wherein the sub-level diffraction map is in a hidden state and is activated and projected based on management needs.

[0026] Specifically, based on the basic information of the target port, including site area, number of ships, number of vehicles, cargo storage area, etc., a regional distribution map of the target port is constructed. The regional distribution map is a general overview of the target area, which can display the distribution of various functional areas of the target port, including living areas, cargo storage areas, equipment parking areas, etc. According to the usage functions and fire protection levels of each area of the target port, multiple areas that need to be scanned in detail are determined, and a sub-level diffraction map is constructed in combination with the basic information of the target area. The sub-level diffraction map refers to the information distribution map of each local area in the regional distribution map, which is placed in a different layer from the regional distribution map. Positioning the sub-level diffraction map means finding the corresponding position of the sub-level diffraction map in the regional distribution map and determining the layer association information between the sub-level diffraction map and the regional distribution map. Based on the layer association information, the regional distribution map and the sub-level diffraction map are mapped and connected, that is, the regional distribution map and the sub-level diffraction map are linked to serve as the regional replica map. Normally, the sub-level diffraction map is hidden, and the interface only displays the regional distribution map. When there is a need for use or management, clicking the corresponding link will activate the sub-level diffraction map of the local area and display it on the screen. The regional replica map can be used as the basic data for the subsequent construction of the scheduling management module.

[0027] S200: Building a scheduling management module based on the regional replica map, the scheduling management module including a plan decision submodule and a real-time decision submodule, the real-time decision submodule being wirelessly connected to a scheduling device;

[0028] Specifically, based on the area information of the target port displayed on the area replica map, a dispatching management module is constructed for dispatching and managing the firefighting information of the target area, including a plan decision submodule for pre-selecting a fixed execution plan, and a real-time decision submodule for adjusting the execution plan according to real-time emergencies. The real-time decision submodule is wirelessly connected to the dispatching device and can send the adjustment information to the dispatching device in a timely manner and feed it back to the dispatching center. The dispatching management module can be used for dispatching and managing the rescue site.

[0029] Furthermore, step S200 in the embodiment of the present application further includes:

[0030] S210: The emergency plan decision submodule includes an event refinement layer, a solution decision layer, and a simulation drill layer. The solution decision layer is embedded with the regional replica map, and the simulation drill layer is connected to the electronic emergency plan library.

[0031] S220: The real-time decision submodule includes a monitoring and receiving layer, an analysis and adjustment layer, and a scheduling feedback layer, wherein the analysis and adjustment layer is embedded with the regional replica map.

[0032] Specifically, the plan decision submodule is mainly used to pre-select a fixed execution plan, which specifically includes a detailed analysis of the target event, an event refinement layer that determines the event type, a plan decision layer that selects an execution plan for the event type, and a simulation exercise layer that uses the selected execution plan to rehearse the plan. The plan decision layer is embedded with the regional replica map, which can be used to match the corresponding execution plan. The electronic plan library contains many pre-set fixed execution plans, models, equipment, etc. The simulation exercise layer is connected to the electronic plan library, which can easily retrieve the information in the electronic plan library for simulation exercises.

[0033] Furthermore, the real-time decision-making submodule is a module used to adjust the execution plan in response to real-time emergencies, specifically including a monitoring receiving layer that receives real-time monitoring information of the target port, an analysis and adjustment layer that analyzes, optimizes and adjusts the execution plan based on the real-time monitoring information of the target port, and a scheduling feedback layer that feeds back the adjustment information to the scheduling center. The analysis and adjustment layer is embedded with the regional replica map, which can serve as basic data for plan adjustment.

[0034] S300: receiving alarm event information, determining a scheduling decision plan based on the plan decision submodule, and the scheduling execution instruction is synchronously generated information;

[0035] Specifically, the alarm dispatcher receives the alarm information of the target area, including the address, category, burning material, fire size, trapped personnel, building structure, surrounding conditions, etc. of the alarm, and inputs the alarm event information into the plan decision submodule. The processing modules of the plan decision submodule generate a dispatch decision plan based on the alarm event information, and simultaneously generate a dispatch execution instruction. The dispatch decision plan includes the personnel and equipment that need to be dispatched for the target event, as well as the on-site layout, route planning, etc. The dispatch execution instruction is used to issue specific execution commands for the plan, which can be used to guide emergency rescue work at the fire scene.

[0036] Further, such as Figure 3 As shown, step S300 in this embodiment of the application further includes:

[0037] S310: Inputting the alarm event information into the emergency plan decision submodule;

[0038] S320: Analyze the event based on the event refinement layer to determine the alarm location, alarm type, and alarm level;

[0039] S330: Inputting the alarm location, the alarm type, and the alarm level into the plan decision layer to determine a preliminary dispatch decision plan;

[0040] S340: Based on the preliminary scheduling decision plan and in combination with the electronic plan library, calling the association model;

[0041] S350: Deploy the association model based on the simulation rehearsal layer, conduct a rehearsal preview and optimization on the preliminary scheduling decision plan, and generate the scheduling decision plan.

[0042] Specifically, the alarm event information is input into the event refinement layer in the plan decision-making submodule, and the event refinement layer analyzes the event to determine the location of the alarm, the type of alarm and the alarm level. The alarm type refers to the type of fire, such as solid material fire, liquid or fusible solid material fire, gas fire, metal fire, etc. Determining the fire type is conducive to the targeted selection of fire fighting measures. The alarm level refers to the fire alarm level. The fire alarm and emergency rescue classification are determined by the alarm dispatcher based on the disaster risk situation, taking into full consideration the fire alarm and emergency rescue upgrade factors, and comparing with the fire alarm and emergency rescue classification standards. The alarm location, the alarm type and the alarm level are input into the plan decision layer of the plan decision submodule, and a preliminary dispatch decision plan is compiled in combination with the regional replica map. Then, based on the requirements of the preliminary dispatch decision plan, corresponding models are retrieved from the electronic plan library, such as models of buildings, ships, equipment, etc. in the alarm area. The associated models are arranged in the simulation drill layer, and the model is used to conduct fire drills according to the preliminary dispatch decision plan. The implementation effect of the preliminary dispatch decision plan in the model is previewed, and the preliminary dispatch decision plan is optimized according to the actual drill situation. Finally, an optimized dispatch decision plan is obtained, which can be used to guide emergency rescue work at the fire scene.

[0043] S400: Sending scheduling execution information to a target terminal based on the scheduling decision plan and the scheduling execution instruction, where the target terminal has a temporary interaction function;

[0044] Specifically, scheduling execution information is generated based on the scheduling decision plan and the scheduling execution instructions, including execution information of personnel, equipment, etc., and the scheduling execution information is sent to target terminals such as drones and monitoring equipment. The target terminals have a temporary interaction function, that is, temporary interaction is maintained between specific terminals. For example, personnel from different branches of collaborative rescue use terminal devices for interconnection. After the rescue is completed, the interaction is interrupted, which can be used to coordinate personnel and equipment on site.

[0045] Furthermore, step S400 in the embodiment of the present application further includes:

[0046] S410: The scheduling execution information includes personnel scheduling execution information and execution equipment scheduling execution information;

[0047] S420: Based on the personnel scheduling execution information and the execution device scheduling execution information, multiple groups of scheduling execution sequences are generated according to the unilateral scheduling execution information and the multi-party scheduling execution information;

[0048] S430: Transmitting the multiple groups of scheduling execution sequences to a scheduling center, performing pre-execution conversion on the multiple groups of scheduling execution sequences, and performing target scheduling execution control.

[0049] Specifically, the dispatch execution information includes personnel dispatch execution information and execution equipment dispatch execution information. The personnel dispatch execution information refers to the dispatch execution information of rescue personnel at the emergency rescue site, including information such as personnel type, number, and responsible area. The equipment dispatch execution information refers to the dispatch execution information of various equipment used for firefighting and rescue, including firefighting equipment such as fire trucks and fire extinguishers, monitoring equipment such as drones and cameras, and some auxiliary equipment. The personnel dispatch execution information and execution equipment dispatch execution information can be divided into unilateral dispatch execution information and multi-party dispatch execution information. The unilateral dispatch execution information means that a dispatch instruction requires one person or equipment to execute. The unilateral dispatch execution information means that a dispatch instruction requires multiple people or equipment to execute. Based on the unilateral dispatch execution information and the multi-party dispatch execution information, multiple groups of dispatch execution sequences are generated, for example: personnel dispatch, dispatching personnel with the same instruction - dispatch information; execution equipment dispatch, drone number - dispatch information. The multiple groups of scheduling execution sequences are transmitted to the scheduling center, which performs pre-execution conversion on the multiple groups of scheduling execution sequences, that is, generates corresponding personnel commands or equipment instructions for each group of scheduling execution sequences, and performs scheduling execution control on the target personnel or equipment by issuing instructions, which can be used to coordinate on-site personnel and equipment.

[0050] S500: Based on the real-time decision submodule, monitor and coordinate the scheduling decision plan to generate adjustment scheduling information;

[0051] Specifically, the real-time decision-making submodule is a module used to adjust the execution plan for real-time emergencies. During the execution of the scheduling decision plan, synchronous monitoring is implemented, and the real-time monitoring information of the monitored target area is input into the monitoring receiving layer of the real-time decision-making submodule. Then, the analysis and adjustment layer of the real-time decision-making submodule optimizes and adjusts the scheduling decision plan to generate adjusted scheduling information, such as adjusting the number of rescue personnel, adding monitoring equipment, etc. The adjusted scheduling information can be used for real-time scheduling management of the target area.

[0052] Furthermore, step S500 in the embodiment of the present application further includes:

[0053] S510: The scheduling device includes a monitoring device and an execution device, and the monitoring device includes a fixed-point monitoring device and a dynamic monitoring device;

[0054] S520: Determine monitoring requirements based on the scheduling decision plan;

[0055] S530: Generate a fixed-point monitoring instruction and a dynamic monitoring instruction based on the monitoring requirement;

[0056] S540: Feedback the fixed-point monitoring instruction and the dynamic monitoring instruction to the dispatching center, perform remote monitoring control on the fixed-point monitoring equipment and the dynamic monitoring equipment, and obtain monitoring information and transmit it to the monitoring receiving layer.

[0057] Specifically, the dispatching equipment includes monitoring equipment for monitoring the target area and execution equipment for executing dispatching instructions. The monitoring equipment includes fixed-point monitoring equipment and dynamic monitoring equipment. The fixed-point monitoring equipment is equipment that monitors fixed locations, such as cameras and temperature measuring instruments. The dynamic monitoring equipment refers to equipment that can flexibly monitor changes on site, such as drones and inspection vehicles. The specific implementation method of the dispatching decision plan determines the monitoring requirements of the plan, such as the location information that needs to be monitored, the type of equipment to be used, the type of information to be obtained, etc. Based on the monitoring requirements, the locations and corresponding equipment that require fixed-point monitoring, as well as the locations and detection routes that require dynamic monitoring, are determined. The corresponding fixed-point monitoring instructions and dynamic monitoring instructions are generated and fed back to the fire dispatch center. The dispatch center personnel perform remote monitoring and control of the fixed-point monitoring equipment and the dynamic monitoring equipment, and transmit the acquired monitoring information of the target area to the monitoring receiving layer of the real-time decision submodule, which can be used as reference data for fire dispatching management.

[0058] S600: Match the adjusted scheduling information with the target terminal, and perform real-time scheduling management based on the matching result.

[0059] Specifically, the adjustment scheduling information is matched with the target terminal. The adjustment scheduling information includes adjustments to the number of personnel and equipment, adjustments to the rescue order, etc. The target terminal includes monitoring equipment, personnel, firefighting equipment, etc. in the target area. For example, according to the real-time fire situation in the target area, the priority of firefighting is adjusted, and the equipment and personnel to be used are determined. At the same time, the personnel and equipment numbers that can be dispatched on site are matched. Finally, the rescue site is dispatched and managed for personnel and equipment with reference to the matching results, which can improve the command and dispatch capabilities of fire rescue.

[0060] Furthermore, the embodiment of the present application further includes step S700, which further includes:

[0061] S710: Integrate and manage the media plan category and the one-point-one plan category to generate the electronic plan library;

[0062] S720: If the alarm event information meets the risk threshold, generate a plan library matching instruction;

[0063] S730: Upon receiving the matching instruction from the plan library, a scheduling decision plan is determined based on the electronic plan library;

[0064] S740: Perform fire dispatch management based on the dispatch decision plan.

[0065] Specifically, the media management plan categorizes and manages combustible materials by type. This information can be obtained from a chemical book or chemical company records. Users can add, delete, modify, and query key information in the media plan. Matching can be performed based on event type and media type rules. Each point-to-point plan corresponds to a hazardous area. When an alarm occurs, a point-to-point plan can be matched based on the accident location. All media management plan categories and point-to-point plan categories are integrated to generate the electronic plan library. Because fire incidents vary in scope and impact, the required response speed and rescue risk vary. Therefore, a risk threshold is preset based on the event's risk level. When the alarm event information meets the risk threshold, the incident is considered an emergency, and the aforementioned plan decision is not executed. Instead, a plan library matching instruction is generated directly from the alarm information and sent to the dispatch center. Upon receiving the instruction, the dispatch center matches the corresponding dispatch decision plan from the electronic plan library and, based on this dispatch decision plan, conducts fire dispatch management for the current alarm incident, enabling timely response to emergencies.

[0066] In summary, the embodiments of the present application have at least the following technical effects:

[0067] This application collects basic information of the target area, generates a regional replica map, builds a scheduling management module including a plan decision sub-module and a real-time decision sub-module, receives alarm event information, and determines the scheduling decision plan and scheduling execution instructions by the plan decision sub-module. Based on the scheduling decision plan and scheduling execution instructions, the scheduling execution information is sent to the target terminal. Based on the real-time decision sub-module, the scheduling decision plan is monitored and coordinated, and adjustment scheduling information is generated. The adjusted scheduling information is matched with the target terminal, and real-time scheduling management is performed based on the matching results.

[0068] The technical effect of improving the informationization level and command and dispatch capabilities of fire rescue has been achieved.

[0069] Example 2

[0070] Based on the same inventive concept as the fire dispatch management and monitoring method in the above embodiment, Figure 4 As shown, the present application provides a fire dispatch management and monitoring system. The system and method embodiments in the present application are based on the same inventive concept. The system includes:

[0071] A region replica map generation module 11 is used to collect basic information of the target region and generate a region replica map, which is a double-layer association map;

[0072] A scheduling management module building module 12, the scheduling management module building module is used to build a scheduling management module based on the regional replica map, the scheduling management module includes a plan decision submodule and a real-time decision submodule, and the real-time decision submodule is wirelessly connected to the scheduling device;

[0073] A scheduling decision scheme determination module 13 is used to receive alarm event information and determine a scheduling decision scheme based on the plan decision submodule. The scheduling execution instruction is synchronously generated information.

[0074] A scheduling execution information sending module 14, which is used to send scheduling execution information to a target terminal based on the scheduling decision plan and the scheduling execution instruction, and the target terminal has a temporary interaction function;

[0075] An adjustment scheduling information generation module 15 is configured to monitor and coordinate the scheduling decision plan based on the real-time decision submodule to generate adjustment scheduling information;

[0076] The real-time scheduling management module 16 is used to match the adjusted scheduling information with the target terminal and perform real-time scheduling management based on the matching result.

[0077] Furthermore, the system further comprises:

[0078] A regional distribution map building module, wherein the regional distribution map building module is used to build a regional distribution map based on the basic information of the target area, wherein the regional distribution map is a general overview of the target area;

[0079] A sub-level diffraction pattern building module, the sub-level diffraction pattern building module is used to determine a plurality of refined scanning areas and build a sub-level diffraction pattern based on the basic information of the target area;

[0080] a layer association information determination module, the layer association information determination module being used to locate the sub-level diffraction pattern in the regional distribution map and determine layer association information;

[0081] The regional replica map generation module is used to map and connect the regional distribution map and the sub-level diffraction map based on the layer association information to generate the regional replica map, wherein the sub-level diffraction map is in a hidden state and is activated and projected based on management needs.

[0082] Furthermore, the system further comprises:

[0083] An alarm event information input module, the alarm event information input module is used to input the alarm event information into the emergency plan decision submodule;

[0084] An event analysis module, which is used to analyze events based on the event refinement layer to determine the alarm location, alarm type, and alarm level;

[0085] A preliminary dispatch decision scheme determination module, the preliminary dispatch decision scheme determination module is used to input the alarm situation location, the alarm situation type and the alarm situation level into the scheme decision layer to determine a preliminary dispatch decision scheme;

[0086] An association model calling module, the association model calling module is used to call the association model based on the preliminary scheduling decision plan in combination with the electronic plan library;

[0087] A scheduling decision plan generation module, which is used for the simulation exercise layer to lay out the association model, perform a drill preview and optimize the preliminary scheduling decision plan, and generate the scheduling decision plan;

[0088] Furthermore, the system further comprises:

[0089] A monitoring demand determination module, configured to determine monitoring demand based on the scheduling decision scheme;

[0090] A monitoring instruction generation module, the monitoring instruction generation module is used to generate fixed-point monitoring instructions and dynamic monitoring instructions based on the monitoring requirements;

[0091] A remote monitoring control module is used to feed back the fixed-point monitoring instructions and the dynamic monitoring instructions to the dispatching center, perform remote monitoring control on the fixed-point monitoring equipment and the dynamic monitoring equipment, and obtain monitoring information and transmit it to the monitoring receiving layer.

[0092] Furthermore, the system further comprises:

[0093] A multi-group scheduling execution sequence generation module, the multi-group scheduling execution sequence generation module is used to generate multiple groups of scheduling execution sequences based on the personnel scheduling execution information and the execution device scheduling execution information, according to the unilateral scheduling execution information and the multi-party scheduling execution information;

[0094] a target scheduling execution control module, the target scheduling execution control module being used to transmit the multiple groups of scheduling execution sequences to a scheduling center, perform pre-execution conversion on the multiple groups of scheduling execution sequences, and perform target scheduling execution control;

[0095] Furthermore, the system further comprises:

[0096] An electronic plan library generation module, the electronic plan library generation module is used to integrate and manage the media plan category and the one-point-one plan category to generate the electronic plan library;

[0097] A pre-plan library matching instruction generation module, wherein the pre-plan library matching instruction generation module is used to generate a pre-plan library matching instruction if the alarm event information meets the risk threshold;

[0098] a scheduling decision scheme determining module, configured to determine a scheduling decision scheme based on the electronic plan library after receiving a matching instruction from the plan library;

[0099] A fire dispatch management module is used to perform fire dispatch management based on the dispatch decision plan.

[0100] It should be noted that the above-mentioned order of the embodiments of the present application is for descriptive purposes only and does not represent the superiority or inferiority of the embodiments. The above description is of specific embodiments of this specification. Other embodiments are within the scope of the appended claims. In some cases, the actions or steps described in the claims can be performed in an order different from that in the embodiments and still achieve the desired results. In addition, the processes depicted in the accompanying drawings do not necessarily require the specific order or continuous order shown to achieve the desired results. In some embodiments, multitasking and parallel processing are also possible or may be advantageous.

[0101] The above description is only a preferred embodiment of the present application and is not intended to limit the present application. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present application should be included in the scope of protection of the present application.

[0102] This specification and drawings are merely illustrative of the present application and are intended to cover any and all modifications, variations, combinations, or equivalents within the scope of this application. Obviously, those skilled in the art may make various modifications and variations to this application without departing from the scope of this application. Thus, this application is intended to include such modifications and variations as fall within the scope of this application and its equivalents.

Claims

1. A method for fire dispatch management and monitoring, characterized in that: The method comprises: Collect basic information of the target area and generate a regional replica map, wherein the regional replica map is a double-layer association map; Based on the regional replica map, a scheduling management module is built, the scheduling management module includes a plan decision submodule and a real-time decision submodule, and the real-time decision submodule is wirelessly connected to the scheduling device; Receive alarm event information, determine the scheduling decision plan based on the plan decision submodule, and the scheduling execution instruction is to generate information synchronously; Based on the scheduling decision plan and the scheduling execution instruction, sending scheduling execution information to a target terminal, wherein the target terminal has a temporary interaction function; Based on the real-time decision submodule, monitor and coordinate the scheduling decision plan to generate adjustment scheduling information; Matching the adjusted scheduling information with the target terminal, and performing real-time scheduling management based on the matching result; The method of collecting basic information of the target area and generating a regional replica map includes: Building a regional distribution map based on the basic information of the target area, wherein the regional distribution map is a general overview of the target area; Determining multiple refined scanning areas, and building sub-level diffraction patterns based on basic information of the target area; Positioning the sub-level diffraction pattern in the regional distribution map to determine layer association information; Based on the layer association information, mapping and connecting the regional distribution map and the sub-level diffraction map is performed to generate the regional replica map, wherein the sub-level diffraction map is in a hidden state and is activated and projected based on management needs; The scheduling management module includes a plan decision submodule and a real-time decision submodule, and the method includes: The emergency plan decision submodule includes an event refinement layer, a solution decision layer and a simulation drill layer. The solution decision layer is embedded with the regional replica map, and the simulation drill layer is connected to the electronic emergency plan library. The real-time decision submodule includes a monitoring and receiving layer, an analysis and adjustment layer, and a scheduling feedback layer, and the analysis and adjustment layer is embedded with the regional replica map.

2. The method according to claim 1, wherein The method of receiving the alarm event information and determining the scheduling decision plan based on the plan decision submodule includes: Inputting the alarm event information into the emergency plan decision submodule; Conduct event analysis based on the event refinement layer to determine the location, type and level of the emergency; Inputting the alarm location, the alarm type and the alarm level into the plan decision layer to determine a preliminary dispatch decision plan; Based on the preliminary scheduling decision plan and in combination with the electronic plan library, calling the association model; The association model is laid out in the simulation rehearsal layer, the preliminary scheduling decision plan is previewed and optimized, and the scheduling decision plan is generated.

3. The method according to claim 1, wherein include: The scheduling equipment includes monitoring equipment and execution equipment, and the monitoring equipment includes fixed-point monitoring equipment and dynamic monitoring equipment; Determining monitoring requirements based on the scheduling decision plan; Generate fixed-point monitoring instructions and dynamic monitoring instructions based on the monitoring requirements; The fixed-point monitoring instructions and the dynamic monitoring instructions are fed back to the dispatching center, remote monitoring control is performed on the fixed-point monitoring equipment and the dynamic monitoring equipment, and monitoring information is obtained and transmitted to the monitoring receiving layer.

4. The method according to claim 3, wherein Based on the scheduling decision plan and the scheduling execution instruction, the method includes: The scheduling execution information includes personnel scheduling execution information and execution equipment scheduling execution information; Based on the personnel scheduling execution information and the execution equipment scheduling execution information, multiple groups of scheduling execution sequences are generated according to the unilateral scheduling execution information and the multi-party scheduling execution information; The multiple groups of scheduling execution sequences are transmitted to a scheduling center, pre-execution conversion is performed on the multiple groups of scheduling execution sequences, and target scheduling execution control is performed.

5. The method according to claim 1, wherein Methods include: Integrate and manage the media plan category and the one-point-one plan category to generate the electronic plan library; If the alarm event information meets the risk threshold, a plan library matching instruction is generated; Following receipt of the matching instruction from the plan library, a scheduling decision plan is determined based on the matching of the electronic plan library; Firefighting dispatch management is performed based on the dispatch decision plan.

6. A fire dispatch management and monitoring system, characterized in that: The system comprises: A region replica map generation module, the region replica map generation module is used to collect basic information of the target area and generate a region replica map, the region replica map is a double-layer association map; A scheduling management module building module, wherein the scheduling management module building module is used to build a scheduling management module based on the regional replica map, wherein the scheduling management module includes a plan decision submodule and a real-time decision submodule, and the real-time decision submodule is wirelessly connected to the scheduling device; A scheduling decision scheme determination module, the scheduling decision scheme determination module is used to receive alarm event information, determine a scheduling decision scheme based on the plan decision submodule, and the scheduling execution instruction is synchronously generated information; A scheduling execution information sending module, the scheduling execution information sending module is used to send scheduling execution information to a target terminal based on the scheduling decision plan and the scheduling execution instruction, and the target terminal has a temporary interaction function; An adjustment scheduling information generation module, the adjustment scheduling information generation module is used to monitor and coordinate the scheduling decision plan based on the real-time decision submodule to generate adjustment scheduling information; A real-time scheduling management module, configured to match the adjusted scheduling information with the target terminal and perform real-time scheduling management based on the matching result; The system further comprises: A regional distribution map building module, wherein the regional distribution map building module is used to build a regional distribution map based on the basic information of the target area, wherein the regional distribution map is a general overview of the target area; A sub-level diffraction pattern building module, the sub-level diffraction pattern building module is used to determine a plurality of refined scanning areas and build a sub-level diffraction pattern based on the basic information of the target area; a layer association information determination module, the layer association information determination module being used to locate the sub-level diffraction pattern in the regional distribution map and determine layer association information; A regional replica map generation module, the regional replica map generation module is used to map and connect the regional distribution map and the sub-level diffraction map based on the layer association information to generate the regional replica map, wherein the sub-level diffraction map is in a hidden state and is activated and projected based on management requirements; The emergency plan decision submodule includes an event refinement layer, a solution decision layer and a simulation drill layer. The solution decision layer is embedded with the regional replica map, and the simulation drill layer is connected to the electronic emergency plan library. The real-time decision submodule includes a monitoring and receiving layer, an analysis and adjustment layer, and a scheduling feedback layer, and the analysis and adjustment layer is embedded with the regional replica map.

Citation Information

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