Task linkage command system based on electronic sand table
By integrating multi-source data and performing visualization and feature analysis, the electronic sand table system solves the problems of insufficient data comprehensiveness and reliability in existing technologies, improves the rationality and accuracy of task linkage command, and enhances task efficiency and safety.
Patent Information
- Application Number
- CN202411829113.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-12
- Publication Date
- 2026-01-13
AI Technical Summary
Existing task linkage technologies based on electronic sand tables only collect and analyze positioning data, resulting in poor data comprehensiveness and reliability, which in turn leads to poor rationality and accuracy in task linkage command.
By accessing multi-source data, including geospatial data, location data, video surveillance data, and sensor data, the system can perform visualization, fusion extraction, and feature analysis. It can also utilize real-time task response and resource management units for command and dispatch, and combine data sharing, simulation exercises, and statistical analysis to improve the comprehensiveness and reliability of the data.
It improved the rationality and accuracy of joint command and control of tasks, enhanced task efficiency and emergency response capabilities, and improved the combat capabilities of task personnel and data security.
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Figure CN121329291A_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of mission linkage technology, and in particular to a mission linkage command system based on an electronic sand table. Background Technology
[0002] Electronic sand tables are an important tool for modern mission command and decision-making, providing an intuitive, three-dimensional, and dynamic command platform for mission operations. They have significant technological advantages and practical application value, thus necessitating research on mission linkage command systems based on electronic sand tables.
[0003] In the prior art, Chinese patent CN112418778A discloses a GIS-based multi-target task resource linkage system and method. The system includes a positioning data acquisition module, a data analysis module, a linkage resource module, and a task activity pre-simulation module. The method includes: custom resource settings, resource information management, resource association settings, linkage resource rule settings, moving target location calculation, automatic target linkage resource calculation, and linkage map display. This prior art can realize task resources in GIS... Figure 1 The use of diagrams, categorized charts, and sand table simulations has improved comprehensive capabilities in command decision-making and rapid response.
[0004] However, the aforementioned existing technologies only collect and analyze positioning data, resulting in poor data comprehensiveness and reliability, and consequently, poor rationality and accuracy of task coordination and command. Summary of the Invention
[0005] This application provides a task linkage command system based on an electronic sand table to solve the problem that existing task linkage technologies based on electronic sand tables only collect and analyze positioning data, resulting in poor data comprehensiveness and reliability, and consequently poor rationality and accuracy of task linkage command.
[0006] On the one hand, this application provides a task linkage command system based on an electronic sand table, including: a multi-source data access module, an electronic sand table module, an analysis and early warning module, and a command and dispatch module.
[0007] The multi-source data access module is used to access multi-source data from different data sources.
[0008] The electronic sand table module is used to visualize the multi-source data.
[0009] The analysis and early warning module is used to fuse, extract, and analyze the features of the multi-source data to obtain analysis results.
[0010] The command and dispatch module is used to perform command and dispatch based on the analysis results, and generate command and dispatch process data and command and dispatch result data.
[0011] The multi-source data includes: geospatial data, location data, video surveillance data, sensor data, and mission resource data.
[0012] In one possible implementation, the electronic sand table module uses geographic information system technology and 3D reconstruction technology to visualize the multi-source data, and the visualization includes 2D display and 3D display.
[0013] In one possible implementation, the analysis and early warning module includes: several fusion extraction units and several feature analysis units, wherein the fusion extraction units correspond one-to-one with the feature analysis units.
[0014] The fusion extraction unit is used to fuse and extract the multi-source data to obtain fused features. Different fusion extraction units perform fusion extraction in different directions.
[0015] The feature analysis unit is used to perform feature analysis on the fused features and obtain analysis results.
[0016] In one possible implementation, the command and dispatch module includes a real-time task response unit and a resource management unit.
[0017] When the analysis results are used for real-time tasks, the real-time task response unit is used to send the analysis results to relevant task personnel, perform command and dispatch, and generate command and dispatch process data and command and dispatch result data.
[0018] When the analysis results show no real-time tasks but there are warnings, the resource management unit is used to manage and optimize task resources based on the analysis results.
[0019] In one possible implementation, a task coordination and command system based on an electronic sand table also includes a historical data module.
[0020] The historical data module is used to store historical multi-source data.
[0021] In one possible implementation, a task coordination and command system based on an electronic sand table also includes a data sharing module.
[0022] The data sharing module is used to share the multi-source data, the analysis results, the command and dispatch process data, and the command and dispatch result data across task personnel types and departments.
[0023] In one possible implementation, a task coordination command system based on an electronic sand table also includes a simulation exercise module.
[0024] The simulation exercise module is used to simulate various task scenarios, providing a virtual environment for task personnel to conduct simulation exercises and training.
[0025] In one possible implementation, a task coordination and command system based on an electronic sand table also includes a statistical analysis module.
[0026] The statistical analysis module is used to generate customized reports and statistical analysis results based on the command and dispatch process data and the command and dispatch result data.
[0027] In one possible implementation, the multi-source data, the analysis results, the command and dispatch process data, and the command and dispatch result data are all encrypted and decrypted using encryption and decryption techniques during transmission.
[0028] The task coordination and command system based on an electronic sand table in this application has the following advantages: By collecting multi-source data, including geospatial data, location data, video surveillance data, sensor data, and mission resource data, and by visualizing, fusing, extracting, and analyzing the features of this multi-source data, the comprehensiveness and reliability of the data are improved, thereby enhancing the rationality and accuracy of mission coordination and command.
[0029] The proposed fusion extraction unit performs fusion extraction on multi-source data to obtain fusion features. Different fusion extraction units perform fusion extraction in different directions. The feature analysis unit performs feature analysis on the fusion features to obtain analysis results. Different fusion extraction units can perform fusion extraction on multi-source data based on different task event directions, thereby making feature analysis more targeted and accurate.
[0030] The proposed real-time task response unit and resource management unit can perform command and dispatch when there are real-time tasks, and manage and optimize task resources when there are no real-time tasks but there are early warnings, thereby improving task efficiency and emergency response capabilities.
[0031] The proposed data sharing module enables cross-task personnel and cross-departmental sharing of multi-source data, analysis results, command and dispatch process data, and command and dispatch result data, further improving the overall efficiency and response speed of task work.
[0032] The proposed simulation exercise module simulates various mission scenarios, providing mission personnel with a virtual environment for simulation exercises and training, which can improve the combat capabilities of mission personnel and their ability to respond to emergencies.
[0033] The proposed statistical analysis module generates customized reports and statistical analysis results based on command and dispatch process data and command and dispatch result data, which helps mission personnel understand the overall situation and trends of mission work and improves personnel experience.
[0034] The proposed multi-source data, analysis results, command and dispatch process data, and command and dispatch result data are all encrypted and decrypted using encryption and decryption technologies during transmission, ensuring the security and privacy of the mission data. Attached Figure Description
[0035] To more clearly illustrate the technical solutions in the embodiments of this application or the prior art, the drawings used in the description of the embodiments or the prior art will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0036] Figure 1 This is a schematic diagram of a task linkage command system based on an electronic sand table, provided as an embodiment of this application. Detailed Implementation
[0037] The technical solutions of the embodiments of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, and not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.
[0038] like Figure 1 As shown in the figure, this application provides a task linkage command system based on an electronic sand table, including: a multi-source data access module, an electronic sand table module, an analysis and early warning module, and a command and dispatch module.
[0039] The multi-source data access module is used to access multi-source data from different data sources.
[0040] The electronic sand table module is used to visualize the multi-source data.
[0041] The analysis and early warning module is used to fuse, extract, and analyze the features of the multi-source data to obtain analysis results.
[0042] The command and dispatch module is used to perform command and dispatch based on the analysis results, and generate command and dispatch process data and command and dispatch result data.
[0043] The multi-source data includes: geospatial data, location data, video surveillance data, sensor data, and mission resource data.
[0044] Specifically, in this embodiment, the multi-source data access module, electronic sand table module, analysis and early warning module, and command and dispatch module are all set up on the cloud server. The cloud server communicates with each data source and communicates with task personnel or patrol vehicles through voice, video and other communication methods.
[0045] For example, the electronic sand table module uses geographic information system technology and 3D reconstruction technology to visualize the multi-source data, and the visualization includes two-dimensional display and three-dimensional display.
[0046] Specifically, the electronic sand table module uses Geographic Information System (GIS) technology to collect, store, manage, analyze, and display geospatial data, providing spatial information support for task operations. GIS technology enables basic map operations such as zooming in, zooming out, panning, and rotating, as well as measurement functions for terrain area and spatial distance. The electronic sand table module also utilizes 3D reconstruction technology, employing laser scanning and camera capture to rapidly convert real-world scenes from multi-source data into digital 3D models, further enhancing the realism and immersion of the scene. It also simulates realistic 3D scenes using virtual reality technology, allowing personnel to command and coordinate within a virtual environment. In this embodiment, the system supports multiple interaction methods such as gestures and mouse input, enabling personnel to freely browse and operate within the 3D scene.
[0047] For example, the analysis and early warning module includes: a plurality of fusion extraction units and a plurality of feature analysis units, wherein the fusion extraction units correspond one-to-one with the feature analysis units.
[0048] The fusion extraction unit is used to fuse and extract the multi-source data to obtain fused features. Different fusion extraction units perform fusion extraction in different directions.
[0049] The feature analysis unit is used to perform feature analysis on the fused features and obtain analysis results.
[0050] Specifically, different fusion extraction units can perform fusion extraction on multi-source data based on different task event directions. In this embodiment, three fusion extraction units are set up corresponding to traffic control, natural disasters, and large-scale riots. Among them, the fusion extraction unit corresponding to traffic control mainly extracts features such as vehicle flow, pedestrian flow information, traffic conditions, and vehicle speed parameters from video surveillance data; the fusion extraction unit corresponding to natural disasters mainly extracts environmental parameters (geological deformation, water level, wind speed, rainfall, etc.) from sensor data and features such as pedestrian flow information from video surveillance data; the fusion extraction unit corresponding to large-scale riots mainly extracts pedestrian flow information from video surveillance data and features such as volume parameters from sensor data. Correspondingly, this embodiment also includes three feature analysis units, used to analyze three task event directions: traffic control, natural disasters, and large-scale riots, respectively, to determine whether there is a risk of a task event occurring (i.e., an early warning exists) or a task event is currently occurring (i.e., a real-time task exists). Based on geospatial data, location data, and task resource data, it determines whether task resources exist near the early warning location or the location of the real-time task. Task resource data includes dynamic data such as task personnel and patrol vehicles, and static data such as emergency shelters, relief supplies, and rescue equipment. In other possible embodiments, fusion extraction units and feature analysis units can also be set up for other task event directions.
[0051] For example, the command and dispatch module includes: a real-time task response unit and a resource management unit.
[0052] When the analysis results are used for real-time tasks, the real-time task response unit is used to send the analysis results to relevant task personnel, perform command and dispatch, and generate command and dispatch process data and command and dispatch result data.
[0053] When the analysis results show no real-time tasks but there are warnings, the resource management unit is used to manage and optimize task resources based on the analysis results.
[0054] Specifically, in this embodiment, when the analysis results indicate a real-time task, the real-time task response unit sends the analysis results to personnel or patrol vehicles near the location of the real-time task and conducts command and dispatch through communication methods such as voice and video, generating command and dispatch process data and command and dispatch result data. When the analysis results indicate no real-time task but an early warning exists, the resource management unit manages and optimizes the dynamic personnel, patrol vehicles, and static emergency shelters, rescue supplies, and rescue equipment near the early warning location. This includes dispatching personnel and patrol vehicles from non-early warning locations to the vicinity of the early warning location and adding emergency shelters, rescue supplies, and rescue equipment near the early warning location. In other possible embodiments, other command and dispatch methods and management optimization methods can also be implemented based on actual circumstances.
[0055] For example, a task coordination command system based on an electronic sand table also includes a historical data module.
[0056] The historical data module is used to store historical multi-source data.
[0057] Specifically, personnel can conduct retrospective analysis of cases using historical multi-source data to improve the efficiency of solving cases.
[0058] For example, a task coordination command system based on an electronic sand table also includes a data sharing module.
[0059] The data sharing module is used to share the multi-source data, the analysis results, the command and dispatch process data, and the command and dispatch result data across task personnel types and departments.
[0060] Specifically, by sharing various types of data with different personnel and departments, information sharing and resource integration across personnel types and departments are achieved, which helps to break down information silos and improve the overall coordination and efficiency of task work. In this embodiment, the data sharing module adopts an integrated communication module that supports multiple communication methods such as telephone calls and SMS sending, facilitating communication and coordination among personnel.
[0061] For example, a task coordination command system based on an electronic sand table also includes a simulation exercise module.
[0062] The simulation exercise module is used to simulate various task scenarios, providing a virtual environment for task personnel to conduct simulation exercises and training.
[0063] Specifically, the simulation exercise module can simulate various mission scenarios through the electronic sand table module, including emergency response and pursuit operations, providing mission personnel with a virtual environment for simulation exercises and training, which can improve the combat capabilities and response capabilities of mission personnel to emergencies.
[0064] For example, a task coordination command system based on an electronic sand table also includes a statistical analysis module.
[0065] The statistical analysis module is used to generate customized reports and statistical analysis results based on the command and dispatch process data and the command and dispatch result data.
[0066] Specifically, customized reports and statistical analysis results help personnel understand the overall situation and trends of their tasks, improving their experience.
[0067] For example, the multi-source data, the analysis results, the command and dispatch process data, and the command and dispatch result data are all encrypted and decrypted using encryption and decryption techniques during transmission.
[0068] Specifically, encryption and decryption technologies were used to ensure the security and privacy of the task data.
[0069] This application embodiment improves the comprehensiveness and reliability of data by collecting multi-source data, including geospatial data, location data, video surveillance data, sensor data, and task resource data, and by visualizing, fusing, extracting, and analyzing the features of the multi-source data, thereby improving the rationality and accuracy of task linkage command.
[0070] The proposed fusion extraction unit performs fusion extraction on multi-source data to obtain fusion features. Different fusion extraction units perform fusion extraction in different directions. The feature analysis unit performs feature analysis on the fusion features to obtain analysis results. Different fusion extraction units can perform fusion extraction on multi-source data based on different task event directions, thereby making feature analysis more targeted and accurate.
[0071] The proposed real-time task response unit and resource management unit can perform command and dispatch when there are real-time tasks, and manage and optimize task resources when there are no real-time tasks but there are early warnings, thereby improving task efficiency and emergency response capabilities.
[0072] The proposed data sharing module enables cross-task personnel and cross-departmental sharing of multi-source data, analysis results, command and dispatch process data, and command and dispatch result data, further improving the overall efficiency and response speed of task work.
[0073] The proposed simulation exercise module simulates various mission scenarios, providing mission personnel with a virtual environment for simulation exercises and training, which can improve the combat capabilities of mission personnel and their ability to respond to emergencies.
[0074] The proposed statistical analysis module generates customized reports and statistical analysis results based on command and dispatch process data and command and dispatch result data, which helps mission personnel understand the overall situation and trends of mission work and improves personnel experience.
[0075] The proposed multi-source data, analysis results, command and dispatch process data, and command and dispatch result data are all encrypted and decrypted using encryption and decryption technologies during transmission, ensuring the security and privacy of the mission data.
[0076] Although preferred embodiments of this application have been described, those skilled in the art, upon learning the basic inventive concept, can make other changes and modifications to these embodiments. Therefore, the appended claims are intended to be interpreted as including the preferred embodiments as well as all changes and modifications falling within the scope of this application.
[0077] Obviously, those skilled in the art can make various modifications and variations to this application without departing from the spirit and scope of this application. Therefore, if such modifications and variations fall within the scope of the claims of this application and their equivalents, this application also intends to include such modifications and variations.
Claims
1. A task coordination and command system based on an electronic sand table, characterized in that, include: Multi-source data access module, electronic sand table module, analysis and early warning module, and command and dispatch module; The multi-source data access module is used to access multi-source data from different data sources; The electronic sand table module is used to visualize the multi-source data; The analysis and early warning module is used to fuse, extract, and analyze the features of the multi-source data to obtain analysis results; The command and dispatch module is used to perform command and dispatch based on the analysis results, and generate command and dispatch process data and command and dispatch result data. The multi-source data includes: geospatial data, location data, video surveillance data, sensor data, and mission resource data.
2. The task linkage command system based on an electronic sand table according to claim 1, characterized in that, The electronic sand table module uses geographic information system technology and 3D reconstruction technology to visualize the multi-source data. The visualization includes 2D and 3D displays.
3. The task linkage command system based on an electronic sand table according to claim 1, characterized in that, The analysis and early warning module includes: several fusion extraction units and several feature analysis units, wherein the fusion extraction units correspond one-to-one with the feature analysis units; The fusion extraction unit is used to fuse and extract the multi-source data to obtain fusion features. Different fusion extraction units perform fusion extraction in different directions. The feature analysis unit is used to perform feature analysis on the fused features and obtain analysis results.
4. The task linkage command system based on an electronic sand table according to claim 1, characterized in that, The command and dispatch module includes: a real-time task response unit and a resource management unit; When the analysis results are used for real-time tasks, the real-time task response unit is used to send the analysis results to relevant task personnel, perform command and dispatch, and generate command and dispatch process data and command and dispatch result data. When the analysis results show no real-time tasks but there are warnings, the resource management unit is used to manage and optimize task resources based on the analysis results.
5. A task coordination and command system based on an electronic sand table according to claim 1, characterized in that, Also includes: Historical data module; The historical data module is used to store historical multi-source data.
6. A task linkage command system based on an electronic sand table according to claim 1, characterized in that, Also includes: Data sharing module; The data sharing module is used to share the multi-source data, the analysis results, the command and dispatch process data, and the command and dispatch result data across task personnel types and departments.
7. A task linkage command system based on an electronic sand table according to claim 1, characterized in that, Also includes: Simulation exercise module; The simulation exercise module is used to simulate various task scenarios, providing a virtual environment for task personnel to conduct simulation exercises and training.
8. A task coordination and command system based on an electronic sand table according to claim 1, characterized in that, It also includes: a statistical analysis module; The statistical analysis module is used to generate customized reports and statistical analysis results based on the command and dispatch process data and the command and dispatch result data.
9. A task linkage command system based on an electronic sand table according to claim 1, characterized in that, The multi-source data, the analysis results, the command and dispatch process data, and the command and dispatch result data are all encrypted and decrypted using encryption and decryption techniques during transmission.
Citation Information
Patent Citations
GIS-based multi-target police resource linkage system and method
CN112418778A