Dynamic plotting method for equipment support simulation deduction

In the equipment guarantee simulation deduction, dynamic process settings on the drawing mark panel and map are used to realize the informatization of dynamic drawing, solving the problem of single and solidified drawing functions in the existing technology, and improving the dynamic change effect and the efficiency of collaborative drawing.

CN120067226APending Publication Date: 2025-05-30CSSC SYST ENG RES INST
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Patent Information

Application Number
CN202411961070.3
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2024-12-30
Publication Date
2025-05-30

AI Technical Summary

Technical Problem

The lack of technology in the existing technology that can inform dynamic mapping, resulting in the single and solidified drawing functions in equipment support simulation deduction, and the dynamic change effect cannot be reflected.

Method used

By selecting the drawing number in the drawing number panel and drawing it on the map, setting up a dynamic process to complete the digitization and informatization of dynamic drawing. Users can draw on two-dimensional or three-dimensional maps, and control the perspective and field of view through mouse operations to achieve editing and coordination of the dynamic drawing process.

Benefits of technology

It realizes the informatization of dynamic mapping in equipment support simulation deduction, can flexibly expand, reflect the effect of dynamic changes, and improves the efficiency and accuracy of collaborative mapping.

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Abstract

The invention provides a dynamic plotting method for equipment support simulation deduction. The dynamic plotting method for the equipment support simulation deduction comprises the following steps: selecting a plotting label in a plotting label panel; plotting the plotting label on a map according to a first user operation, and setting a deduction path through the plotting label to generate a dynamic plotting process; and editing the dynamic plotting process through a second user operation. According to the technical scheme, the plotting mark number is selected on the plotting mark number panel, plotting is conducted on the map, the dynamic plotting process is obtained after the dynamic process is set, digitization and informatization of dynamic plotting are completed, and the technical problem that in the prior art, informatization of dynamic plotting cannot be achieved is solved.
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Description

Technical Field

[0001] The present invention relates to the field, and in particular to a dynamic plotting method for equipment support simulation deduction. Background Art

[0002] Military training is an important means to test and improve the effectiveness of military command theory research and improve the military command ability of troops in non-war years. Through mission planning and deduction to simulate real combat drills for commanders, commanders can experience real battlefield feelings through the command training system to improve their combat command ability. In modern warfare, the participating forces are highly professional and diverse in types, and it is very complicated to make more realistic training plans. The main way to solve this problem is the collaborative planning of multi-field experts.

[0003] The main means of equipment support and command training mission planning is situation plotting. The existing situation plotting is mainly based on single-user plotting, and the work of each user is relatively independent. The plotting function is single and fixed. Although collaborative plotting can solve the problem of multi-user plotting, it is asynchronous and requires post-event integration based on complex permission and priority management, and cannot reflect the dynamic change effect. Therefore, designing a dynamic plotting method for equipment support simulation deduction, which can perform plotting for the deduction process and can be flexibly expanded, is of great significance.

[0004] There is an urgent need for a dynamic plotting method for equipment support simulation deduction, which helps to solve the technical problem in the prior art that there is a lack of technology capable of digitalizing dynamic plotting. Summary of the Invention

[0005] In one embodiment, the present invention provides a dynamic plotting method for equipment support simulation deduction. By selecting a plotting label on the plotting label panel, then plotting the plotting label on the map, and setting a dynamic process, a dynamic plotting process is obtained to complete the digitalization and informatization of dynamic plotting, which helps to solve the technical problem in the prior art that there is a lack of technology capable of digitalizing dynamic plotting.

[0006] The dynamic plotting method for equipment support simulation deduction includes:

[0007] Select a plotting label on the plotting label panel;

[0008] Plot the plotting label on the map according to the operation of the first user, and generate a dynamic plotting process by setting a deduction path through the plotting label;

[0009] Edit the dynamic plotting process through the operation of the second user.

[0010] In one embodiment, the map is a two-dimensional map or a three-dimensional map, or a two-dimensional map and a three-dimensional map are simultaneously and synchronously displayed.

[0011] In one embodiment, when the map simultaneously and synchronously displays a two-dimensional map and a three-dimensional map, user operations will be synchronously and correspondingly displayed in the two-dimensional map and the three-dimensional map.

[0012] In one embodiment, the dynamic plotting process editing includes operations of pausing, accelerating, decelerating, and stopping the dynamic plotting process.

[0013] In one embodiment, through mouse operations, the perspective and field of view in the three-dimensional map can be controlled, and the viewpoint following operation of the synchronous display of the two-dimensional map and the three-dimensional map can be performed.

[0014] In one embodiment, after the step of editing the dynamic plotting process through the second user operation, the method further includes:

[0015] In the synchronous collaboration mode:

[0016] All users can receive the dynamic plotting processes plotted by other users;

[0017] In the asynchronous collaboration mode:

[0018] The dynamic plotting processes of local users are only stored and retained locally.

[0019] In one embodiment, in the synchronous collaboration mode:

[0020] Users with advanced permissions configure all the dynamic plotting processes, distribute all the dynamic plotting processes to all users, and can perform collaborative operations based on the distributed dynamic plotting processes.

[0021] In one embodiment, in the asynchronous collaboration mode:

[0022] The dynamic plotting processes are visible to users with advanced permissions, and invisible to the remaining users.

[0023] In one embodiment, the corresponding plotting user is traced according to the plotting label in the dynamic plotting process.

[0024] In one embodiment, users can recreate a situation layer during the collaborative plotting process and determine the attribution of the situation layer. BRIEF DESCRIPTION OF THE DRAWINGS

[0025] Figure 1 It is a schematic flowchart of a dynamic plotting method for equipment support simulation and deduction according to an embodiment of the present invention;

[0026] Figure 2 It is a two-dimensional plotting schematic diagram according to another embodiment of the present invention;

[0027] Figure 3Schematic diagram of 3D plotting in another embodiment of the present invention;

[0028] Figure 4 Schematic diagram of 2D and 3D collaborative plotting in another embodiment of the present invention;

[0029] Figure 5 Flow chart of military symbol plotting and editing in another embodiment of the present invention;

[0030] Figure 6 Flow chart of situation plotting in another embodiment of the present invention;

[0031] Figure 7 Flow chart of situation deduction in another embodiment of the present invention;

[0032] Figure 8 Flow chart of collaborative plotting in another embodiment of the present invention. Specific embodiments

[0033] The object of the present invention is to provide a dynamic plotting method for equipment support simulation deduction, which makes up for the deficiencies of existing methods, can complete task deduction and dynamic plotting during the deduction process, generates graphic texts of task plans through collective wisdom, has typical characteristics such as dynamic, collaborative and extensible, and can realize 2D, 3D and 2D-3D integrated plotting.

[0034] Figure 1 Schematic flow chart of a dynamic plotting method for equipment support simulation deduction in an embodiment of the present invention; Figure 2 Schematic diagram of 2D plotting in another embodiment of the present invention; Figure 3 Schematic diagram of 3D plotting in another embodiment of the present invention; Figure 4 Schematic diagram of 2D and 3D collaborative plotting in another embodiment of the present invention; Figure 5 Flow chart of military symbol plotting and editing in another embodiment of the present invention; Figure 6 Flow chart of situation plotting in another embodiment of the present invention; Figure 7 Flow chart of situation deduction in another embodiment of the present invention; Figure 8 Flow chart of collaborative plotting in another embodiment of the present invention.

[0035] As Figures 1 to 8 shown, in an embodiment, the present invention provides a dynamic plotting method for equipment support simulation deduction, and the dynamic plotting method for equipment support simulation deduction includes:

[0036] S101, select a plotting label in the plotting label panel.

[0037] In this step, specific steps for selecting a plotting label in the plotting label panel are provided.

[0038] S102. Plot the plotting label on the map according to the first user operation, and set a deduction path through the plotting label to generate a dynamic plotting process.

[0039] In this step, a specific step of plotting the plotting label on the map according to the first user operation and setting a deduction path through the plotting label to generate a dynamic plotting process is provided.

[0040] S103. Edit the dynamic plotting process through a second user operation.

[0041] In this step, a specific step of editing the dynamic plotting process through a second user operation is provided.

[0042] In this embodiment, a specific implementation manner of a dynamic plotting method for equipment support simulation deduction is provided.

[0043] In one embodiment, the map is a two-dimensional map or a three-dimensional map, or a two-dimensional map and a three-dimensional map are simultaneously and synchronously displayed.

[0044] In this embodiment, a specific implementation manner is provided where the map is two-dimensional or three-dimensional, or even different dimensions, but the two-dimensional map and the three-dimensional map are simultaneously displayed. Referring to the combat deduction rules, create three-dimensional situation plotting visualization display specifications, force deployment deduction display specifications, and three-dimensional combat deduction rules, and preset the entire combat process according to the time sequence management method.

[0045] In one embodiment, when the map uses a two-dimensional map and a three-dimensional map simultaneously and synchronously displayed, the user operation will be synchronously and correspondingly displayed in the two-dimensional map and the three-dimensional map.

[0046] In this embodiment, when the two-dimensional map and the three-dimensional map are simultaneously and synchronously displayed. This part mainly includes two-dimensional military symbol plotting, three-dimensional military symbol plotting, two-three-dimensional integrated military symbol plotting, and plotting editing. Two-dimensional military symbol plotting is in the two-dimensional plotting mode. Open the label management surface, select a label, and then click on the specified position on the two-dimensional map with the mouse, and the label is added to the map; three-dimensional military symbol plotting is in the three-dimensional plotting mode. Open the label management surface, select a label, and then click on the specified position in the three-dimensional scene with the mouse, and the label is added to the scene; two-three-dimensional integrated military symbol plotting means opening the two-three-dimensional synchronous plotting mode. After selecting a label from the label library, click on the specified position on the two-dimensional map or the three-dimensional globe with the mouse, and the label is synchronously added to both windows; plotting editing refers to performing scaling, moving, and deleting editing operations on the labels that have been plotted in two dimensions or three dimensions.

[0047] In one embodiment, the editing of the dynamic plotting process includes pausing, accelerating, decelerating, and stopping operations on the dynamic plotting process.

[0048] In this embodiment, a specific implementation manner for situation deduction of the dynamic plotting process is provided. Combining multimedia technology and time sequence management method, on a 3D globe or a 2D base map, the progress of troop operations and battles is dynamically simulated in an animated way, vividly reflecting the process of situation development. Select the loaded situation plan, and select "Play" in the right-click menu to perform situation deduction. During the deduction process, operations such as pause, acceleration, deceleration, and stop can be performed through the control panel, and operations such as perspective and field of view control in 3D and viewpoint following in 2D and 3D can be performed through mouse operations.

[0049] In one embodiment, through mouse operations, perspective and field of view control in the 3D map and viewpoint following operations for synchronously and simultaneously displaying the map in the 2D map and 3D map can be performed.

[0050] In one embodiment, after the step of editing the dynamic plotting process through the second user operation, the method further includes:

[0051] In the synchronous collaboration mode:

[0052] All users can receive the dynamic plotting processes plotted by other users;

[0053] In the asynchronous collaboration mode:

[0054] The dynamic plotting processes of local users are only stored and retained locally.

[0055] In this embodiment, a specific implementation manner for different user interactions using different collaboration modes is provided. Collaborative plotting enables users on different clients to perform plotting operations on the same situation map synchronously. Collaborative plotting is divided into two modes: synchronous and asynchronous. Synchronous collaborative plotting: After entering the collaborative plotting state, all users participating in the collaboration can simultaneously receive the label information plotted by other users, and all attributes of labels such as military symbols, pictorial symbols, text, and tables on the map are displayed correctly and kept consistent. Asynchronous collaborative plotting: Asynchronous collaborative plotting does not send the intermediate process of plotting to other users, and only packs and sends the data to other clients after a group of labels are plotted.

[0056] In one embodiment, in the synchronous collaboration mode:

[0057] Users with high-level permissions configure all the dynamic plotting processes, distribute all the dynamic plotting processes to all users, and can perform collaborative operations based on the distributed dynamic plotting processes.

[0058] In one embodiment, in the asynchronous collaboration mode:

[0059] The dynamic plotting processes are visible to users with high-level permissions, and invisible to the remaining users.

[0060] In one embodiment, the corresponding drawing user is tracked according to the drawing label number in the dynamic plotting process.

[0061] In one embodiment, the user can recreate the situation layer during the collaborative plotting process and determine the attribution of the situation layer.

[0062] Beneficial effects:

[0063] (1) Implementing the unified kernel technology has major significance for the integrated development and application of 2D and 3D. Based on the unified kernel, whether for 2D data or 3D data, there is no need to specifically distinguish and treat them, and they can be uniformly regarded as spatial data, which facilitates data management and storage.

[0064] (2) Adopting appropriate spatial database technology to efficiently and integrally store and manage 2D and 3D spatial data, and achieving that 2D data can be directly used in 3D products without preprocessing. 2D line and surface data can be quickly and dynamically modeled into 3D solid objects by specifying the height. At the same time, 3D data can also be displayed in a 2D window (the 3D data degrades to 2D, and the model is displayed in the form of a snapshot), truly realizing the integration of 2D and 3D data and completely solving the problem of two sets of data in one system in the past.

[0065] (3) Refining collaborative plotting, dividing collaborative plotting into synchronous collaboration and asynchronous collaboration to meet different working scenarios.

[0066] Based on the above description, each step is further described in detail:

[0067] A dynamic plotting method for equipment support simulation and deduction according to the present invention, which is a dynamic collaborative plotting method combining simulation and deduction and control technologies, and is mainly used for dynamic collaborative plotting in the process of mission plan simulation and deduction of equipment support and command training. It mainly includes 4 main parts: military symbol plotting and editing, situation plotting, situation deduction, and collaborative plotting.

[0068] 1. Military symbol plotting and editing mainly includes the following steps:

[0069] (1) After the user logs in, select different plotting scene modes, including 2D, 3D, and 2D-3D integrated mode, open the symbol management interface, and perform military symbol plotting;

[0070] (2) After completing the military symbol plotting, perform editing operations such as scaling, moving, and deleting on the plotted label numbers in 2D or 3D.

[0071] 2. Situation plotting mainly includes the following steps:

[0072] (1) Click the "New Situation" menu on the menu bar to pop up the New Situation dialog box, enter the basic information, and set it to the editable state;

[0073] (2) Select the label in the plotting panel, add it to the scene, and set the deduction path for it;

[0074] (3) Close the editable state of the situation file to complete the editing;

[0075] (4) The situation file can be saved and exported as a file in the specified format (.sml).

[0076] 3. The main steps of situation deduction mainly include the following:

[0077] (1) Select the loaded situation plan, right-click the menu and select "Play" to perform situation deduction;

[0078] (2) During the deduction process, operations such as pause, acceleration, deceleration, and stop can be performed through the control panel. Through mouse operations, operations such as perspective and field of view control in 3D and viewpoint following in 2D and 3D can be performed.

[0079] 4. The main steps of collaborative plotting mainly include the following:

[0080] (1) Before starting collaboration, the working mode of this collaboration should be set first. Select "Collaborative Plotting" → "Synchronous and Asynchronous Settings" on the main menu to determine whether to use synchronous or asynchronous plotting;

[0081] (2) After the collaborative user successfully joins the collaboration, they will wait to send the map or situation map for this collaborative plotting;

[0082] (3) After opening the situation map, a dialog box will pop up for collaborative situation layer settings. After selecting the collaborative situation layer and pressing the "OK" button, the situation map will be automatically sent to each collaborative user. Each collaborative user will then automatically open the same situation map with the collaborative situation layer. After that, each collaborative user can perform collaborative plotting on the collaborative layer of this situation map, and other non-collaborative situation layers will automatically become private layers that can only be used by themselves and are invisible to other collaborative users;

[0083] (4) During the collaborative plotting process, after the user selects a certain label, right-click the mouse and select the "Label Properties" menu in the shortcut menu to pop up the property panel. By viewing the identifier of the label on the symbol page of the property panel, it can be known which user plotted the label;

[0084] (5) The collaboration and each collaborative user can create situation layers during the collaborative plotting process and can control whether the situation layer is a collaborative layer or a private layer for their own use;

[0085] (6) In the asynchronous working mode, after the collaborative user adjusts the labels, selects one or more labels to be collaborated, and chooses "Collaborative Plotting" and "Asynchronous Data Sending", a new layer named after the sender's name and IP address will be created in the systems of other collaborative users, and the selected labels will be transmitted to this layer simultaneously.

[0086] The above has shown and described the basic principles, main features and advantages of the present invention. Those skilled in the art should understand that the present invention is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principles and process flows of the present invention. Without departing from the spirit and scope of the present invention, the present invention will have various changes and improvements, and these changes and improvements all fall within the scope of the present invention claimed. The scope of the present invention claimed is defined by the appended claims and their equivalents.

Claims

1. A dynamic plotting method for equipment support simulation, characterized in that: The dynamic plotting method for equipment support simulation deduction includes: Select the plot label in the Plot Label panel; Plotting the plotting marks on the map according to the first user operation, and generating a dynamic plotting process by setting a deduction path through the plotting marks; The dynamic plotting process is edited through a second user operation.

2. The dynamic plotting method for equipment support simulation according to claim 1 is characterized in that: The map is a two-dimensional map or a three-dimensional map, or the two-dimensional map and the three-dimensional map are displayed simultaneously.

3. The dynamic plotting method for equipment support simulation according to claim 2 is characterized in that: When the map uses a two-dimensional map and a three-dimensional map to display the maps simultaneously, user operations will be displayed synchronously and correspondingly in the two-dimensional map and the three-dimensional map.

4. The dynamic plotting method for equipment support simulation according to claim 3 is characterized in that: The dynamic plotting process editing includes pausing, accelerating, decelerating and stopping the dynamic plotting process.

5. The dynamic plotting method for equipment support simulation according to claim 4 is characterized in that: The viewing angle and field of view in the three-dimensional graph can be controlled by mouse operation, and the viewpoint following operation of the two-dimensional and three-dimensional graphs can be performed simultaneously.

6. The dynamic plotting method for equipment support simulation according to claim 5 is characterized in that: After the step of editing the dynamic plotting process by the second user operation, the method further includes: In synchronous collaboration mode: All users can receive the dynamic plotting process plotted by other users; In asynchronous collaboration mode: The dynamic plotting process of local users is only stored and retained locally.

7. The dynamic plotting method for equipment support simulation according to claim 6 is characterized in that: In the synchronous collaboration mode: The high-level authorized user configures all the dynamic plotting processes, distributes all the dynamic plotting processes to all users, and can perform collaborative operations based on the distributed dynamic plotting processes.

8. The dynamic plotting method for equipment support simulation according to claim 7 is characterized in that: In the asynchronous collaboration mode: The high-level permission user can see all the dynamic plotting processes, while other users cannot see the dynamic plotting processes.

9. The dynamic plotting method for equipment support simulation according to claim 8 is characterized in that: The corresponding drawing user is tracked according to the drawing number in the dynamic drawing process.

10. The dynamic plotting method for equipment support simulation according to claim 9 is characterized in that: Users can create situation layers during collaborative mapping and determine the ownership of situation layers.