A multi-scenario interactive system and method for deducing communication networking solutions

Through a multi-scene interaction system, combined with three-dimensional and holographic scenes, real-time synchronization and situational presentation of communication networking data is achieved, which solves the problems of unclear networking relationships and unintuitive deduction processes in traditional methods, and achieves a more intuitive and vivid networking deduction effect.

CN118433043BActive Publication Date: 2025-05-23NAT UNIV OF DEFENSE TECH
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Patent Information

Application Number
CN202410677117.7
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2024-05-29
Publication Date
2025-05-23
Estimated Expiration
2044-05-29

AI Technical Summary

Technical Problem

The traditional communication networking relationship is not clear, the deduction process is not intuitive, and it cannot effectively present a mixed application of multiple interactions.

Method used

A multi-scene interaction system is adopted to connect the three-dimensional communication network deduction system, middleware system and holographic communication network deduction system through a local area network to achieve real-time data synchronization and situation presentation. The combination of three-dimensional scenes and holographic scenes uses three-dimensional models and holographic electronic sandboxes to present the network connection relationship and dynamic deduction process.

Benefits of technology

This makes the communication network connection relationship more intuitive and clear, and the deduction process more vivid and intuitive, solving the problems of unclear relationship expression and unintuitive deduction process in traditional methods.

✦ Generated by Eureka AI based on patent content.

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Abstract

The present invention provides a multi-scenario interactive system and method for deduction of communication networking schemes, which relates to the field of communication networking schemes; the system includes a three-dimensional communication networking deduction system, a middleware system and a holographic communication networking deduction system connected by a local area network; the three-dimensional communication networking deduction system is deployed on the front-end computer to realize basic functions such as communication model management, communication networking and deduction; the middleware system is deployed on the back-end server to realize real-time information interaction between the holographic communication networking deduction system on the extended reality end and the three-dimensional communication networking deduction system on the front-end computer end; the embedded program is deployed on the extended reality device end to construct a holographic communication networking deduction system on the extended reality device end. The present invention solves the problems of unclear representation of traditional communication networking relationships and unintuitive deduction processes.
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Description

Technical Field

[0001] The present invention relates to the technical field of communication networking solutions, and in particular to a multi-scenario interaction system and method for deducing a communication networking solution. Background Art

[0002] The communication networking scheme is mainly used to design the organizational relationship and contingency plan of the communication network in specific scenarios, including the networking scheme of professional communication systems such as mobile communication, satellite communication, optical cable network communication, telephone communication, computer communication, or the comprehensive networking scheme of multiple communication systems. The networking scheme mainly includes the equipment composition of various communication units, the connection relationship between the units, and the changes in the network status of the communication units caused by time or triggering events (such as power outages, fires, etc.), and sets corresponding response measures according to such changes.

[0003] At present, VR technology can be used to realize single-person and multi-person communication network simulation and operation networking training. It mainly uses 5G technology to realize massive data transmission between VR devices and communication equipment, establish a pairing relationship between VR devices and communication equipment, and manage the communication equipment to achieve the purpose of communication network training managed by VR devices, and achieve highly realistic and near real-time training effects.

[0004] However, this method mainly trains the networking of physical communication equipment, which is a device-level operation application training and can only present the communication network training effect. It leads to blurred static communication networking relationships and does not involve the dynamic process of communication networking solution deduction, nor does it involve multiple interactive mixed applications. It has problems such as unclear communication networking relationships and unintuitive deduction process. Summary of the invention

[0005] Based on this, it is necessary to provide a multi-scenario interactive system and method for communication networking solution simulation to address the above-mentioned technical problems, which solves the problems of unclear traditional communication networking relationship expression and unintuitive simulation process.

[0006] In a first aspect, the present invention provides a multi-scenario interactive system for deducing a communication networking solution, the system comprising:

[0007] A three-dimensional communication networking deduction system is provided at a front-end computer end, and is used to receive a first user instruction, create and load networking data based on a three-dimensional scene and a three-dimensional model, and send the data to a middleware system; and receive first data from the middleware system, and synchronously update the current networking data; wherein the networking data includes application scenarios, networking connection relationships between communication devices, communication networking schemes, and dynamic deduction processes of communication networking schemes;

[0008] The middleware system is set up on the backend server side and is used to synchronize the networking data between the three-dimensional communication networking deduction system and the holographic communication networking deduction system in real time;

[0009] The holographic communication networking deduction system is arranged at the end of the extended reality device, and is used to integrate the holographic electronic sandbox component, receive the second data of the middleware system, and synchronously present the networking data in a holographic form; receive the second user instruction, adjust the current networking data based on the holographic electronic sandbox component, and send it to the middleware system.

[0010] Furthermore, the first data includes: networking data adjusted in the holographic communication networking deduction system; the second data includes: networking data created and loaded in the three-dimensional communication networking deduction system.

[0011] Furthermore, the middleware system includes:

[0012] An extended reality device-side interface, used for data communication with the holographic communication networking deduction system;

[0013] The data interaction module is connected to the expansion device end interface and the front-end computer end interface at the same time, and is used to interact and synchronize various types of data received by different ports;

[0014] The front-end computer interface is used for data communication with the three-dimensional communication networking deduction system.

[0015] Furthermore, the middleware system also includes a terminal management module, which is connected to the extended device end interface and the front-end computer end interface at the same time, and is used to configure the working parameters of the extended reality device end and the front-end computer end, and display the working status of the corresponding terminal.

[0016] Furthermore, the holographic communication networking deduction system includes:

[0017] A communication network management module, used to present the network connection relationship and network status in a holographic form and send them to other modules in the holographic communication network deduction system;

[0018] A deduction process management module, used to present the dynamic deduction process in a holographic form and send it to other modules in the holographic communication networking deduction system;

[0019] A human-computer interaction module, used to present a floating menu, respond to user operations, generate a second user instruction, and send the second user instruction to the communication networking management module and the deduction process management module;

[0020] The data interaction interface module is connected to the communication networking management module, the deduction process management module, the holographic electronic sandbox component, and the middleware system at the same time, and is used to synchronize the information in the communication networking management module, the deduction process management module, and the holographic electronic sandbox component with the middleware system;

[0021] The holographic electronic sandbox component is used to receive information from the communication networking management module and the deduction process management module and present it in a holographic form.

[0022] Furthermore, the dynamic deduction process includes: the movement process of the three-dimensional model and the network state change process.

[0023] Furthermore, the three-dimensional communication networking simulation system includes: a networking solution management module, an application environment management module, a communication model management module, a communication networking management module, a simulation process management module, a communication service management module, a communication solution evaluation module, and a data interaction interface module.

[0024] On the other hand, the present invention also proposes a multi-scenario interaction method for deducing a communication networking solution, the method comprising:

[0025] The user creates and loads networking data through the three-dimensional communication networking deduction system on the front-end computer, and sends it to the middleware system; the middleware system receives the networking data and sends it to the holographic communication networking deduction system on the extended reality end; the holographic communication networking deduction system realizes the synchronization of networking data in the holographic scene;

[0026] In the holographic scene, the user adjusts the current networking data through the holographic communication networking deduction system and sends it to the middleware system; the middleware system receives the adjusted networking data and sends it to the three-dimensional communication networking deduction system; the three-dimensional communication networking deduction system synchronously updates the current networking data;

[0027] Among them, the networking data includes application scenarios, networking connection relationships between communication devices, communication networking solutions and the dynamic deduction process of communication networking solutions.

[0028] Furthermore, the holographic communication networking deduction system realizes the synchronization of networking data in the holographic scene, including:

[0029] According to the networking data, the networking connection relationship and networking status are presented in a holographic form; and the dynamic deduction process is presented in a holographic form.

[0030] Furthermore, the user adjusts the current networking data through the holographic communication networking deduction system, including: the user operates the floating menu under the holographic scene through gesture instructions to complete the adjustment of the current networking data.

[0031] In general, the present invention provides a multi-scenario interactive system and method for deducing a communication networking solution. The technical solution conceived by the present invention can achieve the following beneficial effects compared with the prior art:

[0032] (1) The present invention presents the situation and deduces the process of the communication networking scheme based on the constructed extended reality end holographic scene and the foreground computer end three-dimensional scene. By presenting the communication networking situation on the basis of the holographic electronic sandbox, the distributed communication networking connection relationship is made more intuitive and clearer. Various communication network systems adopt a vivid link expression method to make the characteristic differences between the communication network systems clearer. On the basis of the holographic electronic sandbox, the dynamic deduction process of the communication networking scheme such as the position change and state change of the communication equipment and the communication link over time is realized, making the deduction process of the communication networking scheme more vivid and intuitive. It solves the problems of unclear representation of the traditional communication networking relationship and non-intuitive deduction process.

[0033] (2) Through the three-dimensional communication network simulation system on the front-end computer, communication networking and process simulation are carried out based on three-dimensional scenes and three-dimensional models, making the communication equipment model more specific and intuitive, the communication link parameter configuration more flexible and convenient, and the network composition situation clearer.

[0034] (3) The three systems are respectively set up in different terminals, and the middleware system is used to synchronize the networking data between the three-dimensional communication networking simulation system and the holographic communication networking simulation system in real time. At the same time, the situation presentation and dynamic simulation of the communication network based on the three-dimensional scene and holographic scene modes are realized, solving the problem of multi-scenario synchronous simulation of the communication networking solution.

[0035] (4) By adjusting the networking data such as the three-dimensional model and the three-dimensional link in the holographic scene, the communication networking method is more flexible and convenient; the networking and deduction are carried out by using two methods: the front-end computer interaction and the extended reality gesture interaction, and the interaction method is diverse and flexible. BRIEF DESCRIPTION OF THE DRAWINGS

[0036] In order to more clearly illustrate the technical solutions in the present invention or the prior art, the following briefly introduces the drawings required for use in the embodiments or the description of the prior art. Obviously, the drawings described below are some embodiments of the present invention. For ordinary technicians in this field, other drawings can be obtained based on these drawings without paying creative work.

[0037] Figure 1 It is a schematic diagram of the system composition of a multi-scenario interactive system and method for deducing a communication networking solution provided by the present invention;

[0038] Figure 2It is a schematic diagram of the composition of a three-dimensional communication networking deduction system of a multi-scenario interactive system and method for deducing a communication networking solution provided by the present invention;

[0039] Figure 3 It is a schematic diagram of the composition of a middleware system of a multi-scenario interactive system and method for deducing a communication networking solution provided by the present invention;

[0040] Figure 4 It is a schematic diagram of the composition of a holographic communication networking deduction system of a multi-scenario interactive system and method for deducing a communication networking solution provided by the present invention;

[0041] Figure 5 It is a schematic diagram of the principle of a multi-scenario interactive system and method for deducing a communication networking solution provided by the present invention. DETAILED DESCRIPTION

[0042] In order to make the purpose, technical solution and advantages of the present invention clearer, the technical solution of the present invention will be clearly and completely described below in conjunction with the drawings and embodiments of the present invention. Obviously, the described embodiments are part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without creative work belong to the scope of protection of the present invention.

[0043] It should be noted that, in the description of the embodiments of the present invention, the terms "include", "comprise" or any other variants thereof are intended to cover non-exclusive inclusion, so that a method, step or system including a series of elements includes not only those elements, but also includes other elements not explicitly listed, or also includes elements inherent to such method, step or system. In the absence of further restrictions, an element defined by the sentence "includes a ..." does not exclude the existence of other identical elements in the method, step or system including the element.

[0044] The present invention proposes a multi-scenario interactive system for deducing communication networking solutions, such as Figure 1 As shown, the system includes a three-dimensional communication networking deduction system, a middleware system and a holographic communication networking deduction system connected by a local area network.

[0045] The system hardware includes an extended reality device, a front-end computer, and a back-end server. The three are connected by a local area network to achieve network communication; the connection method can be wired or wireless. Deploy an embedded program on the extended reality device to build a holographic communication networking deduction system on the extended reality device. Deploy a three-dimensional communication networking deduction system on the front-end computer to realize basic functions such as communication model management, communication networking and deduction. Deploy a middleware system on the back-end server to realize real-time information interaction between the holographic communication networking deduction system on the extended reality side and the three-dimensional communication networking deduction system on the front-end computer. It can be used to carry out satellite communication networking, telephone communication networking, mobile communication networking, computer communication networking, etc., and deduce the networking plan according to specific scenarios of various emergency events such as floods and earthquakes to optimize the communication networking plan.

[0046] The three-dimensional communication networking simulation system is set on the front-end computer end, and is used to receive the first user instruction, create and load the networking data based on the three-dimensional scene and the three-dimensional model, and send it to the middleware system; and receive the first data of the middleware system and synchronously update the current networking data.

[0047] 3D scene interaction is to build a 3D scene of geographical terrain based on a computer platform. Add 3D models of various communication equipment and networking connections between various models in the 3D scene to realize the 3D presentation of communication networking. In the 3D scene, various communication equipment models and networking connections can dynamically change their positions and states over time according to pre-set tasks. Users can randomly adjust the communication equipment models and networking connections in the 3D scene to deduce whether the communication networking solution in a specific scene is reasonable and feasible.

[0048] The three-dimensional model includes a three-dimensional model of a communication device and a three-dimensional module of a communication interface;

[0049] The first user instruction refers to the interaction between the user and the three-dimensional communication networking simulation system; it can be creating a networking plan, loading a networking plan, or setting an application scenario environment, etc., and human-computer interaction is generally performed using a mouse, keyboard, or touch screen.

[0050] The networking data may include application scenarios, networking connection relationships between communication devices, communication networking solutions, and the dynamic deduction process of the communication networking solutions. The dynamic deduction process may include the movement process of the three-dimensional model and the change process of the networking state.

[0051] The first data received by the middleware system is: the networking data adjusted in the holographic communication networking deduction system.

[0052] The three-dimensional communication networking simulation system on the front-end computer is an application program that performs communication networking and process simulation based on three-dimensional scenes and three-dimensional models. The three-dimensional communication networking simulation system can effectively manage communication models, deploy three-dimensional models in three-dimensional scenes, network and connect the deployed three-dimensional models according to the communication network type, simulate the process of networking solutions according to events and time relationships, set communication business requirements, and evaluate communication networking solutions based on the support of the communication network for communication business requirements.

[0053] As an embodiment of the present invention, Figure 2 As shown, the three-dimensional communication networking simulation system includes: networking solution management module, application environment management module, communication model management module, communication networking management module, simulation process management module, communication service management module, communication solution evaluation module, data interaction interface module and other functional modules, which support three-dimensional presentation and dynamic simulation of communication networking in specific application environments.

[0054] The network plan management module is used to create, load, store, call, and generate documents for network plans. Network plans are stored in the form of json files.

[0055] The application environment management module is used to edit application environments such as regional terrain environment, weather environment, and application background environment.

[0056] The communication model management module is used to edit and manage the communication model, the composition and deployment of the communication unit, and may include a communication device 3D model management unit, a communication interface 3D model management unit, a communication unit composition management unit, a communication unit deployment management unit, and the like.

[0057] The communication network management module is used to edit and manage the communication network, communication links, and communication protocol parameters, etc. It can include a communication network management unit, a communication link management unit, a communication protocol parameter configuration management unit, etc.

[0058] The deduction process management module is used to edit and manage the events, triggers and deduction processes of communication deduction. It can include an event management unit, a trigger management unit and a deduction management unit. It should be noted that events include deduction events, directly generated events, state change events, link state change events, communication service events, etc.

[0059] The communication service management module is used to generate communication service requirements according to voice, video and data, and associate them with the communication network.

[0060] The communication scheme evaluation module is used to evaluate the matching of communication services and communication networks in real time according to the deduction process, and to assign values ​​and evaluate the communication scheme according to the set judgment method.

[0061] The data interaction interface module interacts with the middleware system and is used to synchronize information with the holographic communication networking deduction system at the extended reality end through the middleware system.

[0062] The middleware system is set up on the background server side and is used to synchronize the networking data between the three-dimensional communication networking deduction system and the holographic communication networking deduction system in real time.

[0063] The middleware system is a computer application that can realize real-time information interaction between the holographic communication networking deduction system at the extended reality end and the three-dimensional communication networking deduction system at the front computer end. More specifically, it can not only synchronize the networking situation of the holographic electronic sand table system at the extended reality end with the three-dimensional communication networking deduction system at the front computer end, but also operate and control the position, size, state, etc. of the holographic electronic sand table at the extended reality end based on the three-dimensional communication networking deduction system at the front computer end.

[0064] As an embodiment of the present invention, Figure 3 As shown, the middleware system includes:

[0065] The extended reality device interface is used for data communication with the holographic communication networking simulation system;

[0066] The data interaction module is connected to the expansion device end interface and the front-end computer end interface at the same time, and is used to interact and synchronize various types of data received by different ports; and realize various types of data interaction and synchronization across systems.

[0067] Computer-side interface, used for data communication with the three-dimensional communication networking simulation system.

[0068] More specifically, the three-dimensional communication networking deduction system transmits data to the data interaction module through the computer-side interface, and the data interaction module transmits the data to the holographic communication networking deduction system through the extended reality device-side interface, so as to synchronize the application environment and networking scheme in the three-dimensional communication networking deduction system to the holographic communication networking deduction system on the extended reality side. Similarly, the extended communication networking deduction system transmits data to the data interaction module through the extended reality device-side interface, and the data interaction module transmits the data to the three-dimensional communication networking deduction system through the computer-side interface, so as to synchronize the application environment and networking scheme in the application environment and networking scheme to the three-dimensional communication networking deduction system on the front-end computer side. In this way, real-time information interaction is realized between the holographic communication networking deduction system on the extended reality side and the three-dimensional communication networking deduction system on the front-end computer side.

[0069] Further, such as Figure 3As shown, the middleware system may also include a terminal management module. The terminal management module is connected to the extended device interface and the front-end computer interface at the same time, and is used to configure the working parameters of the extended reality device and the front-end computer, and display the working status of the corresponding terminal. This allows the working status of the terminal in all scenarios to be presented in different scenarios, such as the connection status, number of connections, and type of connections of the extended device, so as to prevent the inability to quickly find out the cause when a certain extended reality terminal fails.

[0070] In addition, it also includes an IP address management module, which is used to set the IP addresses of the middleware server, the front-end computer, and the extended reality device so that they are in the same local area network.

[0071] The holographic communication networking deduction system is set at the extended reality device end, used to integrate the holographic electronic sandbox component, receive the second data of the middleware system, and synchronously present the networking data in a holographic form; receive the second user instruction, adjust the current networking data based on the holographic electronic sandbox component, and send it to the middleware system.

[0072] In other words, the holographic communication networking simulation system is implemented by an embedded program deployed on the extended reality device, and the embedded program integrates the holographic electronic sandbox component. The extended reality end holographic communication networking simulation system builds the basic communication networking environment based on the holographic electronic sandbox, and can deploy the three-dimensional model of the communication equipment, and present the networking connection relationship between the communication equipment in a holographic form, and the communication equipment and the networking connection relationship can present the dynamic change process of the networking scheme such as position and status according to the simulation process.

[0073] Holographic scene interaction is a holographic electronic sandbox built based on virtual reality, augmented reality, mixed reality and other extended reality devices. In the holographic scene, a professional communication system networking solution or a comprehensive networking solution for multiple communication systems is presented. Users can use gestures to add, delete, and edit communication device models and connections in the holographic scene, so as to adjust and optimize the networking solution in the holographic scene.

[0074] The second data received from the middleware system includes: networking data created and loaded in the three-dimensional communication networking simulation system.

[0075] The networking data may include application scenarios, networking connection relationships between communication devices, communication networking solutions, and the dynamic deduction process of the communication networking solutions. The dynamic deduction process may include the movement process of the three-dimensional model and the change process of the networking state.

[0076] The second user instruction refers to the interaction between the user and the holographic communication networking deduction system; it can be creating a networking plan or loading a networking plan, etc.

[0077] It should be noted that the second user instructions can use gestures, actions, clicking on the floating menu in the holographic scene, etc. to create an application environment, deploy communication device models, establish communication connections between communication devices, and adjust communication networking plans.

[0078] The extended reality device can be glasses, helmets, etc. When the user starts to use the extended reality device, the application scene is initialized, and the application scene can be switched according to the first perspective and the equipment perspective.

[0079] As an embodiment of the present invention, Figure 4 As shown, the holographic communication networking simulation system includes a communication networking management module, a simulation process management module, a human-computer interaction module, a data interaction interface module and a holographic electronic sandbox component.

[0080] A communication network management module, used to present the network connection relationship and network status in a holographic form and send them to other modules in the holographic communication network deduction system;

[0081] The deduction process management module is used to present the dynamic deduction process in a holographic form and send it to other modules in the holographic communication networking deduction system; the dynamic deduction process may include the movement process of the three-dimensional model and the networking state change process.

[0082] A human-computer interaction module, used to present a floating menu, respond to user operations, generate a second user instruction, and send the second user instruction to the communication networking management module and the deduction process management module;

[0083] The data interaction interface module is connected to the communication network management module, the deduction process management module, the holographic electronic sand table component, and the middleware system at the same time, and is used to synchronize the information in the communication network management module, the deduction process management module, and the holographic electronic sand table component with the middleware system;

[0084] The holographic electronic sandbox component is used to receive information from the communication networking management module and the deduction process management module and present it in a holographic form. For example, it presents the three-dimensional terrain of a specific area and performs basic operations such as local amplification, rotation, elevation measurement, and annotation on the terrain of a specific area.

[0085] On the other hand, the present invention also provides a multi-scenario interactive method for communication networking scheme deduction. It organically integrates the holographic communication networking deduction system at the extended reality end, the middleware system and the three-dimensional communication networking deduction system at the front-end computer end, and realizes the effective interaction of communication networking and deduction in both holographic and three-dimensional scenarios.

[0086] Specific methods include:

[0087] The user creates and loads networking data through the three-dimensional communication networking deduction system on the front-end computer, and sends it to the middleware system; the middleware system receives the networking data and sends it to the holographic communication networking deduction system on the extended reality end; the holographic communication networking deduction system realizes the synchronization of networking data in the holographic scene;

[0088] In the holographic scenario, the user adjusts the current networking data through the holographic communication networking deduction system and sends it to the middleware system; the middleware system receives the adjusted networking data and sends it to the three-dimensional communication networking deduction system; the three-dimensional communication networking deduction system synchronously updates the current networking data.

[0089] Among them, the networking data includes application scenarios, networking connection relationships between communication devices, communication networking plans and the dynamic deduction process of communication networking plans.

[0090] As an embodiment, the holographic communication networking deduction system realizes the synchronization of networking data in a holographic scene, including: presenting the networking connection relationship and networking status in a holographic form according to the networking data, and presenting the dynamic deduction process in a holographic form.

[0091] As an embodiment, the user adjusts the current networking data through the holographic communication networking deduction system, including: the user operates the floating menu under the holographic scene through gesture instructions to complete the adjustment of the current networking data.

[0092] In other words, the user loads the networking plan and sets the application scenario through the three-dimensional communication networking deduction system on the foreground computer, and the middleware system interacts with the holographic communication networking deduction system on the extended reality side to complete the synchronization of the networking plan and the application scenario in the holographic scene; in the three-dimensional scene, the application personnel deduce and adjust the networking plan through keyboard and mouse interaction, and the middleware system completes the data synchronization with the holographic communication networking deduction system on the extended reality side; in the holographic scene, the application personnel deduce and adjust the networking plan through gesture interaction, and the middleware system also completes the data synchronization with the three-dimensional communication networking deduction system on the foreground computer side.

[0093] As an embodiment, a user logs in to the three-dimensional communication networking simulation system on the front-end computer, and the method for creating and loading a simulation plan can be: turn on the system, log in to the main interface, click System Management, New Plan in sequence, and enter the plan creation interface; fill in the plan name, plan code and plan description, click OK, and set the simulation time; click System Management, Save Plan in sequence, and enter the plan saving interface; enter the plan name, plan code and plan description filled in above to save the simulation plan; click System Management, Load Plan in sequence to enter the plan loading interface; click the saved plan or plan template to load.

[0094] Among them, the method for setting the simulation time includes: clicking Simulation Management and Simulation Settings in sequence to enter the simulation setting interface, enter the simulation start time and simulation duration, and complete the setting of the simulation time.

[0095] The method for synchronizing the simulation plan includes: clicking on Environment Management and Scenario Import in sequence to enter the plan import interface; selecting a plan to import, opening the middleware and simulation software and connecting them, clicking on Environment Management and Plan Synchronization in sequence; selecting a plan to synchronize.

[0096] As a specific embodiment of the present invention, Figure 5 As shown, the specific process includes: creating / loading solutions, setting application environment, 3D scene interaction, holographic scene interaction and solution output.

[0097] Create / load scenarios include:

[0098] Application personnel create new networking solutions or load existing networking solutions by operating the 3D communication networking simulation system on the front-end computer;

[0099] The three-dimensional communication networking simulation system on the front-end computer sends a message to the middleware system, requesting the holographic communication networking simulation system on the extended reality end to synchronize the networking solution;

[0100] The middleware system sends a message to the extended reality end holographic communication networking simulation system, requiring the system to synchronize the networking solution in the holographic scenario.

[0101] Setting the application environment includes:

[0102] Application personnel set the application environment of the communication network solution by operating the three-dimensional communication network simulation system on the front-end computer;

[0103] The three-dimensional communication networking simulation system on the front-end computer loads and updates the system application environment according to the set application environment;

[0104] The three-dimensional communication networking simulation system on the front-end computer simultaneously sends a message to the middleware system, requesting the holographic communication networking simulation system on the extended reality end to synchronize the application environment;

[0105] The middleware system sends a message to the holographic communication networking simulation system on the extended reality side, requiring the system to synchronize the application environment in the holographic scene;

[0106] The extended reality holographic communication networking simulation system updates the application environment according to the information sent by the middleware system.

[0107] 3D scene interaction includes:

[0108] Application personnel operate the three-dimensional communication networking simulation system on the front-end computer through keyboard and mouse interaction;

[0109] The three-dimensional communication networking simulation system on the front-end computer creates a new networking plan or simulates and adjusts the networking plan according to the operation results of the application personnel;

[0110] The three-dimensional communication networking simulation system on the front-end computer simultaneously sends a message to the middleware system, requesting the holographic communication networking simulation system on the extended reality end to synchronize the networking data;

[0111] The middleware system sends a message to the holographic communication networking simulation system on the extended reality side, requiring the system to synchronize networking data in the holographic scene;

[0112] The extended reality holographic communication networking simulation system updates the networking data according to the information sent by the middleware system, and presents the updated communication networking situation in real time.

[0113] Holographic scene interaction includes:

[0114] Application personnel operate the extended reality end holographic communication networking deduction system through gesture interaction;

[0115] The extended reality end holographic communication networking simulation system simulates and adjusts the networking plan according to the operation results of the application personnel;

[0116] The holographic communication networking simulation system at the extended reality end simultaneously sends a message to the middleware system, requesting the three-dimensional communication networking simulation system at the front-end computer end to synchronize the networking data;

[0117] The middleware system sends a message to the 3D communication networking simulation system on the front-end computer, requiring the system to synchronize the networking data in the 3D scene;

[0118] The three-dimensional communication networking simulation system on the front-end computer updates the networking data according to the information sent by the middleware system, and presents the updated communication networking situation in real time.

[0119] Solution outputs include:

[0120] Application personnel can output the simulation plan by operating the 3D communication network simulation system on the front-end computer. The output result can be a document or a video.

[0121] Application personnel can save the simulation plan by operating the three-dimensional communication networking simulation system on the front-end computer for easy loading next time.

[0122] In summary, the present invention presents the situation and deduces the process of the communication networking scheme based on the constructed extended reality end holographic scene and the foreground computer end three-dimensional scene. By presenting the communication networking situation on the basis of the holographic electronic sandbox, the distributed communication networking connection relationship is more intuitive and clearer. Various communication network systems adopt a vivid link expression method to make the characteristic differences between the communication network systems clearer. On the basis of the holographic electronic sandbox, the dynamic deduction process of the communication networking scheme such as the position change and state change of the communication equipment and the communication link over time is realized, making the deduction process of the communication networking scheme more vivid and intuitive. It solves the problems of unclear representation of the traditional communication networking relationship and non-intuitive deduction process.

[0123] It should be noted that, for the above-mentioned various embodiments, for the sake of simplicity of description, they are all expressed as a series of action combinations, but those skilled in the art should be aware that the present application is not limited by the described order of actions, because according to the present application, certain steps can be performed in other orders or simultaneously. Secondly, those skilled in the art should also be aware that the embodiments described in the specification are all preferred embodiments, and the actions and modules involved are not necessarily required by the present application.

[0124] In the above embodiments, the description of each embodiment has its own emphasis. For parts that are not described in detail in a certain embodiment, reference can be made to the relevant descriptions of other embodiments.

[0125] In the several embodiments provided in this application, it should be understood that the disclosed method or system can be implemented in other ways. For example, the above-described embodiments are only schematic, and the division of the units is only a logical function division. There may be other division methods in actual implementation, such as multiple units or components can be combined or integrated into another system, or some features can be ignored or not executed.

[0126] The units described as separate components may or may not be physically separated, and the components shown as units may or may not be physical units, that is, they may be located in one place or distributed on multiple network units. Some or all of the units may be selected according to actual needs to achieve the purpose of the solution of this embodiment.

[0127] In addition, each functional unit in each embodiment of the present application may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit. The above-mentioned integrated unit may be implemented in the form of hardware or in the form of software functional units.

[0128] If the integrated unit is implemented in the form of a software functional unit and sold or used as an independent product, it can be stored in a computer-readable memory. Based on this understanding, the technical solution of the present application is essentially or the part that contributes to the prior art or all or part of the technical solution can be embodied in the form of a software product, which is stored in a memory and includes several instructions for a computer device (which can be a personal computer, a server or a network device, etc.) to execute all or part of the steps of the method described in each embodiment of the present application.

[0129] A person skilled in the art can understand that all or part of the various circuits in the above-mentioned embodiments can be completed by entering a program to instruct related hardware. The program can be stored in a computer-readable memory, and the memory can include: a flash drive, a read-only memory (ROM), a random access memory (RAM), a magnetic disk or an optical disk, etc.

[0130] The above is only an exemplary embodiment of the present disclosure, and the scope of the present disclosure cannot be limited thereto. That is, any equivalent changes and modifications made according to the teachings of the present disclosure are still within the scope of the present disclosure. After considering the specification and practicing the disclosure here, those skilled in the art will easily think of the implementation scheme of the present disclosure. This application is intended to cover any modification, use or adaptation of the present disclosure, which follows the general principles of the present disclosure and includes common knowledge or customary technical means in the technical field not recorded in the present disclosure. The description and examples are regarded as exemplary only, and the scope and spirit of the present disclosure are defined by the claims.

[0131] The technical features of the above embodiments may be combined arbitrarily. To make the description concise, not all possible combinations of the technical features in the above embodiments are described. However, as long as there is no contradiction in the combination of these technical features, they should be considered to be within the scope of this specification.

[0132] It will be easily understood by those skilled in the art that the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent substitutions and improvements made within the spirit and principles of the present invention should be included in the protection scope of the present invention.

Claims

1. A multi-scenario interactive system for deducing communication networking solutions, characterized in that: The system includes: A three-dimensional communication networking deduction system is provided at a front-end computer end, and is used to receive a first user instruction, create and load networking data based on a three-dimensional scene and a three-dimensional model, and send the data to a middleware system; and receive first data from the middleware system, and synchronously update the current networking data; wherein the first user instruction refers to the interaction between the user and the three-dimensional communication networking deduction system, including creating a networking plan, loading a networking plan, and setting an application scenario environment; the networking data includes an application scenario, a networking connection relationship between communication devices, a communication networking plan, and a dynamic deduction process of the communication networking plan; the dynamic deduction process includes: a movement process of a three-dimensional model, and a network state change process; A middleware system is provided at the backend server end, and is used for real-time synchronization of networking data between the three-dimensional communication networking deduction system and the holographic communication networking deduction system; wherein the middleware system includes a terminal management module, and the terminal management module is connected to the extended reality device end interface and the front-end computer end interface at the same time, and is used for configuring the working parameters of the extended reality device end and the front-end computer end, and displaying the working status of the corresponding terminal; The holographic communication networking deduction system is arranged at the end of the extended reality device, and is used to integrate the holographic electronic sandbox component, receive the second data of the middleware system, and synchronously present the networking data in a holographic form; receive the second user instruction, adjust the current networking data based on the holographic electronic sandbox component, and send it to the middleware system; the second user instruction refers to the interaction between the user and the holographic communication networking deduction system; including creating a networking plan, loading the networking plan, using gestures and actions to click on the floating menu in the holographic scene to create an application environment, deploying communication device models, establishing communication connection relationships between communication devices, and adjusting the communication networking plan.

2. A multi-scenario interactive system for deducing a communication networking solution as claimed in claim 1, characterized in that: The first data includes: the networking data adjusted in the holographic communication networking deduction system; the second data includes: the networking data created and loaded in the three-dimensional communication networking deduction system.

3. A multi-scenario interactive system for deducing a communication networking solution as claimed in claim 1, characterized in that: The middleware system comprises: An extended reality device-side interface, used for data communication with the holographic communication networking deduction system; The data interaction module is connected to the expansion device end interface and the front-end computer end interface at the same time, and is used to interact and synchronize various types of data received by different ports; The front-end computer interface is used for data communication with the three-dimensional communication networking deduction system.

4. A multi-scenario interactive system for deducing a communication networking solution as claimed in claim 1, characterized in that: The holographic communication networking deduction system comprises: A communication network management module, used to present the network connection relationship and network status in a holographic form and send them to other modules in the holographic communication network deduction system; A deduction process management module, used to present the dynamic deduction process in a holographic form and send it to other modules in the holographic communication networking deduction system; A human-computer interaction module, used to present a floating menu, respond to user operations, generate a second user instruction, and send the second user instruction to the communication networking management module and the deduction process management module; The data interaction interface module is connected to the communication networking management module, the deduction process management module, the holographic electronic sandbox component, and the middleware system at the same time, and is used to synchronize the information in the communication networking management module, the deduction process management module, and the holographic electronic sandbox component with the middleware system; The holographic electronic sandbox component is used to receive information from the communication networking management module and the deduction process management module and present it in a holographic form.

5. A multi-scenario interactive system for deducing a communication networking solution as claimed in claim 1, characterized in that: The three-dimensional communication networking simulation system includes: a networking solution management module, an application environment management module, a communication model management module, a communication networking management module, a simulation process management module, a communication service management module, a communication solution evaluation module, and a data interaction interface module.

6. A multi-scenario interaction method of a multi-scenario interaction system deduced by a communication networking solution as described in any one of claims 1 to 5, characterized in that: The method comprises: The user creates and loads networking data through the three-dimensional communication networking deduction system on the front-end computer, and sends it to the middleware system; the middleware system receives the networking data and sends it to the holographic communication networking deduction system on the extended reality end; the holographic communication networking deduction system realizes the synchronization of networking data in the holographic scene; In the holographic scene, the user adjusts the current networking data through the holographic communication networking deduction system and sends it to the middleware system; the middleware system receives the adjusted networking data and sends it to the three-dimensional communication networking deduction system; the three-dimensional communication networking deduction system synchronously updates the current networking data; Among them, the networking data includes application scenarios, networking connection relationships between communication devices, communication networking solutions and the dynamic deduction process of communication networking solutions.

7. A multi-scenario interaction method for deducing a communication networking solution as claimed in claim 6, characterized in that: The holographic communication networking deduction system realizes the synchronization of networking data in the holographic scene, including: According to the networking data, the networking connection relationship and networking status are presented in a holographic form; and the dynamic deduction process is presented in a holographic form.

8. A multi-scenario interaction method for deducing a communication networking solution as claimed in claim 6, characterized in that: The user adjusts the current networking data through the holographic communication networking deduction system, including: the user operates the floating menu under the holographic scene through gesture commands to complete the adjustment of the current networking data.

Citation Information

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