Virtual-real interaction simulation communication system and operation method thereof
By using a virtual-real interactive analog communication system, combined with multi-source heterogeneous data acquisition and 3D visualization, the limitations of traditional analog communication devices in terms of functionality and interaction depth are solved. This enables efficient communication network management and deep interaction, thereby improving the training effect for operators.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- Filing Date
- 2025-12-23
- Publication Date
- 2026-03-13
AI Technical Summary
Traditional analog communication devices are limited in variety and functionality, making it difficult to simulate the complex operation processes and diverse service types of actual communication equipment. They also present challenges in communication network management, lack efficient data acquisition and visualization, and have insufficient interactive depth, resulting in operators struggling to gain a realistic experience and receive efficient training in the simulation environment.
Design a virtual-real interactive analog communication system, including an analog communication device, a communication network integrated control module, a communication digital visualization module, and a deep virtual-real interaction module. Through multi-source heterogeneous data acquisition, processing, and 3D visualization, combined with virtual reality equipment, it realizes deep interactive operation, supports voice, data, and message services, and simulates communication link establishment and interference signal generation.
It achieves a high degree of simulation of the operation process of actual communication equipment, provides efficient data acquisition and processing, constructs multi-dimensional virtual scenes, enhances the operator's sense of immersion and interactive experience, improves training efficiency and quality, and enhances operational skills and anti-interference capabilities.
Smart Images

Figure CN121664674A_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of communication technology, and in particular to a virtual-real interactive analog communication system and its operation method. Background Technology
[0002] Traditional simulation methods often have several shortcomings in the operation and training of communication systems. On the one hand, existing simulated communication devices are relatively limited in type and function, making it difficult to fully simulate the complex operating procedures and diverse service types of actual communication equipment. They also struggle to construct large-scale training environments that combine multiple types of equipment, resulting in operators finding it difficult to gain an experience similar to actual operation in the simulation environment, thus hindering the effective improvement of their operational skills. On the other hand, the lack of efficient data acquisition, processing, and highly realistic visualization methods for the comprehensive management and control of communication networks makes it difficult for operators to intuitively understand the operational status of the communication network, leading to low efficiency in communication training and troubleshooting. Furthermore, traditional interaction methods primarily rely on conventional input devices such as keyboards and mice, resulting in insufficient depth of interaction with the virtual scene. This prevents immersive interaction between operators and the virtual communication system scene, limiting the convenience and accuracy of operation. Summary of the Invention
[0003] The purpose of this invention is to provide a virtual-real interactive analog communication system and its operation method to solve the problems mentioned in the background art, such as the limited variety of traditional analog communication devices, insufficient functions, difficulty in communication network management, low visualization, and insufficient interaction depth. This invention enables deep interaction and visual operation between operators and the virtual communication system scene, thereby improving the efficiency and quality of communication system operation and training.
[0004] Firstly, a virtual-real interactive analog communication system is provided, including an analog communication device, a communication network integrated control module, a communication digital visualization module, and a deep virtual-real interaction module;
[0005] The simulated communication device includes multiple simulated communication devices for simulating communication link establishment and service information exchange;
[0006] The integrated control module of the communication network interacts with the analog communication device to realize communication control management, guidance and evaluation, interference signal generation and signal perception, collect multi-source heterogeneous data from various simulated communication devices and links of the analog communication device, and send the multi-source heterogeneous data to the communication digital visualization module.
[0007] The communication digital visualization module is used to receive and parse multi-source heterogeneous data sent by the communication network integrated control module, and then construct a virtual communication system visualization scene;
[0008] The deep virtual-real interaction module is communicatively connected to the communication digital visualization module, and includes a virtual reality device for enabling deep interactive operations between personnel and the visualized scene of the virtual communication system.
[0009] Furthermore, when the analog communication device exchanges analog service information, it supports at least one of the service types: voice, data, and messages; and the establishment of the analog communication link includes signal transmission, reception, and execution of handshake protocols.
[0010] Furthermore, the communication control management includes unified management and control of the working modes and parameter configurations of each simulated communication device in the simulated communication device; the guidance and evaluation includes evaluating the operator's operating steps and communication effects and generating an evaluation report; the interference signal generation supports the simulation of multi-level electromagnetic interference and / or noise interference; the signal sensing includes real-time monitoring of the signal status in the simulated communication network to provide accurate data support for communication control management and guidance and evaluation.
[0011] Furthermore, the virtual communication system visualization scene constructed by the communication digital visualization module includes the layout of communication equipment, the connection status of communication links, the transmission process of business information, and restores the terrain, sea area and spatial features of a specific geographical location.
[0012] Furthermore, in the visualization scenario of the virtual communication system, when there is interference signal, the interference signal is visualized in three dimensions; if it is electromagnetic interference, the interference signal is visualized in three dimensions using a fluctuating electric field model; if it is noise interference, the interference signal is visualized in three dimensions using a chaotic waveform.
[0013] Furthermore, the deep interactive operation of the deep virtual-real interaction module includes eye-tracking-based communication device selection and haptic feedback devices that provide feedback signals such as button touch and device vibration.
[0014] Secondly, a method for operating a simulated communication system for virtual-real interaction as described above is provided, including the following steps:
[0015] The integrated control module for the communication network collects multi-source heterogeneous data from the analog communication device, and sends it to the communication digital visualization module after preprocessing.
[0016] The communication digital visualization module analyzes the multi-source heterogeneous data, drives the virtual equipment model based on the fused data model, and constructs a multi-dimensional virtual communication system visualization scene.
[0017] Operators interact with the virtual communication system's visualized scene through the virtual reality device and interactive device of the deep virtual reality interaction module. The deep virtual reality interaction module displays the multi-dimensional virtual communication system's visualized scene in the virtual reality device. The communication network integrated control module manages the simulated communication device and guides and evaluates the operator's operations.
[0018] Furthermore, the multi-source heterogeneous data includes communication equipment operating status parameters, communication link signal strength, and service information transmission rate; the preprocessing steps include data cleaning and format conversion.
[0019] Furthermore, the guidance and evaluation includes editing guidance schemes, managing evaluation indicator systems and evaluation schemes, and conducting one or more of the following: single-unit training, network training, communication anti-interference training, fault handling training and comprehensive training.
[0020] Furthermore, it also includes: the communication network integrated control module generating interference signals to simulate communication interference, and displaying the interference signals in a virtual communication system visualization scenario.
[0021] This invention proposes a virtual-real interactive analog communication system and its operation method, which has the following advantages compared with the prior art:
[0022] (1) Highly simulates actual communication equipment: The simulated communication device has the same main operating functions and processes as the actual communication equipment, enabling operators to operate and train in a near-real environment, effectively improving their operating skills and ability to deal with practical problems.
[0023] (2) Efficient data acquisition and processing: The communication network integrated control module can acquire multi-source heterogeneous data, providing accurate data support for the construction of virtual scenes and the conversion of operation instructions, and realizing comprehensive monitoring and management of the communication network.
[0024] (3) Multidimensional virtual scene construction: The communication digital visualization module constructs a multidimensional virtual communication system visualization scene through data-driven construction, realizing full-domain communication situation awareness, real-time rendering and presentation of large-scale three-dimensional scenes, real-time simulation of dynamic environment, and highly realistic training environment. It intuitively presents the operating status of the communication network, helps operators quickly understand and master the working status of the system, and improves the accuracy and efficiency of operation.
[0025] (4) Deep virtual-real interaction experience: The deep virtual-real interaction module combines virtual reality devices and interactive devices to realize deep interaction between operators and virtual scenes, enhance the immersion and realism of operation, enable operators to operate more naturally and conveniently, and improve the experience and effect of human-computer interaction.
[0026] (5) Comprehensive guidance and evaluation functions: The guidance and evaluation function of the integrated control module of the communication network can edit and issue guidance plans, and conduct real-time evaluation and guidance on the operation process and results of operators, helping operators to identify problems in a timely manner and make improvements, thereby improving the quality and effectiveness of training. At the same time, the interference signal generation function can simulate various complex environments, enhancing the operator's adaptability and anti-interference ability in actual communication scenarios. Attached Figure Description
[0027] To more clearly illustrate the technical solutions in the embodiments of the present invention 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 the present invention. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0028] Figure 1 This is a schematic diagram of the virtual-real interaction analog communication system structure provided in an embodiment of the present invention;
[0029] Figure 2 This is a schematic diagram of a virtual communication system visualization scenario provided in an embodiment of the present invention. Detailed Implementation
[0030] To make the objectives, technical solutions, and advantages of this invention clearer, the technical solutions of this invention will be described in detail below. Obviously, the described embodiments are merely some embodiments of this invention, and not all embodiments. Based on the embodiments of this invention, all other implementation methods obtained by those skilled in the art without creative effort are within the scope of protection of this invention.
[0031] The purpose of this invention is to solve the following problems: (1) solving the problem of fixed training plans and flexible training; (2) solving the problem of difficulty in data collection, recording and result evaluation during training; (3) solving the problem of lack of means to construct communication anti-interference training environment; (4) solving the problem of difficulty in ensuring communication networking training conditions; and (5) solving the problem of standardization and interoperability of communication simulation training systems.
[0032] To achieve the above objectives, embodiments of the present invention provide a virtual-real interactive analog communication system, including an analog communication device, a communication network integrated control module, a communication digital visualization module, and a deep virtual-real interaction module.
[0033] The simulated communication device comprises multiple simulated communication equipment. Each simulated communication equipment connects to the integrated control module of the communication network via a data interface to achieve data interaction. The simulated communication equipment possesses the same main operational simulation functions as actual communication equipment, used to simulate communication link establishment and service information exchange. Its main operating methods, procedures, parameter configurations, and service types are consistent with the actual equipment, and it has data interaction capabilities with the integrated control module of the communication network. Through a high degree of simulation of actual communication equipment, it provides operators with a realistic operating experience environment. For example, during simulated communication link establishment, it can operate according to the protocols and procedures of the actual equipment, including signal sending, receiving, and handshaking processes. Regarding service information exchange, it supports various common service types, such as voice communication and data transmission protocols. The operating methods and procedures for each service type are the same as those of the actual equipment, ensuring that the operator's operating habits in the simulated environment are consistent with actual operation.
[0034] The integrated control module for the communication network employs a high-performance computer with powerful data processing and storage capabilities. Connected to the communication digital visualization module and the deep virtual-real interaction module via a network interface, it performs communication control management, guidance and evaluation, interference signal generation, and signal sensing. It collects multi-source heterogeneous data from various simulated communication devices and links of the analog communication device and transmits this data to the communication digital visualization module. The multi-source heterogeneous data includes device operating status parameters, communication link signal strength, and service information transmission rates. All network data is then sent to the communication digital visualization module. In terms of communication control and management, it can uniformly manage and control the working mode and parameter configuration of analog communication devices to ensure the stable operation of the entire analog communication network; the guidance and evaluation function can evaluate and guide the operator's operation process and results, and provide corresponding evaluation reports and improvement suggestions based on the operator's operation steps and the final communication effect; the interference signal generation function can simulate various interference signals that may occur in actual communication environments, such as electromagnetic interference and noise interference, to test and train operators' communication operation capabilities in complex environments; the signal sensing function can monitor the signal status in the analog communication network in real time, providing accurate data support for communication control management and guidance and evaluation.
[0035] The communication digital visualization module, which can be a high-performance computer equipped with professional visualization software, is used to construct and display a virtual communication system visualization scene. It receives and analyzes multi-source heterogeneous data sent by the integrated control module of the communication network, and constructs a virtual communication system visualization scene based on the fused data and virtual equipment model. This module can highly reproduce the terrain, sea area, and spatial features of a specific geographical location, supports real-time synchronization of environmental background factors, fuses and processes the collected multi-source heterogeneous data, establishes an accurate data model, and then, driven by the virtual equipment model, presents a realistic virtual communication system visualization scene on a computer screen or other display device. This includes the layout of communication equipment, the connection status of communication links, the transmission process of service information, and the three-dimensional visualization of field signals such as communication interference and anti-interference processes. Operators can intuitively understand the operation of the communication network through this virtual scene and perform various operations and training.
[0036] The deep virtual-real interaction module is communicatively connected to the communication digital visualization module. It receives virtual communication system visualization scene data generated by the communication digital visualization module and displays it in an immersive manner. It also enables deep interactive operations between personnel and the virtual communication system visualization scene. These deep interactive operations include eye-tracking-based communication device selection and haptic feedback devices providing feedback signals such as button touch and device vibration. Specifically, it includes a VR or AR headset and a controller. The headset tracks the operator's gaze and presents the virtual scene, while the controller captures the operator's actions. Operators can browse the 3D scene and observe the communication system's operating status through the VR or AR device using a fixed or preset perspective.
[0037] like Figure 1 The figure shows an example of a virtual-real interactive analog communication system. The visualization PC in the figure corresponds to the communication digital visualization module, the instructor's guidance PC corresponds to the communication network integrated control module, the VR all-in-one machine corresponds to the deep virtual-real interaction module, and the nodes correspond to the analog communication devices.
[0038] Specifically, in practical applications, an analog communication device can consist of multiple analog devices of different types. These devices are interconnected through analog communication links to form a complete analog communication network. They are connected via simulated wired or wireless links, following the topology of a real communication network, thus forming a simulated environment with the characteristics of a real communication network architecture.
[0039] In this embodiment, the integrated communication network control module plays a core management and control role. When directing the analog communication device, operators can remotely start and stop individual devices within the analog communication device, or adjust the device's operating mode, through the control module's interface. Regarding network configuration planning, the control module allows operators to set parameters for the analog communication network according to actual needs. For example, setting the port rates of the analog devices, VLAN (Virtual Local Area Network) partitioning, channel allocation, and transmit power adjustment, etc., to construct analog communication networks with different network performance and architectures.
[0040] Interference factor setting is also a crucial function of the integrated control module for the communication network. Operators can use this module to generate electromagnetic interference and / or noise interference levels 1-9. Simultaneously, the control module also features an evaluation function, capable of recording real-time operational data of the simulated communication device under various operating and interference environments, such as communication delay, packet loss rate, and service success rate. Based on this data and according to preset evaluation rules, the overall performance of the simulated communication network and the operator's operational effectiveness are scored and evaluated, generating a detailed evaluation report to provide a basis for subsequent improvements and optimizations.
[0041] In the virtual communication system visualization scenario, the entire communication process is presented in three dimensions. Within the 3D virtual scene, each device in the simulated communication apparatus is displayed as a realistic 3D model, its layout consistent with the actual simulated communication network topology. Communication links are represented by lines with signal flow effects. The operating status of the devices is intuitively reflected through color effects; for example, normally functioning devices are displayed in green, while malfunctioning devices are displayed in red. When interference signals are present, the interference source is represented in the 3D scene with specific shapes and colors. For instance, electromagnetic interference is represented by a fluctuating electric field model, and noise interference is represented by chaotic waveforms, allowing operators to intuitively observe the range and extent of the interference's impact on the communication network.
[0042] The virtual-real interaction analog communication system provided in the above embodiments has the following advantages:
[0043] Highly simulates actual communication equipment: The simulated communication device has the same main operating functions and procedures as the actual equipment, enabling operators to operate and train in a near-realistic environment, effectively improving their operating skills and ability to deal with practical problems;
[0044] Efficient data acquisition and processing: The integrated control module for the communication network can acquire multi-source heterogeneous data and perform comprehensive management and processing, providing accurate data support for the construction of virtual scenes and the conversion of operation commands, and realizing comprehensive monitoring and management of the communication network;
[0045] Multi-dimensional virtual scene construction: The communication digital visualization module constructs a multi-dimensional virtual communication system visualization scene through data-driven construction, realizing full-domain communication situation awareness, real-time rendering and presentation of large-scale three-dimensional scenes, real-time simulation of dynamic environments, and real-time switching of different perspectives. It highly restores the real training environment, intuitively presents the operating status of the communication network, helps operators quickly understand and master the working status of the system, and improves the accuracy and efficiency of operation.
[0046] Deep virtual-real interaction experience: The deep virtual-real interaction module combines VR devices and various interactive devices to achieve deep interaction between operators and virtual scenes, enhancing the immersion and realism of the operation, enabling operators to operate more naturally and conveniently, and improving the experience and effect of human-computer interaction.
[0047] Comprehensive guidance and evaluation functions: The guidance and evaluation function of the integrated control module for the communication network can edit and issue guidance plans, providing real-time evaluation and guidance for operators' operation processes and results. This helps operators identify problems and make improvements in a timely manner, thereby improving the quality and effectiveness of training. Simultaneously, the interference signal generation function can simulate various complex environments, enhancing operators' adaptability and anti-interference capabilities in real-world communication scenarios.
[0048] Based on the virtual-real interactive analog communication system provided in the above embodiments, this invention also provides an operation method for the virtual-real interactive analog communication system, including the following steps:
[0049] S1: The communication network integrated control module collects multi-source heterogeneous data from the analog communication device, and sends it to the communication digital visualization module after preprocessing. The multi-source heterogeneous data includes communication device operating status parameters, communication link signal strength, service information transmission rate, and topological connection relationship between communication devices. The preprocessing steps include data cleaning and format conversion.
[0050] S2: The communication digital visualization module analyzes the multi-source heterogeneous data, drives the virtual equipment model based on the fused data model, and constructs a multi-dimensional virtual communication system visualization scene. It employs a data fusion algorithm to integrate data from different sources (such as geographic information systems, point clouds, real-time streams, etc.) transmitted by sensor networks and communication devices. To address the content characteristics of various data types, appropriate feature extraction methods (such as contour and texture features in geographic information systems, curvature and density features in point clouds, and temporal features in real-time streams) are employed to convert raw data into feature vectors that represent their key information. Each feature vector is a set of numerical representations used to describe the attributes of the data in a specific dimension. Next, pattern recognition and target description generation are performed. In the pattern recognition stage, "pattern" refers to a recognizable regularity or structure existing in the data, such as "channel change," "interference signal generation," or "abnormal event." The feature vectors are analyzed using a matching algorithm to determine their pattern category, thereby generating a semantic description of the "target" described by the data. Here, "target" refers to the observed or identified event (such as network status or interference). Target description data generated from different sources and at different times are grouped according to the same target they refer to, forming a data set based on the target. The target data sets are then synthesized to obtain a consistent interpretation of the target. This algorithm comprehensively considers the temporal relevance of data (smoothing, predicting, or updating the status of data on the same target at different times based on the timestamps and temporal change patterns of the data), spatial relevance (using the location and spatial relationships of the target to verify and integrate observation data of the same entity from different sensors), and semantic relevance (associating logically related data based on semantic information such as target category and event type to enhance the overall scene understanding). It uses consistency checks to remove duplicate information, solves inconsistencies between different data sources, eliminates redundancy and conflicts between data, and generates a unified and accurate communication system data model that can more clearly display the physical layout and logical structure of the communication system. The communication network control module reads the current parameters stored in the data management module, performs parameter matching in real time and dynamically according to pre-established matching rules, generates call network information and data transmission network information, and displays the network status graphically. It reads the network information generated by the parameter matching module and the PTT button commands sent by each device, analyzes and processes them, generates control commands, and sends them to the SIP server software to realize voice control of individual calls, group calls, network calls, and all calls. The virtual communication system integrates data from sensor networks, communication devices, and other sources in different formats. It utilizes real-time communication technology based on user data packet protocols to achieve real-time perception and presentation of the overall communication situation. By mapping electromagnetic environment data into a texture space using texture mapping technology, and then displaying the electromagnetic field by drawing textured geometry in a 3D scene, the system improves rendering efficiency by leveraging the texture processing capabilities of graphics hardware.Multi-view switching is achieved through camera control, allowing seamless switching between God's-eye view and first-person / third-person view during training, enabling highly realistic communication training.
[0051] S3: The operator interacts with the virtual communication system visualization scene through the virtual reality device and interactive device of the deep virtual reality interaction module. The deep virtual reality interaction module displays the multi-dimensional virtual communication system visualization scene in the virtual reality device, obtains the communication system operation information in real time, and presents the communication data in the scene in real time with the data of the real communication device, so as to achieve highly realistic immersive training.
[0052] S4: The integrated control module for the communication network manages the analog communication device and conducts guidance and evaluation of the operator's operation. The guidance and evaluation includes editing the guidance scheme, managing the evaluation index system and evaluation scheme, and training evaluation.
[0053] It also includes: the communication network integrated control module generates interference signals to simulate communication interference, and displays the interference signals in a virtual communication system visualization scenario.
[0054] During the implementation of the method, the integrated control module of the communication network can guide and adjust the simulated communication device according to training or testing needs. The integrated control module generates training content and distributes the training guidance to the training agent software. The training subjects that can be generated include single-device training, network training, communication anti-interference training, fault handling training, and comprehensive training. For example, the control module can set interference factors at any time, such as injecting high-intensity electromagnetic interference signals into the simulated communication link during a specific time period, or adding noise interference to simulate a complex communication environment.
[0055] Then, the simulated communication device begins to simulate and construct a communication network according to the issued training parameters. At this stage, the integrated communication network control module performs initial network configuration planning for the simulated communication device. Based on pre-defined network requirements, such as network coverage, user capacity, and service types, it sets corresponding parameters for each device in the simulated communication device. For example, it allocates appropriate wireless channels and transmit power to ensure good signal coverage within the simulated area; and it configures VLANs to achieve isolation and exchange of different service data.
[0056] The communication digital visualization module receives data from the communication network integrated control module in real time, and presents a three-dimensional visualization of the communication process of the simulated communication device under interference environment. By observing the three-dimensional virtual scene, operators can clearly see how interference signals affect the communication link.
[0057] Throughout the operation, the integrated communication network control module continuously collects performance data from the analog communication device under different stages, operating conditions, and interference environments, such as communication latency, data transmission rate, and packet loss. Based on pre-defined evaluation criteria, the module quantifies and scores the user's operations. Simultaneously, the integrated communication network control module also evaluates the operator's performance in handling interference and adjusting network configurations, assessing factors such as the correctness of operational steps and the speed of response. It generates a comprehensive evaluation report that includes both network performance and operator performance assessments, and provides feedback to the operator to understand their operational effectiveness and network status, offering a reference for future improvements.
[0058] In practical applications, operators wear VR headsets to enter a virtual communication system scenario. First, the integrated control module of the communication network collects data from various devices and links in the analog communication device, processes this data, and sends it to the communication digital visualization module. The communication digital visualization module constructs a virtual scene based on this data, and operators can use controllers to move and select devices in the virtual scene to view them, seeing the virtual communication devices and network connection status in the VR headset.
[0059] It is understood that the same or similar parts in the above embodiments can be referred to each other, and the contents not described in detail in some embodiments can be referred to the same or similar contents in other embodiments.
[0060] Although embodiments of the present invention have been shown and described above, it is understood that the above embodiments are exemplary and should not be construed as limiting the present invention. Those skilled in the art can make changes, modifications, substitutions and variations to the above embodiments within the scope of the present invention.
Claims
1. A virtual-real interactive analog communication system, characterized in that, It includes an analog communication device, a communication network integrated control module, a communication digital visualization module, and a deep virtual-real interaction module; The simulated communication device includes multiple simulated communication devices for simulating communication link establishment and service information exchange; The integrated control module of the communication network interacts with the analog communication device to realize communication control management, guidance and evaluation, interference signal generation and signal perception, collect multi-source heterogeneous data from various simulated communication devices and links of the analog communication device, and send the multi-source heterogeneous data to the communication digital visualization module. The communication digital visualization module is used to receive and parse multi-source heterogeneous data sent by the communication network integrated control module, and then construct a virtual communication system visualization scene; The deep virtual-real interaction module is communicatively connected to the communication digital visualization module, and includes a virtual reality device for enabling deep interactive operations between personnel and the visualized scene of the virtual communication system.
2. The virtual-real interactive analog communication system according to claim 1, characterized in that, When simulating the exchange of service information, the simulated communication device supports at least one of the service types: voice, data, and messages; the establishment of the simulated communication link includes signal transmission, reception, and the execution of handshake protocols.
3. The virtual-real interactive analog communication system according to claim 1, characterized in that, The communication control management includes unified management and control of the working modes and parameter configurations of each simulated communication device in the simulated communication device; the guidance and evaluation includes evaluating the operator's operation steps and communication effects and generating an evaluation report; the interference signal generation supports the simulation of multi-level electromagnetic interference and / or noise interference; the signal sensing includes real-time monitoring of the signal status in the simulated communication network to provide accurate data support for communication control management and guidance and evaluation.
4. The virtual-real interactive analog communication system according to claim 1, characterized in that, The virtual communication system visualization scene constructed by the communication digital visualization module includes the layout of communication equipment, the connection status of communication links, the transmission process of business information, and restores the terrain, sea area and spatial features of a specific geographical location.
5. The virtual-real interactive analog communication system according to claim 4, characterized in that, In the virtual communication system visualization scenario, when there is interference signal, the interference signal is visualized in three dimensions; if it is electromagnetic interference, the interference signal is represented in three dimensions using a fluctuating electric field model. If the interference is noise, the interference signal is represented in three dimensions using a chaotic waveform.
6. The virtual-real interactive analog communication system according to claim 1, characterized in that, The deep interactive operation of the deep virtual-real interaction module includes eye-tracking-based communication device selection and haptic feedback devices that provide feedback signals such as button touch and device vibration.
7. A method of operating a virtual-real interactive analog communication system as described in any one of claims 1 to 6, characterized in that, Includes the following steps: The integrated control module for the communication network collects multi-source heterogeneous data from the analog communication device, and sends it to the communication digital visualization module after preprocessing. The communication digital visualization module analyzes the multi-source heterogeneous data, drives the virtual equipment model based on the fused data model, and constructs a multi-dimensional virtual communication system visualization scene. Operators interact with the visualized scene of the virtual communication system through the virtual reality device and interactive device of the deep virtual reality interaction module. The deep virtual reality interaction module displays the multi-dimensional visualized scene of the virtual communication system in the virtual reality device. The integrated control module for the communication network manages the analog communication device and provides guidance and evaluation for the operator's actions.
8. The operation method of the virtual-real interactive analog communication system according to claim 7, characterized in that, The multi-source heterogeneous data includes communication equipment operating status parameters, communication link signal strength, and service information transmission rate. Preprocessing steps include data cleaning and format conversion.
9. The operation method of the virtual-real interactive analog communication system according to claim 7, characterized in that, The guidance and evaluation includes editing guidance schemes, managing evaluation indicator systems and evaluation schemes, and conducting one or more of the following: single-unit training, network training, communication anti-interference training, fault handling training and comprehensive training.
10. The operation method of the virtual-real interactive analog communication system according to claim 7, characterized in that, Also includes: The integrated control module for the communication network generates interference signals to simulate communication interference and displays the interference signals in a virtual communication system visualization scenario.