Communication jamming-resistant training pilot control system and method

CN122679451APending Publication Date: 2026-09-01ARMY ENG UNIV OF PLA
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Patent Information

Application Number
CN202610879471.7
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2026-06-17
Publication Date
2026-09-01

AI Technical Summary

Technical Problem

[0003]系统集成度低:导控、信道模拟、操作终端之间数据交互效率不高,难以实现训练过程的实时统一管理和动态响应

Benefits of technology

[0022] The beneficial effects of adopting the above technical solution are as follows: the system provides the director with a global and intuitive battlefield situation awareness capability, enabling him to monitor the changes in the confrontation situation between the two sides in real time and make timely decision adjustments, which greatly enhances the timeliness and scientific nature of the director's control.

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Abstract

This invention discloses a communication anti-jamming training guidance and control system and method, relating to the field of communication countermeasure training technology. The system includes a hardware platform and a software platform. The hardware platform includes one system guidance and control terminal, at least four operator terminals, a channel simulator, peripheral hardware, and a network switch. The software platform includes communication anti-jamming guidance and control software, wireless channel simulation control software, and communication anti-jamming operation agent software. The system provides the instructor with a global and intuitive battlefield situational awareness capability, enabling them to monitor changes in the confrontation situation between the two sides in real time and make timely adjustments, greatly enhancing the timeliness and scientific nature of guidance and control.
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Description

Technical Field

[0001] This invention relates to the field of communication countermeasure training technology, and in particular to a system and method for simulating complex electromagnetic environments and for guiding, controlling and evaluating wireless communication interference and anti-interference exercises. Background Technology

[0002] In modern military communications and industry-specific communications, communication anti-jamming capabilities are crucial. Traditional anti-jamming training typically relies on real equipment in pre-designed locations, which suffers from problems such as complex organization, high costs, limited scenarios, and difficulty in accurately evaluating training effectiveness. Existing simulation training systems often have independent guidance, simulation, and operation functions, lacking efficient coordination mechanisms, resulting in disjointed training processes and poor real-time performance and interactivity. Specifically, the following technical bottlenecks exist:

[0003] Low system integration: The data interaction efficiency between guidance and control, channel simulation and operation terminals is not high, making it difficult to achieve real-time unified management and dynamic response during the training process.

[0004] Poor scenario flexibility: It is difficult to quickly and accurately convert complex tactical scenarios into executable wireless channel simulation parameters, which limits the realism and diversity of training scenarios.

[0005] The assessment methods are limited: there is a lack of detailed and automated recording and analysis of the operator's operation process, and the assessment mainly relies on the subjective experience of the director, which results in insufficient objectivity and accuracy.

[0006] Weak real-time monitoring capabilities: It is unable to simultaneously monitor and compare the spectrum status and equipment parameters of both sides at a high refresh rate in real time. Summary of the Invention

[0007] The technical problem to be solved by this invention is how to provide a communication anti-interference training and control system and method that is highly integrated, responds quickly, and can realize fully automated guidance and precise evaluation.

[0008] To solve the above-mentioned technical problems, the technical solution adopted by the present invention is: a communication anti-interference training and control system, the system comprising: a hardware platform and a software platform, the hardware platform comprising:

[0009] One system control terminal: used as the core control unit of the system;

[0010] No fewer than four operator terminals: used by both red and blue team operators to perform training tasks;

[0011] Channel simulator and peripheral hardware: used to simulate wireless channel characteristics;

[0012] Network switches: used to connect system control terminals, operator terminals, channel simulators and peripheral hardware to form a local area network (LAN) for communication;

[0013] The software platform includes:

[0014] Communication anti-interference guidance and control software: deployed on the system guidance and control terminal, used for simulating scenario-channel parameter mapping, full-process guidance and control, multi-dimensional data fusion display, and external software interaction;

[0015] Wireless channel simulation and control software: deployed on the channel simulator for multi-device collaborative control and independent control of dual transmit ports;

[0016] Communication anti-interference operation agent software: deployed on the operator terminal, used for high-precision operation timing and recording, parameter input and reporting, and local spectrum display.

[0017] The present invention also discloses a communication anti-interference training and control method, the method being based on the communication anti-interference training and control system, the method comprising the following steps:

[0018] Channel simulation parameter generation and channel simulation control: Obtain scene information files by inputting simulation scene information or interacting with external software, identify communication node information in the scene files, automatically generate various interference model parameters according to the adversarial scenario, receive operator adjustment information to update radio communication and adversarial model parameters, and finally calculate and generate channel simulation parameters.

[0019] Wireless channel simulation parameter generation and channel simulation control: The simulated scenario is converted into wireless channel simulation control information and finally sent to the channel simulator;

[0020] Operation process status recording and information reporting: The communication anti-interference operation agent software reports the operation timing, process status recording, and completion status to the system control terminal;

[0021] Spectrum display: The operator terminal connects to the spectrum analyzer via a USB interface to exchange data and perform real-time spectrum monitoring.

[0022] The beneficial effects of adopting the above technical solution are as follows: the system provides the director with a global and intuitive battlefield situation awareness capability, enabling him to monitor the changes in the confrontation situation between the two sides in real time and make timely decision adjustments, which greatly enhances the timeliness and scientific nature of the director's control. Attached Figure Description

[0023] The present invention will now be described in further detail with reference to the accompanying drawings and specific embodiments.

[0024] Figure 1This is a hardware connection topology diagram of the system described in the embodiments of the present invention;

[0025] Figure 2 This is a software function module interaction diagram of the system described in the embodiments of the present invention;

[0026] Figure 3 This is a flowchart of the channel simulation parameter generation and channel simulation control functions in the method described in the embodiments of the present invention;

[0027] Figure 4 This is a flowchart illustrating the mapping process from simulated scene information to channel simulation parameters in the method described in this embodiment of the invention.

[0028] Figure 5 This is a data flow diagram of the operation process recording and evaluation in the method described in the embodiments of the present invention;

[0029] Figure 6 This is a flowchart of the spectrum data acquisition and real-time display process in the method described in the embodiments of the present invention. Detailed Implementation

[0030] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only a part of the embodiments of the present invention, and not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the scope of protection of the present invention.

[0031] Many specific details are set forth in the following description in order to provide a full understanding of the invention. However, the invention may also be practiced in other ways different from those described herein, and those skilled in the art can make similar extensions without departing from the spirit of the invention. Therefore, the invention is not limited to the specific embodiments disclosed below.

[0032] This invention discloses a communication anti-interference training and control system, the system comprising a hardware platform and a software platform:

[0033] Example 1

[0034] like Figure 1 As shown, the hardware platform includes:

[0035] One system control terminal: As the core control unit of the system, it adopts a high-performance laptop computer, which can be equipped with communication anti-interference control software, and has 4 USB interfaces, 1 HDMI interface, and 1 gigabit network interface.

[0036] No fewer than four operator terminals: used for training tasks by operators from both sides, employing ruggedized tablet computers. Each operator terminal is equipped with a tablet computer, can carry communication anti-interference command and control software, connects to Ethernet for data transmission via a network port, uses a touchscreen, and has two USB ports, one HDMI port, one gigabit Ethernet port. It is ruggedized, with IP65 dust and water resistance.

[0037] Channel simulator and peripheral hardware: used to simulate wireless channel characteristics, including wireless channel simulator, programmable attenuator, amplifier, etc.

[0038] Network switch: Used to connect all the above devices to form a local area network (LAN) for communication.

[0039] On the network switch equipment, four tablet computers are connected by properly configuring network interfaces and cable connections. These four tablet computers will be used as operator terminals, on which communication anti-interference operation agent software is deployed and runs, allowing operators to perform relevant communication countermeasures tasks. At the same time, one laptop computer is connected, which serves as the system control terminal, with communication anti-interference guidance and control software installed and running, used to guide and control the entire communication countermeasures system. In addition, two channel simulators and related peripheral hardware devices are also connected to jointly construct a complete communication countermeasures operation and monitoring environment.

[0040] The operator terminal, system control terminal, channel simulator, and peripheral hardware are directly connected via network and have bidirectional data transmission capability. The system control terminal uses communication anti-interference guidance and control software to send task requirements to the operator terminal via network transmission and can receive operation records returned by the operator terminal. Both the operator terminal and the system control terminal have the function of obtaining status information from the channel simulator and peripheral hardware and issuing control.

[0041] System software functional module interaction, such as Figure 2 As shown, the system enables information exchange between internal software modules and with external channel simulation and spectrum analysis equipment, mainly including:

[0042] (1) Communication anti-interference guidance and control software: The anti-interference guidance and control software is deployed on the system guidance and control terminal as the main control unit of the communication anti-interference guidance and control system. It has the functions of registration and login of the instructor user, overall process control of communication anti-interference practice, conversion of the simulation scenario into wireless channel simulation control information parameters to realize wireless channel simulation and control functions, issuance of subject to the operator terminal, receiving and recording of operation process, monitoring of spectrum status of both sides of the confrontation, and management of instructor and operator registration and login information.

[0043] (2) Communication anti-interference operation agent software: The software is deployed on the operator terminal and has the functions of operator user login and registration, receiving the subject issued by the system control terminal, timing and recording the operation, inputting the equipment channel and parameter adjustment information during the operation, reporting the operation timing, process status record, and completion status information to the system control terminal, and obtaining and displaying spectrum monitoring information.

[0044] (3) Wireless channel simulation control software: The software is deployed on the channel simulator and has the functions of controlling the channel simulator (interface parameter input control, parameter file import), channel simulation status acquisition, controlling peripheral devices such as programmable attenuators and amplifiers, and controlling the two transmit ports of the channel simulator.

[0045] The main functions of the system software are shown in Table 1:

[0046] Table 1 Main Functions of the System Software

[0047]

[0048] Furthermore, the communication anti-interference guidance and control software interface mainly consists of five modules: login and registration interface, simulation scenario control interface, real-time spectrum monitoring interface, and operation process recording interface.

[0049] The login and registration interface module includes functions for users to log in and register as directors, and allows for modification and management of account identities. It supports users to log in to the system with their account and password to verify their identity and ensure the security of the directing and control process.

[0050] The simulation scenario control interface module provides functions such as simulation scenario information input and scenario input. Scenario information input includes importing simulation scenario files and manual input guided by the interface. It also has functions for generating channel simulation parameters and controlling channel simulation, and can interact with external "communication channel simulation software".

[0051] The spectrum monitoring interface module displays the signal distribution and changes in the current communication countermeasures environment in the form of a dynamic spectrum graph, supporting the real-time monitoring of the simulated path loss status of wireless communication equipment and jamming equipment by the directing personnel.

[0052] The operation process recording interface module automatically records all operation commands and system responses of the opposing operator and the operation process during the guidance and control process. It supports the export and playback of operation logs, providing data support for review and performance evaluation.

[0053] The log system interface module provides log output, recording, and viewing functions to record the software's daily work records.

[0054] Example 2

[0055] This invention discloses a communication anti-interference training and control method, the method comprising the following steps:

[0056] Channel simulation parameter generation and channel simulation control: Obtain scene information files by inputting simulation scene information or interacting with external software, identify communication node information in the scene files, automatically generate various interference model parameters according to the adversarial scenario, receive operator adjustment information to update radio communication and adversarial model parameters, and finally calculate and generate channel simulation parameters.

[0057] Wireless channel simulation parameter generation and channel simulation control: The simulated scenario is converted into wireless channel simulation control information and finally sent to the channel simulator;

[0058] Operation process status recording and information reporting: The communication anti-interference operation agent software reports the operation timing, process status recording, and completion status to the system control terminal;

[0059] Spectrum display: The operator terminal connects to the spectrum analyzer via a USB interface to exchange data and perform real-time spectrum monitoring.

[0060] The processing flow for channel simulation parameter generation and channel simulation control is as follows: Figure 3 As shown:

[0061] The system obtains scenario information files through simulated scenario data input or interaction with external software, and identifies information such as communication node types, operating frequency bands, and antenna parameters within these files. It automatically generates various interference model parameters based on the adversarial scenario, receives operator adjustments to update radio communication and adversarial model parameters, and finally calculates and generates channel simulation parameters.

[0062] The system provides channel simulation parameter generation and channel simulation control functions. It can convert real-world scenario information into model parameters for radio communication and countermeasures, and supports operators to adjust these parameters in real time.

[0063] The specific workflow for channel simulation parameter generation and channel simulation control is as follows:

[0064] The operator adjusts parameter information and updates the model parameters of radio communication and countermeasures through the wireless channel simulation control software interface;

[0065] The wireless channel simulation control software will adjust parameters and report them to the communication anti-interference guidance and control software;

[0066] The communication anti-interference guidance and control software maps scene information into model parameters;

[0067] The director updates the model parameters according to the adjusted parameters;

[0068] The communication anti-interference guidance and control software updates the model parameters displayed on the interface.

[0069] The processing flow for generating wireless channel simulation parameters and controlling channel simulation is as follows: Figure 4 As shown:

[0070] The channel simulation parameter generation and channel simulation control functions can control communication anti-interference exercises, transform the simulated scenario into wireless channel simulation control information, and finally send it to the channel simulator.

[0071] The specific workflow for generating wireless channel simulation parameters and controlling channel simulation is as follows:

[0072] The director adjusts the parameter information and updates the model parameters of radio communication and countermeasures through the communication anti-interference command and control software interface;

[0073] The communication anti-interference guidance and control system maps scenario information into model parameters and transforms them into wireless channel simulation control information.

[0074] The communication anti-interference guidance and control system sends adjustment parameters to the wireless channel simulation control software;

[0075] The wireless channel simulation control software sends parameters to the channel simulator.

[0076] The process flow for recording operation status and reporting information is as follows: Figure 5 As shown:

[0077] The communication anti-interference operation agent software reports operation timing, process status records, and completion status information to the system control terminal.

[0078] The operator terminal communicates with the system control terminal via gigabit Ethernet, with a data transmission rate of 300~700Mbps. The operator terminal reports operation process information to the system control terminal within 1 second.

[0079] The diagram illustrates the workflow for recording and reporting operational status and information between the operator, the communication anti-interference operation agent software, the system control terminal, and the controller, as detailed below:

[0080] The operation begins when the operator initiates the training operation command on the software interface, and the communication anti-interference operation agent software receives the command.

[0081] The operation timing begins, and the communication anti-interference operation agent software reports the start of the operation timing to the system control terminal.

[0082] The system control terminal notifies the operator that the operation has begun after receiving the timer start information.

[0083] The communication anti-interference operation agent software continuously reports the status records of the operation process to the system control terminal.

[0084] The system control terminal updates the status information on the operator's interface based on the received process status records, enabling the operator to understand the operation progress in real time.

[0085] The communication anti-interference operation agent software reports the operation completion status to the system control terminal after the operation is completed.

[0086] The system control terminal notifies the operator that the operation is complete after receiving the operation completion information.

[0087] The operator confirms receipt of the operation completion information and evaluates the operation results.

[0088] The evaluation results are fed back to the agent software, and the director then feeds back the evaluation results to the communication anti-interference operation agent software.

[0089] The communication anti-interference operation agent software displays the evaluation results and operation feedback to the operator.

[0090] The process involves information exchange between various components to monitor the operation, update the status, evaluate the results, and provide feedback. Operators and coordinators can understand the progress and results of the operations of both sides in real time.

[0091] The system spectrum data acquisition and real-time display processing flow is as follows: Figure 6 As shown:

[0092] The operator terminal tablet of the communication anti-interference operation agent software connects to the spectrum analyzer via a USB interface for data exchange. The external spectrum analyzer must support the setting and adjustment of parameters such as center frequency, bandwidth, and display resolution.

[0093] The real-time spectrum monitoring function is used to acquire and display the operating spectrum information. The operator terminal directly connects to the spectrum analyzer, sends parameters to the analyzer to obtain the corresponding spectrum data, and can transmit it through the network to the communication anti-interference command and control software. The interactive interface enables real-time display of the spectrum.

[0094] The real-time spectrum display function enables efficient acquisition and display of working spectrum information, with a response time of no more than 3 seconds from request to interface. It supports spectrum monitoring and display at 8192 points with a refresh rate of 300 milliseconds to ensure real-time performance.

[0095] The specific workflow from spectrum analyzer to spectrum graph display is as follows:

[0096] The tablet-mounted operator terminal is equipped with communication anti-interference operation agent software, which is directly connected to the spectrum analyzer via a USB interface;

[0097] During communication countermeasures operations, corresponding request commands are precisely invoked and issued through the device interface;

[0098] Upon receiving a request, the spectrum analyzer will quickly collect raw spectrum data and send this data back to the operation agent software;

[0099] The communication anti-interference operation agent software performs comprehensive and in-depth analysis and processing of the received IQ data;

[0100] Through specific algorithm processing, accurate spectrum analysis results are finally obtained and displayed intuitively in a graphical manner on the spectrum interface of the communication anti-interference operation agent software.

[0101] When the communication anti-interference guidance and control software running on the system guidance and control terminal needs to obtain spectrum data from both sides of the confrontation, it will actively send a data request to the communication anti-interference operation agent software of the corresponding operator terminal.

[0102] Upon receiving a request from the command and control software, the communication anti-interference operation agent software will quickly retrieve the processed spectrum data from the local cache or the processed database.

[0103] The communication anti-interference guidance and control software returned to the system guidance and control terminal;

[0104] The communication anti-interference guidance and control software receives spectrum data and displays it on the spectrum interface.

[0105] This invention features a unique "simulated scenario-channel parameter mapping engine" designed in the guidance and control software. This engine can automatically parse and map abstract tactical scenarios (such as "tracking interference in mountainous environments") into a set of precise technical parameters that can be executed by the channel simulator (such as specific path loss models, interference signal patterns, attenuation values, etc.). This enables rapid construction and flexible switching of training scenarios, greatly improving the efficiency of training preparation and the realism of the scenarios. It also solves the problems of inaccurate and inefficient parameter configuration relying on manual experience in traditional methods.

[0106] The system adopts a modular design, with clearly defined functions for its three core software components (control, simulation, and operation agent), which collaborate efficiently through a hybrid TCP / UDP network communication protocol. Different transmission strategies (such as TCP for reliability and UDP for real-time performance) are employed for different data characteristics (e.g., reliable control commands and real-time spectrum data), and key technologies such as packet loss retransmission, parallel packet sending, and low-latency signal transmission are utilized. This ensures low latency (average response <500ms) and high reliability for the interaction of large amounts of data (control commands, status information, and spectrum data) within the system. This architecture makes the system responsive, supports concurrent operation from multiple terminals, and enables smooth training and truly real-time interaction.

[0107] The system not only records the final training results, but more importantly, it records and traces the entire operation process of the operator, including the start / end time of each operation, the adjusted parameters, and the order of operations. The control software provides a visual interface to assist the instructor in making evaluations based on this objective data. This transforms training evaluation from subjective experience-based judgment to precise analysis based on objective data, clearly presenting the operator's tactical decision-making process and operational proficiency. It provides solid data support for evaluating and improving training effectiveness, achieving "knowable, assessable, and traceable" evaluation.

[0108] The control terminal interface innovatively achieves simultaneous, real-time, and comparative display of multi-dimensional information such as spectrum graphs, operation logs, and device status parameters. The Qwt library, combined with double buffering technology, optimizes spectrum graph display, ensuring smooth, tear-free visuals even at high data refresh rates.

[0109] Although the above embodiments have been described, those skilled in the art, once they understand the basic inventive concept, can make other changes and modifications to these embodiments. Therefore, the above descriptions are merely embodiments of the present invention and do not limit the scope of patent protection of the present invention. Any equivalent structural or procedural transformations made using the content of the present invention's specification and drawings, or direct or indirect applications in other related technical fields, are similarly included within the scope of patent protection of the present invention.

Claims

1. A communication anti-interference training and control system, characterized in that... The system includes a hardware platform and a software platform, wherein the hardware platform includes: One system control terminal: used as the core control unit of the system; No fewer than four operator terminals: used by both red and blue team operators to perform training tasks; Channel simulator and peripheral hardware: used to simulate wireless channel characteristics; Network switches: used to connect system control terminals, operator terminals, channel simulators and peripheral hardware to form a local area network (LAN) for communication; The software platform includes: Communication anti-interference guidance and control software: deployed on the system guidance and control terminal, used for simulating scenario-channel parameter mapping, full-process guidance and control, multi-dimensional data fusion display, and external software interaction; Wireless channel simulation and control software: deployed on the channel simulator for multi-device collaborative control and independent control of dual transmit ports; Communication anti-interference operation agent software: deployed on the operator terminal, used for high-precision operation timing and recording, parameter input and reporting, and local spectrum display.

2. The communication anti-interference training and control system as described in claim 1, characterized in that: The system control terminal and the operator terminal are bidirectionally connected via a network switch. The operator terminal and the channel simulator are bidirectionally connected via peripheral hardware. The channel simulator and the network switch are bidirectionally connected.

3. The communication anti-interference training and control system as described in claim 1, characterized in that, The communication anti-interference guidance and control software includes: Simulation Scenario - Channel Parameter Mapping Engine: Used to automatically convert the tactical scenarios set by the director into specific wireless channel simulation control parameters; The full-process guidance and control module is responsible for distributing training subjects to operator terminals, receiving and recording all operation process data, and managing user permissions. Multi-dimensional data fusion display interface: used to simultaneously display and compare the spectrum diagrams, operation logs and device status of both sides in real time; External software interaction interface: Used to support data interaction with third-party communication channel simulation software.

4. The communication anti-interference training and control system as described in claim 1, characterized in that, The wireless channel simulation control software includes: Multi-device collaborative control module: used to simultaneously control the channel simulator itself and its connected peripheral devices to ensure that the radio frequency signal power is within a controllable range; Dual transmit port independent control module: used to control the output of radio frequency signals of designated channels from two transmit ports, simulating path loss of communication and interference signals.

5. The communication anti-interference training and control system as described in claim 1, characterized in that, The communication anti-interference operation agent software includes: High-precision operation timing and recording module: used to accurately time and record each step of the operator's operation; Parameter input and reporting module: It provides a user-friendly interface for operators to adjust equipment parameters and automatically reports the operation process, status records, and completion status to the system control terminal in real time; Local spectrum display module: Used to obtain and display local spectrum meter data in real time by calling the spectrum meter API.

6. A communication anti-interference training and control method, said method being based on the communication anti-interference training and control system according to any one of claims 1-5, characterized in that, The method includes the following steps: Channel simulation parameter generation and channel simulation control: Obtain scene information files by inputting simulation scene information or interacting with external software, identify communication node information in the scene files, automatically generate various interference model parameters according to the adversarial scenario, receive operator adjustment information to update radio communication and adversarial model parameters, and finally calculate and generate channel simulation parameters. Wireless channel simulation parameter generation and channel simulation control: The simulated scenario is converted into wireless channel simulation control information and finally sent to the channel simulator; Operation process status recording and information reporting: The communication anti-interference operation agent software reports the operation timing, process status recording, and completion status to the system control terminal; Spectrum display: The operator terminal connects to the spectrum analyzer via a USB interface to exchange data and perform real-time spectrum monitoring.

7. The communication anti-interference training and control method as described in claim 6, characterized in that, The specific workflow for channel simulation parameter generation and channel simulation control is as follows: Operators adjust parameter information and update the model parameters of radio communication and countermeasures through the wireless channel simulation control software interface; The wireless channel simulation control software will adjust parameters and report them to the communication anti-interference guidance and control software; The communication anti-interference guidance and control software maps scene information into model parameters; The director updates the model parameters according to the adjusted parameters; The communication anti-interference guidance and control software updates the model parameters displayed on the interface.

8. The communication anti-interference training and control method as described in claim 6, characterized in that, The method for generating wireless channel simulation parameters and controlling channel simulation includes the following steps: The director adjusts the parameter information and updates the model parameters of radio communication and countermeasures through the communication anti-interference command and control software interface; The communication anti-interference guidance and control system maps scenario information into model parameters and transforms them into wireless channel simulation control information. The communication anti-interference guidance and control system sends adjustment parameters to the wireless channel simulation control software; The wireless channel simulation control software sends parameters to the channel simulator.

9. The communication anti-interference training and control method as described in claim 6, characterized in that, The methods for recording operation status and reporting information include: The operation begins when the operator initiates the training operation command on the software interface, and the communication anti-interference operation agent software receives the command. The communication anti-interference operation agent software reports the start of the operation timer to the system control terminal. The control terminal notifies the operator that the operation has begun after receiving the timing start information. The communication anti-interference operation agent software continuously reports the status records during the operation process to the system control terminal. Update the status of the operator's interface: The system control terminal updates the status information on the operator's interface based on the received process status records. The communication anti-interference operation agent software reports the operation completion status to the system control terminal after the operation is completed. The system control terminal notifies the operator that the operation is complete after receiving the operation completion information. The director confirms receipt of the operation completion information and evaluates the operation results. The evaluation results are fed back to the agent software, and the director feeds back the evaluation results to the communication anti-interference operation agent software; The communication anti-interference operation agent software displays the evaluation results and operation feedback to the operator.

10. The communication anti-interference training and control method as described in claim 6, characterized in that, The specific workflow for spectrum display is as follows: The operator terminal is equipped with communication anti-interference operation agent software, which enables direct connection to the spectrum analyzer via a USB interface. During communication countermeasures operations, corresponding request commands are invoked and issued through the device interface; Upon receiving a request, the spectrum analyzer collects raw spectrum data and sends this data back to the operation agent software; The communication anti-interference operation agent software performs comprehensive and in-depth analysis and processing of the received IQ data; Through pre-set algorithm processing, the final spectrum analysis results are obtained and displayed intuitively in a graphical manner on the spectrum interface of the communication anti-interference operation agent software. When the communication anti-interference guidance and control software running on the system guidance and control terminal needs to obtain spectrum data from both sides of the confrontation, it actively sends a data request to the communication anti-interference operation agent software of the corresponding operator terminal. After receiving a request from the command and control software, the communication anti-interference operation agent software retrieves the processed spectrum data from the local cache or the processed database. The communication anti-interference guidance and control software returned to the system guidance and control terminal.