基于交互式框选的电磁信号动态控守方法及系统

By using an interactive selection method to draw rectangular selection areas on the spectrum in real time, and automatically calculating frequency domain values ​​and signal strength, the problems of spectrum delay and cumbersome operation in traditional electromagnetic signal analysis systems are solved. This enables real-time dynamic display and customized signal simulation, improving the efficiency and accuracy of electromagnetic signal control.

CN121476708BActive Publication Date: 2026-07-17南京中孚信息技术有限公司 +3

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
南京中孚信息技术有限公司
Filing Date
2025-10-23
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Traditional electromagnetic signal analysis systems rely on static spectrum diagrams, which leads to delays in spectrum diagram generation and updates, making it impossible to reflect the dynamic changes of electromagnetic signals in real time. They are also cumbersome to operate and cannot simulate custom signals, making it difficult to meet real-time control and monitoring requirements.

Method used

An interactive selection method is adopted, which draws rectangular selection areas on the spectrum graph through a real-time mapping algorithm, automatically calculates frequency domain values ​​and signal strength, realizes bidirectional linkage between signal columns and approved signal list, supports custom signal synthesis and dynamic injection, and improves operation efficiency and accuracy.

Benefits of technology

It enables real-time dynamic display and signal data binding on the spectrogram, improving operational efficiency and accuracy, supporting custom signal simulation, and enhancing the system's flexibility and application scope.

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Abstract

本发明提出了基于交互式框选的电磁信号动态控守方法及系统,属于电磁频谱监测与分析领域。方法包括:获取用户在频谱图上绘制的矩形选区参数以及频谱图参数;依据频谱图参数与选区参数,通过实时映射算法计算矩形选区对应的频域值和信号强度,并实时叠加显示在频谱图上;将频域值及频谱信号通信ID发送至服务器,接收服务器返回的核准信号并在所述频谱图上以信号柱形式展示;建立信号柱与核准信号列表的双向联动机制;接收用户的信号控守操作指令,将目标信号数据发送至后端服务器;接收服务器返回的控守结果。本发明解决了现有技术操作效率低、缺乏实时性和灵活性的问题,显著提升了电磁信号控守的效率和精度。
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