Method and system for obtaining effective communication area after communication interference based on airborne communication

By calculating the maximum straight-line and line-of-sight communication distances, and combining the interference equation and the bisection method, the effective communication area after airborne communication interference can be quickly obtained. This solves the problems of high computational complexity and insufficient real-time performance in existing technologies, and enables an intuitive display of the communication area after interference.

CN122419652APending Publication Date: 2026-07-17SICHUAN JIUZHOU ELECTRIC GROUP CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
SICHUAN JIUZHOU ELECTRIC GROUP CO LTD
Filing Date
2026-05-06
Publication Date
2026-07-17

AI Technical Summary

Technical Problem

Existing methods for estimating the effects of communication interference cannot provide an intuitive and accurate mathematical description of the effective communication area after multi-point interference, and have high computational complexity, which cannot meet real-time requirements.

Method used

The maximum straight-line communication distance is calculated by free-space transmission loss. The maximum effective communication area is determined by combining the Earth curvature line-of-sight communication theory. The interference equation and the bisection method are used to quickly calculate the interference-to-throughput ratio threshold. The effective communication area after interference (intersection/union/complement) is obtained and plotted.

Benefits of technology

It achieves low-complexity dynamic, real-time rendering of the effective communication area after interference, providing an intuitive display of interference effects and a basis for mission planning and command decisions.

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Abstract

本发明公开了基于机载通信的通信干扰后有效通信区域获取方法及系统,包括:获取基础参数,基础参数包括机载通信发射机、机载通信接收机和机载通信干扰机的相关参数;基于自由空间传输损耗理论计算最大直线通信距离;基于地球曲率的视距通信理论计算在无干扰情况下的最大有效通信距离;并根据最大有效通信距离,确定最大有效通信区域;基于干扰方程理论,确定干通比和接收误码率的关系;并根据机载通信接收机的接收误码率阈值,利用二分法计算干通比阈值;根据干通比阈值,确定圆形裁剪区域边界点的近点和远点位置,并最终确定干扰后的有效通信区域。本发明以较低的时间复杂度完成计算,为实现动态、实时的通信干扰后有效通信区域绘制提供支撑。
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