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兵工学报 ›› 2025, Vol. 46 ›› Issue (5): 240806-.doi: 10.12382/bgxb.2024.0806

• • 上一篇    

基于多视图几何的飞行器飞行走廊冲突检测方法

徐同乐1, 王兆辰1, 刘方1,*(), 肖玉杰2, 何翼2, 斗计华3   

  1. 1 海军工程大学, 湖北 武汉 430033
    2 海军研究院, 北京 100161
    3 大连舰艇学院, 辽宁 大连 116016
  • 收稿日期:2024-09-06 上线日期:2025-05-07
  • 通讯作者:

Aircraft Flight Corridor Conflict Detection Method Based on Multi-view Geometry

XU Tongle1, WANG Zhaochen1, LIU Fang1,*(), XIAO Yujie2, HE Yi2, DOU Jihua3   

  1. 1 Naval University of Engineering, Wuhan 430033, Hubei, China
    2 Naval Research Institute of PLA, Beijing 100161, China
    3 Dalian Naval Academy, Dalian 116016, Liaoning, China
  • Received:2024-09-06 Online:2025-05-07

摘要:

飞行器的航路冲突检测是避免因航路冲突导致飞行器碰撞的有效手段和关键能力。将三维碰撞检测用于飞行冲突判断,提出一种基于多视图几何的飞行器飞行走廊冲突检测方法。通过广播自动相关监视(Automatic Dependent Surveillance-Broadcast, ADS-B)系统获取航路信息,设计构建飞行器飞行走廊模型;基于可能发生冲突区域的局部态势三视图中图形几何关系进行飞行冲突检测。仿真验证结果表明:新方法可以直观、准确地判断飞行器飞行走廊冲突情况,相较于传统的网格化离散采样法在解算冲突情况下效率提升66.35%,在解算不冲突情况下效率提升98.17%,整体效率提升84.38%。

关键词: 飞行器, 多视图几何, 计算机视觉, 飞行走廊, 正交投影, 冲突检测

Abstract:

The path planning and dynamic collision avoidance techniques for aircraft are effective means and key capabilities to prevent collisions caused by flight path conflicts. The three-dimensional collision detection is used for flight conflict judgment, and an aircraft flight corridor conflict detection method based on multi-view geometry is proposed. The flight route information is obtained through the automatic dependent surveillance-broadcast (ADS-B) system, and an aircraft flight corridor model is designed to construct a local situation of potential conflict area. Then, the conflict situation in the aircraft flight corridor is detected based on the geometric relationships in the three views of the local situation. Simulated results show that the proposed method can intuitively and accurately judge the conflict situation in aircraft flight corridor. Compared to the traditional spatial grid analysis method, the efficiency of solving the conflict situation is improved by 66.35%, the efficiency of solving nin-conflict situation is improved by 98.17%, and the overall solving efficiency is increased by 84.38%.

Key words: aircraft, multi-view geometry, computer vision, flight corridor, orthogonal projection, conflict detection

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