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兵工学报 ›› 2025, Vol. 46 ›› Issue (S1): 250526-.doi: 10.12382/bgxb.2025.0526

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空基光电载荷在复杂环境下目标综合定位能力

臧博1, 藏磊1,*(), 吴晓龙1, 李浩东1, 李欣1, 梁栋栋2, 孙建波2   

  1. 1 北京空间机电研究所, 北京 100094
    2 北京蓝天弘高计量检测有限公司, 北京 100176
  • 收稿日期:2025-06-20 上线日期:2025-11-06
  • 通讯作者:

Comprehensive Localization Capability of Airborne Electro-optical Payloads in Complex Environments

ZANG Bo1, ZANG Lei1,*(), WU Xiaolong1, LI Haodong1, LI Xin1, LIANG Dongdong2, SUN Jianbo2   

  1. 1 Beijing Institute of Space Mechanics & Electricity, Beijing 100094, China
    2 Beijing Blue Sky Honggao Metrology Testing Co. Ltd., Beijing 100176, China
  • Received:2025-06-20 Online:2025-11-06

摘要:

针对空基光电载荷在复杂环境下对目标高精度定位的需求,开展了空基载荷在复杂环境下的目标综合定位能力研究。提出在外场复杂环境下对空基光电载荷目标定位综合能力的测试方案,该方案基于光电载荷定位原理,在复杂环境条件下,量化评估不同类型或不同参数的光电载荷定位能力,并基于某型空基光电载荷开展了实际测试验证。验证结果表明:平台存在轻微运动时随着目标距离增大定位角度误差会被放大,进而影响定位精度;视轴与光轴的装配偏差导致远距离目标可以发现、锁定目标但定位误差增大甚至无法定位。该方案能够对空基光电载荷定位能力进行量化评价,为空基光电载荷的性能优化提供了明确方向,后续将进一步引入其它天气条件并结合动态目标展开定位能力测试。

关键词: 空基光电载荷, 复杂环境, 定位能力, 评价方法

Abstract:

In response to the demand for high-precision target positioning of airborne electro-optical payloads in complex environment,the comprehensive target positioning capability of airborne payloads is studied.This paper proposes a test scheme for evaluating the comprehensive target positioning capability of airborne electro-optical payloads in complex field environments.Based on the positioning principles of electro-optical payloads,the scheme is used to quantitatively assesses the positioning capabilities of different types of electro-optical payloads under complex environmental conditions.A specific type of airborne electro-optical payload is tested and verified.The verified results indicate that the angular positioning error is amplified with the increase in the target distance when the platform exhibits slight motion,thereby affecting the positioning accuracy.Additionally,the assembly deviations between the boresight and optical axis result in the ability to detect and lock onto distant targets,but lead to the increased positioning errors or even failure to position accurately.This scheme enables the quantitative evaluation of the positioning capability of airborne electro-optical payloads.The work in this paper provides a clear direction for performance optimization of such payloads.Future efforts will further incorporate other weather conditions and conduct the positioning capability tests on dynamic targets.

Key words: airborne optical payload, complex environment, positioning capability, evaluation method