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目标邻域恒星匹配的摆扫式融合定位

全胜 姚凯男 徐志强 陈宝刚 王建立 谷健 宋力夺 王显军

光学精密工程2024,Vol.32Issue(21):3138-3146,9.
光学精密工程2024,Vol.32Issue(21):3138-3146,9.DOI:10.37188/OPE.20243221.3138

目标邻域恒星匹配的摆扫式融合定位

Swinging-scan and fusion positioning for target neighborhood star matching

全胜 1姚凯男 2徐志强 2陈宝刚 2王建立 1谷健 3宋力夺 2王显军2

作者信息

  • 1. 中国科学院 长春光学精密机械与物理研究所,吉林 长春 130033||中国科学院大学,北京 100049
  • 2. 中国科学院 长春光学精密机械与物理研究所,吉林 长春 130033
  • 3. 中国人民解放军63768部队,陕西 西安 713800
  • 折叠

摘要

Abstract

Ground-based optical telescopes used in daytime debris detection systems for Geostationary Earth Orbit(GEO)experience significant positioning errors due to thermal fluctuations and solar position variations.Furthermore,their limited field of view precludes the use of conventional astronomical position-ing techniques for precise target localization.This study presents a novel swing-scan and fusion positioning methodology utilizing neighboring star matching to address these limitations.The proposed approach incor-porates three key steps:first,observing two calibrated stars in proximity to the space debris;second,de-riving telescope directional change coefficients by comparing telescope orientation with the stars' theoretical astronomical positions;and third,correcting target positioning errors through spatial position matching be-tween the debris and calibrated stars.Implementation of this methodology on the 500 mm aperture GEO space debris all-day detection system,achieved high-precision positioning across the celestial sphere with positioning errors below 4″.Validation experiments conducted on two Beidou precision orbit targets dem-onstrated total positioning errors of 1.77″ and 1.63″ for azimuth and elevation,respectively.These re-sults confirm the effectiveness of the proposed positioning technology in error correction and its suitability for all-day detection system requirements.

关键词

白天探测/地球同步轨道/空间碎片/邻域恒星匹配/高精度定位

Key words

daytime detection/space debris/neighborhood star matching/high precision positioning

分类

航空航天

引用本文复制引用

全胜,姚凯男,徐志强,陈宝刚,王建立,谷健,宋力夺,王显军..目标邻域恒星匹配的摆扫式融合定位[J].光学精密工程,2024,32(21):3138-3146,9.

基金项目

吉林省科技发展计划重点研发项目(No.20210201020GX) (No.20210201020GX)

中国科学院关键核心技术攻关项目(No.YZQT024) (No.YZQT024)

吉林省科技发展计划技术创新引导项目(No.20230401097YY) (No.20230401097YY)

光学精密工程

OA北大核心CSTPCD

1004-924X

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