[1] |
LI Yao, CHEN Xin, RAO Peng.
Review of space target positioning algorithms based on space-based optical detection
[J]. Chinese Space Science and Technology, 2024, 44(2): 1-15.
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[2] |
ZHANG Zhen, CHEN Jianlin, SUN Chong, FANG Qun, ZHU Zhanxia.
Orbit prediction algorithm for space debris cluster based on polynomial approximation
[J]. Chinese Space Science and Technology, 2022, 42(6): 89-98.
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[3] |
NI Jiushun, CHEN Lihu, YU Sunquan, LI Songting, GUO Jianming, LUO Aobo, LI Jinhua.
A review for space-based ADS-B
[J]. Chinese Space Science and Technology, 2022, 42(1): 30-37.
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[4] |
YAO Jinming, LI Guangping, ZHANG Huibo, TIAN Hao, YOU Bindi, DAI Shijie.
Masscenter location identification of large space debris based on binocular vision and inertial measurement units fusion
[J]. Chinese Space Science and Technology, 2022, 42(1): 114-124.
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[5] |
SUN Ruiqi, QI Rui.
Research on tethered space-tug system for non-cooperative spacecraft capture
[J]. Chinese Space Science and Technology, 2021, 41(6): 42-53.
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[6] |
WANG Liwu, LIU Anmin, XU Wangjing , ZHANG Qingbin, WANG Guangxing, LU Yuanyuan.
Research on capture and recovery of low-orbit useless targets
[J]. Chinese Space Science and Technology, 2021, 41(1): 84-90.
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[7] |
WANG Haoyu, HOU Xiaogeng.
Control method and fuel consumption analysis on random relative stationkeeping in close range to space debris
[J]. Chinese Space Science and Technology, 2020, 40(1): 27-.
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[8] |
WANG Wei, ZHENG Shi-Gui, CHANG Jie.
Design and high velocity impact test verification of flexible space debris protection shield
[J]. Chinese Space Science and Technology, 2019, 39(4): 82-.
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[9] |
YANG Bo,WANG Haofan,MIAO Jun,ZHAO Xiaotao.
Highprecision visual navigation for space debris based on satellite formation
[J]. Chinese Space Science and Technology, 2019, 39(1): 40-.
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[10] |
YANG Wulin, CHEN Chuan, YU Qian, LI Ming, GONG Zizheng.
Research and development of simulation platform for orbital debris removal with spacebased laser system
[J]. Chinese Space Science and Technology, 2019, 39(1): 59-.
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[11] |
Pang Baojun Gai Fangfang Guan Gongshun (Hypervelocity Impact Research Center,Harbin Institute of Technology,Harbin 150080).
Numerical Simulation on the Damage of Front Side of Gas-filled Pressure Vessels due to Hypervelocity Impact
[J]. Chinese Space Science and Technology, 2010, 30(04): 76-82.
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[12] |
Zhang Yong1 Huo Yuhua1 Han Zengyao1 Li Ming1 Huang Jie2(1 China Academy of Space Technology,Beijing 100094)(2 Hypervelocity Aerodynamics Institute,China Aerodynamics R&D Center,Mianyang 621000).
Experimental of Gas-filled Pressure Vessel under Hypervelocity Normal Impact
[J]. Chinese Space Science and Technology, 2009, 29(01): 56-61.
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[13] |
Tang Qi1 Pang Baojun1 Han Zengyao2 Liu Wugang3(1 School of Astronautics,Harbin Institute of Technology,Harbin 150080)(2 China Academy of Space Technology,Beijing 100094)(3 Beijing Institute of Structure and Environment Engineering,Beijing 100076).
Research on Identification and Parameter Estimation of Cratering Induced by Impact on Single Plate with Acoustic Emission Signals
[J]. Chinese Space Science and Technology, 2008, 28(05): 59-65.
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[14] |
Wang Ting Dong Yunfeng(Beijing University of Aeronautics and Astronautics,Beijing 100083).
Algorithms of Collision Probability between Spacecraft and Short-Term Debris Clouds
[J]. Chinese Space Science and Technology, 2006, 26(02): 17-23.
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[15] |
Tang Qi Pang Baojun Zhang Wei(Harbin Institute of Technology, Harbin 150001).
Analysis of the Parameters in Space Debris Environment Engineering Model
[J]. Chinese Space Science and Technology, 2004, 24(05): -.
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