Laser & Optoelectronics Progress, Volume. 62, Issue 10, 1000006(2025)

Development and Application of Rocket-Borne Image-Measurement Technology in Aerospace

Yue Wang1,3, Yanhong Jing2, Haifeng Zhang1,5、*, Zeyu He1,4, Fengying Yue3, Sen Dong1,5, and Weining Chen1,5
Author Affiliations
  • 1Xi'an Institute of Optics and Precision Mechanics of CAS, Xi'an 710119, Shaanxi , China
  • 2Beijing Institute of Space Systems Engineering, Beijing 100076, China
  • 3School of Electrical and Control Engineering, North University of China, Taiyuan 030051, Shanxi , China
  • 4University of Chinese Academy of Sciences, Beijing 100049, China
  • 5Xi'an Key Laboratory of Spacecraft Optical Imaging and Measurement Technology, Xi'an 710119, Shaanxi , China
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    References(86)

    [1] Dong J, He Y Y, Yuan J J. Present situation and future prospect of military-civilian coordinated development in China’s commercial aerospace field[J]. Dual Use Technologies & Products, 48-52(2020).

    [11] Zhu W S, Mu J Z, Li S et al. Review and prospect of spacecraft pose estimation based on deep learning[J]. Journal of Astronautics, 44, 1633-1644(2023).

    [16] Wang S Q. Study of navigation of vision- inertial deep integration for proximity operations with space target[D](2019).

    [18] Jackson M, Greve C, Hoffman G et al. A parameterization of the Itek KA-80A panoramic camera (perspective geometry)[J]. Photogrammetric Engineering & Remote Sensing, 48, 761-769(1982).

    [36] Guo D Q, Yang H Y, Liu D Q et al. Overview on sparse image denoising[J]. Application Research of Computers, 29, 406-413(2012).

    [38] Wang H. Design and manufacture of branch optic waveguide phase modulator for fiber optic gyroscope[D](2017).

    [39] Liu D, Jia J L, Zhao Y Q et al. Overview of image denoising methods based on deep learning[J]. Computer Engineering and Applications, 57, 1-13(2021).

    [51] Ding S W, Chen H, Wang J et al. Photogrammetry for relative pose measurement of satellite and rocket[J]. Journal of National University of Defense Technology, 40, 14-19(2018).

    [54] Wu Z H. Research on vision-based relative position and attitude measurement technology for close-range spacecraft[D](2019).

    [55] Xu W F, Liu Y, Liang B et al. Measurement of relative poses between two non-cooperative spacecrafts[J]. Optics and Precision Engineering, 17, 1570-1581(2009).

    [56] Zeng Z K, Wei X Q, Huang J M et al. Research on measurement of relative poses between two non-cooperative spacecrafts in close range[J]. Aerospace Shanghai, 30, 10-17, 72(2013).

    [60] Wang K. Research on the algorithm of relative position and pose measurement between two non-cooperative space-crafts in super close range based on circles[D](2018).

    [61] Cai H. Experiment research of non-cooperative space target relative measurement based on binocular vision[D](2015).

    [62] Zhang M Z, Gao L, Tang K et al. Measurement of rocket separation velocity based on binocular stereo vision[C], 118-129(2020).

    [63] Yu J H. Research on relative position measurement of non-cooperative spacecraft[D](2013).

    [68] Hu G L. Research on short-range pose measurement technology of space non-cooperative target based on vision information[D](2020).

    [70] Zhu X Z. Research on vision based close range sensing of uncooperative targets[D](2017).

    [75] Yang S X. The analysis and calculation for the dynamic characteristics of the omniaxial movable fiexible joint nozzle[J]. Journal of Astronautics, 6, 59-77(1985).

    [76] Ma X Y, Yang Z H. Research on the swing angle test method of solid rocket engine ground test nozzle[J]. Quality and Reliability, 27-32(2011).

    [77] Bao W L, Pang Y Y, Gu B B. Design of a nozzle swing angle measurement system with machine vision[J]. Modern Defence Technology, 40, 20-25, 40(2012).

    [79] Lin X D, Ran C, Zhong Z F et al. Real time measurement technology for space pose of solid rocket motor swing nozzle based on machine vision[J]. Journal of Solid Rocket Technology, 44, 825-831(2021).

    [80] Wang C Y. Research on measurement method of nozzle motion parameters based on monocular vision[D](2022).

    [81] Zhang L F, Guo Y B, Chen G et al. Estimation of nozzle axis and vector angle by infrared photoelectric measurement technology[J]. Journal of Harbin Institute of Technology, 42, 24-28(2010).

    [87] Wei L, Huo J, Cai C. Nozzle swing angle measurement involving weighted uncertainty of feature points based on rotation parameters[J]. Current Optics and Photonics, 8, 300-306(2024).

    [88] Gao Y S, Yan S, Zhang Z W. Precise engine displacement testing technique based on stereo vision and circular mark points[J]. Acta Aeronautica et Astronautica Sinica, 45, 165-174(2024).

    [89] Sun X Y, Shen F, Xie J Y. Measurement method for nozzle throat diameter of solid rocket motor based on machine vision[J]. Journal of Solid Rocket Technology, 46, 119-127(2023).

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    Yue Wang, Yanhong Jing, Haifeng Zhang, Zeyu He, Fengying Yue, Sen Dong, Weining Chen. Development and Application of Rocket-Borne Image-Measurement Technology in Aerospace[J]. Laser & Optoelectronics Progress, 2025, 62(10): 1000006

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    Paper Information

    Category: Reviews

    Received: Sep. 24, 2024

    Accepted: Oct. 28, 2024

    Published Online: May. 6, 2025

    The Author Email: Haifeng Zhang (Zhanghf@opt.ac.cn)

    DOI:10.3788/LOP242017

    CSTR:32186.14.LOP242017

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