Chinese Journal of Lasers, Volume. 52, Issue 6, 0600002(2025)
Review of Optoelectronic Tracking Systems for Aerospace Targets
[5] Wang L, Yu L, Kou T et al. Evaluation and calibration of operational capability to airborne IRST system[J]. Journal of National University of Defense Technology, 37, 192-198(2015).
[6] Luo B, Feng Y, Jin X Y. Application and development of shipborne photoelectric tracker[J]. Laser & Infrared, 45, 1171-1174(2015).
[9] Xu W Q. The research on infrared target detection and tracking technology[D](2017).
[10] Wang B, Zhang Y X, Gao Q et al. Error analysis of airborne target velocity measurement by electro-optic theodolite[J]. Optoelectronic Technology, 39, 110-113(2019).
[11] Shi Y S, Zhang Z W. Development of infrared search and track system[J]. Electro-Optic Technology Application, 31, 11-14, 72(2016).
[18] Huang H B, Chen J, Zuo T et al. Development of photoelectric tracking control system with high-precision intelligent camera[J]. Chinese Journal of Scientific Instrument, 32, 107-112(2011).
[19] Cao Y P, Zhao B W, Shen N et al. Dynamic target real-time tracking and high-fidelity information acquisition system based on two-dimensional galvanometers[J]. Metrology & Measurement Technology, 43, 143-153(2023).
[20] Sun W Q, Wang Z X, Yu J L et al. Synchronous beam tracking and aiming system for double-target based on spatial light modulator[J]. Chinese Journal of Lasers, 50, 0505001(2023).
[21] Qiu J Y, Zhang Y S, Fang Y Q et al. A review of event camera based target detection and tracking algorithms[J]. Laser & Optoelectronics Progress, 62, 0400001(2025).
[22] Liang Y, Qi G Q, Li Y Y et al. Design and application of event-triggered mechanism for a kind of optical-electronic tracking system[J]. Control Theory & Applications, 34, 1328-1338(2017).
[23] Huang T J, Yu Z F, Li Y et al. Advances in spike vision[J]. Journal of Image and Graphics, 27, 1823-1839(2022).
[24] Lan J J. Design of photoelectric tracking sensor based on monocular vision[J]. Instrument Technique and Sensor, 20-24(2022).
[25] Wu J Y, Su X Q, Tan J J et al. Study of theory for transient imaging of hidden object using single-photon array detector[J]. Infrared and Laser Engineering, 47, 105-111(2018).
[27] Liu C M. Research on tracking aiming and vision positioning system of space target laser drive experimental device[D](2019).
[28] Han S F. Design and research on photoelectric tracking and measuring device for UAV flight performance test[D](2023).
[29] Lu P G, Liu X Q, Liu J P et al. Technology of optoelectronic aid landing system based on shipborne optoelectronic tracking equipment[J]. Journal of Applied Optics, 34, 553-563(2013).
[30] Yang L B. Research on key technologies of shipborne one meter aperture level photoelectric tracking system[D](2017).
[31] Li B. Shallow of ship-borne photoelectric tracking technology[J]. Electronic Test, 33-34(2017).
[32] Chen K F, Shi X S. Research on testing method for laser range finder capability of photodectric tracker[J]. Journal of Astronautic Metrology and Measurement, 28, 45-47(2008).
[35] Jiang Y, Sun Z F, Zhou Z R et al. Simulation of target tracking based on photon-counting laser ranging system[J]. Study on Optical Communications, 33-37(2022).
[37] Lu Q, Ren B, Bian J Y. Research on acquisition and tracking technology for the four-quadrant detector[J]. Opto-Electronic Engineering, 47, 190559(2020).
[38] Hou X, Liu Z Q, Chang Y D et al. Analysis on development status and trend of space laser communication technology[J]. Chinese Journal of Lasers, 51, 1101013(2024).
[39] Si D S, Li Z Z, Wang X X. An intelligent tracking algorithm using four-quadrant detector[J]. Journal of Xi’an Jiaotong University, 46, 13-17, 99(2012).
[40] Jiang F. Design of airborne laser communication tracking control system based on all-optical acquisition method[J]. Computer Measurement & Control, 30, 93-98, 106(2022).
[41] Zuo T, Huang H B, Su G B et al. Acquisition and tracking demonstration experiment system of space optical Communication[J]. Optical Communication Technology, 34, 46-49(2010).
[42] Zhang M, Tong S F, Teng Y J. Research on single-sensor and multiple-axis tracking control system for spatial laser communication[J]. Laser & Infrared, 49, 983-986(2019).
[45] Lou Z F, Geng W J, Zhang J Y et al. Passive laser tracking measurement method and error compensation technology[J]. Metrology & Measurement Technology, 41, 34-41(2021).
[47] Wang T S, Huo J, Wang P C et al. Research on single photon ranging technology for airborne remote detection[C](2017).
[50] Zhang Q, Liu B, Hua K J et al. Laser tracking method based on single-element detector[J]. Optics & Optoelectronic Technology, 20, 105-112(2022).
[51] Wang L, Liu B, Li Z K et al. Target recognition and tracking method based on single pixel single photon detection[J]. Semiconductor Optoelectronics, 44, 272-276(2023).
[53] Wang G H, Mao D P, Liu X et al. Study of search strategy on airborne optical tracking system[J]. Laser & Infrared, 41, 1014-1018(2011).
[56] Wang X G, Wang S M, Chen D D et al. Design of laser tracking system with quadrant detector[J]. Laser & Infrared, 47, 432-436(2017).
[57] Chen Y. Research on key technologies of micro-nano laser communication based on QD and MEMS mirror[D](2021).
[58] Dong M H. Simulation and experimental investigation of radar-lidar system[D](2016).
[59] Wang Y, Chen Z L, Wang X Y et al. The research of optimization model for photoelectric theodolite with radar station distribution[J]. Science Technology and Engineering, 12, 1111-1114(2012).
[64] Zhang Z D. Research on the integrated tracking technology of optical & radar and telemetry equipment[D](2019).
[66] Zhou Q Q, Sun X P, Yu X J et al. Target tracking method for fusion of high-resolution millimeter-wave radar and camera[J]. Electronic Information Warfare Technology, 39, 47-55(2024).
[67] Zhang P, Liu J Q, Xiao J C et al. Target localization and tracking method based on camera and LiDAR fusion[J]. Laser & Optoelectronics Progress, 61, 0828004(2024).
[69] Fu Y G, Liu Z, Zhang L et al. Performance analyzing and comparing for four tracking detectors[J]. Chinese Journal of Scientific Instrument, 136-138(2005).
[70] Zhang X H. Emerging technologies for infrared detectors used in night vision and military missile tracking equipment[J]. Infrared, 40, 37-42(2019).
[79] Chai R M. Research on the application and test of APD photodetector[D](2020).
[80] Xu L F, Sun B, Xu L B et al. Design of compound tracking control system based on improved high speed single photon detector[J]. Computer Measurement & Control, 31, 155-161(2023).
[82] Zhang X Y, Jia L, Zhu J et al. Comparison of laser ranging system based on SNSPD and SPAD detectors[J]. Journal of Infrared and Millimeter Waves, 37, 378-384(2018).
[83] Su Y J, An Y, Zhang P F et al. Application and development of photoelectric guidance detector[J]. Modern Manufacturing Technology and Equipment, 188-189(2019).
[84] Shi Z, He W, Qin W Z et al. Quadrant PIN photo-detector integrated APD in the center on the basis of InGaAs heterostructure[J]. Infrared and Laser Engineering, 39, 824-829(2010).
[85] Wang Z Z, Chen Y G, Chen S et al. Testing method of four-quadrant photodetectors[J]. China Measurement & Test, 45, 1-6(2019).
[86] Shu F Z. The research on weak signal detection and data processing technology based on QD[D](2023).
[87] Yu F, He Y, Li S et al. Improvement of positioning algorithm for four-quadrant optoelectronic detection system[J]. Journal of Applied Optics, 29, 493-497(2008).
[88] Li R Z. Enhancing near-infrared sensitive in silicon-based APD four-quadrant detector[D](2018).
[89] Song Z Y, Fu Y, Fan X K et al. Analysis and simulation of positioning accuracy of four-quadrant detector[J]. Journal of Changchun University of Science and Technology (Natural Science Edition), 41, 41-44(2018).
[91] Bashir M. Optical position sensing in free space optical communication[D](2014).
[99] Li J, Duan J S. Analysis and research on the working distance of CCD camera in photoelectric theodolite[J]. Ship Electronic Engineering, 42, 181-184(2022).
[100] Zhao B. Research on positioning technology of target in airborne photo-electricity measuring system[D](2011).
[101] Wan X. High-performance ATP technology research base on CMOS detector in turbulence channel[D](2016).
[102] Wang Y Q, Zheng X J, Zhong J F et al. A star image processing algorithm of tracking window for CMOS detector star sensors[J]. Aerospace Shanghai (Chinese & English), 40, 119-127(2023).
[104] Wang B X, Zhang Q H, Liu Y Q et al. Analysis for operating distance of a searching and tracking system based on CCD detector[J]. Opto-Electronic Engineering, 31, 12-15, 62(2004).
[105] Xu T R, Ruan Y, Zhao Z Q et al. Error-based observer control of an optic-electro tracking control system[J]. Opto-Electronic Engineering, 47, 190713(2020).
[106] Zhang B. Research on GeSn near- and mid-infrared photodetectors based on surface plasmon absorption enhancement[D](2021).
[107] Dong L W. Research on small target tracking method based on infrared imaging/radar fusion[D](2019).
[108] Li L X, Cao Q S. Study on the autonomous-capturing target technology of opto-electronic tracker[J]. Laser & Infrared, 36, 1142-1145(2006).
[109] Li Z, Tang L B, Zuo W B et al. Research progress of materials and detectors for mid-wave infrared quantum dots[J]. Infrared Technology, 45, 1263-1277(2023).
[122] Wang H. Research on pixel structure and mapping algorithm of superconducting nanowire single photon imager[D](2023).
[125] Yan J. Research on the information processing techniques of the photoelectric tracking system[D](2006).
[126] Wang J G. Research on moving object tracking in optoelectronic tracking system[D](2015).
[127] Liu J F, Lei Z, Li Z L. Application of “low slow small” UAV counter platform[J]. China Security & Protection, 50-53(2018).
[128] Wang Q P, Li F, Ma C L. Model noise Kalman filter algorithm for electro-optical tracking[J]. Journal of Chinese Inertial Technology, 20, 573-576, 582(2012).
[129] Jiang K. Design and implementation of digital simulation platform for terminal air defense weapon system[D](2022).
[130] Zhu L, Wu S, Tong Q et al. Analysis of target optical characteristics for space detection and recognition[J]. Aerospace Electronic Warfare, 38, 13-16(2022).
[131] Wei B Y, Yang S Q, Liu S T et al. Research on shipborne optical-electronic tracking target ranging method under laser rangefinder fault condition[J]. Ship Electronic Engineering, 40, 159-163(2020).
[132] Yin Z D, Gao Z Y, Zhu M et al. Research on high precision tracking control technology of airborne laser weapon[J]. Infrared and Laser Engineering, 50, 20200391(2021).
[133] Tang Y N, Cui Y M. Research on the calibration technology of photoelectric tracking error[J]. Metrology & Measurement Technology, 39, 78-82(2019).
[134] Li X F, Xu J, Wang H S et al. Research on nonlinear filter and simulation to optoelectronic tracking[J]. Infrared and Laser Engineering, 219-221(2007).
[135] Peng T. Low-altitude multi-target tracking technology based on twin LIDAR and IR sensors[D](2022).
[138] Wang J G, Li X F, Chen C et al. Improved TLD approach applied in optoelectronic tracking[J]. Infrared Technology, 37, 824-830(2015).
[139] Peng T, Zhang Y, Li S Z. IMM-CKF radar/IR tracking algorithm based on course angle aids[J]. Journal of Detection & Control, 44, 48-53(2022).
[140] Yuan J H, Zhao Z W, Li S et al. Research on tracking and aiming method of laser replenishment UAV based on improved Kalman filter[J]. Laser & Infrared, 51, 279-284(2021).
[141] Lin B Z, Dong Y, Li J H et al. Application of an improved adaptive Kalman filter in photoelectric tracking[J]. Laser & Optoelectronics Progress, 60, 0706008(2023).
[142] Wu H, Zhang Y, Li X et al. High-precision template matching tracking algorithm for optoelectronic tracking system[J]. Infrared Technology, 44, 1301-1308(2022).
[143] Chen L, Wu Z B, Wang Z X. Research on the critical detection probability of optic-electric tracking systems[J]. Computer Engineering & Science, 34, 182-189(2012).
[144] Zhao J Z. Airborne video image motion target detection and tracking technology[J]. Digital Technology & Application, 41, 99-101(2023).
[145] Liang Y Q, Yuan D. The research progress of UAV object tracking[J]. Computer Technology and Development, 34, 1-8(2024).
[146] Ouyang Q, Zhang Y, Ma Y et al. A review of UAV aerial photography target detection and tracking methods based on deep learning[J]. Electronics Optics & Control, 31, 1-7(2024).
[147] Zhao L. Research on air-to-air target detection and tracking algorithms for unmanned aerial vehicles based on deep learning[D](2024).
[152] Yang W T. Research on multi-target tracking technology of air-to-ground observation[D](2023).
[153] Wang F S. Research on multi-target detection and tracking using deep learning[D](2024).
[156] Peng J S, Xu H M, Li T T et al. Survey of visual target tracking algorithms based on generative and discriminant[J]. Science Technology and Engineering, 21, 14871-14881(2021).
[157] Zhang H Y, Huang H B, He J Y. Research progress of multi-object tracking in deep learning[J]. Machinery Design & Manufacture, 396, 349-353, 363(2024).
[162] Chen J M, Li D J, Zeng X J et al. Cross-modal optical information interaction and template dynamic update for RGBT target tracking method[J]. Acta Optica Sinica, 44, 0715001(2024).
[163] Vaswani A, Shazeer N, Parmar N et al. Attention is all you need[C], 6000-6010(2017).
Get Citation
Copy Citation Text
Zhijian Li, Cong Li, Hao Liu, Chao Wan, Qinggai Mi, Lei Zhang, Bo Sun, Yejun Zhou, Qingyuan Zhao, Tengfei Wu, Huabing Wang. Review of Optoelectronic Tracking Systems for Aerospace Targets[J]. Chinese Journal of Lasers, 2025, 52(6): 0600002
Category: Research Articles
Received: Sep. 13, 2024
Accepted: Oct. 22, 2024
Published Online: Mar. 20, 2025
The Author Email: Qingyuan Zhao (qyzhao@nju.edu.cn)
CSTR:32183.14.CJL241205