• Infrared and Laser Engineering
  • Vol. 49, Issue 5, 20201008 (2020)
Jun Zhang, Hongjian Zhang, Dakai Sun, Li Wang..., Yanpeng Wu, Chunyan Li, Hongjun Zhong and Xin Lu*|Show fewer author(s)
Author Affiliations
  • Beijing Institute of Control and Engineering, Beijing 100190, China
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    DOI: 10.3788/IRLA20201008 Cite this Article
    Jun Zhang, Hongjian Zhang, Dakai Sun, Li Wang, Yanpeng Wu, Chunyan Li, Hongjun Zhong, Xin Lu. High sensitive automatic detection technique for space objects[J]. Infrared and Laser Engineering, 2020, 49(5): 20201008 Copy Citation Text show less
    References

    [1] Yongzheng Liu, Xuebin Liu. Study on the ability of U. S. space situation awareness. Aerospace Electronic Warfare, 25, 1-3(2008).

    [2] Zizheng Gong, Ming Li. The giant collision of US-Russia satellites in space and its influences on spaceflight activities. Spacecraft Environment Engineering, 26, 101-106(2009).

    [3] Zizheng Gong, Zengyao Han, Baojun Pang. A review of studies on protection against M/OD. Spacecraft Environment Engineering, 27, 13-21(2010).

    [4] Lin Gao, Hejun Liu, Yaodong Song. Present status and development trends of space attack and defense equipment of USA. Electronic and Electro Optical Systems, 43-46(2009).

    [5] Ming Li. Progress of space debris research in China. Spacecraft Engineering, 1-5(2017).

    [6] Ming Li, Zizheng Gong, Guoqing Liu, . Frontier technology and system development of space debris surveillance and active removal. Chinese Science Bulletin, 63, 2570(2018).

    [7] Xiancheng Su, Xiaohong Yu, Zhenxin Liu. Analysis of the fevelopment of US dpace dituation swareness. Journal of the Academy of Equipment Command & Technology, 21, 42-46(2010).

    [8] Zhen Lu. History and dtatus of US dpace dituational swareness. Journal of Ordnance Equipment Engineering, 37, 1-8(2016).

    [9] Hongjun Zhong, Jun Zhang, Shitong Liang. Space-based technology of long range wide-field-of-view detection, identification and tracking for space debris. Space Debris Research, 4, 5-10(2019).

    [10] Utzmann J, Wagner A, Blanchet G, et al. Architectural design f a european SST system. 6th european conference on space debris[C] 2013.

    [11] Kennewell J A, Vo B N. An overview of space situational awareness. Infmation Fusion[C]2013 16th International Conference on. IEEE, 2013: 10291036.

    [12] J Sharma, G H Stokes, Braun C von. Toward operational space-based space surveillance. Lincoln Laboratory Journal, 13, 309-334(2002).

    [13] Felicetti L, Emami M R. Spacecraft fmation f debris surveillance[C] Aerospace Conference, IEEE, 2017: 112.

    [14] Flohrer T, Peltonen J, Kramer A, et al. Spacebased optical observations of space debris[C]4th European Conference on Space Debris, 2005, 587: 165.

    [15] T Flohrer, T Schildknecht, R Musci. Proposed strategies for optical observations in a future European Space Surveillance network. Advances in Space Research, 41, 1010-1021(2008).

    [16] Krause L H, Minow J I, Coffey V N, et al. The situational awareness sens suite f the ISS (SASSI): A mission concept to investigate ISS ging wake effects[C]13th Spacecraft ging Technology Conference (SCTC), 2014: 3478.

    [17] E L Christiansen, J L Hyde, R P Bernhard. Space shuttle debris and meteoroid impacts. Advances in Space Research, 34, 1097-1103(2004).

    [18] J M Marchant, S F Green, J S B Dick. Algorithm for optical real-time ground-based space debris detection. Advances in Space Research, 19, 233-236(1997).

    [19] T Schildknecht, U Hugentobler, A Verdun. Algorithms for ground based optical detection of space debris. Advances in Space Research, 16, 47-50(1995).

    [20] Yanagisawa T, Kurosaki H, Banno H, et al. Comparison between four detection algithms f GEO objects[C] Proceedings of the Advanced Maui Optical Space Surveillance Technologies Conference. 2012, 1114: 9197.

    [21] Zimmer P, McGraw J T, Ackermann M R. Affdable widefield optical space surveillance using sCMOS GPUs[C]Advanced Maui Optical Space Surveillance Technologies Conference, 2016: 25.

    [22] T Cardona, P Seitzer, A Rossi. BVRI photometric observations and light-curve analysis of GEO objects. Advances in Space Research, 58, 514-527(2016).

    [23] Seitzer P, Abercromby K, Barker E, et al. Optical studies of space debris at GEOsurvey followup with two telescopes[C]8th Air Fce Maui Optical Supercomputing (AMOS) Technical Conf. Wailea, Maui, Hawaii, 2007: 1014.

    [24] Zhongping Zhang, Haifeng Zhang, Huarong Deng. Experiment of laser ranging to space debris by using two receiving telescopes. Infrared and Laser Engineering, 45, 0102002(2016).

    [25] Yang Gao, Jinyu Zhao, Junchi Liu. Ground_based photoelectric surveillance for mid--high orbit target. Optics and Precision Engineering, 25, 2584-2590(2017).

    [26] Rongyu Sun, Changyin Zhao. Optical survey technique for Sspace debris in GEO. Progress in Astronomy, 30, 394-410(2012).

    [27] Chen Zhang, Yiding Ping. Object recognition method of space debris tracking. Acta Astronomica Sinica, 56, 506-515(2015).

    [28] Zhenwei Li, Tao Zhang, Nan Zhang. High precision orientation of faint space object. Optics and Precision Engineering, 23, 2627-2634(2015).

    [29] Hao Luo, Yindun Mao, Yong Yu. A method of GEO targets recognition in wide-field opto-electronic telescope observation. Opto-Electronic Engineering, 44, 418-421(2017).

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    Jun Zhang, Hongjian Zhang, Dakai Sun, Li Wang, Yanpeng Wu, Chunyan Li, Hongjun Zhong, Xin Lu. High sensitive automatic detection technique for space objects[J]. Infrared and Laser Engineering, 2020, 49(5): 20201008
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