Chinese Journal of Lasers, Volume. 47, Issue 8, 810003(2020)

Principle Prototype and Experimental Progress of Wind Lidar in Near Space

Liu Feifei1,2, Bi Decang3,4, Liu Heng1,4, Yuan Lucheng1,4, Wang Mingjian3, Zhu Xiaopeng3,4, Liu Jiqiao3,4, and Chen Weibiao1,2
Author Affiliations
  • 1Key Laboratory of Space Laser Communication and Detection Technology, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
  • 2School of Physical Science and Technology, Shanghai Tech University, Shanghai 201210, China
  • 3Laboratory of Space Laser Engineering and Technology, Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, Shanghai 201800, China
  • 4University of Chinese Academy of Sciences, Beijing 100049, China
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    References(26)

    [1] Lü D R, Chen Z Y, Guo X et al. Research status of adjacent space atmospheric environment[J]. Mechanical Progress, 39, 674-682(2009).

    [2] Cheng X, Xiao C Y, Hu X. Research progress on the influence of adjacent space atmosphere on the aerodynamic characteristics of hypersonic aircraft[J]. Aerodynamic Missile Journal, 1, 22-28(2018).

    [3] Zhang L C, Meng J H, Lü M Y. Stratospheric airship airborne velocity measurement[J]. Science & Technology Review, 35, 80-86(2017).

    [4] Tu J M. Causes and countermeasures of lost ball balloon detected by L radar[J]. Journal of Zhejiang Meteorology, 32, 39-40(2011).

    [5] Sun D S. Mie-Rayleigh Doppler wind lidar with two double-edge interferometers[J]. Chinese Journal of Lasers B, B11, 296-300(2002).

    [6] Benedetti-Michelangeli G, Congeduti F, Fiocco G. Measurement of aerosol motion and wind velocity in the lower troposphere by Doppler optical radar[J]. Journal of the Atmospheric Sciences, 29, 906-910(1972).

    [7] Chanin M, Garnier A, Hauchecorne A et al. A Doppler lidar for measuring winds in the middle atmosphere[J]. Geophysical Research Letters, 16, 1273-1276(1989).

    [8] Korb C L, Gentry B M, Weng C Y. Edge technique: theory and application to the lidar measurement of atmospheric wind[J]. Applied Optics, 31, 4202-4213(1992).

    [9] Korb C L, Gentry B M, Li S X et al. Theory of the double-edge technique for Doppler lidar wind measurement[J]. Applied Optics, 37, 3097-3104(1998).

    [10] Morançais D, Mazuray L, Barthès J C. ALADIN, the first wind lidar in space: development status[J]. Proceedings of SPIE , 2006, 1056, 1056703(2017).

    [11] Liu Z S, Chen W B, Zhang T L et al. An incoherent Doppler lidar for ground-based atmospheric wind profiling[J]. Applied Physics B, 64, 561-566(1997).

    [12] Liu Z S, Wu D, Liu J T et al. Low-altitude atmospheric wind measurement from the combined Mie and Rayleigh backscattering by Doppler lidar with an iodine filter[J]. Applied Optics, 41, 7079-7086(2002).

    [18] Vaughan J M[M]. Scattering in the atmosphere(2002).

    [19] Tenti G, Boley C D, Desai R C. On the kinetic model description of Rayleigh-Brillouin scattering from molecular gases[J]. Canadian Journal of Physics, 52, 285-290(1974).

    [21] McGill M J. Comparison of two direct-detection Doppler lidar techniques[J]. Optical Engineering, 37, 2675(1998).

    [22] Liu J Q, Zhu X P, Diao W F et al. All-fiber airborne coherent Doppler lidar to measure wind profiles[J]. EPJ Web of Conferences, 119, 10002(2016).

    [23] Liu H, Yuan L C, Fan C H et al. Performance validation on an all-fiber 1.54-μm pulsed coherent Doppler lidar for wind-profile measurement[J]. Optical Engineering, 59, 014109(2020).

    [24] Ma S Q, Wang G, Pan Y[J]. Application of GPS in high-altitude meteorological observation Jiangxi Meteorology Science & Technology, 1996, 33-36.

    [25] China Meteorological Administration[M]. Operational specification for conventional high altitude meteorological observation, 3-4(2010).

    [26] She C Y, Yue J, Yan Z A et al. Direct-detection Doppler wind measurements with a Cabannes-Mie lidar: a comparison between iodine vapor filter and Fabry-Perot interferometer methods[J]. Applied Optics, 46, 4434-4443(2007).

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    Liu Feifei, Bi Decang, Liu Heng, Yuan Lucheng, Wang Mingjian, Zhu Xiaopeng, Liu Jiqiao, Chen Weibiao. Principle Prototype and Experimental Progress of Wind Lidar in Near Space[J]. Chinese Journal of Lasers, 2020, 47(8): 810003

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    Paper Information

    Category: remote sensing and sensor

    Received: Feb. 10, 2020

    Accepted: --

    Published Online: Aug. 17, 2020

    The Author Email:

    DOI:10.3788/CJL202047.0810003

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