Laser Technology, Volume. 45, Issue 6, 768(2021)

Application and development trend of shipborne wind lidar

LIANG Xiaofeng* and ZHANG Zhenhua
Author Affiliations
  • [in Chinese]
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    References(26)

    [1] [1] WANG Q M, GUO L L. Development of lidar in detection of low altitude wind shear[J].Laser & Infrared, 2012, 42(12):1324-1328(in Chinese).

    [2] [2] FAN Q, ZHU X L, ZHOU D F, et al. Analysis of the wind field characteristics using the wind lidar in a typical plateau airport[J]. Laser Technology, 2020, 44(5): 525-531(in Chinese).

    [3] [3] FENG L T, ZHOU J, FAN Q, et al. Three-dimensional lidar for wind shear detection and early warning in civil aviation airport[J]. Acta Photonica Sinica, 2019, 48(5): 0512001(in Chinese).

    [4] [4] ZONG K, ZONG W, LI H X, et al. Research of simulation methods on landing flow field for shipborne helicopters[J].Ship Science and Technology, 2018, 40(3): 124-130(in Chinese).

    [5] [5] ZHAO P Ch, LI H X, ZHONG K, et al. Study of influence factors on taking-off/landing[J].Ship Engineering, 2017, 39(9) :88-92(in Chinese).

    [6] [6] CROZON C, STEIJL R, BARAKOS G N. Numerical study of helicopter rotors in a ship airwake[J]. Journal of Aircraft, 2014, 51(6): 1813-1832.

    [7] [7] HODGE S J, ZAN S J, ROPER D M, et al. Time-accurate ship airwake and unsteady aerodynamic loads modeling for maritime helicopter simulation[J]. Journal of the American Helicopter Society, 2009, 54(2): 22005.

    [8] [8] WANG Y M, SHAO L M, ZHANG Sh Y. Current situation of marine meteorological information detection[J].Ship Electronic Engineering,2017,37(2):1-3(in Chinese).

    [9] [9] MA F M, CHEN Y, YANG Z H, et al. Latest development of laser doppler wind measurement technology[J]. Laser & Optoelectronics Progress, 2019, 56(18):180003(in Chinese).

    [10] [10] SUN D S YANG Zh, XUE G G. Performance analysis of direct detection Doppler lidar for wind measurement[J]. Infrared and Laser Engineering, 2003,32(2):115-117(in Chinese).

    [11] [11] XIA H Y, SHENTU G L, SHANGGUAN M J, et al. Long-range micro-pulse aerosol lidar at 1.5μm with an upconversion single-photon detector[J]. Optics Letters, 2015, 40(7): 1579-1582.

    [12] [12] SHANGGUAN M J, XIA H Y, WANG Ch, et al. All-fiber upconversion high spectral resolution wind lidar using a Fabry-Perot interfe-rometer[J]. Optics Express, 2016, 24(17): 19322-19336.

    [13] [13] MAO J T,ZHANG J H,WANG M H. Summary comment on research of atmospheric aerosol in China[J]. Acta Meteorologica Sinica, 2002, 60(5): 625-634(in Chinese).

    [14] [14] FAN Q, ZHU K Y, ZHENG J F. Detection performance analysis of all-fiber coherent wind lidar under different weather types[J]. Ch-inese Journal of Lasers, 2017, 44(2): 0210003(in Chinese).

    [15] [15] PAN J Y, WU Sh Y, LIY G, et al. Wind measurement techniques of coherent wind lidar[J]. Infrared and Laser Engineering, 2013, 42(7): 1720-1724(in Chinese).

    [16] [16] ZHAI X Ch, WU S H, LIU B Y, et al. Shipborne wind measurement and motion-induced error correction of a coherent Doppler lidar over the Yellow Sea in 2014[J]. Atmospheric Measurement Techniques, 2018, 11(3): 1313-1331.

    [17] [17] HU Y, ZHU H Y. 1.55μm all-fiber coherent Doppler lidar for wind measurement[J].Infrared and Laser Engineering, 2016, 45(s1): 78-82(in Chinese).

    [18] [18] ZHAO P E, LUO X, CAO W T, et al. Using zoom FFT to improve the spectrum resolution of coherent wind laser radar[J]. Infrared and Laser Engineering, 2014, 43(1): 98-102(in Chinese).

    [19] [19] HENDERSON S W, HANNON S M. Advanced coherent lidar system for wind measurements [J]. Proceedings of the SPIE, 2005, 5887: 58870I.

    [20] [20] SHUN C M, CHAN P W. Applications of an infrared Doppler lidar in detection of wind shear[J]. Journal of Atmospheric and Oceanic Technology, 2008, 25(5): 637-655.

    [21] [21] THOBOIS L, LOAEC S, BOQUET M, et al. Recent developments of windcube Doppler lidars for airport wind hazards monitoring[C]//WakeNet Europe 2014 Workshop.Brussels, Belgium:Eurocontrol,2014:1-22.

    [22] [22] WOLFE D E, BREWER W A, TUCKER S C, et al. Shipboard multisensor merged wind profiles from the New England air quality study 2004[J]. Journal of Geophysical Research Atmospheres, 2007, 112(D10):7344.

    [23] [23] HILL R J, BREWER W A, TUCKER S C. Platform-motion correction of velocity measured by Doppler lidar[J]. Journal of Atmospheric and Oceanic Technology, 2008, 25(8): 1369-1382.

    [24] [24] ZHOU J, YANG Z H, SONG Sh, et al. Shipborne wind lidar for regional 3-D wind field measurement[J] . Infrared and Laser Engineering, 2020, 49(s2): 49-55(in Chinese).

    [25] [25] ACHTERT P, BROOKS I M, BROOKS B J, et al. Measurement of wind profiles by motion-stabilised ship-borne Doppler lidar[J]. Atmospheric Measurement Techniques, 2015, 8(11): 4993-5007.

    [26] [26] WOLKEN G, GOTTSCHALL J, LANGE B. First verification test and wake measurement results using a ship-LiDAR system[J]. Energy Procedia, 2014, 53: 146-155.

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    LIANG Xiaofeng, ZHANG Zhenhua. Application and development trend of shipborne wind lidar[J]. Laser Technology, 2021, 45(6): 768

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    Paper Information

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    Received: Feb. 23, 2021

    Accepted: --

    Published Online: Nov. 8, 2021

    The Author Email: LIANG Xiaofeng (liangdaibiao@163.com)

    DOI:10-7510/jgjs-issn-1001-3806-2021-06-016

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