Laser & Optoelectronics Progress, Volume. 56, Issue 18, 180003(2019)

Latest Development of Laser Doppler Wind Measurement Technology

Fumin Ma1, Yong Chen2、*, Zehou Yang2,3, Dingfu Zhou2, Xiaofeng Li2, Chunli Chen2, Litian Feng2, and Chen Yu2
Author Affiliations
  • 1 Equipment Department of the Navy Stationed in Xi′an Military Representative Bureau, Chinese People′s Liberation Army, Xi′an, Shaanxi 710043, China
  • 2 Southwest Institute of Technical Physics, Chengdu, Sichuan 610041, China
  • 3 School of Physics, Beijing Institute of Technology, Beijing 100081, China
  • show less
    References(41)

    [2] Tucker S C, Weimer C S, Baidar S et al. Theoptical autocovariance wind lidar. part I: OAWL instrument development and demonstration[J]. Journal of Atmospheric and Oceanic Technology, 35, 2079-2097(2018).

    [3] Baidar S, Tucker S C, Beaubien M et al. The optical autocovariance wind lidar. part II: Green OAWL (GrOAWL) airborne performance and validation[J]. Journal of Atmospheric and Oceanic Technology, 35, 2099-2116(2018).

    [4] Iijima T, Uemura T, Matayoshi N et al. Development and evaluation of a new airspeed information system utilizing airborne Doppler LIDAR. [C]∥2017 IEEE/AIAA 36th Digital Avionics Systems Conference (DASC), September 17-21, 2017, St. Petersburg, FL, USA. New York: IEEE, 8102144(2017).

    [8] Reitebuch O. Wind lidar for atmospheric research[M]. ∥Schumann U. Atmospheric physics. Berlin Heidelberg: Springer, 487-507(2012).

    [10] Fujii T, Fukuchi T[M]. Laser remote sensing, 482-485(2005).

    [11] Werner C. Doppler wind lidar[M]. ∥Weitkamp C. Lidar. New York: Springer, 102, 325-354(2005).

    [16] Zhang J. Signal extraction and simulation for 2 μm coherent wind lidar[D]. Harbin: Harbin Institute of Technology, 6-7(2007).

    [20] Gentry B, Chen H, Cervantes Jet al. Airborne testing of the TWiLiTE direct detection Doppler lidar[C]∥Proc. Long Beach, California, USA. USA: Universities Space Research Association, 2011(2011).

    [21] Pu Z X, Zhang L, Zhang S X et al. The impact of Doppler wind lidar measurements on high-impact weather forecasting: regional OSSE and data assimilation studies[M]. ∥Park S, Xu L. Data assimilation for atmospheric, oceanic and hydrologic applications (Vol. Ⅲ). Cham: Springer, 259-283(2017).

    [22] Cremons D R, Abshire J, Allan G et al. Development of a Mars lidar (MARLI) for measuring wind and aerosol profiles from orbit[J]. Proceedings of SPIE, 10791, 1079106(2018).

    [25] Reitebuch O. The spaceborne wind lidar mission ADM-Aeolus[M]. ∥Schumann U. Atmospheric physics. Berlin Heidelberg: Springer, 815-827(2012).

    [26] Marksteiner U, Reitebuch O, Lemmerz C et al. Airborne direct-detection and coherent wind lidar measurements over the North Atlantic in 2015 supporting ESA’s Aeolus mission[J]. EPJ Web of Conferences, 176, 02011(2018).

    [27] Lux O, Lemmerz C, Weiler F et al. Airborne wind lidar observations over the North Atlantic in 2016 for the pre-launch validation of the satellite mission Aeolus[J]. Atmospheric Measurement Techniques, 11, 3297-3322(2018).

    [28] Straume A G, Elfving A, Wernham D et al. ESA’s spaceborne lidar mission ADM-Aeolus; project status and preparations for launch[J]. EPJ Web of Conferences, 176, 04007(2018).

    [34] Yan B D. Preliminary design of fiber pulsed coherent wind lidar[D]. Qingdao: Ocean University of China, 4-6(2013).

    [35] Pitter M. Burin des Roziers E, Medley J. Performance stability of ZephIR in high motion environments: floating and turbine mounted[J]. ZephIR Lidar, 10, 1-13(2014).

    [37] Thobois L, Loaec S, Boquet M et al. Recent developments of windcube Doppler lidars for airport wind hazards monitoring. [C]∥WakeNet Europe, May 13-14, 2014, Bretigny, France. Brussels: Eurocontrol, 1-22(2014).

    [39] Move Laser[2019-01-15]. Molas B300 ground-based wind lidar [2019-01-15].http:∥www.movelaser.com/Cn/newslist/id/23?tdsourcetag=s_pcqq_aiomsg..

    [40] Han Y L. Development of middle atmospheric temperature and wind lidar for gravity wave observation[D]. Hefei: University of Science and Technology of China, 31-115(2016).

    [41] Singh U N, Kavaya M J, Yu J R et al. Development of 2-micron Doppler wind lidar for NASA 3-D winds mission. [C]∥International Conference on Space Optical Systems and Applications, May 7-9, 2014, Kobe, Japan. Tokyo: NICT, S5-1(2014).

    Tools

    Get Citation

    Copy Citation Text

    Fumin Ma, Yong Chen, Zehou Yang, Dingfu Zhou, Xiaofeng Li, Chunli Chen, Litian Feng, Chen Yu. Latest Development of Laser Doppler Wind Measurement Technology[J]. Laser & Optoelectronics Progress, 2019, 56(18): 180003

    Download Citation

    EndNote(RIS)BibTexPlain Text
    Save article for my favorites
    Paper Information

    Category: Reviews

    Received: Jan. 15, 2019

    Accepted: Apr. 10, 2019

    Published Online: Sep. 9, 2019

    The Author Email: Chen Yong (151953766@qq.com)

    DOI:10.3788/LOP56.180003

    Topics