• Laser & Optoelectronics Progress
  • Vol. 52, Issue 10, 101201 (2015)
Zhu Zhenyu*, Gao Kun, Han Lu, Ni Guoqiang, and Gao Chunqing
Author Affiliations
  • [in Chinese]
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    DOI: 10.3788/lop52.101201 Cite this Article Set citation alerts
    Zhu Zhenyu, Gao Kun, Han Lu, Ni Guoqiang, Gao Chunqing. Technical Analysis of Space-Based Coherent Wind LiDAR[J]. Laser & Optoelectronics Progress, 2015, 52(10): 101201 Copy Citation Text show less
    References

    [1] Guo Jin. Progress in the study of Doppler wind lidar[J]. OME Information, 2010, 27(10): 10-15.

    [2] Rolf E, Kinnard K F, Huffaker R M. Laser-Doppler System for Measuring Three-Dimensional Vector Velocity[R]. US3532427DA, 1969.

    [3] S M Hannon, J A Thomson, S W Henderson, et al.. Windshear, turbulence, wake vortex characterization using pulsed solid state coherent lidar[C]. Proceedings of SPIE: Air Traffic Control Technologies, The International Society for Optical Engineering, 1995, 2464: 94-102.

    [4] Jia Xiaodong, Sun Dongsong, Shu Zhifeng, et al.. Optimal design of the telescope in coherent lidar and detection performance analysis[J]. Acta Optica Sinica, 2015, 35(3): 0301001.

    [5] J W Bilbro, W W Vaughan. Wind field measurement in the nonprecipitous regions surrounding severe storms by an airborne pulsed Doppler lidar system[J]. Bull Amer Meteor Soc, 1978, 59(9): 1095-1100.

    [6] M J Kavaya, S W Henderson, J R Magee, et al.. Remote wind profiling with a solid-state Nd:YAG coherent lidar system [J]. Opt Lett, 1989, 14(15): 776-778.

    [7] S W Henderson, P J M Suni, C P Hale, et al.. Coherent laser radar at 2 μm using solid-state lasers[J]. IEEE Transactions on Geoscience and Remote Sensing, 1993, 31(1): 4-15.

    [8] M J Kavaya, U N Singh, G J Koch, et al.. Development of a compact, pulsed, 2-micron, coherent-detection, Doppler wind lidar transceiver; and plans for flights on NASA′ s DC-8 and WB-57 aircraft[C]. 15th Coherent Laser Radar Conference, 2009: 1-4.

    [9] K Mizutani, T Itabe, S Ishii, et al.. Conductive-cooled 2 micron laser for CO2 and wind observations[C]. Proc of SPIE Lidar Remote Sensing for Environmental Monitoring IX, 2008, 7153: 71530J.

    [10] G D Emmitt, S A Wood, G Koch. Comparison of GWOLF and VALIDAR Doppler lidar measurements[C]. 85th AMS Annual Meeting, 2005: 5193-5197.

    [11] Bai Xue, Guo Pan, Chen Siying, et al.. Simulation in the time domain and time-frequency analysis for coherent Doppler wind lidar[J]. Chinese J Lasers, 2015, 42(1): 0114113.

    [12] Gao Xin, Han Yuli, Jin Ge. Data acquisition system for wind lidar in the upper atmosphere[J]. Chinese J Lasers, 2015, 42(1): 0113002.

    [13] Bu Lingbing, Chen Weibiao, Zhou Jun, et al.. Studies of fringe technique wind lidar[J]. Acta Photonica Sinica, 2009, 38(1): 175-178.

    [14] Li Ran, Wang Cheng, Su Guozhong, et al.. Development and applications of spaceborne lidar[J]. Science & Technology Review, 2007, 25(0714): 58-63.

    [15] Liu Jiqiao, Bu Lingbing, Zhou Jun, et al.. Optical frequency discriminator of a mobile direct-detection doppler wind lidar[J]. Chinese J Lasers, 2006, 33(10): 1339-1344.

    [16] Wang Chunhui, Li Yanchao, Xu Bo, et al.. Method and simulation of data quality control in velocity azimuth display inversion of wind lidar[J]. Chinese J Lasers, 2008, 35(4): 515-518.

    [17] Hu Hongwei, Hu Qiquan. Beam scanning and inversion method for lidar detecting wind[J]. Acta Optica Sinica, 2001, 21(6): 720-723.

    Zhu Zhenyu, Gao Kun, Han Lu, Ni Guoqiang, Gao Chunqing. Technical Analysis of Space-Based Coherent Wind LiDAR[J]. Laser & Optoelectronics Progress, 2015, 52(10): 101201
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