Journal of Atmospheric and Environmental Optics ›› 2020, Vol. 15 ›› Issue (3): 161-173.
JIN Xiaomei1, 2, ZHU Wenyue1, LIU Qing1,2*
Online:
2020-05-28
Published:
2020-05-27
CLC Number:
[1] | |
Baker W E, Robertson F R, Emmitt G D, et al. Lidar- | |
measured winds from space:a key component for weather and | |
climate prediction [J]. Bulletin of the American | |
Meteorological Society, 1995, 76(6): 869-888. | |
[2] | |
Fujii T, Fukuchi T. Laser Remote Sensing [M]. Boca Raton: | |
CRC Press, 2005. | |
[3] | |
Protopopov V V. Laser Heterodyning [M]. New York: | |
Springer, 2009. | |
[4] | |
Huffaker R M, Jelalian A V, Thomson J A L. Laser-Doppler | |
system for detection of aircraft trailing vortices [J]. | |
Proceedings of the IEEE, 1970, 58(3): 322-326. | |
[5] | |
Asaka K, Yanagisawa T, Hirano Y. 1.5 μm eye-safe coherent | |
lidar system for wind velocity measurement [C]// | |
Second International Asia-Pacific Symposium on Remote | |
Sensing of the Atmosphere, Environment, | |
and Space. International Society for Optics and Photonics, | |
20 | 01: 321-328. |
[6] | |
Henderson S W, Hannon S M. Advanced coherent lidar system | |
for wind measurement [J]. SPIE, 2015, 5887: 1-10. | |
[7] | |
Mikkelsen T, Angelou N, Hansen K. A spinner-integrated | |
wind lidar for enhanced wind turbine control [J]. Wind | |
Energy, 2013, 16(4): 625-643. | |
[8] | |
Banakh V A, Kerkis N N, Smalikho I N, et al. Turbulent | |
energy dissipation rate measurements by coherent lidar | |
[J]. | |
SPIE, 1995, 2581: 242-253. | |
[9] | |
An Yuying, Zeng Xiaodong. Photoelectric Detection | |
Principle [M]. Xi'an: Xi'an Electronic and Science | |
University Press. 2004: 8. | |
安毓英, 曾晓东. 光电探测原理[M]. 西安: 西安电子科技大学出版社, | |
04: 8. | |
[10] | |
Zhou Xiaolin, Sun Dongsong, Zhong Zhiqing, et al. | |
Development of Doppler wind lidar [J]. Journal of | |
Atmospheric and | |
Environmental Optics, 2007, 2(3): 161-168 (in Chinese). | |
周小林,孙东松,钟志庆,等. 多普勒测风激光雷达研究进展[J]. 大气与 | |
环境光学学报, 2007, 2(3): 161-168. | |
[11] | |
Jin Xiaomei. Research on Performance Simulation of Laser | |
Coherent Wind Measurement Technology [D]. Hefei: Master's | |
Thesis of University of Science and Technology of China, | |
19 (in Chinese). | |
金效梅. 激光相干测风技术的性能仿真研究[D]. 合肥:中国科学技术大 | |
学硕士论文,2019. | |
[12] | |
Jia Xiaodong. Development of 1.55 μm coherent lidar for | |
wind sensing [D]. Hefei: Doctoral Dissertation of | |
University of Science and Technology of China. 2015 (in | |
Chinese). | |
贾晓东. 1.55 μm 相干测风激光雷达样机的研制[D]. 合肥:中国科学 | |
技术大学博士论文, 2015. | |
[13] | |
Krishnamurthy R, Choukulkar A, Calhoun R, et al. Coherent | |
Doppler lidar for wind farm characterization [J]. Wind | |
Energy, 2013, 16(2): 189-206. | |
[14] | |
Courtney M, Wagner R, Lindelow P. Testing and comparison | |
of lidars for profile and turbulence measurements in wind | |
energy[C]// | |
IOP Conference Series: Earth and Environmental Science, | |
08, 1(1): 0120121. | |
[15] | |
Smalikho I N, Banakh V A, Pichugina Y L, et al. Lidar | |
investigation of atmosphere effect on a wind turbine wake | |
[J]. | |
Journal of Atmospheric & Oceanic Technology, 2013, 30 | |
(11) | : 2554-2570. |
[16] | |
Chan P W, Shun C M, Wu K C. Operational LIDAR-based system | |
for automatic windshear alerting at the Hong Kong | |
International Airport[C]// Conference on Aviation, 2002. | |
[17] | |
Wu S H, Yin J P, Liu B Y, et al. Characterization of | |
turbulent wake of wind turbine by coherent Doppler lidar | |
[C]// | |
Lidar Remote Sensing for Environmental Monitoring XIV. | |
International Society for Optics and | |
Photonics, 2014, 9262(92620H): 1-10. | |
[18] | |
Mikkelsen T, Angelou N, Hansen K, et al. A spinner- | |
integrated wind lidar for enhanced wind turbine control | |
[J] | Wind Energy, 2013, 16(4): 625-643. |
[19] | |
Frandsen S, Barthelmie R, Pryor S, et al. Analytical | |
modelling of wind speed deficit in large | |
offshore wind farms [J]. Wind Energy, 2010, 9(1-2): 39- | |
53. | |
[20] | |
Trujillo J, Bingol F, Larsen G C, et al. Light detection | |
and ranging measurements of wake dynamics. Part II: two- | |
dimensional | |
scanning [J]. Wind Energy, 2011, 14(1): 61-75. | |
[21] | |
Sun Gang, Weng Ningquan, Xiao Liming. Vertical | |
distribution models of atmospheric structure constant of | |
refractive index [J]. | |
High Power Laser and Particle Beams, 2008, 20(2): 183-188 | |
(in Chinese). | |
孙刚, 翁宁泉, 肖黎明. 合肥地区大气折射率结构常数高度分布模式 | |
强激光与粒子束, 2008, 20(2) : 183-188. | |
[22] | |
Cui Chaolong, Huang Honghua, Mei Haiping, et al. | |
Turbulent scintillation lidar for acquiring atmospheric | |
turbulence | |
information [J]. High Power Laser and Particle Beams, | |
20 | 13, 25(05): 1091-1096 (in Chinese). |
崔朝龙, 黄宏华, 梅海平, 等. 探测大气湍流的光强闪烁激光雷达[J]. | |
强激光与粒子束, 2013, 25(05): 1091-1096. | |
[23] | |
Tu Aiqin, Dong Debao, Weng Ningquan. Retrieval of clear- | |
air dissipation rate using spectral width measured by | |
wind profiler [J]. High Power Laser and Particle Beams, | |
08, 20(10): 1608-1614 (in Chinese). | |
涂爱琴,董德保,翁宁泉. 利用风廓线谱宽反演晴空湍流耗散率[J]. 强激 | |
光与粒子束, 2008, 20(10): 1608-1614. | |
[24] | |
Xiong Xinglong, Han Yong'an, Jiang Lihui, et al. Doppler | |
lidar alerting algorithm of low-level turbulence | |
based on velocity structure function [J]. Infrared and | |
Laser Engineering, 2017, 46(10): 1030005 (in Chinese). | |
熊兴隆,韩永安,蒋立辉,等. 基于速度结构函数的多普勒激光雷达低空湍 | |
流预警算法[J]. 红外与激光工程, 2017, 46(10): 1030005. | |
[25] | |
Frehlich R. Effects of wind turbulence on coherent Doppler | |
lidar performance [J]. Journal of Atmospheric and Oceanic | |
Technology, 1997, 14(1): 54-75. | |
[26] | |
Li Shengfu. Investigation of retrieval algorithm of clear | |
air turbulence using coherent wind lidar [D]. Harbin: | |
Master's | |
Thesis of Harbin Institute of Technology, 2008 (in | |
Chinese). | |
李生福. 相干激光测风雷达晴空湍流反演算法研究[D]. 哈尔滨:哈尔滨 | |
工业大学硕士论文, 2008. | |
[27] | |
Bu Z C, Chen S Y, Zhang Y C, et al. Effect of laser pulse | |
shape and duration on spectrum width of | |
coherent LIDAR [J]. Chinese Optics Letters, 2014, 12(s1): | |
12 | 801. |
[28] | |
Frehlich R, Cornman L. Estimating spatial velocity | |
statistics with coherent Doppler lidar [J]. Journal of | |
Atmospheric and | |
Oceanic Technology, 2002, 19: 355-366. | |
[29] | |
Frehlich R. Velocity error for coherent Doppler lidar with | |
pulse accumulation [J]. Journal of Atmospheric and | |
Oceanic Technology, 2004, 21: 905-920. | |
[30] | |
Banakh V A, Werner C. Computer simulation of coherent | |
Doppler lidar measurement of wind velocity and retrieval | |
of turbulent wind | |
statistics [J]. Optical Engineering, 2005, 44: 071205. | |
[31] | |
Sathe A, Mann J. A review of turbulence measurements using | |
ground-based wind lidars [J]. Atmospheric Measurement | |
Techniques, 2013, 6(11): 3147-3167. | |
[32] | |
Han Yong, Wang Tijian, Rao Ruizhong, et al. Progress in | |
the study of physic-optics characteristics of | |
atmospheric aerosols [J]. Acta Physica Sinica, 2008, 57 | |
(11) | : 7396-7407 (in Chinese). |
韩永, 王体健, 饶瑞中,等. 大气气溶胶物理光学特性研究进展[J]. 物 | |
理学报, 2008, 57(11): 7396-7407. | |
[33] | |
Sheng Peixuan, Mao Jietai, Li Jianguo, et al. Atmosphere | |
Physics [M]. BeiJing: BeiJing University Pulishing Press, | |
20 | 03: 25-26 (in Chinese). |
盛裴轩, 毛节泰, 李建国, 等. 大气物理学[M]. 北京:北京大学出版社 | |
, 2003: 25-26. | |
[34] | |
Wang Yingjian, Fan Chengyu, Wei Heli. Laser Beam | |
Propagation and Application through the Atmosphere and Sea | |
Water [M]. | |
BeiJing: National Defense Industry Press, 2015: 9-10 (in | |
Chinese). | |
王英俭, 范承玉, 魏合理. 激光在大气和海水中传输及应用[M].北京: | |
国防工业出版社, 2015: 9-10. | |
[35] | |
Li Xuebin, Hu Shunxing, Xu Qingshan, et al. | |
Characteristics measurement of extinction and refractive | |
index of | |
aerosol particles [J]. High Power Laser and Particle | |
Beams, 2007, 19(2): 207-210 (in Chinese). | |
李学彬, 胡顺星, 徐青山,等. 大气气溶胶消光特性和折射率的测量[J]. | |
强激光与粒子束, 2007, 19(2): 207-210. | |
[36] | |
Fernald F G. Analysis of atmospheric lidar observations: | |
some comments [J]. Applied Optics, 1984, 23(5): 652-653. | |
[37] | |
Royer P, Boquet M, Cariou J P, et al. Aerosol/cloud | |
measurements using coherent wind Doppler lidars[C]// | |
The European Physical Journal Conferences: 2016, 119: | |
11 | 002. |
[38] | |
Jin Xiaohan, Wang Yuefeng, Zhu Xiaopeng, et al. | |
Performance of maximum likelihood estimators of Doppler | |
frequency | |
for coherent Doppler lidar [J]. Optical Instruments, | |
20 | 12, 34(5): 28-33 (in Chinese). |
靳笑晗, 汪岳峰, 竹孝鹏,等. 最大概似法在多普勒激光测风雷达中的应 | |
用研究[J]. 光学仪器, 2012, 34(5): 28-33. | |
[39] | |
Ma H, Wang Q, Na Q, et al. Simulation study on detection | |
performance of eye-safe coherent Doppler wind | |
lidar operating near 1.6 μm[C]// International | |
Conference on Optical Instruments and Technology 2017: | |
Advanced Laser Technology and Applications. Society of | |
Photo-Optical Instrumentation Engineers (SPIE) Conference | |
Series, 2018. | |
[40] | |
Ke Tianmei, Tan Tu, Hou Zaihong, et al. Research on | |
technology of 1.55 μm all-fiber coherent wind lidar [J]. | |
Journal of Atmospheric and Environmental Optics, 2018, | |
13 | (5): 364-369 (in Chinese). |
柯天美, 谈图, 侯再红, 等. 1.55 μm 全光纤相干激光测风雷达技术 | |
研究[J] | 大气与环境光学学报,2018, 13(5).364-369. |
[41] | |
Wang C, Xia H Y, Liu Y P, et al. Spatial resolution | |
enhancement of coherent Doppler wind lidar using joint | |
time-frequency analysis [J]. Optics Communications, 2018, | |
42 | 4: 48-53. |
[42] | |
Cariou J P, Sauvage L, Thobois L, et al. Long range | |
scanning pulsed coherent lidar for real time wind | |
monitoring | |
in the planetary boundary layer[C]// Proceedings of 16th | |
Coherent Laser Radar Conference, 2011. | |
[43] | |
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) | : 1-8 (in Chinese). |
贾晓东, 孙东松, 舒志峰, 等. 相干激光雷达中望远镜的优化及探测性 | |
能分析[J]. 光学学报, 2015, 35(3): 1-8. | |
[44] | |
Wang Zhihua, He Yinghong, Li Zhensheng, et al. Effects of | |
backscatter extinction logarithmic ratio on the inversion | |
of aerosol extinction coefficiency [J]. Chinese Journal | |
of Quantum Electronics, 2006, 23(3): 335-340 (in Chinese). | |
王治华, 贺应红, 李振声, 等. 气溶胶后向散射消光对数比对消光系数 | |
反演的影响研究[J]. 量子电子学报, 2006, 23(3): 335-340. | |
[45] | |
Zhou Jun, Yue Guming, Qi Fudi, et al. Optical properties | |
of aerosol derived from lidar measurements [J]. | |
Chinese Journal of Quantum Electronics, 1998, 15(2): 140 | |
-148 (in Chinese). | |
周军, 岳古明, 戚福第,等. 大气气溶胶光学特性激光雷达探测[J]. 量 | |
子电子学报, 1998, 15(2): 140-148. | |
[46] | |
Kovalev V A, Eichinger W E. Elastic Lidar: Theory, | |
Practice, and Analysis Methods [M]. New Jersey: A John | |
Wiley & Sons, Inc., 2004. | |
[47] | |
Bowdle D A, Jeffry R, Michael V J, et al. Aerosol | |
backscatter measurements at 10.6 micrometers with airborne | |
and | |
ground-based CO sub 2 Doppler lidars over the Colorado | |
high plains. 2. Backscatter structure [J]. Journal of | |
Geophysical Research Atmospheres, 1991, 96(D3): 5337-5344. | |
[48] | |
Hannon S M, Thomson J A, Smith D D. Plume detection and | |
tracking using Doppler lidar aerosol and wind data [J]. | |
Proceedings of SPIE-The International Society for Optical | |
Engineering, 1999: 28-39. | |
[49] | |
Chouza F, Reitebuch O, Grobeta S, et al. Aerosol | |
backscatter and extinction retrieval from airborne | |
coherent | |
Doppler wind lidar measurements[C]// The European | |
Physical Journal Conferences: 2016, 119: 23001. | |
[50] | |
Fan Qi, Zhu Keyun, Zheng Jiafeng, et al. Detection | |
performance analysis of all-fiber coherent wind lidar | |
under | |
different weather types [J]. Chinese Journal of Lasers, | |
20 | 17, 44(2): 0210003 (in Chinese). |
范琪, 朱克云, 郑佳锋, 等. 不同天气类型下全光纤相干激光测风雷达 | |
探测性能分析[J]. 中国激光, 2017, 44(2): 0210003. | |
[51] | |
Dong Xiao, Hu Yihua, Xu Shilong, et al. Echoing | |
characteristics of coherent lidar in different aerosol | |
environments [J]. Acta Optica Sinica. 2018, 38(1): | |
01 | 01001 (in Chinese). |
董骁, 胡以华, 徐世龙, 等. 不同气溶胶环境中相干激光雷达回波特性 | |
[J] | 光学学报, 2018, 38(1): 0101001. |
[52] | |
Huffaker R M. Laser Doppler detection systems for gas | |
velocity measurement [J]. Applied Optics, 1970, 9(5): | |
1026. | |
[53] | |
Henderson S W, Ota K. Recent improvements in eyesafe, | |
solid-state and coherent laser radar technology [J]. | |
Review of Laser Engineering, 1997, 25(1): 19-24. | |
[54] | |
Emmitt G D. Combining direct and coherent detection for | |
Doppler wind lidar [J]. Proceedings of SPIE - The | |
International Society for Optical Engineering, 2004, 5575: | |
31 | -37. |
[55] | |
Bu Zhichao. Study on the System Design and Data | |
Processing Algorithm for Coherent Doppler Wind Lidar [D]. | |
Beijing: Doctoral Dissertation of Beijing Institute of | |
Technology, 2014 (in Chinese). | |
步志超. 相干测风激光雷达系统设计及数据处理算法研究[D]. 北京:北 | |
京理工大学博士论文, 2014. | |
[56] | |
Liu J Q, Chen W B, Zhu X. Development of all-fiber | |
coherent Doppler LIDAR to measure atmosphere wind speed | |
[C]// | |
Optical Instrumentation for Energy and Environmental | |
Applications. Optical Society of America, 2012: ET4D. 1. | |
[57] | |
Diao W F, Zhang X, Liu J Q, et al. All fiber pulsed | |
coherent lidar development for wind profiles measurements | |
in boundary layers [J]. Chinese Optics Letters, 2014, 12 | |
(7) | : 072801. |
[58] | |
Diao Weifeng. Airborne all fiber coherent Doppler wind | |
lidar [D]. Shanghai: Doctoral Dissertation of Shanghai | |
Institute | |
of Optics and Fine Mechanics, Chinese Academy of Sciences, | |
20 | 15 (in Chinese). |
刁伟峰. 机载全光纤相干多普勒激光测风雷达[D]. 上海:中国科学院上 | |
海光学精密机械研究所博士论文, 2015. | |
[59] | |
Zhu Zhenyu, Gao Kun, Han Lu, et al. Technical analysis of | |
space-based coherent wind lidar [J]. | |
Laser & Optoelectronics Progress, 2015, 52(10): 179-187 | |
(in Chinese). | |
朱振宇, 高昆, 韩璐,等. 天基相干测风激光雷达技术分析[J]. 激光与 | |
光电子学进展, 2015, 52(10): 179-187. |
[1] | DONG Jiantao , LI Zhengqiang , XIE Yisong , FAN Cheng , HONG Jin , DAI Liuxin , GU Haoran , ZHENG Yang . Spatial distribution of fine-mode aerosol optical depth over land in spring 2022 based on DPC/GF-5(02) [J]. Journal of Atmospheric and Environmental Optics, 2023, 18(4): 323-338. |
[2] | ZHAI Yingchao , WANG Han , ZHAO Meiru , CHEN Ke , LI Linsen . Evalutaion of land-atmospheric decoupling methods for mountainous aerosol multi-angle polarization remote sensing [J]. Journal of Atmospheric and Environmental Optics, 2023, 18(4): 339-356. |
[3] | GU Haoran , LI Zhengqiang , HOU Weizhen , QIU Zhenwei , LIU Zhenhai , ZHU Jun , QIE Lili , LUO Jie , HONG Jin , MA Jinji . Preliminary sensitivity study of aerosol layer height from ultraviolet multiangle polarimetric remote sensing measurements [J]. Journal of Atmospheric and Environmental Optics, 2023, 18(4): 357-370. |
[4] | CHEN Minwang , QIU Zhenwei , HONG Jin . Research on aerosol recognition and particle size distribution inversion based on scattering matrix [J]. Journal of Atmospheric and Environmental Optics, 2023, 18(3): 191-200. |
[5] | SUN Erchang , MA Jinji , WU Wenhan , YANG Guang , GUO Jinyu , . Improvement of PM2.5 predictions via variational assimilation of Himawari-8 satellite AOD product [J]. Journal of Atmospheric and Environmental Optics, 2023, 18(1): 59-72. |
[6] | CHEN Xiaomin , ZHANG Hongwei , SUN Kangwen , WU Songhua , . Inversion methods of slant turbulence parameters based on coherent Doppler lidar [J]. Journal of Atmospheric and Environmental Optics, 2023, 18(1): 1-13. |
[7] | WANG Xijin , XU Qingshan , FAN Chuanyu , CHENG Chen , QI Peng , XU Chidong . Lidar detection of diurnal variation of whole atmosphere aerosol optical depth [J]. Journal of Atmospheric and Environmental Optics, 2023, 18(1): 14-24. |
[8] | HUANG Dong , , LI Xin , ZHANG Yanna , ZHANG Yunxiang . Design and test of temperature control system for automatic sun photometer [J]. Journal of Atmospheric and Environmental Optics, 2023, 18(1): 73-81. |
[9] | XU Jian, RAO Lanlan, DOICU Adrian, HUSI Letu∗, QIN Kai∗. An optimized retrieval algorithm of aerosol layer height from hyperspectral satellites using O2-A band [J]. Journal of Atmospheric and Environmental Optics, 2022, 17(6): 630-639. |
[10] | WANG Xuelin, CHEN Wenzhong ∗. Variation characteristics and correlation between aerosol optical depth and net primary productivity in subarctic Pacific [J]. Journal of Atmospheric and Environmental Optics, 2022, 17(5): 558-569. |
[11] | CHEN Yukuan , , WANG Shuo , XU Xuezhe , ZHAO Weixiong , GAI Yanbo , FANG Bo , ZHANG Weijun , ∗. Variation characteristics of aerosol extinction coefficient in Shouxian, Anhui Province [J]. Journal of Atmospheric and Environmental Optics, 2022, 17(5): 533-541. |
[12] | LI Lin , , ZHANG Zhiguo , DU Chuanyao , WEI Tao , YU Liping , FAN Xuebo ∗. Inter-comparison of wind measurements between Doppler wind lidar and L-band radiosonde [J]. Journal of Atmospheric and Environmental Optics, 2022, 17(5): 494-505. |
[13] | CUI Tong, CHEN Xiangcheng, DAI Guangyao, ZHANG Hongwei, WANG Qichao, WU Songhua, ∗. Design and experiment of varifocal CW-wind lidar with high resolution [J]. Journal of Atmospheric and Environmental Optics, 2022, 17(4): 393-408. |
[14] | CAI Zhenfeng, LI Ding∗, HUANG Haihong. Analysis of impact of dust transport on aerosol evolution in Xuzhou region in spring 2021 [J]. Journal of Atmospheric and Environmental Optics, 2022, 17(4): 409-419. |
[15] | GUO Hang, SHAO Hui∗, CHEN Jie, HE Zixin, CAO Zheng, WANG Huimin, YAN Pu. Spectral characteristics analysis of dust retention leaves based on hyperspectral Lidar [J]. Journal of Atmospheric and Environmental Optics, 2022, 17(4): 420-428. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||