Journal of Atmospheric and Environmental Optics, Volume. 19, Issue 1, 22(2024)
A coherent wind lidar based on Doppler principle and its field application
[1] Bai B, Wu Q R, Zhou X Y. Discussion on the application of lidar technology in atmospheric environment monitoring[J]. Resources Economization & Environmental Protection, 56-57(2021).
[2] Fu J, Li J, Wu Q. Application and prospect of Dopplar lidar in the wind field observation[J]. Acta Aerodynamica Sinica, 39, 172-179(2021).
[3] Imaki M, Kobayashi T. Ultraviolet high-spectral-resolution Doppler lidar for measuring wind field and aerosol optical properties[J]. Applied Optics, 44, 6023-6030(2005).
[4] Liu Z S, Chen W B, Hair J W et al. Proposed ground-based incoherent Doppler lidar with iodine filter discriminator for atmospheric wind profiling[J]. Optics & Photonics, 2833, 128-135(1996).
[5] Wang L, Chen K, Chen X et al. Calibration of frequency discriminator and application for Doppler lidar based on fiber Mach-Zehnder interferometer[J]. Acta Photonica Sinica, 48, 201003(2019).
[6] Wu S H, Yin J P, Liu B Y et al. Coherent Doppler lidar to investigate wind turbulence[J]. SPIE Newsroom, 1-3(2014).
[7] Wu S H, Yin J P, Liu B Y et al. Characterization of turbulent wake of wind turbine by coherent Doppler lidar[C](2014).
[8] Xia H Y, Sun D S, Shen F H et al. Direct detection Doppler wind lidar with twin-channel Fabry-Perot interferometer[J]. Infrared and Laser Engineering, 35, 273-278(2006).
[9] Pearson G, Davies F, Collier C. Remote sensing of the tropical rain forest boundary layer using pulsed Doppler lidar[J]. Atmospheric Chemistry and Physics, 10, 5891-5901(2010).
[10] Gao Y, Liu B L, Xu A R et al. Research and application of wind acoustic radar technology in wind speed measurement[J]. Electronic Design Engineering, 29, 126-131(2021).
[11] Zuo J H, Jia Y D, Zhang X Q et al. Frequency estimation algorithm of coherent Doppler wind lidar[J]. Laser & Infrared, 51, 554-558(2021).
[12] Dai Y J[M]. Laser Radar Technology, 191-192(2010).
[13] Zheng T, Wei F, Meng F et al. Research on technology of 1550 nm all-fiber continuous wave coherent Doppler wind lidar[J]. E3S Web of Conferences, 01038(2021).
[14] Wang G N, Liu B Y, Feng C Z et al. Data quality control method for VAD wind field retrieval based on coherent wind lidar[J]. Infrared and Laser Engineering, 47, 147-154(2018).
[15] Jia X D. Development of 1.55 μm Coherent Wind Lidar Prototype[D](2015).
[16] Chen Z. Research on All-fiber Coherent Wind LIDAR[D](2016).
[17] Wang C. 1.5 μm Wavelength All-fiber Multifunctional Coherent Doppler Wind Lidar[D](2019).
[18] Punchalard R, Lorsawatsiri A, Loetwassana W et al. Direct frequency estimation based adaptive algorithm for a second-order adaptive FIR notch filter[J]. Signal Processing, 88, 315-325(2008).
[19] Abeysekera S S. Performance of pulse-pair method of Doppler estimation[J]. IEEE Transactions on Aerospace and Electronic Systems, 34, 520-531(1998).
[20] Frehlich R. Performance of maximum likelihood estimators of mean power and Doppler velocity with A priori knowledge of spectral width[J]. Journal of Atmospheric and Oceanic Technology, 16, 1702-1709(1999).
[21] Hardesty R M. Performance of a discrete spectral peak frequency estimator for Doppler wind velocity measurements[J]. IEEE Transactions on Geoscience and Remote Sensing, GE-24, 777-783(1986).
[22] Jing X M. Performance Simulation of Laser Coherent Wind Measurement Technology[D](2019).
[23] Chu Y F, Liu D, Wang Z Z et al. Basic principle and technical progress of Doppler wind lidar[J]. Chinese Journal of Quantum Electronics, 37, 580-600(2020).
[24] Yang Y J, Yim S H L, Haywood J et al. Characteristics of heavy particulate matter pollution events over Hong Kong and their relationships with vertical wind profiles using high-time-resolution Doppler lidar measurements[J]. Journal of Geophysical Research: Atmospheres, 124, 9609-9623(2019).
Get Citation
Copy Citation Text
Taofeng GU, Haiyan YUE, Sihua WANG, Guangsheng WU, Houwen FENG, Ziheng TANG, Peng ZHUANG, Baorong KANG, Chenbo XIE. A coherent wind lidar based on Doppler principle and its field application[J]. Journal of Atmospheric and Environmental Optics, 2024, 19(1): 22
Category:
Received: May. 13, 2022
Accepted: --
Published Online: Mar. 19, 2024
The Author Email: Haiyan YUE (260894529@qq.com)