Acta Optica Sinica, Volume. 42, Issue 18, 1828007(2022)
Models of Sea Surface Wind Speed Retrieval by Spaceborne Lidar Data
[1] Winker D M, Vaughan M A, Omar A et al. Overview of the CALIPSO mission and CALIOP data processing algorithms[J]. Journal of Atmospheric and Oceanic Technology, 26, 2310-2323(2009).
[2] Barrick D. Rough surface scattering based on the specular point theory[J]. IEEE Transactions on Antennas and Propagation, 16, 449-454(1968).
[3] Barrick D, Bahar E. Rough surface scattering using specular point theory[J]. IEEE Transactions on Antennas and Propagation, 29, 798-800(1981).
[4] Bufton J L, Hoge F E, Swift R N. Airborne measurements of laser backscatter from the ocean surface[J]. Applied Optics, 22, 2603-2618(1983).
[5] Menzies R T, Tratt D M, Hunt W H. Lidar in-space technology experiment measurements of sea surface directional reflectance and the link to surface wind speed[J]. Applied Optics, 37, 5550-5559(1998).
[6] Cox C, Munk W. Measurement of the roughness of the sea surface from photographs of the sun′s glitter[J]. Journal of the Optical Society of America, 44, 838-850(1954).
[7] Hu Y, Stamnes K, Vaughan M et al. Sea surface wind speed estimation from space-based lidar measurements[J]. Atmospheric Chemistry and Physics, 8, 3593-3601(2008).
[8] Wu J. Mean square slopes of the wind-disturbed water surface, their magnitude, directionality, and composition[J]. Radio Science, 25, 37-48(1990).
[9] Wu D, Zhang X X, Yan F Q et al. Sea surface wind speed detection by using the data of CALIPSO lidar[J]. Acta Optica Sinica, 32, 0828002(2012).
[10] Wu D, Wang J H, Yan F Q. Estimation of air-sea gas transfer velocity using the CALIPSO lidar measurements[J]. Acta Optica Sinica, 32, 0928001(2012).
[11] Ding H B, Wang Z Z, Liu D. Comparison of de-noising methods of LiDAR signal[J]. Acta Optica Sinica, 41, 2401001(2021).
[12] Sun Y C, Wu D. Comparison of day and night sea surface wind speed detection using CALIPSO lidar measurements[J]. Chinese Journal of Quantum Electronics, 30, 29-35(2013).
[13] He M, Hu Y X, Huang J P et al. Aerosol optical depth under "clear" sky conditions derived from sea surface reflection of lidar signals[J]. Optics Express, 24, A1618-A1634(2016).
[14] Yang Z W. Research of sea surface reflection model and sea surface wind speed inversion based on CALIOP data[D], 42-50(2020).
[15] Kodis R. A note on the theory of scattering from an irregular surface[J]. IEEE Transactions on Antennas and Propagation, 14, 77-82(1966).
[16] van Ginneken B, Stavridi M, Koenderink J J. Diffuse and specular reflectance from rough surfaces[J]. Applied Optics, 37, 130-139(1998).
[17] Tang Q, Hu Y X, Li W et al. Optimizing cirrus optical depth retrievals over the ocean from collocated CALIPSO and AMSR-E observations[J]. Applied Optics, 57, 7472-7481(2018).
[18] Jin W. Wind-Stress coefficients over sea surface near neutral conditions: a revisit[J]. Journal of Physical Oceanography, 10, 727-740(1980).
[19] Zhou X, Yang J, Li S. Model of sea surface echos from spaceborne single photon lidar[J]. Acta Optica Sinica, 41, 1928002(2021).
[20] Monahan E C. Oceanic whitecaps[J]. Journal of Physical Oceanography, 1, 139-144(1971).
[21] Anguelova M D, Bettenhausen M H. Whitecap fraction from satellite measurements: algorithm description[J]. Journal of Geophysical Research: Oceans, 124, 1827-1857(2019).
[22] Wang M J, Wang Y H, Chen D et al. Transmission characteristics of blue-green laser through two-dimensional dynamic sea surface-bubble layer[J]. Acta Optica Sinica, 42, 0214001(2022).
Get Citation
Copy Citation Text
Xinyi Zhang, Dong Wu, Zhenwei Yang, Yan He. Models of Sea Surface Wind Speed Retrieval by Spaceborne Lidar Data[J]. Acta Optica Sinica, 2022, 42(18): 1828007
Category: Remote Sensing and Sensors
Received: Jan. 27, 2022
Accepted: Apr. 21, 2022
Published Online: Sep. 15, 2022
The Author Email: Wu Dong (dongwu@ouc.edu.cn)