红外与激光工程, 2020, 49 (2): 0203009, 网络出版: 2020-03-10   

采用半解析蒙特卡洛技术模拟星载海洋激光雷达回波信号的软件

Software to simulate spaceborne oceanic lidar returns using semianalytic Monte Carlo technique
作者单位
浙江大学 光电科学与工程学院 现代光学仪器国家重点实验室, 浙江 杭州 310027
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崔晓宇, 陶雨婷, 刘群, 徐沛拓, 刘志鹏, 王晓彬, 陈扬, 周雨迪, 刘东. 采用半解析蒙特卡洛技术模拟星载海洋激光雷达回波信号的软件[J]. 红外与激光工程, 2020, 49(2): 0203009.

Cui Xiaoyu, Tao Yuting, Liu Qun, Xu Peituo, Liu Zhipeng, Wang Xiaobin, Zhou Yudi, Chen Yang, Liu Dong. Software to simulate spaceborne oceanic lidar returns using semianalytic Monte Carlo technique[J]. Infrared and Laser Engineering, 2020, 49(2): 0203009.

参考文献

[1] Behrenfeld M J. Biospheric primary production during an ENSO transition[J]. Science, 2001, 291(5513): 2594-2597.

[2] Dickey T, Lewis M, Chang G. Optical oceanography: Recent advances and future directions using global remote sensing and in situ observations[J]. Reviews of Geophysics, 2006, 44(1): RG1001.

[3] Lee J H. Oceanographic lidar profiles compared with estimates from in situ optical measurements[J]. Applied Optics, 2013, 52(4): 786-794.

[4] Churnside J H. Review of profiling oceanographic lidar[J]. Optical Engineering, 2014, 53(5): 051405.

[5] Mcclain C R. A decade of satellite ocean color observations[J]. Annual Review of Marine Science, 2009, 1(1): 19.

[6] Liu Q. Relationship between the effective attenuation coefficient of spaceborne lidar signal and the IOPs of seawater[J]. Optics Express, 2018, 26(23): 30278-30291.

[7] Hostetler C. Airborne lidar for ocean-atmosphere studies and assessment of future satellite mission concepts[C]//AGU Fall Meeting Abstracts, 2014.

[8] Hoge F E. Airborne lidar detection of subsurface oceanic scattering layers[J]. Applied Optics, 1988, 27(19): 3969-3977.

[9] Hostetler C A. Spaceborne lidar in the study of marine systems[J]. Annual Review of Marine Science, 2018, 10(1): 121-147.

[10] Behrenfeld M J. Space-based lidar measurements of global ocean carbon stocks[J]. Geophysical Research Letters, 2013, 40(16): 4355-4360.

[11] Lu X. Retrieval of ocean subsurface particulate backscattering coefficient from space-borne CALIOP lidar measurements[J]. Optics Express, 2016, 24(25):29001.

[12] Wang L, Jacques S L, Zheng L. MCML-Monte Carlo modeling of light transport in multi-layered tissues[J]. Computer Methods and Programs in Biomedicine, 1995, 47(2): 131-146.

[13] Poole L R, Venable D D, Campbell J W. Semianalytic Monte Carlo radiative transfer model for oceanographic lidar systems[J]. Applied Optics, 1981, 20(20): 3653-3656.

[14] Mobley C D, Sundman L K, Boss E. Phase function effects on oceanic light fields[J]. Applied Optics, 2002, 41(6): 1035-1050.

[15] Petzold T J. Volume scattering functions for selected ocean waters[J]. Scripps Institution of Oceanography, 1972, 10: 307.

[16] Mobley C D. Comparison of numerical models for computing underwater light fields[J]. Applied Optics, 1993, 32(36): 7484-7504.

[17] Henyey L G, Greenstein J L. Diffuse radiation in the galaxy[J]. The Astrophysical Journal, 1941, 93: 70-83.

[18] Fournier G R, Forand J L. Analytic phase function for ocean water[C]//Proceedings of SPIE-the International Society for Optical Engineering, 1994, 2258: 194-201.

[19] Gordon H R. Interpretation of airborne oceanic lidar: effects of multiple scattering[J]. Applied Optics, 1982, 21(16): 2996-3001.

[20] Lee Z P. Diffuse attenuation coefficient of downwelling irradiance: An evaluation of remote sensing methods[J]. Journal of Geophysical Research Oceans, 2005, 110(C2): DOI: 10.1029/2004JC002873.

崔晓宇, 陶雨婷, 刘群, 徐沛拓, 刘志鹏, 王晓彬, 陈扬, 周雨迪, 刘东. 采用半解析蒙特卡洛技术模拟星载海洋激光雷达回波信号的软件[J]. 红外与激光工程, 2020, 49(2): 0203009. Cui Xiaoyu, Tao Yuting, Liu Qun, Xu Peituo, Liu Zhipeng, Wang Xiaobin, Zhou Yudi, Chen Yang, Liu Dong. Software to simulate spaceborne oceanic lidar returns using semianalytic Monte Carlo technique[J]. Infrared and Laser Engineering, 2020, 49(2): 0203009.

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