Optical Technique, Volume. 50, Issue 1, 71(2024)
Simulation research on full waveform acquisition method of high dynamic range lidar echo signal
[1] [1] Hua Dengxin, Song Xiaoquan. Advance in lidar remote sensing techniques[J]. Infrared and Laser Engineering,2008,37(S3):1—27.
[2] [2] Chow J C, Biswas P, Eatough D, et al. Health effects of fine particulate air pollution: lines that connect[J]. Journal of The Air & Waste Management Association,2006,56(6):707—708.
[3] [3] Kovalev V A, Eichinger W E. Elastic Lidar[M]. Hoboken: Wiley,2004:123—137.
[4] [4] Luo Yuan, He Yan, Geng Liming, et al. Long-Distance laser ranging lidar based on photon counting technology[J]. Chinese Journal Of Lasers,2016,43(05):245—252.
[5] [5] Pinandito M, Rosananto I, Hidayat I, et al. Mie scattering lidar observation of aerosol vertical profiles in Jakarata, Indonesia[J], Environmental Science,2000,13(2):205—216.
[6] [6] Liu Dong, Tao Zongming, Wu Decheng, et al. Development of three-wavelength-Raman-polarization lidar system and case study[J]. Acta Optica Sinica,2013,33(2):230—235.
[7] [7] Newsom R K, Turner D D, Bernd Mielke, et al. Simultaneous analog and photon counting detection for Raman Lidar[J]. Applied Optics,2009,48(20):3903—3914.
[8] [8] Ferrar R A, Turner D D, Clayton M, et al. Evaluation of daytime measurements of aerosols and water vapor made by an operational Raman lidar over the Southern Great Plains[J]. Journal of Geophysical Research.,2006,111(D5):D05S08.
[9] [9] Fu Yibin, Wang Yu, Zhang Tianshu, et al. Signal acquisition system with simultaneous analog and photon counting measurement for lidar[J]. Chinese Journal of Lasers,2015,42(08):318—327.
[10] [10] Liu Zhishen, Li Zhigang, Liu Bingyi, et al. Analysis of saturation signal correction of the troposphere lidar[J]. Chinese Optics Letters,2009,7(11):1051—1054.
[11] [11] Gao F, Veberic D, Stanic S, et al. Performance improvement of long-range scanning Mie lidar for the retrieval of atmospheric extinction[J]. Journal Of Quantitative Spectroscopy & Radiative Transfer,2013,122:72—78.
[12] [12] Zhang Yunpeng, Yi Fan, Kong Wei, et al. Slope characterization in combining analog and photon count data from atmospheric Lidar measurements[J]. Applied Optics,2014,53(31):7312—7320.
[13] [13] Toshikazu Hakamata, Hidehiro Kume, Kazuyoshi Okano, et al. Photomultiplier tubes basics and applications third edition[M]. 3th ed. Hamamatsu: Hamamatsu Photonics K K,2006:125—134.
[14] [14] Klyshko D N, Masalov A V. Photon noise: observation, squeezing, interpretation[J]. Physics-Uspekhi,1995,38(11):1203—1230.
[15] [15] Guo Xujin. Afterpulse measurement and correction in photon counting[D]. Shanxi: Shanxi University,2006.
[16] [16] La Rue, Ross A. High-quantum-efficiency photomultiplier with fast time response[J]. Proceedings of SPIE,2022(1):64—73.
[17] [17] G Wright. The Photomultiplier Handbook[M]. Oxford: Oxford University Press,2017:351—352.
[18] [18] Guo Congliang, Sun Jinjun, Fang Rongchuan, et al. Noise analysis and modeling of photo multiplier[J]. Optical Technique,2003(05):636—640.
[19] [19] Hamamatsu. Photomultiplier tube R9800[EB/OL].(2014-12)[2023-04-01]. https:∥www.hamamatsu.com.cn/content/dam/hamamatsu-photonics/sites/documents/99_SALES_LIBRARY/etd/R9880_TPMH1298E.pdf
[20] [20] Licel. TR40-16bit-3U lidar transient recorder manual[EB/OL].(2023-2-18)[2023-04-01].https:∥licel.com/manuals/TR40-16bit3U_Manual.pdf
[21] [21] Teledyne SP Devices. ADQ14 datasheet[EB/OL].(2021-11-10)[2023-04-01]. https:∥www.spdevices.com/en-us/products_/Documents/ADQ14/14-1290-H%20ADQ14%20datasheet.pdf.
[22] [22] Donovan D P, Whiteway J A, Carswell A I. Correction for nonlinear photon-counting effects in lidar systems[J]. Applied Optics,1993,32(33):6742—53.
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WANG Rui, GUO Pan, ZHANG Yinchao, CHEN Siying, CHEN He, TAN Wangshu. Simulation research on full waveform acquisition method of high dynamic range lidar echo signal[J]. Optical Technique, 2024, 50(1): 71