[1] Park T. Visibility monitoring guidance[P]. US, EPA-454/R-99-003, 1999: 28-50.
[2] Tarel J P, Hautiere N. Fast visibility restoration from a single color or gray level image[C]//IEEE International Conference on Computer Vision, 2009: 2201-2208.
[3] Feng Shuai, Jiang Lihui, Xiong Xinglong, et al. Lidar visibility inversion with breakpoint signal[J]. Infrared and Laser Engineering, 2017, 46(3): 0330001. (in Chinese)
[4] Kreid D K. Atmospheric visibility measurement by a modulated cw lidar: author′s reply to comments[J]. Applied Optics, 1976, 15(7): 1823-1831.
[5] Sessa E J, Sessa E J. Automated surface observing system[J]. Journal of Air Traffic Control, 1993,35(2): 4-8.
[6] Gao Yuanyuan, Shu Zhifeng, Sun Dongsong, et al. Application of integrating sphere in Rayleigh wind lidar[J]. Infrared and Laser Engineering, 2014, 43(11): 3547-3554. (in Chinese)
[7] Liu Hongxing, Ren Jianwei, Li Xiansheng, et al. Radiometric characteristics simulation of large aperture integrating sphere bosed on LightTools[J]. Infrared and Laser Engineering, 2013, 42(4): 960-965. (in Chinese)
[8] Shi Shunxiang. Physical Optics and Applied Optics[M]. Xi′an: Xidian University Press, 2000: 299-314. (in Chinese)
[9] Organization W M. WMO Guide to Meteorological Instruments and Methods of Observation[M]. US: EOS Transactions, 2008: 1-55.
[10] Sun Jingqun. Laser Atmosphere Detect[M]. Beijing: Science Press, 1986. (in Chinese)
[11] Lawrence M G. The Relationship between relative humidity and the dewpoint temperature in moist air: a simple conversion and applications[J]. Bulletin of the American Meteorological Society, 2010, 86(2): 225-233.