Journal of Atmospheric and Environmental Optics, Volume. 12, Issue 2, 81(2017)
Current Situation and Prospect of Ground-Based Background Sky Radiance Measurement Technique and Its Applications
[1] [1] Li Wei. Whole Sky Brightness and a New Measurement Technology[D]. Hefei: Master’s Thesis of Anhui Institute Optics and Fine Mechanics, Chinese Academy of Sciences, 2008(in Chinese).
[2] [2] Rao Ruizhong. Modern Atmospheric Optics[M]. Beijing: Science Press, 2012: 326-335(in Chinese).
[3] [3] Long C N, Slater D W,Tooman T P. Total Sky Imager Model 880 Status and Testing Results[M]. Richland, Wash, USA: Pacific Northwest National Laboratory, 2001.
[4] [4] Shields J E, Karr M E, Tooman T P, et al. The whole sky imager-a year of progress[C]//Eighth Atmospheric Radiation Measurement (ARM) Science Team Meeting, Tucson, Arizona. 1998: 23-27.
[5] [5] Cinzano P, Falchi F. A portable wide-field instrument for mapping night sky brightness automatically[J]. Memorie della Societa Astronomica Italiana, 2003, 74: 458.
[6] [6] Huo Juan, Lü Daren. Preliminary study on cloud-cover using an ALL-Sky digital camera[J]. Journal of Nanjing Institute of Meteorology, 2002, 25(2): 243-246(in Chinese).
[7] [7] China Bureau of Monitoring Network Division. Sun Photometer Technology Manual of CE318[M]. 2010: 6-13(in Chinese).
[8] [8] Mitchell R M. Aerosol measurment in the Australian outback: intercomparsion of sun photometers[J]. J. Atmos. Ocean. Tech., 2003, 20(1): 54-66.
[9] [9] Pandithural G, Pinker R T, Takamura T, et al. Aerosol radiative forcing over a tropical urban site in India[J]. Geophys. Res. Lett., 2004, 31(12): L12107.1-L12107.4.
[10] [10] Beijing Techno Solutions Limited. Sky radiometer of POM-01/02[OL]. http://www. technosolutions. cn/ 2012/ 0904/281.html(in Chinese).
[11] [11] Zhao Dongtian, Ye Guangrong, Kang Wengang, et al. A novel system for sampling the daylight information[J]. China Illuminating Engineering Journal, 1994, 5(3): 28-33(in Chinese).
[15] [15] Zhan Jie, He Qiaomiao, Xu Wenqing. Development of full sky background brightness meter[J]. Infrared and Laser Engineering, 2012, 41(12): 3379-3383(in Chinese).
[17] [17] Xu Wenqing, Zhan Jie, Xu Qingshan. Measurement and analysics of wide-wave band sky background radiance[J]. Acta Optica Sinica, 2013, 33(8): 1-7(in Chinese).
[18] [18] Qiu Jinhuan, Lü Daren, Chen Hongbin, et al. Modern research progresses in atmospheric physics[J]. Chinese Journal of Atmospheric Sciences, 2003, 27(4): 628-652(in Chinese).
[19] [19] Han Yong, Wang Tijian, Rao Ruizhong, et al. Progress in the study of physical-optics characteristics of atmospheric aerosols[J]. Acta Physica Sinica, 2008, 57(11): 7396-7407.
[20] [20] Mao Jietai, Zhang Junhua, Wang Meihua. Summary comment on research of atmospheric aerosol in China[J]. Acta Meteorologica Sinica, 2002, 60(5): 625-634(in Chinese).
[21] [21] Qiu Jinhuan. A new method of determining atmospheric aerosol optical depth from the whole-spectral solar direct radiation. Part I: Theory[J]. Chinese Journal of Atmospheric Sciences, 1995, 19(4): 385-394(in Chinese).
[22] [22] Qiu Jinhuan, Yang Jingmei, Pan Jidong. A new method of determining atmospheric aerosol optical depth from the whole-spectral solar direct radiation. Part II: Experimental study[J]. Chinese Journal of Atmospheric Sciences, 1995, 19(5): 586-596(in Chinese).
[23] [23] Qiu Jinhuan. Wide-band extinction method to measure aerosol optical depth and its application[J]. Journal of Remote Sensing, 1997, 1(1): 15-23(in Chinese).
[24] [24] Lü Daren, Zhou Xiuji, Qiu Jinhuan. Theory and numerical experimental of remote sensing of atmospheric aerosol size distribution by combined solar extinction and forward scattering method[J]. Chinese Journal of Sciences, 1981, 12(12): 1516-1523(in Chinese).
[25] [25] Qiu Jinhuan, Wang Hongqi, Zhou Xiuji. Experimental study of remote sensing of atmospheric aerosol size distribution by combined solar extinction and forward scattering method[J]. Scientia Atmospherica Sinica, 1983, 7(1): 34-41(in Chinese).
[26] [26] Twitty J T. The inversion of aureole measurements to derive aerosol size distributions[J]. J. Amos. Sci., 1975, 32(3): 584-591.
[27] [27] Twitty J T, Parent R J, Weinman J A, et al. Aerosol size distribution: Remote determination from air-borne measurements of the solar aureole[J]. Appl. Opt., 1976, 15(4): 980-989.
[28] [28] Deepak A, Box G P, Box M A. Experimental validation of the solar aureole technique for determining aerosol size distributions[J]. Appl. Opt., 1982, 21(12): 2236-2243.
[29] [29] Nakajima T, Tanaka M, Yamauchi T. Retrieval of the optical properties of aerosols from aureole and extinction data[J]. Appl. Opt., 1983, 22(19): 2951-2959.
[30] [30] Kaufman Y J, Gitelson A, Karnieli A, et al. Size distribution and scattering phase function of aerosol particles retrieved from sky brightness measurements[J]. J. Geophys. Res., 1994, 99(5): 10341-10356.
[31] [31] Nakajima T,Tonna G, Rao R, et al. Use of sky brightness measurements from ground for remote sensing of particulate polydispersions[J]. Appl. Opt., 1996, 35(15): 2672-2686.
[32] [32] Zhao Zengliang, Mao Jietai. Simulataneous retrieval of optical characterics of atmospheric aerosol and surfarce albedo[J]. Chinese Journal of Atmospheric Sciences, 1999, 23(6): 722-732(in Chinese).
[33] [33] Rao Ruizhong. Modern Atmospheric Optics[M]. Beijing: Science Press, 2012: 148-149(in Chinese).
[34] [34] Qiu J H, Zhou X J. Simultaneous determination of aerosol size distribution and refractive index and surface albedo from radiance-part I: Theory[J].Adv. Atmos. Sci., 1986, 3(2): 162-171.
[35] [35] Qiu J H, Sun J H, Xia Q L,et al. Simultaneous determination of aerosol size distribution and refractive index and surface albedo from radiance-part II: application[J]. Adv. Atmos. Sci., 1986, 3(3): 341-348.
[36] [36] Li Jie, Mao Jietai. Inverse of the property of atmospheric aerosols by optical remote sensing[J]. Acta Meteorologica Sinica, 1989, 47(4): 450-456(in Chinese).
[37] [37] Dubovik O, King M D. A flexible inversion algorithm for retrieval of aerosol optical properties from Sun and sky radiance measurements[J]. J. Geophys. Res., 2000, 105(16): 20673-20696.
[38] [38] Dubovik O, Smirnov A,Holben B N, et al. Accuracy assessments of aerosol optical properties retrieved from Aerosol Robotic Network (AERONET) Sun and sky radiance measurements[J]. J. Geophys. Res., 2000, 105(8): 9791-9806.
[39] [39] Reagan J A, Tome K J, Herman B M. A simple instrument and technique for measuring columnar water vapor via Near-IR differential solar transmission measurements[J]. IEEE Trans. Geosci. Remote Sens., 1992, 30(4): 825-831.
[40] [40] Hu Xiuqing, Zhang Yuxiang, Huang Yifen, et al. Inversing columnar water vapor amount from 940 nm channel of sun radiometer[J]. Journal of Meteorologica Sinciences, 2001, 29(3): 12-17(in Chinese).
[41] [41] Hu Zhiyuan, Bi Jianrong, Huang Jianping, et al. An inversion algorithm of columnar water vapor amount derived from sun-sky radiometer[J]. Plateau Meteorology, 2014, 33(1): 232-240(in Chinese).
[42] [42] Brewer A W,Mcelroy C T, Kerr J B. Nitrogen dioxide concentrations in the atmosphere[J]. Nature, 1973, 246: 129-133.
[43] [43] Wang Ping, Chen Hongbin, Lü Daren. Retrivals of stratospheric O3 and NO2 columns from the ground-based twilight zenith sky observations[J]. Chinese Journal of Atmospheric Sciences, 2003, 27(6): 1068-1076(in Chinese).
[44] [44] Chen Dan, Zhou Bin, Hao Nan, et al. The effect of O4 absorpotion on the measurement of atmospheric trace gases with zenith-sky scattering light observations[J]. Acta Physical Sinica, 2006, 55(10): 5555-5561(in Chinese).
[45] [45] Chen Dan, Zhou Bin, Chen Limin. Retrivals of columnar O3 amount using zenith-sky scattered light observing[J]. Journal of Fudan University: Natural Science Edition, 2008, 47(4): 478-486(in Chinese).
[46] [46] Chen Xiuhong. The Influence Anlysis of Cloud to Optical Propagation and Sky Brightness[D]. Hefei: Master’s Thesis of Anhui Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, 2005: 43-44(in Chinese).
[47] [47] Gao Taichang, Liu Lei, Zhao Shijun, et al. The actuality and progress of whole sky cloud sounding techniques[J]. Journal of Applied Meterological Science, 2010, 21(1): 101-108(in Chinese).
[48] [48] Yamashita M, Yoshimura M, Nakashizuka T. Cloud cover estimation using multitemporal hemisphere imageries[C]. Proceedings of 7th Congress of the International Society for Photogrammertry and Remote Sensing (ISPRS04), 2004: 818-821.
[49] [49] Shields J E, Johnson Richard W, Karr M E,et al. Daylight visible /NIR whole sky imagers for cloud and radiance monitoring in surport of UV research programs[C]. Proc. SPIE, 2003, 5156: 155-166.
[50] [50] Shields J E, Karr M E, Johnson R W,et al. Daylight whole sky imagers for 24-h cloud and sky assessment: history and overview[J]. Opt. Soc. Am., 2013, 52(8): 1605-1616.
[51] [51] Long C N,Sabburg J M, Calbo J, et al. Retrieving cloud characteristics from ground-based daytime color all-sky imagers[J]. J. Atmos. Ocean. Tech., 2006, 23(5): 633-652.
[52] [52] Huo Juan, Lü Daren, Wang Yue. Preliminary study on numerical simulation of whole sky cloud classifcation threshold method[J]. Progress in Natural Progress, 2006, 16(4): 480-484(in Chinese).
[53] [53] Huo Juan, Lü Daren. Cloud amount analysis at Yangbajing of Tibet in 2009 2010 using all-sky images[J]. Climatic and Enviromental Research, 2010, 17(4): 393-399(in Chinese).
[54] [54] Li Yu,Lü Daren, Huo Juan, et al. Improving the method for high cloud discriminability of all-sky-images based on physical-statistical relationship and radiation characteristics between cloudy and clear sky and its preliminary experiments[J]. Acta Meteorogica Sinica, 2013, 71(1): 134-145(in Chinese).
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SUNFengying, MEI Haiping, WU Pengfei, RAO Ruizhong. Current Situation and Prospect of Ground-Based Background Sky Radiance Measurement Technique and Its Applications[J]. Journal of Atmospheric and Environmental Optics, 2017, 12(2): 81
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Received: Jul. 1, 2015
Accepted: --
Published Online: Mar. 29, 2017
The Author Email: Haiping MEI (hpmei@aiofm.ac.cn)