[1] Cao C Y, Bai Y. Quantitative analysis of VIIRS DNB nightlight point source for light power estimation and stability monitoring[J]. Remote Sensing, 2014, 6(12):11915-11935.DOI:10.3390/rs61211915. [2] 马烁, 黄云仙, 严卫, 等. 基于深对流云的夜间微光传感器定标技术[J]. 红外与毫米波学报, 2015, 34(5):630-641.DOI:10.11972/j.issn.1001-9014.2015.05.019. [3] Qiu S, Shao X, Cao C Y, et al. Assessment of straylight correction performance for the VIIRS Day/Night Band using Dome-C and Greenland under lunar illumination[J]. International Journal of Remote Sensing, 2017, 38(21):5880-5898.DOI:10.1080/01431161.2017.1338786. [4] Wang W H, Cao C Y. Monitoring the NOAA operational VIIRS RSB and DNB calibration stability using monthly and semi-monthly deep convective clouds time series[J]. Remote Sensing, 2016, 8(1):32.DOI:10.3390/rs8010032. [5] Hu S S, Ma S, Yan W, et al. Feasibility of a specialized ground light source for night-time low-light calibration[J]. International Journal of Remote Sensing, 2018, 39(8):2543-2559.DOI:10.1080/01431161.2018.1430915. [6] Liao L B, Weiss S, Mills S, et al. Suomi NPP VIIRS day-night band on-orbit performance[J]. Journal of Geophysical Research:Atmospheres, 2013, 118(22):12705-12718.DOI:10.1002/2013jd020475. [7] Ma S, Yan W, Huang Y X, et al. Calibration method of low-light sensor based on bridge lights[J]. Journal of Atmospheric and Oceanic Technology, 2016, 33(6):1123-1134.DOI:10.1175/jtech-d-15-0225.1. [8] Turner R E, Lambeck P F. Natural and artificial illumination in optically thick atmospheres[R/OL]. Michigan, USA:Environmental research institute of Michigan, 1975:51-55[2021-04-02]. https://ia801303.us.archive.org/27/items/DTIC_ADA021998/DTIC_ADA021998.pdf. [9] Bullrich K. Die Leuchtdichte des Himmels und die Globalbeleuchtungsstärke während der Dämmerung und in der Nacht[M]. Bad Kissingen, Germany:Dt.Wetterdienst in der US-Zone, 1948. [10] Lane A P, Irvine W M. Monochromatic phase curves and albedos for the lunar disk[J]. The Astronomical Journal, 1973, 78:267-277.DOI:10.1086/11414. [11] Condron T P. Gemini 7 lunar measurements[M]. Massachusetts, USA:Air Force Cambridge Research Laboratories, Office of Aerospace Research, United States Air Force,1968. [12] Miller S D, Turner R E. A dynamic lunar spectral irradiance data set for NPOESS/VIIRS day/night band nighttime environmental applications[J]. IEEE Transactions on Geoscience and Remote Sensing, 2009, 47(7):2316-2329.DOI:10.1109/TGRS.2009.2012696. [13] 王阳. 地基对月成像光谱测量及月球辐射模型研究[D]. 北京:中国科学院大学(中国科学院长春光学精密机械与物理研究所), 2018:21. [14] Barnes R A, Eplee R E, Patt F S, et al. Comparison of SeaWiFS measurements of the Moon with the U S Geological Survey lunar model[J].Applied Optics, 2004, 43(31):5838-5854.DOI:10.1364/A0.43.005838. [15] Eplee R E Jr, Meister G, Patt F S, et al. Uncertainty assessment of the SeaWiFS on-orbit calibration[C]//SPIE Optical Engineering + Applications. Proc SPIE 8153, Earth Observing Systems XVI, San Diego, California, USA. 2011, 8153:93-109.DOI:10.1117/412.892340. [16] 席庆, 李兆富, 罗川. 基于扰动分析方法的AnnAGNPS模型水文水质参数敏感性分析[J]. 环境科学, 2014, 35(5):1773-1780.DOI:10.13227/j.hjkx.2014.05.019. [17] Minnaert M. Photometry of the Moon[M]//Kuiper G P, Middlehurst B M. Planets and Satellites. Chicago, USA:The University of Chicago Press, 1961:213-248. [18] Hu S S, Ma S, Yan W, et al. Using two different targets for the calibration of S-NPP VIIRS day night band under lunar illumination[C]//Proc SPIE 10255, Selected Papers of the Chinese Society for Optical Engineering Conferences Held October and November 2016, 2017, 1025:727-732.DOI:10.1117/12.2263852. [19] Acton C, Bachman N, Elson L, et al. Extending NASA's spice ancillary information system to meet future mission needs[C]//SpaceOps 2002 Conference. Reston, Virginia, USA:AIAA, 2002.DOI:10.2514/6.2002-T5-31. [20] Zeng X Z, Shao X, Qiu S, et al. Stability monitoring of the VIIRS day/night band over dome C with a lunar irradiance model and BRDF correction[J]. Remote Sensing, 2018, 10(2):189.DOI:10.3390/rs10020189. [21] 张璐, 张鹏, 胡秀清, 等. 月球辐射照度模型比对及地基对月观测验证[J]. 遥感学报, 2017, 21(6):864-870.DOI:10.11834/jrs.20176342. |