光学学报, 2014, 34 (2): 0201002, 网络出版: 2014-01-23   

基于辐射传输优化模型的二类水体大气校正

Atmospheric Correction for Case-2 Waters Using a Radiative Transfer Optimized Model
作者单位
南京师范大学虚拟地理环境教育部重点实验室, 江苏 南京 210023
摘要
遥感影像的大气校正是水色参数反演的前提。以太湖为研究区,采用6S大气辐射传输模型以及近红外波段离水反射率模型相结合的方法。通过神经网络模拟大气辐射传输过程,并利用中分辨率成像光谱仪(MERIS)754、779、865、885 nm 4个近红外波段进行光谱优化,求算550 nm处气溶胶光学厚度等变量。通过外推,实现可见光波段的大气校正。将2007年11月11日、20日、21日,2008年11月20日MERIS Level 1p影像以及野外实测水体遥感反射率数据集用于精度验证,结果表明,该方法能够较好地反演水体遥感反射率光谱,校正后的13个波段的平均相对误差大多分布在20%~40%之间。与6S以及Beam 4.9软件自带的大气校正方法相比,具有较高的校正精度和较强的稳定性,在太湖有较好的适用性。
Abstract
Atmospheric correction of remote sensing image is the precondition of inversing water color parameters. An atmospheric correction method for lake Taihu based on 6S the radiative transfer model and the NIR water-leaving reflectance model is proposed. Two neural networks are built to model radiative transfer, and thereafter, estimate parameters such as aerosol optical thickness in 550 nm with the optimization of four near infrared bands (i.e, 754, 779, 865 and 885 nm) of medium-resolution imaging spectrometer (MERIS) data. Then, the parameters are extrapolated to visible wavelength to fetch the parameters in those visible bands. This model by MERIS Level 1p data on November 11th, 20th, 21th, 2007 and November 20th, 2008 and the in situ date-sets is validated. The result indicates that the radiative transfer optimized model has a high precision in inversing the water remote sensing reflectance with an average relative error from 20% to 40% in the 13 bands. Comparing with the atmospheric correction methods of 6S and Beam 4.9, it has the highest correction precision and strongest stability, and is applicable in lake Taihu.
参考文献

[1] A Morel, L Prieur. Analysis of variations in ocean color [J]. Limnology and Oceanography, 1977, 22(4): 709-722.

[2] H R Gordon, M H Wang. Surface-roughness considerations for atmospheric correction of ocean color sensorsⅠ: the Rayleigh-scattering component [J]. Appl Opt, 1992, 31(21): 4247-4260.

[3] M H Wang, W Shi. The NIR-SWIR combined atmospheric correction approach for MODIS ocean color data processing [J]. Opt Express, 2007, 15(24): 15722-15733.

[4] C M Hu, L C Kendall, E Frank, et al.. Atmospheric correction of seaWiFS imagery over turbid coastal waters: a practical method [J]. Remote Sensing of Environment, 2000, 74(2): 195-206.

[5] R Doerffer, H Schiller. Determination of case 2 water constituents using radiative transfer simulation and its inversion by neural network. In: ackles on SGed [C]. Proceedings of Ocean Optics XIV Conference, 1998. 10-13.

[6] J Brajard, R Santer, M Crepon, et al.. Atmospheric correction of MERIS data for case-2 waters using a neuro-variational inversion [J]. Remote Sensing of Environment, 2012, 126: 51-61.

[7] 施坤, 李云梅, 王桥, 等. 内陆湖泊富营养化水体散射系数模型研究[J]. 光学学报, 2010, 30(9): 2478-2485.

    Shi Kun, Li Yunmei, Wang Qiao, et al.. Study of scattering coefficients model in inland eutrophic lake [J]. Acta Optica Sinica, 2010, 30(9): 2478-2485.

[8] B Q Qin, P Z Xu, Q L Wu. Environmental issues of lake Taihu, China [J]. Hydrobiologia, 2007, 581(1): 3-14.

[9] 孙德勇, 李云梅, 王桥, 等. 内陆湖泊水体固有光学特性的典型季节差异[J]. 应用生态学报, 2008, 19(5): 1117-1124.

    Sun Deyong, Li Yunmei, Wang Qiao, et al.. Differences of inherent optical properties of inland lake water body in typical seasons [J]. Chinese J Applied Ecology, 2008, 19(5): 1117-1124.

[10] 唐军武, 田国良, 汪小勇, 等. 水体光谱测量与分析Ⅰ: 水面以上测量法[J]. 遥感学报, 2004, 8(1): 37-44.

    Tang Junwu, Tian Guoliang, Wang Xiaoyong, et al.. The methods of water spectra measurement and analysisⅠ: above-water method [J]. J Remote Sensing, 2004, 8(1): 37-44.

[11] 李云梅, 黄家柱, 韦玉春, 等. 用分析模型方法反演水体叶绿素的浓度[J]. 遥感学报, 2006, 10(2): 169-175.

    Li Yunmei, Huang Jiazhu, Wei Yuchun, et al.. Inversing chlorophyll concentration of Taihu lake by analytic model [J]. J Remote Sensing, 2006, 10(2): 169-175.

[12] 马荣华, 唐军武. 湖泊水色遥感参数获取与算法分析[J]. 水科学进展, 2006, 17(5): 720-726.

    Ma Ronghua, Tang Junwu. Remote sensing parameters acquisition and algorithm analysis of lake color [J]. Advances Inwater Science, 2006, 17(5): 720-726.

[13] C Le, Y Li, Y Zha, et al.. A four-band semi-analytical model for estimating chlorophyll a in highly turbid lakes: the case of Taihu lake, China [J]. Remote Sensing of Environment, 2009,113(6): 1175-1182.

[14] 李云梅, 黄家柱, 陆皖宁, 等. 基于分析模型的太湖悬浮物浓度遥感监测[J]. 海洋与湖沼, 2006, 37(2): 171-177.

    Li Yunmei, Huang Jiazhu, Lu Wanning, et al.. Model based remote sensing on the concentration of suspended sediments in taihu lake [J]. Oceanologia et Limnologia Sinica, 2006, 37(2): 171-177.

[15] H R Gordon, M H Wang. Retrieval of water-leaving radiance and aerosol optical thickness over the oceans with SeaWiFS: a preliminary algorithm [J]. Appl Opt, 1994, 33(3): 443-452.

[16] C M Hu, F E Muller-Karger, S Andrefouet, et al.. Atmospheric correction and cross-calibration of LANDSAT-7/ETM+ imagery over aquatic environments: a multiplatform approach using SeaWiFS/MODIS [J]. Remote Sensing of Environment, 2001, 78(1): 99-107.

[17] K G Ruddick, V De Cauwer, Y J Park, et al.. Seaborne measurements of near infrared water-leaving reflectance: the similarity spectrum for turbid waters [J]. Limnology and Oceanography, 2006, 51(2): 1167-1179.

[18] Ocean Color Algorithm Working Group. Models, Parameters, and Approaches that are Used to Generate Wide Range of Absorption and Backscattering Spectra [OL]. http://www.ioccg.org/groups/lee-data.pdf.[2013-12-18].

[19] E F Vermote,D Tanré, J L Deuze, et al.. Second simulation of the satellite signal in the solar spectrum, 6S: an overview [J]. IEEE Transactions on Geoscience and Remote Sensing, 1997, 35(3): 675-686.

[20] 王钊. 6S辐射模型算法解析及在MODIS大气校正中的应用[J]. 陕西气象, 2006, (5): 34-37.

    Wang Zhao. The analysis of 6S radiance transfer model and the application of 6S in atmospheric correction of MODIS data [J]. Shaanxi Meteorology, 2006, (5): 34-37.

[21] 王珉, 胡敏. 陆地与海洋气溶胶的相互输送及其对彼此环境的影响[J]. 海洋环境科学, 2000, 19(2): 69-73.

    Wang Min, Hu Min. Mutual transport between marine and continental aerosols and their impact on each other′s environmental system[J]. Marine Environmental Science, 2000, 19(2): 69-73.

[22] 徐记亮, 张镭, 吕达人. 太湖地区大气气溶胶光学及微物理特征分析[J]. 高原气象, 2011, 30(6): 1668-1675.

    Xu Jiliang, Zhang Lei, Lü Daren. Analyses on aerosol optical and microphysical properties over Taihu lake region [J]. Plateau Meteorology, 2011, 30(6): 1668-1675.

[23] 潘一新, 胡方超, 汪柳红, 等. 太湖地区气溶胶光学厚度的分布及其在大气校正中的应用[J]. 大气科学学报, 2013, 36(3): 361-366.

    Pan Yixin, Hu Fangchao, Wang Liuhong, et al.. Distribution of aerosol optical depth in Taihu lake and its application of atmospheric correction [J]. Transactions of Atmoshperic Sciences, 2013, 36(3): 361-366.

[24] 吕恒, 江南, 罗潋葱. 基于TM数据的太湖叶绿素A浓度定量反演[J]. 地理科学, 2006, 26(4): 472-476.

    Lü Heng, Jiang Nan, Luo Liancong. Quantitative retrieval of chlorophyll-a by remote sensing in Taihu lake based on TM data [J]. Scientia Geographica Sinica, 2006, 26(4): 472-476.

[25] 李云亮, 张运林. 基于TM影像的太湖夏季悬浮物和叶绿素a浓度反演[J]. 遥感信息, 2008, 6(2): 21-27.

    Li Yunliang, Zhang Yunlin. Quantitative estimation of total suspended matter and chlorophyll-a concentration of Taihu lake in summer using TM data [J]. Remote Sensing Information, 2008, 6(2): 21-27.

[26] M Sydor, B D Wolz, A M Thralow, et al.. Spectral analysis of bulk reflectance from coastal waters: deconvolution of diffuse spectra due to scattering and absorption by coastal water [J]. J Coastal Research, 2002, 18(2): 352-361.

[27] R Doerffer, H Schiller. MERIS Regional Coastal and Lake Case 2 Water Project Atmospheric Correction ATBD [OL]. http://www.brockmann-consult.de/beam-wiki/download/attachments/1900548/meris_c2r_atbd_20080609_2.pdf.[2013-12-18].

[28] R Doerffer, H Sehiller. Algorithm Theoretical Basis Document (ATBD) MERIS Lake Water Algorithm for BEAM [OL]. http://www.brockmann-consult.de/beam-wiki/download/attachments/1900548/ATBD_lake_water_RD 20080610.pdf.[2013-12-18].

[29] 周立国, 马蔚纯, 顾万花, 等. 基于清洁水体像元法的环境-1A卫星CCD水体图像大气校正[J]. 光谱学与光谱分析, 2011, 31(8): 2238-2242.

    Zhou Liguo, Ma Weichun, Gu Wanhua, et al.. Atmospheric correction of HJ-1 CCD data for water imagery based on dark object model [J]. Spectroscopy ans Spectral Analysis, 2011, 31(8): 2238-2242.

周莉, 李云梅, 郭宇龙, 吕恒, 李渊, 王珊珊, 王永波. 基于辐射传输优化模型的二类水体大气校正[J]. 光学学报, 2014, 34(2): 0201002. Zhou Li, Li Yunmei, Guo Yulong, Lü Heng, Li Yuan, Wang Shanshan, Wang Yongbo. Atmospheric Correction for Case-2 Waters Using a Radiative Transfer Optimized Model[J]. Acta Optica Sinica, 2014, 34(2): 0201002.

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