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光学遥感大气校正研究进展
引用本文:亓雪勇,田庆久.光学遥感大气校正研究进展[J].国土资源遥感,2005(4):1-6.
作者姓名:亓雪勇  田庆久
作者单位:1. 南京大学国际地球系统科学研究所,南京,210093
2. 南京大学国际地球系统科学研究所,南京,210093;中国科学院中国遥感卫星地面站,北京,100086
摘    要:大气校正是光学遥感信息定量化研究中必不可少的一步,将各种大气校正方法归纳为基于图像特征的相对校正法、基于地面线性回归模型法、基于大气辐射传输模型法和复合模型法4类,详细分析了每一类方法的优缺点、适用范围或影响因素,并对大气校正的未来发展做了几点思考.

关 键 词:光学遥感  大气校正  影响因素
文章编号:1001-070X(2005)04-0001-06
收稿时间:2005-06-17
修稿时间:2005-08-26

THE ADVANCES IN THE STUDY OF ATMOSPHERIC CORRECTION FOR OPTICAL REMOTE SENSING
QI Xue-yong,TIAN Qing-jiu.THE ADVANCES IN THE STUDY OF ATMOSPHERIC CORRECTION FOR OPTICAL REMOTE SENSING[J].Remote Sensing for Land & Resources,2005(4):1-6.
Authors:QI Xue-yong  TIAN Qing-jiu
Institution:1. International Institute for Earth System Science, Nanjing University, Nanfing 210093, China; 2. The Remote Sensing Satellite Ground Station, Chinese Academy of Sciences, Beijing 100086, China
Abstract:It is indicated that atmospheric correction for optical remote sensing is absolutely necessary for quantitative remote sensing. The atmospheric correction methods can be grouped into four types, namely, relative correction based on image information, linear regression based on ground spectra, radiative transfer models and composite models. Their advantages and disadvantages as well as their adaptability or effective factors are analyzed in this paper. Some thoughts on the future development of atmospheric correction for optical remote sensing are also put forward in the end of this paper.
Keywords:Optical remote sensing  Atmospheric correction  Effective factors
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