期刊文献+

VICARIOUS RADIOMETRIC CALIBRATION OF SATELLITE FY-ID SENSORS AT VISIBLE AND NEAR INFRARED CHANNELS 被引量:3

VICARIOUS RADIOMETRIC CALIBRATION OF SATELLITE FY-ID SENSORS AT VISIBLE AND NEAR INFRARED CHANNELS
原文传递
导出
摘要 For the problem of in-flight test site radiometric calibration for the FY-1D Meteorological Satellite onboard sensor's visible and near infrared channels,this paper described the calibration method,satellite-ground synchronous observation data acquired at China Dunhuang Calibration Test Site,parameter derivation and radiative transfer computation during the calibration,and the calibration result analysis.At FY-1D seven channels (with central wavelength at Channels 1:630 nm,2:865 nm;6:1610 nm;7:455 nm,8:505 nm;9:555 nm;10:932 nm),calibration coefficients obtained during the ground site calibration were compared with that respectively of pre- launch calibration.It is demonstrated that results of FY-1D onboard two sensors' (A and B) at channels 1,2,6 and 10 were close to pre-calibration,and the absolute difference of Gobi desert reflectance computed using test site and pre-launch calibration coefficients was no more than 2%. At other channels,large pre-launch calibration errors resulted in a poor consistency between the test site and pre-launch calibration.The errors can be corrected by the test site calibration results. Based on a rough estimation,the overall error of the calibration was about 6%. The paper also presented the in-flight vicarious calibration at the visible and near infrared channels of FY-1C sensor A which was launched in 1999 and has been put into operational mode since 2002.The results exhibit that FY-1C sensor's response has 23% attenuation at Channels 7 and 8,while only minor degradation at the other channels was found. During the mission,calibrations were also conducted at NOAA-17's Channels 1 and 2 (1:430 -830 nm,2:500--1072 nm).A very good consistency has been achieved between the test site and pre-launched calibration results. For the problem of in-flight test site radiometric calibration for the FY-1D Meteorological Satellite onboard sensor's visible and near infrared channels,this paper described the calibration method,satellite-ground synchronous observation data acquired at China Dunhuang Calibration Test Site,parameter derivation and radiative transfer computation during the calibration,and the calibration result analysis.At FY-1D seven channels (with central wavelength at Channels 1:630 nm,2:865 nm;6:1610 nm;7:455 nm,8:505 nm;9:555 nm;10:932 nm),calibration coefficients obtained during the ground site calibration were compared with that respectively of pre- launch calibration.It is demonstrated that results of FY-1D onboard two sensors' (A and B) at channels 1,2,6 and 10 were close to pre-calibration,and the absolute difference of Gobi desert reflectance computed using test site and pre-launch calibration coefficients was no more than 2%. At other channels,large pre-launch calibration errors resulted in a poor consistency between the test site and pre-launch calibration.The errors can be corrected by the test site calibration results. Based on a rough estimation,the overall error of the calibration was about 6%. The paper also presented the in-flight vicarious calibration at the visible and near infrared channels of FY-1C sensor A which was launched in 1999 and has been put into operational mode since 2002.The results exhibit that FY-1C sensor's response has 23% attenuation at Channels 7 and 8,while only minor degradation at the other channels was found. During the mission,calibrations were also conducted at NOAA-17's Channels 1 and 2 (1:430 -830 nm,2:500--1072 nm).A very good consistency has been achieved between the test site and pre-launched calibration results.
出处 《Acta meteorologica Sinica》 SCIE 2004年第4期505-516,共12页
关键词 radiometric calibration reflectance-based method apparent reflectance calibration coefficient radiometric calibration reflectance-based method apparent reflectance calibration coefficient
  • 相关文献

参考文献8

  • 1张玉香,张广顺,刘志权,张立军,朱顺斌,戎志国,邱康睦.SPECTRAL REFLECTANCE MEASUREMENTS AT THE CHINA RADIOMETRIC CALIBRATION TEST SITE FOR THE REMOTE SENSING SATELLITE SENSOR[J].Acta meteorologica Sinica,2001,15(3):377-382. 被引量:3
  • 2Biggar S F,Gellman D I,Slater P N.Improved Evaluation of Optical Depth Components from Langley Plot Data. Remote Sensing of Environment . 1990
  • 3Slater P N,Biggar S F,Holm R G,et al.Reflectance-and radiance-based methods for the in-flight absolute calibration of multispectral sensors. Remote Sensing of Environment . 1987
  • 4S. F. Biggar,P. N. Slater,G. I. Gellman.Uncertainties in the in-flight calibration of sensors with reference to measured ground sites in the 0.4 to 1.1 μm range. Remote Sensing of Environment . 1994
  • 5Robert J. Frouin and James J. Simpson.Radiometric calibration of GOES-7 VISSR solar channels during the GOES pathfinder benchmark period. Remote Sensing of Environment . 1995
  • 6Santer R,Gu X F,Guyot G,et al.SPOT Calibra-tion at the La Crau Test Site. Remote Sensing ofEnvironment . 1992
  • 7TANRE.D.,DEROO.C,DUHAUT,P,HERMAN,M,MORCRETE,J,PERBOS,J,and DESCHAMPS,p y.Description of a computer code to simulate the satel- lite signal in the solar spectrum:the 5S code. International Journal of Remote Sensing . 1990
  • 8VOGELMANN,J E,MOSS,D M.Spectral reflectance measurement in the genus Sph- agnum. Remote Sensing of Environment . 1993

共引文献2

同被引文献16

  • 1赵崴,唐军武,高飞,林明森.黄海、东海上空春季气溶胶光学特性观测分析[J].海洋学报,2005,27(2):46-53. 被引量:24
  • 2Xiaoxiong XIONG,William BARNES.An Overview of MODIS Radiometric Calibration and Characterization[J].Advances in Atmospheric Sciences,2006,23(1):69-79. 被引量:29
  • 3STOWE L L,IGNATOV A M,SINGH R R.Development,validation,and potential enhancements to the second-generation operational aerosol product at the National Environmental Satellite,Data,and Information Service of the National Oceanic and Atmospheric Administration[J].J Geophys Res,1997,102:16 923-16 934.
  • 4HUSAR R B,PROSPERO J M,STOWE L L.Characterization of tropospheric aerosols over the oceans with the NOAA advanced very high resolution radiometer optical thickness operational product[J].J Geophys Res,1997,102:16 889-16 909.
  • 5HIGURASHI A,NAKAJIMA T.Development of a two channel aerosol retrieval algorithm on global scale using NOAA AVHRR[J].J Atmos Sci,1999,56:924-941.
  • 6VERMOTE E,TANR D,DEUZ J L,et al.6s User Guide Version 2[M],July 1997.
  • 7GORDON H R,WANG M.Retrieval of water-leaving radiance and aerosol optical thickness over the oceans with SeaWiFS:a preliminary algorithm[J].Appl Opt,1994,33:443-452.
  • 8KAUFMAN Y J,TANRE D,GORDON H R,et al.Passive remote sensing of tropospheric aerosol and atmospheric correction for the aerosol effect[J].J Geophys Res,1997,202:16 815-16 830.
  • 9KING M D,KAUFMAN Y J,TANR D,et al.Remote sensing of tropospheric aerosols from space:past,present,and future[J].Bulletin of the American Meteorological Society,1999,80(11):2 229-2 259.
  • 10MARTINS V J,TANRE D,REMER L,et al.MODIS cloud screening for remote sensing of aerosols over oceans using spatial variability[J].J Geophys Res,2002,29(12):MOD 4-1-4-4.

引证文献3

二级引证文献23

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部