[1]
[2] Mao Jianping, S Randolph Kawa. Sensitivity studies for space-based measurement of atmospheric total column carbon dioxide by reflected sunlight [J]. Applied Optics, 2004, 43(4): 914-927.
[3]
[4] Li Jun, Zeng Qingcun. Infrared remote sensing of clear atmosphere and its inversion problem [J]. Chinese Journal of Atmospheric Sciences, 1997, 21(1): 1-9. (in Chinese)
[5]
[6] Christi M J, Stephens G L. Retrieving profiles of atmospheric CO2in clear sky and in the presence of thin cloud using spectroscopy from the near and thermal infrared: a preliminary case study[J]. Journal of Geophysical Research, 2004, 109(D04316): 1-11
[7] 詹海刚,施平,陈楚群. 基于贝叶斯反演理论的海水固有光 学特性准分析算法[J]. 科学通报, 2006, 51(2): 204-210.
[8]
[9] Rodgers C D. Inverse Methods for Atmospheric Sounding: Theory and Practice [M]. Singapore: World Scientific, 2000.
[10]
[11]
[12] Rayner P J, O' Brien D M. The utility of remotely sensed CO2concentration data in surface source inversions [J]. Geophysical Research Letters, 2001, 28(1): 175-178.
[13] Eguchi N, Saito R, Saeki T, et al. A priori covariance estimation for CO2and CH4 retrievals [J]. Journal of Geophysical Research, 2010, 115(D10215): 1-16.
[14]
[15] Dufour E, F Bron M. Spaceborne estimate of atmospheric CO2column by use of the differential absorption method: error analysis [J] . Applied Optics, 2003, 42 ( 18 ) : 3953-3609
[16]
[17] Ye Hanhan, Wang Xianhua, Wu Jun, et al. Sensitivity studies for retrieval of atmospheric column carbon dioxide with high accuracy [J]. Journal of Atmospheric and Environmental Optics, 2011, 6(3): 208-214. (in Chinese)