[1]Crisp D, Atlas R M, Breon F M, Brown L R, Burrows J P, Ciais P, Connor B J, Doney S C, Fung I Y, Jacob D J, Miller C E, O'Brien D, Pawson S, Randerson J T, Rayner P, Salawitch R J, Sander S P, Sen B, Stephens G L,Tans P P, Toon G C, Wennberg P O, Wofsy S C, Yung Y L, Kuang Z, Chudasama B, Sprague G, Weiss B, Pollock R, Kenyon D and Schroll S.The Orbiting Carbon Observatory (OCO) mission[J].Advances in Space Research, 2004, 34(2004):700-709[2]Yoshida Y,Ota Y, Eguchi N,Kikuchi N,Nobuta K,Tran H, Morino I and Yokota T.Retrieval algorithm for CO2 and CH4 column abundances from short-wavelength infrared spectral observations by the Greenhouse gases observing satellite[J].Atmospheric Measurement Techniques, 2011, 4(4):717-734[3]Lu Naimeng, Min Min, Dong Lixin, Guo Jianping, Niu Tao, Liu Hongli, Bi Yanmeng, Wang Xin, Chen lin, Wu Xuebao.Development and prospect of spaceborne LiDAR for atmospheric detection[J].Journal of Remote Sensing, 2016, 20(1):1-10[4]Shi Chenglong, LiuJiqiao, Bi Decang, Li Shiguang, Liu Dan, Chen Weibiao.Errors analysis of dioxide carbon concentrations measurement by airborn lidar[J].Infrared and Laser Engineering, 2016, 45(5):1-6[5]A Amediek, A Fix, G Ehret, J Caron, and Y Durand.Airborne lidar reflectance measurements at 1[J].m in support of the A-SCOPE mission for atmospheric CO2. Atmos. Meas. Tech, 2009, 2(3):755-772[6]David M.Winker, Chris A. Hostetler, Mark A. Vaughan, Ali H. Omar.CALIOP Algorithm Theoretical Basis Document Part 1: CALIOP Instrument, and Algorithms Overview [EB/OL] |