Remote Sensing Technology and Application, Volume. 39, Issue 4, 850(2024)
Hyperspectral Infrared Atmospheric Vertical Sounder-II Atmospheric Product Inversion System Design
[1] ZHANG Xingying, Zhou MinQiang, Wang Weihe et al. Progress and outlook of remote sensing application of atmospheric composition detection by global satellites. Science and Technology Review, 33, 13-22(2015).
[2] NEWMAN P A, GLEASON J F, MCPETERS R D et al. Nomalously low ozone over the Arctic. Geophysical Research Letters, 24, 2689-2692(1995).
[3] JIANG Cheng, TAO Dongxing, HE Hongyan. Digital modelling and simulation of infrared very high spectral resolution sounder for atmospheric environment. Spacecraft Recovery & Remote Sensing, 39, 94-103(2018).
[4] CHENG Jie, LIU Qinhuo, LI Xiaowen. Review of atmospheric trace gas inversion by satellite-borne hyperspectral infrared sensors. Remote Sensing Information, 90-97(2007).
[5] LUO Qi, LI Xiaoying, CHENG Tianhai et al. Design and implementation of atmospheric retrieval system for AIUS. Space Return and Remote Sensing, 40, 67-76(2019).
[6] CARLOTTI M. Global-fit approach to the analysis of limb-scanning atmospheric measurements. Applied Optics, 27, 3250-3254(1988).
[7] SUZUKI M, MATSUZAKI A, ISHIGAKI T et al. ILAS, the Improved Limb Atmospheric Spectrometer, on the Advanced Earth Observing Satellite. IEICE Transactions on Communications, 78, 1560-1570(1995).
[8] IRION F W, GUNSON M R, TOON G C et al. Atmospheric Trace Molecule Spectroscopy (ATMOS) experiment version 3 data retrievals. Applied Optics, 41, 6968-6979(2002).
[9] LI X Y, XU J, CHENG T H et al. Monitoring trace gases over the antarctic using atmosphere infrared ultraspectral sounder onboard GaoFen-5:Algorithm description and first retrieval results of O3, H2O, and HCl. Remote Sensing, 11, 1991(2019).
[10] DUDHIA A. The Reference Forward Model (RFM). Journal of Quantitative Spectroscopy and Radiative Transfer, 186, 243-253(2017).
[11] ZADVORNYKH I V, GRIBANOV K G, ZAKHAROV V I et al. The joint methane profiles retrieval approach from GOSAT TIR and SWIR spectra[M]. Proc.SPIE, 2017(10466).
[12] SNELL H E, MONCET J L, LYNCH R et al. Atmospheric temperature, moisture and trace gas retrieval algorithm for the NPOESS/NPP Cross-track Infrared Microwave Sounder Suite (CrIMSS). The International Society for Optical Engineering, 375-383(2004).
[13] LEVENBERG K. A method for the solution of certain problems in least squares. Quarterly of Applied Mathematics, 164-168(1944).
[14] MARQUARD D W. An algorithm for least-squares estimation of nonlinear parameters. Society for Industrial and Applied Mathematics, 11, 431-441(1963).
[15] GUO Y H, LI X Y, CHENG T H et al. Construction of the Global Reference Atmospheric Profile Database. Remote Sensing, 15, 3006(2023).
[16] WUNCH D, WENNBERG P O, OSTERMAN G et al. Comparisons of the Orbiting Carbon Observatory-2 (OCO-2) XCO2 measurements with TCCON. Atmospheric Measurement Techniques, 10, 1-45(2017).
[17] WANG W, TIAN Y, LIU C et al. Investigating the performance of a greenhouse gas observatory in Hefei,China. Atmo-spheric Measurement Techniques, 10, 2627-2643(2017).
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Yuhang GUO, Xiaoying LI, Tianhai CHENG, Shenshen LI, Xinyuan ZHANG, Wenjing LU, Weifang FANG. Hyperspectral Infrared Atmospheric Vertical Sounder-II Atmospheric Product Inversion System Design[J]. Remote Sensing Technology and Application, 2024, 39(4): 850
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Received: Sep. 18, 2023
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Published Online: Jan. 6, 2025
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