Ambient performance testing of the CubeSat Infrared Atmospheric Sounder (CIRAS)
暂无分享,去创建一个
Thomas S. Pagano | Sir B. Rafol | David Z. Ting | Thomas U. Kampe | Daniel W. Wilson | Mark A. Schwochert | Brian Monacelli | Megan S. Gibson | Juancarlos Soto | James Howell | Yuki Maruyama | Dean L. Johnson | Robert C. Wilson | T. Pagano | M. Schwochert | D. Ting | T. Kampe | Dean Johnson | Yuki Maruyama | Sir Rafol | Juancarlos Soto | B. Monacelli | Megan Gibson | J. Howell | R. C. Wilson
[1] Clive D Rodgers,et al. Inverse Methods for Atmospheric Sounding: Theory and Practice , 2000 .
[2] Thomas S. Pagano,et al. Radiometric performance characterization of the CubeSat Infrared Atmospheric Sounder (CIRAS) High Operating Temperature-Barrier Infrared Detectors (HOT-BIRD) , 2020, Optical Engineering + Applications.
[3] Thomas S. Pagano. CubeSat infrared atmospheric sounder (CIRAS) NASA InVEST technology demonstration , 2017, Defense + Security.
[4] Sarath Gunapala,et al. Design and development of the CubeSat Infrared Atmospheric Sounder (CIRAS) , 2017, Optical Engineering + Applications.
[5] Yan Zhou,et al. Assessment of the CubeSat Infrared Atmospheric Sounder impact on global numerical weather prediction using observational system simulation experiments , 2019 .
[6] William L. Smith,et al. AIRS: Improving Weather Forecasting and Providing New Data on Greenhouse Gases. , 2006 .
[7] Sarath Gunapala,et al. CubeSat Infrared Atmospheric Sounder technology development status , 2019, Journal of Applied Remote Sensing.
[8] L. Larrabee Strow,et al. Validation of the Atmospheric Infrared Sounder radiative transfer algorithm , 2006 .
[9] David M. Rider,et al. The CubeSat Infrared Atmospheric Sounder (CIRAS), pathfinder for the Earth Observing Nanosatellite-Infrared (EON-IR) , 2016 .
[10] Jun Yu Li,et al. The alternative of CubeSat-based advanced infrared and microwave sounders for high impact weather forecasting , 2019, Atmospheric and Oceanic Science Letters.
[11] Sarath Gunapala,et al. Technology development in support of hyperspectral infrared atmospheric sounding in a CubeSat , 2018, Optical Engineering + Applications.
[12] J. Susskind,et al. Improved Methodology for Surface and Atmospheric Soundings, Error Estimates, and Quality Control Procedures: the AIRS Science Team Version-6 Retrieval Algorithm , 2014 .
[13] Thomas S. Pagano. Electronic alignment for the CubeSat Infrared Atmospheric Sounder , 2019, Optical Engineering + Applications.