Advancing Atmospheric Thermodynamic Sounding From Space Using Hyperspectral Microwave Measurements

被引:6
作者
Gambacorta, Antonia [1 ]
Piepmeier, Jeffrey [1 ]
Stephen, Mark [1 ]
Santanello, Joseph [1 ]
Blaisdell, John [1 ,2 ]
Moradi, Isaac [1 ,3 ]
Mccarty, William [4 ]
Rosenberg, Robert [1 ,2 ]
Kotsakis, Alexander [1 ,8 ]
Gambini, Fabrizio [5 ,6 ]
Mohammed, Priscilla [7 ]
Kroodsma, Rachael [1 ,3 ]
Mackinnon, James [1 ]
Adams, Ian [1 ]
Racette, Paul [1 ]
机构
[1] NASA, Goddard Space Flight Ctr, Greenbelt, MD 20771 USA
[2] Sci Applicat Int Corp, Reston, VA 12010 USA
[3] Univ Maryland, Earth Syst Sci Interdisciplinary Ctr, College Pk, MD 12010 USA
[4] NASA Headquarter, Washington, DC 39529 USA
[5] Univ Maryland Baltimore Cty, Ctr Space Sci & Technol, Baltimore, MD 20742 USA
[6] NASA, Ctr Res & Explorat Space Sci & Technol, Goddard Space Flight Ctr, Greenbelt, MD 20771 USA
[7] Morgan State Univ, Goddard Space Flight Ctr, NASA, Greenbelt, MD 20771 USA
[8] ERT Inc, Laurel, MD 20771 USA
关键词
Hyperspectral; microwave; observations simulations sensitivity experiments; PICASIC; photonic integrated circuits; planetary boundary layer (PBL); satellite remote sensing; RADIOFREQUENCY INTERFERENCE; TEMPERATURE; MITIGATION; RETRIEVAL; MOISTURE;
D O I
10.1109/JSTARS.2023.3269697
中图分类号
TM [电工技术]; TN [电子技术、通信技术];
学科分类号
0808 ; 0809 ;
摘要
In this article, we present a comprehensive sensitivity analysis and geophysical retrieval product demonstration to assess the enhanced information content in atmospheric temperature and water vapor, harnessed in hyperspectral microwave measurements. A particular focus of this study is devoted to quantifying and comparing the impact on retrieval performance resulting from novel spectral bands of the microwave thermal spectrum, by means of data addition and data denial trade studies. Various spectral configurations are assessed, each reflecting specific technology solutions intended to maximize geophysical product performance within feasible size, weight, power, and cost constraints. Our results indicate that the use of a hyperspectral sampling in the oxygen and water vapor sounding lines alone provides significant improvements in the lower and free tropospheric thermodynamic fields (up to similar to 40%), when compared against the program of record (i.e., the Advanced Technology Microwave Sounder, ATMS). Our experiments also demonstrate the essential role played by extending the coverage in the window regions, leading to an overall improvement of up to similar to 50% in the Earth's planetary boundary layer thermodynamic fields. This work concludes with an overview on the state of the art in hyperspectral microwave technology and a discussion on future applications of interest to numerical weather prediction and climate science. The work presented in this study focuses on ocean, clear-sky demonstrations. All-sky, all-surface investigations will be the focus of a follow-up study, as we advance our capability to simulate more complex scenarios and improve scene variability.
引用
收藏
页码:5204 / 5218
页数:15
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