Evaluation of PRISMA Products Over Snow in the Alps and Antarctica

被引:2
作者
Di Mauro, B. [1 ]
Cogliati, S. [2 ]
Bohn, N. [3 ]
Traversa, G. [1 ]
Garzonio, R. [2 ]
Tagliabue, G. [2 ]
Bramati, G. [2 ,4 ]
Cremonese, E. [5 ]
Julitta, T. [6 ]
Guanter, L. [7 ]
Kokhanovsky, A. [8 ]
Giardino, C. [9 ]
Panigada, C. [2 ]
Rossini, M. [2 ]
Colombo, R. [2 ]
机构
[1] Natl Res Council Italy, Inst Polar Sci, Milan, Italy
[2] Univ Milano Bicocca, Dept Earth & Environm Sci, Milan, Italy
[3] CALTECH, Jet Prop Lab, Pasadena, CA USA
[4] Univ Zurich, Remote Sensing Labs, Zurich, Switzerland
[5] CIMA Res Fdn, Savona, Italy
[6] JB Hyperspectral Devices, Dusseldorf, Germany
[7] Univ Politecn Valencia UPV, Res Inst Water & Environm Engn IIAMA, Valencia, Spain
[8] GFZ German Res Ctr Geosci, Potsdam, Germany
[9] CNR, Inst Electromagnet Sensing Environm, Milan, Italy
基金
美国国家航空航天局;
关键词
snow; remote sensing; hyperspectral imaging; cal/val; spectroscopy; PRISMA; GRAIN-SIZE; IN-SITU; REFLECTANCE; SPECTROSCOPY; ALBEDO; DUST; SPECTROMETER; IMPURITIES; RETRIEVAL; MODELS;
D O I
10.1029/2023EA003482
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
PRISMA is a hyperspectral satellite mission launched by the Italian Space Agency (ASI) in April 2019. The mission is designed to collect data at global scale for a variety of applications, including those related to the cryosphere. This study presents an evaluation of PRISMA Level 1 (L1) and Level 2 (L2D) products for different snow conditions. To the aim, PRISMA data were collected at three sites: two in the Western European Alps (Torgnon and Plateau Rosa) and one in East Antarctica (Nansen Ice Shelf). PRISMA data were acquired contemporary to both field measurements and Sentinel-2 data. Simulated Top of the Atmosphere (TOA) radiance data were then compared to L1 PRISMA and Sentinel-2 TOA radiance. Bottom Of Atmosphere (BOA) reflectance from PRISMA L2D and Sentinel-2 L2A data were then evaluated by direct comparison with field data. Both TOA radiance and BOA reflectance PRISMA products were generally in good agreement with field data, showing a Mean Absolute Difference (MAD) lower than 5%. L1 PRISMA TOA radiance products resulted in higher MAD for the site of Torgnon, which features the highest topographic complexity within the investigated areas. In Plateau Rosa we obtained the best comparison between PRISMA L2D reflectance data and in situ measurements, with MAD values lower than 5% for the 400-900 nm range. The Nansen Ice Shelf instead resulted in MAD values <10% between PRISMA L2D and field data, while Sentinel-2 BOA reflectance showed higher values than other data sources. Plain Language Summary Satellite imaging spectroscopy data provide valuable information on Earth surface processes. In this study we evaluated data acquired from the PRISMA satellite mission in the Alps and Antarctica. Those studies are important to validate satellite observations with contemporary field measurements since they open the possibility of quantitatively use PRISMA data for cryosphere monitoring.
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页数:14
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  • [2] Berk A., 2011, MODTRAN 5.2.1 Users Manual, V5th
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  • [5] Geochemical characterization of supraglacial debris via in situ and optical remote sensing methods: a case study in Khumbu Himalaya, Nepal
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    Kaab, A.
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  • [6] Estimation of Supraglacial Dust and Debris Geochemical Composition via Satellite Reflectance and Emissivity
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  • [7] The PRISMA imaging spectroscopy mission: overview and first performance analysis
    Cogliati, S.
    Sarti, F.
    Chiarantini, L.
    Cosi, M.
    Lorusso, R.
    Lopinto, E.
    Miglietta, F.
    Genesio, L.
    Guanter, L.
    Damm, A.
    Perez-Lopez, S.
    Scheffler, D.
    Tagliabue, G.
    Panigada, C.
    Rascher, U.
    Dowling, T. P. F.
    Giardino, C.
    Colombo, R.
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    Cogliati, S.
    Rossini, M.
    Julitta, T.
    Meroni, M.
    Schickling, A.
    Burkart, A.
    Pinto, F.
    Rascher, U.
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    [J]. REMOTE SENSING OF ENVIRONMENT, 2015, 164 : 270 - 281
  • [9] Introducing Thermal Inertia for Monitoring Snowmelt Processes With Remote Sensing
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    Dumont, M.
    Tuzet, F.
    Cogliati, S.
    Pozzi, G.
    Maltese, A.
    Cremonese, E.
    [J]. GEOPHYSICAL RESEARCH LETTERS, 2019, 46 (08) : 4308 - 4319
  • [10] Mineral dust impact on snow radiative properties in the European Alps combining ground, UAV, and satellite observations
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    Fava, F.
    Ferrero, L.
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