Assessment of five SMAP soil moisture products using ISMN ground-based measurements over varied environmental conditions

被引:18
作者
Yi, Chuanxiang [1 ]
Li, Xiaojun [2 ]
Zeng, Jiangyuan [3 ]
Fan, Lei [4 ]
Xie, Zhiqing [5 ]
Gao, Lun [6 ]
Xing, Zanpin [7 ]
Ma, Hongliang [8 ]
Boudah, Antoine [2 ]
Zhou, Hongwei [1 ]
Zhou, Wenjun [1 ]
Sheng, Ye [1 ]
Dong, Tianxiang [9 ]
Wigneron, Jean-Pierre [2 ]
机构
[1] Yancheng Meteorol Bur, Yancheng 224005, Peoples R China
[2] Univ Bordeaux, INRAE, ISPA, UMR1391, F-33140 Villenave Dornon, France
[3] Chinese Acad Sci, Aerosp Informat Res Inst, State Key Lab Remote Sensing Sci, Beijing 100101, Peoples R China
[4] Southwest Univ, Sch Geog Sci, Chongqing Jinfo Mt Karst Ecosyst Natl Observat & R, Chongqing 400715, Peoples R China
[5] Jiangsu Climate Ctr, Nanjing 210008, Peoples R China
[6] Univ Illinois, Inst Sustainabil Energy & Environm, Agroecosystem Sustainabil Ctr, Urbana, IL 61801 USA
[7] Chinese Acad Sci, Northwest Inst Ecoenvironm & Resource, State Key Lab Cryospher Sci, Cryosphere Res Stn Qinghai Tibet Plateau, Lanzhou 730000, Gansu, Peoples R China
[8] Avignon Univ, INRAE, UMR 1114, UMT CAPTE,EMMAH, F-84000 Avignon, France
[9] Jiangsu Acad Agr Sci, Inst Agr Resources & Environm, Nanjing 210014, Peoples R China
基金
中国国家自然科学基金;
关键词
SMAP soil moisture; Assessment; DCA; SCA-V/H; MT-DCA; SMAP-IB; EFFECTIVE SCATTERING ALBEDO; VEGETATION OPTICAL DEPTH; L-BAND; MICROWAVE EMISSION; SURFACE-ROUGHNESS; 1.4; GHZ; AMSR-E; SMOS; VALIDATION; RETRIEVAL;
D O I
10.1016/j.jhydrol.2023.129325
中图分类号
TU [建筑科学];
学科分类号
0813 ;
摘要
Since the launch of Soil Moisture Active Passive (SMAP) mission in 2015, several advanced global surface soil moisture (SM) products derived from different retrieval schemes have been released. However, the factors contributing to the performance differences of these SMAP products have not been fully investigated. This study tries to fill the gap by assessing and intercomparing five SMAP products, namely, the single channel algorithm V/ H-pol (SCA-V/H), dual channel algorithm (DCA), multi-temporal dual channel algorithm (MT-DCA) and the new SMAP-INRAE-BORDEAUX (SMAP-IB), using the International Soil Moisture Network (ISMN) ground measure-ments worldwide during 2016-2020. After reviewing the retrieval algorithms, the impact of five potential perturbing factors on the skills of all products is reported; these factors including mean surface soil temperature (MSST), surface roughness (log(SR)), vegetation density (characterized by vegetation optical depth (VOD)), mean surface soil wetness (MSSM) and soil organic matter (SOM). Results shows that the SMAP-IB product has the highest overall R value of 0.75 with ISMN ground SM, and the smallest unbiased root mean square difference (ubRMSD) values same as SCA-V and DCA (similar to 0.058 m(3)/m(3)). The performance of all five products in terms of R and ubRMSD rapidly degrades over the regions with high VOD, rough surface and low MSST. In contradiction with the fact that product performance degrades with increasing roughness, the ubRMSD of all five products increases with decreasing log(SR) on a relatively smooth surface (log(SR) < 6) with larger growth rates for SMAP-IB, SCA-H and MT-DCA. Regarding characterizing the temporal variations of in situ SM anomalies ((Ranom)), Ranom increases as the ground becomes wet for all products within a certain range (MSSM < 0.3 m(3)/m(3)). In particular, SMAP-IB and MT-DCA present higher Ranom values than the other three products under wet soil surfaces (MSSM > 0.3 m(3)/m(3)). The two metrics R and Ranom decrease significantly with increasing SOM for SMAP- IB compared to the other products, and SMAP-IB obtains the lowest values for both metrics when SOM > 20%. These findings are expected to provide useful information for appropriate product selection and improvement.
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页数:14
相关论文
共 76 条
[1]   Assessment and inter-comparison of recently developed/reprocessed microwave satellite soil moisture products using ISMN ground-based measurements [J].
Al-Yaari, A. ;
Wigneron, J. -P. ;
Dorigo, W. ;
Colliander, A. ;
Pellarin, T. ;
Hahn, S. ;
Mialon, A. ;
Richaume, P. ;
Fernandez-Moran, R. ;
Fan, L. ;
Kerr, Y. H. ;
De Lannoy, G. .
REMOTE SENSING OF ENVIRONMENT, 2019, 224 :289-303
[2]   Global-scale evaluation of two satellite-based passive microwave soil moisture datasets (SMOS and AMSR-E) with respect to Land Data Assimilation System estimates [J].
Al-Yaari, A. ;
Wigneron, J. -P. ;
Ducharne, A. ;
Kerr, Y. ;
de Rosnay, P. ;
de Jeu, R. ;
Govind, A. ;
Al Bitar, A. ;
Albergel, C. ;
Munoz-Sabater, J. ;
Richaume, P. ;
Mialon, A. .
REMOTE SENSING OF ENVIRONMENT, 2014, 149 :181-195
[3]   The impacts of assimilating satellite soil moisture into a rainfall-runoff model in a semi-arid catchment [J].
Alvarez-Garreton, C. ;
Ryu, D. ;
Western, A. W. ;
Crow, W. T. ;
Robertson, D. E. .
JOURNAL OF HYDROLOGY, 2014, 519 :2763-2774
[4]   Validation of SMAP Soil Moisture at Terrestrial National Ecological Observatory Network (NEON) Sites Show Potential for Soil Moisture Retrieval in Forested Areas [J].
Ayres, Edward ;
Colliander, Andreas ;
Cosh, Michael H. ;
Roberti, Joshua A. ;
Simkin, Sam ;
Genazzio, Melissa A. .
IEEE JOURNAL OF SELECTED TOPICS IN APPLIED EARTH OBSERVATIONS AND REMOTE SENSING, 2021, 14 :10903-10918
[5]   Evaluation of Two SMAP Soil Moisture Retrievals Using Modeled- and Ground-Based Measurements [J].
Bai, Li ;
Lv, Xin ;
Li, Xiaojun .
REMOTE SENSING, 2019, 11 (24)
[6]   Soil moisture estimation through ASCAT and AMSR-E sensors: An intercomparison and validation study across Europe [J].
Brocca, L. ;
Hasenauer, S. ;
Lacava, T. ;
Melone, F. ;
Moramarco, T. ;
Wagner, W. ;
Dorigo, W. ;
Matgen, P. ;
Martinez-Fernandez, J. ;
Llorens, P. ;
Latron, J. ;
Martin, C. ;
Bittelli, M. .
REMOTE SENSING OF ENVIRONMENT, 2011, 115 (12) :3390-3408
[7]   An empirical standardized soil moisture index for agricultural drought assessment from remotely sensed data [J].
Carrao, Hugo ;
Russo, Simone ;
Sepulcre-Canto, Guadalupe ;
Barbosa, Paulo .
INTERNATIONAL JOURNAL OF APPLIED EARTH OBSERVATION AND GEOINFORMATION, 2016, 48 :74-84
[8]   Development and assessment of the SMAP enhanced passive soil moisture product [J].
Chan, S. K. ;
Bindlish, R. ;
O'Neill, P. ;
Jackson, T. ;
Njoku, E. ;
Dunbar, S. ;
Chaubell, J. ;
Piepmeier, J. ;
Yueh, S. ;
Entekhabi, D. ;
Colliander, A. ;
Chen, F. ;
Cosh, M. H. ;
Caldwell, T. ;
Walker, J. ;
Berg, A. ;
McNairn, H. ;
Thibeault, M. ;
Martinez-Fernandez, J. ;
Uldall, F. ;
Seyfried, M. ;
Bosch, D. ;
Starks, P. ;
Collins, C. Holifield ;
Prueger, J. ;
van der Velde, R. ;
Asanuma, J. ;
Palecki, M. ;
Small, E. E. ;
Zreda, M. ;
Calvet, J. ;
Crow, W. T. ;
Kerr, Y. .
REMOTE SENSING OF ENVIRONMENT, 2018, 204 :931-941
[9]   Assessment of the SMAP Passive Soil Moisture Product [J].
Chan, Steven K. ;
Bindlish, Rajat ;
O'Neill, Peggy E. ;
Njoku, Eni ;
Jackson, Tom ;
Colliander, Andreas ;
Chen, Fan ;
Burgin, Mariko ;
Dunbar, Scott ;
Piepmeier, Jeffrey ;
Yueh, Simon ;
Entekhabi, Dara ;
Cosh, Michael H. ;
Caldwell, Todd ;
Walker, Jeffrey ;
Wu, Xiaoling ;
Berg, Aaron ;
Rowlandson, Tracy ;
Pacheco, Anna ;
McNairn, Heather ;
Thibeault, Marc ;
Martinez-Fernandez, Jose ;
Gonzalez-Zamora, Angel ;
Seyfried, Mark ;
Bosch, David ;
Starks, Patrick ;
Goodrich, David ;
Prueger, John ;
Palecki, Michael ;
Small, Eric E. ;
Zreda, Marek ;
Calvet, Jean-Christophe ;
Crow, Wade T. ;
Kerr, Yann .
IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING, 2016, 54 (08) :4994-5007
[10]   Improved SMAP Dual-Channel Algorithm for the Retrieval of Soil Moisture [J].
Chaubell, Mario Julian ;
Yueh, Simon H. ;
Dunbar, R. Scott ;
Colliander, Andreas ;
Chen, Fan ;
Chan, Steven K. ;
Entekhabi, Dara ;
Bindlish, Rajat ;
O'Neill, Peggy E. ;
Asanuma, Jun ;
Berg, Aaron A. ;
Bosch, David D. ;
Caldwell, Todd ;
Cosh, Michael H. ;
Collins, Chandra Holifield ;
Martinez-Fernandez, Jose ;
Seyfried, Mark ;
Starks, Patrick J. ;
Su, Zhongbo ;
Thibeault, Marc ;
Walker, Jeffrey .
IEEE TRANSACTIONS ON GEOSCIENCE AND REMOTE SENSING, 2020, 58 (06) :3894-3905