Arid
DOI10.1016/j.rse.2018.04.013
Retrieving surface soil moisture at high spatio-temporal resolution from a synergy between Sentinel-1 radar and Landsat thermal data: A study case over bare soil
Amazirh, Abdelhakim1,2; Merlin, Olivier2,5; Er-Raki, Salah1; Gao, Qi2,3; Rivalland, Vincent2; Malbeteau, Yoann2,4; Khabba, Said5; Jose Escorihuela, Maria3
通讯作者Amazirh, Abdelhakim
来源期刊REMOTE SENSING OF ENVIRONMENT
ISSN0034-4257
EISSN1879-0704
出版年2018
卷号211页码:321-337
英文摘要

Radar data have been used to retrieve and monitor the surface soil moisture (SM) changes in various conditions. However, the calibration of radar models whether empirically or physically-based, is still subject to large uncertainties especially at high-spatial resolution. To help calibrate radar-based retrieval approaches to supervising SM at high resolution, this paper presents an innovative synergistic method combining Sentinel-1 (Si) microwave and Landsat-7/8 (L7/8) thermal data. First, the S1 backscatter coefficient was normalized by its maximum and minimum values obtained during 2015-2016 agriculture season. Second, the normalized S1 backscatter coefficient was calibrated from reference points provided by a thermal-derived SM proxy named soil evaporative efficiency (SEE, defined as the ratio of actual to potential soil evaporation). SEE was estimated as the radiometric soil temperature normalized by its minimum and maximum values reached in a water-saturated and dry soil, respectively. We estimated both soil temperature endmembers by using a soil energy balance model forced by available meteorological forcing. The proposed approach was evaluated against in situ SM measurements collected over three bare soil fields in a semi-arid region in Morocco and we compared it against a classical approach based on radar data only. The two polarizations VV (vertical transmit and receive) and VH (vertical transmit and horizontal receive) of the S1 data available over the area are tested to analyse the sensitivity of radar signal to SM at high incidence angles (39 degrees-43 degrees). We found that the VV polarization was better correlated to SM than the VH polarization with a determination coefficient of 0.47 and 0.28, respectively. By combining Si (VV) and L7/8 data, we reduced the root mean square difference between satellite and in situ SM to 0.03 m(3) m(-3) which is far smaller than 0.16 m(3) m(-3) when using SI (VV) only.


英文关键词Near surface soil moisture Sentinel-1 (A/B) Landsat-7/8 Energy balance modelling Soil evaporation Bare soil
类型Review
语种英语
国家Morocco ; France ; Spain ; Saudi Arabia
收录类别SCI-E
WOS记录号WOS:000433650700025
WOS关键词INTERNATIONAL LABORATORY TREMA ; INTEGRAL-EQUATION MODEL ; TERRASAR-X DATA ; SAR DATA ; AGRICULTURAL FIELDS ; SEMIARID REGION ; SEMIEMPIRICAL CALIBRATION ; CROP EVAPOTRANSPIRATION ; ERS SCATTEROMETER ; VEGETATION COVER
WOS类目Environmental Sciences ; Remote Sensing ; Imaging Science & Photographic Technology
WOS研究方向Environmental Sciences & Ecology ; Remote Sensing ; Imaging Science & Photographic Technology
来源机构French National Research Institute for Sustainable Development
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/212693
作者单位1.Univ Cadi Ayyad, Fac Sci & Tech, Dept Phys Appl, LP2M2E, Marrakech, Morocco;
2.Univ Toulouse, CESBIO, CNES CNRS IRD UPS, Toulouse, France;
3.isardSAT, Parc Tecnol Barcelona Act,Carrer Marie Curie 8, Barcelona 08042, Spain;
4.King Abdullah Univ Sci & Technol, Water Desalinat & Reuse Ctr, Thuwal, Saudi Arabia;
5.Univ Cadi Ayyad, Fac Sci Semlalia, Dept Phys, LMME, Marrakech, Morocco
推荐引用方式
GB/T 7714
Amazirh, Abdelhakim,Merlin, Olivier,Er-Raki, Salah,et al. Retrieving surface soil moisture at high spatio-temporal resolution from a synergy between Sentinel-1 radar and Landsat thermal data: A study case over bare soil[J]. French National Research Institute for Sustainable Development,2018,211:321-337.
APA Amazirh, Abdelhakim.,Merlin, Olivier.,Er-Raki, Salah.,Gao, Qi.,Rivalland, Vincent.,...&Jose Escorihuela, Maria.(2018).Retrieving surface soil moisture at high spatio-temporal resolution from a synergy between Sentinel-1 radar and Landsat thermal data: A study case over bare soil.REMOTE SENSING OF ENVIRONMENT,211,321-337.
MLA Amazirh, Abdelhakim,et al."Retrieving surface soil moisture at high spatio-temporal resolution from a synergy between Sentinel-1 radar and Landsat thermal data: A study case over bare soil".REMOTE SENSING OF ENVIRONMENT 211(2018):321-337.
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