Validation of the Sentinel Simplified Level 2 Product Prototype Processor (SL2P) for mapping cropland biophysical variables using Sentinel-2/MSI and Landsat-8/OLI data

被引:82
作者
Djamai, Najib [1 ]
Fernandes, Richard [1 ]
Weiss, Marie [2 ]
McNairn, Heather [3 ]
Goita, Kalifa [4 ]
机构
[1] Nat Resources Canada, Canada Ctr Remote Sensing, 560 Rochester St, Ottawa, ON K1A 0E4, Canada
[2] Univ Avignon & Pays Vaucluse, INRA UAPV, Inst Natl Rech Agronom, F-84914 Avignon, France
[3] Agr & Agri Food Canada, 960 Carling Ave, Ottawa, ON K1A 0C6, Canada
[4] Univ Sherbrooke, CARTEL, 2500 Boul Univ, Sherbrooke, PQ J1K 2R1, Canada
关键词
Vegetation biophysical variables; Sentinel-2/MSI; Landsat-8/OLI; SL2P; Validation; LEAF-AREA INDEX; VEGETATION WATER-CONTENT; ESSENTIAL CLIMATE VARIABLES; CYCLOPES GLOBAL PRODUCTS; REFLECTANCE DATA; TIME-SERIES; SPECTRAL INDEX; LAI PRODUCTS; SUGAR-BEET; GEOV1; LAI;
D O I
10.1016/j.rse.2019.03.020
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The Simplified Level 2 Product Prototype Processor (SL2P) for estimating Leaf Area index (LAI), fraction of vegetation cover (fCover) and Canopy Water Content (CWC) from Sentinel-2/MSI and Landsat-8/OLI data was validated over an agricultural region. In-situ data collected during the SMAP Validation Experiment 2016 field campaign were used as a reference. SL2P processor performance varied substantially between crop type and biophysical variable. Over all crops, SL2P underestimated in-situ LAI and CWC measurements when using either MSI (slope (bias) of 0.70 (- 0.37) for LAI and 0.42 (- 0.37 kg/m(2)) for CWC) or OLI (slope (bias) of 0.59 (-1.21) for LAI and 0.24 (- 0.23 kg/m (2)) for CWC) data. The accuracy of SL2P fCover estimates, over all crops, was higher (slope (bias) of 0.99 (1.84%) using MSI and 0.93 (- 3.75%) using OLI). The RMSE between biophysical variables estimated using SL2P from MSI (OLI) in comparison to in-situ data was 0.98 (1.63) for LAI, 11.39% (10.95%) for fCover and 0.66 kg/m(2) (0.96 kg/m (2)) for CWC. Slightly better results are generally obtained using locally calibrated vegetation indices models, when compared to SL2P estimates using the corresponding sensor data. Uncertainty metrics of vegetation biophysical variables derived from both MSI and OLI, when compared to interpolated in-situ data time series, are found comparable to results obtained for cross-validation suggesting the possibility of using interpolated in-situ data time series for validating decametric resolution remote sensing products sparsely sampled in time.
引用
收藏
页码:416 / 430
页数:15
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