Improving the STARFM Fusion Method for Downscaling the SSEBOP Evapotranspiration Product from 1 km to 30 m in an Arid Area in China
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Sun, J.; Wang, W.; Wang, X.; Brocca, L. Improving the STARFM Fusion Method for Downscaling the SSEBOP Evapotranspiration Product from 1 km to 30 m in an Arid Area in China. Remote Sens. 2023, 15, 5411. https://doi.org/10.3390/rs15225411
Sun J, Wang W, Wang X, Brocca L. Improving the STARFM Fusion Method for Downscaling the SSEBOP Evapotranspiration Product from 1 km to 30 m in an Arid Area in China. Remote Sensing. 2023; 15(22):5411. https://doi.org/10.3390/rs15225411
Chicago/Turabian StyleSun, Jingjing, Wen Wang, Xiaogang Wang, and Luca Brocca. 2023. "Improving the STARFM Fusion Method for Downscaling the SSEBOP Evapotranspiration Product from 1 km to 30 m in an Arid Area in China" Remote Sensing 15, no. 22: 5411. https://doi.org/10.3390/rs15225411
APA StyleSun, J., Wang, W., Wang, X., & Brocca, L. (2023). Improving the STARFM Fusion Method for Downscaling the SSEBOP Evapotranspiration Product from 1 km to 30 m in an Arid Area in China. Remote Sensing, 15(22), 5411. https://doi.org/10.3390/rs15225411

