Remote sensing statistical inference: basic theory and forward simulation of water–air statistical radiative transfer
Author:
Funder
National Natural Science Foundation of China
Publisher
Springer Science and Business Media LLC
Subject
General Earth and Planetary Sciences
Link
https://link.springer.com/content/pdf/10.1007/s12145-021-00661-y.pdf
Reference37 articles.
1. Al-Yaari A, Wigneron JP, Kerr Y, Rodriguez-Fernandez N, O’Neill PE, Jackson TJ, De Lannoy GJM, Al-Bitar A, Mialon A, Richaume P (2017) Evaluating soil moisture retrievals from ESA’s SMOS and NASA’s SMAP brightness temperature datasets. Remote Sens Environ 193:257–273
2. Casella G, Berger GL (2001) Statistical Inference, 2nd edn. Cengage Learning Press, Singapore
3. Chi MM, Plaza A, Benediktsson JA, Sun ZY, Shen JS, Zhu YY (2016) Big data for remote sensing: challenges and opportunities. Proc IEEE 104(11):2207–2219
4. Dozier J (1989) Spectral signature of alpine snow cover from the Landsat thematic mapper. Remote Sens Environ 28:9
5. Du CG, Wang Q, Li YM, Lyu H, Zhu L, Zheng ZB, Wen S, Liu G, Guo YL (2018) Estimation of total phosphorus concentration using a water classification method in inland water. Int J Appl Earth Observ Geoinform 71:29–42
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