Yalan Wang
Regression-based surface water fraction mapping using a synthetic spectral library for monitoring small water bodies
Wang, Yalan; Foody, Giles; Li, Xiaodong; Zhang, Yihang; Zhou, Pu; Du, Yun
Authors
Professor GILES FOODY giles.foody@nottingham.ac.uk
PROFESSOR OF GEOGRAPHICAL INFORMATION
Xiaodong Li
Yihang Zhang
Pu Zhou
Yun Du
Abstract
Small water bodies (SWBs), such as ponds and on-farm reservoirs, are a key part of the hydrological system and play important roles in diverse domains from agriculture to conservation. The monitoring of SWBs has been greatly facilitated by medium-spatial-resolution satellite images, but the monitoring accuracy is considerably affected by the mixed-pixel problem. Although various spectral unmixing methods have been applied to map sub-pixel surface water fractions for large water bodies, such as lakes and reservoirs, it is challenging to map SWBs that are small in size relative to the image pixel and have dissimilar spectral properties. In this study, a novel regression-based surface water fraction mapping method (RSWFM) using a random forest and a synthetic spectral library is proposed for mapping 10 m spatial resolution surface water fractions from Sentinel-2 imagery. The RSWFM inputs a few endmembers of water, vegetation, impervious surfaces, and soil to simulate a spectral library, and considers spectral variations in endmembers for different SWBs. Additionally, RSWFM applies noise-based data augmentation on pure endmembers to overcome the limitation often arising from the use of a small set of pure spectra in training the regression model. RSWFM was assessed in ten study sites and compared with the fully constrained least squares (FCLS) linear spectral mixture analysis, multiple endmember spectral mixture analysis (MESMA), and the nonlinear random forest (RF) regression without data-augmentation. The results showed that RSWFM decreases the water fraction mapping errors by ~ 30%, ~15%, and ~ 11% in root mean square error compared with the linear FCLS, MESMA unmixings, and the nonlinear RF regression without data-augmentation respectively. RSWFM has an accuracy of approximately 0.85 in R2 in estimating the area of SWBs smaller than 1 ha.
Citation
Wang, Y., Foody, G., Li, X., Zhang, Y., Zhou, P., & Du, Y. (2023). Regression-based surface water fraction mapping using a synthetic spectral library for monitoring small water bodies. GIScience and Remote Sensing, 60(1), Article 2217573. https://doi.org/10.1080/15481603.2023.2217573
Journal Article Type | Article |
---|---|
Acceptance Date | May 18, 2023 |
Online Publication Date | May 28, 2023 |
Publication Date | 2023 |
Deposit Date | Jun 1, 2023 |
Publicly Available Date | Jun 1, 2023 |
Journal | GIScience and Remote Sensing |
Print ISSN | 1548-1603 |
Electronic ISSN | 1943-7226 |
Publisher | Taylor and Francis |
Peer Reviewed | Peer Reviewed |
Volume | 60 |
Issue | 1 |
Article Number | 2217573 |
DOI | https://doi.org/10.1080/15481603.2023.2217573 |
Keywords | Spectral unmixing; small water body; Sentinel-2; random forest; synthetic spectral library |
Public URL | https://nottingham-repository.worktribe.com/output/21371782 |
Publisher URL | https://www.tandfonline.com/toc/tgrs20/60/1 |
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Regression based surface water fraction mapping using a synthetic spectral library for monitoring small water bodies
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Publisher Licence URL
https://creativecommons.org/licenses/by/4.0/
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