Abstract
To proactively respond to changes in droughts, technologies are needed to properly diagnose and predict the magnitude of droughts. Drought monitoring using satellite data is essential when local hydrogeological information is not available. The characteristics of meteorological, agri-cultural, and hydrological droughts can be monitored with an accurate spatial resolution. In this study, a remote sensing-based integrated drought index was extracted from 849 sub-basins in Ko-rea’s five major river basins using multi-sensor collaborative approaches and multivariate dimensional reduction models that were calculated using monthly satellite data from 2001 to 2019. Droughts that occurred in 2001 and 2014, which are representative years of severe drought since the 2000s, were evaluated using the integrated drought index. The Bayesian principal component analysis (BPCA)-based integrated drought index proposed in this study was analyzed to reflect the tim-ing, severity, and evolutionary pattern of meteorological, agricultural, and hydrological droughts, thereby enabling a comprehensive delivery of drought information.
Author supplied keywords
Cite
CITATION STYLE
Kim, J. S., Park, S. Y., Lee, J. H., Chen, J., Chen, S., & Kim, T. W. (2021). Integrated drought monitoring and evaluation through multi-sensor satellite-based statistical simulation. Remote Sensing, 13(2), 1–18. https://doi.org/10.3390/rs13020272
Register to see more suggestions
Mendeley helps you to discover research relevant for your work.