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Please use this identifier to cite or link to this item: http://dspace.ucuenca.edu.ec/handle/123456789/38180
Title: Fusing multisource data to estimate the effects of urbanization, sea level rise, and hurricane impacts on long-term wetland change dynamics
Authors: Alipour, Atieh
Muñoz Pauta, David Fernando
Moftakhari, Hamed
Muñoz Pauta, Paul Andres
Mortazavi, Behzad
metadata.dc.ucuenca.correspondencia: Muñoz Pauta, David Fernando, dfmunoz1@crimson.ua.edu
Keywords: Sea level rise
Deep learning
Mobile bay
Data fusion
Hurricane impacts
Urban development
Wetland loss
metadata.dc.ucuenca.areaconocimientofrascatiamplio: 1. Ciencias Naturales y Exactas
metadata.dc.ucuenca.areaconocimientofrascatidetallado: 1.5.10 Recursos Hídricos
metadata.dc.ucuenca.areaconocimientofrascatiespecifico: 1.5 Ciencias de la Tierra y el Ambiente
metadata.dc.ucuenca.areaconocimientounescoamplio: 05 - Ciencias Físicas, Ciencias Naturales, Matemáticas y Estadísticas
metadata.dc.ucuenca.areaconocimientounescodetallado: 0521 - Ciencias Ambientales
metadata.dc.ucuenca.areaconocimientounescoespecifico: 052 - Medio Ambiente
Issue Date: 2021
metadata.dc.ucuenca.volumen: Volumen 14
metadata.dc.source: IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing
metadata.dc.identifier.doi: 10.1109/JSTARS.2020.3048724
metadata.dc.type: ARTÍCULO
Abstract: 
Wetlands are endangered ecosystems that provide vital habitats for flora and fauna worldwide. They serve as water and carbon storage units regulating the global climate and water cycle, and act as natural barriers against storm-surge among other benefits. Long-term analyses are crucial to identify wetland cover change and support wetland protection/restoration programs. However, such analyses deal with insufficient validation data that limit land cover classification and pattern recognition tasks. Here, we analyze wetland dynamics associated with urbanization, sea level rise, and hurricane impacts in the Mobile Bay watershed, AL since 1984. For this, we develop a land cover classification model with convolutional neural networks (CNNs) and data fusion (DF) framework. The classification model achieves the highest overall accuracy (0.93), and f1-scores in woody (0.90) and emergent wetland class (0.99) when those datasets are fused in the framework. Long-term trends indicate that the wetland area is decreasing at a rate of –1106 m 2 /yr with sharp fluctuations exacerbated by hurricane impacts. We further discuss the effects of DF alternatives on classification accuracy, and show that the CNN & DF framework outperforms machine/deep learning models trained only with single input datasets.
URI: http://dspace.ucuenca.edu.ec/handle/123456789/38180
https://www.scopus.com/record/display.uri?eid=2-s2.0-85099095977&origin=resultslist&sort=plf-f&src=s&st1=Fusing+Multisource+Data+to+Estimate+the+Effects+of+Urbanization%2c+Sea+Level+Rise%2c+and+Hurricane+Impacts+on+Long-Term+Wetland+Change+Dynamics&sid=4f2fdf7744167ddf6492560b4a562f6f&sot=b&sdt=b&sl=154&s=TITLE-ABS-KEY%28Fusing+Multisource+Data+to+Estimate+the+Effects+of+Urbanization%2c+Sea+Level+Rise%2c+and+Hurricane+Impacts+on+Long-Term+Wetland+Change+Dynamics%29&relpos=0&citeCnt=4&searchTerm=&featureToggles=FEATURE_NEW_DOC_DETAILS_EXPORT:1
metadata.dc.ucuenca.urifuente: https://ieeexplore.ieee.org/xpl/tocresult.jsp?isnumber=9314330&punumber=4609443&sortType=vol-only-seq&pageNumber=6
ISSN: 1939-1404
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