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Detection of Longhorned Borer Attack and Assessment in Eucalyptus Plantations Using UAV Imagery
by
Acevedo-Muñoz, Luis
, Sarmento, Alexandre
, Borralho, Nuno
, Mota, Luís
, Silva, Margarida
, Duarte, André
, Gonçalves, Catarina I.
, Fabres, Sérgio
, Valente, Carlos
in
Accuracy
/ Aerial photography
/ Algorithms
/ Borers
/ Cameras
/ Classification
/ Climate change
/ Damage detection
/ decision support systems
/ Density
/ detection
/ Disease
/ Eucalyptus
/ Forest management
/ forests
/ Image segmentation
/ Infestation
/ Large Scale Mean-Shift Segmentation (LSMS)
/ managers
/ Mediterranean climate
/ monitoring
/ multispectral imagery
/ normalized difference vegetation index
/ Normalized difference vegetative index
/ Pest control
/ pest management
/ Pests
/ Phoracantha spp
/ Photogrammetry
/ plantations
/ rain
/ Rainfall
/ Remote sensing
/ Satellites
/ Sensors
/ Software
/ Spatial analysis
/ summer
/ thresholding analysis
/ tree crown
/ trees
/ unmanned aerial vehicle (UAV)
/ Unmanned aerial vehicles
/ Vegetation
/ Vegetation index
2020
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Detection of Longhorned Borer Attack and Assessment in Eucalyptus Plantations Using UAV Imagery
by
Acevedo-Muñoz, Luis
, Sarmento, Alexandre
, Borralho, Nuno
, Mota, Luís
, Silva, Margarida
, Duarte, André
, Gonçalves, Catarina I.
, Fabres, Sérgio
, Valente, Carlos
in
Accuracy
/ Aerial photography
/ Algorithms
/ Borers
/ Cameras
/ Classification
/ Climate change
/ Damage detection
/ decision support systems
/ Density
/ detection
/ Disease
/ Eucalyptus
/ Forest management
/ forests
/ Image segmentation
/ Infestation
/ Large Scale Mean-Shift Segmentation (LSMS)
/ managers
/ Mediterranean climate
/ monitoring
/ multispectral imagery
/ normalized difference vegetation index
/ Normalized difference vegetative index
/ Pest control
/ pest management
/ Pests
/ Phoracantha spp
/ Photogrammetry
/ plantations
/ rain
/ Rainfall
/ Remote sensing
/ Satellites
/ Sensors
/ Software
/ Spatial analysis
/ summer
/ thresholding analysis
/ tree crown
/ trees
/ unmanned aerial vehicle (UAV)
/ Unmanned aerial vehicles
/ Vegetation
/ Vegetation index
2020
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Detection of Longhorned Borer Attack and Assessment in Eucalyptus Plantations Using UAV Imagery
by
Acevedo-Muñoz, Luis
, Sarmento, Alexandre
, Borralho, Nuno
, Mota, Luís
, Silva, Margarida
, Duarte, André
, Gonçalves, Catarina I.
, Fabres, Sérgio
, Valente, Carlos
in
Accuracy
/ Aerial photography
/ Algorithms
/ Borers
/ Cameras
/ Classification
/ Climate change
/ Damage detection
/ decision support systems
/ Density
/ detection
/ Disease
/ Eucalyptus
/ Forest management
/ forests
/ Image segmentation
/ Infestation
/ Large Scale Mean-Shift Segmentation (LSMS)
/ managers
/ Mediterranean climate
/ monitoring
/ multispectral imagery
/ normalized difference vegetation index
/ Normalized difference vegetative index
/ Pest control
/ pest management
/ Pests
/ Phoracantha spp
/ Photogrammetry
/ plantations
/ rain
/ Rainfall
/ Remote sensing
/ Satellites
/ Sensors
/ Software
/ Spatial analysis
/ summer
/ thresholding analysis
/ tree crown
/ trees
/ unmanned aerial vehicle (UAV)
/ Unmanned aerial vehicles
/ Vegetation
/ Vegetation index
2020
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Detection of Longhorned Borer Attack and Assessment in Eucalyptus Plantations Using UAV Imagery
Journal Article
Detection of Longhorned Borer Attack and Assessment in Eucalyptus Plantations Using UAV Imagery
2020
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Overview
Eucalyptus Longhorned Borers (ELB) are some of the most destructive pests in regions with Mediterranean climate. Low rainfall and extended dry summers cause stress in eucalyptus trees and facilitate ELB infestation. Due to the difficulty of monitoring the stands by traditional methods, remote sensing arises as an invaluable tool. The main goal of this study was to demonstrate the accuracy of unmanned aerial vehicle (UAV) multispectral imagery for detection and quantification of ELB damages in eucalyptus stands. To detect spatial damage, Otsu thresholding analysis was conducted with five imagery-derived vegetation indices (VIs) and classification accuracy was assessed. Treetops were calculated using the local maxima filter of a sliding window algorithm. Subsequently, large-scale mean-shift segmentation was performed to extract the crowns, and these were classified with random forest (RF). Forest density maps were produced with data obtained from RF classification. The normalized difference vegetation index (NDVI) presented the highest overall accuracy at 98.2% and 0.96 Kappa value. Random forest classification resulted in 98.5% accuracy and 0.94 Kappa value. The Otsu thresholding and random forest classification can be used by forest managers to assess the infestation. The aggregation of data offered by forest density maps can be a simple tool for supporting pest management.
Publisher
MDPI AG
Subject
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