Shoreline information is fundamental for understanding coastal dynamics and for implementing environmental policy. The analysis of shoreline variability usually uses a group of shoreline indicators visibly discernible in coastal imagery, such as the seaward vegetation line, wet beach/dry beach line, and instantaneous water line. These indicators partition a beach into four zones: vegetated land, dry sand or debris, wet sand, and water. Unmanned aircraft system (UAS) remote sensing that can acquire imagery with sub-decimeter pixel size provides opportunities to map these four beach zones. This paper attempts to delineate four beach zones based on UAS hyperspatial RGB (Red, Green, and Blue) imagery, namely imagery of sub-decimeter pixel size,...
To monitor coastal environments, Unmanned Aerial Vehicle (UAV) is a low-cost and easy to use solutio...
The amount of Earth observation images available to the public has been the main source of informati...
Salt marsh ecology classification is difficult using traditional coarse resolution remote sensing te...
Shoreline information is fundamental for understanding coastal dynamics and for implementing environ...
Spatial data acquisition is a critical process for the identification of the coastline and coastal z...
With the assistance of high-resolution satellites, unmanned aerial vehicles, and fixed camera observ...
Recent advances in unmanned aerial system (UAS) sensed imagery, sensor quality/size, and geospatial ...
Recent advances in unmanned aerial system (UAS) sensed imagery, sensor quality/size, and geospatial ...
Automatically detecting the wet/dry shoreline from remote sensing imagery has many benefits for beac...
Coastal regions are generally vulnerable to impact from long-term coastal erosion and episodic coast...
This paper describes a new methodology to map intertidal sediment using a commercially available unm...
International audienceEcosystems must now cope with climate change such as rising sea levels. These ...
Automatically detecting the wet/dry shoreline from remote sensing imagery has many benefits for beac...
Advances in image-based remote sensing using unmanned aerial vehicles (UAV) and structure-from-motio...
To monitor coastal environments, Unmanned Aerial Vehicle (UAV) is a low-cost and easy to use solutio...
The amount of Earth observation images available to the public has been the main source of informati...
Salt marsh ecology classification is difficult using traditional coarse resolution remote sensing te...
Shoreline information is fundamental for understanding coastal dynamics and for implementing environ...
Spatial data acquisition is a critical process for the identification of the coastline and coastal z...
With the assistance of high-resolution satellites, unmanned aerial vehicles, and fixed camera observ...
Recent advances in unmanned aerial system (UAS) sensed imagery, sensor quality/size, and geospatial ...
Recent advances in unmanned aerial system (UAS) sensed imagery, sensor quality/size, and geospatial ...
Automatically detecting the wet/dry shoreline from remote sensing imagery has many benefits for beac...
Coastal regions are generally vulnerable to impact from long-term coastal erosion and episodic coast...
This paper describes a new methodology to map intertidal sediment using a commercially available unm...
International audienceEcosystems must now cope with climate change such as rising sea levels. These ...
Automatically detecting the wet/dry shoreline from remote sensing imagery has many benefits for beac...
Advances in image-based remote sensing using unmanned aerial vehicles (UAV) and structure-from-motio...
To monitor coastal environments, Unmanned Aerial Vehicle (UAV) is a low-cost and easy to use solutio...
The amount of Earth observation images available to the public has been the main source of informati...
Salt marsh ecology classification is difficult using traditional coarse resolution remote sensing te...