Passive optical remote sensing of river bathymetry involves establishing a relation between depth and reflectance that can be applied throughout an image to produce a depth map. Building upon the Optimal Band Ratio Analysis (OBRA) framework, we introduce sampling strategies for constructing calibration data sets that lead to strong relationships between an image-derived quantity and depth across a range of depths. Progressively excluding observations that exceed a series of cutoff depths from the calibration process improved the accuracy of depth estimates and allowed the maximum detectable depth (dmax) to be inferred directly from an image. Depth retrieval in two distinct rivers also was enhanced by a stratified version of OBRA that partit...
Remote sensing has been used to map river bathymetry for several decades. Non-contact methods are ne...
Spatial heterogeneities of substrate type, water-surface roughness and also inherent optical propert...
[Departement_IRSTEA]DS [TR1_IRSTEA]METHODO / SYNERGIEWater depth inside river sections is a key para...
Passive optical remote sensing of river bathymetry involves establishing a relation between depth an...
Remote sensing has emerged as a powerful method of characterizing river systems but is subject to se...
Successful monitoring of ecologically significant, vulnerable fluvial systems will require improved ...
The Optimal Band Ratio Analysis (OBRA) could be considered as an efficient technique for bathymetry ...
The Optimal Band Ratio Analysis (OBRA) could be considered as an efficient technique for bathymetry ...
Recent advances in through-water photogrammetry and optical imagery indicate that accurate, continuo...
Remote mapping of bathymetry can play a key role in gaining spatial and temporal insight into fluvia...
UAVs and other low-altitude remote sensing platforms are proving very useful tools for remote sensin...
Remote sensing of riverbed compositions could enable advances in hydro-morphological and habitat mod...
Methods for spectrally based mapping of river bathymetry have been developed and tested in clear‐flo...
Shallow rivers provide important habitat for various aquatic and terrestrial species. The bathymetry...
Spectrally-based retrieval of bathymetry is challenging in inland/coastal waters due to variations i...
Remote sensing has been used to map river bathymetry for several decades. Non-contact methods are ne...
Spatial heterogeneities of substrate type, water-surface roughness and also inherent optical propert...
[Departement_IRSTEA]DS [TR1_IRSTEA]METHODO / SYNERGIEWater depth inside river sections is a key para...
Passive optical remote sensing of river bathymetry involves establishing a relation between depth an...
Remote sensing has emerged as a powerful method of characterizing river systems but is subject to se...
Successful monitoring of ecologically significant, vulnerable fluvial systems will require improved ...
The Optimal Band Ratio Analysis (OBRA) could be considered as an efficient technique for bathymetry ...
The Optimal Band Ratio Analysis (OBRA) could be considered as an efficient technique for bathymetry ...
Recent advances in through-water photogrammetry and optical imagery indicate that accurate, continuo...
Remote mapping of bathymetry can play a key role in gaining spatial and temporal insight into fluvia...
UAVs and other low-altitude remote sensing platforms are proving very useful tools for remote sensin...
Remote sensing of riverbed compositions could enable advances in hydro-morphological and habitat mod...
Methods for spectrally based mapping of river bathymetry have been developed and tested in clear‐flo...
Shallow rivers provide important habitat for various aquatic and terrestrial species. The bathymetry...
Spectrally-based retrieval of bathymetry is challenging in inland/coastal waters due to variations i...
Remote sensing has been used to map river bathymetry for several decades. Non-contact methods are ne...
Spatial heterogeneities of substrate type, water-surface roughness and also inherent optical propert...
[Departement_IRSTEA]DS [TR1_IRSTEA]METHODO / SYNERGIEWater depth inside river sections is a key para...