This article uses the two-level model (TLM) to predict above-ground biomass (AGB) from TanDEM-X synthetic aperture radar (SAR) data for Sweden. The SAR data were acquired between October 2015 and January 2016 and consisted of 420 scenes. The AGB was estimated from forest height and canopy density estimates obtained from TLM inversion with a power law model. The model parameters were estimated separately for each satellite scene. The prediction accuracy at stand-level was evaluated using field inventoried references from entire Sweden 2017, provided by a forestry company. AGB estimation performance varied throughout the country, with smaller errors in the north and larger in the south, but when the errors were expressed in relative terms, th...
Above-ground forest biomass is a significant variable in the terrestrial carbon budget, but is still...
Forest growth estimation is important in forest research and forest management, but complex to analy...
Estimation of biomass has high importance for economic, ecologic and climatic reasons due to the mul...
This article uses the two-level model (TLM) to predict above-ground biomass (AGB) from TanDEM-X synt...
A model for aboveground biomass estimation from single-pass interferometric synthetic aperture radar...
Above-ground forest biomass is a significant variable in the terrestrial carbon budget, but is still...
This study uses the backscattered intensity information from SAR images acquired with TerraSAR-X to ...
Abstract: Above-ground forest biomass is a significant variable in the terrestrial carbon budget, bu...
Interferometric Synthetic Aperture Radar (InSAR) data from TerraSAR-X add-on for Digital Elevation M...
Satellite images provide spatially explicit information on forest change covering wide areas. In thi...
This paper report experiences from the processing and mosaicking of 518 TanDEM-X image pairs coverin...
Frequent, high-resolution mapping of national and global forest resourcesis needed for improved clim...
The influence of the ground slope on radar backscatter has been proven to be greater for lower radar...
BIOMASS is ESA\u27s seventh Earth Explorer mission, scheduled for launch in 2022. The satellite will...
Above-ground forest biomass is a significant variable in the terrestrial carbon budget, but is still...
Forest growth estimation is important in forest research and forest management, but complex to analy...
Estimation of biomass has high importance for economic, ecologic and climatic reasons due to the mul...
This article uses the two-level model (TLM) to predict above-ground biomass (AGB) from TanDEM-X synt...
A model for aboveground biomass estimation from single-pass interferometric synthetic aperture radar...
Above-ground forest biomass is a significant variable in the terrestrial carbon budget, but is still...
This study uses the backscattered intensity information from SAR images acquired with TerraSAR-X to ...
Abstract: Above-ground forest biomass is a significant variable in the terrestrial carbon budget, bu...
Interferometric Synthetic Aperture Radar (InSAR) data from TerraSAR-X add-on for Digital Elevation M...
Satellite images provide spatially explicit information on forest change covering wide areas. In thi...
This paper report experiences from the processing and mosaicking of 518 TanDEM-X image pairs coverin...
Frequent, high-resolution mapping of national and global forest resourcesis needed for improved clim...
The influence of the ground slope on radar backscatter has been proven to be greater for lower radar...
BIOMASS is ESA\u27s seventh Earth Explorer mission, scheduled for launch in 2022. The satellite will...
Above-ground forest biomass is a significant variable in the terrestrial carbon budget, but is still...
Forest growth estimation is important in forest research and forest management, but complex to analy...
Estimation of biomass has high importance for economic, ecologic and climatic reasons due to the mul...