Estimates of forest canopy height and aboveground biomass using ICESat
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- 1 November 2005
- journal article
- Published by American Geophysical Union (AGU) in Geophysical Research Letters
- Vol. 32 (22)
- https://doi.org/10.1029/2005gl023971
Abstract
Exchange of carbon between forests and the atmosphere is a vital component of the global carbon cycle. Satellite laser altimetry has a unique capability for estimating forest canopy height, which has a direct and increasingly well understood relationship to aboveground carbon storage. While the Geoscience Laser Altimeter System (GLAS) onboard the Ice, Cloud and land Elevation Satellite (ICESat) has collected an unparalleled dataset of lidar waveforms over terrestrial targets, processing of ICESat data to estimate forest height is complicated by the pulse broadening associated with large‐footprint, waveform‐sampling lidar. We combined ICESat waveforms and ancillary topography from the Shuttle Radar Topography Mission to estimate maximum forest height in three ecosystems; tropical broadleaf forests in Brazil, temperate broadleaf forests in Tennessee, and temperate needleleaf forests in Oregon. Final models for each site explained between 59% and 68% of variance in field‐measured forest canopy height (RMSE between 4.85 and 12.66 m). In addition, ICESat‐derived heights for the Brazilian plots were correlated with field‐estimates of aboveground biomass (r2 = 73%, RMSE = 58.3 Mgha−1).This publication has 11 references indexed in Scilit:
- ICESat validation of SRTM C‐band digital elevation modelsGeophysical Research Letters, 2005
- Geoscience Laser Altimeter System (GLAS) on the ICESat Mission: On‐orbit measurement performanceGeophysical Research Letters, 2005
- Overview of the ICESat MissionGeophysical Research Letters, 2005
- ICESat waveform measurements of within‐footprint topographic relief and vegetation vertical structureGeophysical Research Letters, 2005
- Mapping forest successional stages following deforestation in Brazilian Amazonia using multi‐temporal Landsat imagesInternational Journal of Remote Sensing, 2005
- ICESat's laser measurements of polar ice, atmosphere, ocean, and landJournal of Geodynamics, 2002
- Lidar remote sensing of above‐ground biomass in three biomesGlobal Ecology and Biogeography, 2002
- Sensitivity of large-footprint lidar to canopy structure and biomass in a neotropical rainforestRemote Sensing of Environment, 2002
- Shuttle radar topography mission produces a wealth of dataEos, 2000
- Allometric regressions for improved estimate of secondary forest biomass in the central AmazonForest Ecology and Management, 1999