N: 90 S: -90 E: 180 W: -180
TABLE OF CONTENTS
Description
This data set (ATL08) contains along-track heights above the WGS84 ellipsoid (ITRF2014 reference frame) for the ground and canopy surfaces. The canopy and ground surfaces are processed in fixed 100 m data segments, which typically contain more than 100 signal photons. The data were acquired by the Advanced Topographic Laser Altimeter System (ATLAS) instrument on board the Ice, Cloud and land Elevation Satellite-2 (ICESat-2) observatory.
Version Description
Changes for this version include:
- Added terrain_best_fit_geosegment parameter at the 20 m (geosegment) rate. This represents the best estimate of terrain at the 20 m along-track resolution.
- Added h_canopy_geosegment which represents the 20 m estimate of the 98% relative canopy height.
- Added latitude_20 and longitude_20 to the data product for geolocation of the 20 m terrain and canopy height estimates
- Added a segment_woody_vegetation_fractional cover to the ATL08 data product. This product is derived from the Copernicus fractional forest and fraction shrub data products
- Updated the segment_landcover with the 2019 Copernicus landcover. This update replaces the MODIS landcover value which was derived from the 2014 MODIS product. See the version section in the user guide for more information.
- Updated the urban_flag parameter with the DLR Global Urban Footprint (GUF) as a potential indicator of man-made/built structures. See the version section in the user guide for more information.
Product Summary
Platforms
Instruments
Spatial Extent
Spatial Reference System(s)
WGS 84 (EPSG:4326)
Location
GLOBAL
Coordinate System
CARTESIAN
Granule Spatial Representation
ORBIT
Temporal Extent
2018-10-14 to 2022-10-13
Temporal Resolution
91 Day
Concept ID
C2153574670-NSIDC_CPRD
Data State
DEPRECATED
Number of Files/Granules
0
Processing Level
3
Published
Science Keywords
Vegetation Height
Citation
Citation is critically important for dataset documentation and discovery. This dataset is openly shared, without restriction, in accordance with the EOSDIS Data Use and Citation Guidance.
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Neuenschwander, A., Pitts, K., Jelley, B., Robbins, J., Klotz, B., Popescu, S., Nelson, R., Harding, D., Pederson, D., & Sheridan, R. (2021). ATLAS/ICESat-2 L3A Land and Vegetation Height, Version 5 [Data set]. NASA National Snow and Ice Data Center Distributed Active Archive Center. https://doi.org/10.5067/ATLAS/ATL08.005 Date Accessed: 2026-06-17
Neuenschwander, Amy, Katherine Pitts, Benjamin Jelley, John Robbins, Brad Klotz, Sorin Popescu, Ross Nelson, David Harding, Dylan Pederson, and Ryan Sheridan. “ATLAS/ICESat-2 L3A Land and Vegetation Height, Version 5.” NASA National Snow and Ice Data Center Distributed Active Archive Center, 2021. doi:10.5067/ATLAS/ATL08.005. Date Accessed: 2026-06-17
Neuenschwander, Amy, et al. ATLAS/ICESat-2 L3A Land and Vegetation Height, Version 5. NASA National Snow and Ice Data Center Distributed Active Archive Center, 2021, doi:10.5067/ATLAS/ATL08.005. Date Accessed: 2026-06-17
TABLE OF CONTENTS
Documents
ALGORITHM THEORETICAL BASIS DOCUMENT (ATBD)
DATA PRODUCT SPECIFICATION
Publications Citing This Dataset
Filters
| Title | Year Sort ascending | Author | Topic |
|---|---|---|---|
| Exploring the potential of Harmonized Landsat-Sentinel-2 in predicting boreal forest structure from UAV-LiDAR data in Northwestern America | Enguehard, Lea, Kruse, Stefan, Hansch, Ronny, Herzschuh, Ulrike, Panda, Santosh, Heim, Birgit | Vegetation Cover, Forests, Canopy Characteristics, Land Use/Land Cover Classification, Alpine/Tundra, Reflectance, Dominant Species, Plant Phenological Changes, Normalized Difference Vegetation Index (NDVI), Plant Phenology, Evergreen Vegetation, Vegetation Index, Terrain Elevation, Vegetation Height | |
| A Bare-Earth GoogleDEM to Simulate Flooding in New Delhi, India | Liu, Yinxue, Bates, Paul, Neal, Jeffrey Charles, Slater, Louise, Zhao, Jie, BenHaim, Zvika | Terrain Elevation, Vegetation Height | |
| Advancing Scalable Methods for Surface Water Monitoring: A Novel Integration of Satellite Observations and Machine Learning Techniques | Renshaw, Megan, Magruder, Lori A. | Lidar, Forest Composition/Vegetation Structure, Digital Elevation/Terrain Model (DEM), Canopy Characteristics, Terrain Elevation, Vegetation Height | |
| An Adaptive Photon Denoising Method over Mountainous Forest Areas | Zhang, Qianyin, Zhou, Hui, Ma, Yue, Li, Song, Wang, Heng | Terrain Elevation, Vegetation Height | |
| An improved approach for retrieval of tidal flat elevation based on | Zhang, Xuhui, Zuo, Liqin, Lu, Yongjun, Li, Huan, Zhao, Yahui | Terrain Elevation, Vegetation Height | |
| Estimation of Footprint-Scale Across-Track Slopes Based on Elevation Frequency Histogram from Single-Track ICESat-2 Photon Data of Strong Beam | Zhang, Qianyin, Zhou, Hui, Ma, Yue, Li, Song, Wang, Heng | Terrain Elevation, Vegetation Height | |
| Global Climatologies of Vegetation Aerodynamic Roughness for Momentum: A | Borak, Jordan S., Jasinski, Michael F., Neuenschwander, Amy, Tangdamrongsub, Natthachet | Canopy Characteristics, Evergreen Vegetation, Crown, Deciduous Vegetation, Leaf Characteristics, Vegetation Cover, Land Use/Land Cover Classification, Terrain Elevation, Vegetation Height, Cloud Properties, Lidar Backscatter | |
| Enhancing the performance of 1D2D flood models using satellite laser altimetry and multi-mission surface water extent maps from Earth observation (EO) ... | Charoensuk, Theerapol, Lorentzen, Claudia Katrine Corvenius, Bak, Anne Beukel, Luchner, Jakob, Tttrup, Christian, Bauer-Gottwein, Peter | Terrain Elevation, Vegetation Height | |
| Global digital elevation model (GDEM) product generation by correcting ASTER GDEM elevation with ICESat-2 altimeter data | Li, Binbin, Xie, Huan, Liu, Shijie, Ye, Zhen, Hong, Zhonghua, Weng, Qihao, Sun, Yuan, Xu, Qi, Tong, Xiaohua | Terrain Elevation, Digital Elevation/Terrain Model (DEM), Topographical Relief Maps, Forest Management, Vegetation Height | |
| Neural network-based snow depth retrieval from AMSR-2 brightness temperatures using ICESat-2 measurement as ground truth | Sun-Mack, Sunny, Hu, Yongxiang, Lu, Xiaomei, Chen, Yan, Omar, Ali | Atmospheric Water Vapor, Precipitation, Brightness Temperature, Sea Ice Concentration, Sea Ice Motion, Snow Depth, Terrain Elevation, Vegetation Height, Sea Ice Concentration, Snow Depth | |
| Modeling the Estimation Uncertainty of Terrain Matching Methods for Spaceborne Laser Altimetry Data | Ma, Yue, Zhang, Biyi, Zhao, Pufan, Zhou, Hui, Li, Song, Jiang, Weiping | Terrain Elevation, Vegetation Height | |
| Retrieving snow depth distribution by downscaling ERA5 Reanalysis with | Liu, Zhihao, Filhol, Simon, Treichler, Desiree | Terrain Elevation, Vegetation Height | |
| Unraveling agricultural water use in three Central Asian irrigation | Ragettli, Silvan, Kreiner, Adrian, Yakovlev, Andrey, Anarbekov, Oyture, Al-Zubi, Maha, Urazkeldiyev, Abdikhamid, Siegfried, Tobias | Terrain Elevation, Vegetation Height, Surface Water Processes/Measurements | |
| Characterizing post-fire northern boreal forest height dynamics | Queinnec, Martin, Coops, Nicholas C., White, Joanne C. | Terrain Elevation, Vegetation Height | |
| Assessing vertical accuracy and spatial coverage of ICESat-2 and GEDI spaceborne lidar for creating global terrain models | Pronk, Maarten, Eleveld, Marieke, Ledoux, Hugo | Plant Phenology, Canopy Characteristics, Vegetation Cover, Lidar, Topography, Vegetation Height, LIDAR WAVEFORM, Terrain Elevation | |
| Hydraulic River Models From ICESat-2 Elevation and Water Surface Slope | Musaeus, Aske Folkmann, Kittel, Cecile Marie Margaretha, Luchner, Jakob, Frias, Monica Coppo, BauerGottwein, Peter | Terrain Elevation, Vegetation Height, Surface Water Processes/Measurements | |
| ICESat-2 derived canopy covers with radiometric and reflectance ratio corrections | Zhang, Qianyin, Zhou, Hui, Ma, Yue, Wang, Hong, Li, Song, Chen, Yuwei | Terrain Elevation, Vegetation Height | |
| Mapping vegetation height and identifying the northern forest limit across Canada using ICESat-2, Landsat time series and topographic data | Travers-Smith, H., Coops, N.C., Mulverhill, C., Wulder, M.A., Ignace, D., Lantz, T.C. | Canopy Characteristics, Evergreen Vegetation, Crown, Deciduous Vegetation, Leaf Characteristics, Vegetation Cover, Land Use/Land Cover Classification, Glacier Elevation/Ice Sheet Elevation, Sea Ice Elevation, Terrain Elevation, Vegetation Height | |
| INTEGRATING SENTINEL-1&2 AND ICESAT-2 DATA FOR FOREST CANOPY HEIGHT | Doyog, Nova D., Lin, Chinsu, Liu, Keng-Hao | Terrain Elevation, Vegetation Height | |
| Generating Wall-to-Wall Canopy Height Information from Discrete Data | Doyog, Nova D., Lin, Chinsu | Terrain Elevation, Vegetation Height | |
| Modeling and correcting building boundary in ICESat-2 spaceborne laser altimeter data considering the extended laser spot effect | Zhao, Pufan, Zhang, Biyi, Liu, Qi, Liu, Xinyuan, Yang, Jian, Li, Song, Ma, Yue | Terrain Elevation, Vegetation Height | |
| Mountain snow depth retrievals from customized processing of ICESat-2 satellite laser altimetry | Besso, Hannah, Shean, David, Lundquist, Jessica D. | Terrain Elevation, Glacier Elevation/Ice Sheet Elevation, Vegetation Height | |
| Signal Photon Extraction and Classification for ICESat-2 Photon-Counting Lidar in Coastal Areas | Song, Yue, Ma, Yue, Zhou, Zhibiao, Yang, Jian, Li, Song | Terrain Elevation, Vegetation Height | |
| Toward long-term monitoring of regional permafrost thaw with satellite interferometric synthetic aperture radar | Sadeghi Chorsi, Taha, Meyer, Franz J., Dixon, Timothy H. | Biomass, Nutrients, Plant Characteristics, Soil Texture, Active Layer, Cation Exchange Capacity, Soil Moisture/Water Content, Soil Bulk Density, Soil Porosity, Organic Matter, Active Layer, Permafrost, Permafrost, PERMAFROST MELT, Terrain Elevation, Vegetation Height, Electrical Conductivity | |
| Wetlands Water Level Measurements From the New Generation of Satellite Laser Altimeters: Systematic SpatialTemporal Evaluation of ICESat2 and GEDI Missions Over the South Florida Everglades | PalominoAngel, Sebastian, Wdowinski, Shimon, Li, Shanshan | Terrain Elevation, Vegetation Height |