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The Accuracy and Consistency of 3D Elevation Program Data: A Systematic Analysis
by
Stoker, Jason
, Miller, Barry
in
3D Elevation Program
/ Accuracy
/ accuracy assessments
/ Alaska
/ Data collection
/ Datasets
/ Digital Elevation Models
/ High resolution
/ Interferometric synthetic aperture radar
/ interferometry
/ Lidar
/ Metadata
/ Remote sensing
/ synthetic aperture radar
/ Topography
/ Working groups
2022
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The Accuracy and Consistency of 3D Elevation Program Data: A Systematic Analysis
by
Stoker, Jason
, Miller, Barry
in
3D Elevation Program
/ Accuracy
/ accuracy assessments
/ Alaska
/ Data collection
/ Datasets
/ Digital Elevation Models
/ High resolution
/ Interferometric synthetic aperture radar
/ interferometry
/ Lidar
/ Metadata
/ Remote sensing
/ synthetic aperture radar
/ Topography
/ Working groups
2022
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Do you wish to request the book?
The Accuracy and Consistency of 3D Elevation Program Data: A Systematic Analysis
by
Stoker, Jason
, Miller, Barry
in
3D Elevation Program
/ Accuracy
/ accuracy assessments
/ Alaska
/ Data collection
/ Datasets
/ Digital Elevation Models
/ High resolution
/ Interferometric synthetic aperture radar
/ interferometry
/ Lidar
/ Metadata
/ Remote sensing
/ synthetic aperture radar
/ Topography
/ Working groups
2022
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The Accuracy and Consistency of 3D Elevation Program Data: A Systematic Analysis
Journal Article
The Accuracy and Consistency of 3D Elevation Program Data: A Systematic Analysis
2022
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Overview
The 3D Elevation Program (3DEP) has created partnership opportunities to increase the collection of high-resolution elevation data across the United States, eventually leading to complete coverage of high-resolution, three-dimensional (3D) information from light detection and ranging (lidar) data across the entire country (interferometric synthetic aperture radar in Alaska). While 3DEP data are collected at different times and by varying producers, the assumption is that the use of the 3DEP Lidar Base Specification will provide standardized and consistent data across data collections. Another assumption is that the integration of lidar data into the seamless digital elevation models increases the accuracy of the derived products. This study tests these assumptions and updates some of the accuracy metrics that were done on previous versions of the standard products.
Publisher
MDPI AG
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