Lidar and photogrammetry point clouds with supporting imagery and GPS information collected during UAS operations at Great Sippewissett Marsh, Cape Cod, Massachusetts in November 2022
These lidar point clouds and images cover, in high detail, the terrain at Great Sippewissett Marsh, Cape Cod, MA on November 2nd, 2022. USGS researchers tested different sensors that collected lidar and images for photogrammetry point cloud data using Uncrewed Aerial Systems (UAS) to look at differences in coverage and elevation accuracy. The lidar data were acquired with a YellowScan Mapper lidar scanner, which consists of the Livox Horizon scanner and Applanix 15 inertial measurement unit; and a YellowScan VX20-100 lidar scanner, which consists of the Riegl minivux-1uav scanner and Applanix 20 inertial measurement unit. The YellowScan Mapper Sony UMC-R10C camera and a Ricoh GRII camera were used to take photos for structure from motion processing and to compare point clouds. The lidar data was post-processed to a R8s Trimble base station. Smart AeroPoint ground control points (GCPs) and ground truthing GPS points were used for vertical validation.
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Complete Metadata
| @type | dcat:Dataset |
|---|---|
| accessLevel | public |
| bureauCode |
[
"010:12"
]
|
| contactPoint |
{
"fn": "Jin-Si R. Over",
"@type": "vcard:Contact",
"hasEmail": "mailto:jover@usgs.gov"
}
|
| description | These lidar point clouds and images cover, in high detail, the terrain at Great Sippewissett Marsh, Cape Cod, MA on November 2nd, 2022. USGS researchers tested different sensors that collected lidar and images for photogrammetry point cloud data using Uncrewed Aerial Systems (UAS) to look at differences in coverage and elevation accuracy. The lidar data were acquired with a YellowScan Mapper lidar scanner, which consists of the Livox Horizon scanner and Applanix 15 inertial measurement unit; and a YellowScan VX20-100 lidar scanner, which consists of the Riegl minivux-1uav scanner and Applanix 20 inertial measurement unit. The YellowScan Mapper Sony UMC-R10C camera and a Ricoh GRII camera were used to take photos for structure from motion processing and to compare point clouds. The lidar data was post-processed to a R8s Trimble base station. Smart AeroPoint ground control points (GCPs) and ground truthing GPS points were used for vertical validation. |
| distribution |
[
{
"@type": "dcat:Distribution",
"title": "Digital Data",
"format": "XML",
"accessURL": "https://doi.org/10.5066/P13PSF3S",
"mediaType": "application/http",
"description": "Landing page for access to the data"
},
{
"@type": "dcat:Distribution",
"title": "Original Metadata",
"format": "XML",
"mediaType": "text/xml",
"description": "The metadata original format",
"downloadURL": "https://data.usgs.gov/datacatalog/metadata/USGS.65bbbe96d34e18c6baf2e61f.xml"
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|
| identifier | http://datainventory.doi.gov/id/dataset/USGS_65bbbe96d34e18c6baf2e61f |
| keyword |
[
"Aerial Imaging and Mapping Group",
"AeroPoints",
"Atlantic Ocean",
"Bare Earth",
"CMHRP",
"Coastal and Marine Hazards and Resources Program",
"Commonwealth of Massachusetts",
"DJI Matrice 600",
"Great Sippewisset Marsh",
"NUSO",
"National Uncrewed Systems Office",
"Physical Habitats and Geomorphology",
"Point Cloud",
"U.S. Geological Survey",
"UAS",
"USGS",
"USGS:65bbbe96d34e18c6baf2e61f",
"WHCMSC",
"Woods Hole Coastal and Marine Science Center",
"YellowScan Mapper",
"aerial imagery",
"digital elevation models",
"elevation",
"geoscientificInformation",
"geospatial datasets",
"image collections",
"image mosaics",
"orthomosaics",
"remote sensing",
"structure from motion"
]
|
| modified | 2025-03-17T00:00:00Z |
| publisher |
{
"name": "U.S. Geological Survey",
"@type": "org:Organization"
}
|
| spatial | -70.64526212, 41.58256432, -70.63592988, 41.58906136 |
| theme |
[
"geospatial"
]
|
| title | Lidar and photogrammetry point clouds with supporting imagery and GPS information collected during UAS operations at Great Sippewissett Marsh, Cape Cod, Massachusetts in November 2022 |