Low-altitude aerial imagery obtained with unmanned aerial systems (UAS) flights over Black Beach, Falmouth, Massachusetts on 18 March 2016 (JPEG images)

Imagery acquired with unmanned aerial systems (UAS) and coupled with structure from motion (SfM) photogrammetry can produce high-resolution topographic and visual reflectance datasets that rival or exceed lidar and orthoimagery. These new techniques are particularly useful for data collection of coastal systems, which requires high temporal and spatial resolution datasets. The U.S. Geological Survey worked in collaboration with members of the Marine Biological Laboratory and Woods Hole Analytics at Black Beach, in Falmouth, Massachusetts to explore scientific research demands on UAS technology for topographic and habitat mapping applications. This project explored the application of consumer-grade UAS platforms as a cost-effective alternative to lidar and aerial/satellite imagery to support coastal studies requiring high-resolution elevation or remote sensing data. A small UAS was used to capture low-altitude photographs and GPS devices were used to survey reference points. These data were processed in an SfM workflow to create an elevation point cloud, an orthomosaic image, and a digital elevation model.

Data and Resources

Field Value
accessLevel public
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identifier USGS:59b00e05e4b020cdf7d4db3e
metadata_type geospatial
modified 20211119
old-spatial -70.6452, 41.5826, -70.639, 41.5871
publisher U.S. Geological Survey
publisher_hierarchy Department of the Interior > U.S. Geological Survey
resource-type Dataset
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spatial {"type": "Polygon", "coordinates": [[[-70.6452, 41.5826], [-70.6452, 41.5871], [ -70.639, 41.5871], [ -70.639, 41.5826], [-70.6452, 41.5826]]]}
theme {geospatial}
Groups
  • AmeriGEOSS
  • National Provider
  • North America
Tags
  • aerial-images
  • aerial-photography
  • airborne-imagery
  • amerigeo
  • amerigeoss
  • atlantic-ocean
  • barnstable
  • black-beach
  • buzzards-bay
  • cape-cod
  • ckan
  • cmgp
  • coastal-and-marine-geology-program
  • dji-phantom-3
  • drone
  • falmouth
  • field-activity-number-2016-010-fa
  • geo
  • geospatial-datasets
  • geoss
  • great-sippewissett-inlet
  • great-sippewissett-marsh
  • ground-control-point
  • imagerybasemapsearthcover
  • jpeg-images
  • massachusetts
  • national
  • north-america
  • targets
  • u-s-geological-survey
  • uas
  • united-states
  • unmanned-aerial-system
  • usgs
  • usgs-59b00e05e4b020cdf7d4db3e
  • whcmsc
  • woods-hole-coastal-and-marine-science-center
isopen False
license_id notspecified
license_title License not specified
maintainer Emily J. Sturdivant
maintainer_email esturdivant@usgs.gov
metadata_created 2025-11-20T11:44:15.019745
metadata_modified 2025-11-20T11:44:15.019749
notes Imagery acquired with unmanned aerial systems (UAS) and coupled with structure from motion (SfM) photogrammetry can produce high-resolution topographic and visual reflectance datasets that rival or exceed lidar and orthoimagery. These new techniques are particularly useful for data collection of coastal systems, which requires high temporal and spatial resolution datasets. The U.S. Geological Survey worked in collaboration with members of the Marine Biological Laboratory and Woods Hole Analytics at Black Beach, in Falmouth, Massachusetts to explore scientific research demands on UAS technology for topographic and habitat mapping applications. This project explored the application of consumer-grade UAS platforms as a cost-effective alternative to lidar and aerial/satellite imagery to support coastal studies requiring high-resolution elevation or remote sensing data. A small UAS was used to capture low-altitude photographs and GPS devices were used to survey reference points. These data were processed in an SfM workflow to create an elevation point cloud, an orthomosaic image, and a digital elevation model.
num_resources 2
num_tags 37
title Low-altitude aerial imagery obtained with unmanned aerial systems (UAS) flights over Black Beach, Falmouth, Massachusetts on 18 March 2016 (JPEG images)