Item talk:Q64977

From geokb

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     "name": "EAARL coastal topography \u2014 Northern Gulf of Mexico, 2007: Bare earth",
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     "abstract": "These remotely sensed, geographically referenced elevation measurements of\u00a0Lidar-derived bare earth (BE) topography were produced as a collaborative effort between the\u00a0U.S.\u00a0Geological Survey (USGS), Florida Integrated Science Center (FISC),\u00a0St.\u00a0Petersburg,\u00a0FL; the National Park Service (NPS), Gulf Coast Network, Lafayette,\u00a0LA; and the National Aeronautics and Space Administration (NASA), Wallops Flight Facility,\u00a0VA.The purpose of this project is to provide highly detailed and accurate datasets of select barrier islands and peninsular regions of Louisiana, Mississippi, Alabama, and Florida, acquired on June 27-30, 2007. The datasets are made available for use as a management tool to research scientists and natural resource managers. An innovative airborne Lidar instrument originally developed at the\u00a0NASA\u00a0Wallops Flight Facility, and known as the Experimental Advanced Airborne Research\u00a0Lidar\u00a0(EAARL), was used during data acquisition. The\u00a0EAARL\u00a0system is a raster-scanning, waveform-resolving, green-wavelength (532-nanometer)\u00a0Lidar\u00a0designed to map near-shore bathymetry, topography, and vegetation structure simultaneously. The\u00a0EAARL\u00a0sensor suite includes the raster-scanning, water-penetrating full-waveform adaptive\u00a0Lidar, a down-looking red-green-blue (RGB) digital camera, a high-resolution multi-spectral color infrared (CIR) camera, two precision dual-frequency kinematic carrier-phase\u00a0GPS\u00a0receivers, and an integrated miniature digital inertial measurement unit which provide for submeter georeferencing of each laser sample. The nominal\u00a0EAARL\u00a0platform is a twin-engine Cessna 310 aircraft, but the instrument may be deployed on a range of light aircraft. A single pilot, a\u00a0Lidar\u00a0operator, and a data analyst constitute the crew for most survey operations. This sensor has the potential to make significant contributions in measuring sub-aerial and submarine coastal topography within cross-environmental surveys.Elevation measurements were collected over the survey area using the\u00a0EAARL\u00a0system and the resulting data were then processed using the Airborne Lidar Processing System (ALPS), a custom-built processing system developed in a\u00a0NASA-USGS\u00a0collaboration.\u00a0ALPS\u00a0supports the exploration and processing of\u00a0Lidar\u00a0data in an interactive or batch mode. Modules for presurvey flight line definition, flight path plotting,\u00a0Lidar\u00a0raster and waveform investigation, and digital camera image playback have been developed. Processing algorithms have been developed to extract the range to the first and last significant return within each waveform.\u00a0ALPS\u00a0is used routinely to create maps that represent submerged or sub-aerial topography. Specialized filtering algorithms have been implemented to determine the 'bare earth' under vegetation from a point cloud of last return elevations.",
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