2018 - 2019 USGS Lidar DEM: GA Statewide
OCM Partners
Data Set
(DS)
| ID: 75831
| Published / External
Created: 2025-05-12
|
Last Modified: 2025-05-12
Project (PRJ) | ID: 49404
ID: 75831
Data Set (DS)
* Discovery• First Pass
» Metadata Rubric
Item Identification
* » Title | 2018 - 2019 USGS Lidar DEM: GA Statewide |
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Short Name | ga2018_statewide_dem_m10328_metadata |
* Status | Completed |
Creation Date | 2018 |
Revision Date | |
• Publication Date | Unknown |
* » Abstract |
USGS task order 140G0218F0420 required Winter, 2018/Spring, 2019 LiDAR surveys to be collected over 32,562 square miles covering part or all of 82 counties in Georgia and 3 partial counties in South Carolina in support of the State of Georgia and the USGS 3DEP program. Aerial LiDAR data for this task order was planned, acquired, processed and produced at an aggregate nominal pulse spacing (ANPS) of 0.71 meters and in compliance with USGS National Geospatial Program LiDAR Base Specification version 1.3. This metadata record supports the data entry in the NOAA Digital Coast Data Access Viewer (DAV). For this data set, the DAV is leveraging the GeoTIFF files hosted by USGS on Amazon Web Services. |
* Purpose |
Aerial lidar was collected to support the mapping efforts of individual counties in the State of Georgia and the USGS 3DEP program. |
Notes | |
Other Citation Details | |
• Supplemental Information |
Raster File Type = TIFF Bit Depth/Pixel Type = 32-bit float Raster Cell Size = 1 meter Interpolation or Resampling Technique = Bi-linear Interpolation Required Vertical Accuracy = Lidar Base Spec v1.3 - Class IV |
DOI (Digital Object Identifier) | |
DOI Registration Authority | |
DOI Issue Date |
Keywords
Theme Keywords
Thesaurus | Keyword |
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Global Change Master Directory (GCMD) Science Keywords | EARTH SCIENCE > LAND SURFACE > TOPOGRAPHY > TERRAIN ELEVATION |
Global Change Master Directory (GCMD) Science Keywords | EARTH SCIENCE > LAND SURFACE > TOPOGRAPHY > TERRAIN ELEVATION > DIGITAL ELEVATION/TERRAIN MODEL (DEM) |
Global Change Master Directory (GCMD) Science Keywords | EARTH SCIENCE > OCEANS > COASTAL PROCESSES > COASTAL ELEVATION |
ISO 19115 Topic Category | elevation |
Temporal Keywords
Thesaurus | Keyword |
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* Spatial Keywords
Thesaurus | Keyword |
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Global Change Master Directory (GCMD) Location Keywords | CONTINENT |
Global Change Master Directory (GCMD) Location Keywords | CONTINENT > NORTH AMERICA > UNITED STATES OF AMERICA |
Global Change Master Directory (GCMD) Location Keywords | CONTINENT > NORTH AMERICA > UNITED STATES OF AMERICA > GEORGIA |
Global Change Master Directory (GCMD) Location Keywords | CONTINENT > NORTH AMERICA > UNITED STATES OF AMERICA > SOUTH CAROLINA |
Global Change Master Directory (GCMD) Location Keywords | VERTICAL LOCATION > LAND SURFACE |
Stratum Keywords
Thesaurus | Keyword |
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Instrument Keywords
Thesaurus | Keyword |
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Global Change Master Directory (GCMD) Instrument Keywords | LIDAR > Light Detection and Ranging |
Platform Keywords
Thesaurus | Keyword |
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Global Change Master Directory (GCMD) Platform Keywords | Airplane > Airplane |
Physical Location
• » Organization | Office for Coastal Management |
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• » City | Charleston |
• » State/Province | SC |
• Country | |
• » Location Description |
Data Set Information
* Data Set Scope Code | Data Set |
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• Data Set Type | Elevation |
• Maintenance Frequency | Unknown |
Maintenance Note | |
» Data Presentation Form | Model (digital) |
• Entity Attribute Overview | |
Entity Attribute Detail Citation | |
Entity Attribute Detail URL | |
Distribution Liability |
Any conclusions drawn from the analysis of this information are not the responsibility of NOAA, the Office for Coastal Management or its partners. |
Data Set Credit | The Atlantic Group, LLC, USGS |
Support Roles
* » Support Role | Data Steward |
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* » Date Effective From | 2025 |
Date Effective To | |
Organization | NOAA Office for Coastal Management (NOAA/OCM) |
Address |
2234 South Hobson Ave Charleston, SC 29405-2413 |
Email Address | coastal.info@noaa.gov |
Phone | (843) 740-1202 |
Fax | |
Mobile | |
URL | https://coast.noaa.gov |
Business Hours | |
Contact Instructions |
* » Support Role | Distributor |
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* » Date Effective From | 2025 |
Date Effective To | |
Organization | NOAA Office for Coastal Management (NOAA/OCM) |
Address |
2234 South Hobson Ave Charleston, SC 29405-2413 |
Email Address | coastal.info@noaa.gov |
Phone | (843) 740-1202 |
Fax | |
Mobile | |
URL | https://coast.noaa.gov |
Business Hours | |
Contact Instructions |
* » Support Role | Distributor |
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* » Date Effective From | 2020 |
Date Effective To | |
Organization | U.S. Geological Survey |
Address |
12201 Sunrise Valley Drive Reston, VA 20191 USA |
Email Address | |
Phone | |
Fax | |
Mobile | |
URL | https://usgs.gov |
Business Hours | |
Contact Instructions |
* » Support Role | Metadata Contact |
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* » Date Effective From | 2025 |
Date Effective To | |
Organization | NOAA Office for Coastal Management (NOAA/OCM) |
Address |
2234 South Hobson Ave Charleston, SC 29405-2413 |
Email Address | coastal.info@noaa.gov |
Phone | (843) 740-1202 |
Fax | |
Mobile | |
URL | https://coast.noaa.gov |
Business Hours | |
Contact Instructions |
* » Support Role | Point of Contact |
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* » Date Effective From | 2025 |
Date Effective To | |
Organization | NOAA Office for Coastal Management (NOAA/OCM) |
Address |
2234 South Hobson Ave Charleston, SC 29405-2413 |
Email Address | coastal.info@noaa.gov |
Phone | (843) 740-1202 |
Fax | |
Mobile | |
URL | https://coast.noaa.gov |
Business Hours | |
Contact Instructions |
* » Support Role | |
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* » Date Effective From | |
Date Effective To | |
* » Contact | |
* Contact Instructions |
* » Support Role | |
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* » Date Effective From | |
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* » Contact | |
* Contact Instructions |
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* » Date Effective From | |
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* » Contact | |
* Contact Instructions |
Extents
Currentness Reference | Ground Condition |
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Extent Group 1
Extent Description |
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Extent Group 1 / Geographic Area 1
* » W° Bound | -85.619201 |
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* » E° Bound | -80.819437 |
* » N° Bound | 35.011998 |
* » S° Bound | 30.348528 |
* » Description |
Extent Group 1 / Vertical Extent
EPSG Code | |
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Vertical Minimum | |
Vertical Maximum |
Extent Group 1 / Time Frame 1
* » Time Frame Type | Range |
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* » Start | 2019-01-27 |
End | 2019-04-22 |
Alternate Start As Of Info | |
Alternate End As Of Info | |
Description |
Dates of collection for B1. |
Extent Group 1 / Time Frame 2
* » Time Frame Type | Range |
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* » Start | 2019-01-28 |
End | 2019-04-24 |
Alternate Start As Of Info | |
Alternate End As Of Info | |
Description |
Dates of collection for B2. |
Extent Group 1 / Time Frame 3
* » Time Frame Type | Range |
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* » Start | 2019-03-23 |
End | 2019-04-24 |
Alternate Start As Of Info | |
Alternate End As Of Info | |
Description |
Dates of collection for B3 (Block 3). |
Extent Group 1 / Time Frame 4
* » Time Frame Type | Range |
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* » Start | 2018-11-29 |
End | 2019-04-22 |
Alternate Start As Of Info | |
Alternate End As Of Info | |
Description |
Dates of collection for B6 (Block 7). |
Extent Group 1 / Time Frame 5
* » Time Frame Type | Range |
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* » Start | 2018-11-28 |
End | 2019-01-28 |
Alternate Start As Of Info | |
Alternate End As Of Info | |
Description |
Dates of collection for B8 (Block 5). |
Extent Group 1 / Time Frame 6
* » Time Frame Type | Range |
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* » Start | 2018-12-05 |
End | 2019-03-18 |
Alternate Start As Of Info | |
Alternate End As Of Info | |
Description |
Dates of collection for B9 (Block 6). |
Extent Group 1 / Time Frame 7
* » Time Frame Type | Range |
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* » Start | 2019-02-08 |
End | 2019-04-23 |
Alternate Start As Of Info | |
Alternate End As Of Info | |
Description |
Dates of collection for B10 (Block 9). |
Extent Group 1 / Time Frame 8
* » Time Frame Type | Range |
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* » Start | 2019-01-26 |
End | 2019-04-23 |
Alternate Start As Of Info | |
Alternate End As Of Info | |
Description |
Dates of collection for B11(Block 8). |
Extent Group 1 / Time Frame 9
* » Time Frame Type | Range |
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* » Start | 2019-03-29 |
End | 2019-04-16 |
Alternate Start As Of Info | |
Alternate End As Of Info | |
Description |
Dates of collection for B4 (Block 4A). |
Extent Group 1 / Time Frame 10
* » Time Frame Type | Range |
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* » Start | 2019-01-22 |
End | 2019-04-23 |
Alternate Start As Of Info | |
Alternate End As Of Info | |
Description |
Date of collection for B5 (Block 11). |
Extent Group 1 / Time Frame 11
* » Time Frame Type | Range |
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* » Start | 2018-11-27 |
End | 2019-04-03 |
Alternate Start As Of Info | |
Alternate End As Of Info | |
Description |
Dates of collection for B7 (Block 4B). |
Extent Group 1 / Time Frame 12
* » Time Frame Type | Range |
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* » Start | 2019-02-08 |
End | 2019-04-23 |
Alternate Start As Of Info | |
Alternate End As Of Info | |
Description |
Dates of collection for B12 (Block 10). |
Spatial Information
Spatial Resolution
Angular Distance | |
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Horizontal Distance | |
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Vertical Distance | |
Vertical Distance Units | |
Equivalent Scale Denominator | |
Level of Detail Description |
Spatial Representation
Grid Representation Used? | Yes |
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Vector Representation Used? | No |
Text / Table Representation Used? | No |
TIN Representation Used? | No |
Stereo Model Representation Used? | No |
Video Representation Used? | No |
Grid Representation
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Vector Representation
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Reference Systems
Reference System
EPSG Code | EPSG:5703 | ||||||||||||||||||||||||||||
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Reference System
EPSG Code | EPSG:6350 | ||||||||||||||||||||||||||||
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Reference System
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Access Information
Data License | |
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Data License URL | |
Data License Statement | |
* » Security Class | Unclassified |
* Security Classification System | |
Security Handling Description | |
• Data Access Policy | |
» Data Access Procedure |
Data is available online for bulk and custom downloads. |
• » Data Access Constraints |
No restrictions apply to this data, the data represented is the result of data collection and processing per contract specifications and indicates the general existing conditions at the time of the data collection. As such, it is only valid for its intended use, content, time, and accuracy specifications. The user is responsible for the results of any application of the data for other than its intended purpose. |
• Data Use Constraints |
None. However, users should be aware that temporal changes may have occurred since this dataset was collected and that some parts of these data may no longer represent actual surface conditions. Users should not use these data for critical applications without a full awareness of the limitations of the data. Acknowledgment of owner would be appreciated for products derived from these data. The data represented is the result of data collection and processing per contract specifications and indicates the general existing conditions at the time of the data collection. As such, it is only valid for its intended use, content, time, and accuracy specifications. The user is responsible for the results of any application of the data for other than its intended purpose. |
Metadata Access Constraints | |
Metadata Use Constraints |
Distribution Information
Start Date | 2025 |
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End Date | Present |
» Download URL | https://coast.noaa.gov/dataviewer/#/lidar/search/where:ID=10328/details/10328 |
Distributor | NOAA Office for Coastal Management (NOAA/OCM) (2025 - Present) |
File Name | Customized Download |
Description |
Create custom data files by choosing data area, map projection, file format, etc. A new metadata will be produced to reflect your request using this record as a base. |
File Date/Time | |
File Type (Deprecated) | Zip |
Distribution Format | Not Applicable |
File Size | |
Application Version | |
Compression | Zip |
Review Status |
Start Date | 2022 |
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End Date | Present |
» Download URL | https://prd-tnm.s3.amazonaws.com/index.html?prefix=StagedProducts/Elevation/OPR/Projects/GA_Statewide_2018_B18_DRRA/ |
Distributor | U.S. Geological Survey (2020 - Present) |
File Name | Bulk Download |
Description |
Bulk download of data files in GeoTIFF format, based on a horizontal datum/projection of Albers Conic, NAD83(2011), meters (EPSG: 6350) and a vertical datum of NAVD88 (GEOID12B) and units in meters (EPSG: 5703). |
File Date/Time | |
File Type (Deprecated) | LAZ |
Distribution Format | GeoTIFF |
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Archive Information
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URLs
URL | https://coast.noaa.gov/dataviewer/ |
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Name | NOAA's Office for Coastal Management (OCM) Data Access Viewer (DAV) |
URL Type | Online Resource |
File Resource Format | HTML |
Description |
The Data Access Viewer (DAV) allows a user to search for and download elevation, imagery, and land cover data for the coastal U.S. and its territories. The data, hosted by the NOAA Office for Coastal Management, can be customized and requested for free download through a checkout interface. An email provides a link to the customized data, while the original data set is available through a link within the viewer. |
URL | https://rockyweb.usgs.gov/vdelivery/Datasets/Staged/Elevation/metadata/GA_Statewide_2018_B18_DRRA/ |
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Name | USGS Provided Data |
URL Type | Online Resource |
File Resource Format | |
Description |
Link to the additional information available for this data set from the USGS. This information includes reports, tile index shapefiles, and hydro breaklines. |
URL | https://rockyweb.usgs.gov/vdelivery/Datasets/Staged/Elevation/metadata/GA_Statewide_2018_B18_DRRA/GA_Statewide_2018_B18_DRRA_WP_Report.pdf |
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Name | USGS Work Package Report |
URL Type | Online Resource |
File Resource Format | |
Description |
Link to the USGS work package report that provides project information, vertical accuracy results, classifications used, sensors used, and work unit information. |
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Activity Log
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Issues
Issue Date | 2023-01-24 |
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Author | Waters, Kirk |
Issue |
There is misclassification of vegetation as ground. These misclassified points are marked as overlap. Including the overlap flagged points when deriving ground products can have poor and unusable results. |
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Technical Environment
Description |
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Data Quality
Representativeness | |
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Accuracy | |
Analytical Accuracy | |
Horizontal Positional Accuracy | |
Vertical Positional Accuracy |
This data set was produced to meet ASPRS Positional Accuracy Standard for Digital Geospatial Data (2014) for a 10-cm RMSEz Vertical Accuracy Class. The terms NVA (Non-vegetated Vertical Accuracy) and VVA (Vegetated Vertical Accuracy) are from the ASPRS Positional Accuracy Standards for Digital Geospatial Data v1.3 (2014). The term NVA refers to assessments in clear, open areas (which typically produce only single lidar returns); the term VVA refers to assessments in vegetated areas (typically characterized by multiple return lidar). USGS DEM Determined Vertical Accuracy Non-Vegetated Vertical Accuracy (NVA) = 7.04 cm RMSE Vegetated Vertical Accuracy (VVA) = 19.77 cm at the 95th Percentile
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Quantitation Limits | |
Bias | |
Comparability | |
Completeness Measure | |
Precision | |
Analytical Precision | |
Field Precision | |
Sensitivity | |
Detection Limit | |
Completeness Report |
Area of interest covers project area. A visual qualitative assessment was performed to ensure data completeness. No void areas or missing data exist. The raw point cloud is of good quality and data passes NVA specifications. Void areas (i.e., areas outside the project boundary but within the tiling scheme) are coded using a unique NODATA value. This value is identified in the appropriate location within the file header. |
Conceptual Consistency |
All lidar data and lidar derived data covers the entire area of interest. All lidar point cloud tiles show no edge artifacts or mismatches from tile to tile. Void areas (i.e. areas outside the project boundary but within the tiling scheme) are coded using a unique NODATA value. This value is identified in the appropriate location within the file header. Data cover the entire area specified for this project.
Low confidence polygons have been delivered with this dataset. These polygons represent areas where heavy vegetation or inundated areas greatly diminish penetration of the lidar pulse, resulting in a bare earth surface that is potentially less accurate due to the lack of lidar returns from the ground beneath the vegetation or surface water. Low confidence polygons delineate areas where conformance to VVA standards may not be met. The low confidence polygons created for this dataset were delineated according to the criteria and assumptions outlined in the ASPRS Positional Accuracy Standards for Digital Geospatial Data (2014). Low confidence areas are identified using a ground density raster. All areas with a Nominal Ground Point Density less than the threshold of 0.5 pts/m2 are identified as low confidence cells in the ground density raster. The low confidence cells are exported to polygons and aggregated into larger shapes. Areas of expected low density in the ground, such as water or where buildings/structures have been removed, are deleted from the aggregated low confidence polygons. The size of all polygons is then calculated and polygons below the minimum size threshold of 5 acres are removed from the final low confidence polygon dataset. |
» Quality Control Procedures Employed |
Data Management
» Have Resources for Management of these Data Been Identified? | Yes |
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» Approximate Percentage of Budget for these Data Devoted to Data Management | Unknown |
» Do these Data Comply with the Data Access Directive? | Yes |
» Is Access to the Data Limited Based on an Approved Waiver? | |
» If Distributor (Data Hosting Service) is Needed, Please Indicate | |
» Approximate Delay Between Data Collection and Dissemination | |
» If Delay is Longer than Latency of Automated Processing, Indicate Under What Authority Data Access is Delayed | |
» Actual or Planned Long-Term Data Archive Location | NCEI-CO |
» Approximate Delay Between Data Collection and Archiving | |
» How Will the Data Be Protected from Accidental or Malicious Modification or Deletion Prior to Receipt by the Archive? |
Data is backed up to tape and to cloud storage. |
Lineage
» Lineage Statement |
The NOAA Office for Coastal Management (OCM) ingested references to the USGS Cloud Optimized GeoTIFF files hosted on Amazon Web Services (AWS) into the Digital Coast Data Access Viewer (DAV). The DAV accesses the DEM as it resides on AWS under the prd-tnm bucket. |
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Sources
Citation Title | USGS GeoTIFF Files on AWS |
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Contact Role Type | Publisher |
Contact Type | Organization |
Contact Name | USGS |
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Citation URL | https://prd-tnm.s3.amazonaws.com/index.html?prefix=StagedProducts/Elevation/OPR/Projects/GA_Statewide_2018_B18_DRRA/ |
Citation URL Name | USGS GeoTIFF Files |
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Process Steps
Process Step Number | 1 |
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» Description |
Aircraft and Sensor Information and Flight Plan Execution: Atlantic operated a Cessna (N732JE) outfitted with a Leica ALS70-HP LiDAR system during the collection of the project area. Atlantic acquired 212 passes of the AOI as a series of perpendicular and/or adjacent flight-lines executed in 25 flight missions conducted between February 8, 2019 and April 23, 2019. Onboard differential Global Navigation Satellite System (GNSS) unit(s) recorded sample aircraft positions at 2 hertz (Hz) or more frequency. LiDAR data was only acquired when a minimum of six (6) satellites were in view. Twenty-two (22) Continuously Operating Reference Stations (CORS) were used to control the LiDAR acquisition for the defined project area. |
Process Date/Time | 2019-04-23 00:00:00 |
Process Contact | |
Phone (Voice) | |
Email Address | |
Source |
Process Step Number | 2 |
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» Description |
Ground Control Survey: A total of 124 ground survey points were collected in support of this project, including 31 LiDAR Control Points (LCP), 46 Non-vegetated Vertical Accuracy (NVA) and 47 Vegetated Vertical Accuracy (VVA). Point cloud data accuracy was tested against a Triangulated Irregular Network (TIN) constructed from LiDAR points in clear and open areas. A clear and open area can be characterized with respect to topographic and ground cover variation such that a minimum of five (5) times the Nominal Pulse Spacing (NPS) exists with less than 1/3 of the RMSEZ deviation from a low-slope plane. Slopes that exceed ten (10) percent were avoided. Each land cover type representing ten (10) percent or more of the total project area were tested and reported with a VVA. In land cover categories other than dense urban areas, the tested points did not have obstructions forty-five (45) degrees above the horizon to ensure a satisfactory TIN surface. The VVA value is provided as a target. It is understood that in areas of dense vegetation, swamps, or extremely difficult terrain, this value may be exceeded. The NVA value is a requirement that must be met, regardless of any allowed “busts” in the VVA(s) for individual land cover types within the project. Checkpoints for each assessment (NVA and VVA) are required to be well-distributed throughout the land cover type, for the entire project area. |
Process Date/Time | 2019-04-23 00:00:00 |
Process Contact | |
Phone (Voice) | |
Email Address | |
Source |
Process Step Number | 3 |
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» Description |
LiDAR Point Cloud Generation: Atlantic used Leica software products to download the IPAS ABGNSS/IMU data and raw laser scan files from the airborne system. Waypoint Inertial Explorer is used to extract the raw IPAS ABGNSS/IMU data, which is further processed in combination with controlled base stations to provide the final Smoothed Best Estimate Trajectory (SBET) for each mission. The SBETs are combined with the raw laser scan files to export the LiDAR ASCII Standard (*.las) formatted swath point clouds. |
Process Date/Time | 2019-04-23 00:00:00 |
Process Contact | |
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Source |
Process Step Number | 4 |
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» Description |
LiDAR Calibration: Using a combination of GeoCue, TerraScan and TerraMatch; overlapping swath point clouds are corrected for any orientation or linear deviations to obtain the best fit swath-to-swath calibration. Relative calibration was evaluated using advanced plane-matching analysis and parameter corrections derived. This process was repeated interactively until residual errors between overlapping swaths, across all project missions, was reduced to ≤2cm. A final analysis of the calibrated lidar is preformed using a TerraMatch tie line report for an overall statistical model of the project area. Individual control point assessments for this project can be found in Section VI of this report. Upon completion of the data calibration, a complete set of elevation difference intensity rasters (dZ Orthos) are produced. A user-defined color ramp is applied depicting the offsets between overlapping swaths based on project specifications. The dZ orthos provide an opportunity to review the data calibration in a qualitative manner. Atlantic assigns green to all offset values that fall below the required RMSDz requirement of the project. A yellow color is assigned for offsets that fall between the RMSDz value and 1.5x of that value. Finally, red values are assigned to all values that fall beyond 1.5x of the RMSDz requirements of the project. |
Process Date/Time | 2021-12-01 00:00:00 |
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Process Step Number | 5 |
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LiDAR Classification: Multiple automated filtering routines are applied to the calibrated LiDAR point cloud identifying and extracting bare-earth and above ground features. GeoCue, TerraScan, and TerraModeler software was used for the initial batch processing, visual inspection and any manual editing of the LiDAR point clouds. Atlantic utilized collected breakline data to perform classification for class 9 (Water). Code Description 1 Processed but unclassified 2 Bare-earth ground 3 Low Vegetation (0.5 - 5 feet) 4 Medium Vegetation (5 - 20 feet) 5 High Vegetation (>20 feet) 6 Building footprints 7 Low Noise 9 Water 17 Bridge Decks 18 High Noise 20 Ignored ground (breakline proximity) 21 Snow (where reliable identifiable) 22 Temporal Exclusion (typically non-favored data in intertidal zones) . |
Process Date/Time | 2022-03-22 00:00:00 |
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Process Step Number | 6 |
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LiDAR Intensity Imagery LiDAR intensity imagery was created from the final calibrated and classified lidar point cloud. Intensity images were produced from all classified points and posted to a 1-meter cell size. Intensity images were cut to match the tile index and its corresponding tile names and delivered in GeoTIFF format. |
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Process Contact | U.S. Geological Survey |
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Process Step Number | 7 |
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Hydro-line Collection/Conflation Hydro breaklines were compiled using LiDAR intensity data and surface terrain models of the entire project area. After the collection, all delineated hydro features were validated for monotonicity and vertical variance. This procedure ensures that no points were floating above ground. Hydro-lines were then encoded into the LiDAR surface and used to hydro-enforce/flatten all significant water bodies. These final hydro-lines were then used in the production of bare Earth digital models to hydro flatten significant water bodies. This product was delivered as an ESRI geodatabase for the entire project area. |
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Process Step Number | 8 |
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Bare-Earth Surface Digital Elevation Model (DEM) Bare earth Digital Elevation Models (DEMs) were derived using the hydro-lines and bare earth (ground) LiDAR points. All DEMs were created with a grid spacing of 1 meter. DEMs for this project were cut to match the tile index and its corresponding tile names and delivered in 32-bit floating point .img format. |
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Process Step Number | 9 |
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The NOAA Office for Coastal Management (OCM) extracted the GeoTIFF files URL references and ingested them into the NOAA Digital Coast Data Access Viewer (DAV). No changes were made to the data. The DAV will access the DEM as it resides on Amazon Web Services (AWS) under the pr-tnm container. |
Process Date/Time | 2025-05-12 00:00:00 |
Process Contact | Office for Coastal Management (OCM) |
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Data Set (DS) | Cross Reference |
2018 - 2019 USGS Lidar: GA Statewide |
Catalog Details
Catalog Item ID | 75831 |
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Metadata Record Created By | Rebecca Mataosky |
Metadata Record Created | 2025-05-12 14:04+0000 |
Metadata Record Last Modified By | Rebecca Mataosky |
» Metadata Record Last Modified | 2025-05-12 20:44+0000 |
Metadata Record Published | 2025-05-12 |
Owner Org | OCMP |
Metadata Publication Status | Published Externally |
Do Not Publish? | N |
Metadata Workflow State | Published / External |
Metadata Last Review Date | 2022-05-20 |
Metadata Review Frequency | 1 Year |
Metadata Next Review Date | 2023-05-20 |
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