2017 Lidar DEM: Town of York, ME
OCM Partners
Data Set
(DS)
| ID: 50785
| Published / External
Created: 2017-12-15
|
Last Modified: 2024-01-10
Project (PRJ) | ID: 49404
ID: 50785
Data Set (DS)
* Discovery• First Pass
» Metadata Rubric
Item Identification
* » Title | 2017 Lidar DEM: Town of York, ME |
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Short Name | me2017_york_dem_m6367 |
* Status | Completed |
Creation Date | |
Revision Date | |
• Publication Date | 2017 |
* » Abstract |
Extent: The project area covers 76 sq. miles of the Town of York, ME. Ground Conditions During Flight: The project was flown in May 2017 during leaf off conditions and when there was no snow on the ground. The project area required LiDAR to be collected on 8 points/sq. meter equivalent to 4 points/sq. meter single swath or better and processed to meet the bare earth vertical accuracy as described with LiDAR Base Specifications v1.2. Project deliverables include: raw point cloud by swath, classified point cloud, Bare-Earth Surface (Raster DEM) 0.5m resolution, breaklines used for hydro-flattening Raw point cloud data is delivered by individual swath. All other deliverables are delivered in a 1050m x 1050m tiling scheme. In addition to these bare earth Digital Elevation Model (DEM) data, the lidar point data that these DEMs were created from and the breaklines, are also available. These data are available for custom download at the link provided in the URL section of this metadata record. |
* Purpose |
Provide a high resolution Raster Digital Elevation Model with 0.5 meter grid spacing and hydro-flattened breaklines. The purpose for developing the data sets for this project are for improving elevation data over the Town of York providing the greater community, such as recreation and science, with high resolution data, establishing baseline high-resolution topography Hydro Flattened breaklines are used to provide consistent elevations to a bare earth surface model. This allows the user to create ESRI Raster DEM, Triangular Irregular Networks and fbare earth Classified LiDAR LAS files. |
Notes | |
Other Citation Details | |
• Supplemental Information |
Contractor: Aeroptic, LLC. All acquisition and calibration and Ground control was completed by the prime contractor. Post processing and generation of deliverables was provided by Primus Consultants, LLC. |
DOI (Digital Object Identifier) | |
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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 > OCEANS > COASTAL PROCESSES > COASTAL ELEVATION |
None | bare earth |
None | bare ground |
None | DEM |
None | Light Detection and Ranging |
Temporal Keywords
Thesaurus | Keyword |
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None | 2017 |
None | May |
* Spatial Keywords
Thesaurus | Keyword |
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Global Change Master Directory (GCMD) | North America>United States>Maine |
Stratum Keywords
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Platform Keywords
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Physical Location
• » Organization | Office for Coastal Management |
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• » City | Charleston |
• » State/Province | SC |
• Country | US |
• » Location Description |
Data Set Information
* Data Set Scope Code | Data Set |
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• Data Set Type | Elevation |
• Maintenance Frequency | None Planned |
Maintenance Note | |
» Data Presentation Form | Model (digital) |
• Entity Attribute Overview |
Bare Earth classified LIDAR data with hydro flattened breaklines with a 0.5 meter pixel. No data values outside of the project area. |
Entity Attribute Detail Citation |
All deliverables meet specifications in contract. |
Entity Attribute Detail URL | |
Distribution Liability |
The Town of York shall not be held liable for improper or incorrect use of the data described and/or contained herein. These data and related graphics, if available, are not legal documents and are not intended to be used as such. These data are not of survey quality and not intended to be used for survey purposes. The information contained in these data is dynamic and may change over time. The data are not better than the original sources from which they were derived. It is the responsibility of the data user to use the data appropriately and consistent within the limitations of geospatial data in general and these data in particular. The related graphics are intended to aid the data user in acquiring relevant data; it is not appropriate to use the related graphics as data. The Town of York give no warranty, expressed or implied, as to the accuracy, reliability, or completeness of these data. It is strongly recommended that these data be directly acquired from an Town of York source and not indirectly through other sources, which may have changed the data in some way. Although these data have been processed successfully on computer systems at the Town of York, no warranty expressed or implied is made regarding the utility of the data on another system or for general or scientific purposes, nor shall the act of distribution constitute any such warranty. This disclaimer applies both to individual use of the data and aggregate use with other data. User should be aware that temporal changes may have occurred since this data set was collected and that some parts of this data may no longer represent actual surface conditions.In no event shall the creators, custodians, or distributors of these data be liable for any damages arising out of its use, or from the inability of the customer to use these data for their intended. Any conclusions drawn from the analysis of this information are not the responsibility of Aeroptic, LLC, Primus Consultants, LLC , the town of York, ME, the NOAA Office for Coastal Management, or its partners. |
Data Set Credit | Aeroptic, LLC, Primus Consultants, LLC , the Town of York, ME |
Support Roles
* » Support Role | Data Steward |
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* » Date Effective From | 2017-12-11 |
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 |
Telephone: 843-740-1202 Email: coastal.info@noaa.gov |
* » Support Role | Distributor |
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* » Date Effective From | 2017-12-11 |
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 |
Telephone: 843-740-1202 Email: coastal.info@noaa.gov |
* » Support Role | Metadata Contact |
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* » Date Effective From | 2017-12-11 |
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 |
Telephone: 843-740-1202 Email: coastal.info@noaa.gov |
* » Support Role | Originator |
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* » Date Effective From | 2017-12-11 |
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 |
Telephone: 843-740-1202 Email: coastal.info@noaa.gov |
* » Support Role | Point of Contact |
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* » Date Effective From | 2017-12-11 |
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 |
Telephone: 843-740-1202 Email: coastal.info@noaa.gov |
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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 | -70.772045 |
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* » E° Bound | -70.565639 |
* » N° Bound | 43.268821 |
* » S° Bound | 43.07034 |
* » Description |
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Extent Group 1 / Time Frame 1
* » Time Frame Type | Range |
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* » Start | 2017-05-15 |
End | 2017-05-16 |
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Access Information
Data License | |
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Data License Statement | |
* » Security Class | Unclassified |
* Security Classification System | |
Security Handling Description | |
• Data Access Policy | |
» Data Access Procedure |
Users may access the data from two links. Custom download and bulk download options are available. |
• » Data Access Constraints |
None |
• Data Use Constraints |
Users should be aware that temporal changes may have occurred since this data set 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 its limitations. |
Metadata Access Constraints | |
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Distribution Information
Start Date | |
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» Download URL | https://coast.noaa.gov/dataviewer/#/lidar/search/where:ID=6367 |
Distributor | NOAA Office for Coastal Management (NOAA/OCM) (2017-12-11 - Present) |
File Name | |
Description |
Link to custom download points, grids, or contours from the Data Access Viewer (DAV) |
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Compression | Zip |
Review Status |
Start Date | |
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» Download URL | https://noaa-nos-coastal-lidar-pds.s3.us-east-1.amazonaws.com/dem/ME_York_DEM_2017_6367/index.html |
Distributor | NOAA Office for Coastal Management (NOAA/OCM) (2017-12-11 - Present) |
File Name | |
Description |
Link to bulk download tif files |
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File Type (Deprecated) | GeoTIFF |
Distribution Format | GeoTIFF |
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URLs
URL | https://noaa-nos-coastal-lidar-pds.s3.amazonaws.com/laz/geoid12b/6368/supplemental/me2017_york_m6368.kmz |
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Name | Footprint |
URL Type | Browse Graphic |
File Resource Format | kmz |
Description |
This graphic displays the footprint for this lidar data set. |
URL | https://coast.noaa.gov/dataviewer/#/lidar/search/where:ID=6368 |
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Name | |
URL Type | Other |
File Resource Format | |
Description |
Link to custom download the lidar point data from the Data Access Viewer (DAV) that these DEMs were created from. |
URL | https://coast.noaa.gov/dataviewer |
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Name | |
URL Type | Online Resource |
File Resource Format | |
Description |
Link to the Data Access Viewer (DAV) where elevation, imagery, and land cover data are available for custom download. |
URL | https://coast.noaa.gov/dataregistry |
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Name | |
URL Type | Online Resource |
File Resource Format | |
Description |
Link to the Digital Coast Data where many types of coastal data are available for download. |
URL | https://coast.noaa.gov/ |
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Name | |
URL Type | Online Resource |
File Resource Format | |
Description |
Link to the NOAA Office for Coastal Management (OCM) homepage |
URL | https://noaa-nos-coastal-lidar-pds.s3.amazonaws.com/laz/geoid12b/6368/breaklines/ |
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URL Type | Online Resource |
File Resource Format | |
Description |
Link to the data set breaklines. |
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Technical Environment
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Data Quality
Representativeness | |
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Accuracy | |
Analytical Accuracy | |
Horizontal Positional Accuracy |
No information provided. |
Vertical Positional Accuracy |
0.16 meters AccuracyZ at 95% Confidence Interval (8 cm RMSE) The independent checkpoints were surveyed using GPS. Elevations from the unclassified LiDAR data surface and the classified LiDAR surface were measured for the x,y and z location for each check point. Elevations interpolated from the LiDAR surface were then compared to the elevation value of the surveyed control points. the RMSE was computed to be TBD meters. Accuracyz has been tested to meet =19.6 cm NVA at 95% confidence level using (RMSEz * 1.96000) as defined by the National Standards for Spatial Data Accuracy (NSSDA). A Survey Report of the check points and Absolute Accuracy Report is available from the owner. |
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Completeness Report |
A visual qualitative assessment was performed to ensure data completeness. No void areas or missing data exist. The classified las data is of good quality and data passes the specifications for USGS QL1 data. |
Conceptual Consistency | |
» Quality Control Procedures Employed |
Data Management
» Have Resources for Management of these Data Been Identified? | |
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» Do these Data Comply with the Data Access Directive? | |
» 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 |
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» Actual or Planned Long-Term Data Archive Location | |
» If World Data Center or Other, Specify | |
» If To Be Determined, Unable to Archive, or No Archiving Intended, Explain |
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» 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? |
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Process Steps
Process Step Number | 1 |
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» Description |
LIDAR Preprocessing: Leica Cloud Pro Point cloud Processor software was used in the post processing of the airborne GPS and inertial data that is critical to the positioning and orientation of the sensor during all flights. Leica Cloud Pro provides the smoothed best estimate of trajectory (SBET) that is necessary for Leica ALS post processor to develop the point cloud from the LiDAR missions. Calibration of the data is done using the Leica Cloud Pro software. The .las files are imported in, prepped, and spatially indexed. Ground control points/check points are imported and a QA/QC module is run. Relative calibration was evaluated using advanced plane-matching analysis and parameter corrections. Relative calibration was repeated iteratively until errors between overlapping swaths, across all project lifts, was reduced to ±16cm on planar surfaces within the area of interest. A flight line separation report is exported to a .jp2 file. Global Mapper is used to view the .jp2 file to determine if the data is within the client’s specifications. A control report was generated to assess the RMSE of check points and ensure compliance with QL1 specification. At this point this data is ready for analysis, classification, and filtering to generate a bare earth surface model in which the above ground features are removed from the data set. |
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Process Step Number | 2 |
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» Description |
LIDAR Postprocessing: Subsequent to pre-processing, data were then distributed as virtual tiles to experienced LiDAR analysts for localized automatic classification, manual editing, and peer-based QC checks. Supervisory QC monitoring of work in progress and completed editing ensured consistency of classification character and adherence to project requirements across the entire project. The point cloud was manipulated within TerraScan and TerraModeler software was used for the automated data classification, manual cleanup, and bare earth generation from this data. Classification of the point cloud to contract specifications: 1-Unclassified, 2-Bare-earth ground, 3-Low Vegetation, 4-Medium Vegetation,5-High Vegetation, 7- Low Noise, 9-Water, 10-Ignored Ground due to breakline proximity, and 11-Withheld, 17-Bridge decks, 18-High Noise. Project specific macros were used to classify the ground, the three types of vegetation and to remove the side overlap between parallel flight lines. Client defined vegetation height ranges are 0-0.5 m (low), 0.51 – 1.5m (medium) and 1.51m and above (high). All data was manually reviewed and any remaining artifacts removed using functionality provided by TerraScan and TerraModeler. After completion of classification and final QC approval, the NVA and VVA for the project are calculated. Sample areas for each land cover type present in the project was extracted and forwarded to the client, along with the results of the accuracy tests. Class 2 LiDAR was used to create a bare earth surface model. The surface model was then used to heads-up digitize 3D breaklines of inland streams and rivers with a 30 meter nominal width and inland ponds and lakes of 8,000 sq. meters or greater surface area. All data was processed in UTM NAD83 Zone 12, Meters. All ground (ASPRS Class 2) LiDAR data inside of the collected inland breaklines were then classified to water (ASPRS Class 9) using TerraScan macro functionality. A buffer of 0.7 meter was also used around each hydro flattened breakline feature. These points were moved from ground (ASPRS Class 2) to Ignored Ground (ASPRS Class 10). |
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Process Step Number | 3 |
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» Description |
Quality control by Aeroptic LLC completed independent QA/QC of the calibrated files, classified files and derivative products. QC module and other software was used validate the data sets for compliance with LiDAR Base Specifications v1.2. Outputs in included Data Check and Calibration Check Reports. Absolute Accuracy Reports for pre-and post-classified LiDAR date were also generated. All reports are on file with the owner. |
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Process Step Number | 4 |
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» Description |
Breakline:The LiDAR surface model was used to heads-up digitize 3D breaklines of inland streams and rivers with a 30 meter nominal width and Inland Ponds and Lakes of 8,000 sq. meters or greater surface area. all data was processed in UTM NAD83 Zone 19, Meters. All ground (ASPRS Class 2) LiDAR data inside of the collected inland breaklines were then classified to water (ASPRS Class 9)using TerraScan macro functionality. A buffer of 0.7 meter was also used around each hydro flattened feature. These points were moved from ground (ASPRS Class 2) to Ignored Ground (ASPRS Class 10). The breaklines were used to perform the hydrologic flattening of water bodies, and gradient hydrologic flattening of double line streams. Lakes, reservoirs and ponds, at a nominal minimum size of two (2) acres or greater, were compiled as closed polygons. The closed water bodies were collected at a constant elevation. Rivers and streams, at a nominal minimum width of 30.5 meters (100 feet), were compiled in the direction of flow with both sides of the stream maintaining an equal gradient elevation. |
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Process Step Number | 5 |
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» Description |
The NOAA Office for Coastal Management (OCM) received the point and raster DEM data from the Town of York, ME. The data were in UTM Zone 19 (NAD83) meters coordinates and NAVD88 (Geoid12a) elevations in meters. The rasters were at a 0.5 m grid spacing. OCM copied the raster files to database and https for Digital Coast storage and provisioning purposes. |
Process Date/Time | 2017-12-11 00:00:00 |
Process Contact | Office for Coastal Management (OCM) |
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Process Step Number | 6 |
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» Description |
In April 2019, after the data had been available for download from the Data Access Viewer for approximately one year, the NOAA Office for Coastal Management (OCM) determined that the elevation values in this data set were 1 to 1.5 m lower than valid elevations. After receiving the control point data from the Town of York, it appears that the point data were originally in WGS84 ellipsoid heights and GEOID12a was applied to convert to NAVD88. However, GEOID12a should be applied to NAD83 ellipsoid heights, not WGS84. Therefore, the files that were provided in NAVD88 had incorrect (too low) elevations. Using VDatum 3.9 via a python script, the DEM tiles' heights were transformed from their incorrect NAVD88 vertical datum back to their original ellipsoid heights. They were then correctly transformed from the WGS84 ellipsoid to NAVD88 Geoid 12a. |
Process Date/Time | 2019-04-25 00:00:00 |
Process Contact | Office for Coastal Management (OCM) |
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Acquisition Information
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FAQs
Date | 2017-12-11 00:00:00 |
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Author | NOAA Office for Coastal Management |
Question |
What are the USGS lidar fields for this dataset? These lidar specific fields have been added to this section because there are no appropriate fields to store their information. Stored here to not lose the information. |
Answer |
</ldrinfo> -<ldraccur> <ldrchacc>0.1</ldrchacc> <rawnva>To be determined</rawnva> <rawnvan>41</rawnvan> <clsnva>To be determined</clsnva> <clsnvan>41</clsnvan> <clsvva>To be determined</clsvva> <clsvvan>33</clsvvan> </ldraccur> -<lasinfo> <lasver>1.4</lasver> <lasprf>6</lasprf> <laswheld>Withheld (ignore) points were identified in these files using the standard LAS withheld bit </laswheld> <lasolap>Swath "overage" points were not identified in these files using the standard overlap bit</lasolap> <lasintr>11-bit</lasintr> -<lasclass> <clascode>1</clascode> <clasitem>Undetermined/Unclassified</clasitem> </lasclass> -<lasclass> <clascode>2</clascode> <clasitem>Bare Earth</clasitem> </lasclass> -<lasclass> <clascode>3</clascode> <clasitem>Low Vegetation</clasitem> </lasclass> -<lasclass> <clascode>4</clascode> <clasitem>Medium Vegetation</clasitem> </lasclass> -<lasclass> <clascode>5</clascode> <clasitem>High Vegetation</clasitem> </lasclass> -<lasclass> <clascode>7</clascode> <clasitem>Low Noise (manually identified)</clasitem> </lasclass> -<lasclass> <clascode>9</clascode> <clasitem>Water</clasitem> </lasclass> -<lasclass> <clascode>10</clascode> <clasitem>Ignored Ground (breakline proximity)</clasitem> </lasclass> -<lasclass> <clascode>11</clascode> <clasitem>Withheld</clasitem> </lasclass> -<lasclass> <clascode>17</clascode> <clasitem>Bridge decks</clasitem> </lasclass> -<lasclass> <clascode>18</clascode> <clasitem>High noise</clasitem> </lasclass> </lasinfo> </lidar> |
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Catalog Details
Catalog Item ID | 50785 |
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Metadata Record Created By | Rebecca Mataosky |
Metadata Record Created | 2017-12-15 13:28+0000 |
Metadata Record Last Modified By | Kirk Waters |
» Metadata Record Last Modified | 2024-01-10 18:58+0000 |
Metadata Record Published | 2024-01-10 |
Owner Org | OCMP |
Metadata Publication Status | Published Externally |
Do Not Publish? | N |
Metadata Workflow State | Published / External |
Metadata Last Review Date | 2022-03-16 |
Metadata Review Frequency | 1 Year |
Metadata Next Review Date | 2023-03-16 |
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