USGS High Resolution Orthoimage, Salt Lake City - Ogden, UT

Metadata also available as

Metadata:


Identification_Information:
Citation:
Citation_Information:
Originator: U.S. Geological Survey
Publication_Date: 2004
Title: USGS High Resolution Orthoimage, Salt Lake City - Ogden, UT
Geospatial_Data_Presentation_Form: remote sensing image
Description:
Abstract:
This data set consists of 0.3-meter pixel resolution (approximately 1-foot), natural color orthoimages covering the urban area footprint. An orthoimage is remotely sensed image data in which displacement of features in the image caused by terrain relief and sensor orientation have been mathematically removed. Orthoimagery combines the image characteristics of a photograph with the geometric qualities of a map. The design accuracy is estimated not to exceed 3-meter diagonal RMSE (2.12m RMSE in X or Y). Originally each orthoimage provided imagery over a 1500- by 1500-meter block on the ground. As a result of mosaicing these blocks into larger tiles, the block on the ground is closer to a 4500- by 4500-meter block on average. There is no image overlap between adjacent files. The projected coordinate system is UTM with a NAD83 datum. The naming convention is based on the U.S. National Grid (USNG) and uses the coordinates of the SW corner of the orthoimage.
Purpose:
This data depicts geographic features on the surface of the earth. It was created to provide easily accessible geospatial data which is readily available to enhance the capability of Federal, State, and local emergency responders, as well as plan for homeland security efforts. This data also supports The National Map.
Time_Period_of_Content:
Time_Period_Information:
Single_Date/Time:
Calendar_Date: 20030900
Currentness_Reference: ground condition
Status:
Progress: Complete
Maintenance_and_Update_Frequency: Irregular
Spatial_Domain:
Bounding_Coordinates:
West_Bounding_Coordinate: -112.153973
East_Bounding_Coordinate: -111.730235
North_Bounding_Coordinate: 41.378133
South_Bounding_Coordinate: 40.361488
Keywords:
Theme:
Theme_Keyword_Thesaurus: none
Theme_Keyword: 0.3 meter orthoimage
Theme_Keyword: rectified photograph
Theme_Keyword: rectified image
Theme_Keyword: orthophoto
Theme_Keyword: natural color orthophoto
Theme_Keyword: orthoimage
Theme_Keyword: image map
Place:
Place_Keyword_Thesaurus:
U.S. Department of Commerce, 1995, Countries, Dependencies, Areas of Special Sovereignty, and Their Principal Administrative Divisions (Federal Information Processing Standard (FIPS) 10-4): Washington, D.C., National Institute of Standards and Technology.
Place_Keyword: US
Place_Keyword: Salt Lake City
Place_Keyword: Ogden
Place_Keyword: Davis County
Place_Keyword: Weber County
Place_Keyword: Morgan County
Place_Keyword: Salt Lake County
Place_Keyword: Utah County
Place:
Place_Keyword_Thesaurus:
U.S. Department of Commerce, 1987, Codes for the Identification of the States, the District of Columbia and the outlying areas of the United States, and associated areas (Federal Information Processing Standard (FIPS) 5-2): Washington, D.C., National Institute of Standards and Technology.
Place_Keyword: UT
Place:
Place_Keyword_Thesaurus: None
Place_Keyword: Salt Lake City - Ogden, UT
Access_Constraints: None
Use_Constraints:
None. Acknowledgment of the U.S. Geological Survey would be appreciated for products derived from these data.
Point_of_Contact:
Contact_Information:
Contact_Person_Primary:
Contact_Person: Rick Kelson
Contact_Organization: AGRC
Contact_Position: Tech Supprt Specialist
Contact_Voice_Telephone: 801-538-3237
Contact_Facsimile_Telephone: 801-538-3317
Contact_Electronic_Mail_Address: rkelson@utah.gov

Data_Quality_Information:
Attribute_Accuracy:
Attribute_Accuracy_Report:
Radiometry is verified by visual inspection of the digital orthophoto. Slight systematic radiometric differences may exist between adjacent orthoimage files; these are due primarily to differences in source image capture dates and sun angles along flight lines. These differences can be observed in an image's general lightness or darkness when it is compared to adjacent orthoimage file coverages. Tonal balancing may be performed over a group of images during the mosaicking process which may serve to lighten or darken adjacent images for better color tone matching.
Attribute_Accuracy:
Attribute_Accuracy_Report:
Radiometry is verified by visual inspection of the digital orthophoto. Slight systematic radiometric differences may exist between adjacent orthoimage files; these are due primarily to differences in source image capture dates and sun angles along flight lines. These differences can be observed in an image's general lightness or darkness when it is compared to adjacent orthoimage file coverages. Tonal balancing may be performed over a group of images during the mosaicking process which may serve to lighten or darken adjacent images for better color tone matching.
Attribute_Accuracy:
Attribute_Accuracy_Report:
Radiometry is verified by visual inspection of the digital orthophoto. Slight systematic radiometric differences may exist between adjacent orthoimage files; these are due primarily to differences in source image capture dates and sun angles along flight lines. These differences can be observed in an image's general lightness or darkness when it is compared to adjacent orthoimage file coverages. Tonal balancing may be performed over a group of images during the mosaicking process which may serve to lighten or darken adjacent images for better color tone matching.
Logical_Consistency_Report:
All GeoTIFF tagged image files are validated using Z/I software to ensure the correct physical format and field values. All imagery is viewed using Z/I's IRASC to insure proper loading before being archived. All seamlines and tile edges are visually inspected. This check ensures balanced radiometry, no VOID areas, and seamline matches to within one meter. Once all imagery has been subjected to this quality check, we again review 10 percent of all final tiles independently for the same issues to guard against missed quality control.
Completeness_Report:
Orthoimages are visually inspected for completeness to ensure that no gaps or image misplacements exist within and between adjacent tiles. All image tiles at the extremities of the project are checked to ensure there are no VOID areas, and that the entire project area is completely covered by orthorectified imagery. Source imagery is cloud free.
Positional_Accuracy:
Horizontal_Positional_Accuracy:
Horizontal_Positional_Accuracy_Report:
The relative accuracy was assembled by comparing rectified images generated from adjacent strips of imagery. The absolute accuracy was assessed by measuring 6 of the ground control points in the rectified image against the actual surveyed co-ordinate position. The testing was for overall accuracy.
Quantitative_Horizontal_Positional_Accuracy_Assessment:
Horizontal_Positional_Accuracy_Value: 0.84
Horizontal_Positional_Accuracy_Explanation:
After all ground control points within the orthorectified project area were compared against their respective survey values the RMSE was computed, resulting in an absolute accuracy value.
Lineage:
Source_Information:
Source_Citation:
Citation_Information:
Originator: North West Geomatics
Publication_Date: 2003
Publication_Information:
Publication_Place: Calgary, Alberta
Publisher: Triathlon
Source_Scale_Denominator: 15000
Type_of_Source_Media: raster digital data
Source_Time_Period_of_Content:
Time_Period_Information:
Single_Date/Time:
Calendar_Date: 20030920
Source_Currentness_Reference: ground condition
Source_Information:
Source_Citation:
Citation_Information:
Originator: North West Geomatics
Publication_Date: 2003
Publication_Information:
Publication_Place: Calgary, Alberta
Publisher: Triathlon
Source_Scale_Denominator: 15000
Type_of_Source_Media: raster digital data
Source_Time_Period_of_Content:
Time_Period_Information:
Single_Date/Time:
Calendar_Date: 20030920
Source_Currentness_Reference: ground condition
Source_Contribution: Source imagery for tile production
Source_Information:
Source_Citation:
Citation_Information:
Originator: North West Geomatics
Publication_Date: 2003
Publication_Information:
Publication_Place: Calgary, Alberta
Publisher: Triathlon
Source_Scale_Denominator: 15000
Type_of_Source_Media: raster digital data
Source_Time_Period_of_Content:
Time_Period_Information:
Single_Date/Time:
Calendar_Date: 20030920
Source_Currentness_Reference: ground condition
Source_Contribution: Source imagery for tile production
Source_Information:
Source_Citation:
Citation_Information:
Originator: Triathlon
Publication_Date: 2004
Title: Salt Lake City DEM
Publication_Information:
Publication_Place: Richmond, BC
Publisher: Triathlon
Type_of_Source_Media: Maxtor Firewire Drive
Source_Time_Period_of_Content:
Time_Period_Information:
Single_Date/Time:
Calendar_Date: 20030923
Source_Currentness_Reference: ground condition
Source_Citation_Abbreviation: DEM
Source_Contribution:
Used to provide ground elevations for the orthorectification process.
Source_Information:
Source_Citation:
Citation_Information:
Originator: Triathlon
Publication_Date: 2003
Title: Field Control and ABGPS
Publication_Information:
Publication_Place: Richmond, BC
Publisher: Triathlon
Type_of_Source_Media: DVD
Source_Time_Period_of_Content:
Time_Period_Information:
Single_Date/Time:
Calendar_Date: 20030903
Source_Currentness_Reference: ground condition
Source_Citation_Abbreviation: Field Control and ABGPS
Source_Contribution:
ABGPS and ground control (i.e., horizontal/vertical, horizontal only and vertical only) used in creating the project control.
Process_Step:
Process_Description:
The horizontal accuracy of the orthrectified imagery is primarily determined by the quality of the Aerial Triangulation solution and the surface model (DEM). All ground targets were visible with .2 meter x 3.6 meter targets, and measured with GPS. The AT procedure takes the raw bands (BW,FW and N) and rectifies them to a plane using the GPS data that was collected simultaneously with the imagery. This was accomplished using the Leica Gpro software. Automatic Point Measurement (APM) was used to place terrain points on each panchromatic L1 image. The panchromatic L1's along with the each of the colour L0's were then imported into ORIMA so that an AT adjustment could be executed. At this stage each individual strip of imagery was not tied to the neighbouring strips. Several iterations were run until all bad points were eliminated. The points were then exported to an x,y,z text file so that a DEM could be created, allowing APM a surface file so that it could more accurately calculate the tie points. Once the second APM process was complete, the strips were tied together, and several adjustments were run, removing the points with high residuals until a suitable sigma value was reached. Control was then measured and a final adjustment calculated. Standard deviations and residual were reviewed to verify that it was a good solution. The support files were then updated with the new orientation information. The L1 RGB bands were then rectified using the updated orientation information. Specifically for SLC, cross-strips running E-W were used in the AT solution to give strength to the block being worked. Between blocks, there was a common cross strip used in the AT giving overall strength to the solution. The Data Capture stage was accomplished by ingesting the Orima AT solution into the ISPM Z/I software. Using an Z/I SSK workstation and ISSD software for viewing, The surface data was collected with in-house VMS data cature software supplimenting a USGS surface with DEM points and breaklines. The rectification stage involved rectifying the 16 bit per channel imagery using Z/I's ISBR software. We then rectified the L1 data into manageable pieces with overlapping imagery between the strips, converted the imagery to 8 bits per channel. The radiometry was then adjusted, the rectified imagery was run through our in-house AIM software for automated seamline generation. These seamlines were then checked, and once manually verified, the final ortho tiles were generated. At the QC stage any building or above ground feature obscuring a transportation feature is corrected. All orthophoto tiles were checked visually for relative horizontal accuracy in reference to adjacent tiles. Orthophoto measurements were taken from the 6 horizontal ground control points in the project area. An RMSE was calculated for the XY error residuals of the positional differences between the surveyed values and the values measured from the rectified imagery.

Once received by the AGRC the images were mosaiced into groups that on average are 9 of the original GeoTIFF images.The process used to mosaic the images was to turn the images in multi-stack grids, mosaic the grids for each individual band in GRID, make a stack of the merged bands, and turn the new grid stack back into an image.

Process_Date: 20040114

Spatial_Reference_Information:
Horizontal_Coordinate_System_Definition:
Planar:
Grid_Coordinate_System:
Grid_Coordinate_System_Name: Universal Transverse Mercator
Universal_Transverse_Mercator:
UTM_Zone_Number: 12
Transverse_Mercator:
Scale_Factor_at_Central_Meridian: 0.999600
Longitude_of_Central_Meridian: -111.000000
Latitude_of_Projection_Origin: 0.000000
False_Easting: 500000.000000
False_Northing: 0.000000
Planar_Coordinate_Information:
Planar_Coordinate_Encoding_Method: row and column
Coordinate_Representation:
Abscissa_Resolution: 0.300000
Ordinate_Resolution: 0.300000
Planar_Distance_Units: meters
Geodetic_Model:
Horizontal_Datum_Name: North American Datum of 1983
Ellipsoid_Name: Geodetic Reference System 80
Semi-major_Axis: 6378137.000000
Denominator_of_Flattening_Ratio: 298.257222

Entity_and_Attribute_Information:
Overview_Description:
Entity_and_Attribute_Overview:
For natural color orthoimagery from file, a digital number from 0 to 255 also be assigned to each pixel in each display band in a three-band image represented by red, green, and blue (RGB). Areas where data is incomplete due to lack of full image comverage are represented with the numeric value of 0.
Entity_and_Attribute_Detail_Citation:
U.S. Department of the Interior, U.S. Geological Survey, 1996, Standards for Digital Orthophotos: Reston, VA.

Entity_and_Attribute_Information:
Overview_Description:
Entity_and_Attribute_Overview:
For natural color orthoimagery from file, a digital number from 0 to 255 also be assigned to each pixel in each display band in a three-band image represented by red, green, and blue (RGB). Areas where data is incomplete due to lack of full image comverage are represented with the numeric value of 0.
Entity_and_Attribute_Detail_Citation:
U.S. Department of the Interior, U.S. Geological Survey, 1996, Standards for Digital Orthophotos: Reston, VA.

Entity_and_Attribute_Information:
Overview_Description:
Entity_and_Attribute_Overview:
For natural color orthoimagery from file, a digital number from 0 to 255 also be assigned to each pixel in each display band in a three-band image represented by red, green, and blue (RGB). Areas where data is incomplete due to lack of full image comverage are represented with the numeric value of 0.
Entity_and_Attribute_Detail_Citation:
U.S. Department of the Interior, U.S. Geological Survey, 1996, Standards for Digital Orthophotos: Reston, VA.

Distribution_Information:
Distributor:
Contact_Information:
Contact_Organization_Primary:
Contact_Organization: AGRC
Contact_Voice_Telephone: Rick Kelson
Contact_TDD/TTY_Telephone: 801-538-3237
Contact_Facsimile_Telephone: 801-538-3317
Contact_Electronic_Mail_Address: rkelson@utah.gov

Metadata_Reference_Information:
Metadata_Date: 20040311
Metadata_Contact:
Contact_Information:
Contact_Organization_Primary:
Contact_Organization: USGS
Contact_Address:
Address_Type: mailing
Address: EROS Data Center
City: Sioux Falls
State_or_Province: SD
Postal_Code: 57198-0001
Country: US
Contact_Voice_Telephone: 1-605-594-6151
Contact_TDD/TTY_Telephone: 1-605-594-6933
Contact_Facsimile_Telephone: 1-605-594-6589
Contact_Electronic_Mail_Address: custserv@usgs.gov
Hours_of_Service: Monday through Friday 8:00 AM to 4:00 PM (Central Time)
Metadata_Standard_Name: FGDC Content Standard for Digital Geospatial Metadata
Metadata_Standard_Version: FGDC-STD-001-1998

Generated by mp version 2.8.6 on Mon Oct 18 15:00:01 2004