heyfield_2022feb19_air_vis_10cm_epsg7855
  • MetaShare PROD
  •  
  •  
  •  

  heyfield_2022feb19_air_vis_10cm_epsg7855

dataset
Dataset: heyfield_2022feb19_air_vis_10cm_epsg7855 Assembly: Mosaic
 
Citation proposal Citation proposal

heyfield_2022feb19_air_vis_10cm_epsg7855

Department of Transport and Planning

https://metashare.maps.vic.gov.au/geonetwork/srv/eng/catalog.search#/metadata/d3a85ae2-aefd-571e-ae10-eeb8b051fcd0
 
  • Description
  • Temporal
  • Spatial
  • Maintenance
  • Format
  • Contacts
  • Keywords
  • Resource Constraints
  • Lineage
  • Metadata Constraints
  • Quality
  • Acquisition Info
  • Raster Data Details
  • Raster Type Details
  • Point Cloud Data Details
  • Contour Data Details
  • Survey Details

Simple

 
 

Description

Title
heyfield_2022feb19_air_vis_10cm_epsg7855 
 
 

Temporal

Time period
2022-02-192022-02-19 
 
 

Spatial

Horizontal Accuracy
0.2m  
Code
MGA Zone 55 GDA2020 
 
 

Maintenance

 
 

Format

Title
ECW,TIFF 
 
 

Contacts

  Point of contact

Department of Transport and Planning - Coordinated Imagery Program  
PO Box 500
East Melbourne
Victoria
3002
Australia
 
 

Keywords

Topic category
  • Imagery base maps earth cover
 
 

Resource Constraints

Use limitation
General 
Classification
Unclassified  
 
 

Lineage

Description
Aerial Triangulation -Initial EO configuration based on boresight-corrected airborne GPS-IMU data from the airborne GPS-IMU unit post-processed in Novatel Inertial Explorer using the nearest ARGN CORS station. -Initial EO error residual estimates were input based on the quality of the GPS-IMU solution output from Novatel Inertial Explorer. -Validation of differential GPS-IMU solution using nearest ARGN CORS station data by comparison with Inertial Explorer's precise-point-positioning (PPP) solution that utilises precise satellite orbit and clock information. -Confirmation that initial EO error residual estimates are valid. -Automated tie point matching with interactive filtering based on maximum parallax, minimum correlation and maximum search window. -Manual refinement of block adjustment with manual tie point review and exclusion. -Final block adjustment with any GCPs included as control and visual review of final solution. Orthophoto Production -Bi-directional Reflectance Distribution Function (BRDF) algorithm on a flightline by flightline basis prior to orthophoto production. -Stereoscopically derived DEM (typically at 4 times image resolution) for orthophoto processing after a review of the completeness and accuracy of the generated DEM. -Individual orthophotos were generated with the (minimum) outer 10% of the image removed. -Photomod Geomosaic for the production of a seamless orthophoto mosaic from the individual orthophotos. -Colour and contrast balance across the mosaic. 
 
 

Metadata Constraints

Classification
Unclassified  
 
 

Quality

Attribute Quality
Positional Accuracy
Conceptual Consistency
Comments
3 band photography meets expected band naming and combination specifications 
Missing Data
Comments
Dateset covers 100% of the project area 
Excess Data
 
 

Acquisition Info

Platform Type
Aerial  
Assembly
Mosaic  
Tile Size
1 km  
 
 

Raster Data Details

Raster Type
Aerial Photo  
X Pixel Resolution (cm)
10cm  
Y Pixel Resolution (cm)
10cm  
Seamlessness
Full  
Number of Bands
3 
Band List
1,2,3  
Resampling Kernel
Not Entered  
Rectification Type
Orthorectified  
Platform Name
Fixed Wing Aircraft  
 
 

Point Cloud Data Details

 
 

Contour Data Details

 
 

Survey Details

Sensor

Title
PhaseOne iXM 
Identifier
Aerial

Type
Digital Photo 
 

Aerial Survey Details

Runs
7 
Run Orientation
E-W  
Side Overlap
40 
Forward Overlap
70 
Flying Height Unit
agl feet  
Flight Height
6100 
 
 

    Overviews

  Provided by

  Share on social sites

         

  Views Views

  • Simple
  • Simple
  • Full
  • XML
d3a85ae2-aefd-571e-ae10-eeb8b051fcd0   Access to the portal Access to the portal Read here the full details and access to the data. Read here the full details and access to the data.

  Associated resources

Not available


  •  
  •  
  •