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        <title>Orbit Knowledge Base 253:technology:3d_mapping</title>
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        <link>https://kb.orbitgt.com/</link>
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       <dc:date>2026-07-30T20:53:37+00:00</dc:date>
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        <title>Orbit Mapping Publication</title>
        <link>https://kb.orbitgt.com/253/technology/3d_mapping/about_publications?rev=1760727003</link>
        <description>Orbit Mapping Publication

This page documents the concept of Mapping Publications.

Concept

An Orbit Mapping Publication is a vehicle designed to share Orbit Resources with end-users.

	*  Track user activity
	*  Lock down features
	*  Add Branding</description>
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        <title>Orbit Mapping Resource</title>
        <link>https://kb.orbitgt.com/253/technology/3d_mapping/about_resources?rev=1760727003</link>
        <description>Orbit Mapping Resource

This page documents the concepts of Mapping Resources. 

To get a complete overview of all supported data types for Mapping Resources, see Supported Mapping Resources.

Concepts

To use Aerial, Aerial Oblique, Mobile and Teresstrial Mapping data in Orbit, the raw data needs to be imported and processed into an Orbit Resource using a corresponding import template.</description>
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        <title>Concepts of Oblique data in Orbit</title>
        <link>https://kb.orbitgt.com/253/technology/3d_mapping/about_resources_oblique?rev=1760727003</link>
        <description>Concepts of Oblique data in Orbit

Orbit organizes oblique data into projects. An Oblique Project is a single import.

During import Orbit will optimize the data for optimal performance. There are no limitations on numbers or volumes. 


Once the Oblique Project is imported it can be used in the Orbit desktop solutions and the Orbit Publisher.</description>
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        <title>Coordinate Reference Systems for Mapping Resources</title>
        <link>https://kb.orbitgt.com/253/technology/3d_mapping/crs?rev=1760727003</link>
        <description>Coordinate Reference Systems for Mapping Resources

Orbit has the objective to support coordinate systems as they are described in the EPSG database by the OGP (International Association of Oil and Gas Producers).

Up to now Orbit supports any combination Geographic, Geocentric and Metric projected coordinate systems.</description>
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        <title>Measurements using Point Cloud</title>
        <link>https://kb.orbitgt.com/253/technology/3d_mapping/measure_pointcloud?rev=1760727003</link>
        <description>Measurements using Point Cloud

This page documents the Point Cloud Measure Technique for Basic Measurements. 

For more information on 3D Measurements, see Measure.

Point Cloud Measure Technique

In Desktop one can set via the 3D Hover, see Preferences of 3D Hover and Measurements.

In the WebClient the 3D Hober get be set using the</description>
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        <title>Measurements using Reference Surfaces</title>
        <link>https://kb.orbitgt.com/253/technology/3d_mapping/measure_reference_surface?rev=1760727003</link>
        <description>Measurements using Reference Surfaces

This page documents the Reference Surface Technique for Basic Measurements. 

For more information on 3D Measurements, see Measure.

DEM Intersection

Principle of Reference Planes Intersection

A 3D coordinate measured via DEM intersection is the result of the intersection of the reconstructed 3D line through the focal point of the camera and the measured point in the image and DEM.</description>
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        <title>Measurements using Forward Intersection</title>
        <link>https://kb.orbitgt.com/253/technology/3d_mapping/measure_triangulation?rev=1760727003</link>
        <description>Measurements using Forward Intersection

This page documents the Forward Intersection Measure Technique for Basic Measurements. 

For more information on 3D Measurements, see Measure.



Principle of Forward Intersection



A 3D coordinate measured via Forward Intersection is the result of the intersection of two 3D measure lines. 
If there is no 3D intersection, Orbit will use their XY 2D intersection. The Z coordinate will be the average of both Z values at the given XY coordinate. In other wo…</description>
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        <title>Manual 3D Measurement Functions</title>
        <link>https://kb.orbitgt.com/253/technology/3d_mapping/measurements?rev=1760727003</link>
        <description>Manual 3D Measurement Functions

This page describes Manual Measurements only. 

For more information on 3D Measurements, see Measure.

Functions

Overview of all 3D measurements.

	*  Conditions : Only if applicable.
	*  How to measure : Sequences of coordinate measurements to complete 3D measurement.</description>
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        <title>Semi-Automated 3D Measurement Functions</title>
        <link>https://kb.orbitgt.com/253/technology/3d_mapping/measurements_semi_automated?rev=1760727003</link>
        <description>Semi-Automated 3D Measurement Functions

This page describes Semi-Automated Measurements only. 

For more information on 3D Measurements, see Measure.

Concepts

Semi-automated measurement functions or Detectors require direct file access point cloud availability.</description>
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        <title>Resource Group</title>
        <link>https://kb.orbitgt.com/253/technology/3d_mapping/resource_group?rev=1760727003</link>
        <description>Resource Group

A Resource Group (Parent) is a logical group of Individual Resources (Children) of the same data and content type. 

E.g. multiple Point Cloud Resources or multiple Mapping Resources of type Mobile Mapping.

The grouping can have various reasons :</description>
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        <title>Supported Mapping Resources</title>
        <link>https://kb.orbitgt.com/253/technology/3d_mapping/supported_resources?rev=1760727003</link>
        <description>Supported Mapping Resources

This page documents all supported data types for Mobile Mapping, Aerial, and Aerial Oblique Mappin Resources. 

To read more about concepts of a Mapping Run and Resource Groups, see Orbit Mapping Resource

General Notes

Required vs Optional Mapping Run resources</description>
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