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        <title>Orbit Knowledge Base 206:technology:3d_mapping</title>
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       <dc:date>2026-07-30T15:38:26+00:00</dc:date>
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        <dc:date>2020-06-16T08:14:22+00:00</dc:date>
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        <title>Concepts of Mobile Mapping and UAS data in Orbit</title>
        <link>https://kb.orbitgt.com/206/technology/3d_mapping/about_resources?rev=1592295262</link>
        <description>Concepts of Mobile Mapping and UAS data in Orbit

Concepts

To use mobile mapping data in Orbit, the raw data needs to be imported and processed into an Orbit Run using a corresponding import template. 

Orbit imports and organizes mobile mapping data into runs, projects and categories.</description>
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        <dc:date>2020-06-16T08:14:22+00:00</dc:date>
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        <title>Concepts of Oblique data in Orbit</title>
        <link>https://kb.orbitgt.com/206/technology/3d_mapping/about_resources_oblique?rev=1592295262</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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        <dc:date>2020-06-16T08:14:22+00:00</dc:date>
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        <title>Supported Coordinate Reference Systems in 3D Mapping context</title>
        <link>https://kb.orbitgt.com/206/technology/3d_mapping/crs?rev=1592295262</link>
        <description>Supported Coordinate Reference Systems in 3D Mapping context

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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        <dc:date>2020-06-16T08:14:22+00:00</dc:date>
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        <title>Feature Extraction Overview</title>
        <link>https://kb.orbitgt.com/206/technology/3d_mapping/feature_extraction?rev=1592295262</link>
        <description>Feature Extraction Overview

This page gives an overview of the available workflows to save a 3D Measurement as object in a vector dataset.

Asset Inventory

Using the Asset Inventory procedures administrators and operators are guided to organize and extract features in the most efficient way :</description>
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        <title>Linear Referencing</title>
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        <description>Linear Referencing



Concepts

Linear Referencing (Linear Referencing System or LRS) is a technique of spatial referencing which defines localization of an object in relation to a linear feature, position is measured along a line of interest (Linear Reference WIKI).

Linear Reference Measure Option enables additional Measure Attribute Formula for every measurement, identifying linear distance from the beginning of the closest reference line to the dropped position of the center of the measureme…</description>
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        <title>Measurements using Point Cloud</title>
        <link>https://kb.orbitgt.com/206/technology/3d_mapping/measure_pointcloud?rev=1592295262</link>
        <description>Measurements using Point Cloud

This page describes the concept and some related settings of measuring using point cloud. 

More information related to mobile mapping measurements on Orbit Desktop and Orbit WebClient :

	*  Desktop : 3D Measurements
	*  WebClient :</description>
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        <title>Measurements using Reference Surfaces</title>
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        <description>Measurements using Reference Surfaces

This page describes the concept and how to measure using different Reference Surfaces. 

More information related to mobile mapping measurements on Orbit Desktop and Orbit WebClient, see :

	*  Desktop : 3D Measurements
	*  WebClient :</description>
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        <title>Measurements using Forward Intersection</title>
        <link>https://kb.orbitgt.com/206/technology/3d_mapping/measure_triangulation?rev=1592295262</link>
        <description>Measurements using Forward Intersection

This page describes the concept and how to measure using images only. 

More information related to mobile mapping measurements on Orbit Desktop and Orbit WebClient, see :

	*  Desktop : 3D Measurements
	*  WebClient : Measure Sidebar



Principle of Forward Intersection</description>
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        <title>Basic 3D Measurement Functions</title>
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        <description>Basic 3D Measurement Functions

This page describes all basic measure functions. For semi-automated measurements, see Semi Automated 3D Measurement Functions. 

It is recommended to read first 3D Measurements.

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/206/technology/3d_mapping/measurements_semi_automated?rev=1592295262</link>
        <description>Semi Automated 3D Measurement Functions

This page describes all semi-automated / auto-complete measure functions. For basic measurements, see Basic 3D Measurement Functions. 

It is recommended to read first 3D Measurements.

To see in which product the Auto-complete measurements are available consult the</description>
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        <dc:date>2020-09-11T10:16:29+00:00</dc:date>
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        <title>Supported 3D Mapping Resources</title>
        <link>https://kb.orbitgt.com/206/technology/3d_mapping/supported_resources?rev=1599819389</link>
        <description>Supported 3D Mapping Resources

This page describes the supported Mobile Mapping, Aerial, and Oblique resources, any combination of the listed resources can be used.

General Notes

Required vs Optional Mapping Run resources

Mapping run is a combination of multiple individual resources that have a logical relation and are collected together by a mapping system.
A mapping run is a flexible structure, not all components as listed below are mandatory.</description>
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