Reprojector

Reprojects feature x and y coordinates from one coordinate system to another.

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Typical Uses

  • Performing simple reprojections, without z value handling.

How does it work?

The Reprojector receives vector, raster, or point cloud features and reprojects their x and y coordinates from one coordinate system to another, generally using the FME (CS-Map) library.

This transformer will honor the Workspace Parameter Reprojection Engine, and will use the Esri Reprojection Engine if it is selected there, with or without an Esri product being installed.

The Source Coordinate System may be either read from the input feature or specified explicitly, and the Destination Coordinate System must be specified. Both may be set by selecting from the Coordinate System Gallery or by name via an attribute value or user parameter.

The Reprojector does not reproject z values.

Dynamic Coordinate Systems

Features may be reprojected to a dynamic Destination Coordinate System - that is, a local coordinate system that is created specifically for each individual feature. This is often used for tasks such as taking measurements or creating geometry in meters or other ground units, on data with geographic (latitude and longitude) coordinates.

There are two types available:

  • _AZMEA_ (Dynamic Reprojection Equal Area) - Better for preserving area accuracy
  • _AZMED_ (Dynamic Reprojection Equal Distance) - Better for preserving distance accuracy

In either case, the input feature is reprojected to a local coordinate system centered on its bounding box. Though all the output features will be centered on a common origin (with the exception of features located very near the poles) and appear stacked on top of each other, each one retains the specifics of its reprojection (and so original position), and can be safely reprojected back into a projected or geographic coordinate system.

Note that Z values are not considered, so areas or distances are best preserved for geometry at an ellipsoid height of 0 meters.

Note: To calculate and reproject to a single AZMED or AZMEA coordinate system that encompasses all input features, consider using the CommonLocalReprojector.

Rasters

Additional parameters are available for raster features, specifying how the reprojected cells are to be interpolated.

This transformer is not affected by raster band and palette selection.

Examples

Usage Notes

  • This transformer does not alter z values. For handling elevation or vertical coordinate systems, consider using a CsmapReprojector.
  • For finer control, including Geographic Transformation selections, consider using a CsmapReprojector or EsriReprojector.
  • Some geographic areas have their own reprojection libraries and transformers. See Working with Coordinate System Transformers below.
  • This transformer operates on features with geometry. To reproject coordinates stored as attributes, see the AttributeReprojector or CsmapAttributeReprojector.

Working With Coordinate System Transformers

FME inherently supports coordinate system transformations and reprojections.

Configuration

Input Ports

Output Ports

Parameters

Editing Transformer Parameters

Using a set of menu options, transformer parameters can be assigned by referencing other elements in the workspace. More advanced functions, such as an advanced editor and an arithmetic editor, are also available in some transformers. To access a menu of these options, click beside the applicable parameter. For more information, see Transformer Parameter Menu Options.

Defining Values

There are several ways to define a value for use in a Transformer. The simplest is to simply type in a value or string, which can include functions of various types such as attribute references, math and string functions, and workspace parameters. There are a number of tools and shortcuts that can assist in constructing values, generally available from the drop-down context menu adjacent to the value field.

Dialog Options - Tables

Transformers with table-style parameters have additional tools for populating and manipulating values.

Reference

Processing Behavior

Feature-Based

Feature Holding

No

Dependencies None
Aliases  
History  

FME Community

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Examples may contain information licensed under the Open Government Licence – Vancouver and/or the Open Government Licence – Canada.