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deegree 2.5 (2011/06/29 09:44 build-8-official) | |||||||||
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Packages that use Projection | |
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org.deegree.crs.configuration.deegree | |
org.deegree.crs.configuration.gml | |
org.deegree.crs.coordinatesystems | The coordinatesystems package holds the different coordinatesystems used by the org.deegree.crs packages. |
org.deegree.crs.projections.azimuthal | Azimuthal projections use a plane to project the earth onto. |
org.deegree.crs.projections.conic | Conic projections use a cone (hence it's name) to project a region of the earth. |
org.deegree.crs.projections.cylindric | Cylindrical projections use a cylinder (may it be oblique or not) to create projection of a region of the earth. |
Uses of Projection in org.deegree.crs.configuration.deegree |
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Methods in org.deegree.crs.configuration.deegree that return Projection | |
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protected Projection |
CRSParser.parseProjection(org.w3c.dom.Element projectionElement,
GeographicCRS underlyingCRS,
Unit units)
Parses and instantiates the projection from the given element. |
Uses of Projection in org.deegree.crs.configuration.gml |
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Methods in org.deegree.crs.configuration.gml that return Projection | |
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protected Projection |
GMLCRSProvider.parseProjection(org.w3c.dom.Element rootElement,
GeographicCRS underlyingCRS)
For now this method actually wraps all information in a gml:AbstractGeneralConversionType (or a derived subtype) into an Identifiable Object (used for the Projections). |
Uses of Projection in org.deegree.crs.coordinatesystems |
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Methods in org.deegree.crs.coordinatesystems that return Projection | |
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Projection |
ProjectedCRS.getProjection()
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Constructors in org.deegree.crs.coordinatesystems with parameters of type Projection | |
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ProjectedCRS(java.util.List<PolynomialTransformation> transformations,
Projection projection,
Axis[] axisOrder,
Identifiable identity)
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ProjectedCRS(Projection projection,
Axis[] axisOrder,
Identifiable identity)
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ProjectedCRS(Projection projection,
Axis[] axisOrder,
java.lang.String identifier)
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ProjectedCRS(Projection projection,
Axis[] axisOrder,
java.lang.String[] identifiers)
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ProjectedCRS(Projection projection,
Axis[] axisOrder,
java.lang.String[] identifiers,
java.lang.String[] names,
java.lang.String[] versions,
java.lang.String[] descriptions,
java.lang.String[] areasOfUse)
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ProjectedCRS(Projection projection,
Axis[] axisOrder,
java.lang.String identifier,
java.lang.String name,
java.lang.String version,
java.lang.String description,
java.lang.String areaOfUse)
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Uses of Projection in org.deegree.crs.projections.azimuthal |
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Subclasses of Projection in org.deegree.crs.projections.azimuthal | |
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class |
AzimuthalProjection
The AzimuthalProjection class functions as a super class to all azimuthal projections. |
class |
LambertAzimuthalEqualArea
The LambertAzimuthalEqualArea projection has following properties (From J.S. |
class |
StereographicAlternative
StereographicAlternative projection may be imagined to be a projection of the earth's surface onto a
plane in contact with the earth at a single tangent point from the opposite end of the diameter through that tangent
point. |
class |
StereographicAzimuthal
The StereographicAzimuthal class allows for Stereographic Projections of the Poles, equator as well as
oblique. |
Uses of Projection in org.deegree.crs.projections.conic |
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Subclasses of Projection in org.deegree.crs.projections.conic | |
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class |
ConicProjection
The ConicProjection is a super class for all conic projections. |
class |
LambertConformalConic
The LambertConformalConic projection has following properties (Snyder p. 104)Conic Conformal Parallels are unequally spaced arcs of concentric circles, more closely spaced near the center of the map Meridians are equally spaced radii of the same circles, thereby cutting paralles at right angles. |
Uses of Projection in org.deegree.crs.projections.cylindric |
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Subclasses of Projection in org.deegree.crs.projections.cylindric | |
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class |
CylindricalProjection
The CylindricalProjection is a super class for all cylindrical projections. |
class |
Mercator
The Mercator projection has following properties:
Cylindircal
Conformal
Meridians are equally spaced straight lines
Parallels are unequally spaced straight lines closest near the equator, cutting meridians at right angles. |
class |
TransverseMercator
The TransverseMercator projection has following properties:
Cylindrical (transverse)
Conformal
The central meridian, each meridian 90° from central meridian and the equator are straight lines
All other meridians and parallels are complex curves
Scale is true along central meridian or along two straight lines equidistant from and parallel to central
merdian. |
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deegree 2.5 (2011/06/29 09:44 build-8-official) | |||||||||
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