CloneableEulerProjection, Murdoch1Projection, Murdoch2Projection, Murdoch3Projection, PerspectiveConicProjection, TissotProjection, VitkovskyProjectionpublic class SimpleConicProjection extends ConicProjection
| 限定符和类型 | 字段 | 说明 |
|---|---|---|
static int |
EULER |
|
static int |
MURD1 |
|
static int |
MURD2 |
|
static int |
MURD3 |
|
static int |
PCONIC |
|
static int |
TISSOT |
|
static int |
VITK1 |
a, alpha, DTR, e, ellipsoid, es, falseEasting, falseNorthing, fromMetres, geocentric, HALFPI, heightOfOrbit, isSouth, lonc, maxLatitude, maxLongitude, minLatitude, minLongitude, name, one_es, proj4Name, projectionLatitude, projectionLatitude1, projectionLatitude1Degrees, projectionLatitude2, projectionLatitude2Degrees, projectionLatitudeDegrees, projectionLongitude, projectionLongitudeDegrees, rone_es, RTD, scaleFactor, spherical, totalScale, trueScaleLatitude, trueScaleLatitudeDegrees, unit| 构造器 | 说明 |
|---|---|
SimpleConicProjection() |
|
SimpleConicProjection(int type) |
| 限定符和类型 | 方法 | 说明 |
|---|---|---|
boolean |
hasInverse() |
Tests whether this projection has an inverse.
|
void |
initialize() |
Initialize the projection.
|
ProjCoordinate |
project(double lplam,
double lpphi,
ProjCoordinate out) |
Computes the projection of a given point (i.e. from geographics to
projection space).
|
ProjCoordinate |
projectInverse(double xyx,
double xyy,
ProjCoordinate out) |
Computes the inverse projection of a given point (i.e. from projection
space to geographics).
|
String |
toString() |
clone, getAlpha, getEllipsoid, getEPSGCode, getEquatorRadius, getFalseEasting, getFalseNorthing, getFromMetres, getHeightOfOrbit, getLonC, getMaxLatitude, getMaxLatitudeDegrees, getMaxLongitude, getMaxLongitudeDegrees, getMinLatitude, getMinLatitudeDegrees, getMinLongitude, getMinLongitudeDegrees, getName, getPROJ4Description, getProj4Name, getProjectionLatitude, getProjectionLatitude1, getProjectionLatitude1Degrees, getProjectionLatitude2, getProjectionLatitude2Degrees, getProjectionLatitudeDegrees, getProjectionLongitude, getProjectionLongitudeDegrees, getScaleFactor, getSouthernHemisphere, getTrueScaleLatitude, getTrueScaleLatitudeDegrees, inside, inverseProject, inverseProjectRadians, isConformal, isEqual, isEqualArea, isRectilinear, normalizeLongitude, normalizeLongitudeRadians, parallelsAreParallel, project, projectRadians, setAlphaDegrees, setEllipsoid, setFalseEasting, setFalseNorthing, setFromMetres, setHeightOfOrbit, setLonCDegrees, setMaxLatitude, setMaxLongitude, setMaxLongitudeDegrees, setMinLatitude, setMinLongitude, setMinLongitudeDegrees, setName, setProjectionLatitude, setProjectionLatitude1, setProjectionLatitude1Degrees, setProjectionLatitude2, setProjectionLatitude2Degrees, setProjectionLatitudeDegrees, setProjectionLongitude, setProjectionLongitudeDegrees, setScaleFactor, setSouthernHemisphere, setTrueScaleLatitude, setTrueScaleLatitudeDegrees, setUnitspublic static final int EULER
public static final int MURD1
public static final int MURD2
public static final int MURD3
public static final int PCONIC
public static final int TISSOT
public static final int VITK1
public SimpleConicProjection()
public SimpleConicProjection(int type)
public String toString()
toString 在类中 ConicProjectionpublic ProjCoordinate project(double lplam, double lpphi, ProjCoordinate out)
Projectionproject 在类中 Projectionlplam - the geographic x ordinate (in radians)lpphi - the geographic y ordinatee (in radians)out - the projected coordinate (in coordinate system units)public ProjCoordinate projectInverse(double xyx, double xyy, ProjCoordinate out)
ProjectionprojectInverse 在类中 Projectionxyx - the projected x ordinate (in coordinate system units)xyy - the projected y ordinate (in coordinate system units)out - the inverse-projected geographic coordinate (in radians)public boolean hasInverse()
ProjectionProjection.inverseProject(ProjCoordinate, ProjCoordinate) and
Projection.inverseProjectRadians(ProjCoordinate, ProjCoordinate) methods
will return meaningful results.hasInverse 在类中 Projectionpublic void initialize()
Projectioninitialize 在类中 ProjectionCopyright © 2019. All rights reserved.