Uses of Class
org.orekit.bodies.GeodeticPoint
Packages that use GeodeticPoint
Package
Description
This package provides classes to represent simple attitudes.
This package provides interface to represent the position and geometry of
space objects such as stars, planets or asteroids.
The measurements package defines everything that is related to orbit
determination measurements.
This package contains physical models for measurement prediction.
This package provides classes to handle frames and transforms between them.
This package provides classes for representing a spacecraft sensor Field Of View.
This package provides classes related to GNSS applications.
This package provides models that simulate certain physical phenomena
of Earth and the near-Earth environment.
This package provides models computing reference points
displacements on Earth surface.
This package provides models that simulate the impact of the ionosphere.
This package provides classes for implementing NeQuick ionosphere models.
This package provides ways to do tessellation and sampling of zones of
interest over an ellipsoid surface.
This package provides models that simulate the impact of the troposphere.
This package contains class for the troposphere model OTU-4 P.834.
This package provides models that simulate global weather conditions on Earth.
This package provides built-in implementations of
EventFunction.This package provides useful objects.
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Uses of GeodeticPoint in org.orekit.attitudes
Constructors in org.orekit.attitudes with parameters of type GeodeticPointModifierConstructorDescriptionTargetPointing(Frame inertialFrame, GeodeticPoint targetGeo, BodyShape shape) Creates a new instance from body shape and target expressed in geodetic coordinates. -
Uses of GeodeticPoint in org.orekit.bodies
Subclasses of GeodeticPoint in org.orekit.bodiesFields in org.orekit.bodies declared as GeodeticPointModifier and TypeFieldDescriptionstatic final GeodeticPointGeodeticPoint.NORTH_POLENorth pole.static final GeodeticPointGeodeticPoint.SOUTH_POLESouth pole.Methods in org.orekit.bodies that return GeodeticPointModifier and TypeMethodDescriptionLoxodromeArc.calculatePointAlongArc(double fraction) Calculate a point at a specific percentage along the arc.LoxodromeArc.getFinalPoint()Get the final point of the arc.BodyShape.getIntersectionPoint(Line line, Vector3D close, Frame frame, AbsoluteDate date) Get the intersection point of a line with the surface of the body.OneAxisEllipsoid.getIntersectionPoint(Line line, Vector3D close, Frame frame, AbsoluteDate date) Get the intersection point of a line with the surface of the body.Loxodrome.getPoint()Get the geodetic point defining the loxodrome.OneAxisEllipsoid.lowestAltitudeIntermediate(Vector3D endpoint1, Vector3D endpoint2) Find intermediate point of lowest altitude along a line between two endpoints.Loxodrome.pointAtDistance(double distance) Calculate the point at the specified distance from the origin point along the loxodrome.FieldGeodeticPoint.toGeodeticPoint()Get non-Field equivalent.BodyShape.transform(Vector3D point, Frame frame, AbsoluteDate date) Transform a Cartesian point to a surface-relative point.OneAxisEllipsoid.transform(Vector3D point, Frame frame, AbsoluteDate date) Transform a Cartesian point to a surface-relative point.Methods in org.orekit.bodies with parameters of type GeodeticPointModifier and TypeMethodDescriptiondoubleOneAxisEllipsoid.azimuthBetweenPoints(GeodeticPoint origin, GeodeticPoint destination) Compute the azimuth angle from local north between the two points.BodyShape.transform(GeodeticPoint point) Transform a surface-relative point to a Cartesian point.OneAxisEllipsoid.transform(GeodeticPoint point) Transform a surface-relative point to a Cartesian point.Constructors in org.orekit.bodies with parameters of type GeodeticPointModifierConstructorDescriptionFieldGeodeticPoint(Field<T> field, GeodeticPoint geodeticPoint) Build a new instance from aGeodeticPoint.Loxodrome(GeodeticPoint point, double azimuth, OneAxisEllipsoid body) Constructor building a loxodrome from an initial point and an azimuth-off-local-north heading.Loxodrome(GeodeticPoint point, double azimuth, OneAxisEllipsoid body, double altitude) Constructor building a loxodrome from an initial point and an azimuth-off-local-north heading.LoxodromeArc(GeodeticPoint point, GeodeticPoint endPoint, OneAxisEllipsoid body) Class constructor where the arc's altitude is the average of the initial and final points.LoxodromeArc(GeodeticPoint point, GeodeticPoint endPoint, OneAxisEllipsoid body, double altitude) Class constructor.TimeStampedGeodeticPoint(AbsoluteDate date, GeodeticPoint point) Build a new instance from aGeodeticPoint. -
Uses of GeodeticPoint in org.orekit.estimation.measurements
Methods in org.orekit.estimation.measurements that return GeodeticPointModifier and TypeMethodDescriptionGroundStation.getOffsetGeodeticPoint(AbsoluteDate date) Get the geodetic point at the center of the offset frame. -
Uses of GeodeticPoint in org.orekit.estimation.measurements.model
Methods in org.orekit.estimation.measurements.model with parameters of type GeodeticPointModifier and TypeMethodDescriptiondouble[]TopocentricAzElModel.value(GeodeticPoint receiver, AbsoluteDate receptionDate, PVCoordinatesProvider emitter) Compute theoretical measurement.double[]TopocentricAzElModel.value(GeodeticPoint receiver, AbsoluteDate receptionDate, PVCoordinatesProvider emitter, AbsoluteDate approxEmissionDate) Compute theoretical measurement with guess for emission date. -
Uses of GeodeticPoint in org.orekit.frames
Methods in org.orekit.frames that return GeodeticPointModifier and TypeMethodDescriptionTopocentricFrame.computeLimitVisibilityPoint(double radius, double azimuth, double elevation) Compute the limit visibility point for a satellite in a given direction.TopocentricFrame.getPoint()Get the surface point defining the origin of the frame.TopocentricFrame.pointAtDistance(double azimuth, double elevation, double distance) Compute the point observed from the station at some specified distance.Constructors in org.orekit.frames with parameters of type GeodeticPointModifierConstructorDescriptionTopocentricFrame(BodyShape parentShape, GeodeticPoint point, String name) Simple constructor. -
Uses of GeodeticPoint in org.orekit.geometry.fov
Methods in org.orekit.geometry.fov that return types with arguments of type GeodeticPointModifier and TypeMethodDescriptionFieldOfView.getFootprint(Transform fovToBody, OneAxisEllipsoid body, double angularStep) Get the footprint of the Field Of View on ground.FieldOfView.getFootprint(Transform fovToBody, OneAxisEllipsoid body, double angularStep, boolean extendedFootprint, double maxDistance) Get the footprint of the Field Of View on ground.PolygonalFieldOfView.getFootprint(Transform fovToBody, OneAxisEllipsoid body, double angularStep) Get the footprint of the Field Of View on ground.PolygonalFieldOfView.getFootprint(Transform fovToBody, OneAxisEllipsoid body, double angularStep, boolean extendedFootprint, double maxDistance) Get the footprint of the Field Of View on ground.SmoothFieldOfView.getFootprint(Transform fovToBody, OneAxisEllipsoid body, double angularStep) Get the footprint of the Field Of View on ground.SmoothFieldOfView.getFootprint(Transform fovToBody, OneAxisEllipsoid body, double angularStep, boolean extendedFootprint, double maxDistance) Get the footprint of the Field Of View on ground. -
Uses of GeodeticPoint in org.orekit.gnss
Methods in org.orekit.gnss that return GeodeticPointModifier and TypeMethodDescriptionDOP.getLocation()Gets the location with respect to the Earth where DOP was calculated.Methods in org.orekit.gnss with parameters of type GeodeticPointModifier and TypeMethodDescriptionstatic DOPComputerDOPComputer.create(OneAxisEllipsoid shape, GeodeticPoint location) Creates a DOP computer for one location.Constructors in org.orekit.gnss with parameters of type GeodeticPointModifierConstructorDescriptionDOP(GeodeticPoint location, AbsoluteDate date, int gnssNb, double gdop, double pdop, double hdop, double vdop, double tdop) Constructor. -
Uses of GeodeticPoint in org.orekit.models.earth
Methods in org.orekit.models.earth that return GeodeticPointModifier and TypeMethodDescriptionGeoid.getIntersectionPoint(Line lineInFrame, Vector3D closeInFrame, Frame frame, AbsoluteDate date) Get the intersection point of a line with the surface of the body.Geoid.transform(Vector3D point, Frame frame, AbsoluteDate date) Transform a Cartesian point to a surface-relative point.Methods in org.orekit.models.earth with parameters of type GeodeticPointModifier and TypeMethodDescriptionGeoid.transform(GeodeticPoint point) Transform a surface-relative point to a Cartesian point. -
Uses of GeodeticPoint in org.orekit.models.earth.displacement
Methods in org.orekit.models.earth.displacement that return GeodeticPointModifier and TypeMethodDescriptionOceanLoadingCoefficients.getSiteLocation()Get the site location.Methods in org.orekit.models.earth.displacement with parameters of type GeodeticPointModifier and TypeMethodDescriptionPsdCorrection.displacement(AbsoluteDate date, GeodeticPoint base) Compute displacement.abstract Vector3DPsdCorrection.Axis.vector(GeodeticPoint base) Get axis unit vector.Constructors in org.orekit.models.earth.displacement with parameters of type GeodeticPointModifierConstructorDescriptionOceanLoadingCoefficients(String siteName, GeodeticPoint siteLocation, Tide[][] tides, double[][] zAmplitude, double[][] zPhase, double[][] wAmplitude, double[][] wPhase, double[][] sAmplitude, double[][] sPhase) Simple constructor.PostSeismicDeformation(GeodeticPoint base, TimeSpanMap<List<PsdCorrection>> corrections) Simple constructor. -
Uses of GeodeticPoint in org.orekit.models.earth.ionosphere
Methods in org.orekit.models.earth.ionosphere with parameters of type GeodeticPointModifier and TypeMethodDescriptiondoubleKlobucharIonoModel.pathDelay(AbsoluteDate date, GeodeticPoint geo, double elevation, double azimuth, double frequency, double[] parameters) Calculates the ionospheric path delay for the signal path from a ground station to a satellite. -
Uses of GeodeticPoint in org.orekit.models.earth.ionosphere.nequick
Methods in org.orekit.models.earth.ionosphere.nequick that return GeodeticPointMethods in org.orekit.models.earth.ionosphere.nequick with parameters of type GeodeticPointModifier and TypeMethodDescriptiondoubleNeQuickModel.stec(AbsoluteDate date, GeodeticPoint recP, GeodeticPoint satP) This method allows the computation of the Slant Total Electron Content (STEC).Constructors in org.orekit.models.earth.ionosphere.nequick with parameters of type GeodeticPoint -
Uses of GeodeticPoint in org.orekit.models.earth.tessellation
Methods in org.orekit.models.earth.tessellation that return GeodeticPointModifier and TypeMethodDescriptionTile.getCenter()Get the center point.Tile.getInterpolatedPoint(double u, double v) Get an interpolated point inside the tile.Tile.getVertices()Get the four vertices.protected GeodeticPointEllipsoidTessellator.toGeodetic(S2Point point) Convert a point on the unit 2-sphere to geodetic coordinates.Methods in org.orekit.models.earth.tessellation that return types with arguments of type GeodeticPointModifier and TypeMethodDescriptionAlongTrackAiming.getSingularPoints()Get points at which aiming direction cannot be computed.ConstantAzimuthAiming.getSingularPoints()Get points at which aiming direction cannot be computed.DivertedSingularityAiming.getSingularPoints()Get points at which aiming direction cannot be computed.TileAiming.getSingularPoints()Get points at which aiming direction cannot be computed.EllipsoidTessellator.sample(SphericalPolygonsSet zone, double width, double length) Sample a zone of interest into a grid sample ofgeodetic points.Methods in org.orekit.models.earth.tessellation with parameters of type GeodeticPointModifier and TypeMethodDescriptionAlongTrackAiming.alongTileDirection(Vector3D point, GeodeticPoint gp) Find the along tile direction for tessellation at specified point.ConstantAzimuthAiming.alongTileDirection(Vector3D point, GeodeticPoint gp) Find the along tile direction for tessellation at specified point.DivertedSingularityAiming.alongTileDirection(Vector3D point, GeodeticPoint gp) Find the along tile direction for tessellation at specified point.TileAiming.alongTileDirection(Vector3D point, GeodeticPoint gp) Find the along tile direction for tessellation at specified point.static SphericalPolygonsSetEllipsoidTessellator.buildSimpleZone(double tolerance, GeodeticPoint... points) Build a simple zone (connected zone without holes).Constructors in org.orekit.models.earth.tessellation with parameters of type GeodeticPointModifierConstructorDescriptionTile(GeodeticPoint v0, GeodeticPoint v1, GeodeticPoint v2, GeodeticPoint v3) Create a tile. -
Uses of GeodeticPoint in org.orekit.models.earth.troposphere
Methods in org.orekit.models.earth.troposphere with parameters of type GeodeticPointModifier and TypeMethodDescriptiondouble[]MendesPavlisModel.computeZenithDelay(GeodeticPoint point, AbsoluteDate date) This method allows the computation of the zenith hydrostatic and zenith wet delay.ConstantViennaAProvider.getA(GeodeticPoint location, AbsoluteDate date) Get coefficients array for VMF mapping function.ViennaAProvider.getA(GeodeticPoint location, AbsoluteDate date) Get coefficients array for VMF mapping function.AzimuthalGradientProvider.getGradientCoefficients(GeodeticPoint location, AbsoluteDate date) Get azimuthal asymmetry gradients.ConstantAzimuthalGradientProvider.getGradientCoefficients(GeodeticPoint location, AbsoluteDate date) Get azimuthal asymmetry gradients.double[]AbstractChaoMappingFunction.mappingFactors(TrackingCoordinates trackingCoordinates, GeodeticPoint point, AbsoluteDate date) This method allows the computation of the hydrostatic and wet mapping functions.double[]DummyMappingFunction.mappingFactors(TrackingCoordinates trackingCoordinates, GeodeticPoint point, AbsoluteDate date) This method allows the computation of the hydrostatic and wet mapping functions.double[]GlobalMappingFunctionModel.mappingFactors(TrackingCoordinates trackingCoordinates, GeodeticPoint point, AbsoluteDate date) This method allows the computation of the hydrostatic and wet mapping functions.double[]MendesPavlisModel.mappingFactors(TrackingCoordinates trackingCoordinates, GeodeticPoint point, AbsoluteDate date) With the Mendes Pavlis tropospheric model, the mapping function is not split into hydrostatic and wet component.double[]NiellMappingFunctionModel.mappingFactors(TrackingCoordinates trackingCoordinates, GeodeticPoint point, AbsoluteDate date) This method allows the computation of the hydrostatic and wet mapping functions.double[]TroposphereMappingFunction.mappingFactors(TrackingCoordinates trackingCoordinates, GeodeticPoint point, AbsoluteDate date) This method allows the computation of the hydrostatic and wet mapping functions.double[]ViennaOne.mappingFactors(TrackingCoordinates trackingCoordinates, GeodeticPoint point, AbsoluteDate date) This method allows the computation of the hydrostatic and wet mapping functions.double[]ViennaThree.mappingFactors(TrackingCoordinates trackingCoordinates, GeodeticPoint point, AbsoluteDate date) This method allows the computation of the hydrostatic and wet mapping functions.AbstractVienna.pathDelay(TrackingCoordinates trackingCoordinates, GeodeticPoint point, double[] parameters, AbsoluteDate date) Calculates the tropospheric path delay for the signal path from a ground station to a satellite.AskneNordiusModel.pathDelay(TrackingCoordinates trackingCoordinates, GeodeticPoint point, double[] parameters, AbsoluteDate date) Calculates the tropospheric path delay for the signal path from a ground station to a satellite.CanonicalSaastamoinenModel.pathDelay(TrackingCoordinates trackingCoordinates, GeodeticPoint point, double[] parameters, AbsoluteDate date) Calculates the tropospheric path delay for the signal path from a ground station to a satellite.ConstantTroposphericModel.pathDelay(TrackingCoordinates trackingCoordinates, GeodeticPoint point, double[] parameters, AbsoluteDate date) Calculates the tropospheric path delay for the signal path from a ground station to a satellite.EstimatedModel.pathDelay(TrackingCoordinates trackingCoordinates, GeodeticPoint point, double[] parameters, AbsoluteDate date) Calculates the tropospheric path delay for the signal path from a ground station to a satellite.FixedTroposphericDelay.pathDelay(TrackingCoordinates trackingCoordinates, GeodeticPoint point, double[] parameters, AbsoluteDate date) Calculates the tropospheric path delay for the signal path from a ground station to a satellite.MariniMurray.pathDelay(TrackingCoordinates trackingCoordinates, GeodeticPoint point, double[] parameters, AbsoluteDate date) Calculates the tropospheric path delay for the signal path from a ground station to a satellite.MendesPavlisModel.pathDelay(TrackingCoordinates trackingCoordinates, GeodeticPoint point, double[] parameters, AbsoluteDate date) Calculates the tropospheric path delay for the signal path from a ground station to a satellite.ModifiedHopfieldModel.pathDelay(TrackingCoordinates trackingCoordinates, GeodeticPoint point, double[] parameters, AbsoluteDate date) Calculates the tropospheric path delay for the signal path from a ground station to a satellite.ModifiedSaastamoinenModel.pathDelay(TrackingCoordinates trackingCoordinates, GeodeticPoint point, double[] parameters, AbsoluteDate date) Calculates the tropospheric path delay for the signal path from a ground station to a satellite.TimeSpanEstimatedModel.pathDelay(TrackingCoordinates trackingCoordinates, GeodeticPoint point, double[] parameters, AbsoluteDate date) Calculates the tropospheric path delay for the signal path from a ground station to a satellite.TroposphericModel.pathDelay(TrackingCoordinates trackingCoordinates, GeodeticPoint point, double[] parameters, AbsoluteDate date) Calculates the tropospheric path delay for the signal path from a ground station to a satellite. -
Uses of GeodeticPoint in org.orekit.models.earth.troposphere.iturp834
Methods in org.orekit.models.earth.troposphere.iturp834 with parameters of type GeodeticPointModifier and TypeMethodDescriptionITURP834WeatherParametersProvider.getWeatherParameters(GeodeticPoint location, AbsoluteDate date) Provide weather parameters.double[]ITURP834MappingFunction.mappingFactors(TrackingCoordinates trackingCoordinates, GeodeticPoint point, AbsoluteDate date) ITURP834PathDelay.pathDelay(TrackingCoordinates trackingCoordinates, GeodeticPoint point, double[] parameters, AbsoluteDate date) Calculates the tropospheric path delay for the signal path from a ground station to a satellite. -
Uses of GeodeticPoint in org.orekit.models.earth.weather
Methods in org.orekit.models.earth.weather with parameters of type GeodeticPointModifier and TypeMethodDescriptionAbstractGlobalPressureTemperature.getA(GeodeticPoint location, AbsoluteDate date) Get coefficients array for VMF mapping function.AbstractGlobalPressureTemperature.getGradientCoefficients(GeodeticPoint location, AbsoluteDate date) Get azimuthal asymmetry gradients.AbstractGlobalPressureTemperature.getWeatherParameters(GeodeticPoint location, AbsoluteDate date) Provide weather parameters.ConstantPressureTemperatureHumidityProvider.getWeatherParameters(GeodeticPoint location, AbsoluteDate date) Provide weather parameters.GlobalPressureTemperature.getWeatherParameters(GeodeticPoint location, AbsoluteDate date) Provide weather parameters.PressureTemperatureHumidityProvider.getWeatherParameters(GeodeticPoint location, AbsoluteDate date) Provide weather parameters. -
Uses of GeodeticPoint in org.orekit.propagation.events.functions
Methods in org.orekit.propagation.events.functions that return GeodeticPointModifier and TypeMethodDescriptionprotected GeodeticPointAbstractGeodeticEventFunction.transformToGeodeticPoint(SpacecraftState s) Compute the geodetic coordinates. -
Uses of GeodeticPoint in org.orekit.utils
Methods in org.orekit.utils that return GeodeticPointModifier and TypeMethodDescriptionGeodeticExtendedPositionProvider.getGeodeticPoint()Get the surface point.Methods in org.orekit.utils with parameters of type GeodeticPointModifier and TypeMethodDescriptionWaypointPVBuilder.addWaypoint(GeodeticPoint point, AbsoluteDate date) Add a waypoint.WaypointPVBuilder.InterpolationFactory.create(AbsoluteDate date1, GeodeticPoint point1, AbsoluteDate date2, GeodeticPoint point2, OneAxisEllipsoid body) Create aPVCoordinatesProviderwhich interpolates between the provided waypoints.protected PVCoordinatesProviderWaypointPVBuilder.createFinal(GeodeticPoint lastPoint) Create the final provider.protected PVCoordinatesProviderWaypointPVBuilder.createInitial(GeodeticPoint firstPoint) Create the initial provider.Constructors in org.orekit.utils with parameters of type GeodeticPointModifierConstructorDescriptionGeodeticExtendedPositionProvider(BodyShape bodyShape, GeodeticPoint point) Simple constructor.