Isis 3 Developer Reference
Isis::PlaneShape Class Reference

Define plane shape model. More...

#include <PlaneShape.h>

Inheritance diagram for Isis::PlaneShape:
Inheritance graph
Collaboration diagram for Isis::PlaneShape:
Collaboration graph

Public Member Functions

 PlaneShape (Target *target, Isis::Pvl &pvl)
 Initialize the PlaneShape. More...
 
 PlaneShape (Target *target)
 Initialize the PlaneShape. More...
 
 PlaneShape ()
 Initialize the PlaneShape. More...
 
 ~PlaneShape ()
 Destructor. More...
 
bool intersectSurface (std::vector< double > observerPos, std::vector< double > lookDirection)
 Find the intersection point. More...
 
bool isDEM () const
 Indicates that this shape model is not from a DEM. More...
 
void calculateSurfaceNormal ()
 There is no implementation for this method. More...
 
void calculateDefaultNormal ()
 There is no implementation for this method. More...
 
void calculateLocalNormal (QVector< double *> cornerNeighborPoints)
 There is no implementation for this method. More...
 
double emissionAngle (const std::vector< double > &sB)
 Computes and returns emission angle in degrees given the observer position. More...
 
double incidenceAngle (const std::vector< double > &uB)
 Computes and returns incidence angle in degrees given the sun position. More...
 
Distance localRadius (const Latitude &lat, const Longitude &lon)
 Gets the local radius for the given latitude/longitude coordinate. More...
 
void Initialize ()
 Initializes the ShapeModel private variables. More...
 
virtual bool intersectSurface (const Latitude &lat, const Longitude &lon, const std::vector< double > &observerPos, const bool &backCheck=true)
 Compute surface intersection with optional occlusion check. More...
 
virtual bool intersectSurface (const SurfacePoint &surfpt, const std::vector< double > &observerPos, const bool &backCheck=true)
 Compute surface intersection with optional occlusion check. More...
 
SurfacePointsurfaceIntersection () const
 Returns the surface intersection for this ShapeModel. More...
 
bool hasIntersection ()
 Returns intersection status. More...
 
bool hasNormal () const
 Returns surface point normal status. More...
 
virtual void clearSurfacePoint ()
 Clears or resets the current surface point. More...
 
virtual double phaseAngle (const std::vector< double > &sB, const std::vector< double > &uB)
 Computes and returns phase angle, in degrees, given the positions of the observer and illuminator. More...
 
QString name () const
 Gets the shape name. More...
 
void setHasIntersection (bool b)
 Sets the flag to indicate whether this ShapeModel has an intersection. More...
 
virtual void setSurfacePoint (const SurfacePoint &surfacePoint)
 Set surface intersection point. More...
 
std::vector< double > normal ()
 Returns the local surface normal at the current intersection point. More...
 
virtual bool isVisibleFrom (const std::vector< double > observerPos, const std::vector< double > lookDirection)
 Default occulsion implementation. More...
 

Protected Member Functions

void setNormal (const std::vector< double >)
 Sets the normal for the currect intersection point. More...
 
void setNormal (const double a, const double b, const double c)
 Sets the normal for the currect intersection point. More...
 
void setName (QString name)
 Sets the shape name. More...
 
void calculateEllipsoidalSurfaceNormal ()
 Calculates the ellipsoidal surface normal. More...
 
bool hasEllipsoidIntersection ()
 Returns the status of the ellipsoid model intersection. More...
 
bool intersectEllipsoid (const std::vector< double > observerPosRelativeToTarget, const std::vector< double > &observerLookVectorToTarget)
 Finds the intersection point on the ellipsoid model using the given position of the observer (spacecraft) and direction vector from the observer to the target (body). More...
 
bool hasValidTarget () const
 Returns the status of the target. More...
 
std::vector< DistancetargetRadii () const
 Returns the radii of the body in km. More...
 
void setHasNormal (bool status)
 Sets the flag to indicate whether this ShapeModel has a surface normal. More...
 
double resolution ()
 Convenience method to get pixel resolution (m/pix) at current intersection point. More...
 

Detailed Description

Define plane shape model.

This class defines a plane shape model for Isis3 target bodies as well as provide utilities to retrieve radii and photometric information.

Author
2012-07-30 Ken Edmundson

Constructor & Destructor Documentation

◆ PlaneShape() [1/3]

Isis::PlaneShape::PlaneShape ( Target target,
Isis::Pvl pvl 
)

Initialize the PlaneShape.

Parameters
pvlValid Isis3 cube label.

References Isis::ShapeModel::setName().

◆ PlaneShape() [2/3]

Isis::PlaneShape::PlaneShape ( Target target)

Initialize the PlaneShape.

Parameters
pvlValid Isis3 cube label.

References Isis::ShapeModel::setName().

◆ PlaneShape() [3/3]

Isis::PlaneShape::PlaneShape ( )

Initialize the PlaneShape.

Parameters
pvlValid Isis3 cube label.

References Isis::ShapeModel::setName().

◆ ~PlaneShape()

Isis::PlaneShape::~PlaneShape ( )

Destructor.

Member Function Documentation

◆ calculateDefaultNormal()

void Isis::PlaneShape::calculateDefaultNormal ( )
virtual

There is no implementation for this method.

Implements Isis::ShapeModel.

◆ calculateEllipsoidalSurfaceNormal()

void Isis::ShapeModel::calculateEllipsoidalSurfaceNormal ( )
protectedinherited

Calculates the ellipsoidal surface normal.

References _FILEINFO_.

◆ calculateLocalNormal()

void Isis::PlaneShape::calculateLocalNormal ( QVector< double *>  cornerNeighborPoints)
virtual

There is no implementation for this method.

Implements Isis::ShapeModel.

◆ calculateSurfaceNormal()

void Isis::PlaneShape::calculateSurfaceNormal ( )
virtual

There is no implementation for this method.

Implements Isis::ShapeModel.

◆ clearSurfacePoint()

◆ emissionAngle()

double Isis::PlaneShape::emissionAngle ( const std::vector< double > &  sB)
virtual

Computes and returns emission angle in degrees given the observer position.

Emission Angle: The angle between the surface normal vector at the intersection point and a vector from the intersection point to the spacecraft. The emission angle varies from 0 degrees when the spacecraft is viewing the sub-spacecraft point (nadir viewing) to 90 degrees when the intercept is tangent to the surface of the target body. Thus, higher values of emission angle indicate more oblique viewing of the target.

Parameters
sBSpacecraft position in body-fixed coordinates
Returns
Emmision angle in decimal degrees

Reimplemented from Isis::ShapeModel.

References Isis::SurfacePoint::GetX(), Isis::SurfacePoint::GetY(), Isis::SurfacePoint::GetZ(), Isis::Displacement::kilometers(), Isis::RAD2DEG, and Isis::ShapeModel::surfaceIntersection().

◆ hasEllipsoidIntersection()

bool Isis::ShapeModel::hasEllipsoidIntersection ( )
protectedinherited

Returns the status of the ellipsoid model intersection.

Returns
bool Indicates whether this shape model has a valid ellipsoid intersection.

◆ hasIntersection()

◆ hasNormal()

bool Isis::ShapeModel::hasNormal ( ) const
inherited

Returns surface point normal status.

Returns
Indicates whether this ShapeModel has a surface normal.

Referenced by Isis::Camera::GetLocalNormal(), and Isis::EmbreeShapeModel::incidenceAngle().

◆ hasValidTarget()

bool Isis::ShapeModel::hasValidTarget ( ) const
protectedinherited

Returns the status of the target.

If it is NULL, this method returns false.

Returns
Indicates whether the target is valid.

Referenced by Isis::EmbreeShapeModel::ellipsoidNormal(), Isis::NaifDskShape::ellipsoidNormal(), and Isis::BulletShapeModel::ellipsoidNormal().

◆ incidenceAngle()

double Isis::PlaneShape::incidenceAngle ( const std::vector< double > &  uB)
virtual

Computes and returns incidence angle in degrees given the sun position.

Incidence Angle: The incidence angle provides a measure of the lighting condition at the surface intersection point. The angle between the surface normal vector at the intersection point and a vector from the intersection point to the sun. The incidence angle varies from 0 degrees when the intersection point coincides with the sub-solar point to 90 degrees when the intersection point is at the terminator (i.e., in the shadowed or dark portion of the target body). Thus, higher values of incidence angles indicate the existence of a greater number of surface shadows.

Parameters
uBSun position in body-fixed coordinates
Returns
Incidence angle in decimal degrees

Reimplemented from Isis::ShapeModel.

References Isis::SurfacePoint::GetX(), Isis::SurfacePoint::GetY(), Isis::SurfacePoint::GetZ(), Isis::Displacement::kilometers(), Isis::RAD2DEG, and Isis::ShapeModel::surfaceIntersection().

◆ Initialize()

void Isis::ShapeModel::Initialize ( )
inherited

Initializes the ShapeModel private variables.

◆ intersectEllipsoid()

bool Isis::ShapeModel::intersectEllipsoid ( const std::vector< double >  observerBodyFixedPosition,
const std::vector< double > &  observerLookVectorToTarget 
)
protectedinherited

Finds the intersection point on the ellipsoid model using the given position of the observer (spacecraft) and direction vector from the observer to the target (body).

Parameters
observerBodyFixedPositionThree dimensional position of the observer, in the coordinate system of the target body.
observerLookVectorToTargetThree dimensional direction vector from the observer to the target.
Returns
bool Indicates whether this shape model found a valid ellipsoid intersection.

Referenced by Isis::EllipsoidShape::intersectSurface(), and Isis::DemShape::intersectSurface().

◆ intersectSurface() [1/3]

bool Isis::PlaneShape::intersectSurface ( std::vector< double >  observerPos,
std::vector< double >  lookDirection 
)
virtual

Find the intersection point.

Parameters
observerPosobserver (likely a spacecraft) position in Body-Fixed coordinates.
lookDirectionobserver (likely a spacecraft) look vector in Body- Fixed coordinates.

Implements Isis::ShapeModel.

References Isis::NaifStatus::CheckErrors(), Isis::SurfacePoint::FromNaifArray(), Isis::ShapeModel::setHasIntersection(), Isis::ShapeModel::setNormal(), and Isis::ShapeModel::surfaceIntersection().

◆ intersectSurface() [2/3]

bool Isis::ShapeModel::intersectSurface ( const Latitude lat,
const Longitude lon,
const std::vector< double > &  observerPos,
const bool &  backCheck = true 
)
virtualinherited

Compute surface intersection with optional occlusion check.

This method sets the surface point at the given latitude, longitude. The derived model is called to get the radius at that location to complete the accuracy of the surface point, them the derived method is called to complete the intersection.

Author
2017-03-23 Kris Becker
Parameters
latLatitude of the surface point
lonLongitude of the surface point
observerPosPosition of the observer
backCheckFlag to indicate occlusion check
Returns
bool True if the intersection point is valid (visable)

Reimplemented in Isis::BulletShapeModel, and Isis::EmbreeShapeModel.

◆ intersectSurface() [3/3]

bool Isis::ShapeModel::intersectSurface ( const SurfacePoint surfpt,
const std::vector< double > &  observerPos,
const bool &  backCheck = true 
)
virtualinherited

Compute surface intersection with optional occlusion check.

This method sets the surface point at the given latitude, longitude. The derived model is called to get the radius at that location to complete the accuracy of the surface point, them the derived method is called to complete the intersection.

Author
2017-03-23 Kris Becker
Parameters
surfptAbsolute point on the surface to check
observerPosPosition of the observer
backCheckFlag to indicate occlusion check
Returns
bool True if the intersection point is valid (visable)

Reimplemented in Isis::BulletShapeModel, and Isis::EmbreeShapeModel.

◆ isDEM()

bool Isis::PlaneShape::isDEM ( ) const
virtual

Indicates that this shape model is not from a DEM.

Since this method returns false for this class, the Camera class will not calculate the local normal using neighbor points.

Returns
bool Indicates that this is not a DEM shape model.

Implements Isis::ShapeModel.

◆ isVisibleFrom()

bool Isis::ShapeModel::isVisibleFrom ( const std::vector< double >  observerPos,
const std::vector< double >  lookDirection 
)
virtualinherited

Default occulsion implementation.

This method is originally copied from Sensor::SetLocalGround(bool backCheck). This version checks for the emission angle from the observer to be less than or equal to 90 degrees.

It is recommended that models derived from this base class reimplement this method if a more robust, efficent test can be made.

Note this implementation does not handle occlusion!

Author
2017-03-17 Kris Becker
Parameters
observerPosPosition of the observer in body fixed coordinates
lookDirectionLook direction from the observer
Returns
bool True if the point is not visable, false if it can be seen

Reimplemented in Isis::BulletShapeModel, and Isis::EmbreeShapeModel.

◆ localRadius()

Distance Isis::PlaneShape::localRadius ( const Latitude lat,
const Longitude lon 
)
virtual

Gets the local radius for the given latitude/longitude coordinate.

For the plane shape model, this is calculated by finding the distance of the surface intersection point from the plane's origin.

Returns
Distance The distance from the center of the body to its surface at the given lat/lon location.

Implements Isis::ShapeModel.

References Isis::SurfacePoint::GetX(), Isis::SurfacePoint::GetY(), Isis::SurfacePoint::GetZ(), Isis::Distance::Kilometers, Isis::Displacement::kilometers(), and Isis::ShapeModel::surfaceIntersection().

◆ name()

QString Isis::ShapeModel::name ( ) const
inherited

Gets the shape name.

Returns
QString The name of the ShapeModel.

Referenced by Isis::UniversalGroundMap::GroundRange(), Isis::VimsGroundMap::SetGround(), and Isis::Camera::SetGround().

◆ normal()

std::vector< double > Isis::ShapeModel::normal ( )
inherited

Returns the local surface normal at the current intersection point.

Note: This method will throw an error if the normal doesn't exist. Use the hasNormal() method to verify before calling this method.

See also
hasNormal()
Returns
A surface normal vector, if it exists.

References _FILEINFO_.

Referenced by Isis::DemShape::calculateDefaultNormal(), Isis::EllipsoidShape::calculateLocalNormal(), Isis::DemShape::calculateLocalNormal(), Isis::Camera::GetLocalNormal(), Isis::EmbreeShapeModel::incidenceAngle(), and Isis::BulletShapeModel::setLocalNormalFromIntercept().

◆ phaseAngle()

double Isis::ShapeModel::phaseAngle ( const std::vector< double > &  observerBodyFixedPosition,
const std::vector< double > &  illuminatorBodyFixedPosition 
)
virtualinherited

Computes and returns phase angle, in degrees, given the positions of the observer and illuminator.

Phase Angle: The angle between the vector from the intersection point to the observer (usually the spacecraft) and the vector from the intersection point to the illuminator (usually the sun).

Parameters
observerBodyFixedPositionThree dimensional position of the observer, in the coordinate system of the target body.
illuminatorBodyFixedPositionThree dimensional position for the illuminator, in the body-fixed coordinate system.
Returns
double Phase angle, in degrees.

References Isis::RAD2DEG.

Referenced by Isis::Sensor::PhaseAngle().

◆ resolution()

double Isis::ShapeModel::resolution ( )
protectedinherited

Convenience method to get pixel resolution (m/pix) at current intersection point.

Returns
The pixel resolution at the surface intersection.

References _FILEINFO_.

Referenced by Isis::DemShape::intersectSurface().

◆ setHasIntersection()

void Isis::ShapeModel::setHasIntersection ( bool  b)
inherited

Sets the flag to indicate whether this ShapeModel has an intersection.

Parameters
bIndicates whether there is an intersection.

Referenced by Isis::EquatorialCylindricalShape::intersectSurface(), Isis::EmbreeShapeModel::intersectSurface(), intersectSurface(), Isis::DemShape::intersectSurface(), and Isis::Sensor::SetLookDirection().

◆ setHasNormal()

void Isis::ShapeModel::setHasNormal ( bool  status)
protectedinherited

Sets the flag to indicate whether this ShapeModel has a surface normal.

Parameters
bIndicates whether there is a normal.

Referenced by Isis::DemShape::calculateDefaultNormal(), Isis::EllipsoidShape::calculateLocalNormal(), Isis::DemShape::calculateLocalNormal(), and Isis::EmbreeShapeModel::clearSurfacePoint().

◆ setName()

◆ setNormal() [1/2]

void Isis::ShapeModel::setNormal ( const std::vector< double >  normal)
protectedinherited

◆ setNormal() [2/2]

void Isis::ShapeModel::setNormal ( const double  a,
const double  b,
const double  c 
)
protectedinherited

Sets the normal for the currect intersection point.

Note: This method will throw an error if this ShapeModel doesn't have and intersection. Use the hasIntersection() method to verify before calling this method.

See also
hasIntersection()
Parameters
aFirst coordinate value for the three dimensional surface normal.
bSecond coordinate value for the three dimensional surface normal.
cThird coordinate value for the three dimensional surface normal.

References _FILEINFO_.

◆ setSurfacePoint()

void Isis::ShapeModel::setSurfacePoint ( const SurfacePoint surfacePoint)
virtualinherited

Set surface intersection point.

Parameters
surfacePointPosition coordinate for the surface point.

Reimplemented in Isis::BulletShapeModel.

Referenced by Isis::NaifDskShape::intersectSurface(), and Isis::RadarGroundMap::SetGround().

◆ surfaceIntersection()

◆ targetRadii()

std::vector< Distance > Isis::ShapeModel::targetRadii ( ) const
protectedinherited

Returns the radii of the body in km.

The radii are obtained from the target. Note: This method will throw an error if the ShapeModel does not have a valid target. Use the hasValidTarget() method to verify before calling this method.

See also
hasValidTarget()
Returns
Three dimensional vector containing the ellipsoid radii values.

References _FILEINFO_.

Referenced by Isis::DemShape::calculateDefaultNormal(), Isis::EllipsoidShape::calculateLocalNormal(), Isis::EmbreeShapeModel::ellipsoidNormal(), Isis::NaifDskShape::ellipsoidNormal(), Isis::BulletShapeModel::ellipsoidNormal(), Isis::EquatorialCylindricalShape::intersectSurface(), and Isis::EllipsoidShape::localRadius().


The documentation for this class was generated from the following files: