Package com.irurueta.geometry.estimators
Class PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator
java.lang.Object
com.irurueta.geometry.estimators.PinholeCameraRobustEstimator
com.irurueta.geometry.estimators.LinePlaneCorrespondencePinholeCameraRobustEstimator
com.irurueta.geometry.estimators.DLTLinePlaneCorrespondencePinholeCameraRobustEstimator
com.irurueta.geometry.estimators.PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator
public class PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator
extends DLTLinePlaneCorrespondencePinholeCameraRobustEstimator
Finds the best pinhole camera for provided collections of matched lines and
planes using PROSAC algorithm.
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Field Summary
FieldsModifier and TypeFieldDescriptionprivate booleanIndicates whether inliers must be computed and kept.private booleanIndicates whether residuals must be computed and kept.static final booleanIndicates that by default inliers will only be computed but not kept.static final booleanIndicates that by default residuals will only be computed but not kept.static final doubleConstant defining default threshold to determine whether planes are inliers or not.static final doubleMinimum value that can be set as threshold.private double[]Quality scores corresponding to each pair of matched points.private doubleThreshold to determine whether planes are inliers or not when testing possible estimation solutions.Fields inherited from class com.irurueta.geometry.estimators.LinePlaneCorrespondencePinholeCameraRobustEstimator
DEFAULT_ROBUST_METHOD, lines, MIN_NUMBER_OF_LINE_PLANE_CORRESPONDENCES, planesFields inherited from class com.irurueta.geometry.estimators.PinholeCameraRobustEstimator
confidence, covariance, DEFAULT_CONFIDENCE, DEFAULT_KEEP_COVARIANCE, DEFAULT_MAX_ITERATIONS, DEFAULT_PROGRESS_DELTA, DEFAULT_REFINE_RESULT, DEFAULT_SUGGEST_ASPECT_RATIO_ENABLED, DEFAULT_SUGGEST_CENTER_ENABLED, DEFAULT_SUGGEST_HORIZONTAL_FOCAL_LENGTH_ENABLED, DEFAULT_SUGGEST_PRINCIPAL_POINT_ENABLED, DEFAULT_SUGGEST_ROTATION_ENABLED, DEFAULT_SUGGEST_SKEWNESS_VALUE_ENABLED, DEFAULT_SUGGEST_VERTICAL_FOCAL_LENGTH_ENABLED, DEFAULT_SUGGESTED_ASPECT_RATIO_VALUE, DEFAULT_SUGGESTED_SKEWNESS_VALUE, DEFAULT_USE_FAST_REFINEMENT, inliersData, keepCovariance, listener, locked, MAX_CONFIDENCE, MAX_PROGRESS_DELTA, maxIterations, MIN_CONFIDENCE, MIN_ITERATIONS, MIN_PROGRESS_DELTA, progressDelta, refineResult, suggestAspectRatioEnabled, suggestCenterEnabled, suggestedAspectRatioValue, suggestedCenterValue, suggestedHorizontalFocalLengthValue, suggestedPrincipalPointValue, suggestedRotationValue, suggestedSkewnessValue, suggestedVerticalFocalLengthValue, suggestHorizontalFocalLengthEnabled, suggestPrincipalPointEnabled, suggestRotationEnabled, suggestSkewnessValueEnabled, suggestVerticalFocalLengthEnabled, useFastRefinement -
Constructor Summary
ConstructorsConstructorDescriptionConstructor.PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator(double[] qualityScores) Constructor.PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator(PinholeCameraRobustEstimatorListener listener) Constructor with listener.PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator(PinholeCameraRobustEstimatorListener listener, double[] qualityScores) Constructor with listener.PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator(PinholeCameraRobustEstimatorListener listener, List<Plane> planes, List<Line2D> lines) Constructor with listener and lists of matched planes and 2D lines to estimate a pinhole camera.PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator(PinholeCameraRobustEstimatorListener listener, List<Plane> planes, List<Line2D> lines, double[] qualityScores) Constructor with listener and lists of matched planes and 2D lines to estimate a pinhole camera.PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator(List<Plane> planes, List<Line2D> lines) Constructor with lists of matched planes and 2D lines to estimate a pinhole camera.PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator(List<Plane> planes, List<Line2D> lines, double[] qualityScores) Constructor with lists of matched planes and 2D lines to estimate a pinhole camera. -
Method Summary
Modifier and TypeMethodDescriptionestimate()Estimates a pinhole camera using a robust estimator and the best set of matched 2D line/3D plane correspondences found using the robust estimator.com.irurueta.numerical.robust.RobustEstimatorMethodReturns method being used for robust estimation.double[]Returns quality scores corresponding to each pair of matched points.protected doubleGets standard deviation used for Levenberg-Marquardt fitting during refinement.doubleReturns threshold to determine whether planes are inliers or not when testing possible estimation solutions.private voidinternalSetQualityScores(double[] qualityScores) Sets quality scores corresponding to each pair of matched points.booleanIndicates whether inliers must be computed and kept.booleanIndicates whether residuals must be computed and kept.booleanisReady()Indicates if estimator is ready to start the affine 2D transformation estimation.voidsetComputeAndKeepInliersEnabled(boolean computeAndKeepInliers) Specifies whether inliers must be computed and kept.voidsetComputeAndKeepResidualsEnabled(boolean computeAndKeepResiduals) Specifies whether residuals must be computed and kept.voidsetQualityScores(double[] qualityScores) Sets quality scores corresponding to each pair of matched points.voidsetThreshold(double threshold) Sets threshold to determine whether planes are inliers or not when testing possible estimation solutions.Methods inherited from class com.irurueta.geometry.estimators.DLTLinePlaneCorrespondencePinholeCameraRobustEstimator
create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, createMethods inherited from class com.irurueta.geometry.estimators.LinePlaneCorrespondencePinholeCameraRobustEstimator
attemptRefine, getLines, getPlanes, setLinesAndPlanes, singleBackprojectionResidualMethods inherited from class com.irurueta.geometry.estimators.PinholeCameraRobustEstimator
createFromPlanesAndLines, createFromPlanesAndLines, createFromPlanesAndLines, createFromPlanesAndLines, createFromPlanesAndLines, createFromPlanesAndLines, createFromPlanesAndLines, createFromPlanesAndLines, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, createFromPoints, getConfidence, getCovariance, getInliersData, getListener, getMaxIterations, getProgressDelta, getSuggestedAspectRatioValue, getSuggestedCenterValue, getSuggestedHorizontalFocalLengthValue, getSuggestedPrincipalPointValue, getSuggestedRotationValue, getSuggestedSkewnessValue, getSuggestedVerticalFocalLengthValue, hasSuggestions, isCovarianceKept, isFastRefinementUsed, isListenerAvailable, isLocked, isResultRefined, isSuggestAspectRatioEnabled, isSuggestCenterEnabled, isSuggestHorizontalFocalLengthEnabled, isSuggestPrincipalPointEnabled, isSuggestRotationEnabled, isSuggestSkewnessValueEnabled, isSuggestVerticalFocalLengthEnabled, setConfidence, setCovarianceKept, setFastRefinementUsed, setListener, setMaxIterations, setProgressDelta, setResultRefined, setSuggestAspectRatioEnabled, setSuggestCenterEnabled, setSuggestedAspectRatioValue, setSuggestedCenterValue, setSuggestedHorizontalFocalLengthValue, setSuggestedPrincipalPointValue, setSuggestedRotationValue, setSuggestedSkewnessValue, setSuggestedVerticalFocalLengthValue, setSuggestHorizontalFocalLengthEnabled, setSuggestPrincipalPointEnabled, setSuggestRotationEnabled, setSuggestSkewnessValueEnabled, setSuggestVerticalFocalLengthEnabled
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Field Details
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DEFAULT_THRESHOLD
public static final double DEFAULT_THRESHOLDConstant defining default threshold to determine whether planes are inliers or not. Residuals to determine whether planes are inliers or not are computed by comparing two planes algebraically (e.g. doing the dot product of their parameters). A residual of 0 indicates that dot product was 1 or -1 and lines were equal. A residual of 1 indicates that dot product was 0 and lines were orthogonal. If dot product between lines is -1, then although their director vectors are opposed, lines are considered equal, since sign changes are not taken into account and their residuals will be 0.- See Also:
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MIN_THRESHOLD
public static final double MIN_THRESHOLDMinimum value that can be set as threshold. Threshold must be strictly greater than 0.0.- See Also:
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DEFAULT_COMPUTE_AND_KEEP_INLIERS
public static final boolean DEFAULT_COMPUTE_AND_KEEP_INLIERSIndicates that by default inliers will only be computed but not kept.- See Also:
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DEFAULT_COMPUTE_AND_KEEP_RESIDUALS
public static final boolean DEFAULT_COMPUTE_AND_KEEP_RESIDUALSIndicates that by default residuals will only be computed but not kept.- See Also:
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threshold
private double thresholdThreshold to determine whether planes are inliers or not when testing possible estimation solutions. The threshold refers to the amount of error a possible solution has on a plane respect the back-projected plane of a line using estimated camera. -
qualityScores
private double[] qualityScoresQuality scores corresponding to each pair of matched points. The larger the score value the better the quality of the matching. -
computeAndKeepInliers
private boolean computeAndKeepInliersIndicates whether inliers must be computed and kept. -
computeAndKeepResiduals
private boolean computeAndKeepResidualsIndicates whether residuals must be computed and kept.
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Constructor Details
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PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator
public PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator()Constructor. -
PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator
public PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator(List<Plane> planes, List<Line2D> lines) Constructor with lists of matched planes and 2D lines to estimate a pinhole camera. Points and lines in the lists located at the same position are considered to be matched. Hence, both lists must have the same size, and their size must be greater or equal than MIN_NUMBER_OF_LINE_PLANE_CORRESPONDENCES (4 matches).- Parameters:
planes- list of planes used to estimate a pinhole camera.lines- list of corresponding projected 2D lines used to estimate a pinhole camera.- Throws:
IllegalArgumentException- if provided lists don't have the same size or their size is smaller than required minimum size (4 matches).
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PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator
public PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator(PinholeCameraRobustEstimatorListener listener) Constructor with listener.- Parameters:
listener- listener to be notified of events such as when estimation starts, ends or its progress significantly changes.
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PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator
public PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator(PinholeCameraRobustEstimatorListener listener, List<Plane> planes, List<Line2D> lines) Constructor with listener and lists of matched planes and 2D lines to estimate a pinhole camera. Points and lines in the lists located at the same position are considered to be matched. Hence, both lists must have the same size, and their size must be greater or equal than MIN_NUMBER_OF_LINE_PLANE_CORRESPONDENCES (4 matches).- Parameters:
listener- listener to be notified of events such as when estimation starts, ends or its progress significantly changes.planes- list of planes used to estimate a pinhole camera.lines- list of corresponding projected 2D lines used to estimate a pinhole camera.- Throws:
IllegalArgumentException- if provided lists don't have the same size or their size is smaller than required minimum size (4 matches).
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PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator
public PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator(double[] qualityScores) Constructor.- Parameters:
qualityScores- quality scores corresponding to each pair of matched points.- Throws:
IllegalArgumentException- if provided quality scores length is smaller than MIN_NUMBER_OF_LINE_PLANE_CORRESPONDENCES (i.e. 4 samples).
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PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator
public PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator(List<Plane> planes, List<Line2D> lines, double[] qualityScores) Constructor with lists of matched planes and 2D lines to estimate a pinhole camera. Points and lines in the lists located at the same position are considered to be matched. Hence, both lists must have the same size, and their size must be greater or equal than MIN_NUMBER_OF_LINE_PLANE_CORRESPONDENCES (4 matches).- Parameters:
planes- list of planes used to estimate a pinhole camera.lines- list of corresponding projected 2D lines used to estimate a pinhole camera.qualityScores- quality scores corresponding to each pair of matched points.- Throws:
IllegalArgumentException- if provided lists or quality scores don't have the same size or their size is smaller than required minimum size (4 matches).
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PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator
public PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator(PinholeCameraRobustEstimatorListener listener, double[] qualityScores) Constructor with listener.- Parameters:
listener- listener to be notified of events such as when estimation starts, ends or its progress significantly changes.qualityScores- quality scores corresponding to each pair of matched points.- Throws:
IllegalArgumentException- if provided quality scores length is smaller than MIN_NUMBER_OF_LINE_PLANE_CORRESPONDENCES (i.e. 4 samples).
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PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator
public PROSACDLTLinePlaneCorrespondencePinholeCameraRobustEstimator(PinholeCameraRobustEstimatorListener listener, List<Plane> planes, List<Line2D> lines, double[] qualityScores) Constructor with listener and lists of matched planes and 2D lines to estimate a pinhole camera. Points and lines in the lists located at the same position are considered to be matched. Hence, both lists must have the same size, and their size must be greater or equal than MIN_NUMBER_OF_LINE_PLANE_CORRESPONDENCES (4 matches).- Parameters:
listener- listener to be notified of events such as when estimation starts, ends or its progress significantly changes.planes- list of planes used to estimate a pinhole camera.lines- list of corresponding projected 2D lines used to estimate a pinhole camera.qualityScores- quality scores corresponding to each pair of matched points.- Throws:
IllegalArgumentException- if provided lists don't have the same size or their size is smaller than required minimum size (4 matches).
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Method Details
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getThreshold
public double getThreshold()Returns threshold to determine whether planes are inliers or not when testing possible estimation solutions. The threshold refers to the amount of error a possible solution has on a plane respect the back-projected plane of a line using estimated camera Residuals to determine whether planes are inliers or not are computed by comparing two planes algebraically (e.g. doing the dot product of their parameters). A residual of 0 indicates that dot product was 1 or -1 and planes were equal. A residual of 1 indicates that dot product was 0 and planes were orthogonal. If dot product between planes is -1, then although their director vectors are opposed, planes are considered equal, since sign changes are not taken into account and their residuals will be 0.- Returns:
- threshold to determine whether matched planes are inliers or not.
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setThreshold
Sets threshold to determine whether planes are inliers or not when testing possible estimation solutions. The threshold refers to the amount of error a possible solution has on a plane respect the back-projected plane of a line using estimated camera Residuals to determine whether planes are inliers or not are computed by comparing two planes algebraically (e.g. doing the dot product of their parameters). A residual of 0 indicates that dot product was 1 or -1 and planes were equal. A residual of 1 indicates that dot product was 0 and planes were orthogonal. If dot product between planes is -1, then although their director vectors are opposed, planes are considered equal, since sign changes are not taken into account and their residuals will be 0.- Parameters:
threshold- threshold to determine whether matched planes are inliers or not.- Throws:
IllegalArgumentException- if provided value is equal or less than zero.LockedException- if robust estimator is locked because an estimation is already in progress.
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getQualityScores
public double[] getQualityScores()Returns quality scores corresponding to each pair of matched points. The larger the score value the better the quality of the matching.- Overrides:
getQualityScoresin classLinePlaneCorrespondencePinholeCameraRobustEstimator- Returns:
- quality scores corresponding to each pair of matched points.
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setQualityScores
Sets quality scores corresponding to each pair of matched points. The larger the score value the better the quality of the matching.- Overrides:
setQualityScoresin classLinePlaneCorrespondencePinholeCameraRobustEstimator- Parameters:
qualityScores- quality scores corresponding to each pair of matched points.- Throws:
LockedException- if robust estimator is locked because an estimation is already in progress.IllegalArgumentException- if provided quality scores length is smaller than MIN_NUMBER_OF_LINE_PLANE_CORRESPONDENCES (i.e. 4 samples).
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isReady
public boolean isReady()Indicates if estimator is ready to start the affine 2D transformation estimation. This is true when input data (i.e. lists of matched points and quality scores) are provided and a minimum of MINIMUM_SIZE points are available.- Overrides:
isReadyin classLinePlaneCorrespondencePinholeCameraRobustEstimator- Returns:
- true if estimator is ready, false otherwise.
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isComputeAndKeepInliersEnabled
public boolean isComputeAndKeepInliersEnabled()Indicates whether inliers must be computed and kept.- Returns:
- true if inliers must be computed and kept, false if inliers only need to be computed but not kept.
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setComputeAndKeepInliersEnabled
Specifies whether inliers must be computed and kept.- Parameters:
computeAndKeepInliers- true if inliers must be computed and kept, false if inliers only need to be computed but not kept.- Throws:
LockedException- if estimator is locked.
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isComputeAndKeepResidualsEnabled
public boolean isComputeAndKeepResidualsEnabled()Indicates whether residuals must be computed and kept.- Returns:
- true if residuals must be computed and kept, false if residuals only need to be computed but not kept.
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setComputeAndKeepResidualsEnabled
public void setComputeAndKeepResidualsEnabled(boolean computeAndKeepResiduals) throws LockedException Specifies whether residuals must be computed and kept.- Parameters:
computeAndKeepResiduals- true if residuals must be computed and kept, false if residuals only need to be computed but not kept.- Throws:
LockedException- if estimator is locked.
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estimate
public PinholeCamera estimate() throws LockedException, NotReadyException, com.irurueta.numerical.robust.RobustEstimatorExceptionEstimates a pinhole camera using a robust estimator and the best set of matched 2D line/3D plane correspondences found using the robust estimator.- Specified by:
estimatein classPinholeCameraRobustEstimator- Returns:
- a pinhole camera.
- Throws:
LockedException- if robust estimator is locked because an estimation is already in progress.NotReadyException- if provided input data is not enough to start the estimation.com.irurueta.numerical.robust.RobustEstimatorException- if estimation fails for any reason (i.e. numerical instability, no solution available, etc).
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getMethod
public com.irurueta.numerical.robust.RobustEstimatorMethod getMethod()Returns method being used for robust estimation.- Specified by:
getMethodin classPinholeCameraRobustEstimator- Returns:
- method being used for robust estimation.
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getRefinementStandardDeviation
protected double getRefinementStandardDeviation()Gets standard deviation used for Levenberg-Marquardt fitting during refinement. Returned value gives an indication of how much variance each residual has. Typically, this value is related to the threshold used on each robust estimation, since residuals of found inliers are within the range of such threshold.- Specified by:
getRefinementStandardDeviationin classPinholeCameraRobustEstimator- Returns:
- standard deviation used for refinement.
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internalSetQualityScores
private void internalSetQualityScores(double[] qualityScores) Sets quality scores corresponding to each pair of matched points. This method is used internally and does not check whether instance is locked or not.- Parameters:
qualityScores- quality scores to be set.- Throws:
IllegalArgumentException- if provided quality scores length is smaller than MINIMUM_SIZE.
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