Class MSACPlaneCorrespondenceAffineTransformation3DRobustEstimator


public class MSACPlaneCorrespondenceAffineTransformation3DRobustEstimator extends PlaneCorrespondenceAffineTransformation3DRobustEstimator
Finds the best affine 3D transformation for provided collections of matched planes using MSAC algorithm.
  • Field Details

    • DEFAULT_THRESHOLD

      public static final double DEFAULT_THRESHOLD
      Constant 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 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.
      See Also:
    • MIN_THRESHOLD

      public static final double MIN_THRESHOLD
      Minimum value that can be set as threshold. Threshold must be strictly greater than 0.0.
      See Also:
    • threshold

      private double threshold
      Threshold to determine whether planes are inliers or not when testing possible estimation solutions. The threshold refers to the amount of error (i.e. distance and director vector angle difference) a possible solution has on a matched pair of planes.
  • Constructor Details

    • MSACPlaneCorrespondenceAffineTransformation3DRobustEstimator

      public MSACPlaneCorrespondenceAffineTransformation3DRobustEstimator()
      Constructor.
    • MSACPlaneCorrespondenceAffineTransformation3DRobustEstimator

      public MSACPlaneCorrespondenceAffineTransformation3DRobustEstimator(List<Plane> inputPlanes, List<Plane> outputPlanes)
      Constructor with lists of planes to be used to estimate an affine 2D transformation. Planes in the list 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 MINIMUM_SIZE.
      Parameters:
      inputPlanes - list of input planes to be used to estimate an affine 3D transformation.
      outputPlanes - list of output planes to be used to estimate an affine 3D transformation.
      Throws:
      IllegalArgumentException - if provided lists of planes don't have the same size or their size is smaller than MINIMUM_SIZE.
    • MSACPlaneCorrespondenceAffineTransformation3DRobustEstimator

      public MSACPlaneCorrespondenceAffineTransformation3DRobustEstimator(AffineTransformation3DRobustEstimatorListener listener)
      Constructor.
      Parameters:
      listener - listener to be notified of events such as when estimation starts, ends or its progress significantly changes.
    • MSACPlaneCorrespondenceAffineTransformation3DRobustEstimator

      public MSACPlaneCorrespondenceAffineTransformation3DRobustEstimator(AffineTransformation3DRobustEstimatorListener listener, List<Plane> inputPlanes, List<Plane> outputPlanes)
      Constructor with listener and lists of planes to be used to estimate an affine 3D transformation. Planes in the list 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 MINIMUM_SIZE.
      Parameters:
      listener - listener to be notified of events such as when estimation starts, ends or its progress significantly changes.
      inputPlanes - list of input planes to be used to estimate an affine 3D transformation.
      outputPlanes - list of output planes to be used to estimate an affine 3D transformation.
      Throws:
      IllegalArgumentException - if provided lists of planes don't have the same size or their size is smaller than MINIMUM_SIZE.
  • Method Details

    • getThreshold

      public double getThreshold()
      Returns threshold to determine whether planes are inliers or not when testing possible estimation solutions. 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 lines 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.
    • setThreshold

      public void setThreshold(double threshold) throws LockedException
      Sets threshold to determine whether planes are inliers or not when testing possible estimation solutions. 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.
    • estimate

      public AffineTransformation3D estimate() throws LockedException, NotReadyException, com.irurueta.numerical.robust.RobustEstimatorException
      Estimates an affine 2D transformation using a robust estimator and the best set of matched 2D planes correspondences found using the robust estimator.
      Specified by:
      estimate in class AffineTransformation3DRobustEstimator
      Returns:
      an affine 2D transformation.
      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).
    • getMethod

      public com.irurueta.numerical.robust.RobustEstimatorMethod getMethod()
      Returns method being used for robust estimation.
      Specified by:
      getMethod in class AffineTransformation3DRobustEstimator
      Returns:
      method being used for robust estimation.
    • 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:
      getRefinementStandardDeviation in class AffineTransformation3DRobustEstimator
      Returns:
      standard deviation used for refinement.