Class RANSACRobustKnownPositionAccelerometerCalibrator
java.lang.Object
com.irurueta.navigation.inertial.calibration.accelerometer.RobustKnownPositionAccelerometerCalibrator
com.irurueta.navigation.inertial.calibration.accelerometer.RANSACRobustKnownPositionAccelerometerCalibrator
- All Implemented Interfaces:
AccelerometerCalibrator
,AccelerometerNonLinearCalibrator
,OrderedStandardDeviationBodyKinematicsAccelerometerCalibrator
,QualityScoredAccelerometerCalibrator
,UnknownBiasAccelerometerCalibrator
,UnknownBiasNonLinearAccelerometerCalibrator
,AccelerometerBiasUncertaintySource
,AccelerometerCalibrationSource
public class RANSACRobustKnownPositionAccelerometerCalibrator
extends RobustKnownPositionAccelerometerCalibrator
Robustly estimates accelerometer biases, cross couplings and scaling factors
using a RANSAC algorithm to discard outliers.
To use this calibrator at least 10 measurements taken at a single known position must be taken at 10 different unknown orientations and zero velocity when common z-axis is assumed, otherwise at least 13 measurements are required.
Measured specific force is assumed to follow the model shown below:
fmeas = ba + (I + Ma) * ftrue + wWhere: - fmeas is the measured specific force. This is a 3x1 vector. - ba is accelerometer bias. Ideally, on a perfect accelerometer, this should be a 3x1 zero vector. - I is the 3x3 identity matrix. - Ma is the 3x3 matrix containing cross-couplings and scaling factors. Ideally, on a perfect accelerometer, this should be a 3x3 zero matrix. - ftrue is ground-truth specific force. - w is measurement noise.
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Nested Class Summary
Nested classes/interfaces inherited from class com.irurueta.navigation.inertial.calibration.accelerometer.RobustKnownPositionAccelerometerCalibrator
RobustKnownPositionAccelerometerCalibrator.PreliminaryResult
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Field Summary
FieldsModifier and TypeFieldDescriptionprivate boolean
Indicates whether inliers must be computed and kept.private boolean
Indicates whether residuals must be computed and kept.static final boolean
Indicates that by default inliers will only be computed but not kept.static final boolean
Indicates that by default residuals will only be computed but not kept.static final double
Constant defining default threshold to determine whether samples are inliers or not.static final double
Minimum value that can be set as threshold.private double
Threshold to determine whether samples are inliers or not when testing possible solutions.Fields inherited from class com.irurueta.navigation.inertial.calibration.accelerometer.RobustKnownPositionAccelerometerCalibrator
confidence, DEFAULT_CONFIDENCE, DEFAULT_KEEP_COVARIANCE, DEFAULT_MAX_ITERATIONS, DEFAULT_PROGRESS_DELTA, DEFAULT_REFINE_RESULT, DEFAULT_ROBUST_METHOD, DEFAULT_USE_COMMON_Z_AXIS, gravityNorm, identity, inliersData, listener, MAX_CONFIDENCE, MAX_PROGRESS_DELTA, maxIterations, measurements, MIN_CONFIDENCE, MIN_ITERATIONS, MIN_PROGRESS_DELTA, MINIMUM_MEASUREMENTS_COMMON_Z_AXIS, MINIMUM_MEASUREMENTS_GENERAL, preliminarySubsetSize, progressDelta, refineResult, running, tmp1, tmp2, tmp3, tmp4
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Constructor Summary
ConstructorsConstructorDescriptionConstructor.RANSACRobustKnownPositionAccelerometerCalibrator
(boolean commonAxisUsed) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(double[] initialBias) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.algebra.Matrix initialBias) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.algebra.Matrix initialBias, com.irurueta.algebra.Matrix initialMa) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.ECEFPosition position) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.ECEFPosition position, List<StandardDeviationBodyKinematics> measurements) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.ECEFPosition position, List<StandardDeviationBodyKinematics> measurements, boolean commonAxisUsed) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.ECEFPosition position, List<StandardDeviationBodyKinematics> measurements, boolean commonAxisUsed, double[] initialBias) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.ECEFPosition position, List<StandardDeviationBodyKinematics> measurements, boolean commonAxisUsed, double[] initialBias, RobustKnownPositionAccelerometerCalibratorListener listener) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.ECEFPosition position, List<StandardDeviationBodyKinematics> measurements, boolean commonAxisUsed, com.irurueta.algebra.Matrix initialBias) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.ECEFPosition position, List<StandardDeviationBodyKinematics> measurements, boolean commonAxisUsed, com.irurueta.algebra.Matrix initialBias, com.irurueta.algebra.Matrix initialMa) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.ECEFPosition position, List<StandardDeviationBodyKinematics> measurements, boolean commonAxisUsed, com.irurueta.algebra.Matrix initialBias, com.irurueta.algebra.Matrix initialMa, RobustKnownPositionAccelerometerCalibratorListener listener) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.ECEFPosition position, List<StandardDeviationBodyKinematics> measurements, boolean commonAxisUsed, com.irurueta.algebra.Matrix initialBias, RobustKnownPositionAccelerometerCalibratorListener listener) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.ECEFPosition position, List<StandardDeviationBodyKinematics> measurements, boolean commonAxisUsed, RobustKnownPositionAccelerometerCalibratorListener listener) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.ECEFPosition position, List<StandardDeviationBodyKinematics> measurements, double[] initialBias) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.ECEFPosition position, List<StandardDeviationBodyKinematics> measurements, double[] initialBias, RobustKnownPositionAccelerometerCalibratorListener listener) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.ECEFPosition position, List<StandardDeviationBodyKinematics> measurements, com.irurueta.algebra.Matrix initialBias) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.ECEFPosition position, List<StandardDeviationBodyKinematics> measurements, com.irurueta.algebra.Matrix initialBias, com.irurueta.algebra.Matrix initialMa) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.ECEFPosition position, List<StandardDeviationBodyKinematics> measurements, com.irurueta.algebra.Matrix initialBias, com.irurueta.algebra.Matrix initialMa, RobustKnownPositionAccelerometerCalibratorListener listener) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.ECEFPosition position, List<StandardDeviationBodyKinematics> measurements, com.irurueta.algebra.Matrix initialBias, RobustKnownPositionAccelerometerCalibratorListener listener) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.ECEFPosition position, List<StandardDeviationBodyKinematics> measurements, RobustKnownPositionAccelerometerCalibratorListener listener) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.NEDPosition position) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.NEDPosition position, List<StandardDeviationBodyKinematics> measurements) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.NEDPosition position, List<StandardDeviationBodyKinematics> measurements, boolean commonAxisUsed) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.NEDPosition position, List<StandardDeviationBodyKinematics> measurements, boolean commonAxisUsed, double[] initialBias) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.NEDPosition position, List<StandardDeviationBodyKinematics> measurements, boolean commonAxisUsed, double[] initialBias, RobustKnownPositionAccelerometerCalibratorListener listener) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.NEDPosition position, List<StandardDeviationBodyKinematics> measurements, boolean commonAxisUsed, com.irurueta.algebra.Matrix initialBias) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.NEDPosition position, List<StandardDeviationBodyKinematics> measurements, boolean commonAxisUsed, com.irurueta.algebra.Matrix initialBias, com.irurueta.algebra.Matrix initialMa) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.NEDPosition position, List<StandardDeviationBodyKinematics> measurements, boolean commonAxisUsed, com.irurueta.algebra.Matrix initialBias, com.irurueta.algebra.Matrix initialMa, RobustKnownPositionAccelerometerCalibratorListener listener) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.NEDPosition position, List<StandardDeviationBodyKinematics> measurements, boolean commonAxisUsed, com.irurueta.algebra.Matrix initialBias, RobustKnownPositionAccelerometerCalibratorListener listener) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.NEDPosition position, List<StandardDeviationBodyKinematics> measurements, boolean commonAxisUsed, RobustKnownPositionAccelerometerCalibratorListener listener) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.NEDPosition position, List<StandardDeviationBodyKinematics> measurements, double[] initialBias) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.NEDPosition position, List<StandardDeviationBodyKinematics> measurements, double[] initialBias, RobustKnownPositionAccelerometerCalibratorListener listener) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.NEDPosition position, List<StandardDeviationBodyKinematics> measurements, com.irurueta.algebra.Matrix initialBias) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.NEDPosition position, List<StandardDeviationBodyKinematics> measurements, com.irurueta.algebra.Matrix initialBias, com.irurueta.algebra.Matrix initialMa) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.NEDPosition position, List<StandardDeviationBodyKinematics> measurements, com.irurueta.algebra.Matrix initialBias, com.irurueta.algebra.Matrix initialMa, RobustKnownPositionAccelerometerCalibratorListener listener) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.NEDPosition position, List<StandardDeviationBodyKinematics> measurements, com.irurueta.algebra.Matrix initialBias, RobustKnownPositionAccelerometerCalibratorListener listener) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(com.irurueta.navigation.frames.NEDPosition position, List<StandardDeviationBodyKinematics> measurements, RobustKnownPositionAccelerometerCalibratorListener listener) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(RobustKnownPositionAccelerometerCalibratorListener listener) Constructor.RANSACRobustKnownPositionAccelerometerCalibrator
(List<StandardDeviationBodyKinematics> measurements) Constructor. -
Method Summary
Modifier and TypeMethodDescriptionvoid
Estimates accelerometer calibration parameters containing bias, scale factors and cross-coupling errors.com.irurueta.numerical.robust.RobustEstimatorMethod
Returns method being used for robust estimation.double
Gets threshold to determine whether samples are inliers or not when testing possible solutions.boolean
Indicates whether inliers must be computed and kept.boolean
Indicates whether residuals must be computed and kept.boolean
Indicates whether this calibrator requires quality scores for each measurement or not.void
setComputeAndKeepInliersEnabled
(boolean computeAndKeepInliers) Specifies whether inliers must be computed and kept.void
setComputeAndKeepResidualsEnabled
(boolean computeAndKeepResiduals) Specifies whether residuals must be computed and kept.void
setThreshold
(double threshold) Sets threshold to determine whether samples are inliers or not when testing possible solutions.Methods inherited from class com.irurueta.navigation.inertial.calibration.accelerometer.RobustKnownPositionAccelerometerCalibrator
attemptRefine, computeError, computeGravityNorm, computePreliminarySolutions, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, create, getConfidence, getEcefPosition, getEstimatedBiasAsTriad, getEstimatedBiasAsTriad, getEstimatedBiases, getEstimatedBiases, getEstimatedBiasesAsMatrix, getEstimatedBiasesAsMatrix, getEstimatedBiasFx, getEstimatedBiasFxAsAcceleration, getEstimatedBiasFxAsAcceleration, getEstimatedBiasFxStandardDeviation, getEstimatedBiasFxStandardDeviationAsAcceleration, getEstimatedBiasFxStandardDeviationAsAcceleration, getEstimatedBiasFxVariance, getEstimatedBiasFy, getEstimatedBiasFyAsAcceleration, getEstimatedBiasFyAsAcceleration, getEstimatedBiasFyStandardDeviation, getEstimatedBiasFyStandardDeviationAsAcceleration, getEstimatedBiasFyStandardDeviationAsAcceleration, getEstimatedBiasFyVariance, getEstimatedBiasFz, getEstimatedBiasFzAsAcceleration, getEstimatedBiasFzAsAcceleration, getEstimatedBiasFzStandardDeviation, getEstimatedBiasFzStandardDeviationAsAcceleration, getEstimatedBiasFzStandardDeviationAsAcceleration, getEstimatedBiasFzVariance, getEstimatedBiasStandardDeviation, getEstimatedBiasStandardDeviation, getEstimatedBiasStandardDeviationAverage, getEstimatedBiasStandardDeviationAverageAsAcceleration, getEstimatedBiasStandardDeviationAverageAsAcceleration, getEstimatedBiasStandardDeviationNorm, getEstimatedBiasStandardDeviationNormAsAcceleration, getEstimatedBiasStandardDeviationNormAsAcceleration, getEstimatedChiSq, getEstimatedCovariance, getEstimatedMa, getEstimatedMse, getEstimatedMxy, getEstimatedMxz, getEstimatedMyx, getEstimatedMyz, getEstimatedMzx, getEstimatedMzy, getEstimatedSx, getEstimatedSy, getEstimatedSz, getInitialBias, getInitialBias, getInitialBiasAsMatrix, getInitialBiasAsMatrix, getInitialBiasAsTriad, getInitialBiasAsTriad, getInitialBiasX, getInitialBiasXAsAcceleration, getInitialBiasXAsAcceleration, getInitialBiasY, getInitialBiasYAsAcceleration, getInitialBiasYAsAcceleration, getInitialBiasZ, getInitialBiasZAsAcceleration, getInitialBiasZAsAcceleration, getInitialMa, getInitialMa, getInitialMxy, getInitialMxz, getInitialMyx, getInitialMyz, getInitialMzx, getInitialMzy, getInitialSx, getInitialSy, getInitialSz, getInliersData, getListener, getMaxIterations, getMeasurements, getMeasurementType, getMinimumRequiredMeasurements, getNedPosition, getNedPosition, getPreliminarySubsetSize, getProgressDelta, getQualityScores, isCommonAxisUsed, isCovarianceKept, isOrderedMeasurementsRequired, isReady, isResultRefined, isRunning, setCommonAxisUsed, setConfidence, setCovarianceKept, setInitialBias, setInitialBias, setInitialBias, setInitialBias, setInitialBias, setInitialBiasX, setInitialBiasX, setInitialBiasY, setInitialBiasY, setInitialBiasZ, setInitialBiasZ, setInitialCrossCouplingErrors, setInitialMa, setInitialMxy, setInitialMxz, setInitialMyx, setInitialMyz, setInitialMzx, setInitialMzy, setInitialScalingFactors, setInitialScalingFactorsAndCrossCouplingErrors, setInitialSx, setInitialSy, setInitialSz, setListener, setMaxIterations, setMeasurements, setPosition, setPosition, setPreliminarySubsetSize, setProgressDelta, setQualityScores, setResultRefined
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Field Details
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DEFAULT_THRESHOLD
public static final double DEFAULT_THRESHOLDConstant defining default threshold to determine whether samples are inliers or not.- 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 samples are inliers or not when testing possible solutions. The threshold refers to the amount of error on distance between estimated position and distances provided for each sample. -
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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RANSACRobustKnownPositionAccelerometerCalibrator
public RANSACRobustKnownPositionAccelerometerCalibrator()Constructor. -
RANSACRobustKnownPositionAccelerometerCalibrator
public RANSACRobustKnownPositionAccelerometerCalibrator(List<StandardDeviationBodyKinematics> measurements) Constructor.- Parameters:
measurements
- list of body kinematics measurements taken at a given position with different unknown orientations and containing the standard deviations of accelerometer and gyroscope measurements.
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RANSACRobustKnownPositionAccelerometerCalibrator
public RANSACRobustKnownPositionAccelerometerCalibrator(boolean commonAxisUsed) Constructor.- Parameters:
commonAxisUsed
- indicates whether z-axis is assumed to be common for accelerometer and gyroscope.
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RANSACRobustKnownPositionAccelerometerCalibrator
public RANSACRobustKnownPositionAccelerometerCalibrator(double[] initialBias) Constructor.- Parameters:
initialBias
- initial accelerometer bias to be used to find a solution. This must have length 3 and is expressed in meters per squared second (m/s^2).- Throws:
IllegalArgumentException
- if provided bias array does not have length 3.
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RANSACRobustKnownPositionAccelerometerCalibrator
public RANSACRobustKnownPositionAccelerometerCalibrator(com.irurueta.algebra.Matrix initialBias) Constructor.- Parameters:
initialBias
- initial bias to find a solution.- Throws:
IllegalArgumentException
- if provided bias matrix is not 3x1.
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RANSACRobustKnownPositionAccelerometerCalibrator
public RANSACRobustKnownPositionAccelerometerCalibrator(com.irurueta.algebra.Matrix initialBias, com.irurueta.algebra.Matrix initialMa) Constructor.- Parameters:
initialBias
- initial bias to find a solution.initialMa
- initial scale factors and cross coupling errors matrix.- Throws:
IllegalArgumentException
- if either provided bias matrix is not 3x1 or scaling and coupling error matrix is not 3x3.
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Method Details
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getThreshold
public double getThreshold()Gets threshold to determine whether samples are inliers or not when testing possible solutions. The threshold refers to the amount of error on norm between measured specific forces and the ones generated with estimated calibration parameters provided for each sample.- Returns:
- threshold to determine whether samples are inliers or not.
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setThreshold
public void setThreshold(double threshold) throws com.irurueta.navigation.LockedException Sets threshold to determine whether samples are inliers or not when testing possible solutions. The threshold refers to the amount of error on norm between measured specific forces and the ones generated with estimated calibration parameters provided for each sample.- Parameters:
threshold
- threshold to determine whether samples are inliers or not.- Throws:
IllegalArgumentException
- if provided value is equal or less than zero.com.irurueta.navigation.LockedException
- if calibrator is currently running.
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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
public void setComputeAndKeepInliersEnabled(boolean computeAndKeepInliers) throws com.irurueta.navigation.LockedException 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:
com.irurueta.navigation.LockedException
- if calibrator is currently running.
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isComputeAndKeepResiduals
public boolean isComputeAndKeepResiduals()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 com.irurueta.navigation.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:
com.irurueta.navigation.LockedException
- if calibrator is currently running.
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calibrate
public void calibrate() throws com.irurueta.navigation.LockedException, com.irurueta.navigation.NotReadyException, CalibrationExceptionEstimates accelerometer calibration parameters containing bias, scale factors and cross-coupling errors.- Throws:
com.irurueta.navigation.LockedException
- if calibrator is currently running.com.irurueta.navigation.NotReadyException
- if calibrator is not ready.CalibrationException
- if estimation fails for numerical reasons.
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getMethod
public com.irurueta.numerical.robust.RobustEstimatorMethod getMethod()Returns method being used for robust estimation.- Specified by:
getMethod
in classRobustKnownPositionAccelerometerCalibrator
- Returns:
- method being used for robust estimation.
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isQualityScoresRequired
public boolean isQualityScoresRequired()Indicates whether this calibrator requires quality scores for each measurement or not.- Returns:
- true if quality scores are required, false otherwise.
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