Uses of Interface
com.irurueta.navigation.inertial.calibration.gyroscope.OrderedStandardDeviationFrameBodyKinematicsGyroscopeCalibrator
Packages that use OrderedStandardDeviationFrameBodyKinematicsGyroscopeCalibrator
Package
Description
Contains classes for gyroscope calibration.
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Uses of OrderedStandardDeviationFrameBodyKinematicsGyroscopeCalibrator in com.irurueta.navigation.inertial.calibration.gyroscope
Classes in com.irurueta.navigation.inertial.calibration.gyroscope that implement OrderedStandardDeviationFrameBodyKinematicsGyroscopeCalibratorModifier and TypeClassDescriptionclassRobustly estimates gyroscope cross couplings and scaling factors along with G-dependent cross biases introduced on the gyroscope by the specific forces sensed by the accelerometer using an LMedS algorithm to discard outliers.classRobustly estimates gyroscope biases, cross couplings and scaling factors along with G-dependent cross biases introduced on the gyroscope by the specific forces sensed by the accelerometer using an LMedS algorithm to discard outliers.classRobustly estimates gyroscope cross couplings and scaling factors along with G-dependent cross biases introduced on the gyroscope by the specific forces sensed by the accelerometer using an MSAC algorithm to discard outliers.classRobustly estimates gyroscope biases, cross couplings and scaling factors along with G-dependent cross biases introduced on the gyroscope by the specific forces sensed by the accelerometer using a MSAC algorithm to discard outliers.classRobustly estimates gyroscope cross couplings and scaling factors along with G-dependent cross biases introduced on the gyroscope by the specific forces sensed by the accelerometer using a PROMedS algorithm to discard outliers.classRobustly estimates gyroscope biases, cross couplings and scaling factors along with G-dependent cross biases introduced on the gyroscope by the specific forces sensed by the accelerometer using a PROMedS algorithm to discard outliers.classRobustly estimates gyroscope cross couplings and scaling factors along with G-dependent cross biases introduced on the gyroscope by the specific forces sensed by the accelerometer using a PROSAC algorithm to discard outliers.classRobustly estimates gyroscope biases, cross couplings and scaling factors along with G-dependent cross biases introduced on the gyroscope by the specific forces sensed by the accelerometer using a PROSAC algorithm to discard outliers.classRobustly estimates gyroscope cross couplings and scaling factors along with G-dependent cross biases introduced on the gyroscope by the specific forces sensed by the accelerometer using a RANSAC algorithm to discard outliers.classRobustly estimates gyroscope biases, cross couplings and scaling factors along with G-dependent cross biases introduced on the gyroscope by the specific forces sensed by the accelerometer using a RANSAC algorithm to discard outliers.classThis is an abstract class to robustly estimate gyroscope cross couplings and scaling factors along with G-dependent cross biases introduced on the gyroscope by the specific forces sensed by the accelerometer.classThis is an abstract class to robustly estimate gyroscope biases, cross couplings and scaling factors along with G-dependent cross biases introduced on the gyroscope by the specific forces sensed by the accelerometer.