Uses of Class
org.orekit.ssa.metrics.ProbabilityOfCollision
Packages that use ProbabilityOfCollision
Package
Description
Package specific to calculus assuming a 2D short-term encounter model.
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Uses of ProbabilityOfCollision in org.orekit.ssa.collision.shorttermencounter.probability.twod
Methods in org.orekit.ssa.collision.shorttermencounter.probability.twod that return ProbabilityOfCollisionModifier and TypeMethodDescriptionAbstractAlfriend1999.compute(double xm, double ym, double sigmaX, double sigmaY, double radius) Compute the probability of collision using arguments specific to the rotated encounter frame.AbstractShortTermEncounter1DNumerical2DPOCMethod.compute(double xm, double ym, double sigmaX, double sigmaY, double radius) Compute the probability of collision using arguments specific to the rotated encounter frame.abstract ProbabilityOfCollisionAbstractShortTermEncounter1DNumerical2DPOCMethod.compute(double xm, double ym, double sigmaX, double sigmaY, double radius, UnivariateIntegrator customIntegrator, int customMaxNbOfEval) Compute the probability of collision using arguments specific to the rotated encounter frame and custom numerical configuration.AbstractShortTermEncounter1DNumerical2DPOCMethod.compute(Cdm cdm, double primaryRadius, double secondaryRadius, UnivariateIntegrator customIntegrator, int customMaxNbOfEval, double zeroThreshold) Compute the probability of collision using anOrekit Conjunction Data Message.AbstractShortTermEncounter1DNumerical2DPOCMethod.compute(Orbit primaryAtTCA, StateCovariance primaryCovariance, double primaryRadius, Orbit secondaryAtTCA, StateCovariance secondaryCovariance, double secondaryRadius, UnivariateIntegrator customIntegrator, int customMaxNbOfEval, double zeroThreshold) Compute the probability of collision using parameters necessary for creating acollision definitioninstance.AbstractShortTermEncounter1DNumerical2DPOCMethod.compute(ShortTermEncounter2DDefinition encounterDefinition, UnivariateIntegrator customIntegrator, int customMaxNbOfEval, double zeroThreshold) Compute the probability of collision using a given collision definition.Compute the probability of collision using a Conjunction Data Message (CDM).AbstractShortTermEncounter2DPOCMethod.compute(Orbit primaryAtTCA, StateCovariance primaryCovariance, Orbit secondaryAtTCA, StateCovariance secondaryCovariance, double combinedRadius, double zeroThreshold) Compute the probability of collision using parameters necessary for creating acollision definitioninstance.AbstractShortTermEncounter2DPOCMethod.compute(ShortTermEncounter2DDefinition encounter, double zeroThreshold) Compute the probability of collision using given collision definition.Alfano2005.compute(double xm, double ym, double sigmaX, double sigmaY, double radius) Compute the probability of collision using arguments specific to the rotated encounter frame.Chan1997.compute(double xm, double ym, double sigmaX, double sigmaY, double radius) Compute the probability of collision using arguments specific to the rotated encounter frame.final ProbabilityOfCollisionLaas2015.compute(double xm, double ym, double sigmaX, double sigmaY, double radius) Compute the probability of collision using arguments specific to the rotated encounter frame.Patera2005.compute(double xm, double ym, double sigmaX, double sigmaY, double radius, UnivariateIntegrator integrator, int customMaxNbOfEval) Compute the probability of collision using arguments specific to the rotated encounter frame and custom numerical configuration.ShortTermEncounter2DPOCMethod.compute(double xm, double ym, double sigmaX, double sigmaY, double radius) Compute the probability of collision using arguments specific to the rotated encounter frame.Compute the probability of collision using a Conjunction Data Message (CDM).default ProbabilityOfCollisionCompute the probability of collision using a Conjunction Data Message (CDM).default ProbabilityOfCollisionShortTermEncounter2DPOCMethod.compute(Orbit primaryAtTCA, StateCovariance primaryCovariance, double primaryRadius, Orbit secondaryAtTCA, StateCovariance secondaryCovariance, double secondaryRadius) Compute the probability of collision using parameters necessary for creating acollision definitioninstance.default ProbabilityOfCollisionShortTermEncounter2DPOCMethod.compute(Orbit primaryAtTCA, StateCovariance primaryCovariance, Orbit secondaryAtTCA, StateCovariance secondaryCovariance, double combinedRadius) Compute the probability of collision using parameters necessary for creating acollision definitioninstance.ShortTermEncounter2DPOCMethod.compute(Orbit primaryAtTCA, StateCovariance primaryCovariance, Orbit secondaryAtTCA, StateCovariance secondaryCovariance, double combinedRadius, double zeroThreshold) Compute the probability of collision using parameters necessary for creating acollision definitioninstance.default ProbabilityOfCollisionShortTermEncounter2DPOCMethod.compute(ShortTermEncounter2DDefinition encounter) Compute the probability of collision using given collision definition.ShortTermEncounter2DPOCMethod.compute(ShortTermEncounter2DDefinition encounter, double zeroThreshold) Compute the probability of collision using given collision definition.