public interface EventDetector extends Serializable
It mirrors the EventHandler
interface
from commons-math but provides a space-dynamics
interface to the methods.
Events detectors are a useful solution to meet the requirements of propagators concerning discrete conditions. The state of each event detector is queried by the integrator at each step. When the sign of the underlying g switching function changes, the step is rejected and reduced, in order to make sure the sign changes occur only at steps boundaries.
When step ends exactly at a switching function sign change, the corresponding event is triggered,
by calling the eventOccurred(SpacecraftState, boolean, boolean)
method. The method can
do whatever it needs with the event (logging it, performing some processing, ignore it ...). The
return value of the method will be used by the propagator to stop or resume propagation, possibly
changing the state vector or the future event detection.
Modifier and Type | Interface and Description |
---|---|
static class |
EventDetector.Action
Enumerate for actions to be performed when an event occurs.
|
Modifier and Type | Field and Description |
---|---|
static int |
DECREASING
Decreasing g-function related events parameter.
|
static int |
INCREASING
Increasing g-function related events parameter.
|
static int |
INCREASING_DECREASING
Both increasing and decreasing g-function related events parameter.
|
Modifier and Type | Method and Description |
---|---|
EventDetector |
copy()
A copy of the detector.
|
EventDetector.Action |
eventOccurred(SpacecraftState s,
boolean increasing,
boolean forward)
Handle an event and choose what to do next.
|
double |
g(SpacecraftState s)
Compute the value of the switching function.
|
double |
getMaxCheckInterval()
Get maximal time interval between switching function checks.
|
int |
getMaxIterationCount()
Get maximal number of iterations in the event time search.
|
int |
getSlopeSelection()
Get the parameter in charge of the selection of detected events by the slope of the
g-function.
|
double |
getThreshold()
Get the convergence threshold in the event time search.
|
void |
init(SpacecraftState s0,
AbsoluteDate t)
Initialize event handler at the start of a propagation.
|
SpacecraftState |
resetState(SpacecraftState oldState)
Reset the state (including additional states) prior to continue propagation.
|
boolean |
shouldBeRemoved()
This method is called after
eventOccurred(fr.cnes.sirius.patrius.propagation.SpacecraftState, boolean, boolean) has been triggered. |
static final int INCREASING
static final int DECREASING
static final int INCREASING_DECREASING
void init(SpacecraftState s0, AbsoluteDate t)
This method is called once at the start of the propagation. It may be used by the event handler to initialize some internal data if needed.
s0
- initial statet
- target time for the integrationdouble g(SpacecraftState s) throws PatriusException
s
- the current state information: date, kinematics, attitude for forces and events
computation, mass provider, and additional statesPatriusException
- if some specific error occursEventDetector.Action eventOccurred(SpacecraftState s, boolean increasing, boolean forward) throws PatriusException
The scheduling between this method and the PatriusStepHandler method handleStep() is to call
this method first and handleStep
afterwards. This scheduling allows the
propagator to pass true
as the isLast
parameter to the step handler
to make it aware the step will be the last one if this method returns
EventDetector.Action.STOP
. As the interpolator may be used to navigate back
throughout the last step (as
OrekitStepNormalizer
does for example), user code called by this method and user code called
by step handlers may experience apparently out of order values of the independent time
variable. As an example, if the same user object implements both this EventDetector
interface and the
OrekitFixedStepHandler
interface, a forward integration may call its
eventOccurred
method with a state at 2000-01-01T00:00:10 first and call its
handleStep
method with a state at 2000-01-01T00:00:09 afterwards. Such out of
order calls are limited to the size of the integration step for
variable step handlers
and to the size of the fixed step for
fixed step
handlers
.
s
- the current state information: date, kinematics, attitude for forces and events
computation, mass provider, and additional statesincreasing
- if true, the value of the switching function increases when times increases
around event (note that increase is measured with respect to physical time, not with
respect to propagation which may go backward in time)forward
- if true, the integration variable (time) increases during integration.EventDetector.Action.STOP
, EventDetector.Action.RESET_STATE
,
EventDetector.Action.RESET_DERIVATIVES
, EventDetector.Action.CONTINUE
PatriusException
- if some specific error occursboolean shouldBeRemoved()
eventOccurred(fr.cnes.sirius.patrius.propagation.SpacecraftState, boolean, boolean)
has been triggered. It returns true if the
current detector should be removed after first event detection. WARNING: this method
can be called only once a event has been triggered. Before, the value is not available.SpacecraftState resetState(SpacecraftState oldState) throws PatriusException
This method is called after the step handler has returned and before the next step is
started, but only when eventOccurred(fr.cnes.sirius.patrius.propagation.SpacecraftState, boolean, boolean)
has itself returned the
EventDetector.Action.RESET_STATE
indicator. It allows the user to reset the state for
the next step, without perturbing the step handler of the finishing step. If the
eventOccurred(fr.cnes.sirius.patrius.propagation.SpacecraftState, boolean, boolean)
never returns the EventDetector.Action.RESET_STATE
indicator,
this function will never be called, and it is safe to simply return null.
oldState
- old statePatriusException
- if the state cannot be reseteddouble getThreshold()
double getMaxCheckInterval()
int getMaxIterationCount()
int getSlopeSelection()
EventDetector copy()
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