AbstractGradientConverter.java

  1. /* Copyright 2002-2024 CS GROUP
  2.  * Licensed to CS GROUP (CS) under one or more
  3.  * contributor license agreements.  See the NOTICE file distributed with
  4.  * this work for additional information regarding copyright ownership.
  5.  * CS licenses this file to You under the Apache License, Version 2.0
  6.  * (the "License"); you may not use this file except in compliance with
  7.  * the License.  You may obtain a copy of the License at
  8.  *
  9.  *   http://www.apache.org/licenses/LICENSE-2.0
  10.  *
  11.  * Unless required by applicable law or agreed to in writing, software
  12.  * distributed under the License is distributed on an "AS IS" BASIS,
  13.  * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
  14.  * See the License for the specific language governing permissions and
  15.  * limitations under the License.
  16.  */
  17. package org.orekit.propagation.integration;

  18. import java.util.ArrayList;
  19. import java.util.List;

  20. import org.hipparchus.Field;
  21. import org.hipparchus.analysis.differentiation.Gradient;
  22. import org.hipparchus.analysis.differentiation.GradientField;
  23. import org.hipparchus.geometry.euclidean.threed.FieldRotation;
  24. import org.hipparchus.geometry.euclidean.threed.FieldVector3D;
  25. import org.hipparchus.geometry.euclidean.threed.Vector3D;
  26. import org.orekit.attitudes.AttitudeProvider;
  27. import org.orekit.attitudes.FieldAttitude;
  28. import org.orekit.orbits.OrbitType;
  29. import org.orekit.orbits.FieldCartesianOrbit;
  30. import org.orekit.orbits.FieldEquinoctialOrbit;
  31. import org.orekit.orbits.FieldOrbit;
  32. import org.orekit.orbits.PositionAngleType;
  33. import org.orekit.propagation.FieldSpacecraftState;
  34. import org.orekit.propagation.SpacecraftState;
  35. import org.orekit.time.AbsoluteDate;
  36. import org.orekit.time.FieldAbsoluteDate;
  37. import org.orekit.utils.FieldAngularCoordinates;
  38. import org.orekit.utils.FieldPVCoordinates;
  39. import org.orekit.utils.FieldAbsolutePVCoordinates;
  40. import org.orekit.utils.ParameterDriver;
  41. import org.orekit.utils.ParameterDriversProvider;
  42. import org.orekit.utils.TimeStampedFieldAngularCoordinates;
  43. import org.orekit.utils.TimeStampedFieldPVCoordinates;
  44. import org.orekit.utils.TimeSpanMap.Span;

  45. /** Converter for states and parameters arrays.
  46.  *  @author Luc Maisonobe
  47.  *  @author Bryan Cazabonne
  48.  *  @since 10.2
  49.  */
  50. public abstract class AbstractGradientConverter {

  51.     /** Dimension of the state. */
  52.     private final int freeStateParameters;

  53.     /** States with various number of additional parameters. */
  54.     private final List<FieldSpacecraftState<Gradient>> gStates;

  55.     /** Simple constructor.
  56.      * @param freeStateParameters number of free parameters
  57.      */
  58.     protected AbstractGradientConverter(final int freeStateParameters) {
  59.         this.freeStateParameters = freeStateParameters;
  60.         this.gStates             = new ArrayList<>();
  61.     }

  62.     /** Get the number of free state parameters.
  63.      * @return number of free state parameters
  64.      */
  65.     public int getFreeStateParameters() {
  66.         return freeStateParameters;
  67.     }

  68.     /** Initialize first state with 0 parameters.
  69.      * @param zeroParametersState state with zero parameters
  70.      * @since 11.2
  71.      */
  72.     protected void initStates(final FieldSpacecraftState<Gradient> zeroParametersState) {
  73.         gStates.clear();
  74.         gStates.add(zeroParametersState);
  75.     }

  76.     /** Add zero derivatives.
  77.      * @param original original scalar
  78.      * @param freeParameters total number of free parameters in the gradient
  79.      * @return extended scalar
  80.      */
  81.     protected Gradient extend(final Gradient original, final int freeParameters) {
  82.         final double[] originalDerivatives = original.getGradient();
  83.         final double[] extendedDerivatives = new double[freeParameters];
  84.         System.arraycopy(originalDerivatives, 0, extendedDerivatives, 0, originalDerivatives.length);
  85.         return new Gradient(original.getValue(), extendedDerivatives);
  86.     }

  87.     /**
  88.      * Add zero derivatives.
  89.      *
  90.      * @param original       original date
  91.      * @param freeParameters total number of free parameters in the gradient
  92.      * @return extended date
  93.      */
  94.     protected FieldAbsoluteDate<Gradient> extend(
  95.             final FieldAbsoluteDate<Gradient> original,
  96.             final int freeParameters) {
  97.         final AbsoluteDate date = original.toAbsoluteDate();
  98.         final Gradient gradient = original.durationFrom(date);
  99.         return new FieldAbsoluteDate<>(date, extend(gradient, freeParameters));
  100.     }

  101.     /** Add zero derivatives.
  102.      * @param original original vector
  103.      * @param freeParameters total number of free parameters in the gradient
  104.      * @return extended vector
  105.      */
  106.     protected FieldVector3D<Gradient> extend(final FieldVector3D<Gradient> original, final int freeParameters) {
  107.         return new FieldVector3D<>(extend(original.getX(), freeParameters),
  108.                                    extend(original.getY(), freeParameters),
  109.                                    extend(original.getZ(), freeParameters));
  110.     }

  111.     /** Add zero derivatives.
  112.      * @param original original rotation
  113.      * @param freeParameters total number of free parameters in the gradient
  114.      * @return extended rotation
  115.      */
  116.     protected FieldRotation<Gradient> extend(final FieldRotation<Gradient> original, final int freeParameters) {
  117.         return new FieldRotation<>(extend(original.getQ0(), freeParameters),
  118.                                    extend(original.getQ1(), freeParameters),
  119.                                    extend(original.getQ2(), freeParameters),
  120.                                    extend(original.getQ3(), freeParameters),
  121.                                    false);
  122.     }

  123.     /** Process a state into a Gradient version without force model parameter.
  124.      * @param state state
  125.      * @param freeStateParameters number of free parameters
  126.      * @param provider attitude provider
  127.      * @return Gradient version of the state
  128.      * @since 12.0
  129.      */
  130.     protected static FieldSpacecraftState<Gradient> buildBasicGradientSpacecraftState(final SpacecraftState state,
  131.                                                                                       final int freeStateParameters,
  132.                                                                                       final AttitudeProvider provider) {

  133.         // Derivative field
  134.         final Field<Gradient> field =  GradientField.getField(freeStateParameters);

  135.         // position always has derivatives
  136.         final Vector3D pos = state.getPosition();
  137.         final FieldVector3D<Gradient> posG = new FieldVector3D<>(
  138.                 Gradient.variable(freeStateParameters, 0, pos.getX()),
  139.                 Gradient.variable(freeStateParameters, 1, pos.getY()),
  140.                 Gradient.variable(freeStateParameters, 2, pos.getZ()));

  141.         // velocity may have derivatives or not
  142.         final Vector3D vel = state.getPVCoordinates().getVelocity();
  143.         final FieldVector3D<Gradient> velG;
  144.         if (freeStateParameters > 3) {
  145.             velG = new FieldVector3D<>(
  146.                     Gradient.variable(freeStateParameters, 3, vel.getX()),
  147.                     Gradient.variable(freeStateParameters, 4, vel.getY()),
  148.                     Gradient.variable(freeStateParameters, 5, vel.getZ()));
  149.         } else {
  150.             velG = new FieldVector3D<>(field, vel);
  151.         }

  152.         // acceleration never has derivatives
  153.         final Vector3D acc = state.getPVCoordinates().getAcceleration();
  154.         final FieldVector3D<Gradient> accG = new FieldVector3D<>(field, acc);

  155.         // mass never has derivatives
  156.         final Gradient gMass = Gradient.constant(freeStateParameters, state.getMass());

  157.         final TimeStampedFieldPVCoordinates<Gradient> timeStampedFieldPVCoordinates = new TimeStampedFieldPVCoordinates<>(
  158.                 state.getDate(), posG, velG, accG);

  159.         final FieldCartesianOrbit<Gradient> gOrbit;
  160.         final FieldAbsolutePVCoordinates<Gradient> gAbsolutePV;
  161.         if (state.isOrbitDefined()) {
  162.             final Gradient gMu = Gradient.constant(freeStateParameters, state.getMu());
  163.             gOrbit = new FieldCartesianOrbit<>(timeStampedFieldPVCoordinates, state.getFrame(), gMu);
  164.             gAbsolutePV = null;
  165.         } else {
  166.             gOrbit = null;
  167.             gAbsolutePV = new FieldAbsolutePVCoordinates<>(state.getFrame(), timeStampedFieldPVCoordinates);
  168.         }

  169.         final FieldAttitude<Gradient> gAttitude;
  170.         if (freeStateParameters > 3) {
  171.             // compute attitude partial derivatives with respect to position/velocity
  172.             gAttitude = provider.getAttitude((state.isOrbitDefined()) ? gOrbit : gAbsolutePV,
  173.                     timeStampedFieldPVCoordinates.getDate(), state.getFrame());
  174.         } else {
  175.             // force model does not depend on attitude, don't bother recomputing it
  176.             gAttitude = new FieldAttitude<>(field, state.getAttitude());
  177.         }

  178.         if (state.isOrbitDefined()) {
  179.             return new FieldSpacecraftState<>(gOrbit, gAttitude, gMass);
  180.         } else {
  181.             return new FieldSpacecraftState<>(gAbsolutePV, gAttitude, gMass);
  182.         }
  183.     }

  184.     /**
  185.      * Get the state with the number of parameters consistent with parametric model.
  186.      * @param parametricModel parametric model
  187.      * @return state with the number of parameters consistent with parametric model
  188.      */
  189.     public FieldSpacecraftState<Gradient> getState(final ParameterDriversProvider parametricModel) {

  190.         // count the required number of parameters
  191.         int nbParams = 0;
  192.         for (final ParameterDriver driver : parametricModel.getParametersDrivers()) {
  193.             if (driver.isSelected()) {
  194.                 nbParams += driver.getNbOfValues();
  195.             }
  196.         }

  197.         // fill in intermediate slots
  198.         while (gStates.size() < nbParams + 1) {
  199.             gStates.add(null);
  200.         }

  201.         if (gStates.get(nbParams) == null) {
  202.             // it is the first time we need this number of parameters
  203.             // we need to create the state
  204.             final int freeParameters = freeStateParameters + nbParams;
  205.             final FieldSpacecraftState<Gradient> s0 = gStates.get(0);
  206.             final AbsoluteDate date = s0.getDate().toAbsoluteDate();

  207.             // attitude
  208.             final FieldAngularCoordinates<Gradient> ac0 = s0.getAttitude().getOrientation();
  209.             final FieldAttitude<Gradient> gAttitude =
  210.                     new FieldAttitude<>(s0.getAttitude().getReferenceFrame(),
  211.                             new TimeStampedFieldAngularCoordinates<>(date,
  212.                                     extend(ac0.getRotation(), freeParameters),
  213.                                     extend(ac0.getRotationRate(), freeParameters),
  214.                                     extend(ac0.getRotationAcceleration(), freeParameters)));

  215.             // mass
  216.             final Gradient gMass = extend(s0.getMass(), freeParameters);

  217.             // orbit or absolute position-velocity coordinates
  218.             final FieldPVCoordinates<Gradient> pv0 = s0.getPVCoordinates();
  219.             final TimeStampedFieldPVCoordinates<Gradient> timeStampedFieldPVCoordinates = new TimeStampedFieldPVCoordinates<>(
  220.                     date,
  221.                     extend(pv0.getPosition(),     freeParameters),
  222.                     extend(pv0.getVelocity(),     freeParameters),
  223.                     extend(pv0.getAcceleration(), freeParameters));
  224.             final FieldSpacecraftState<Gradient> spacecraftState;
  225.             if (s0.isOrbitDefined()) {
  226.                 final FieldOrbit<Gradient> orbit = s0.getOrbit();
  227.                 if (orbit.getType().equals(OrbitType.EQUINOCTIAL)) {
  228.                     // for DSST, which always uses EquinoctialOrbit, not CartesianOrbit
  229.                     spacecraftState = new FieldSpacecraftState<>(
  230.                             new FieldEquinoctialOrbit<>(
  231.                                     extend(orbit.getA(), freeParameters),
  232.                                     extend(orbit.getEquinoctialEx(), freeParameters),
  233.                                     extend(orbit.getEquinoctialEy(), freeParameters),
  234.                                     extend(orbit.getHx(), freeParameters),
  235.                                     extend(orbit.getHy(), freeParameters),
  236.                                     extend(orbit.getLM(), freeParameters),
  237.                                     PositionAngleType.MEAN,
  238.                                     s0.getFrame(),
  239.                                     extend(s0.getDate(), freeParameters),
  240.                                     extend(s0.getMu(), freeParameters)
  241.                             ),
  242.                             gAttitude,
  243.                             gMass);
  244.                 } else {
  245.                     spacecraftState = new FieldSpacecraftState<>(new FieldCartesianOrbit<>(timeStampedFieldPVCoordinates,
  246.                             s0.getFrame(), extend(s0.getMu(), freeParameters)), gAttitude, gMass);
  247.                 }
  248.             } else {
  249.                 spacecraftState = new FieldSpacecraftState<>(new FieldAbsolutePVCoordinates<>(s0.getFrame(),
  250.                         timeStampedFieldPVCoordinates), gAttitude, gMass);
  251.             }

  252.             gStates.set(nbParams, spacecraftState);

  253.         }

  254.         return gStates.get(nbParams);

  255.     }

  256.     /** Get the parametric model parameters, return gradient values for each span of each driver (several gradient
  257.      * values for each parameter).
  258.      * Different from {@link #getParametersAtStateDate(FieldSpacecraftState, ParameterDriversProvider)}
  259.      * which return a Gradient list containing for each driver the gradient value at state date (only 1 gradient
  260.      * value for each parameter).
  261.      * @param state state as returned by {@link #getState(ParameterDriversProvider) getState(parametricModel)}
  262.      * @param parametricModel parametric model associated with the parameters
  263.      * @return parametric model parameters (for all span of each driver)
  264.      */
  265.     public Gradient[] getParameters(final FieldSpacecraftState<Gradient> state,
  266.                                     final ParameterDriversProvider parametricModel) {
  267.         final int freeParameters = state.getMass().getFreeParameters();
  268.         final List<ParameterDriver> drivers = parametricModel.getParametersDrivers();
  269.         int sizeDrivers = 0;
  270.         for ( ParameterDriver driver : drivers) {
  271.             sizeDrivers += driver.getNbOfValues();
  272.         }
  273.         final Gradient[] parameters = new Gradient[sizeDrivers];
  274.         int index = freeStateParameters;
  275.         int i = 0;
  276.         for (ParameterDriver driver : drivers) {
  277.             // Loop on the spans
  278.             for (Span<Double> span = driver.getValueSpanMap().getFirstSpan(); span != null; span = span.next()) {

  279.                 parameters[i++] = driver.isSelected() ?
  280.                                   Gradient.variable(freeParameters, index++, span.getData()) :
  281.                                   Gradient.constant(freeParameters, span.getData());
  282.             }
  283.         }
  284.         return parameters;
  285.     }

  286.     /** Get the parametric model parameters, return gradient values at state date for each driver (only 1 gradient
  287.      * value for each parameter).
  288.      * Different from {@link #getParameters(FieldSpacecraftState, ParameterDriversProvider)}
  289.      * which return a Gradient list containing for each driver the gradient values for each span value (several gradient
  290.      * values for each parameter).
  291.      * @param state state as returned by {@link #getState(ParameterDriversProvider) getState(parametricModel)}
  292.      * @param parametricModel parametric model associated with the parameters
  293.      * @return parametric model parameters (for all span of each driver)
  294.      */
  295.     public Gradient[] getParametersAtStateDate(final FieldSpacecraftState<Gradient> state,
  296.             final ParameterDriversProvider parametricModel) {
  297.         final int freeParameters = state.getMass().getFreeParameters();
  298.         final List<ParameterDriver> drivers = parametricModel.getParametersDrivers();

  299.         final Gradient[] parameters = new Gradient[drivers.size()];
  300.         int index = freeStateParameters;
  301.         int i = 0;
  302.         for (ParameterDriver driver : drivers) {
  303.             for (Span<String> span = driver.getNamesSpanMap().getFirstSpan(); span != null; span = span.next()) {
  304.                 if (span.getData().equals(driver.getNameSpan(state.getDate().toAbsoluteDate()))) {
  305.                     parameters[i++] = driver.isSelected() ?
  306.                                           Gradient.variable(freeParameters, index, driver.getValue(state.getDate().toAbsoluteDate())) :
  307.                                           Gradient.constant(freeParameters, driver.getValue(state.getDate().toAbsoluteDate()));
  308.                 }
  309.                 index = driver.isSelected() ? index + 1 : index;
  310.             }
  311.         }
  312.         return parameters;
  313.     }


  314. }