TimeStampedFieldPVCoordinates.java

  1. /* Copyright 2002-2025 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.utils;

  18. import org.hipparchus.CalculusFieldElement;
  19. import org.hipparchus.Field;
  20. import org.hipparchus.analysis.differentiation.FieldDerivative;
  21. import org.hipparchus.analysis.differentiation.FieldDerivativeStructure;
  22. import org.hipparchus.geometry.euclidean.threed.FieldVector3D;
  23. import org.orekit.annotation.DefaultDataContext;
  24. import org.orekit.data.DataContext;
  25. import org.orekit.time.AbsoluteDate;
  26. import org.orekit.time.FieldAbsoluteDate;
  27. import org.orekit.time.FieldTimeStamped;
  28. import org.orekit.time.TimeScale;
  29. import org.orekit.time.TimeStamped;

  30. /** {@link TimeStamped time-stamped} version of {@link FieldPVCoordinates}.
  31.  * <p>Instances of this class are guaranteed to be immutable.</p>
  32.  * @param <T> the type of the field elements
  33.  * @author Luc Maisonobe
  34.  * @since 7.0
  35.  */
  36. public class TimeStampedFieldPVCoordinates<T extends CalculusFieldElement<T>>
  37.     extends FieldPVCoordinates<T> implements FieldTimeStamped<T> {

  38.     /** The date. */
  39.     private final FieldAbsoluteDate<T> date;

  40.     /** Builds a PVCoordinates pair.
  41.      * @param date coordinates date
  42.      * @param position the position vector (m)
  43.      * @param velocity the velocity vector (m/s)
  44.      * @param acceleration the acceleration vector (m/s²)
  45.      */
  46.     public TimeStampedFieldPVCoordinates(final AbsoluteDate date,
  47.                                          final FieldVector3D<T> position,
  48.                                          final FieldVector3D<T> velocity,
  49.                                          final FieldVector3D<T> acceleration) {
  50.         this(new FieldAbsoluteDate<>(position.getX().getField(), date),
  51.              position, velocity, acceleration);
  52.     }

  53.     /** Builds a PVCoordinates pair.
  54.      * @param date coordinates date
  55.      * @param position the position vector (m)
  56.      * @param velocity the velocity vector (m/s)
  57.      * @param acceleration the acceleration vector (m/s²)
  58.      */
  59.     public TimeStampedFieldPVCoordinates(final FieldAbsoluteDate<T> date,
  60.                                          final FieldVector3D<T> position,
  61.                                          final FieldVector3D<T> velocity,
  62.                                          final FieldVector3D<T> acceleration) {
  63.         super(position, velocity, acceleration);
  64.         this.date = date;
  65.     }

  66.     /** Basic constructor.
  67.      * <p>Build a PVCoordinates from another one at a given date</p>
  68.      * <p>The PVCoordinates built will be pv</p>
  69.      * @param date date of the built coordinates
  70.      * @param pv base (unscaled) PVCoordinates
  71.      */
  72.     public TimeStampedFieldPVCoordinates(final AbsoluteDate date, final FieldPVCoordinates<T> pv) {
  73.         this(new FieldAbsoluteDate<>(pv.getPosition().getX().getField(), date), pv);
  74.     }

  75.     /** Basic constructor.
  76.      * <p>Build a PVCoordinates from another one at a given date</p>
  77.      * <p>The PVCoordinates built will be pv</p>
  78.      * @param date date of the built coordinates
  79.      * @param pv base (unscaled) PVCoordinates
  80.      */
  81.     public TimeStampedFieldPVCoordinates(final FieldAbsoluteDate<T> date, final FieldPVCoordinates<T> pv) {
  82.         super(pv.getPosition(),
  83.               pv.getVelocity(),
  84.               pv.getAcceleration());
  85.         this.date = date;
  86.     }

  87.     /** Constructor from Field and TimeStampedPVCoordinates.
  88.      * <p>Build a TimeStampedFieldPVCoordinates from non-Field one.</p>
  89.      * @param field CalculusField to base object on
  90.      * @param pv non-field, time-stamped Position-Velocity coordinates
  91.      */
  92.     public TimeStampedFieldPVCoordinates(final Field<T> field, final TimeStampedPVCoordinates pv) {
  93.         this(pv.getDate(), new FieldPVCoordinates<>(field, pv));
  94.     }

  95.     /** Multiplicative constructor
  96.      * <p>Build a PVCoordinates from another one and a scale factor.</p>
  97.      * <p>The PVCoordinates built will be a * pv</p>
  98.      * @param date date of the built coordinates
  99.      * @param a scale factor
  100.      * @param pv base (unscaled) PVCoordinates
  101.      */
  102.     public TimeStampedFieldPVCoordinates(final AbsoluteDate date,
  103.                                          final double a, final FieldPVCoordinates<T> pv) {
  104.         this(new FieldAbsoluteDate<>(pv.getPosition().getX().getField(), date), a, pv);
  105.     }

  106.     /** Multiplicative constructor
  107.      * <p>Build a PVCoordinates from another one and a scale factor.</p>
  108.      * <p>The PVCoordinates built will be a * pv</p>
  109.      * @param date date of the built coordinates
  110.      * @param a scale factor
  111.      * @param pv base (unscaled) PVCoordinates
  112.      */
  113.     public TimeStampedFieldPVCoordinates(final FieldAbsoluteDate<T> date,
  114.                                          final double a, final FieldPVCoordinates<T> pv) {
  115.         super(new FieldVector3D<>(a, pv.getPosition()),
  116.               new FieldVector3D<>(a, pv.getVelocity()),
  117.               new FieldVector3D<>(a, pv.getAcceleration()));
  118.         this.date = date;
  119.     }

  120.     /** Multiplicative constructor
  121.      * <p>Build a PVCoordinates from another one and a scale factor.</p>
  122.      * <p>The PVCoordinates built will be a * pv</p>
  123.      * @param date date of the built coordinates
  124.      * @param a scale factor
  125.      * @param pv base (unscaled) PVCoordinates
  126.      */
  127.     public TimeStampedFieldPVCoordinates(final AbsoluteDate date,
  128.                                          final T a, final FieldPVCoordinates<T> pv) {
  129.         this(new FieldAbsoluteDate<>(a.getField(), date), a, pv);
  130.     }

  131.     /** Multiplicative constructor
  132.      * <p>Build a PVCoordinates from another one and a scale factor.</p>
  133.      * <p>The PVCoordinates built will be a * pv</p>
  134.      * @param date date of the built coordinates
  135.      * @param a scale factor
  136.      * @param pv base (unscaled) PVCoordinates
  137.      */
  138.     public TimeStampedFieldPVCoordinates(final FieldAbsoluteDate<T> date,
  139.                                          final T a, final FieldPVCoordinates<T> pv) {
  140.         super(new FieldVector3D<>(a, pv.getPosition()),
  141.               new FieldVector3D<>(a, pv.getVelocity()),
  142.               new FieldVector3D<>(a, pv.getAcceleration()));
  143.         this.date = date;
  144.     }

  145.     /** Multiplicative constructor
  146.      * <p>Build a PVCoordinates from another one and a scale factor.</p>
  147.      * <p>The PVCoordinates built will be a * pv</p>
  148.      * @param date date of the built coordinates
  149.      * @param a scale factor
  150.      * @param pv base (unscaled) PVCoordinates
  151.      */
  152.     public TimeStampedFieldPVCoordinates(final AbsoluteDate date,
  153.                                          final T a, final PVCoordinates pv) {
  154.         this(new FieldAbsoluteDate<>(a.getField(), date), a, pv);
  155.     }

  156.     /** Multiplicative constructor
  157.      * <p>Build a PVCoordinates from another one and a scale factor.</p>
  158.      * <p>The PVCoordinates built will be a * pv</p>
  159.      * @param date date of the built coordinates
  160.      * @param a scale factor
  161.      * @param pv base (unscaled) PVCoordinates
  162.      */
  163.     public TimeStampedFieldPVCoordinates(final FieldAbsoluteDate<T> date,
  164.                                          final T a, final PVCoordinates pv) {
  165.         super(new FieldVector3D<>(a, pv.getPosition()),
  166.               new FieldVector3D<>(a, pv.getVelocity()),
  167.               new FieldVector3D<>(a, pv.getAcceleration()));
  168.         this.date = date;
  169.     }

  170.     /** Subtractive constructor
  171.      * <p>Build a relative PVCoordinates from a start and an end position.</p>
  172.      * <p>The PVCoordinates built will be end - start.</p>
  173.      * @param date date of the built coordinates
  174.      * @param start Starting PVCoordinates
  175.      * @param end ending PVCoordinates
  176.      */
  177.     public TimeStampedFieldPVCoordinates(final AbsoluteDate date,
  178.                                          final FieldPVCoordinates<T> start, final FieldPVCoordinates<T> end) {
  179.         this(new FieldAbsoluteDate<>(start.getPosition().getX().getField(), date), start, end);
  180.     }

  181.     /** Subtractive constructor
  182.      * <p>Build a relative PVCoordinates from a start and an end position.</p>
  183.      * <p>The PVCoordinates built will be end - start.</p>
  184.      * @param date date of the built coordinates
  185.      * @param start Starting PVCoordinates
  186.      * @param end ending PVCoordinates
  187.      */
  188.     public TimeStampedFieldPVCoordinates(final FieldAbsoluteDate<T> date,
  189.                                          final FieldPVCoordinates<T> start, final FieldPVCoordinates<T> end) {
  190.         super(end.getPosition().subtract(start.getPosition()),
  191.               end.getVelocity().subtract(start.getVelocity()),
  192.               end.getAcceleration().subtract(start.getAcceleration()));
  193.         this.date = date;
  194.     }

  195.     /** Linear constructor
  196.      * <p>Build a PVCoordinates from two other ones and corresponding scale factors.</p>
  197.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2</p>
  198.      * @param date date of the built coordinates
  199.      * @param a1 first scale factor
  200.      * @param pv1 first base (unscaled) PVCoordinates
  201.      * @param a2 second scale factor
  202.      * @param pv2 second base (unscaled) PVCoordinates
  203.      */
  204.     public TimeStampedFieldPVCoordinates(final AbsoluteDate date,
  205.                                          final double a1, final FieldPVCoordinates<T> pv1,
  206.                                          final double a2, final FieldPVCoordinates<T> pv2) {
  207.         this(new FieldAbsoluteDate<>(pv1.getPosition().getX().getField(), date),
  208.              a1, pv1, a2, pv2);
  209.     }

  210.     /** Linear constructor
  211.      * <p>Build a PVCoordinates from two other ones and corresponding scale factors.</p>
  212.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2</p>
  213.      * @param date date of the built coordinates
  214.      * @param a1 first scale factor
  215.      * @param pv1 first base (unscaled) PVCoordinates
  216.      * @param a2 second scale factor
  217.      * @param pv2 second base (unscaled) PVCoordinates
  218.      */
  219.     public TimeStampedFieldPVCoordinates(final FieldAbsoluteDate<T> date,
  220.                                          final double a1, final FieldPVCoordinates<T> pv1,
  221.                                          final double a2, final FieldPVCoordinates<T> pv2) {
  222.         super(new FieldVector3D<>(a1, pv1.getPosition(),     a2, pv2.getPosition()),
  223.               new FieldVector3D<>(a1, pv1.getVelocity(),     a2, pv2.getVelocity()),
  224.               new FieldVector3D<>(a1, pv1.getAcceleration(), a2, pv2.getAcceleration()));
  225.         this.date = date;
  226.     }

  227.     /** Linear constructor
  228.      * <p>Build a PVCoordinates from two other ones and corresponding scale factors.</p>
  229.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2</p>
  230.      * @param date date of the built coordinates
  231.      * @param a1 first scale factor
  232.      * @param pv1 first base (unscaled) PVCoordinates
  233.      * @param a2 second scale factor
  234.      * @param pv2 second base (unscaled) PVCoordinates
  235.      */
  236.     public TimeStampedFieldPVCoordinates(final AbsoluteDate date,
  237.                                          final T a1, final FieldPVCoordinates<T> pv1,
  238.                                          final T a2, final FieldPVCoordinates<T> pv2) {
  239.         this(new FieldAbsoluteDate<>(a1.getField(), date),
  240.              a1, pv1, a2, pv2);
  241.     }

  242.     /** Linear constructor
  243.      * <p>Build a PVCoordinates from two other ones and corresponding scale factors.</p>
  244.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2</p>
  245.      * @param date date of the built coordinates
  246.      * @param a1 first scale factor
  247.      * @param pv1 first base (unscaled) PVCoordinates
  248.      * @param a2 second scale factor
  249.      * @param pv2 second base (unscaled) PVCoordinates
  250.      */
  251.     public TimeStampedFieldPVCoordinates(final FieldAbsoluteDate<T> date,
  252.                                          final T a1, final FieldPVCoordinates<T> pv1,
  253.                                          final T a2, final FieldPVCoordinates<T> pv2) {
  254.         super(new FieldVector3D<>(a1, pv1.getPosition(),     a2, pv2.getPosition()),
  255.               new FieldVector3D<>(a1, pv1.getVelocity(),     a2, pv2.getVelocity()),
  256.               new FieldVector3D<>(a1, pv1.getAcceleration(), a2, pv2.getAcceleration()));
  257.         this.date = date;
  258.     }

  259.     /** Linear constructor
  260.      * <p>Build a PVCoordinates from two other ones and corresponding scale factors.</p>
  261.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2</p>
  262.      * @param date date of the built coordinates
  263.      * @param a1 first scale factor
  264.      * @param pv1 first base (unscaled) PVCoordinates
  265.      * @param a2 second scale factor
  266.      * @param pv2 second base (unscaled) PVCoordinates
  267.      */
  268.     public TimeStampedFieldPVCoordinates(final AbsoluteDate date,
  269.                                          final T a1, final PVCoordinates pv1,
  270.                                          final T a2, final PVCoordinates pv2) {
  271.         this(new FieldAbsoluteDate<>(a1.getField(), date),
  272.              a1, pv1, a2, pv2);
  273.     }

  274.     /** Linear constructor
  275.      * <p>Build a PVCoordinates from two other ones and corresponding scale factors.</p>
  276.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2</p>
  277.      * @param date date of the built coordinates
  278.      * @param a1 first scale factor
  279.      * @param pv1 first base (unscaled) PVCoordinates
  280.      * @param a2 second scale factor
  281.      * @param pv2 second base (unscaled) PVCoordinates
  282.      */
  283.     public TimeStampedFieldPVCoordinates(final FieldAbsoluteDate<T> date,
  284.                                          final T a1, final PVCoordinates pv1,
  285.                                          final T a2, final PVCoordinates pv2) {
  286.         super(new FieldVector3D<>(a1, pv1.getPosition(),     a2, pv2.getPosition()),
  287.               new FieldVector3D<>(a1, pv1.getVelocity(),     a2, pv2.getVelocity()),
  288.               new FieldVector3D<>(a1, pv1.getAcceleration(), a2, pv2.getAcceleration()));
  289.         this.date = date;
  290.     }

  291.     /** Linear constructor
  292.      * <p>Build a PVCoordinates from three other ones and corresponding scale factors.</p>
  293.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2 + a3 * u3</p>
  294.      * @param date date of the built coordinates
  295.      * @param a1 first scale factor
  296.      * @param pv1 first base (unscaled) PVCoordinates
  297.      * @param a2 second scale factor
  298.      * @param pv2 second base (unscaled) PVCoordinates
  299.      * @param a3 third scale factor
  300.      * @param pv3 third base (unscaled) PVCoordinates
  301.      */
  302.     public TimeStampedFieldPVCoordinates(final AbsoluteDate date,
  303.                                          final double a1, final FieldPVCoordinates<T> pv1,
  304.                                          final double a2, final FieldPVCoordinates<T> pv2,
  305.                                          final double a3, final FieldPVCoordinates<T> pv3) {
  306.         this(new FieldAbsoluteDate<>(pv1.getPosition().getX().getField(), date),
  307.              a1, pv1, a2, pv2, a3, pv3);
  308.     }

  309.     /** Linear constructor
  310.      * <p>Build a PVCoordinates from three other ones and corresponding scale factors.</p>
  311.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2 + a3 * u3</p>
  312.      * @param date date of the built coordinates
  313.      * @param a1 first scale factor
  314.      * @param pv1 first base (unscaled) PVCoordinates
  315.      * @param a2 second scale factor
  316.      * @param pv2 second base (unscaled) PVCoordinates
  317.      * @param a3 third scale factor
  318.      * @param pv3 third base (unscaled) PVCoordinates
  319.      */
  320.     public TimeStampedFieldPVCoordinates(final FieldAbsoluteDate<T> date,
  321.                                          final double a1, final FieldPVCoordinates<T> pv1,
  322.                                          final double a2, final FieldPVCoordinates<T> pv2,
  323.                                          final double a3, final FieldPVCoordinates<T> pv3) {
  324.         super(new FieldVector3D<>(a1, pv1.getPosition(),     a2, pv2.getPosition(),     a3, pv3.getPosition()),
  325.               new FieldVector3D<>(a1, pv1.getVelocity(),     a2, pv2.getVelocity(),     a3, pv3.getVelocity()),
  326.               new FieldVector3D<>(a1, pv1.getAcceleration(), a2, pv2.getAcceleration(), a3, pv3.getAcceleration()));
  327.         this.date = date;
  328.     }

  329.     /** Linear constructor
  330.      * <p>Build a PVCoordinates from three other ones and corresponding scale factors.</p>
  331.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2 + a3 * u3</p>
  332.      * @param date date of the built coordinates
  333.      * @param a1 first scale factor
  334.      * @param pv1 first base (unscaled) PVCoordinates
  335.      * @param a2 second scale factor
  336.      * @param pv2 second base (unscaled) PVCoordinates
  337.      * @param a3 third scale factor
  338.      * @param pv3 third base (unscaled) PVCoordinates
  339.      */
  340.     public TimeStampedFieldPVCoordinates(final AbsoluteDate date,
  341.                                          final T a1, final FieldPVCoordinates<T> pv1,
  342.                                          final T a2, final FieldPVCoordinates<T> pv2,
  343.                                          final T a3, final FieldPVCoordinates<T> pv3) {
  344.         this(new FieldAbsoluteDate<>(a1.getField(), date),
  345.              a1, pv1, a2, pv2, a3, pv3);
  346.     }

  347.     /** Linear constructor
  348.      * <p>Build a PVCoordinates from three other ones and corresponding scale factors.</p>
  349.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2 + a3 * u3</p>
  350.      * @param date date of the built coordinates
  351.      * @param a1 first scale factor
  352.      * @param pv1 first base (unscaled) PVCoordinates
  353.      * @param a2 second scale factor
  354.      * @param pv2 second base (unscaled) PVCoordinates
  355.      * @param a3 third scale factor
  356.      * @param pv3 third base (unscaled) PVCoordinates
  357.      */
  358.     public TimeStampedFieldPVCoordinates(final FieldAbsoluteDate<T> date,
  359.                                          final T a1, final FieldPVCoordinates<T> pv1,
  360.                                          final T a2, final FieldPVCoordinates<T> pv2,
  361.                                          final T a3, final FieldPVCoordinates<T> pv3) {
  362.         super(new FieldVector3D<>(a1, pv1.getPosition(),     a2, pv2.getPosition(),     a3, pv3.getPosition()),
  363.               new FieldVector3D<>(a1, pv1.getVelocity(),     a2, pv2.getVelocity(),     a3, pv3.getVelocity()),
  364.               new FieldVector3D<>(a1, pv1.getAcceleration(), a2, pv2.getAcceleration(), a3, pv3.getAcceleration()));
  365.         this.date = date;
  366.     }

  367.     /** Linear constructor
  368.      * <p>Build a PVCoordinates from three other ones and corresponding scale factors.</p>
  369.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2 + a3 * u3</p>
  370.      * @param date date of the built coordinates
  371.      * @param a1 first scale factor
  372.      * @param pv1 first base (unscaled) PVCoordinates
  373.      * @param a2 second scale factor
  374.      * @param pv2 second base (unscaled) PVCoordinates
  375.      * @param a3 third scale factor
  376.      * @param pv3 third base (unscaled) PVCoordinates
  377.      */
  378.     public TimeStampedFieldPVCoordinates(final AbsoluteDate date,
  379.                                          final T a1, final PVCoordinates pv1,
  380.                                          final T a2, final PVCoordinates pv2,
  381.                                          final T a3, final PVCoordinates pv3) {
  382.         this(new FieldAbsoluteDate<>(a1.getField(), date),
  383.              a1, pv1, a2, pv2, a3, pv3);
  384.     }

  385.     /** Linear constructor
  386.      * <p>Build a PVCoordinates from three other ones and corresponding scale factors.</p>
  387.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2 + a3 * u3</p>
  388.      * @param date date of the built coordinates
  389.      * @param a1 first scale factor
  390.      * @param pv1 first base (unscaled) PVCoordinates
  391.      * @param a2 second scale factor
  392.      * @param pv2 second base (unscaled) PVCoordinates
  393.      * @param a3 third scale factor
  394.      * @param pv3 third base (unscaled) PVCoordinates
  395.      */
  396.     public TimeStampedFieldPVCoordinates(final FieldAbsoluteDate<T> date,
  397.                                          final T a1, final PVCoordinates pv1,
  398.                                          final T a2, final PVCoordinates pv2,
  399.                                          final T a3, final PVCoordinates pv3) {
  400.         super(new FieldVector3D<>(a1, pv1.getPosition(),     a2, pv2.getPosition(),     a3, pv3.getPosition()),
  401.               new FieldVector3D<>(a1, pv1.getVelocity(),     a2, pv2.getVelocity(),     a3, pv3.getVelocity()),
  402.               new FieldVector3D<>(a1, pv1.getAcceleration(), a2, pv2.getAcceleration(), a3, pv3.getAcceleration()));
  403.         this.date = date;
  404.     }

  405.     /** Linear constructor
  406.      * <p>Build a PVCoordinates from four other ones and corresponding scale factors.</p>
  407.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2 + a3 * u3 + a4 * u4</p>
  408.      * @param date date of the built coordinates
  409.      * @param a1 first scale factor
  410.      * @param pv1 first base (unscaled) PVCoordinates
  411.      * @param a2 second scale factor
  412.      * @param pv2 second base (unscaled) PVCoordinates
  413.      * @param a3 third scale factor
  414.      * @param pv3 third base (unscaled) PVCoordinates
  415.      * @param a4 fourth scale factor
  416.      * @param pv4 fourth base (unscaled) PVCoordinates
  417.      */
  418.     public TimeStampedFieldPVCoordinates(final AbsoluteDate date,
  419.                                          final double a1, final FieldPVCoordinates<T> pv1,
  420.                                          final double a2, final FieldPVCoordinates<T> pv2,
  421.                                          final double a3, final FieldPVCoordinates<T> pv3,
  422.                                          final double a4, final FieldPVCoordinates<T> pv4) {
  423.         this(new FieldAbsoluteDate<>(pv1.getPosition().getX().getField(), date),
  424.              a1, pv1, a2, pv2, a3, pv3, a4, pv4);
  425.     }

  426.     /** Linear constructor
  427.      * <p>Build a PVCoordinates from four other ones and corresponding scale factors.</p>
  428.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2 + a3 * u3 + a4 * u4</p>
  429.      * @param date date of the built coordinates
  430.      * @param a1 first scale factor
  431.      * @param pv1 first base (unscaled) PVCoordinates
  432.      * @param a2 second scale factor
  433.      * @param pv2 second base (unscaled) PVCoordinates
  434.      * @param a3 third scale factor
  435.      * @param pv3 third base (unscaled) PVCoordinates
  436.      * @param a4 fourth scale factor
  437.      * @param pv4 fourth base (unscaled) PVCoordinates
  438.      */
  439.     public TimeStampedFieldPVCoordinates(final FieldAbsoluteDate<T> date,
  440.                                          final double a1, final FieldPVCoordinates<T> pv1,
  441.                                          final double a2, final FieldPVCoordinates<T> pv2,
  442.                                          final double a3, final FieldPVCoordinates<T> pv3,
  443.                                          final double a4, final FieldPVCoordinates<T> pv4) {
  444.         super(new FieldVector3D<>(a1, pv1.getPosition(),     a2, pv2.getPosition(),
  445.                                   a3, pv3.getPosition(),     a4, pv4.getPosition()),
  446.               new FieldVector3D<>(a1, pv1.getVelocity(),     a2, pv2.getVelocity(),
  447.                                   a3, pv3.getVelocity(),     a4, pv4.getVelocity()),
  448.               new FieldVector3D<>(a1, pv1.getAcceleration(), a2, pv2.getAcceleration(),
  449.                                   a3, pv3.getAcceleration(), a4, pv4.getAcceleration()));
  450.         this.date = date;
  451.     }

  452.     /** Linear constructor
  453.      * <p>Build a PVCoordinates from four other ones and corresponding scale factors.</p>
  454.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2 + a3 * u3 + a4 * u4</p>
  455.      * @param date date of the built coordinates
  456.      * @param a1 first scale factor
  457.      * @param pv1 first base (unscaled) PVCoordinates
  458.      * @param a2 second scale factor
  459.      * @param pv2 second base (unscaled) PVCoordinates
  460.      * @param a3 third scale factor
  461.      * @param pv3 third base (unscaled) PVCoordinates
  462.      * @param a4 fourth scale factor
  463.      * @param pv4 fourth base (unscaled) PVCoordinates
  464.      */
  465.     public TimeStampedFieldPVCoordinates(final AbsoluteDate date,
  466.                                          final T a1, final FieldPVCoordinates<T> pv1,
  467.                                          final T a2, final FieldPVCoordinates<T> pv2,
  468.                                          final T a3, final FieldPVCoordinates<T> pv3,
  469.                                          final T a4, final FieldPVCoordinates<T> pv4) {
  470.         this(new FieldAbsoluteDate<>(a1.getField(), date),
  471.              a1, pv1, a2, pv2, a3, pv3, a4, pv4);
  472.     }

  473.     /** Linear constructor
  474.      * <p>Build a PVCoordinates from four other ones and corresponding scale factors.</p>
  475.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2 + a3 * u3 + a4 * u4</p>
  476.      * @param date date of the built coordinates
  477.      * @param a1 first scale factor
  478.      * @param pv1 first base (unscaled) PVCoordinates
  479.      * @param a2 second scale factor
  480.      * @param pv2 second base (unscaled) PVCoordinates
  481.      * @param a3 third scale factor
  482.      * @param pv3 third base (unscaled) PVCoordinates
  483.      * @param a4 fourth scale factor
  484.      * @param pv4 fourth base (unscaled) PVCoordinates
  485.      */
  486.     public TimeStampedFieldPVCoordinates(final FieldAbsoluteDate<T> date,
  487.                                          final T a1, final FieldPVCoordinates<T> pv1,
  488.                                          final T a2, final FieldPVCoordinates<T> pv2,
  489.                                          final T a3, final FieldPVCoordinates<T> pv3,
  490.                                          final T a4, final FieldPVCoordinates<T> pv4) {
  491.         super(new FieldVector3D<>(a1, pv1.getPosition(),     a2, pv2.getPosition(),
  492.                                   a3, pv3.getPosition(),     a4, pv4.getPosition()),
  493.               new FieldVector3D<>(a1, pv1.getVelocity(),     a2, pv2.getVelocity(),
  494.                                   a3, pv3.getVelocity(),     a4, pv4.getVelocity()),
  495.               new FieldVector3D<>(a1, pv1.getAcceleration(), a2, pv2.getAcceleration(),
  496.                                   a3, pv3.getAcceleration(), a4, pv4.getAcceleration()));
  497.         this.date = date;
  498.     }

  499.     /** Linear constructor
  500.      * <p>Build a PVCoordinates from four other ones and corresponding scale factors.</p>
  501.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2 + a3 * u3 + a4 * u4</p>
  502.      * @param date date of the built coordinates
  503.      * @param a1 first scale factor
  504.      * @param pv1 first base (unscaled) PVCoordinates
  505.      * @param a2 second scale factor
  506.      * @param pv2 second base (unscaled) PVCoordinates
  507.      * @param a3 third scale factor
  508.      * @param pv3 third base (unscaled) PVCoordinates
  509.      * @param a4 fourth scale factor
  510.      * @param pv4 fourth base (unscaled) PVCoordinates
  511.      */
  512.     public TimeStampedFieldPVCoordinates(final AbsoluteDate date,
  513.                                          final T a1, final PVCoordinates pv1,
  514.                                          final T a2, final PVCoordinates pv2,
  515.                                          final T a3, final PVCoordinates pv3,
  516.                                          final T a4, final PVCoordinates pv4) {
  517.         this(new FieldAbsoluteDate<>(a1.getField(), date),
  518.              a1, pv1, a2, pv2, a3, pv3, a4, pv4);
  519.     }

  520.     /** Linear constructor
  521.      * <p>Build a PVCoordinates from four other ones and corresponding scale factors.</p>
  522.      * <p>The PVCoordinates built will be a1 * u1 + a2 * u2 + a3 * u3 + a4 * u4</p>
  523.      * @param date date of the built coordinates
  524.      * @param a1 first scale factor
  525.      * @param pv1 first base (unscaled) PVCoordinates
  526.      * @param a2 second scale factor
  527.      * @param pv2 second base (unscaled) PVCoordinates
  528.      * @param a3 third scale factor
  529.      * @param pv3 third base (unscaled) PVCoordinates
  530.      * @param a4 fourth scale factor
  531.      * @param pv4 fourth base (unscaled) PVCoordinates
  532.      */
  533.     public TimeStampedFieldPVCoordinates(final FieldAbsoluteDate<T> date,
  534.                                          final T a1, final PVCoordinates pv1,
  535.                                          final T a2, final PVCoordinates pv2,
  536.                                          final T a3, final PVCoordinates pv3,
  537.                                          final T a4, final PVCoordinates pv4) {
  538.         super(new FieldVector3D<>(a1, pv1.getPosition(),     a2, pv2.getPosition(),
  539.                                   a3, pv3.getPosition(),     a4, pv4.getPosition()),
  540.               new FieldVector3D<>(a1, pv1.getVelocity(),     a2, pv2.getVelocity(),
  541.                                   a3, pv3.getVelocity(),     a4, pv4.getVelocity()),
  542.               new FieldVector3D<>(a1, pv1.getAcceleration(), a2, pv2.getAcceleration(),
  543.                                   a3, pv3.getAcceleration(), a4, pv4.getAcceleration()));
  544.         this.date = date;
  545.     }

  546.     /** Builds a TimeStampedFieldPVCoordinates triplet from  a {@link FieldVector3D}&lt;{@link FieldDerivativeStructure}&gt;.
  547.      * <p>
  548.      * The vector components must have time as their only derivation parameter and
  549.      * have consistent derivation orders.
  550.      * </p>
  551.      * @param date date of the built coordinates
  552.      * @param <U> type of the derivative
  553.      * @param p vector with time-derivatives embedded within the coordinates
  554.      */
  555.     public <U extends FieldDerivative<T, U>> TimeStampedFieldPVCoordinates(final FieldAbsoluteDate<T> date,
  556.                                                                            final FieldVector3D<U> p) {
  557.         super(p);
  558.         this.date = date;
  559.     }

  560.     /** {@inheritDoc} */
  561.     @Override
  562.     public FieldAbsoluteDate<T> getDate() {
  563.         return date;
  564.     }

  565.     /** Get a time-shifted state.
  566.      * <p>
  567.      * The state can be slightly shifted to close dates. This shift is based on
  568.      * a simple linear model. It is <em>not</em> intended as a replacement for
  569.      * proper orbit propagation (it is not even Keplerian!) but should be sufficient
  570.      * for either small time shifts or coarse accuracy.
  571.      * </p>
  572.      * @param dt time shift in seconds
  573.      * @return a new state, shifted with respect to the instance (which is immutable)
  574.      */
  575.     public TimeStampedFieldPVCoordinates<T> shiftedBy(final double dt) {
  576.         final FieldPVCoordinates<T> spv = super.shiftedBy(dt);
  577.         return new TimeStampedFieldPVCoordinates<>(date.shiftedBy(dt),
  578.                                                    spv.getPosition(), spv.getVelocity(), spv.getAcceleration());
  579.     }

  580.     /** Get a time-shifted state.
  581.      * <p>
  582.      * The state can be slightly shifted to close dates. This shift is based on
  583.      * a simple linear model. It is <em>not</em> intended as a replacement for
  584.      * proper orbit propagation (it is not even Keplerian!) but should be sufficient
  585.      * for either small time shifts or coarse accuracy.
  586.      * </p>
  587.      * @param dt time shift in seconds
  588.      * @return a new state, shifted with respect to the instance (which is immutable)
  589.      */
  590.     public TimeStampedFieldPVCoordinates<T> shiftedBy(final T dt) {
  591.         final FieldPVCoordinates<T> spv = super.shiftedBy(dt);
  592.         return new TimeStampedFieldPVCoordinates<>(date.shiftedBy(dt),
  593.                                                    spv.getPosition(), spv.getVelocity(), spv.getAcceleration());
  594.     }

  595.     /** Convert to a constant position-velocity.
  596.      * @return a constant position-velocity
  597.      * @since 9.0
  598.      */
  599.     public TimeStampedPVCoordinates toTimeStampedPVCoordinates() {
  600.         return new TimeStampedPVCoordinates(date.toAbsoluteDate(),
  601.                                             getPosition().toVector3D(),
  602.                                             getVelocity().toVector3D(),
  603.                                             getAcceleration().toVector3D());
  604.     }

  605.     /** Return a string representation of this date, position, velocity, and acceleration.
  606.      *
  607.      * <p>This method uses the {@link DataContext#getDefault() default data context}.
  608.      *
  609.      * @return string representation of this.
  610.      */
  611.     @Override
  612.     @DefaultDataContext
  613.     public String toString() {
  614.         return toTimeStampedPVCoordinates().toString();
  615.     }

  616.     /**
  617.      * Return a string representation of this date, position, velocity, and acceleration.
  618.      *
  619.      * @param utc time scale used to print the date.
  620.      * @return string representation of this.
  621.      */
  622.     public String toString(final TimeScale utc) {
  623.         return toTimeStampedPVCoordinates().toString(utc);
  624.     }

  625. }