WideLaneCombination.java
/* Copyright 2002-2024 CS GROUP
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* CS licenses this file to You under the Apache License, Version 2.0
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*
* http://www.apache.org/licenses/LICENSE-2.0
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* Unless required by applicable law or agreed to in writing, software
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package org.orekit.estimation.measurements.gnss;
import org.hipparchus.util.MathArrays;
import org.orekit.gnss.GnssSignal;
import org.orekit.gnss.MeasurementType;
import org.orekit.gnss.SatelliteSystem;
/**
* Wide-Lane combination.
* <p>
* This combination are used to create a signal
* with a significantly wide wavelength.
* This longer wavelength is useful for cycle-slips
* detection and ambiguity fixing
* </p>
* <pre>
* f1 * m1 - f2 * m2
* mWL = -----------------------
* f1 - f2
* </pre>
* With:
* <ul>
* <li>mWL: Wide-laning measurement.</li>
* <li>f1 : Frequency of the first measurement.</li>
* <li>m1 : First measurement.</li>
* <li>f2 : Frequency of the second measurement.</li>
* <li>m1 : Second measurement.</li>
* </ul>
* <p>
* Wide-Lane combination is a dual frequency combination.
* The two measurements shall have different frequencies but they must have the same {@link MeasurementType}.
* </p>
* @author Bryan Cazabonne
* @since 10.1
*/
public class WideLaneCombination extends AbstractDualFrequencyCombination {
/**
* Package private constructor for the factory.
* @param system satellite system for which the combination is applied
*/
WideLaneCombination(final SatelliteSystem system) {
super(CombinationType.WIDE_LANE, system);
}
/** {@inheritDoc} */
@Override
protected double getCombinedValue(final double obs1, final GnssSignal s1,
final double obs2, final GnssSignal s2) {
// Get the ration f/f0
final double ratioF1 = s1.getRatio();
final double ratioF2 = s2.getRatio();
// Perform combination
return MathArrays.linearCombination(ratioF1, obs1, -ratioF2, obs2) / (ratioF1 - ratioF2);
}
/** {@inheritDoc} */
@Override
protected double getCombinedFrequency(final GnssSignal s1, final GnssSignal s2) {
return s1.getFrequency() - s2.getFrequency();
}
}