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17 package org.orekit.forces.gravity.potential;
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19 import org.orekit.forces.gravity.potential.NormalizedSphericalHarmonicsProvider.NormalizedSphericalHarmonics;
20 import org.orekit.time.AbsoluteDate;
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26 class Unnormalizer implements UnnormalizedSphericalHarmonicsProvider {
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29 private final NormalizedSphericalHarmonicsProvider normalized;
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32 private final double[][] factors;
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37 Unnormalizer(final NormalizedSphericalHarmonicsProvider normalized) {
38 this.normalized = normalized;
39 this.factors = GravityFieldFactory.getUnnormalizationFactors(normalized.getMaxDegree(),
40 normalized.getMaxOrder());
41 }
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43
44 @Override
45 public int getMaxDegree() {
46 return normalized.getMaxDegree();
47 }
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50 @Override
51 public int getMaxOrder() {
52 return normalized.getMaxOrder();
53 }
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56 @Override
57 public double getMu() {
58 return normalized.getMu();
59 }
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62 @Override
63 public double getAe() {
64 return normalized.getAe();
65 }
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68 @Override
69 public AbsoluteDate getReferenceDate() {
70 return normalized.getReferenceDate();
71 }
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74 @Override
75 public double getOffset(final AbsoluteDate date) {
76 return normalized.getOffset(date);
77 }
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80 @Override
81 public TideSystem getTideSystem() {
82 return normalized.getTideSystem();
83 }
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85
86 @Override
87 public UnnormalizedSphericalHarmonics onDate(final AbsoluteDate date) {
88 final NormalizedSphericalHarmonics harmonics = normalized.onDate(date);
89 return new UnnormalizedSphericalHarmonics() {
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92 @Override
93 public AbsoluteDate getDate() {
94 return date;
95 }
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98 @Override
99 public double getUnnormalizedCnm(final int n, final int m) {
100 return harmonics.getNormalizedCnm(n, m) * factors[n][m];
101 }
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104 @Override
105 public double getUnnormalizedSnm(final int n, final int m) {
106 return harmonics.getNormalizedSnm(n, m) * factors[n][m];
107 }
108
109 };
110 }
111
112 }