source: josm/trunk/src/org/openstreetmap/josm/data/projection/proj/LambertConformalConic.java@ 6135

Last change on this file since 6135 was 5230, checked in by bastiK, 12 years ago

use standard parameter set for lambert projection

  • Property svn:eol-style set to native
File size: 4.7 KB
Line 
1// License: GPL. For details, see LICENSE file.
2package org.openstreetmap.josm.data.projection.proj;
3
4import static java.lang.Math.*;
5
6import static org.openstreetmap.josm.tools.I18n.tr;
7
8import org.openstreetmap.josm.data.projection.Ellipsoid;
9import org.openstreetmap.josm.data.projection.ProjectionConfigurationException;
10
11/**
12 * Implementation of the Lambert Conformal Conic projection.
13 *
14 * @author Pieren
15 */
16public class LambertConformalConic implements Proj {
17
18 protected Ellipsoid ellps;
19 protected double e;
20
21 public static abstract class Parameters {
22 public final double latitudeOrigin;
23 public Parameters(double latitudeOrigin) {
24 this.latitudeOrigin = latitudeOrigin;
25 }
26 };
27
28 public static class Parameters1SP extends Parameters {
29 public Parameters1SP(double latitudeOrigin) {
30 super(latitudeOrigin);
31 }
32 }
33
34 public static class Parameters2SP extends Parameters {
35 public final double standardParallel1;
36 public final double standardParallel2;
37 public Parameters2SP(double latitudeOrigin, double standardParallel1, double standardParallel2) {
38 super(latitudeOrigin);
39 this.standardParallel1 = standardParallel1;
40 this.standardParallel2 = standardParallel2;
41 }
42 }
43
44 private Parameters params;
45
46 /**
47 * projection exponent
48 */
49 protected double n;
50 /**
51 * projection factor
52 */
53 protected double F;
54 /**
55 * radius of the parallel of latitude of the false origin (2SP) or at
56 * natural origin (1SP)
57 */
58 protected double r0;
59
60 /**
61 * precision in iterative schema
62 */
63 protected static final double epsilon = 1e-12;
64
65 @Override
66 public void initialize(ProjParameters params) throws ProjectionConfigurationException {
67 ellps = params.ellps;
68 e = ellps.e;
69 if (params.lat_0 == null)
70 throw new ProjectionConfigurationException(tr("Parameter ''{0}'' required.", "lat_0"));
71 if (params.lat_1 != null && params.lat_2 != null) {
72 initialize2SP(params.lat_0, params.lat_1, params.lat_2);
73 } else {
74 initialize1SP(params.lat_0);
75 }
76 }
77
78 /**
79 * Initialize for LCC with 2 standard parallels.
80 *
81 * @param lat_0 latitude of false origin (in degrees)
82 * @param lat_1 latitude of first standard parallel (in degrees)
83 * @param lat_2 latitude of second standard parallel (in degrees)
84 */
85 private void initialize2SP(double lat_0, double lat_1, double lat_2) {
86 this.params = new Parameters2SP(lat_0, lat_1, lat_2);
87
88 final double m1 = m(toRadians(lat_1));
89 final double m2 = m(toRadians(lat_2));
90
91 final double t1 = t(toRadians(lat_1));
92 final double t2 = t(toRadians(lat_2));
93 final double tf = t(toRadians(lat_0));
94
95 n = (log(m1) - log(m2)) / (log(t1) - log(t2));
96 F = m1 / (n * pow(t1, n));
97 r0 = F * pow(tf, n);
98 }
99
100 /**
101 * Initialize for LCC with 1 standard parallel.
102 *
103 * @param lat_0 latitude of natural origin (in degrees)
104 */
105 private void initialize1SP(double lat_0) {
106 this.params = new Parameters1SP(lat_0);
107 final double lat_0_rad = toRadians(lat_0);
108
109 final double m0 = m(lat_0_rad);
110 final double t0 = t(lat_0_rad);
111
112 n = sin(lat_0_rad);
113 F = m0 / (n * pow(t0, n));
114 r0 = F * pow(t0, n);
115 }
116
117 /**
118 * auxiliary function t
119 */
120 protected double t(double lat_rad) {
121 return tan(PI/4 - lat_rad / 2.0)
122 / pow(( (1.0 - e * sin(lat_rad)) / (1.0 + e * sin(lat_rad))) , e/2);
123 }
124
125 /**
126 * auxiliary function m
127 */
128 protected double m(double lat_rad) {
129 return cos(lat_rad) / (sqrt(1 - e * e * pow(sin(lat_rad), 2)));
130 }
131
132 @Override
133 public String getName() {
134 return tr("Lambert Conformal Conic");
135 }
136
137 @Override
138 public String getProj4Id() {
139 return "lcc";
140 }
141
142 @Override
143 public double[] project(double phi, double lambda) {
144 double sinphi = sin(phi);
145 double L = (0.5*log((1+sinphi)/(1-sinphi))) - e/2*log((1+e*sinphi)/(1-e*sinphi));
146 double r = F*exp(-n*L);
147 double gamma = n*lambda;
148 double X = r*sin(gamma);
149 double Y = r0 - r*cos(gamma);
150 return new double[] { X, Y };
151 }
152
153 @Override
154 public double[] invproject(double east, double north) {
155 double r = sqrt(pow(east,2) + pow(north-r0, 2));
156 double gamma = atan(east / (r0-north));
157 double lambda = gamma/n;
158 double latIso = (-1/n) * log(abs(r/F));
159 double phi = ellps.latitude(latIso, e, epsilon);
160 return new double[] { phi, lambda };
161 }
162
163 public final Parameters getParameters() {
164 return params;
165 }
166}
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