XAML-Map-Control/MapControl/Shared/AzimuthalEquidistantProjection.cs

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using System;
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#if WPF
using System.Windows;
using System.Windows.Media;
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#elif AVALONIA
using Avalonia;
#endif
namespace MapControl
{
/// <summary>
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/// Spherical Azimuthal Equidistant Projection - No standard CRS identifier.
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/// See "Map Projections - A Working Manual" (https://pubs.usgs.gov/publication/pp1395), p.195-197.
/// </summary>
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public class AzimuthalEquidistantProjection : AzimuthalProjection
{
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public const string DefaultCrsId = "AUTO2:97003"; // proprietary CRS identifier
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public AzimuthalEquidistantProjection() // parameterless constructor for XAML
: this(DefaultCrsId)
{
}
public AzimuthalEquidistantProjection(string crsId)
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{
CrsId = crsId;
}
public override Matrix RelativeScale(double latitude, double longitude)
{
var p = GetProjectedPoint(latitude, longitude);
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var k = 1d;
if (p.CosC < 1d)
{
var c = Math.Acos(p.CosC);
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k = c / Math.Sin(c); // p.195 (25-2)
}
var scale = new Matrix(1d, 0d, 0d, k, 0d, 0d); // h == 1
scale.Rotate(-Math.Atan2(p.Y, p.X) * 180d / Math.PI);
return scale;
}
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public override Point? LocationToMap(double latitude, double longitude)
{
var p = GetProjectedPoint(latitude, longitude);
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var k = 1d;
if (p.CosC < 1d)
{
var c = Math.Acos(p.CosC);
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k = c / Math.Sin(c); // p.195 (25-2)
}
return new Point(EarthRadius * k * p.X, EarthRadius * k * p.Y); // p.195 (22-4/5)
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}
public override Location MapToLocation(double x, double y)
{
var rho = Math.Sqrt(x * x + y * y);
var c = rho / EarthRadius; // p.196 (25-15)
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return GetLocation(x, y, rho, Math.Sin(c));
}
}
}