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source: trunk/sources/HeuristicLab.Encodings.RealVectorEncoding/3.3/Crossovers/SimulatedBinaryCrossover.cs @ 3629

Last change on this file since 3629 was 3376, checked in by swagner, 15 years ago

Moved interfaces and classes for deep cloning from HeuristicLab.Core to HeuristicLab.Common (#975).

File size: 6.4 KB
Line 
1#region License Information
2/* HeuristicLab
3 * Copyright (C) 2002-2010 Heuristic and Evolutionary Algorithms Laboratory (HEAL)
4 *
5 * This file is part of HeuristicLab.
6 *
7 * HeuristicLab is free software: you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation, either version 3 of the License, or
10 * (at your option) any later version.
11 *
12 * HeuristicLab is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15 * GNU General Public License for more details.
16 *
17 * You should have received a copy of the GNU General Public License
18 * along with HeuristicLab. If not, see <http://www.gnu.org/licenses/>.
19 */
20#endregion
21
22using System;
23using HeuristicLab.Common;
24using HeuristicLab.Core;
25using HeuristicLab.Data;
26using HeuristicLab.Parameters;
27using HeuristicLab.Persistence.Default.CompositeSerializers.Storable;
28
29namespace HeuristicLab.Encodings.RealVectorEncoding {
30  /// <summary>
31  /// Performs the simulated binary crossover (SBX) on a vector of real values such that each position is either crossed contracted or expanded with a certain probability.
32  /// The probability distribution is designed such that the children will lie closer to their parents as is the case with the single point binary crossover.
33  /// </summary>
34  /// <remarks>
35  /// It is implemented as described in Deb, K. and Agrawal, R. B. 1995. Simulated binary crossover for continuous search space. Complex Systems, 9, pp. 115-148.
36  /// </remarks>
37  [Item("SimulatedBinaryCrossover", "The simulated binary crossover (SBX) is implemented as described in Deb, K. and Agrawal, R. B. 1995. Simulated binary crossover for continuous search space. Complex Systems, 9, pp. 115-148.")]
38  [StorableClass]
39  public class SimulatedBinaryCrossover : RealVectorCrossover {
40    /// <summary>
41    /// The parameter must be greater or equal than 0. Common values are in the range [0;5] and more often just [2;5].
42    /// </summary>
43    public ValueLookupParameter<DoubleValue> ContiguityParameter {
44      get { return (ValueLookupParameter<DoubleValue>)Parameters["Contiguity"]; }
45    }
46
47    /// <summary>
48    /// Initializes a new instance of <see cref="SimulatedBinaryCrossover"/> with one
49    /// parameter (<c>Contiguity</c>).
50    /// </summary>
51    public SimulatedBinaryCrossover()
52      : base() {
53      Parameters.Add(new ValueLookupParameter<DoubleValue>("Contiguity", "Specifies whether the crossover should produce very different (small value) or very similar (large value) children. Valid values must be greater or equal to 0.", new DoubleValue(2)));
54    }
55
56    /// <summary>
57    /// Performs the simulated binary crossover on a real vector. Each position is crossed with a probability of 50% and if crossed either a contracting crossover or an expanding crossover is performed, again with equal probability.
58    /// For more details refer to the paper by Deb and Agrawal.
59    /// </summary>
60    /// <exception cref="ArgumentException">Thrown when the parents' vectors are of unequal length or when <paramref name="contiguity"/> is smaller than 0.</exception>
61    /// <remarks>
62    /// The manipulated value is not restricted by the (possibly) specified lower and upper bounds. Use the <see cref="BoundsChecker"/> to correct the values after performing the crossover.
63    /// </remarks>
64    /// <param name="random">The random number generator to use.</param>
65    /// <param name="parent1">The first parent vector.</param>
66    /// <param name="parent2">The second parent vector.</param>
67    /// <param name="contiguity">The contiguity value that specifies how close a child should be to its parents (larger value means closer). The value must be greater or equal than 0. Typical values are in the range [2;5].</param>
68    /// <returns>The vector resulting from the crossover.</returns>
69    public static RealVector Apply(IRandom random, RealVector parent1, RealVector parent2, DoubleValue contiguity) {
70      if (parent1.Length != parent2.Length) throw new ArgumentException("SimulatedBinaryCrossover: Parents are of unequal length");
71      if (contiguity.Value < 0) throw new ArgumentException("SimulatedBinaryCrossover: Contiguity value is smaller than 0", "contiguity");
72      int length = parent1.Length;
73      RealVector result = new RealVector(length);
74      for (int i = 0; i < length; i++) {
75        if (length == 1 || random.NextDouble() < 0.5) { // cross this variable
76          double u = random.NextDouble();
77          double beta = 0;
78          if (u < 0.5) { // if u is smaller than 0.5 perform a contracting crossover
79            beta = Math.Pow(2 * u, 1.0 / (contiguity.Value + 1));
80          } else if (u > 0.5) { // otherwise perform an expanding crossover
81            beta = Math.Pow(0.5 / (1.0 - u), 1.0 / (contiguity.Value + 1));
82          } else if (u == 0.5)
83            beta = 1;
84
85          if (random.NextDouble() < 0.5)
86            result[i] = ((parent1[i] + parent2[i]) / 2.0) - beta * 0.5 * Math.Abs(parent1[i] - parent2[i]);
87          else
88            result[i] = ((parent1[i] + parent2[i]) / 2.0) + beta * 0.5 * Math.Abs(parent1[i] - parent2[i]);
89        } else result[i] = parent1[i];
90      }
91      return result;
92    }
93
94    /// <summary>
95    /// Checks number of parents, availability of the parameters and forwards the call to <see cref="Apply(IRandom, RealVector, RealVector, DoubleValue)"/>.
96    /// </summary>
97    /// <exception cref="ArgumentException">Thrown when there are not exactly 2 parents or when the contiguity parameter could not be found.</exception>
98    /// <param name="random">The random number generator.</param>
99    /// <param name="parents">The collection of parents (must be of size 2).</param>
100    /// <returns>The real vector resulting from the crossover.</returns>
101    protected override RealVector Cross(IRandom random, ItemArray<RealVector> parents) {
102      if (parents.Length != 2) throw new ArgumentException("SimulatedBinaryCrossover: The number of parents is not equal to 2");
103      if (ContiguityParameter.ActualValue == null) throw new InvalidOperationException("SimulatedBinaryCrossover: Parameter " + ContiguityParameter.ActualName + " could not be found.");
104      return Apply(random, parents[0], parents[1], ContiguityParameter.ActualValue);
105    }
106  }
107}
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