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source: trunk/HeuristicLab.Problems.Instances.DataAnalysis/3.3/Regression/Feynman/Feynman30.cs @ 17966

Last change on this file since 17966 was 17966, checked in by mkommend, 3 years ago

#3075: Changed Feynman problem instances to new normal distributed RNG.

File size: 3.0 KB
Line 
1using System;
2using System.Collections.Generic;
3using System.Linq;
4using HeuristicLab.Common;
5using HeuristicLab.Random;
6
7namespace HeuristicLab.Problems.Instances.DataAnalysis {
8  public class Feynman30 : FeynmanDescriptor {
9    private readonly int testSamples;
10    private readonly int trainingSamples;
11
12    public Feynman30() : this((int) DateTime.Now.Ticks, 10000, 10000, null) { }
13
14    public Feynman30(int seed) {
15      Seed            = seed;
16      trainingSamples = 10000;
17      testSamples     = 10000;
18      noiseRatio      = null;
19    }
20
21    public Feynman30(int seed, int trainingSamples, int testSamples, double? noiseRatio) {
22      Seed                 = seed;
23      this.trainingSamples = trainingSamples;
24      this.testSamples     = testSamples;
25      this.noiseRatio      = noiseRatio;
26    }
27
28    public override string Name {
29      get {
30        return string.Format("I.30.3 Int_0*sin(n*theta/2)**2/sin(theta/2)**2 | {0}",
31          noiseRatio == null ? "no noise" : string.Format(System.Globalization.CultureInfo.InvariantCulture, "noise={0:g}",noiseRatio));
32      }
33    }
34
35    protected override string TargetVariable { get { return noiseRatio == null ? "Int" : "Int_noise"; } }
36
37    protected override string[] VariableNames {
38      get { return new[] {"Int_0", "theta", "n", noiseRatio == null ? "Int" : "Int_noise"}; }
39    }
40
41    protected override string[] AllowedInputVariables { get { return new[] {"Int_0", "theta", "n"}; } }
42
43    public int Seed { get; private set; }
44
45    protected override int TrainingPartitionStart { get { return 0; } }
46    protected override int TrainingPartitionEnd { get { return trainingSamples; } }
47    protected override int TestPartitionStart { get { return trainingSamples; } }
48    protected override int TestPartitionEnd { get { return trainingSamples + testSamples; } }
49
50    protected override List<List<double>> GenerateValues() {
51      var rand = new MersenneTwister((uint) Seed);
52
53      var data  = new List<List<double>>();
54      var Int_0 = ValueGenerator.GenerateUniformDistributedValues(rand.Next(), TestPartitionEnd, 1, 5).ToList();
55      var theta = ValueGenerator.GenerateUniformDistributedValues(rand.Next(), TestPartitionEnd, 1, 5).ToList();
56      var n     = ValueGenerator.GenerateUniformDistributedValues(rand.Next(), TestPartitionEnd, 1, 5).ToList();
57
58      var Int = new List<double>();
59
60      data.Add(Int_0);
61      data.Add(theta);
62      data.Add(n);
63      data.Add(Int);
64
65      for (var i = 0; i < Int_0.Count; i++) {
66        var res = Int_0[i] * Math.Pow(Math.Sin(n[i] * theta[i] / 2), 2) / Math.Pow(Math.Sin(theta[i] / 2), 2);
67        Int.Add(res);
68      }
69
70      if (noiseRatio != null) {
71        var Int_noise   = new List<double>();
72        var sigma_noise = (double) Math.Sqrt(noiseRatio.Value) * Int.StandardDeviationPop();
73        Int_noise.AddRange(Int.Select(md => md + NormalDistributedRandomPolar.NextDouble(rand, 0, sigma_noise)));
74        data.Remove(Int);
75        data.Add(Int_noise);
76      }
77
78      return data;
79    }
80  }
81}
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