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#region Copyright © 2009, De Santiago-Castillo JA. All rights reserved.
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#endregion
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using System;
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using System.Collections.Generic;
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using System.Text;
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using DotNumerics.Optimization.Cobyla;
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using DotNumerics.Optimization.NelderMead;
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namespace DotNumerics.Optimization
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{
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public class Simplex : xMinimizationBase
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{
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#region Fields
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CobylaDriver _CobylaDriver;
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DownhillDirver _AmoebaDirver;
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#endregion
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#region Constructor
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public Simplex()
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{
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}
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#endregion
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#region Public methods
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#region double
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public double[] ComputeMin(OptMultivariateFunction function, double[] initialGuess)
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{
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if (initialGuess == null) return new double[0];
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if (initialGuess.Length == 0) return new double[0];
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OptSimplexVariable[] variables = this.GetVariables(initialGuess);
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double initialStep = this.GetAutomaticInitialStep(variables);
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int maxFunc= this._MaxFunEvaluations;
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return this.GetMinimum(function, variables, initialStep, this._Tolerance, ref maxFunc);
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}
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public double[] ComputeMin(OptMultivariateFunction function, double[] initialGuess, double initialStep)
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{
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if (initialGuess == null) return new double[0];
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if (initialGuess.Length == 0) return new double[0];
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OptSimplexVariable[] variables = this.GetVariables(initialGuess);
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int maxFunc = this._MaxFunEvaluations;
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return this.GetMinimum(function, variables, initialStep, this._Tolerance, ref maxFunc);
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}
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#endregion
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#region OptSimplexVariable
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public double[] ComputeMin(OptMultivariateFunction function, OptSimplexVariable[] variables)
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{
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if (variables == null) return new double[0];
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if (variables.Length == 0) return new double[0];
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double initialStep = this.GetAutomaticInitialStep(variables);
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int maxFunc = this._MaxFunEvaluations;
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return this.GetMinimum(function, variables, initialStep, this._Tolerance, ref maxFunc);
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}
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public double[] ComputeMin(OptMultivariateFunction function, OptSimplexVariable[] variables, float initialStep)
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{
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if (variables == null) return new double[0];
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if (variables.Length == 0) return new double[0];
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int maxFunc = this._MaxFunEvaluations;
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return this.GetMinimum(function, variables, initialStep, this._Tolerance, ref maxFunc);
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}
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#endregion
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#region OptVariable
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public double[] ComputeMin(OptMultivariateFunction function, OptVariable[] variables)
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{
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if (variables == null) return new double[0];
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if (variables.Length == 0) return new double[0];
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OptSimplexVariable[] simplexVariables = this.GetVariables(variables);
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double initialStep = this.GetAutomaticInitialStep(simplexVariables);
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int maxFunc = this._MaxFunEvaluations;
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return this.GetMinimum(function, simplexVariables, initialStep, this._Tolerance, ref maxFunc);
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}
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public double[] ComputeMin(OptMultivariateFunction function, OptVariable[] variables, double initialStep)
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{
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if (variables == null) return new double[0];
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if (variables.Length == 0) return new double[0];
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OptSimplexVariable[] simplexVariables = this.GetVariables(variables);
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int maxFunc = this._MaxFunEvaluations;
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return this.GetMinimum(function, simplexVariables, initialStep, this._Tolerance, ref maxFunc);
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}
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#endregion
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#region OptSimplexBoundVariable
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public double[] ComputeMin(OptMultivariateFunction function, OptSimplexBoundVariable[] variables)
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{
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if (variables == null) return new double[0];
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if (variables.Length == 0) return new double[0];
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double initialStep = this.GetAutomaticInitialStep(variables);
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int maxFunc = this._MaxFunEvaluations;
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return this.GetMinimum(function, variables, initialStep, this._Tolerance, ref maxFunc);
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}
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public double[] ComputeMin(OptMultivariateFunction function, OptSimplexBoundVariable[] variables, float initialStep)
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{
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if (variables == null) return new double[0];
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if (variables.Length == 0) return new double[0];
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int maxFunc = this._MaxFunEvaluations;
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return this.GetMinimum(function, variables, initialStep, this._Tolerance, ref maxFunc);
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}
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#endregion
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#region OptBoundVariable
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public double[] ComputeMin(OptMultivariateFunction function, OptBoundVariable[] variables)
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{
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if (variables == null) return new double[0];
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if (variables.Length == 0) return new double[0];
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OptSimplexBoundVariable[] simplexVariables = this.GetVariables(variables);
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double initialStep = this.GetAutomaticInitialStep(simplexVariables);
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int maxFunc = this._MaxFunEvaluations;
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return this.GetMinimum(function, simplexVariables, initialStep, this._Tolerance, ref maxFunc);
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}
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public double[] ComputeMin(OptMultivariateFunction function, OptBoundVariable[] variables, float initialStep)
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{
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if (variables == null) return new double[0];
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if (variables.Length == 0) return new double[0];
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OptSimplexBoundVariable[] simplexVariables = this.GetVariables(variables);
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int maxFunc = this._MaxFunEvaluations;
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return this.GetMinimum(function, simplexVariables, initialStep, this._Tolerance, ref maxFunc);
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}
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#endregion
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#endregion
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#region Private Methods
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private double[] GetMinimum(OptMultivariateFunction function, OptSimplexVariable[] variables, double initialStep, double ftol, ref int nMax)
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{
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if (this._AmoebaDirver == null) this._AmoebaDirver = new DownhillDirver();
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double[] minimum = this._AmoebaDirver.ComputeMin(function, variables, initialStep, ftol, ref nMax);
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this.FunEvaluations = nMax;
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return minimum;
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}
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private double[] GetMinimum(OptMultivariateFunction function, OptSimplexBoundVariable[] variables, double initialStep, double tolerance, ref int MAXFUN)
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{
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if (this._CobylaDriver == null) this._CobylaDriver = new CobylaDriver();
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double[] minimum = this._CobylaDriver.ComputeMin(function, variables, initialStep, tolerance, ref MAXFUN);
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this.FunEvaluations = MAXFUN;
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return minimum;
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}
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private OptSimplexVariable[] GetVariables(double[] variablesArray)
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{
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OptSimplexVariable[] vars = new OptSimplexVariable[variablesArray.Length];
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for (int i = 0; i < variablesArray.Length; i++)
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{
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vars[i] = new OptSimplexVariable(variablesArray[i]);
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}
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return vars;
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}
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private OptSimplexVariable[] GetVariables(OptVariable[] variablesArray)
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{
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OptSimplexVariable[] vars = new OptSimplexVariable[variablesArray.Length];
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for (int i = 0; i < variablesArray.Length; i++)
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{
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OptVariable var = variablesArray[i];
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vars[i] = new OptSimplexVariable(var.Name, var.InitialGuess, var.Fixed);
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}
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return vars;
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}
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private OptSimplexBoundVariable[] GetVariables(OptBoundVariable[] variablesArray)
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{
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OptSimplexBoundVariable[] vars = new OptSimplexBoundVariable[variablesArray.Length];
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for (int i = 0; i < variablesArray.Length; i++)
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{
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OptBoundVariable var = variablesArray[i];
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vars[i] = new OptSimplexBoundVariable(var.Name, var.InitialGuess, var.Fixed, var.LowerBound, var.UpperBound);
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}
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return vars;
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}
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private double GetAutomaticInitialStep(OptSimplexBoundVariable[] variables)
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{
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int numFreeVariables = this.GetNumFreeVariable(variables);
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if (numFreeVariables == 0) return 1;
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double step = 0;
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double sum = 0;
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foreach (OptSimplexBoundVariable var in variables)
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{
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if (var.Fixed == false)
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{
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sum += Math.Abs(var.InitialGuess / var.ScaleFactor);
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}
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}
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if (sum != 0)
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{
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step = sum / (2.0 * numFreeVariables);
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}
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else
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{
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step = 1;
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}
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return step;
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}
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private double GetAutomaticInitialStep(OptSimplexVariable[] variables)
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{
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int numFreeVariables = this.GetNumFreeVariable(variables);
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if (numFreeVariables == 0) return 1;
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double step = 0;
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double sum = 0;
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foreach (OptSimplexVariable var in variables)
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{
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if (var.Fixed == false)
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{
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sum += Math.Abs(var.InitialGuess / var.ScaleFactor);
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}
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}
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if (sum != 0)
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{
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step = sum / (2.0 * numFreeVariables);
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}
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else
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{
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step = 1;
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}
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return step;
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}
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private int GetNumFreeVariable(OptSimplexBoundVariable[] variables)
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{
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int numFreeVariables = 0;
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foreach (OptSimplexBoundVariable var in variables)
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{
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if (var.Fixed == false) numFreeVariables++;
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}
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return numFreeVariables;
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}
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private int GetNumFreeVariable(OptSimplexVariable[] variables)
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{
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int numFreeVariables = 0;
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foreach (OptSimplexVariable var in variables)
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{
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if (var.Fixed == false) numFreeVariables++;
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}
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return numFreeVariables;
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}
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#endregion
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}
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}
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