/* Copyright 2009-2016 David Hadka * * This file is part of the MOEA Framework. * * The MOEA Framework is free software: you can redistribute it and/or modify * it under the terms of the GNU Lesser General Public License as published by * the Free Software Foundation, either version 3 of the License, or (at your * option) any later version. * * The MOEA Framework is distributed in the hope that it will be useful, but * WITHOUT ANY WARRANTY; without even the implied warranty of MERCHANTABILITY * or FITNESS FOR A PARTICULAR PURPOSE. See the GNU Lesser General Public * License for more details. * * You should have received a copy of the GNU Lesser General Public License * along with the MOEA Framework. If not, see <http://www.gnu.org/licenses/>. */ package org.moeaframework.problem.misc; import org.moeaframework.core.Solution; import org.moeaframework.core.variable.RealVariable; import org.moeaframework.problem.AbstractProblem; /** * The Viennet (3) problem. * <p> * Properties: * <ul> * <li>Disconnected and unsymmetric Pareto set * <li>Connected Pareto front * </ul> * <p> * References: * <ol> * <li>Viennet, R., et al (1996). "Multicriteria Optimization Using a * Genetic Algorithm for Determining a Pareto Set." International * Journal of Systems Science, 27(2):255-260. * <li>Van Veldhuizen, D. A (1999). "Multiobjective Evolutionary Algorithms: * Classifications, Analyses, and New Innovations." Air Force Institute * of Technology, Ph.D. Thesis, Appendix B. * </ol> */ public class Viennet3 extends AbstractProblem { /** * Constructs the Viennet (3) problem. */ public Viennet3() { super(2, 3); } @Override public void evaluate(Solution solution) { double x = ((RealVariable)solution.getVariable(0)).getValue(); double y = ((RealVariable)solution.getVariable(1)).getValue(); double A = Math.pow(x, 2.0) + Math.pow(y, 2.0); double f1 = 0.5 * A + Math.sin(A); double f2 = Math.pow(3.0*x - 2.0*y + 4.0, 2.0) / 8.0 + Math.pow(x - y + 1.0, 2.0) / 27.0 + 15.0; double f3 = 1.0 / (A + 1.0) - 1.1 * Math.exp(-A); solution.setObjective(0, f1); solution.setObjective(1, f2); solution.setObjective(2, f3); } @Override public Solution newSolution() { Solution solution = new Solution(2, 3); solution.setVariable(0, new RealVariable(-3.0, 3.0)); solution.setVariable(1, new RealVariable(-3.0, 3.0)); return solution; } }