ode_taylor_expansion.cpp
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00001 /*
00002  *    This file is part of ACADO Toolkit.
00003  *
00004  *    ACADO Toolkit -- A Toolkit for Automatic Control and Dynamic Optimization.
00005  *    Copyright (C) 2008-2014 by Boris Houska, Hans Joachim Ferreau,
00006  *    Milan Vukov, Rien Quirynen, KU Leuven.
00007  *    Developed within the Optimization in Engineering Center (OPTEC)
00008  *    under supervision of Moritz Diehl. All rights reserved.
00009  *
00010  *    ACADO Toolkit is free software; you can redistribute it and/or
00011  *    modify it under the terms of the GNU Lesser General Public
00012  *    License as published by the Free Software Foundation; either
00013  *    version 3 of the License, or (at your option) any later version.
00014  *
00015  *    ACADO Toolkit is distributed in the hope that it will be useful,
00016  *    but WITHOUT ANY WARRANTY; without even the implied warranty of
00017  *    MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
00018  *    Lesser General Public License for more details.
00019  *
00020  *    You should have received a copy of the GNU Lesser General Public
00021  *    License along with ACADO Toolkit; if not, write to the Free Software
00022  *    Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA  02110-1301  USA
00023  *
00024  */
00025 
00026 
00027 
00034 #include <acado/utils/acado_utils.hpp>
00035 #include <acado/symbolic_expression/symbolic_expression.hpp>
00036 #include <acado/function/function.hpp>
00037 #include <acado/set_arithmetics/set_arithmetics.hpp>
00038 
00039 using namespace std;
00040 
00041 USING_NAMESPACE_ACADO
00042 
00043 typedef TaylorVariable<Interval> T;
00044 
00045 /* >>> start tutorial code >>> */
00046 int main() {
00047 
00048         // DEFINE VARIABLES:
00049         // ----------------------
00050         DifferentialState x, y;
00051         DifferentialEquation f;
00052 
00053         IntermediateState test;
00054 
00055         test = sin(x);
00056 
00057         f << dot(x) == sin(x);
00058 //      f << dot(y) == y*y;
00059 
00060         double time = acadoGetTime();
00061 
00062         Function g;
00063         g << f.getODEexpansion(6);
00064 
00065         time -= acadoGetTime();
00066         cout << "Time = " << scientific << time << endl;
00067 
00068         time = acadoGetTime();
00069 
00070         ofstream stream( "my_function.c" );
00071         stream << g;
00072         stream.close();
00073 
00074         time -= acadoGetTime();
00075         cout << "Time = " << scientific << time << endl;
00076 
00077         return 0;
00078 }
00079 /* <<< end tutorial code <<< */
00080 
00081 


acado
Author(s): Milan Vukov, Rien Quirynen
autogenerated on Thu Aug 27 2015 11:59:22