src/main/cpp/numerics4cpp/integration/simpsons.h

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00001 /*
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00012  * Redistributions in binary form must reproduce the above copyright
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00035 
00036 #ifndef _NUMERICS4CPP_INTEGRATION_SIMPSONS_H_
00037 #define _NUMERICS4CPP_INTEGRATION_SIMPSONS_H_
00038 
00039 #include "trapezoid.h"
00040 
00041 NUM_NAMESPACE_BEGIN
00042 
00088 template<class Function>
00089 class simpsons_integrator : public iterative_method {
00090 
00091 public:
00098     simpsons_integrator(Function& f, unsigned int iterations = 100,
00099         double relative_error = 1.0e-13)
00100         : iterative_method(iterations, relative_error), _function(f)
00101     {
00102     }
00103     
00107     ~simpsons_integrator() {
00108     }
00109 
00116     double integrate(double a, double b) {
00117         trapezoidal_integrator_state<Function> state(_function, a, b);
00118 
00119         double sumTrapezoidal = state.result();
00120         double sumTrapezoidalNext = sumTrapezoidal;
00121         double error = std::numeric_limits<double>::max();
00122         double sumSimpons = sumTrapezoidal;
00123         do {
00124             state.iterate();
00125             sumTrapezoidalNext = state.result();
00126             double sumSimponsNext = (4.0 * sumTrapezoidalNext / 3.0) -
00127                 (sumTrapezoidal / 3.0);
00128             error = std::fabs(sumSimponsNext / sumSimpons - 1.0);
00129             sumTrapezoidal = sumTrapezoidalNext;
00130             sumSimpons = sumSimponsNext;
00131         } while (state.iterations() < maximum_iterations() &&
00132             error > maximum_relative_error());
00133         
00134         if (state.iterations() >= maximum_iterations()) {
00135             throw convergence_exception(
00136                 "Simpson's integration failed to converge.");
00137         }
00138         
00139         return sumSimpons;
00140     }
00141     
00142 private:
00144     Function& _function;
00145 };
00146 
00147 NUM_NAMESPACE_END
00148 
00149 #endif

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