SimpsonDoubleExponentialRuleQuadratureIntegrator.java
/*
* Copyright (C) 2023 Alberto Irurueta Carro (alberto@irurueta.com)
*
* Licensed under the Apache License, Version 2.0 (the "License");
* you may not use this file except in compliance with the License.
* You may obtain a copy of the License at
*
* http://www.apache.org/licenses/LICENSE-2.0
*
* Unless required by applicable law or agreed to in writing, software
* distributed under the License is distributed on an "AS IS" BASIS,
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
* See the License for the specific language governing permissions and
* limitations under the License.
*/
package com.irurueta.numerical.integration;
import com.irurueta.numerical.SingleDimensionFunctionEvaluatorListener;
/**
* Computes function integration by using Simpson's method and double exponential quadrature.
* Double exponential quadrature allows improper integrands containing singularities to be
* integrated.
*
* @see DoubleExponentialRuleQuadrature
*/
public class SimpsonDoubleExponentialRuleQuadratureIntegrator
extends SimpsonIntegrator<DoubleExponentialRuleQuadrature> {
/**
* Constructor.
*
* @param a Lower limit of integration.
* @param b Upper limit of integration.
* @param hmax Maximum step size. This quadrature transforms the range of integration to
* [-hmax, hmax].
* @param listener listener to evaluate a single dimension function at required points.
* @param eps required accuracy.
*/
public SimpsonDoubleExponentialRuleQuadratureIntegrator(
final double a, final double b, final double hmax, final SingleDimensionFunctionEvaluatorListener listener,
final double eps) {
super(new DoubleExponentialRuleQuadrature(listener, a, b, hmax), eps);
}
/**
* Constructor.
*
* @param a Lower limit of integration.
* @param b Upper limit of integration.
* @param listener listener to evaluate a single dimension function at required points.
* @param eps required accuracy.
*/
public SimpsonDoubleExponentialRuleQuadratureIntegrator(
final double a, final double b, final SingleDimensionFunctionEvaluatorListener listener, final double eps) {
super(new DoubleExponentialRuleQuadrature(listener, a, b), eps);
}
/**
* Constructor with default accuracy.
*
* @param a Lower limit of integration.
* @param b Upper limit of integration.
* @param hmax Maximum step size. This quadrature transforms the range of integration to
* [-hmax, hmax].
* @param listener listener to evaluate a single dimension function at required points.
*/
public SimpsonDoubleExponentialRuleQuadratureIntegrator(
final double a, final double b, final double hmax,
final SingleDimensionFunctionEvaluatorListener listener) {
this(a, b, hmax, listener, EPS);
}
/**
* Constructor with default accuracy and default maximum step size.
*
* @param a Lower limit of integration.
* @param b Upper limit of integration.
* @param listener listener to evaluate a single dimension function at required points.
*/
public SimpsonDoubleExponentialRuleQuadratureIntegrator(
final double a, final double b, final SingleDimensionFunctionEvaluatorListener listener) {
this(a, b, listener, EPS);
}
/**
* Constructor.
*
* @param a Lower limit of integration.
* @param b Upper limit of integration.
* @param hmax Maximum step size. This quadrature transforms the range of integration to
* [-hmax, hmax].
* @param listener listener to evaluate a single dimension function at required points for
* double exponential quadrature to take into account any non-mild
* singularities.
* @param eps required accuracy.
*/
public SimpsonDoubleExponentialRuleQuadratureIntegrator(
final double a, final double b, final double hmax,
final DoubleExponentialSingleDimensionFunctionEvaluatorListener listener, final double eps) {
super(new DoubleExponentialRuleQuadrature(listener, a, b, hmax), eps);
}
/**
* Constructor with default maximum step size.
*
* @param a Lower limit of integration.
* @param b Upper limit of integration.
* @param listener listener to evaluate a single dimension function at required points for
* double exponential quadrature to take into account any non-mild
* singularities.
* @param eps required accuracy.
*/
public SimpsonDoubleExponentialRuleQuadratureIntegrator(
final double a, final double b, final DoubleExponentialSingleDimensionFunctionEvaluatorListener listener,
final double eps) {
super(new DoubleExponentialRuleQuadrature(listener, a, b), eps);
}
/**
* Constructor with default accuracy.
*
* @param a Lower limit of integration.
* @param b Upper limit of integration.
* @param hmax Maximum step size. This quadrature transforms the range of integration to
* [-hmax, hmax].
* @param listener listener to evaluate a single dimension function at required points for
* double exponential quadrature to take into account any non-mild
* singularities.
*/
public SimpsonDoubleExponentialRuleQuadratureIntegrator(
final double a, final double b, final double hmax,
final DoubleExponentialSingleDimensionFunctionEvaluatorListener listener) {
this(a, b, hmax, listener, EPS);
}
/**
* Constructor with default accuracy and default maximum step size.
*
* @param a Lower limit of integration.
* @param b Upper limit of integration.
* @param listener listener to evaluate a single dimension function at required points for
* double exponential quadrature to take into account any non-mild
* singularities.
*/
public SimpsonDoubleExponentialRuleQuadratureIntegrator(
final double a, final double b, final DoubleExponentialSingleDimensionFunctionEvaluatorListener listener) {
this(a, b, listener, EPS);
}
/**
* Gets type of quadrature.
*
* @return type of quadrature.
*/
@Override
public QuadratureType getQuadratureType() {
return QuadratureType.DOUBLE_EXPONENTIAL_RULE;
}
}