1#ifndef __JFIT__JSHOWERBRIGHTPOINTREGRESSOR__ 
    2#define __JFIT__JSHOWERBRIGHTPOINTREGRESSOR__ 
   33namespace JPP { 
using namespace JFIT; }
 
   53    static const int    NUMBER_OF_PDFS = 2;
 
   79                      const double       epsilon        = 1.0e-10)
 
   84      const JPDF_t::JSupervisor supervisor(
new JPDF_t::JDefaultResult(
JMATH::zero));
 
   86      for (
int i = 0; i != NUMBER_OF_PDFS; ++i) {
 
   88        const string file_name = getFilename(fileDescriptor, pdf_t[i]);
 
   90        _pdf[i].load(file_name.c_str());
 
   92        _pdf[i].setExceptionHandler(supervisor);
 
   96      for (
int i = 1; i < NUMBER_OF_PDFS; i += 2) {
 
   98        _pdf[ i ].add(_pdf[i-1]); 
 
  102        _pdf[i-1].swap(buffer);
 
 
 
  134    DIRECT_LIGHT_FROM_BRIGHT_POINT,
 
  135    SCATTERED_LIGHT_FROM_BRIGHT_POINT
 
  175               const double       epsilon        = 1.0e-10) :
 
  186      pdf(storage.getPDF())
 
  206    template<
class JHit_t>
 
  207    result_type operator()(
const JPoint4E& vx, 
const JHit_t& hit)
 const 
  215      double length = D.getLength();
 
  216      double ct = U.getDot(D) / length;
 
  218      if (ct > +1.0) { ct = +1.0; }
 
  219      if (ct < -1.0) { ct = -1.0; }
 
  221      const double t  = vx.
getT() + (length * getIndexOfRefraction() * getInverseSpeedOfLight());
 
  223      const double dt = T_ns.constrain(hit.getT() - t);
 
  225      JPDF_t::result_type H0 = getH0(hit.getR(), dt);                    
 
  226      JPDF_t::result_type H1 = getH1(length, ct, dt);  
 
  228      if (get_value(H1) >= Vmax_npe) {
 
  229        H1 *= Vmax_npe / get_value(H1);
 
  232      double H1_value = get_value(H1);
 
  237      JPDF_t::result_type HT = H1+H0; 
 
  238      double HT_value = get_value(HT);
 
  240      result.chi2 = HT.getChi2() - H0.getChi2();  
 
  242      double exp_V_HT = exp(-HT.V); 
 
  244      double energy_gradient = -1 / HT_value; 
 
  245      energy_gradient *= (H1_value -  HT_value * v_H1) * (1-exp_V_HT)  -  HT_value * exp_V_HT * V_H1; 
 
  246      energy_gradient /= (1-exp_V_HT); 
 
  252                                                    -getIndexOfRefraction() * D.getY() / length,    
 
  253                                                    -getIndexOfRefraction() * D.getZ() / length),   
 
  257      static_cast<JPoint4D&
>(
result.gradient).mul(getInverseSpeedOfLight() * (HT.getDerivativeOfChi2() -
 
  258                                                                              H0.getDerivativeOfChi2()));  
 
  271    JPDF_t::result_type getH0(
const double R_Hz,
 
  272                              const double t1)
 const 
  276      return JPDF_t::result_type(R_Hz * 1e-9, t1, T_ns);
 
  287    JPDF_t::result_type getH1(
const double D,
 
  289                              const double t)
 const 
  295      for (
int i = 0; i != NUMBER_OF_PDFS; ++i) {
 
  297        if (!pdf[i].empty() && D <= pdf[i].getXmax()) {
 
  301            JPDF_t::result_type y1 = pdf[i](std::max(D, pdf[i].getXmin()), ct, t);
 
  317            ERROR(error << std::endl);
 
  330    inline double getRmax()
 const 
  336      for (
int i = 0; i != NUMBER_OF_PDFS; ++i) {
 
  338        if (!pdf[i].empty() && pdf[i].getXmax() > xmax) {
 
  339          xmax = pdf[i].getXmax();
 
  348    static double       Vmax_npe;                  
 
Maximum likelihood estimator (M-estimators).
 
General purpose messaging.
 
Numbering scheme for PDF types.
 
General purpose data regression method.
 
This include file containes various data structures that can be used as specific return types for the...
 
Definition of zero value for any class.
 
Fit method based on the Levenberg-Marquardt method.
 
Data structure for vertex fit.
 
Data structure for vertex fit.
 
double getE() const
Get energy.
 
Data structure for direction in three dimensions.
 
Data structure for position in three dimensions.
 
const JPosition3D & getPosition() const
Get position.
 
Data structure for vector in three dimensions.
 
double getT(const JVector3D &pos) const
Get arrival time of Cherenkov light at given position.
 
Multi-dimensional PDF table for arrival time of Cherenkov light.
 
Auxiliary classes and methods for linear and iterative data regression.
 
static const JZero zero
Function object to assign zero value.
 
@ SCATTERED_LIGHT_FROM_BRIGHT_POINT
scattered light from bright point
 
@ DIRECT_LIGHT_FROM_BRIGHT_POINT
direct light from bright point
 
This name space includes all other name spaces (except KM3NETDAQ, KM3NET and ANTARES).
 
Abstract class for global fit method.
 
const JPDFs_t & getPDF() const
Get PDFs.
 
JPHYSICS::JPDFTable< JFunction1D_t, JPDFMapList_t > JPDF_t
 
std::array< JPDF_t, NUMBER_OF_PDFS > JPDFs_t
PDFs.
 
JTOOLS::JMAPLIST< JTOOLS::JPolint2FunctionalMap, JTOOLS::JPolint1FunctionalGridMap >::maplist JPDFMapList_t
 
JRegressorStorage()
Default constructor.
 
JTOOLS::JSplineFunction1S_t JFunction1D_t
 
JRegressorStorage(const std::string &fileDescriptor, const double TTS, const int numberOfPoints=25, const double epsilon=1.0e-10)
Parameterized constructor.
 
Template data structure for storage of internal data.
 
Template definition of a data regressor of given model.
 
Auxiliary class to set-up Hit.