29 using TMath::PoissonI;
46 const double fs =
gauss.signal *
exp(-0.5*
u*
u) / (sqrt(2.0*PI) *
gauss.sigma);
47 const double fb =
gauss.background;
48 const double f1 = fs + fb;
50 const double p = PoissonI(
point.getY(), f1);
57 result.gradient.background = 1.0;
95 catch(
const exception& error) {
101 ASSERT(numberOfEvents > 0);
105 TF1 fs(
"fs",
"exp(-0.5 * (x-[0])*(x-[0]) / ([1]*[1]))");
108 fs.FixParameter(0,
gauss.mean);
109 fs.FixParameter(1,
gauss.sigma);
123 TH1D(
"ha",
"", 101, -0.1, +0.1),
124 TH1D(
"hb",
"", 101, -0.1, +0.1),
125 TH1D(
"hc",
"", 101, -100.0, +100.0),
126 TH1D(
"hd",
"", 101, -100.0, +100.0)
131 for (
int i = 0; i != numberOfEvents; ++i) {
140 h0.FillRandom(
"fb", (
Int_t)
gauss.background);
144 for (
Int_t i = 1; i <= h0.GetNbinsX(); ++i) {
145 data.push_back(JElement_t(h0.GetBinCenter (i),
146 h0.GetBinContent(i)));
153 fit.parameters.resize(4);
155 fit.parameters[0] = &JGauss::mean;
156 fit.parameters[1] = &JGauss::sigma;
157 fit.parameters[2] = &JGauss::signal;
158 fit.parameters[3] = &JGauss::background;
160 fit.value =
JGauss(h0.GetMean(),
162 h0.GetEntries() * (xmax - xmin) /
nx - h0.GetMinimum(),
165 DEBUG(
"Start value " << fit.value <<
endl);
169 const double chi2 = fit(
g1, data.begin(), data.end());
173 DEBUG(
"Final value " << fit.value <<
endl);
176 const double Y[] = { fit.value.mean -
gauss.mean,
177 fit.value.sigma -
gauss.sigma,
178 fit.value.signal *
nx / (xmax - xmin) -
gauss.signal,
179 fit.value.background *
nx -
gauss.background };
181 for (
int i = 0; i !=
sizeof(Q)/
sizeof(Q[0]); ++i) {
187 for (
int i = 0; i !=
sizeof(Q)/
sizeof(Q[0]); ++i) {
199 for (
int i = 0; i !=
sizeof(
H)/
sizeof(
H[0]); ++i) {
207 for (
int i = 0; i !=
sizeof(Q)/
sizeof(Q[0]); ++i) {
double getMean(vector< double > &v)
get mean of vector content
The elements in a collection are sorted according to their abscissa values and a given distance opera...
int main(int argc, char **argv)
std::ostream & longprint(std::ostream &out)
Set long printing.
std::ostream & shortprint(std::ostream &out)
Set short printing.
General purpose messaging.
#define DEBUG(A)
Message macros.
#define ASSERT(A,...)
Assert macro.
Utility class to parse command line options.
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
I/O formatting auxiliaries.
Double_t g1(const Double_t x)
Function.
Place holder for custom implementation.
Auxiliary class for CPU timing and usage.
void print(std::ostream &out, const JScale_t scale=milli_t) const
Print timer data.
Template definition of a multi-dimensional oscillation probability interpolation table.
Auxiliary classes and methods for linear and iterative data regression.
double gauss(const double x, const double sigma)
Gauss function (normalised to 1 at x = 0).
static const double H
Planck constant [eV s].
This name space includes all other name spaces (except KM3NETDAQ, KM3NET and ANTARES).