29 using TMath::PoissonI;
60 this->push_back(mean);
61 this->push_back(sigma);
62 this->push_back(signal);
63 this->push_back(background);
78 inline result_type
g1(
const JGauss&
gauss,
const JElement_t& point)
82 const double u = (point.getX() - gauss[0]) / gauss[1];
83 const double fs = gauss[2] *
exp(-0.5*u*u) / (sqrt(2.0*
PI) * gauss[1]);
84 const double fb = gauss[3];
85 const double f1 = fs + fb;
87 const double p = PoissonI(point.getY(),
f1);
89 result.chi2 = -
log(p);
91 result.gradient[0] = fs * u / gauss[1];
92 result.gradient[1] = fs * u*u / gauss[1] - fs / gauss[1];
93 result.gradient[2] = fs / gauss[2];
94 result.gradient[3] = 1.0;
96 result.gradient *= 1.0 - point.getY()/
f1;
109 int main(
int argc,
char **argv)
122 JParser<> zap(
"Program to test JGandalf algorithm.");
132 catch(
const exception& error) {
133 FATAL(error.what() << endl);
136 using namespace JFIT;
138 ASSERT(numberOfEvents > 0);
142 TF1 fs(
"fs",
"exp(-0.5 * (x-[0])*(x-[0]) / ([1]*[1]))");
145 fs.FixParameter(0, gauss[0]);
146 fs.FixParameter(1, gauss[1]);
149 const Double_t
xmin = -5.0;
150 const Double_t
xmax = +5.0;
157 TH1D
H[] = { TH1D(
"ha",
"", 101, -0.1, +0.1),
158 TH1D(
"hb",
"", 101, -0.1, +0.1),
159 TH1D(
"hc",
"", 101, -100.0, +100.0),
160 TH1D(
"hd",
"", 101, -100.0, +100.0) };
164 for (
int i = 0; i != numberOfEvents; ++i) {
166 STATUS(
"event: " << setw(10) << i <<
'\r');
DEBUG(endl);
168 TH1D h0(
"h0", NULL, nx,
xmin,
xmax);
172 h0.FillRandom(
"fs", (Int_t) gauss[2]);
173 h0.FillRandom(
"fb", (Int_t) gauss[3]);
177 for (Int_t i = 1; i <= h0.GetNbinsX(); ++i) {
178 data.push_back(JElement_t(h0.GetBinCenter (i),
179 h0.GetBinContent(i)));
184 fit.parameters.resize(4);
186 for (
size_t i = 0; i != 4; ++i) {
187 fit.parameters[i] = i;
190 fit.value =
JGauss(h0.GetMean(),
192 h0.GetEntries() * (
xmax -
xmin) / nx - h0.GetMinimum(),
195 DEBUG(
"Start value " << fit.value << endl);
199 const double chi2 = fit(
g1, data.begin(), data.end());
203 DEBUG(
"Final value " << fit.value << endl);
204 DEBUG(
"Chi2 " << chi2 << endl);
206 const double Y[] = { fit.value[0] - gauss[0],
207 fit.value[1] - gauss[1],
208 fit.value[2] * nx / (
xmax -
xmin) - gauss[2],
209 fit.value[3] * nx - gauss[3] };
211 for (
int i = 0; i !=
sizeof(
Q)/
sizeof(
Q[0]); ++i) {
217 for (
int i = 0; i !=
sizeof(
Q)/
sizeof(
Q[0]); ++i) {
222 timer.print(cout,
true,
micro_t);
229 for (
int i = 0; i !=
sizeof(
H)/
sizeof(
H[0]); ++i) {
237 for (
int i = 0; i !=
sizeof(
Q)/
sizeof(
Q[0]); ++i) {
241 ASSERT(
Q[0].getSTDev() < precision[0]);
242 ASSERT(
Q[1].getSTDev() < precision[1]);
243 ASSERT(
Q[2].getSTDev() < precision[2]);
244 ASSERT(
Q[3].getSTDev() < precision[3]);
then cat $TRIPOD_INITIAL<< EOF1 256877.5 4743716.7-2438.42 256815.5 4743395.0-2435.53 257096.2 4743636.0-2439.5EOFfiJEditDetector-a $DETECTOR_INITIAL-s"-1 addz -6.9"-o $DETECTOReval`JPrintDetector-a $DETECTOR-O SUMMARY`for STRING in ${STRINGS[*]};do set_variable MODULE`getModule-a $DETECTOR-L"$STRING 0"`JEditDetector-a $DETECTOR-M"$MODULE setz -2.9"-o $DETECTORdonecp-p $TRIPOD_INITIAL $TRIPODJAcoustics.sh $DETECTOR_IDcat > acoustics_trigger_parameters txt<< EOFQ=0.0;TMax_s=0.020;numberOfHits=90;EOFJAcousticsEventBuilder.sh $DETECTOR $RUNS[*]INPUT_FILES=(`ls KM3NeT_ ${(l:8::0::0:) DETECTOR_ID}_0 *${^RUNS}_event.root`) cd $WORKDIRif[!$HOMEDIR-ef $WORKDIR];then cp-p $HOMEDIR/$DETECTOR $WORKDIR cp-p $HOMEDIR/$TRIPOD $WORKDIR cp-p $HOMEDIR/${^INPUT_FILES}$WORKDIR cp-p $HOMEDIR/{acoustics_fit_parameters, acoustics_trigger_parameters, disable, hydrophone, mechanics, sound_velocity, tripod, waveform}.txt $WORKDIRfisource $JPP_DIR/examples/JAcoustics/acoustics-fit-toolkit.shtimer_startinitialise stage_1B > &stage log
Utility class to parse command line options.
Q(UTCMax_s-UTCMin_s)-livetime_s
int main(int argc, char *argv[])
The elements in a collection are sorted according to their abscissa values and a given distance opera...
static const double H
Planck constant [eV s].
then fatal Wrong number of arguments fi set_variable STRING $argv[1] set_variable DETECTORXY_TXT $WORKDIR $DETECTORXY_TXT tail read X Y CHI2 RMS printf optimum n $X $Y $CHI2 $RMS awk v Y
double getMean(vector< double > &v)
get mean of vector content
const JPolynome f1(1.0, 2.0, 3.0)
Function.
#define ASSERT(A,...)
Assert macro.
I/O formatting auxiliaries.
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
JGauss()
Default constructor.
Auxiliary class for CPU timing and usage.
static const double PI
Mathematical constants.
std::ostream & shortprint(std::ostream &out)
Set short printing.
General purpose messaging.
std::ostream & longprint(std::ostream &out)
Set long printing.
Utility class to parse command line options.
Data structure for return value of fit function.
double gauss(const double x, const double sigma)
Gauss function (normalised to 1 at x = 0).
then fatal Wrong number of arguments fi set_variable DETECTOR $argv[1] set_variable STRING $argv[2] set_array QUANTILES set_variable FORMULA *[0] exp(-0.5 *(x-[1])*(x-[1])/([2]*[2]))" set_variable MODULE `getModule -a $DETECTOR -L "$STRING 0"` source JAcousticsToolkit.sh typeset -A TRIPODS get_tripods $WORKDIR/tripod.txt TRIPODS XMEAN
#define DEBUG(A)
Message macros.
Double_t g1(const Double_t x)
Function.