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JAcousticsEventBuilder.cc File Reference

Main program to trigger events in acoustic data. More...

#include <iostream>
#include <iomanip>
#include <vector>
#include <map>
#include <algorithm>
#include "TROOT.h"
#include "TFile.h"
#include "km3net-dataformat/definitions/module_status.hh"
#include "JLang/JComparator.hh"
#include "JDB/JToAshort.hh"
#include "JDB/JSupport.hh"
#include "JDetector/JDetector.hh"
#include "JDetector/JDetectorToolkit.hh"
#include "JDetector/JDetectorSupportkit.hh"
#include "JDetector/JTripod.hh"
#include "JDetector/JTransmitter.hh"
#include "JDetector/JHydrophone.hh"
#include "JLang/JPredicate.hh"
#include "JTools/JRange.hh"
#include "JTools/JQuantile.hh"
#include "JTools/JHashMap.hh"
#include "JSupport/JMultipleFileScanner.hh"
#include "JSupport/JFileRecorder.hh"
#include "JSupport/JMeta.hh"
#include "JAcoustics/JEmitterID.hh"
#include "JAcoustics/JTransceiver.hh"
#include "JAcoustics/JTransmission.hh"
#include "JAcoustics/JAcousticsToolkit.hh"
#include "JAcoustics/JAcousticsSupportkit.hh"
#include "JAcoustics/JTriggerParameters.hh"
#include "JAcoustics/JEvent.hh"
#include "JAcoustics/JEventOverlap.hh"
#include "JAcoustics/JTriggerOutput.hh"
#include "JAcoustics/JSupport.hh"
#include "Jeep/JContainer.hh"
#include "Jeep/JPrint.hh"
#include "Jeep/JParser.hh"
#include "Jeep/JMessage.hh"

Go to the source code of this file.

Functions

int main (int argc, char **argv)
 

Detailed Description

Main program to trigger events in acoustic data.

An acoustic event is based on a coincidence of estimated times of emission from the same emitter.
If the number of coincident times of emission exceeds a preset minimum, the event is triggered and subsequently stored in the output file.
Note that an event counter is added which can be used to disambiguate the different cycles from the same emitter within one so-called "super" event that is used for the global fit.
In this, a super event refers to the coincidence of events from a variety of emitters.

Author
mdejong

Definition in file JAcousticsEventBuilder.cc.

Function Documentation

int main ( int  argc,
char **  argv 
)

Definition at line 63 of file JAcousticsEventBuilder.cc.

64 {
65  using namespace std;
66  using namespace JPP;
67 
69 
70  typedef JContainer< vector<JTripod> > tripods_container;
71  typedef JContainer< vector<JTransmitter> > transmitters_container;
72  typedef JContainer< vector<JHydrophone> > hydrophones_container;
73 
75  JLimit_t& numberOfEvents = inputFile.getLimit();
78  JSoundVelocity V = getSoundVelocity; // default sound velocity
79  string detectorFile;
80  tripods_container tripods; // tripods
81  transmitters_container transmitters; // transmitters
82  hydrophones_container hydrophones; // hydrophones
83  double precision;
84  int debug;
85 
86  try {
87 
88  JParser<> zap("Main program to trigger events in acoustic data.");
89 
90  zap['f'] = make_field(inputFile, "output of JConvertDB -q toashort");
91  zap['n'] = make_field(numberOfEvents) = JLimit::max();
92  zap['@'] = make_field(parameters, "trigger parameters");
93  zap['o'] = make_field(outputFile, "output file") = "event.root";
94  zap['V'] = make_field(V, "sound velocity") = JPARSER::initialised();
95  zap['a'] = make_field(detectorFile, "detector file");
96  zap['T'] = make_field(tripods, "tripod data");
97  zap['Y'] = make_field(transmitters, "transmitter data") = JPARSER::initialised();
98  zap['H'] = make_field(hydrophones, "hydrophone data") = JPARSER::initialised();
99  zap['W'] = make_field(getEmitterID, "waveform identification data") = JPARSER::initialised();
100  zap['p'] = make_field(precision, "precision time-of-arrival") = 1.0e-6;
101  zap['d'] = make_field(debug) = 1;
102 
103  zap(argc, argv);
104  }
105  catch(const exception &error) {
106  FATAL(error.what() << endl);
107  }
108 
109 
111 
112  try {
113  load(detectorFile, detector);
114  }
115  catch(const JException& error) {
116  FATAL(error);
117  }
118 
119  V.set(detector.getUTMZ());
120 
121  JHashMap<int, JReceiver> receivers;
122  JHashMap<int, JEmitter> emitters;
123 
124  for (JDetector::const_iterator i = detector.begin(); i != detector.end(); ++i) {
125 
126  if ((i->getFloor() == 0 && !i->has(HYDROPHONE_DISABLE)) ||
127  (i->getFloor() != 0 && !i->has(PIEZO_DISABLE))) {
128 
129  JPosition3D pos(0.0, 0.0, 0.0);
130 
131  if (i->getFloor() == 0) { // get relative position of hydrophone
132 
133  try {
134  pos = getPosition(hydrophones.begin(),
135  hydrophones.end(),
136  make_predicate(&JHydrophone::getString, i->getString()));
137  }
138  catch(const exception&) {
139  continue; // if no position available, discard hydrophone
140  }
141  }
142 
143  receivers[i->getID()] = JReceiver(i->getID(),
144  i->getPosition() + pos,
145  i->getT0() * 1.0e-9);
146  }
147  }
148 
149  for (tripods_container::const_iterator i = tripods.begin(); i != tripods.end(); ++i) {
150  emitters[i->getID()] = JEmitter(i->getID(),
151  i->getUTMPosition() - detector.getUTMPosition());
152  }
153 
154  for (transmitters_container::const_iterator i = transmitters.begin(); i != transmitters.end(); ++i) {
155  try {
156  emitters[i->getID()] = JEmitter(i->getID(),
157  i->getPosition() + detector.getModule(i->getLocation()).getPosition());
158  }
159  catch(const exception&) {
160  continue; // if no string available, discard transmitter
161  }
162  }
163 
164 
165  outputFile.open();
166 
167  if (!outputFile.is_open()) {
168  FATAL("Error opening file " << outputFile << endl);
169  }
170 
171  outputFile.put(JMeta(argc, argv));
172  outputFile.put(parameters);
173 
174  // statistics
175 
176  struct map_type :
177  public map<int, JQuantile>
178  {
179  long long int sum() const
180  {
181  long long int count = 0;
182 
183  for (const_iterator i = this->begin(); i != this->end(); ++i) {
184  count += i->second.getCount();
185  }
186 
187  return count;
188  }
189  };
190 
191  map_type number_of_entries;
192  map_type number_of_aliens;
193  map_type number_of_triggers;
194  map_type number_of_events;
195  map_type number_of_outliers;
196 
197  // input data
198 
199  string oid; // detector identifier
200 
201  typedef vector<JTransmission> buffer_type; // data type
202 
203  map<int, map< int, buffer_type > > f1; // emitter -> receiver -> data
204 
205  while (inputFile.hasNext()) {
206 
207  if (inputFile.getCounter()%1000 == 0) {
208  STATUS("counter: " << setw(8) << inputFile.getCounter() << '\r' << flush); DEBUG(endl);
209  }
210 
211  JToAshort* parameters = inputFile.next();
212 
213  if (oid == "") {
214  oid = parameters->DETID;
215  }
216 
217  if (oid != parameters->DETID) { // consistency check
218  FATAL("Invalid detector identifier " << parameters->DETID << " != " << oid << endl);
219  }
220 
221  try {
222 
223  const int id = getEmitterID(parameters->EMITTERID);
224 
225  number_of_entries[parameters->EMITTERID].put(1);
226 
227  if (emitters.has(id) && receivers.has(parameters->DOMID)) {
228 
229  const JTransceiver transceiver(emitters[id], receivers[parameters->DOMID]);
230 
231  f1[transceiver.emitter.getID()][transceiver.receiver.getID()].push_back(transceiver.getTransmission(*parameters, V));
232  }
233  }
234  catch(const exception&) {
235  number_of_aliens[parameters->EMITTERID].put(1);
236  }
237  }
238  STATUS(endl);
239 
240  for (map_type::const_iterator i = number_of_entries.begin(); i != number_of_entries.end(); ++i) {
241  STATUS("number of entries: " << setw(3) << i->first << ' ' << setw(8) << i->second.getCount() << endl);
242  }
243 
244  for (map_type::const_iterator i = number_of_aliens.begin(); i != number_of_aliens.end(); ++i) {
245  STATUS("number of aliens: " << setw(3) << i->first << ' ' << setw(8) << i->second.getCount() << endl);
246  }
247 
248 
249  // filter similar hits
250 
251  for (map<int, map< int, buffer_type> >::iterator i = f1.begin(); i != f1.end(); ++i) {
252 
253  for (map< int, buffer_type>::iterator receiver = i->second.begin(); receiver != i->second.end(); ++receiver) {
254 
255  buffer_type& buffer = receiver->second;
256 
257  sort(buffer.begin(), buffer.end(), JTransmission::compare(precision));
258 
259  buffer.erase(unique(buffer.begin(), buffer.end(), JTransmission::equals(precision)), buffer.end());
260  }
261  }
262 
263 
264  // output events
265 
266  for (map<int, map< int, buffer_type> >::iterator i = f1.begin(); i != f1.end(); ++i) {
267 
268  buffer_type buffer;
269 
270  for (map< int, buffer_type>::iterator receiver = i->second.begin(); receiver != i->second.end(); ++receiver) {
271 
272  // selection based on quality
273 
274  buffer_type& f2 = receiver->second;
275  double Qmin = parameters.Q;
276 
277  if (parameters.Q > 0.0 && // use quantile to evaluate corresponding quality
278  parameters.Q < 1.0) { //
279 
280  const JQuantile Q1("quality", make_array(f2.begin(), f2.end(), &JTransmission::getQ), true);
281 
282  Qmin = Q1.getQuantile(parameters.Q);
283  }
284 
285  buffer_type::iterator __end = partition(f2.begin(), f2.end(), make_predicate(&JTransmission::getQ, Qmin, JComparison::gt()));
286 
287  copy(f2.begin(), __end, back_inserter(buffer));
288  }
289 
290 
291  sort(buffer.begin(), buffer.end()); // sort according time-of-emisson
292 
293  JQuantile Q;
294 
295  JTriggerOutput data;
296 
297  for (buffer_type::const_iterator p = buffer.begin(); p != buffer.end(); ++p) {
298 
299  buffer_type::const_iterator q = p;
300 
301  // basic correlator
302 
303  while (++q != buffer.end() && q->getToE() - p->getToE() <= parameters.TMax_s) {}
304 
305  Q.put(distance(p,q));
306 
307  if (distance(p,q) >= parameters.numberOfHits) {
308 
309  STATUS("trigger: " << setw(8) << number_of_triggers.sum() << '\r' << flush); DEBUG(endl);
310 
311  JEvent event(oid, number_of_triggers.sum(), i->first, p, q);
312 
313  number_of_triggers[i->first].put(event.size());
314 
315  DEBUG("trigger: " << endl << event);
316 
317  data.push_back(event);
318  }
319  }
320 
321  STATUS("number of toes: " << setw(3) << i->first << ' ' << setw(8) << buffer.size());
322  if (Q.getCount() > 0) {
323  STATUS(' ' << FIXED(6,1) << Q.getMean() <<
324  ' ' << FIXED(6,1) << Q.getXmin() <<
325  ' ' << FIXED(6,1) << Q.getXmax());
326  }
327  STATUS(endl);
328 
329  data.merge(JEventOverlap(parameters.TMax_s));
330 
331  for (JTriggerOutput::const_iterator event = data.begin(); event != data.end(); ++event) {
332 
333  number_of_events[event->getID()].put(event->size());
334 
335  if (parameters.quantile < 1.0) {
336 
337  const int M = (int) (event->size() * 0.5 * (1.0 - parameters.quantile));
338 
339  JEvent::const_iterator p = event-> begin(); advance(p, M);
340  JEvent::const_reverse_iterator q = event->rbegin(); advance(q, M);
341 
342  const double Tmin = p->getToE();
343  const double Tmax = q->getToE();
344 
345  const double W = (1.0 - parameters.quantile) / parameters.quantile;
346 
347  while (p != event-> begin() && (p - 1)->getToE() >= Tmin - 0.5 * (Tmax - Tmin) * W) { --p; }
348  while (q != event->rbegin() && (q - 1)->getToE() <= Tmax + 0.5 * (Tmax - Tmin) * W) { --q; }
349 
350  number_of_outliers[event->getID()].put(event->size() - distance(p, q.base()));
351 
352  outputFile.put(JEvent(event->getOID(),
353  event->getCounter(),
354  event->getID(),
355  p, q.base()));
356 
357  } else {
358 
359  number_of_outliers[event->getID()].put(0);
360 
361  outputFile.put(*event);
362  }
363  }
364  }
365  STATUS(endl);
366 
367  for (map_type::const_iterator i = number_of_triggers.begin(); i != number_of_triggers.end(); ++i) {
368  STATUS("number of triggers: " << setw(3) << i->first << ' ' << setw(8) << i->second.getCount() << endl);
369  }
370 
371  for (map_type::const_iterator i = number_of_events.begin(); i != number_of_events.end(); ++i) {
372  STATUS("number of events: " << setw(3) << i->first << ' ' << setw(8) << i->second.getCount() << ' ' << FIXED(7,3) << i->second.getMean() << ' ' << FIXED(7,3) << number_of_outliers[i->first].getMean() << endl);
373  }
374 
375  JMultipleFileScanner<JMeta> io(inputFile);
376 
377  io >> outputFile;
378 
379  outputFile.close();
380 }
Auxiliary class for ROOT I/O of application specific meta data.
Definition: JMeta.hh:70
Object writing to file.
Utility class to parse command line options.
Definition: JParser.hh:1517
General exception.
Definition: JException.hh:23
Acoustic receiver.
Definition: JReceiver.hh:27
Q(UTCMax_s-UTCMin_s)-livetime_s
JPredicate< JResult_t T::*, JComparison::eq > make_predicate(JResult_t T::*member, const JResult_t value)
Helper method to create predicate for data member.
Definition: JPredicate.hh:128
Greater than.
Definition: JComparison.hh:73
std::vector< T >::difference_type distance(typename std::vector< T >::const_iterator first, typename PhysicsEvent::const_iterator< T > second)
Specialisation of STL distance.
General purpose class for hash map of unique keys.
Definition: JHashMap.hh:72
Auxiliary data structure for running average, standard deviation and quantiles.
Definition: JQuantile.hh:43
#define STATUS(A)
Definition: JMessage.hh:63
Detector data structure.
Definition: JDetector.hh:89
std::string DETID
constraint
Definition: JToAshort.hh:22
*fatal Wrong number of arguments esac JCookie sh typeset Z DETECTOR typeset Z SOURCE_RUN typeset Z TARGET_RUN set_variable PARAMETERS_FILE $WORKDIR parameters
Definition: diff-Tuna.sh:38
then fatal Number of tripods
Definition: JFootprint.sh:45
Empty structure for specification of parser element that is initialised (i.e. does not require input)...
Definition: JParser.hh:83
Auxiliary data structure for floating point format specification.
Definition: JManip.hh:446
V(JDAQEvent-JTriggerReprocessor)*1.0/(JDAQEvent+1.0e-10)
string outputFile
then fatal Not enough arguments fi set_variable INDEX_STRING_START while[[${${argv[${START_INDEX_STRING}]}##*.}!="root"]]
Type list.
Definition: JTypeList.hh:22
JFIT::JEvent JEvent
Definition: JHistory.hh:353
const JPolynome f1(1.0, 2.0, 3.0)
Function.
Auxiliary class for defining the range of iterations of objects.
Definition: JLimit.hh:41
static const JSoundVelocity getSoundVelocity(1541.0,-17.0e-3,-2000.0)
Function object for velocity of sound.
Detector file.
Definition: JHead.hh:226
Acoustic emitter.
Definition: JEmitter.hh:27
void merge(const JMatch_t &match)
Merge events.
Auxiliary wrapper for I/O of container with optional comment (see JComment).
Definition: JContainer.hh:39
#define make_field(A,...)
macro to convert parameter to JParserTemplateElement object
Definition: JParser.hh:1993
const array_type< JValue_t > & make_array(const JValue_t(&array)[N])
Method to create array of values.
Definition: JVectorize.hh:54
JPosition3D getPosition(const Vec &pos)
Get position.
static struct JACOUSTICS::@4 compare
Auxiliary data structure to sort transmissions.
Acoustic transceiver.
Definition: JTransceiver.hh:29
double getQ(const double D_m, const double f_kHz, const double d_m)
Get relative quality for given frequency at given distance.
counter_type advance(counter_type &counter, const counter_type value, const counter_type limit=std::numeric_limits< counter_type >::max())
Advance counter.
Implementation for depth dependend velocity of sound.
#define FATAL(A)
Definition: JMessage.hh:67
void load(const std::string &file_name, JDetector &detector)
Load detector from input file.
std::vector< int > count
Definition: JAlgorithm.hh:180
General purpose class for object reading from a list of file names.
static const int PIEZO_DISABLE
Enable (disable) use of piezo if this status bit is 0 (1);.
void copy(const Head &from, JHead &to)
Copy header from from to to.
Definition: JHead.cc:161
Acoustic event.
static const int HYDROPHONE_DISABLE
Enable (disable) use of hydrophone if this status bit is 0 (1);.
Data structure for position in three dimensions.
Definition: JPosition3D.hh:36
const JLimit & getLimit() const
Get limit.
Definition: JLimit.hh:73
bool equals(const JFirst_t &first, const JSecond_t &second, const double precision=std::numeric_limits< double >::min())
Check equality.
Definition: JMathToolkit.hh:86
static JEmitterID getEmitterID
Function object for emitter identification.
Definition: JEmitterID.hh:119
do set_variable DETECTOR_TXT $WORKDIR detector
Match of two events considering overlap in time.
int EMITTERID
waveform identifier
Definition: JToAshort.hh:27
int debug
debug level
#define DEBUG(A)
Message macros.
Definition: JMessage.hh:62