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RPCSimAverageNoiseEff Class Reference

#include <RPCSimAverageNoiseEff.h>

Inheritance diagram for RPCSimAverageNoiseEff:
RPCSim

Public Member Functions

int getClSize (float posX)
 
 RPCSimAverageNoiseEff (const edm::ParameterSet &config)
 
void setRandomEngine (CLHEP::HepRandomEngine &eng)
 
void simulate (const RPCRoll *roll, const edm::PSimHitContainer &rpcHits)
 
void simulateNoise (const RPCRoll *)
 
 ~RPCSimAverageNoiseEff ()
 
- Public Member Functions inherited from RPCSim
const DigiSimLinksdigiSimLinks () const
 
virtual void fillDigis (int rollDetId, RPCDigiCollection &digis)
 
RPCSimSetUpgetRPCSimSetUp ()
 
const RPCDigiSimLinksrpcDigiSimLinks () const
 
void setRPCSimSetUp (RPCSimSetUp *setup)
 
virtual ~RPCSim ()
 

Private Member Functions

void init ()
 

Private Attributes

RPCSynchronizer_rpcSync
 
double aveCls
 
double aveEff
 
std::map< int, std::vector
< double > > 
clsMap
 
double dtimCs
 
CLHEP::RandFlat * flatDistribution
 
CLHEP::RandFlat * flatDistribution2
 
double frate
 
double gate
 
std::ifstream * infile
 
double lbGate
 
int N_hits
 
int nbxing
 
CLHEP::RandPoissonQ * poissonDistribution_
 
double rate
 
double resEle
 
double resRPC
 
bool rpcdigiprint
 
double sspeed
 
std::vector< double > sum_clsize
 
double timOff
 

Additional Inherited Members

- Public Types inherited from RPCSim
typedef edm::DetSet
< StripDigiSimLink
DigiSimLinks
 
typedef edm::DetSet
< RPCDigiSimLink
RPCDigiSimLinks
 
- Protected Types inherited from RPCSim
typedef std::multimap
< std::pair< unsigned int, int >
, const PSimHit *, std::less
< std::pair< unsigned int, int > > > 
DetectorHitMap
 
- Protected Member Functions inherited from RPCSim
virtual void addLinks (unsigned int strip, int bx)
 
 RPCSim (const edm::ParameterSet &config)
 
- Protected Attributes inherited from RPCSim
std::set< std::pair< int, int > > strips
 
DetectorHitMap theDetectorHitMap
 
DigiSimLinks theDigiSimLinks
 
RPCDigiSimLinks theRpcDigiSimLinks
 
RPCSimSetUptheSimSetUp
 

Detailed Description

Definition at line 31 of file RPCSimAverageNoiseEff.h.

Constructor & Destructor Documentation

RPCSimAverageNoiseEff::RPCSimAverageNoiseEff ( const edm::ParameterSet config)

Definition at line 50 of file RPCSimAverageNoiseEff.cc.

References _rpcSync, aveCls, aveEff, gather_cfg::cout, dtimCs, frate, gate, edm::ParameterSet::getParameter(), lbGate, nbxing, rate, resEle, resRPC, rpcdigiprint, sspeed, and timOff.

50  :
51  RPCSim(config)
52 {
53 
54  aveEff = config.getParameter<double>("averageEfficiency");
55  aveCls = config.getParameter<double>("averageClusterSize");
56  resRPC = config.getParameter<double>("timeResolution");
57  timOff = config.getParameter<double>("timingRPCOffset");
58  dtimCs = config.getParameter<double>("deltatimeAdjacentStrip");
59  resEle = config.getParameter<double>("timeJitter");
60  sspeed = config.getParameter<double>("signalPropagationSpeed");
61  lbGate = config.getParameter<double>("linkGateWidth");
62  rpcdigiprint = config.getParameter<bool>("printOutDigitizer");
63 
64  rate=config.getParameter<double>("Rate");
65  nbxing=config.getParameter<int>("Nbxing");
66  gate=config.getParameter<double>("Gate");
67  frate=config.getParameter<double>("Frate");
68 
69  if (rpcdigiprint) {
70  std::cout <<"Average Efficiency = "<<aveEff<<std::endl;
71  std::cout <<"Average Cluster Size = "<<aveCls<<" strips"<<std::endl;
72  std::cout <<"RPC Time Resolution = "<<resRPC<<" ns"<<std::endl;
73  std::cout <<"RPC Signal formation time = "<<timOff<<" ns"<<std::endl;
74  std::cout <<"RPC adjacent strip delay = "<<dtimCs<<" ns"<<std::endl;
75  std::cout <<"Electronic Jitter = "<<resEle<<" ns"<<std::endl;
76  std::cout <<"Signal propagation time = "<<sspeed<<" x c"<<std::endl;
77  std::cout <<"Link Board Gate Width = "<<lbGate<<" ns"<<std::endl;
78  }
79 
80  _rpcSync = new RPCSynchronizer(config);
81 
82 }
T getParameter(std::string const &) const
RPCSim(const edm::ParameterSet &config)
Definition: RPCSim.cc:5
RPCSynchronizer * _rpcSync
tuple cout
Definition: gather_cfg.py:41
RPCSimAverageNoiseEff::~RPCSimAverageNoiseEff ( )

Definition at line 91 of file RPCSimAverageNoiseEff.cc.

References _rpcSync, flatDistribution, flatDistribution2, and poissonDistribution_.

92 {
93  //Deleting the distribution defined in the constructor
94  delete flatDistribution;
95  delete flatDistribution2;
96  delete poissonDistribution_;
97  delete _rpcSync;
98 }
CLHEP::RandFlat * flatDistribution
RPCSynchronizer * _rpcSync
CLHEP::RandFlat * flatDistribution2
CLHEP::RandPoissonQ * poissonDistribution_

Member Function Documentation

int RPCSimAverageNoiseEff::getClSize ( float  posX)

Definition at line 100 of file RPCSimAverageNoiseEff.cc.

References clsMap, flatDistribution, RPCSimSetUp::getClsMap(), RPCSim::getRPCSimSetUp(), max(), min, and sum_clsize.

Referenced by simulate().

101 {
102 
103  std::map< int, std::vector<double> > clsMap = getRPCSimSetUp()->getClsMap();
104 
105  int cnt = 1;
106  int min = 1;
107  int max = 1;
108  double func=0.0;
109  std::vector<double> sum_clsize;
110 
111  double rr_cl = flatDistribution->fire(1);
112  if(0.0 <= posX && posX < 0.2) {
113  func = (clsMap[1])[(clsMap[1]).size()-1]*(rr_cl);
114  sum_clsize = clsMap[1];
115  }
116  if(0.2 <= posX && posX < 0.4) {
117  func = (clsMap[2])[(clsMap[2]).size()-1]*(rr_cl);
118  sum_clsize = clsMap[2];
119  }
120  if(0.4 <= posX && posX < 0.6) {
121  func = (clsMap[3])[(clsMap[3]).size()-1]*(rr_cl);
122  sum_clsize = clsMap[3];
123  }
124  if(0.6 <= posX && posX < 0.8) {
125  func = (clsMap[4])[(clsMap[4]).size()-1]*(rr_cl);
126  sum_clsize = clsMap[4];
127  }
128  if(0.8 <= posX && posX < 1.0) {
129  func = (clsMap[5])[(clsMap[5]).size()-1]*(rr_cl);
130  sum_clsize = clsMap[5];
131  }
132 
133  for(vector<double>::iterator iter = sum_clsize.begin();
134  iter != sum_clsize.end(); ++iter){
135  cnt++;
136  if(func > (*iter)){
137  min = cnt;
138  }
139  else if(func < (*iter)){
140  max = cnt;
141  break;
142  }
143  }
144  return min;
145 }
std::vector< double > sum_clsize
CLHEP::RandFlat * flatDistribution
RPCSimSetUp * getRPCSimSetUp()
Definition: RPCSim.h:47
#define min(a, b)
Definition: mlp_lapack.h:161
const T & max(const T &a, const T &b)
const std::map< int, std::vector< double > > & getClsMap()
Definition: RPCSimSetUp.cc:197
std::map< int, std::vector< double > > clsMap
void RPCSimAverageNoiseEff::init ( void  )
inlineprivatevirtual

Implements RPCSim.

Definition at line 47 of file RPCSimAverageNoiseEff.h.

47 {};
void RPCSimAverageNoiseEff::setRandomEngine ( CLHEP::HepRandomEngine &  eng)
virtual

Implements RPCSim.

Definition at line 84 of file RPCSimAverageNoiseEff.cc.

References _rpcSync, flatDistribution, flatDistribution2, poissonDistribution_, and RPCSynchronizer::setRandomEngine().

84  {
85  flatDistribution = new CLHEP::RandFlat(eng);
86  flatDistribution2 = new CLHEP::RandFlat(eng);
87  poissonDistribution_ = new CLHEP::RandPoissonQ(eng);
89 }
CLHEP::RandFlat * flatDistribution
void setRandomEngine(CLHEP::HepRandomEngine &eng)
RPCSynchronizer * _rpcSync
CLHEP::RandFlat * flatDistribution2
CLHEP::RandPoissonQ * poissonDistribution_
void RPCSimAverageNoiseEff::simulate ( const RPCRoll roll,
const edm::PSimHitContainer rpcHits 
)
virtual

Implements RPCSim.

Definition at line 148 of file RPCSimAverageNoiseEff.cc.

References _rpcSync, RPCRoll::centreOfStrip(), Topology::channel(), edm::DetSet< T >::clear(), flatDistribution, getClSize(), RPCSim::getRPCSimSetUp(), RPCSynchronizer::getSimHitBx(), i, RPCRoll::id(), RPCGeomServ::name(), RPCRoll::nstrips(), DetId::rawId(), RPCSynchronizer::setRPCSimSetUp(), RPCRoll::specs(), RPCRoll::strip(), RPCSim::strips, RPCSim::theDetectorHitMap, RPCSim::theRpcDigiSimLinks, RPCRollSpecs::topology(), and PV3DBase< T, PVType, FrameType >::x().

150 {
151 
154  theDetectorHitMap.clear();
156 
157  RPCDetId rpcId = roll->id();
158  RPCGeomServ RPCname(rpcId);
159  std::string nameRoll = RPCname.name();
160 
161  const Topology& topology=roll->specs()->topology();
162 
163  for (edm::PSimHitContainer::const_iterator _hit = rpcHits.begin();
164  _hit != rpcHits.end(); ++_hit){
165 
166  if(_hit-> particleType() == 11) continue;
167 
168  // Here I hould check if the RPC are up side down;
169  const LocalPoint& entr=_hit->entryPoint();
170 
171  int time_hit = _rpcSync->getSimHitBx(&(*_hit));
172  float posX = roll->strip(_hit->localPosition()) - static_cast<int>(roll->strip(_hit->localPosition()));
173 
174  std::vector<float> veff = (getRPCSimSetUp())->getEff(rpcId.rawId());
175 
176  // Effinciecy
177  int centralStrip = topology.channel(entr)+1;;
178  float fire = flatDistribution->fire(1);
179 
180  if (fire < veff[centralStrip-1]) {
181 
182  int fstrip=centralStrip;
183  int lstrip=centralStrip;
184 
185  // Compute the cluster size
186  double w = flatDistribution->fire(1);
187  if (w < 1.e-10) w=1.e-10;
188  int clsize = this->getClSize(posX);
189 
190  std::vector<int> cls;
191  cls.push_back(centralStrip);
192  if (clsize > 1){
193  for (int cl = 0; cl < (clsize-1)/2; cl++){
194  if (centralStrip - cl -1 >= 1 ){
195  fstrip = centralStrip-cl-1;
196  cls.push_back(fstrip);
197  }
198  if (centralStrip + cl + 1 <= roll->nstrips() ){
199  lstrip = centralStrip+cl+1;
200  cls.push_back(lstrip);
201  }
202  }
203  if (clsize%2 == 0 ){
204  // insert the last strip according to the
205  // simhit position in the central strip
206  double deltaw=roll->centreOfStrip(centralStrip).x()-entr.x();
207  if (deltaw<0.) {
208  if (lstrip < roll->nstrips() ){
209  lstrip++;
210  cls.push_back(lstrip);
211  }
212  }else{
213  if (fstrip > 1 ){
214  fstrip--;
215  cls.push_back(fstrip);
216  }
217  }
218  }
219  }
220 
221  for (std::vector<int>::iterator i=cls.begin(); i!=cls.end();i++){
222  // Check the timing of the adjacent strip
223  if(*i != centralStrip){
224  if(flatDistribution->fire(1) < veff[*i-1]){
225  std::pair<int, int> digi(*i,time_hit);
226  strips.insert(digi);
227 
228  theDetectorHitMap.insert(DetectorHitMap::value_type(digi,&(*_hit)));
229  }
230  }
231  else {
232  std::pair<int, int> digi(*i,time_hit);
233  theDetectorHitMap.insert(DetectorHitMap::value_type(digi,&(*_hit)));
234 
235  strips.insert(digi);
236  }
237  }
238  }
239  }
240 }
float strip(const LocalPoint &lp) const
Definition: RPCRoll.cc:71
int i
Definition: DBlmapReader.cc:9
LocalPoint centreOfStrip(int strip) const
Definition: RPCRoll.cc:52
CLHEP::RandFlat * flatDistribution
DetectorHitMap theDetectorHitMap
Definition: RPCSim.h:68
void setRPCSimSetUp(RPCSimSetUp *simsetup)
int nstrips() const
Definition: RPCRoll.cc:46
RPCSimSetUp * getRPCSimSetUp()
Definition: RPCSim.h:47
const RPCRollSpecs * specs() const
Definition: RPCRoll.cc:18
std::set< std::pair< int, int > > strips
Definition: RPCSim.h:57
uint32_t rawId() const
get the raw id
Definition: DetId.h:45
edm::DetSet< RPCDigiSimLink > RPCDigiSimLinks
Definition: RPCSim.h:32
RPCDetId id() const
Definition: RPCRoll.cc:24
virtual int channel(const LocalPoint &p) const =0
Container::value_type value_type
int getSimHitBx(const PSimHit *)
RPCSynchronizer * _rpcSync
void clear()
Definition: DetSet.h:68
T x() const
Definition: PV3DBase.h:56
RPCDigiSimLinks theRpcDigiSimLinks
Definition: RPCSim.h:70
const Topology & topology() const
Definition: RPCRollSpecs.cc:43
void RPCSimAverageNoiseEff::simulateNoise ( const RPCRoll roll)
virtual

Implements RPCSim.

Definition at line 242 of file RPCSimAverageNoiseEff.cc.

References compareJSON::const, flatDistribution2, frate, gate, RPCSim::getRPCSimSetUp(), i, RPCRoll::id(), j, RectangularStripTopology::localPosition(), TrapezoidalStripTopology::localPosition(), N_hits, RPCGeomServ::name(), nbxing, RPCRoll::nstrips(), poissonDistribution_, DetId::rawId(), RPCDetId::region(), RectangularStripTopology::stripLength(), TrapezoidalStripTopology::stripLength(), RPCSim::strips, RPCRoll::topology(), and x.

243 {
244 
245  RPCDetId rpcId = roll->id();
246 
247  RPCGeomServ RPCname(rpcId);
248  std::string nameRoll = RPCname.name();
249 
250  std::vector<float> vnoise = (getRPCSimSetUp())->getNoise(rpcId.rawId());
251  std::vector<float> veff = (getRPCSimSetUp())->getEff(rpcId.rawId());
252 
253  unsigned int nstrips = roll->nstrips();
254  double area = 0.0;
255 
256  if ( rpcId.region() == 0 )
257  {
258  const RectangularStripTopology* top_ = dynamic_cast<const
259  RectangularStripTopology*>(&(roll->topology()));
260  float xmin = (top_->localPosition(0.)).x();
261  float xmax = (top_->localPosition((float)roll->nstrips())).x();
262  float striplength = (top_->stripLength());
263  area = striplength*(xmax-xmin);
264  }
265  else
266  {
267  const TrapezoidalStripTopology* top_=dynamic_cast<const TrapezoidalStripTopology*>(&(roll->topology()));
268  float xmin = (top_->localPosition(0.)).x();
269  float xmax = (top_->localPosition((float)roll->nstrips())).x();
270  float striplength = (top_->stripLength());
271  area = striplength*(xmax-xmin);
272  }
273 
274  for(unsigned int j = 0; j < vnoise.size(); ++j){
275 
276  if(j >= nstrips) break;
277 
278  // The efficiency of 0% does not imply on the noise rate.
279  // If the strip is masked the noise rate should be 0 Hz/cm^2
280  // if(veff[j] == 0) continue;
281 
282 
283  // double ave = vnoise[j]*nbxing*gate*area*1.0e-9*frate;
284  // The vnoise is the noise rate per strip, so we shout multiply not
285  // by the chamber area,
286  // but the strip area which is area/((float)roll->nstrips()));
287  double ave =
288  vnoise[j]*nbxing*gate*area*1.0e-9*frate/((float)roll->nstrips());
289 
290  N_hits = poissonDistribution_->fire(ave);
291 
292  for (int i = 0; i < N_hits; i++ ){
293 
294  int time_hit = (static_cast<int>(flatDistribution2->fire((nbxing*gate)/gate))) - nbxing/2;
295  std::pair<int, int> digi(j+1,time_hit);
296  strips.insert(digi);
297  }
298  }
299 }
int i
Definition: DBlmapReader.cc:9
const Topology & topology() const
Definition: RPCRoll.cc:30
virtual float stripLength() const
int nstrips() const
Definition: RPCRoll.cc:46
RPCSimSetUp * getRPCSimSetUp()
Definition: RPCSim.h:47
std::set< std::pair< int, int > > strips
Definition: RPCSim.h:57
uint32_t rawId() const
get the raw id
Definition: DetId.h:45
RPCDetId id() const
Definition: RPCRoll.cc:24
int j
Definition: DBlmapReader.cc:9
string const
Definition: compareJSON.py:14
virtual LocalPoint localPosition(float strip) const
CLHEP::RandFlat * flatDistribution2
Definition: DDAxes.h:10
CLHEP::RandPoissonQ * poissonDistribution_
virtual LocalPoint localPosition(float strip) const
virtual float stripLength() const
det heigth (strip length in the middle)
int region() const
Region id: 0 for Barrel, +/-1 For +/- Endcap.
Definition: RPCDetId.h:65

Member Data Documentation

RPCSynchronizer* RPCSimAverageNoiseEff::_rpcSync
private
double RPCSimAverageNoiseEff::aveCls
private

Definition at line 50 of file RPCSimAverageNoiseEff.h.

Referenced by RPCSimAverageNoiseEff().

double RPCSimAverageNoiseEff::aveEff
private

Definition at line 47 of file RPCSimAverageNoiseEff.h.

Referenced by RPCSimAverageNoiseEff().

std::map< int, std::vector<double> > RPCSimAverageNoiseEff::clsMap
private

Definition at line 65 of file RPCSimAverageNoiseEff.h.

Referenced by getClSize().

double RPCSimAverageNoiseEff::dtimCs
private

Definition at line 53 of file RPCSimAverageNoiseEff.h.

Referenced by RPCSimAverageNoiseEff().

CLHEP::RandFlat* RPCSimAverageNoiseEff::flatDistribution
private
CLHEP::RandFlat* RPCSimAverageNoiseEff::flatDistribution2
private

Definition at line 76 of file RPCSimAverageNoiseEff.h.

Referenced by setRandomEngine(), simulateNoise(), and ~RPCSimAverageNoiseEff().

double RPCSimAverageNoiseEff::frate
private

Definition at line 63 of file RPCSimAverageNoiseEff.h.

Referenced by RPCSimAverageNoiseEff(), and simulateNoise().

double RPCSimAverageNoiseEff::gate
private

Definition at line 62 of file RPCSimAverageNoiseEff.h.

Referenced by RPCSimAverageNoiseEff(), and simulateNoise().

std::ifstream* RPCSimAverageNoiseEff::infile
private

Definition at line 67 of file RPCSimAverageNoiseEff.h.

double RPCSimAverageNoiseEff::lbGate
private

Definition at line 56 of file RPCSimAverageNoiseEff.h.

Referenced by RPCSimAverageNoiseEff().

int RPCSimAverageNoiseEff::N_hits
private

Definition at line 59 of file RPCSimAverageNoiseEff.h.

Referenced by simulateNoise().

int RPCSimAverageNoiseEff::nbxing
private

Definition at line 60 of file RPCSimAverageNoiseEff.h.

Referenced by RPCSimAverageNoiseEff(), and simulateNoise().

CLHEP::RandPoissonQ* RPCSimAverageNoiseEff::poissonDistribution_
private

Definition at line 77 of file RPCSimAverageNoiseEff.h.

Referenced by setRandomEngine(), simulateNoise(), and ~RPCSimAverageNoiseEff().

double RPCSimAverageNoiseEff::rate
private

Definition at line 61 of file RPCSimAverageNoiseEff.h.

Referenced by RPCSimAverageNoiseEff().

double RPCSimAverageNoiseEff::resEle
private

Definition at line 54 of file RPCSimAverageNoiseEff.h.

Referenced by RPCSimAverageNoiseEff().

double RPCSimAverageNoiseEff::resRPC
private

Definition at line 51 of file RPCSimAverageNoiseEff.h.

Referenced by RPCSimAverageNoiseEff().

bool RPCSimAverageNoiseEff::rpcdigiprint
private

Definition at line 57 of file RPCSimAverageNoiseEff.h.

Referenced by RPCSimAverageNoiseEff().

double RPCSimAverageNoiseEff::sspeed
private

Definition at line 55 of file RPCSimAverageNoiseEff.h.

Referenced by RPCSimAverageNoiseEff().

std::vector<double> RPCSimAverageNoiseEff::sum_clsize
private

Definition at line 66 of file RPCSimAverageNoiseEff.h.

Referenced by getClSize().

double RPCSimAverageNoiseEff::timOff
private

Definition at line 52 of file RPCSimAverageNoiseEff.h.

Referenced by RPCSimAverageNoiseEff().