source: Sophya/trunk/Cosmo/RadioBeam/calcpk2.cc@ 3796

Last change on this file since 3796 was 3796, checked in by ansari, 15 years ago

Suite modif utilisation de reponse calcule (tabulee) de l'interferometre pour soustraction avant-plans, Reza 29/06/2010

File size: 6.9 KB
Line 
1/* ------------------------ Projet BAORadio --------------------
2 Programme de calcul du spectre de puissance (3D) a partir d'un
3 cube de delta T/T LSS, d'un cube delta T/T LSS synchrotron
4 ou radio-sources, apres ajustement / soustraction d'une loi de
5 puissance en frequence (l'axe Z du tableau doit etre en frequence)
6
7 R. Ansari , C. Magneville - Juin 2010
8
9Usage: calcpk2 InMapLSS convFacLSS InMapSync convFacSync InMapRadioSource convFacRsc OutPkFile
10 [PixNoiseLevel] [Diameter/Four2DRespTableFile] [TargetBeamArcmin] [NSigSrcThr]
11--------------------------------------------------------------- */
12
13#include "machdefs.h"
14#include "sopnamsp.h"
15#include <iostream>
16#include <string>
17#include <math.h>
18
19#include <typeinfo>
20
21#include "specpk.h"
22#include "histats.h"
23#include "vector3d.h"
24
25#include "qhist.h"
26#include "lobe.h"
27#include "cubedef.h"
28#include "fgndsub.h"
29#include "radutil.h"
30
31#include "histinit.h"
32#include "fftwserver.h"
33#include "randr48.h"
34
35#include "ctimer.h"
36
37typedef ThSDR48RandGen RandomGenerator ;
38
39//-------------------------------------------------------------------------
40// ------------------ MAIN PROGRAM ------------------------------
41//-------------------------------------------------------------------------
42/* --Fonction-- */
43int main(int narg, const char* arg[])
44{
45 if (narg<6) {
46 cout << " Usage: calcpk2 InMapLSS convFacLSS InMapSync convFacSync OutPkFile \n"
47 << " [PixNoiseLevel] [Diameter/Four2DRespTableFile] [TargetBeamArcmin] [NSigSrcThr]" << endl;
48 return 1;
49 }
50 Timer tm("calcpk2");
51 int rc = 0;
52 try {
53 string inppflss = arg[1];
54 r_4 rfaclss = atof(arg[2]);
55 string inppfsync = arg[3];
56 r_4 rfacsync = atof(arg[4]);
57 string outname = arg[5];
58
59 double pixsignoise = 0.;
60 bool fgaddnoise=false;
61 if (narg>6) {
62 pixsignoise=atof(arg[6]);
63 if (pixsignoise>1.e-6) fgaddnoise=true;
64 }
65
66 bool fgcorrbeam=true;
67
68 bool fgresptbl=false;
69 double DIAMETRE=100.;
70 string resptblname;
71 if (narg>7) {
72 if (isdigit(*arg[7])) {
73 fgresptbl=false;
74 DIAMETRE=atof(arg[7]);
75 }
76 else {
77 resptblname=arg[7];
78 fgresptbl=true;
79 }
80 }
81 double tbeamDoL=135;
82 if (narg>8) {
83 tbeamDoL=atof(arg[8]);
84 if (tbeamDoL<1.) fgcorrbeam=false;
85 }
86 bool fgclnsrc=true;
87 double nsigsrc=5.;
88 if (narg>9) {
89 nsigsrc=atof(arg[9]);
90 if (nsigsrc<1.e-6) fgclnsrc=false;
91 }
92
93 TArray<r_4> maplss, mapsync;
94 const char * tits[2]={"LSS", "Sync/RadioSrc"};
95 for(int ks=0; ks<2; ks++) {
96 string& ppfname=inppflss;
97 r_4 rfac=rfaclss;
98 TArray<r_4>* inmap=&maplss;
99 if (ks==1) { ppfname=inppfsync; rfac=rfacsync; inmap=&mapsync; }
100 cout << "calcpk2[" << ks+1 << "] : reading 3D map " << tits[ks] << " from file " << ppfname
101 << " RenormFactor=" << rfac << endl;
102 PInPersist pin(ppfname);
103 pin >> (*inmap);
104 (*inmap) *= rfac;
105 double mean, sigma;
106 MeanSigma(*inmap, mean, sigma);
107 cout << " ...InMap sizes " << inmap->InfoString() << endl;
108 inmap->Show();
109 cout << " ... Mean=" << mean << " Sigma=" << sigma << endl;
110 }
111
112 bool smo;
113 if (!maplss.CompareSizes(mapsync,smo) ) {
114 cout << " calcpk2/ERROR sizes " << endl;
115 maplss.Show(); mapsync.Show();
116 return 99;
117 }
118
119 TArray<r_4> skycube(mapsync);
120 skycube += maplss;
121
122 if (fgaddnoise) {
123 cout << " calcpk2: adding noise to skycube cube ... " << endl;
124 BeamEffect::AddNoise(skycube, pixsignoise);
125 }
126
127 double mean, sigma;
128 MeanSigma(skycube, mean, sigma);
129 cout << " input sky cube : Mean=" << mean << " Sigma=" << sigma << endl;
130 tm.Split(" After input ");
131
132 H21Conversions conv;
133 conv.setFrequency(Freq0MHz);
134 double lambda = conv.getLambda();
135 Four2DResponse arep(2, DIAMETRE/lambda, DIAMETRE/lambda, lambda);
136 Four2DResponse* arep_p=&arep;
137 Four2DRespTable resptbl;
138 if (fgresptbl) {
139 cout << "calcpk2[3.a]: initializing Four2DRespTable from file" << resptblname << endl;
140 resptbl.readFromPPF(resptblname);
141 arep_p=&resptbl;
142 }
143 else cout << " calcpk2[3.a]: Four2DResponse ( Diameter=" << DIAMETRE << " Lambda= " << lambda
144 << " DoL=" << DIAMETRE/lambda << " ) " << endl;
145
146 double DoL = tbeamDoL;
147 double tbeamarcmin = RadianToDegree(1.22/DoL)*60.;
148 int typcb = 2;
149 // if (fgresptbl) typcb=22;
150 Four2DResponse tbeam(typcb, DoL, DoL );
151
152 ForegroundCleaner cleaner(*arep_p, tbeam, skycube);
153 if (fgcorrbeam) {
154 cout << "calcpk2[3.b] : calling cleaner.BeamCorrections() for target beam D/Lambda=" << DoL
155 << " -> arcmin " << tbeamarcmin << " TypDishResp=" << typcb << endl;
156 cleaner.BeamCorrections();
157 }
158 cout << " calcpk2[3.c] : calling cleaner.CleanNegatives() ... " << endl;
159 cleaner.CleanNegatives();
160 if (fgclnsrc) {
161 cout << "calcpk2[3.d] : calling cleaner.CleanPointSources() with threshold NSigma=" << nsigsrc << endl;
162 cleaner.CleanPointSources(nsigsrc);
163 }
164
165 cout << "calcpk2[4] : calling cleaner.extractLSSCube(...) " << endl;
166 TArray<r_4> synctemp, specidx;
167 TArray<r_4> exlss = cleaner.extractLSSCube(synctemp, specidx);
168
169 MeanSigma(exlss, mean, sigma);
170 cout << " After cleaning/extractLSS: Mean=" << mean << " Sigma=" << sigma << endl;
171 tm.Split(" After CleanForeground");
172
173 cout << "calcpk2[5] : computing 3D Fourier coefficients ... " << endl;
174 FFTWServer ffts;
175 TArray< complex<r_4> > four3d;
176 ffts.FFTForward(exlss, four3d);
177 tm.Split(" After FFTForward ");
178
179 cout << "calcpk2[6] : computing power spectrum ... " << endl;
180 RandomGenerator rg;
181 Four3DPk pkc(four3d, rg);
182 double dkxmpc = DeuxPI/(double)exlss.SizeX()/XCellSizeMpc;
183 double dkympc = DeuxPI/(double)exlss.SizeY()/YCellSizeMpc;
184 double dkzmpc = DeuxPI/(double)exlss.SizeZ()/ZCellSizeMpc;
185 pkc.SetCellSize(dkxmpc, dkympc, dkzmpc);
186
187 HProf hp = pkc.ComputePk(0.,256);
188
189 tm.Split(" Done ComputePk ");
190
191 cout << "calcpk2[7.a] : writing profile P(k) to " << outname << endl;
192 POutPersist po(outname);
193 po << hp;
194 outname = "fgm_" + outname;
195 cout << "calcpk2[7.b] : writing foreground maps to " << outname << endl;
196 POutPersist pom(outname);
197 pom << PPFNameTag("Tsync") << synctemp;
198 pom << PPFNameTag("async") << specidx;
199
200 } // End of try bloc
201 catch (PThrowable & exc) { // catching SOPHYA exceptions
202 cerr << " calcpk2.cc: Catched Exception (PThrowable)" << (string)typeid(exc).name()
203 << "\n...exc.Msg= " << exc.Msg() << endl;
204 rc = 99;
205 }
206 catch (std::exception & e) { // catching standard C++ exceptions
207 cerr << " calcpk2.cc: Catched std::exception " << " - what()= " << e.what() << endl;
208 rc = 98;
209 }
210 catch (...) { // catching other exceptions
211 cerr << " calcpk2.cc: some other exception (...) was caught ! " << endl;
212 rc = 97;
213 }
214 cout << " ==== End of calcpk2.cc program Rc= " << rc << endl;
215 return rc;
216}
217
218
Note: See TracBrowser for help on using the repository browser.