source: ntrip/trunk/BNC/src/rinex/reqcanalyze.cpp@ 4338

Last change on this file since 4338 was 4338, checked in by mervart, 12 years ago
File size: 7.5 KB
Line 
1// Part of BNC, a utility for retrieving decoding and
2// converting GNSS data streams from NTRIP broadcasters.
3//
4// Copyright (C) 2007
5// German Federal Agency for Cartography and Geodesy (BKG)
6// http://www.bkg.bund.de
7// Czech Technical University Prague, Department of Geodesy
8// http://www.fsv.cvut.cz
9//
10// Email: euref-ip@bkg.bund.de
11//
12// This program is free software; you can redistribute it and/or
13// modify it under the terms of the GNU General Public License
14// as published by the Free Software Foundation, version 2.
15//
16// This program is distributed in the hope that it will be useful,
17// but WITHOUT ANY WARRANTY; without even the implied warranty of
18// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
19// GNU General Public License for more details.
20//
21// You should have received a copy of the GNU General Public License
22// along with this program; if not, write to the Free Software
23// Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
24
25/* -------------------------------------------------------------------------
26 * BKG NTRIP Client
27 * -------------------------------------------------------------------------
28 *
29 * Class: t_reqcAnalyze
30 *
31 * Purpose: Analyze RINEX Files
32 *
33 * Author: L. Mervart
34 *
35 * Created: 11-Apr-2012
36 *
37 * Changes:
38 *
39 * -----------------------------------------------------------------------*/
40
41#include <iostream>
42#include "reqcanalyze.h"
43#include "bncapp.h"
44#include "bncsettings.h"
45#include "reqcedit.h"
46#include "bncutils.h"
47#include "bncpostprocess.h"
48#include "graphwin.h"
49#include "polarplot.h"
50
51using namespace std;
52
53// Constructor
54////////////////////////////////////////////////////////////////////////////
55t_reqcAnalyze::t_reqcAnalyze(QObject* parent) : QThread(parent) {
56
57 bncSettings settings;
58
59 _logFileName = settings.value("reqcOutLogFile").toString(); expandEnvVar(_logFileName);
60 _logFile = 0;
61 _log = 0;
62 _obsFileNames = settings.value("reqcObsFile").toString().split(",", QString::SkipEmptyParts);
63 _navFileNames = settings.value("reqcNavFile").toString().split(",", QString::SkipEmptyParts);
64
65 _currEpo = 0;
66 _dataMP1 = 0;
67 _dataMP2 = 0;
68
69 connect(this, SIGNAL(displayGraph()), this, SLOT(slotDisplayGraph()));
70}
71
72// Destructor
73////////////////////////////////////////////////////////////////////////////
74t_reqcAnalyze::~t_reqcAnalyze() {
75 for (int ii = 0; ii < _rnxObsFiles.size(); ii++) {
76 delete _rnxObsFiles[ii];
77 }
78 for (int ii = 0; ii < _ephs.size(); ii++) {
79 delete _ephs[ii];
80 }
81 delete _log; _log = 0;
82 delete _logFile; _logFile = 0;
83}
84
85//
86////////////////////////////////////////////////////////////////////////////
87void t_reqcAnalyze::slotDisplayGraph() {
88 if (((bncApp*) qApp)->mode() == bncApp::interactive) {
89
90 t_polarPlot* plotMP1 = new t_polarPlot(0);
91 plotMP1->addCurve(_dataMP1);
92 _dataMP1 = 0;
93
94 t_polarPlot* plotMP2 = new t_polarPlot(0);
95 plotMP2->addCurve(_dataMP2);
96 _dataMP2 = 0;
97
98 QVector<QWidget*> plots;
99 plots << plotMP1;
100 plots << plotMP2;
101
102 t_graphWin* graphWin = new t_graphWin(0, plots);
103
104 graphWin->show();
105 }
106}
107
108//
109////////////////////////////////////////////////////////////////////////////
110void t_reqcAnalyze::run() {
111
112 // Open Log File
113 // -------------
114 _logFile = new QFile(_logFileName);
115 _logFile->open(QIODevice::WriteOnly | QIODevice::Text);
116 _log = new QTextStream();
117 _log->setDevice(_logFile);
118
119 // Initialize RINEX Observation Files
120 // ----------------------------------
121 t_reqcEdit::initRnxObsFiles(_obsFileNames, _rnxObsFiles);
122
123 // Read Ephemerides
124 // ----------------
125 t_reqcEdit::readEphemerides(_navFileNames, _ephs);
126
127 // Loop over all RINEX Files
128 // -------------------------
129 for (int ii = 0; ii < _rnxObsFiles.size(); ii++) {
130 analyzeFile(_rnxObsFiles[ii]);
131 }
132
133 // Exit
134 // ----
135 bncApp* app = (bncApp*) qApp;
136 if ( app->mode() != bncApp::interactive) {
137 app->exit(0);
138 }
139 else {
140 emit finished();
141 deleteLater();
142 }
143}
144
145//
146////////////////////////////////////////////////////////////////////////////
147void t_reqcAnalyze::analyzeFile(t_rnxObsFile* obsFile) {
148
149 *_log << "Analyze File\n"
150 << "------------\n"
151 << obsFile->fileName().toAscii().data() << endl << endl;
152
153 // Loop over all Epochs
154 // --------------------
155 while ( (_currEpo = obsFile->nextEpoch()) != 0) {
156
157 // Loop over all satellites
158 // ------------------------
159 for (unsigned iObs = 0; iObs < _currEpo->rnxSat.size(); iObs++) {
160 const t_rnxObsFile::t_rnxSat& rnxSat = _currEpo->rnxSat[iObs];
161 t_obs obs;
162 t_postProcessing::setObsFromRnx(obsFile, _currEpo, rnxSat, obs);
163
164 if (obs.satSys == 'R') {
165 continue; // TODO: set channel number
166 }
167
168 QString prn = QString("%1%2").arg(obs.satSys)
169 .arg(obs.satNum, 2, 10, QChar('0'));
170
171 t_eph* eph = 0;
172 for (int ie = 0; ie < _ephs.size(); ie++) {
173 if (_ephs[ie]->prn() == prn) {
174 eph = _ephs[ie];
175 break;
176 }
177 }
178
179 t_satStat& satStat = _satStat[prn];
180
181 satStat.addObs(eph, obs);
182 }
183
184 } // while (_currEpo)
185
186 // Analyze the Multipath
187 // ---------------------
188 _log->setRealNumberNotation(QTextStream::FixedNotation);
189 _log->setRealNumberPrecision(2);
190
191 delete _dataMP1; _dataMP1 = new QVector<t_polarPoint*>;
192 delete _dataMP2; _dataMP2 = new QVector<t_polarPoint*>;
193
194 QMapIterator<QString, t_satStat> it(_satStat);
195 while (it.hasNext()) {
196 it.next();
197 QString prn = it.key();
198 const t_satStat& satStat = it.value();
199
200 int numVal = satStat.anaObs.size();
201 if (numVal > 1) {
202 double mean1 = 0.0;
203 double mean2 = 0.0;
204 for (int ii = 0; ii < numVal; ii++) {
205 const t_anaObs* anaObs = satStat.anaObs[ii];
206 mean1 += anaObs->MP1;
207 mean2 += anaObs->MP2;
208 }
209 mean1 /= numVal;
210 mean2 /= numVal;
211 double stddev1 = 0.0;
212 double stddev2 = 0.0;
213 for (int ii = 0; ii < numVal; ii++) {
214 const t_anaObs* anaObs = satStat.anaObs[ii];
215 double diff1 = anaObs->MP1 - mean1;
216 double diff2 = anaObs->MP2 - mean2;
217 stddev1 += diff1 * diff1;
218 stddev2 += diff2 * diff2;
219 //// beg test
220 (*_dataMP1) << (new t_polarPoint(anaObs->az, anaObs->zen, 0.5));
221 (*_dataMP2) << (new t_polarPoint(anaObs->az, anaObs->zen, 1.0));
222 //// end test
223 }
224 double MP1 = sqrt(stddev1 / (numVal-1));
225 double MP2 = sqrt(stddev2 / (numVal-1));
226
227 *_log << "MP1 " << prn << " " << MP1 << endl;
228 *_log << "MP2 " << prn << " " << MP2 << endl;
229 }
230 }
231
232 emit displayGraph();
233
234 _log->flush();
235}
236
237//
238////////////////////////////////////////////////////////////////////////////
239void t_reqcAnalyze::t_satStat::addObs(const t_eph* eph, const t_obs& obs) {
240
241 t_anaObs* newObs = new t_anaObs(obs);
242 anaObs << newObs;
243
244 // Compute the Multipath
245 // ----------------------
246 if (obs.l1() != 0.0 && obs.l2() != 0.0) {
247 double f1 = t_CST::f1(obs.satSys, obs.slotNum);
248 double f2 = t_CST::f2(obs.satSys, obs.slotNum);
249
250 double L1 = obs.l1() * t_CST::c / f1;
251 double L2 = obs.l2() * t_CST::c / f2;
252
253 if (obs.p1() != 0.0) {
254 newObs->MP1 = obs.p1() - L1 - 2.0*f2*f2/(f1*f1-f2*f2) * (L1 - L2);
255 }
256 if (obs.p2() != 0.0) {
257 newObs->MP2 = obs.p2() - L2 - 2.0*f1*f1/(f1*f1-f2*f2) * (L1 - L2);
258 }
259 }
260
261 // Compute the Azimuth and Zenith Distance
262 // ---------------------------------------
263 if (eph) {
264 double xx, yy, zz, cc;
265 eph->position(obs.GPSWeek, obs.GPSWeeks, xx, yy, zz, cc);
266 }
267}
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