source: ntrip/trunk/BNC/src/orbComp/sp3Comp.cpp@ 6534

Last change on this file since 6534 was 6534, checked in by mervart, 9 years ago
File size: 13.0 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_sp3Comp
30 *
31 * Purpose: Compare SP3 Files
32 *
33 * Author: L. Mervart
34 *
35 * Created: 24-Nov-2014
36 *
37 * Changes:
38 *
39 * -----------------------------------------------------------------------*/
40
41#include <iostream>
42#include <iomanip>
43#include "sp3Comp.h"
44#include "bnccore.h"
45#include "bncsettings.h"
46#include "bncutils.h"
47#include "bncsp3.h"
48
49using namespace std;
50
51// Constructor
52////////////////////////////////////////////////////////////////////////////
53t_sp3Comp::t_sp3Comp(QObject* parent) : QThread(parent) {
54
55 bncSettings settings;
56 _sp3FileNames = settings.value("sp3CompFile").toString().split(QRegExp("[ ,]"), QString::SkipEmptyParts);
57 for (int ii = 0; ii < _sp3FileNames.size(); ii++) {
58 expandEnvVar(_sp3FileNames[ii]);
59 }
60 _logFileName = settings.value("sp3CompOutLogFile").toString(); expandEnvVar(_logFileName);
61 _logFile = 0;
62 _log = 0;
63
64 _excludeSats = settings.value("sp3CompExclude").toString().split(QRegExp("[ ,]"), QString::SkipEmptyParts);
65}
66
67// Destructor
68////////////////////////////////////////////////////////////////////////////
69t_sp3Comp::~t_sp3Comp() {
70 delete _log;
71 delete _logFile;
72}
73
74//
75////////////////////////////////////////////////////////////////////////////
76void t_sp3Comp::run() {
77
78 // Open Log File
79 // -------------
80 _logFile = new QFile(_logFileName);
81 if (_logFile->open(QIODevice::WriteOnly | QIODevice::Text)) {
82 _log = new QTextStream();
83 _log->setDevice(_logFile);
84 }
85 if (!_log) {
86 goto end;
87 }
88
89 for (int ii = 0; ii < _sp3FileNames.size(); ii++) {
90 *_log << "! SP3 File " << ii+1 << ": " << _sp3FileNames[ii] << endl;
91 }
92 if (_sp3FileNames.size() != 2) {
93 *_log << "ERROR: sp3Comp requires two input SP3 files" << endl;
94 goto end;
95 }
96
97 try {
98 ostringstream msg;
99 compare(msg);
100 *_log << msg.str().c_str();
101 }
102 catch (const string& error) {
103 *_log << "ERROR: " << error.c_str() << endl;
104 }
105 catch (const char* error) {
106 *_log << "ERROR: " << error << endl;
107 }
108 catch (Exception& exc) {
109 *_log << "ERROR: " << exc.what() << endl;
110 }
111 catch (std::exception& exc) {
112 *_log << "ERROR: " << exc.what() << endl;
113 }
114 catch (QString error) {
115 *_log << "ERROR: " << error << endl;
116 }
117 catch (...) {
118 *_log << "ERROR: " << "unknown exception" << endl;
119 }
120
121 // Exit (thread)
122 // -------------
123 end:
124 if (BNC_CORE->mode() != t_bncCore::interactive) {
125 qApp->exit(0);
126 }
127 else {
128 emit finished();
129 deleteLater();
130 }
131}
132
133// Satellite Index in clkSats set
134////////////////////////////////////////////////////////////////////////////////
135int t_sp3Comp::satIndex(const set<t_prn>& clkSats, const t_prn& prn) const {
136 int ret = 0;
137 for (set<t_prn>::const_iterator it = clkSats.begin(); it != clkSats.end(); it++) {
138 if ( *it == prn) {
139 return ret;
140 }
141 ++ret;
142 }
143 return -1;
144}
145
146// Estimate Clock Offsets
147////////////////////////////////////////////////////////////////////////////////
148void t_sp3Comp::processClocks(const set<t_prn>& clkSats, const vector<t_epoch*>& epochsIn,
149 map<string, t_stat>& stat) const {
150
151 if (clkSats.size() == 0) {
152 return;
153 }
154
155 vector<t_epoch*> epochs;
156 for (unsigned ii = 0; ii < epochsIn.size(); ii++) {
157 unsigned numSatOK = 0;
158 std::map<t_prn, double>::const_iterator it;
159 for (it = epochsIn[ii]->_dc.begin(); it != epochsIn[ii]->_dc.end(); it++) {
160 if (satIndex(clkSats, it->first) != -1) {
161 numSatOK += 1;
162 }
163 }
164 if (numSatOK > 0) {
165 epochs.push_back(epochsIn[ii]);
166 }
167 }
168 if (epochs.size() == 0) {
169 return;
170 }
171
172 int nPar = epochs.size() + clkSats.size();
173 SymmetricMatrix NN(nPar); NN = 0.0;
174 ColumnVector bb(nPar); bb = 0.0;
175
176 // Create Matrix A'A and vector b
177 // ------------------------------
178 for (unsigned ie = 0; ie < epochs.size(); ie++) {
179 const map<t_prn, double>& dc = epochs[ie]->_dc;
180 Matrix AA(dc.size(), nPar); AA = 0.0;
181 ColumnVector ll(dc.size()); ll = 0.0;
182 map<t_prn, double>::const_iterator it;
183 int ii = -1;
184 for (it = dc.begin(); it != dc.end(); it++) {
185 const t_prn& prn = it->first;
186 if (satIndex(clkSats, prn) != -1) {
187 ++ii;
188 int index = epochs.size() + satIndex(clkSats, prn);
189 AA[ii][ie] = 1.0; // epoch-specfic offset (common for all satellites)
190 AA[ii][index] = 1.0; // satellite-specific offset (common for all epochs)
191 ll[ii] = it->second;
192 }
193 }
194 SymmetricMatrix dN; dN << AA.t() * AA;
195 NN += dN;
196 bb += AA.t() * ll;
197 }
198
199 // Regularize NN
200 // -------------
201 RowVector HH(nPar);
202 HH.columns(1, epochs.size()) = 0.0;
203 HH.columns(epochs.size()+1, nPar) = 1.0;
204 SymmetricMatrix dN; dN << HH.t() * HH;
205 NN += dN;
206
207 // Estimate Parameters
208 // -------------------
209 ColumnVector xx = NN.i() * bb;
210
211 // Compute clock residuals
212 // -----------------------
213 for (unsigned ie = 0; ie < epochs.size(); ie++) {
214 map<t_prn, double>& dc = epochs[ie]->_dc;
215 for (map<t_prn, double>::iterator it = dc.begin(); it != dc.end(); it++) {
216 const t_prn& prn = it->first;
217 if (satIndex(clkSats, prn) != -1) {
218 int index = epochs.size() + satIndex(clkSats, prn);
219 dc[prn] = it->second - xx[ie] - xx[index];
220 stat[prn.toString()]._offset = xx[index];
221 }
222 }
223 }
224}
225
226// Main Routine
227////////////////////////////////////////////////////////////////////////////////
228void t_sp3Comp::compare(ostringstream& out) const {
229
230 // Synchronize reading of two sp3 files
231 // ------------------------------------
232 bncSP3 in1(_sp3FileNames[0]); in1.nextEpoch();
233 bncSP3 in2(_sp3FileNames[1]); in2.nextEpoch();
234
235 vector<t_epoch*> epochs;
236 while (in1.currEpoch() && in2.currEpoch()) {
237 bncTime t1 = in1.currEpoch()->_tt;
238 bncTime t2 = in2.currEpoch()->_tt;
239 if (t1 < t2) {
240 in1.nextEpoch();
241 }
242 else if (t1 > t2) {
243 in2.nextEpoch();
244 }
245 else if (t1 == t2) {
246 t_epoch* epo = new t_epoch; epo->_tt = t1;
247 bool epochOK = false;
248 for (int i1 = 0; i1 < in1.currEpoch()->_sp3Sat.size(); i1++) {
249 bncSP3::t_sp3Sat* sat1 = in1.currEpoch()->_sp3Sat[i1];
250 for (int i2 = 0; i2 < in2.currEpoch()->_sp3Sat.size(); i2++) {
251 bncSP3::t_sp3Sat* sat2 = in2.currEpoch()->_sp3Sat[i2];
252 if (sat1->_prn == sat2->_prn) {
253 epochOK = true;
254 epo->_dr[sat1->_prn] = sat1->_xyz - sat2->_xyz;
255 epo->_xyz[sat1->_prn] = sat1->_xyz;
256 if (sat1->_clkValid && sat2->_clkValid) {
257 epo->_dc[sat1->_prn] = sat1->_clk - sat2->_clk;
258 }
259 }
260 }
261 }
262 if (epochOK) {
263 epochs.push_back(epo);
264 }
265 else {
266 delete epo;
267 }
268 in1.nextEpoch();
269 in2.nextEpoch();
270 }
271 }
272
273 // Transform xyz into radial, along-track, and out-of-plane
274 // --------------------------------------------------------
275 if (epochs.size() < 2) {
276 throw "t_sp3Comp: not enough common epochs";
277 }
278
279 set<t_prn> clkSatsAll;
280
281 for (unsigned ie = 0; ie < epochs.size(); ie++) {
282 t_epoch* epoch = epochs[ie];
283 t_epoch* epoch2 = 0;
284 if (ie == 0) {
285 epoch2 = epochs[ie+1];
286 }
287 else {
288 epoch2 = epochs[ie-1];
289 }
290 double dt = epoch->_tt - epoch2->_tt;
291 map<t_prn, ColumnVector>& dr = epoch->_dr;
292 map<t_prn, ColumnVector>& xyz = epoch->_xyz;
293 map<t_prn, ColumnVector>& xyz2 = epoch2->_xyz;
294 for (map<t_prn, ColumnVector>::const_iterator it = dr.begin(); it != dr.end(); it++) {
295 const t_prn& prn = it->first;
296 if (xyz2.find(prn) != xyz2.end()) {
297 const ColumnVector dx = dr[prn];
298 const ColumnVector& x1 = xyz[prn];
299 const ColumnVector& x2 = xyz2[prn];
300 ColumnVector vel = (x1 - x2) / dt;
301 XYZ_to_RSW(x1, vel, dx, dr[prn]);
302 if (epoch->_dc.find(prn) != epoch->_dc.end()) {
303 clkSatsAll.insert(prn);
304 }
305 }
306 else {
307 epoch->_dr.erase(prn);
308 epoch->_dc.erase(prn);
309 }
310 }
311 }
312
313 map<string, t_stat> stat;
314
315 // Estimate Clock Offsets
316 // ----------------------
317 string systems;
318 for (set<t_prn>::const_iterator it = clkSatsAll.begin(); it != clkSatsAll.end(); it++) {
319 if (systems.find(it->system()) == string::npos) {
320 systems += it->system();
321 }
322 }
323 for (unsigned iSys = 0; iSys < systems.size(); iSys++) {
324 char system = systems[iSys];
325 set<t_prn> clkSats;
326 for (set<t_prn>::const_iterator it = clkSatsAll.begin(); it != clkSatsAll.end(); it++) {
327 if (it->system() == system && !excludeSat(*it)) {
328 clkSats.insert(*it);
329 }
330 }
331 processClocks(clkSats, epochs, stat);
332 }
333
334 // Print Residuals
335 // ---------------
336 const string all = "ZZZ";
337
338 out.setf(ios::fixed);
339 out << "!\n! MJD PRN radial along out clk clkRed iPRN"
340 "\n! ----------------------------------------------------------------\n";
341 for (unsigned ii = 0; ii < epochs.size(); ii++) {
342 const t_epoch* epo = epochs[ii];
343 const map<t_prn, ColumnVector>& dr = epochs[ii]->_dr;
344 const map<t_prn, double>& dc = epochs[ii]->_dc;
345 for (map<t_prn, ColumnVector>::const_iterator it = dr.begin(); it != dr.end(); it++) {
346 const t_prn& prn = it->first;
347 if (!excludeSat(prn)) {
348 const ColumnVector& rao = it->second;
349 out << setprecision(6) << epo->_tt.mjddec() << ' ' << prn.toString() << ' '
350 << setw(7) << setprecision(4) << rao[0] << ' '
351 << setw(7) << setprecision(4) << rao[1] << ' '
352 << setw(7) << setprecision(4) << rao[2] << " ";
353 stat[prn.toString()]._rao += SP(rao, rao); // Schur product
354 stat[prn.toString()]._nr += 1;
355 stat[all]._rao += SP(rao, rao);
356 stat[all]._nr += 1;
357 if (dc.find(prn) != dc.end()) {
358 double clkRes = dc.find(prn)->second;
359 double clkResRed = clkRes - it->second[0]; // clock minus radial component
360 out << setw(7) << setprecision(4) << clkRes << ' '
361 << setw(7) << setprecision(4) << clkResRed;
362 stat[prn.toString()]._dc += clkRes * clkRes;
363 stat[prn.toString()]._dcRed += clkResRed * clkResRed;
364 stat[prn.toString()]._nc += 1;
365 stat[all]._dc += clkRes * clkRes;
366 stat[all]._dcRed += clkResRed * clkResRed;
367 stat[all]._nc += 1;
368 }
369 else {
370 out << " . . ";
371 }
372 out << " " << setw(2) << int(prn) << endl;
373 }
374 }
375 delete epo;
376 }
377
378 // Print Summary
379 // -------------
380 out << "!\n! RMS:\n";
381 for (map<string, t_stat>::iterator it = stat.begin(); it != stat.end(); it++) {
382 const string& prn = it->first;
383 t_stat& stat = it->second;
384 if (stat._nr > 0) {
385 stat._rao[0] = sqrt(stat._rao[0] / stat._nr);
386 stat._rao[1] = sqrt(stat._rao[1] / stat._nr);
387 stat._rao[2] = sqrt(stat._rao[2] / stat._nr);
388 if (prn == all) {
389 out << "!\n! Total ";
390 }
391 else {
392 out << "! " << prn << ' ';
393 }
394 out << setw(7) << setprecision(4) << stat._rao[0] << ' '
395 << setw(7) << setprecision(4) << stat._rao[1] << ' '
396 << setw(7) << setprecision(4) << stat._rao[2] << " ";
397 if (stat._nc > 0) {
398 stat._dc = sqrt(stat._dc / stat._nc);
399 stat._dcRed = sqrt(stat._dcRed / stat._nc);
400 out << setw(7) << setprecision(4) << stat._dc << ' '
401 << setw(7) << setprecision(4) << stat._dcRed;
402 if (prn != all) {
403 out << " offset " << setw(9) << setprecision(4) << stat._offset;
404 }
405 }
406 else {
407 out << " . . ";
408 }
409 out << endl;
410 }
411 }
412}
413
414//
415////////////////////////////////////////////////////////////////////////////
416bool t_sp3Comp::excludeSat(const t_prn& prn) const {
417 QStringListIterator it(_excludeSats);
418 while (it.hasNext()) {
419 string prnStr = it.next().toAscii().data();
420 if (prnStr == prn.toString() || prnStr == prn.toString().substr(0,1)) {
421 return true;
422 }
423 }
424 return false;
425}
426
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