source: ntrip/trunk/BNC/src/RTRover/bncrtrover.cpp@ 5590

Last change on this file since 5590 was 5590, checked in by mervart, 10 years ago
File size: 15.8 KB
Line 
1
2#include <iostream>
3#include <iomanip>
4#include <string.h>
5
6#include "bncrtrover.h"
7#include "bnccore.h"
8#include "bncsettings.h"
9#include "bnctime.h"
10
11#include "rtrover_interface.h"
12
13using namespace std;
14
15// Constructor
16////////////////////////////////////////////////////////////////////////////
17t_bncRtrover::t_bncRtrover() : QThread(0) {
18}
19
20// Destructor
21////////////////////////////////////////////////////////////////////////////
22t_bncRtrover::~t_bncRtrover() {
23 rtrover_destroy();
24}
25
26// Run (virtual)
27////////////////////////////////////////////////////////////////////////////
28void t_bncRtrover::run() {
29 bncSettings settings;
30
31 // User Options
32 // ------------
33 _mode = settings.value("rtroverMode").toByteArray();
34 _roverMount = settings.value("rtroverRoverMount").toByteArray();
35 _baseMount = settings.value("rtroverBaseMount").toByteArray();
36 _corrMount = settings.value("rtroverCorrMount").toByteArray();
37 _outputFile.setFileName(settings.value("rtroverOutput").toString());
38 _outputFile.open(QIODevice::WriteOnly | QIODevice::Text);
39
40 // Define Input Options
41 // --------------------
42 rtrover_opt opt;
43 rtrover_initOptions(&opt);
44
45 if (_mode == "PPP_DF") {
46 opt._mode = mode_PPP_DF;
47 }
48 else if (_mode == "SPP_DF") {
49 opt._mode = mode_SPP_DF;
50 }
51 else if (_mode == "PPP_SF") {
52 opt._mode = mode_PPP_SF;
53 }
54 else if (_mode == "SPP_SF") {
55 opt._mode = mode_SPP_SF;
56 }
57 else if (_mode == "PPP_AR") {
58 opt._mode = mode_PPP_AR;
59 }
60 else if (_mode == "RTK") {
61 opt._mode = mode_RTK;
62 }
63 else if (_mode == "PPP_FTTF") {
64 opt._mode = mode_PPP_FTTF;
65 }
66
67 QByteArray antNameRover = settings.value("rtroverRoverAntenna").toByteArray();
68 QByteArray antNameBase = settings.value("rtroverBaseAntenna").toByteArray();
69 QByteArray antexFileName = settings.value("rtroverAntex").toByteArray();
70
71 if (!_roverMount.isEmpty()) opt._roverName = _roverMount.data();
72 if (!_baseMount.isEmpty()) opt._baseName = _baseMount.data();
73 if (!antNameRover.isEmpty()) opt._antNameRover = antNameRover.data();
74 if (!antNameBase.isEmpty()) opt._antNameBase = antNameBase.data();
75 if (!antexFileName.isEmpty()) opt._antexFileName = antexFileName.data();
76
77 opt._xyzAprRover[0] = settings.value("rtroverRoverRefCrdX").toDouble();
78 opt._xyzAprRover[1] = settings.value("rtroverRoverRefCrdY").toDouble();
79 opt._xyzAprRover[2] = settings.value("rtroverRoverRefCrdZ").toDouble();
80 opt._xyzAprBase[0] = settings.value("rtroverBaseRefCrdX").toDouble();
81 opt._xyzAprBase[1] = settings.value("rtroverBaseRefCrdY").toDouble();
82 opt._xyzAprBase[2] = settings.value("rtroverBaseRefCrdZ").toDouble();
83 opt._neuEccRover[0] = settings.value("rtroverRoverDN").toDouble();
84 opt._neuEccRover[1] = settings.value("rtroverRoverDE").toDouble();
85 opt._neuEccRover[2] = settings.value("rtroverRoverDU").toDouble();
86 opt._neuEccBase[0] = settings.value("rtroverBaseDN").toDouble();
87 opt._neuEccBase[1] = settings.value("rtroverBaseDE").toDouble();
88 opt._neuEccBase[2] = settings.value("rtroverBaseDU").toDouble();
89 opt._logLevel = 2;
90
91 rtrover_setOptions(&opt);
92
93 // Connect to BNC Signals
94 // ----------------------
95 connect(BNC_CORE, SIGNAL(newCorrections(QList<QString>)),
96 this, SLOT(slotNewCorrections(QList<QString>)));
97
98 connect(BNC_CORE, SIGNAL(newEphGPS(gpsephemeris)),
99 this, SLOT(slotNewEphGPS(gpsephemeris)));
100
101 connect(BNC_CORE, SIGNAL(newEphGlonass(glonassephemeris)),
102 this, SLOT(slotNewEphGlonass(glonassephemeris)));
103
104 connect(BNC_CORE, SIGNAL(newEphGalileo(galileoephemeris)),
105 this, SLOT(slotNewEphGalileo(galileoephemeris)));
106
107 // Start processing loop
108 // ---------------------
109 QThread::exec();
110}
111
112//
113////////////////////////////////////////////////////////////////////////////
114void t_bncRtrover::slotNewEphGPS(gpsephemeris gpseph) {
115 QMutexLocker locker(&_mutex);
116
117 bncTime toc(gpseph.GPSweek, gpseph.TOC);
118 bncTime toe(gpseph.GPSweek, gpseph.TOE);
119
120 rtrover_ephGPS eph;
121 eph._satellite._system = 'G';
122 eph._satellite._number = gpseph.satellite;
123 eph._TOC._mjd = toc.mjd();
124 eph._TOC._sec = toc.daysec();
125 eph._TOE._mjd = toe.mjd();
126 eph._TOE._sec = toe.daysec();
127 eph._IODE = gpseph.IODE;
128 eph._IODC = gpseph.IODC;
129 eph._clock_bias = gpseph.clock_bias;
130 eph._clock_drift = gpseph.clock_drift;
131 eph._clock_driftrate = gpseph.clock_driftrate;
132 eph._Crs = gpseph.Crs;
133 eph._Delta_n = gpseph.Delta_n;
134 eph._M0 = gpseph.M0;
135 eph._Cuc = gpseph.Cuc;
136 eph._e = gpseph.e;
137 eph._Cus = gpseph.Cus;
138 eph._sqrt_A = gpseph.sqrt_A;
139 eph._Cic = gpseph.Cic;
140 eph._OMEGA0 = gpseph.OMEGA0;
141 eph._Cis = gpseph.Cis;
142 eph._i0 = gpseph.i0;
143 eph._Crc = gpseph.Crc;
144 eph._omega = gpseph.omega;
145 eph._OMEGADOT = gpseph.OMEGADOT;
146 eph._IDOT = gpseph.IDOT;
147 eph._TGD = gpseph.TGD;
148 eph._health = gpseph.SVhealth;
149
150 rtrover_putGPSEphemeris(&eph);
151}
152
153//
154////////////////////////////////////////////////////////////////////////////
155void t_bncRtrover::slotNewEphGlonass(glonassephemeris gloeph) {
156 QMutexLocker locker(&_mutex);
157
158 int wwUTC = gloeph.GPSWeek;
159 int towUTC = gloeph.GPSTOW;
160 updatetime(&wwUTC, &towUTC, gloeph.tb*1000, 1); // Moscow -> UTC
161 bncTime tUTC(wwUTC,towUTC);
162
163 int wwGPS = gloeph.GPSWeek;
164 int towGPS = gloeph.GPSTOW;
165 updatetime(&wwGPS, &towGPS, gloeph.tb*1000, 0); // Moscow -> GPS
166 bncTime tGPS(wwGPS,towGPS);
167
168 rtrover_ephGlo eph;
169 eph._satellite._system = 'R';
170 eph._satellite._number = gloeph.almanac_number;
171 eph._timeUTC._mjd = tUTC.mjd();
172 eph._timeUTC._sec = tUTC.daysec();
173 eph._gps_utc = int(tGPS-tUTC);
174 eph._E = gloeph.E;
175 eph._tau = gloeph.tau;
176 eph._gamma = gloeph.gamma;
177 eph._x_pos = gloeph.x_pos;
178 eph._x_velocity = gloeph.x_velocity;
179 eph._x_acceleration = gloeph.x_acceleration;
180 eph._y_pos = gloeph.y_pos;
181 eph._y_velocity = gloeph.y_velocity;
182 eph._y_acceleration = gloeph.y_acceleration;
183 eph._z_pos = gloeph.z_pos;
184 eph._z_velocity = gloeph.z_velocity;
185 eph._z_acceleration = gloeph.z_acceleration;
186 eph._health = 0; // TODO ?
187 eph._frequency_number = gloeph.frequency_number;
188
189 rtrover_putGloEphemeris(&eph);
190}
191
192//
193////////////////////////////////////////////////////////////////////////////
194void t_bncRtrover::slotNewEphGalileo(galileoephemeris /* galeph */) {
195 // not yet implemented
196}
197
198//
199////////////////////////////////////////////////////////////////////////////
200void t_bncRtrover::slotNewCorrections(QList<QString> corrList) {
201 QMutexLocker locker(&_mutex);
202
203 if (corrList.size() == 0) {
204 return;
205 }
206
207 int numOrbCorr = 0;
208 int numClkCorr = 0;
209 int numBiases = 0;
210
211 rtrover_orbCorr orbCorr[corrList.size()];
212 rtrover_clkCorr clkCorr[corrList.size()];
213 rtrover_satBiases biases[corrList.size()];
214
215 QListIterator<QString> it(corrList);
216 while (it.hasNext()) {
217 QString line = it.next();
218
219 // Check the Mountpoint
220 // --------------------
221 QStringList hlp = line.split(" ");
222 if (hlp.size() > 0) {
223 QString mountpoint = hlp[hlp.size()-1];
224 if (mountpoint != _corrMount) {
225 continue;
226 }
227 }
228
229 // Orbit and clock corrections
230 // ---------------------------
231 t_corr corr;
232 if (corr.readLine(line) == success) {
233
234 if (corr.messageType == COTYPE_GPSCOMBINED ||
235 corr.messageType == COTYPE_GLONASSCOMBINED ||
236 corr.messageType == COTYPE_GPSORBIT ||
237 corr.messageType == COTYPE_GLONASSORBIT ) {
238
239 _IODs[corr.prn] = corr.iod; // remember iod;
240
241 ++numOrbCorr;
242 rtrover_orbCorr& orbC = orbCorr[numOrbCorr-1];
243 orbC._satellite._system = corr.prn.toAscii()[0];
244 orbC._satellite._number = corr.prn.mid(1).toInt();
245 orbC._iod = corr.iod;
246 orbC._time._mjd = corr.tRao.mjd();
247 orbC._time._sec = corr.tRao.daysec();
248 for (int ii = 0; ii < 3; ii++) {
249 orbC._rao[ii] = corr.rao[ii];
250 orbC._dotRao[ii] = corr.dotRao[ii];
251 }
252 }
253
254 if (corr.messageType == COTYPE_GPSCOMBINED ||
255 corr.messageType == COTYPE_GLONASSCOMBINED ||
256 corr.messageType == COTYPE_GPSCLOCK ||
257 corr.messageType == COTYPE_GLONASSCLOCK ) {
258 ++numClkCorr;
259 rtrover_clkCorr& clkC = clkCorr[numClkCorr-1];
260 clkC._satellite._system = corr.prn.toAscii()[0];
261 clkC._satellite._number = corr.prn.mid(1).toInt();
262 if (_IODs.contains(corr.prn)) {
263 clkC._iod = _IODs[corr.prn];
264 }
265 else {
266 clkC._iod = 0;
267 }
268 clkC._time._mjd = corr.tClk.mjd();
269 clkC._time._sec = corr.tClk.daysec();
270 clkC._dClk = corr.dClk;
271 clkC._dotDClk = corr.dotDClk;
272 clkC._dotDotDClk = corr.dotDotDClk;
273 }
274 }
275
276 // Code Biases
277 // -----------
278 t_bias bias;
279 if (bias.readLine(line) == success) {
280 ++numBiases;
281 rtrover_satBiases& satBiases = biases[numBiases-1];
282 satBiases._satellite._system = bias._prn.toAscii()[0];
283 satBiases._satellite._number = bias._prn.mid(1).toInt();
284 satBiases._time._mjd = bias._time.mjd();
285 satBiases._time._sec = bias._time.daysec();
286 satBiases._numBiases = bias._value.size();
287 satBiases._biases = new rtrover_bias[satBiases._numBiases];
288 int iBias = -1;
289 QMapIterator<QByteArray, double> it(bias._value);
290 while (it.hasNext()) {
291 it.next();
292 ++iBias;
293 rtrover_bias& singleBias = satBiases._biases[iBias];
294 singleBias._rnxType3ch[0] = 'C';
295 singleBias._rnxType3ch[1] = it.key()[0];
296 singleBias._rnxType3ch[2] = it.key()[1];
297 singleBias._value = it.value();
298 }
299 }
300 }
301
302 // Pass Corrections and Biases to client library
303 // ---------------------------------------------
304 if (numOrbCorr > 0) {
305 rtrover_putOrbCorrections(numOrbCorr, orbCorr);
306 }
307 if (numClkCorr > 0) {
308 rtrover_putClkCorrections(numClkCorr, clkCorr);
309 }
310 if (numBiases > 0) {
311 rtrover_putBiases(numBiases, biases);
312 }
313
314 // Clean the memory
315 // ----------------
316 for (int ii = 0; ii < numBiases; ii++) {
317 delete [] biases[ii]._biases;
318 }
319}
320
321// Auxiliary function - copy observation data
322////////////////////////////////////////////////////////////////////////////
323void copyObs(const t_obs& obsBnc, rtrover_satObs& satObs) {
324
325 bncTime obsTime(obsBnc.GPSWeek, obsBnc.GPSWeeks);
326 satObs._satellite._system = obsBnc.satSys;
327 satObs._satellite._number = obsBnc.satNum;
328 satObs._time._mjd = obsTime.mjd();
329 satObs._time._sec = obsTime.daysec();
330 satObs._slotNumber = obsBnc.slotNum;
331
332 QMap<QByteArray, rtrover_obs> allObs;
333 for (int iEntry = 0; iEntry < GNSSENTRY_NUMBER; ++iEntry) {
334 if (obsBnc._measdata[iEntry] != 0.0) {
335 QByteArray rnxStr = obsBnc.rnxStr(iEntry).toAscii();
336 if (rnxStr.length() >= 2) {
337 if (rnxStr == "L1") {
338 rnxStr = "L1C";
339 }
340 else if (rnxStr == "L2") {
341 rnxStr = "L2P";
342 }
343 QByteArray codeType = rnxStr.mid(1);
344
345 bool existed = allObs.contains(codeType);
346 rtrover_obs& currObs = allObs[codeType];
347 if (!existed) {
348 rtrover_initObs(&currObs);
349 currObs._rnxType2ch[0] = codeType[0];
350 currObs._rnxType2ch[1] = codeType[1];
351 }
352
353 if (rnxStr[0] == 'C') {
354 currObs._code = obsBnc._measdata[iEntry];
355 currObs._codeValid = true;
356 }
357 else if (rnxStr[0] == 'L') {
358 currObs._phase = obsBnc._measdata[iEntry];
359 currObs._phaseValid = true;
360 if (codeType[0] == '1') {
361 currObs._slip = obsBnc.slipL1;
362 currObs._slipCounter = obsBnc.slip_cnt_L1;
363 }
364 else if (codeType[0] == '2') {
365 currObs._slip = obsBnc.slipL2;
366 currObs._slipCounter = obsBnc.slip_cnt_L2;
367 }
368 else if (codeType[0] == '5') {
369 currObs._slip = obsBnc.slipL5;
370 currObs._slipCounter = obsBnc.slip_cnt_L5;
371 }
372 }
373 else if (rnxStr[0] == 'D') {
374 currObs._doppler = obsBnc._measdata[iEntry];
375 currObs._dopplerValid = true;
376 }
377 else if (rnxStr[0] == 'S') {
378 currObs._snr = obsBnc._measdata[iEntry];
379 currObs._snrValid = true;
380 }
381 }
382 }
383 }
384 satObs._numObs = allObs.size();
385 satObs._obs = new rtrover_obs[satObs._numObs];
386 int iObs = -1;
387 QMapIterator<QByteArray, rtrover_obs> it(allObs);
388 while (it.hasNext()) {
389 it.next();
390 ++iObs;
391 satObs._obs[iObs] = it.value();
392 }
393}
394
395//
396////////////////////////////////////////////////////////////////////////////
397void t_bncRtrover::slotNewObs(QByteArray staID, QList<t_obs> obsList) {
398 QMutexLocker locker(&_mutex);
399
400 if (staID != _roverMount && staID != _baseMount) {
401 return;
402 }
403
404 // Store Observations into epochs
405 // ------------------------------
406 QListIterator<t_obs> it(obsList);
407 while (it.hasNext()) {
408
409 const t_obs& obsIn = it.next();
410
411 bncTime obsTime(obsIn.GPSWeek, obsIn.GPSWeeks);
412
413 // Find corresponding epoch or create a new one
414 // --------------------------------------------
415 t_epoData* epoData = 0;
416 for (unsigned ii = 0; ii < _epochs.size(); ii++) {
417 if (_epochs[ii]->_time == obsTime) {
418 epoData = _epochs[ii];
419 break;
420 }
421 }
422 if (epoData == 0) {
423 if (_epochs.size() == 0 || _epochs.back()->_time < obsTime) {
424 epoData = new t_epoData();
425 epoData->_time = obsTime;
426 _epochs.push_back(epoData);
427 }
428 else {
429 continue;
430 }
431 }
432
433 // Store observation into epoch class
434 // ----------------------------------
435 if (staID == _roverMount) {
436 epoData->_obsRover.push_back(obsIn);
437 }
438 else if (staID == _baseMount) {
439 epoData->_obsBase.push_back(obsIn);
440 }
441 }
442
443 // Process Epochs
444 // --------------
445 while (_epochs.size() > 1) {
446 const double WAITTIME = 5.0;
447 double dt = _epochs.back()->_time - _epochs.front()->_time;
448 if (dt > WAITTIME) {
449 processFrontEpoch();
450 }
451 else {
452 break;
453 }
454 }
455}
456
457//
458////////////////////////////////////////////////////////////////////////////
459void t_bncRtrover::processFrontEpoch() {
460
461 // Copy observations into rtrover_satObs structures
462 // ------------------------------------------------
463 t_epoData* frontEpoData = _epochs.front();
464 _epochs.erase(_epochs.begin());
465
466 int numSatRover = frontEpoData->_obsRover.size();
467 rtrover_satObs satObsRover[numSatRover];
468 for (int ii = 0; ii < numSatRover; ii++) {
469 const t_obs& obsBnc = frontEpoData->_obsRover[ii];
470 rtrover_satObs& satObs = satObsRover[ii];
471 copyObs(obsBnc, satObs);
472 }
473
474 int numSatBase = frontEpoData->_obsBase.size();
475 rtrover_satObs satObsBase[numSatBase];
476 for (int ii = 0; ii < numSatBase; ii++) {
477 const t_obs& obsBnc = frontEpoData->_obsBase[ii];
478 rtrover_satObs& satObs = satObsBase[ii];
479 copyObs(obsBnc, satObs);
480 }
481
482 delete frontEpoData;
483
484 // Process single epoch
485 // --------------------
486 rtrover_output output;
487 rtrover_processEpoch(numSatRover, satObsRover, numSatBase, satObsBase, &output);
488
489 // Write output
490 // ---------------------
491 _outputFile.write(output._log);
492 _outputFile.flush();
493
494 // Free memory
495 // -----------
496 rtrover_freeOutput(&output);
497 for (int ii = 0; ii < numSatRover; ii++) {
498 rtrover_satObs& satObs = satObsRover[ii];
499 delete [] satObs._obs;
500 }
501 for (int ii = 0; ii < numSatBase; ii++) {
502 rtrover_satObs& satObs = satObsBase[ii];
503 delete [] satObs._obs;
504 }
505}
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