source: ntrip/trunk/BNC/src/upload/bncrtnetuploadcaster.cpp@ 9189

Last change on this file since 9189 was 9189, checked in by stuerze, 3 years ago

small bufg fixed

File size: 38.5 KB
RevLine 
[3222]1/* -------------------------------------------------------------------------
2 * BKG NTRIP Server
3 * -------------------------------------------------------------------------
4 *
[3224]5 * Class: bncRtnetUploadCaster
[3222]6 *
7 * Purpose: Connection to NTRIP Caster
8 *
9 * Author: L. Mervart
10 *
11 * Created: 29-Mar-2011
12 *
[5662]13 * Changes:
[3222]14 *
15 * -----------------------------------------------------------------------*/
16
17#include <math.h>
[5662]18#include "bncrtnetuploadcaster.h"
[3222]19#include "bncsettings.h"
[3224]20#include "bncephuser.h"
[3222]21#include "bncclockrinex.h"
22#include "bncsp3.h"
[6812]23#include "gnss.h"
[3222]24
25using namespace std;
26
27// Constructor
28////////////////////////////////////////////////////////////////////////////
[3224]29bncRtnetUploadCaster::bncRtnetUploadCaster(const QString& mountpoint,
[8275]30 const QString& outHost, int outPort,
31 const QString& ntripVersion,
32 const QString& userName, const QString& password,
[9025]33 const QString& crdTrafo, const QString& ssrFormat, bool CoM, const QString& sp3FileName,
[6877]34 const QString& rnxFileName, int PID, int SID, int IOD, int iRow) :
[8275]35 bncUploadCaster(mountpoint, outHost, outPort, ntripVersion, userName, password, iRow, 0) {
[3224]36
[8361]37 if (!mountpoint.isEmpty()) {
38 _casterID += mountpoint;
39 }
[5130]40 if (!outHost.isEmpty()) {
[8361]41 _casterID += " " + outHost;
42 if (outPort) {
43 _casterID += ":" + QString("%1").arg(outPort, 10);
44 }
[5130]45 }
46 if (!crdTrafo.isEmpty()) {
47 _casterID += " " + crdTrafo;
48 }
49 if (!sp3FileName.isEmpty()) {
50 _casterID += " " + sp3FileName;
51 }
52 if (!rnxFileName.isEmpty()) {
53 _casterID += " " + rnxFileName;
54 }
55
[6877]56 _crdTrafo = crdTrafo;
[9025]57
[9034]58 _ssrFormat = ssrFormat;
[9128]59
[9025]60 _ssrCorr = 0;
[9033]61 if (_ssrFormat == "IGS-SSR") {
[9025]62 _ssrCorr = new SsrCorrIgs();
63 }
[9033]64 else if (_ssrFormat == "RTCM-SSR") {
[9025]65 _ssrCorr = new SsrCorrRtcm();
66 }
[9033]67
[6877]68 _CoM = CoM;
69 _PID = PID;
70 _SID = SID;
71 _IOD = IOD;
[3222]72
[3224]73 // Member that receives the ephemeris
74 // ----------------------------------
[6441]75 _ephUser = new bncEphUser(true);
[3222]76
[3272]77 bncSettings settings;
[6877]78 QString intr = settings.value("uploadIntr").toString();
[7297]79 QStringList hlp = settings.value("cmbStreams").toStringList();
[6559]80 _samplRtcmEphCorr = settings.value("uploadSamplRtcmEphCorr").toDouble();
81 if (hlp.size() > 1) { // combination stream upload
[6877]82 _samplRtcmClkCorr = settings.value("cmbSampl").toInt();
[6557]83 }
[6877]84 else { // single stream upload or sp3 file generation
85 _samplRtcmClkCorr = 5; // default
86 }
87 int samplClkRnx = settings.value("uploadSamplClkRnx").toInt();
88 int samplSp3 = settings.value("uploadSamplSp3").toInt() * 60;
[4174]89
90 if (_samplRtcmEphCorr == 0.0) {
[3753]91 _usedEph = 0;
92 }
93 else {
[6442]94 _usedEph = new QMap<QString, const t_eph*>;
[3753]95 }
[3272]96
[3222]97 // RINEX writer
98 // ------------
99 if (!rnxFileName.isEmpty()) {
[4174]100 _rnx = new bncClockRinex(rnxFileName, intr, samplClkRnx);
[3222]101 }
102 else {
103 _rnx = 0;
104 }
105
106 // SP3 writer
107 // ----------
108 if (!sp3FileName.isEmpty()) {
[4174]109 _sp3 = new bncSP3(sp3FileName, intr, samplSp3);
[3222]110 }
111 else {
112 _sp3 = 0;
113 }
114
115 // Set Transformation Parameters
116 // -----------------------------
[8405]117 // Transformation Parameters from ITRF2014 to ETRF2000
[8720]118 // EUREF Technical Note 1 Relationship and Transformation between the ITRF and ETRF
119 // Zuheir Altamimi, June 28, 2018
[6877]120 if (_crdTrafo == "ETRF2000") {
[8720]121 _dx = 0.0547;
122 _dy = 0.0522;
123 _dz = -0.0741;
124
[8094]125 _dxr = 0.0001;
126 _dyr = 0.0001;
[8405]127 _dzr = -0.0019;
[8720]128
129 _ox = 0.001701;
130 _oy = 0.010290;
131 _oz = -0.016632;
132
133 _oxr = 0.000081;
134 _oyr = 0.000490;
135 _ozr = -0.000729;
136
137 _sc = 2.12;
[8405]138 _scr = 0.11;
[8720]139
140 _t0 = 2010.0;
[3222]141 }
[8094]142 // Transformation Parameters from ITRF2014 to GDA2020 (Ryan Ruddick, GA)
143 else if (_crdTrafo == "GDA2020") {
144 _dx = 0.0;
145 _dy = 0.0;
146 _dz = 0.0;
[8720]147
[8094]148 _dxr = 0.0;
149 _dyr = 0.0;
150 _dzr = 0.0;
[8720]151
[8094]152 _ox = 0.0;
153 _oy = 0.0;
154 _oz = 0.0;
[8720]155
[8094]156 _oxr = 0.00150379;
157 _oyr = 0.00118346;
158 _ozr = 0.00120716;
[8720]159
[8094]160 _sc = 0.0;
161 _scr = 0.0;
[8720]162
[8094]163 _t0 = 2020.0;
[3222]164 }
[8962]165 // Transformation Parameters from IGb14 to SIRGAS2000 (Thanks to Sonia Costa, BRA)
166 // June 29 2020: TX:-0.0027 m TY:-0.0025 m TZ:-0.0042 m SCL:1.20 (ppb) no rotations and no rates.*/
[8094]167 else if (_crdTrafo == "SIRGAS2000") {
[8962]168 _dx = -0.0027;
169 _dy = -0.0025;
170 _dz = -0.0042;
[8720]171
[8094]172 _dxr = 0.0000;
173 _dyr = 0.0000;
174 _dzr = 0.0000;
[8720]175
176 _ox = 0.000000;
177 _oy = 0.000000;
178 _oz = 0.000000;
179
[8094]180 _oxr = 0.000000;
181 _oyr = 0.000000;
182 _ozr = 0.000000;
[8720]183
[8962]184 _sc = 1.20000;
[8720]185 _scr = 0.00000;
186 _t0 = 2000.0;
[3222]187 }
[8405]188 // Transformation Parameters from ITRF2014 to DREF91
[5347]189 else if (_crdTrafo == "DREF91") {
[8720]190 _dx = 0.0547;
191 _dy = 0.0522;
192 _dz = -0.0741;
193
[8094]194 _dxr = 0.0001;
195 _dyr = 0.0001;
[8405]196 _dzr = -0.0019;
[8720]197 // ERTF200 + rotation parameters (ETRF200 => DREF91)
198 _ox = 0.001701 + 0.000658;
199 _oy = 0.010290 - 0.000208;
200 _oz = -0.016632 + 0.000755;
201
202 _oxr = 0.000081;
203 _oyr = 0.000490;
204 _ozr = -0.000729;
205
206 _sc = 2.12;
[8405]207 _scr = 0.11;
[8720]208
209 _t0 = 2010.0;
[5340]210 }
[3222]211 else if (_crdTrafo == "Custom") {
[6877]212 _dx = settings.value("trafo_dx").toDouble();
213 _dy = settings.value("trafo_dy").toDouble();
214 _dz = settings.value("trafo_dz").toDouble();
[3222]215 _dxr = settings.value("trafo_dxr").toDouble();
216 _dyr = settings.value("trafo_dyr").toDouble();
217 _dzr = settings.value("trafo_dzr").toDouble();
[6877]218 _ox = settings.value("trafo_ox").toDouble();
219 _oy = settings.value("trafo_oy").toDouble();
220 _oz = settings.value("trafo_oz").toDouble();
[3222]221 _oxr = settings.value("trafo_oxr").toDouble();
222 _oyr = settings.value("trafo_oyr").toDouble();
223 _ozr = settings.value("trafo_ozr").toDouble();
[6877]224 _sc = settings.value("trafo_sc").toDouble();
[3222]225 _scr = settings.value("trafo_scr").toDouble();
[6877]226 _t0 = settings.value("trafo_t0").toDouble();
[3222]227 }
228}
229
230// Destructor
231////////////////////////////////////////////////////////////////////////////
[3224]232bncRtnetUploadCaster::~bncRtnetUploadCaster() {
[3222]233 if (isRunning()) {
234 wait();
235 }
236 delete _rnx;
237 delete _sp3;
238 delete _ephUser;
[3753]239 delete _usedEph;
[9025]240 delete _ssrCorr;
[3222]241}
242
[5662]243//
[3222]244////////////////////////////////////////////////////////////////////////////
[9032]245void bncRtnetUploadCaster::decodeRtnetStream(char* buffer, int bufLen) {
246
[3222]247 QMutexLocker locker(&_mutex);
248
[3230]249 // Append to internal buffer
250 // -------------------------
[3222]251 _rtnetStreamBuffer.append(QByteArray(buffer, bufLen));
[3230]252
253 // Select buffer part that contains last epoch
254 // -------------------------------------------
255 QStringList lines;
256 int iEpoBeg = _rtnetStreamBuffer.lastIndexOf('*'); // begin of last epoch
257 if (iEpoBeg == -1) {
[3226]258 _rtnetStreamBuffer.clear();
259 return;
[3222]260 }
[8755]261 int iEpoBegEarlier = _rtnetStreamBuffer.indexOf('*');
262 if (iEpoBegEarlier != -1 && iEpoBegEarlier < iEpoBeg) { // are there two epoch lines in buffer?
263 _rtnetStreamBuffer = _rtnetStreamBuffer.mid(iEpoBegEarlier);
264 }
[6896]265 else {
266 _rtnetStreamBuffer = _rtnetStreamBuffer.mid(iEpoBeg);
267 }
[8755]268 int iEpoEnd = _rtnetStreamBuffer.lastIndexOf("EOE"); // end of last epoch
[3230]269 if (iEpoEnd == -1) {
270 return;
271 }
[8755]272
273 while (_rtnetStreamBuffer.count('*') > 1) { // is there more than 1 epoch line in buffer?
274 QString rtnetStreamBuffer = _rtnetStreamBuffer.mid(1);
275 int nextEpoch = rtnetStreamBuffer.indexOf('*');
[8982]276 if (nextEpoch != -1 && nextEpoch < iEpoEnd) {
[8755]277 _rtnetStreamBuffer = _rtnetStreamBuffer.mid(nextEpoch);
278 }
[8761]279 else if (nextEpoch != -1 && nextEpoch >= iEpoEnd) {
280 break;
281 }
[3226]282 }
[3222]283
[8904]284 lines = _rtnetStreamBuffer.left(iEpoEnd).split('\n',
[8755]285 QString::SkipEmptyParts);
286 _rtnetStreamBuffer = _rtnetStreamBuffer.mid(iEpoEnd + 3);
287
[3226]288 if (lines.size() < 2) {
[3222]289 return;
290 }
291
[3226]292 // Read first line (with epoch time)
293 // ---------------------------------
[8204]294 QTextStream in(lines[0].toLatin1());
[3226]295 QString hlp;
[6877]296 int year, month, day, hour, min;
297 double sec;
[3226]298 in >> hlp >> year >> month >> day >> hour >> min >> sec;
[6877]299 bncTime epoTime;
300 epoTime.set(year, month, day, hour, min, sec);
[3226]301
[6877]302 emit(newMessage(
303 "bncRtnetUploadCaster: decode " + QByteArray(epoTime.datestr().c_str())
304 + " " + QByteArray(epoTime.timestr().c_str()) + " "
[8204]305 + _casterID.toLatin1(), false));
[4808]306
[9025]307 struct SsrCorr::ClockOrbit co;
[3222]308 memset(&co, 0, sizeof(co));
[8991]309 co.EpochTime[CLOCKORBIT_SATGPS] = static_cast<int>(epoTime.gpssec());
[9025]310 if (_ssrFormat == "RTCM-SSR") {
311 double gt = epoTime.gpssec() + 3 * 3600 - gnumleap(year, month, day);
312 co.EpochTime[CLOCKORBIT_SATGLONASS] = static_cast<int>(fmod(gt, 86400.0));
313 }
314 else if (_ssrFormat == "IGS-SSR") {
315 co.EpochTime[CLOCKORBIT_SATGLONASS] = static_cast<int>(epoTime.gpssec());
316 }
[6846]317 co.EpochTime[CLOCKORBIT_SATGALILEO] = static_cast<int>(epoTime.gpssec());
[9025]318 co.EpochTime[CLOCKORBIT_SATQZSS] = static_cast<int>(epoTime.gpssec());
319 co.EpochTime[CLOCKORBIT_SATSBAS] = static_cast<int>(epoTime.gpssec());
320 if (_ssrFormat == "RTCM-SSR") {
321 co.EpochTime[CLOCKORBIT_SATBDS] = static_cast<int>(epoTime.bdssec());
322 }
323 else if (_ssrFormat == "IGS-SSR") {
324 co.EpochTime[CLOCKORBIT_SATBDS] = static_cast<int>(epoTime.gpssec());
325 }
326 co.Supplied[_ssrCorr->COBOFS_CLOCK] = 1;
327 co.Supplied[_ssrCorr->COBOFS_ORBIT] = 1;
328 co.SatRefDatum = _ssrCorr->DATUM_ITRF; // ToDo: to decode from RTNET format
329 co.SSRIOD = _IOD;
[6850]330 co.SSRProviderID = _PID; // 256 .. BKG, 257 ... EUREF
331 co.SSRSolutionID = _SID;
[5662]332
[9025]333 struct SsrCorr::CodeBias bias;
[3222]334 memset(&bias, 0, sizeof(bias));
[9025]335 bias.EpochTime[CLOCKORBIT_SATGPS] = co.EpochTime[CLOCKORBIT_SATGPS];
[5666]336 bias.EpochTime[CLOCKORBIT_SATGLONASS] = co.EpochTime[CLOCKORBIT_SATGLONASS];
[6846]337 bias.EpochTime[CLOCKORBIT_SATGALILEO] = co.EpochTime[CLOCKORBIT_SATGALILEO];
[9025]338 bias.EpochTime[CLOCKORBIT_SATQZSS] = co.EpochTime[CLOCKORBIT_SATQZSS];
339 bias.EpochTime[CLOCKORBIT_SATSBAS] = co.EpochTime[CLOCKORBIT_SATSBAS];
340 bias.EpochTime[CLOCKORBIT_SATBDS] = co.EpochTime[CLOCKORBIT_SATBDS];
341 bias.SSRIOD = _IOD;
[6850]342 bias.SSRProviderID = _PID;
343 bias.SSRSolutionID = _SID;
[5662]344
[9025]345 struct SsrCorr::PhaseBias phasebias;
[6850]346 memset(&phasebias, 0, sizeof(phasebias));
[8017]347 unsigned int dispersiveBiasConsistenyIndicator = 0;
348 unsigned int mwConsistencyIndicator = 0;
[9025]349 phasebias.EpochTime[CLOCKORBIT_SATGPS] = co.EpochTime[CLOCKORBIT_SATGPS];
[6850]350 phasebias.EpochTime[CLOCKORBIT_SATGLONASS] = co.EpochTime[CLOCKORBIT_SATGLONASS];
351 phasebias.EpochTime[CLOCKORBIT_SATGALILEO] = co.EpochTime[CLOCKORBIT_SATGALILEO];
[9025]352 phasebias.EpochTime[CLOCKORBIT_SATQZSS] = co.EpochTime[CLOCKORBIT_SATQZSS];
353 phasebias.EpochTime[CLOCKORBIT_SATSBAS] = co.EpochTime[CLOCKORBIT_SATSBAS];
354 phasebias.EpochTime[CLOCKORBIT_SATBDS] = co.EpochTime[CLOCKORBIT_SATBDS];
355 phasebias.SSRIOD = _IOD;
[6850]356 phasebias.SSRProviderID = _PID;
357 phasebias.SSRSolutionID = _SID;
358
[9025]359 struct SsrCorr::VTEC vtec;
[6860]360 memset(&vtec, 0, sizeof(vtec));
361 vtec.EpochTime = static_cast<int>(epoTime.gpssec());
[9025]362 vtec.SSRIOD = _IOD;
[6860]363 vtec.SSRProviderID = _PID;
364 vtec.SSRSolutionID = _SID;
365
[4753]366 // Default Update Interval
367 // -----------------------
[4754]368 int clkUpdInd = 2; // 5 sec
369 int ephUpdInd = clkUpdInd; // default
[6557]370
[6559]371 if (_samplRtcmClkCorr > 5.0 && _samplRtcmEphCorr <= 5.0) { // combined orb and clock
372 ephUpdInd = determineUpdateInd(_samplRtcmClkCorr);
[4754]373 }
[6559]374 if (_samplRtcmClkCorr > 5.0) {
[6557]375 clkUpdInd = determineUpdateInd(_samplRtcmClkCorr);
[4754]376 }
[6559]377 if (_samplRtcmEphCorr > 5.0) {
378 ephUpdInd = determineUpdateInd(_samplRtcmEphCorr);
379 }
[4753]380
[6877]381 co.UpdateInterval = clkUpdInd;
[9124]382 bias.UpdateInterval = ephUpdInd;
383 phasebias.UpdateInterval = ephUpdInd;
[4753]384
[3226]385 for (int ii = 1; ii < lines.size(); ii++) {
[6877]386 QString key; // prn or key VTEC, IND (phase bias indicators)
[8679]387 double rtnUra = 0.0; // [m]
388 ColumnVector rtnAPC; rtnAPC.ReSize(3); rtnAPC = 0.0; // [m, m, m]
389 ColumnVector rtnVel; rtnVel.ReSize(3); rtnVel = 0.0; // [m/s, m/s, m/s]
390 ColumnVector rtnCoM; rtnCoM.ReSize(3); rtnCoM = 0.0; // [m, m, m]
391 ColumnVector rtnClk; rtnClk.ReSize(3); rtnClk = 0.0; // [m, m/s, m/s²]
392 ColumnVector rtnClkSig; rtnClkSig.ReSize(3); rtnClkSig = 0.0; // [m, m/s, m/s²]
[6877]393 t_prn prn;
[5662]394
[8204]395 QTextStream in(lines[ii].toLatin1());
[3222]396
[6876]397 in >> key;
[3222]398
[6860]399 // non-satellite specific parameters
[6877]400 if (key.contains("IND", Qt::CaseSensitive)) {
[8017]401 in >> dispersiveBiasConsistenyIndicator >> mwConsistencyIndicator;
[6860]402 continue;
403 }
[6893]404 // non-satellite specific parameters
[6876]405 if (key.contains("VTEC", Qt::CaseSensitive)) {
[6897]406 double ui;
407 in >> ui >> vtec.NumLayers;
408 vtec.UpdateInterval = (unsigned int) determineUpdateInd(ui);
[6860]409 for (unsigned ll = 0; ll < vtec.NumLayers; ll++) {
410 int dummy;
411 in >> dummy >> vtec.Layers[ll].Degree >> vtec.Layers[ll].Order
[6877]412 >> vtec.Layers[ll].Height;
[6879]413 for (unsigned iDeg = 0; iDeg <= vtec.Layers[ll].Degree; iDeg++) {
414 for (unsigned iOrd = 0; iOrd <= vtec.Layers[ll].Order; iOrd++) {
[6860]415 in >> vtec.Layers[ll].Cosinus[iDeg][iOrd];
416 }
417 }
[6879]418 for (unsigned iDeg = 0; iDeg <= vtec.Layers[ll].Degree; iDeg++) {
419 for (unsigned iOrd = 0; iOrd <= vtec.Layers[ll].Order; iOrd++) {
[6860]420 in >> vtec.Layers[ll].Sinus[iDeg][iOrd];
421 }
422 }
423 }
424 continue;
425 }
[6877]426 // satellite specific parameters
[8204]427 char sys = key.mid(0, 1).at(0).toLatin1();
[6877]428 int number = key.mid(1, 2).toInt();
429 int flags = 0;
430 if (sys == 'E') { // I/NAV
431 flags = 1;
432 }
[6876]433 prn.set(sys, number, flags);
434 QString prnInternalStr = QString::fromStdString(prn.toInternalString());
[6877]435 QString prnStr = QString::fromStdString(prn.toString());
436
[6876]437 const t_eph* ephLast = _ephUser->ephLast(prnInternalStr);
438 const t_eph* ephPrev = _ephUser->ephPrev(prnInternalStr);
[6877]439 const t_eph* eph = ephLast;
[6442]440 if (eph) {
[3754]441
[4098]442 // Use previous ephemeris if the last one is too recent
443 // ----------------------------------------------------
444 const int MINAGE = 60; // seconds
[6877]445 if (ephPrev && eph->receptDateTime().isValid()
446 && eph->receptDateTime().secsTo(currentDateAndTimeGPS()) < MINAGE) {
[6442]447 eph = ephPrev;
[4098]448 }
[3754]449
[3753]450 // Make sure the clock messages refer to same IOD as orbit messages
451 // ----------------------------------------------------------------
452 if (_usedEph) {
[4174]453 if (fmod(epoTime.gpssec(), _samplRtcmEphCorr) == 0.0) {
[6876]454 (*_usedEph)[prnInternalStr] = eph;
[3753]455 }
456 else {
457 eph = 0;
[6876]458 if (_usedEph->contains(prnInternalStr)) {
459 const t_eph* usedEph = _usedEph->value(prnInternalStr);
[6877]460 if (usedEph == ephLast) {
[6442]461 eph = ephLast;
[3753]462 }
[6442]463 else if (usedEph == ephPrev) {
464 eph = ephPrev;
[3753]465 }
466 }
467 }
468 }
469 }
470
[8679]471 if (eph &&
472 eph->checkState() != t_eph::bad &&
473 eph->checkState() != t_eph::unhealthy &&
474 eph->checkState() != t_eph::outdated) {
[5503]475 QMap<QString, double> codeBiases;
[6851]476 QList<phaseBiasSignal> phaseBiasList;
477 phaseBiasesSat pbSat;
[9128]478 _phaseBiasInformationDecoded = false;
[5503]479
[4991]480 while (true) {
481 QString key;
[6877]482 int numVal = 0;
[9032]483 in >> key;
[4991]484 if (in.status() != QTextStream::Ok) {
485 break;
486 }
[6877]487 if (key == "APC") {
[6850]488 in >> numVal;
[8679]489 rtnAPC.ReSize(3); rtnAPC = 0.0;
[6850]490 for (int ii = 0; ii < numVal; ii++) {
491 in >> rtnAPC[ii];
492 }
[4991]493 }
[8483]494 else if (key == "Ura") {
[6850]495 in >> numVal;
[6877]496 if (numVal == 1)
[8483]497 in >> rtnUra;
[4991]498 }
[8483]499 else if (key == "Clk") {
500 in >> numVal;
[8679]501 rtnClk.ReSize(3); rtnClk = 0.0;
[8483]502 for (int ii = 0; ii < numVal; ii++) {
503 in >> rtnClk[ii];
504 }
505 }
506 else if (key == "ClkSig") {
507 in >> numVal;
[8679]508 rtnClkSig.ReSize(3); rtnClkSig = 0.0;
[8483]509 for (int ii = 0; ii < numVal; ii++) {
510 in >> rtnClkSig[ii];
511 }
512 }
[4991]513 else if (key == "Vel") {
[6850]514 in >> numVal;
[8679]515 rtnVel.ReSize(3); rtnVel = 0.0;
[6850]516 for (int ii = 0; ii < numVal; ii++) {
517 in >> rtnVel[ii];
518 }
[4991]519 }
520 else if (key == "CoM") {
[6850]521 in >> numVal;
[8679]522 rtnCoM.ReSize(3); rtnCoM = 0.0;
[6850]523 for (int ii = 0; ii < numVal; ii++) {
524 in >> rtnCoM[ii];
525 }
[4991]526 }
[5503]527 else if (key == "CodeBias") {
[6850]528 in >> numVal;
[5503]529 for (int ii = 0; ii < numVal; ii++) {
530 QString type;
[6877]531 double value;
[5503]532 in >> type >> value;
533 codeBiases[type] = value;
534 }
535 }
[6857]536 else if (key == "YawAngle") {
[9128]537 _phaseBiasInformationDecoded = true;
[8017]538 in >> numVal >> pbSat.yawAngle;
539 if (pbSat.yawAngle < 0.0) {
540 pbSat.yawAngle += (2*M_PI);
[6975]541 }
[8017]542 else if (pbSat.yawAngle > 2*M_PI) {
543 pbSat.yawAngle -= (2*M_PI);
[6975]544 }
[6851]545 }
[6857]546 else if (key == "YawRate") {
[9128]547 _phaseBiasInformationDecoded = true;
[8017]548 in >> numVal >> pbSat.yawRate;
[6851]549 }
[6850]550 else if (key == "PhaseBias") {
[9128]551 _phaseBiasInformationDecoded = true;
[6850]552 in >> numVal;
553 for (int ii = 0; ii < numVal; ii++) {
[6851]554 phaseBiasSignal pb;
[8017]555 in >> pb.type >> pb.bias >> pb.integerIndicator
556 >> pb.wlIndicator >> pb.discontinuityCounter;
[6851]557 phaseBiasList.append(pb);
[6850]558 }
559 }
[4991]560 else {
[8689]561 in >> numVal;
562 for (int ii = 0; ii < numVal; ii++) {
563 double dummy;
564 in >> dummy;
565 }
[8542]566 emit(newMessage(" RTNET format error: "
567 + lines[ii].toLatin1(), false));
[4991]568 }
[5662]569 }
[6850]570
[9025]571 struct SsrCorr::ClockOrbit::SatData* sd = 0;
[6877]572 if (prn.system() == 'G') {
[5666]573 sd = co.Sat + co.NumberOfSat[CLOCKORBIT_SATGPS];
574 ++co.NumberOfSat[CLOCKORBIT_SATGPS];
[3222]575 }
[6876]576 else if (prn.system() == 'R') {
[6877]577 sd = co.Sat + CLOCKORBIT_NUMGPS + co.NumberOfSat[CLOCKORBIT_SATGLONASS];
[5666]578 ++co.NumberOfSat[CLOCKORBIT_SATGLONASS];
[3222]579 }
[6876]580 else if (prn.system() == 'E') {
[6844]581 sd = co.Sat + CLOCKORBIT_NUMGPS + CLOCKORBIT_NUMGLONASS
[8967]582 + co.NumberOfSat[CLOCKORBIT_SATGALILEO];
[6844]583 ++co.NumberOfSat[CLOCKORBIT_SATGALILEO];
584 }
[6876]585 else if (prn.system() == 'J') {
[6877]586 sd = co.Sat + CLOCKORBIT_NUMGPS + CLOCKORBIT_NUMGLONASS
[8967]587 + CLOCKORBIT_NUMGALILEO
[8982]588 + co.NumberOfSat[CLOCKORBIT_SATQZSS];
[6844]589 ++co.NumberOfSat[CLOCKORBIT_SATQZSS];
590 }
[8980]591 else if (prn.system() == 'S') {
592 sd = co.Sat + CLOCKORBIT_NUMGPS + CLOCKORBIT_NUMGLONASS
593 + CLOCKORBIT_NUMGALILEO + CLOCKORBIT_NUMQZSS
594 + co.NumberOfSat[CLOCKORBIT_SATSBAS];
595 ++co.NumberOfSat[CLOCKORBIT_SATSBAS];
596 }
[8967]597 else if (prn.system() == 'C') {
598 sd = co.Sat + CLOCKORBIT_NUMGPS + CLOCKORBIT_NUMGLONASS
[8980]599 + CLOCKORBIT_NUMGALILEO + CLOCKORBIT_NUMQZSS
600 + CLOCKORBIT_NUMSBAS
601 + co.NumberOfSat[CLOCKORBIT_SATBDS];
[8967]602 ++co.NumberOfSat[CLOCKORBIT_SATBDS];
603 }
[3222]604 if (sd) {
605 QString outLine;
[8542]606 t_irc irc = processSatellite(eph, epoTime.gpsw(), epoTime.gpssec(), prnStr, rtnAPC,
607 rtnUra, rtnClk, rtnVel, rtnCoM, rtnClkSig, sd, outLine);
[9179]608 if (irc != success) {/*
[8679]609 // very few cases: check states bad and unhealthy are excluded earlier
610 sd->ID = prnStr.mid(1).toInt(); // to prevent G00, R00 entries
611 sd->IOD = eph->IOD();
[9179]612 */
613 continue;
[8542]614 }
[3222]615 }
[5662]616
[6850]617 // Code Biases
618 // -----------
[9025]619 struct SsrCorr::CodeBias::BiasSat* biasSat = 0;
[6877]620 if (!codeBiases.isEmpty()) {
621 if (prn.system() == 'G') {
622 biasSat = bias.Sat + bias.NumberOfSat[CLOCKORBIT_SATGPS];
623 ++bias.NumberOfSat[CLOCKORBIT_SATGPS];
624 }
625 else if (prn.system() == 'R') {
626 biasSat = bias.Sat + CLOCKORBIT_NUMGPS
[8967]627 + bias.NumberOfSat[CLOCKORBIT_SATGLONASS];
[6877]628 ++bias.NumberOfSat[CLOCKORBIT_SATGLONASS];
629 }
630 else if (prn.system() == 'E') {
631 biasSat = bias.Sat + CLOCKORBIT_NUMGPS + CLOCKORBIT_NUMGLONASS
[8982]632 + bias.NumberOfSat[CLOCKORBIT_SATGALILEO];
[6877]633 ++bias.NumberOfSat[CLOCKORBIT_SATGALILEO];
634 }
635 else if (prn.system() == 'J') {
636 biasSat = bias.Sat + CLOCKORBIT_NUMGPS + CLOCKORBIT_NUMGLONASS
[8967]637 + CLOCKORBIT_NUMGALILEO
[8982]638 + bias.NumberOfSat[CLOCKORBIT_SATQZSS];
[6877]639 ++bias.NumberOfSat[CLOCKORBIT_SATQZSS];
640 }
641 else if (prn.system() == 'S') {
642 biasSat = bias.Sat + CLOCKORBIT_NUMGPS + CLOCKORBIT_NUMGLONASS
[8982]643 + CLOCKORBIT_NUMGALILEO + CLOCKORBIT_NUMQZSS
[8967]644 + bias.NumberOfSat[CLOCKORBIT_SATSBAS];
[6877]645 ++bias.NumberOfSat[CLOCKORBIT_SATSBAS];
646 }
[8982]647 else if (prn.system() == 'C') {
648 biasSat = bias.Sat + CLOCKORBIT_NUMGPS + CLOCKORBIT_NUMGLONASS
[8983]649 + CLOCKORBIT_NUMGALILEO + CLOCKORBIT_NUMQZSS
[8982]650 + CLOCKORBIT_NUMSBAS
651 + bias.NumberOfSat[CLOCKORBIT_SATBDS];
652 ++bias.NumberOfSat[CLOCKORBIT_SATBDS];
653 }
[3222]654 }
[5662]655
[3222]656 if (biasSat) {
[6876]657 biasSat->ID = prn.number();
[5503]658 biasSat->NumberOfCodeBiases = 0;
[9025]659 QMapIterator<QString, double> it(codeBiases);
660 while (it.hasNext()) {
661 it.next();
662 int ii = biasSat->NumberOfCodeBiases;
663 if (ii >= CLOCKORBIT_NUMBIAS)
664 break;
665 SsrCorr::CodeType type = _ssrCorr->rnxTypeToCodeType(prn.system(), it.key().toStdString());
666 if (type != _ssrCorr->RESERVED) {
667 biasSat->NumberOfCodeBiases += 1;
668 biasSat->Biases[ii].Type = type;
669 biasSat->Biases[ii].Bias = it.value();
[5503]670 }
[3222]671 }
672 }
[8944]673
[6850]674 // Phase Biases
675 // ------------
[9025]676 struct SsrCorr::PhaseBias::PhaseBiasSat* phasebiasSat = 0;
[8986]677 if (prn.system() == 'G') {
678 phasebiasSat = phasebias.Sat
679 + phasebias.NumberOfSat[CLOCKORBIT_SATGPS];
680 ++phasebias.NumberOfSat[CLOCKORBIT_SATGPS];
681 }
682 else if (prn.system() == 'R') {
683 phasebiasSat = phasebias.Sat + CLOCKORBIT_NUMGPS
684 + phasebias.NumberOfSat[CLOCKORBIT_SATGLONASS];
685 ++phasebias.NumberOfSat[CLOCKORBIT_SATGLONASS];
686 }
687 else if (prn.system() == 'E') {
688 phasebiasSat = phasebias.Sat + CLOCKORBIT_NUMGPS + CLOCKORBIT_NUMGLONASS
689 + phasebias.NumberOfSat[CLOCKORBIT_SATGALILEO];
690 ++phasebias.NumberOfSat[CLOCKORBIT_SATGALILEO];
691 }
692 else if (prn.system() == 'J') {
693 phasebiasSat = phasebias.Sat + CLOCKORBIT_NUMGPS + CLOCKORBIT_NUMGLONASS
694 + CLOCKORBIT_NUMGALILEO
695 + phasebias.NumberOfSat[CLOCKORBIT_SATQZSS];
696 ++phasebias.NumberOfSat[CLOCKORBIT_SATQZSS];
697 }
698 else if (prn.system() == 'S') {
699 phasebiasSat = phasebias.Sat + CLOCKORBIT_NUMGPS + CLOCKORBIT_NUMGLONASS
700 + CLOCKORBIT_NUMGALILEO + CLOCKORBIT_NUMQZSS
701 + phasebias.NumberOfSat[CLOCKORBIT_SATSBAS];
702 ++phasebias.NumberOfSat[CLOCKORBIT_SATSBAS];
703 }
704 else if (prn.system() == 'C') {
705 phasebiasSat = phasebias.Sat + CLOCKORBIT_NUMGPS + CLOCKORBIT_NUMGLONASS
706 + CLOCKORBIT_NUMGALILEO + CLOCKORBIT_NUMQZSS
707 + CLOCKORBIT_NUMSBAS
708 + phasebias.NumberOfSat[CLOCKORBIT_SATBDS];
709 ++phasebias.NumberOfSat[CLOCKORBIT_SATBDS];
710 }
[6850]711
[9128]712 if (phasebiasSat && _phaseBiasInformationDecoded) {
[8017]713 phasebias.DispersiveBiasConsistencyIndicator = dispersiveBiasConsistenyIndicator;
714 phasebias.MWConsistencyIndicator = mwConsistencyIndicator;
[6876]715 phasebiasSat->ID = prn.number();
[6850]716 phasebiasSat->NumberOfPhaseBiases = 0;
[8017]717 phasebiasSat->YawAngle = pbSat.yawAngle;
718 phasebiasSat->YawRate = pbSat.yawRate;
[9025]719 QListIterator<phaseBiasSignal> it(phaseBiasList);
720 while (it.hasNext()) {
721 const phaseBiasSignal &pbSig = it.next();
722 int ii = phasebiasSat->NumberOfPhaseBiases;
723 if (ii >= CLOCKORBIT_NUMBIAS)
724 break;
725 SsrCorr::CodeType type = _ssrCorr->rnxTypeToCodeType(prn.system(), pbSig.type.toStdString());
726 if (type != _ssrCorr->RESERVED) {
727 phasebiasSat->NumberOfPhaseBiases += 1;
728 phasebiasSat->Biases[ii].Type = type;
729 phasebiasSat->Biases[ii].Bias = pbSig.bias;
730 phasebiasSat->Biases[ii].SignalIntegerIndicator = pbSig.integerIndicator;
731 phasebiasSat->Biases[ii].SignalsWideLaneIntegerIndicator = pbSig.wlIndicator;
732 phasebiasSat->Biases[ii].SignalDiscontinuityCounter = pbSig.discontinuityCounter;
[6850]733 }
734 }
735 }
[3222]736 }
737 }
[3227]738
[5662]739 QByteArray hlpBufferCo;
[3493]740
741 // Orbit and Clock Corrections together
742 // ------------------------------------
[4174]743 if (_samplRtcmEphCorr == 0.0) {
[6877]744 if (co.NumberOfSat[CLOCKORBIT_SATGPS] > 0
745 || co.NumberOfSat[CLOCKORBIT_SATGLONASS] > 0
746 || co.NumberOfSat[CLOCKORBIT_SATGALILEO] > 0
747 || co.NumberOfSat[CLOCKORBIT_SATQZSS] > 0
748 || co.NumberOfSat[CLOCKORBIT_SATSBAS] > 0
749 || co.NumberOfSat[CLOCKORBIT_SATBDS] > 0) {
[9189]750 char obuffer[CLOCKORBIT_BUFFERSIZE] = {0};
[9025]751 int len = _ssrCorr->MakeClockOrbit(&co, _ssrCorr->COTYPE_AUTO, 0, obuffer, sizeof(obuffer));
[3493]752 if (len > 0) {
753 hlpBufferCo = QByteArray(obuffer, len);
754 }
[3222]755 }
756 }
[3493]757
758 // Orbit and Clock Corrections separately
759 // --------------------------------------
760 else {
[5666]761 if (co.NumberOfSat[CLOCKORBIT_SATGPS] > 0) {
[9189]762 char obuffer[CLOCKORBIT_BUFFERSIZE] = {0};
[4174]763 if (fmod(epoTime.gpssec(), _samplRtcmEphCorr) == 0.0) {
[4754]764 co.UpdateInterval = ephUpdInd;
[9025]765 int len1 = _ssrCorr->MakeClockOrbit(&co, _ssrCorr->COTYPE_GPSORBIT, 1, obuffer,
[6877]766 sizeof(obuffer));
[4754]767 co.UpdateInterval = clkUpdInd;
[3493]768 if (len1 > 0) {
769 hlpBufferCo += QByteArray(obuffer, len1);
770 }
771 }
[8808]772 int mmsg = (co.NumberOfSat[CLOCKORBIT_SATGLONASS] > 0 ||
773 co.NumberOfSat[CLOCKORBIT_SATGALILEO] > 0 ||
774 co.NumberOfSat[CLOCKORBIT_SATQZSS] > 0 ||
775 co.NumberOfSat[CLOCKORBIT_SATSBAS] > 0 ||
776 co.NumberOfSat[CLOCKORBIT_SATBDS] > 0 ) ? 1 : 0;
[9025]777 int len2 = _ssrCorr->MakeClockOrbit(&co, _ssrCorr->COTYPE_GPSCLOCK, mmsg, obuffer,
[6877]778 sizeof(obuffer));
[3493]779 if (len2 > 0) {
780 hlpBufferCo += QByteArray(obuffer, len2);
781 }
782 }
[5666]783 if (co.NumberOfSat[CLOCKORBIT_SATGLONASS] > 0) {
[9189]784 char obuffer[CLOCKORBIT_BUFFERSIZE] = {0};
[4174]785 if (fmod(epoTime.gpssec(), _samplRtcmEphCorr) == 0.0) {
[4754]786 co.UpdateInterval = ephUpdInd;
[9025]787 int len1 = _ssrCorr->MakeClockOrbit(&co, _ssrCorr->COTYPE_GLONASSORBIT, 1, obuffer,
[6877]788 sizeof(obuffer));
[4754]789 co.UpdateInterval = clkUpdInd;
[3493]790 if (len1 > 0) {
791 hlpBufferCo += QByteArray(obuffer, len1);
792 }
793 }
[8808]794 int mmsg = (co.NumberOfSat[CLOCKORBIT_SATGALILEO] > 0 ||
795 co.NumberOfSat[CLOCKORBIT_SATQZSS] > 0 ||
796 co.NumberOfSat[CLOCKORBIT_SATSBAS] > 0 ||
797 co.NumberOfSat[CLOCKORBIT_SATBDS] > 0 ) ? 1 : 0;
[9025]798 int len2 = _ssrCorr->MakeClockOrbit(&co, _ssrCorr->COTYPE_GLONASSCLOCK, mmsg, obuffer,
[6877]799 sizeof(obuffer));
[3493]800 if (len2 > 0) {
801 hlpBufferCo += QByteArray(obuffer, len2);
802 }
803 }
[6844]804 if (co.NumberOfSat[CLOCKORBIT_SATGALILEO] > 0) {
[9189]805 char obuffer[CLOCKORBIT_BUFFERSIZE] = {0};
[6844]806 if (fmod(epoTime.gpssec(), _samplRtcmEphCorr) == 0.0) {
807 co.UpdateInterval = ephUpdInd;
[9025]808 int len1 = _ssrCorr->MakeClockOrbit(&co, _ssrCorr->COTYPE_GALILEOORBIT, 1, obuffer,
[6877]809 sizeof(obuffer));
[6844]810 co.UpdateInterval = clkUpdInd;
811 if (len1 > 0) {
812 hlpBufferCo += QByteArray(obuffer, len1);
813 }
814 }
[8808]815 int mmsg = (co.NumberOfSat[CLOCKORBIT_SATQZSS] > 0 ||
816 co.NumberOfSat[CLOCKORBIT_SATSBAS] > 0 ||
817 co.NumberOfSat[CLOCKORBIT_SATBDS] > 0 ) ? 1 : 0;
[9025]818 int len2 = _ssrCorr->MakeClockOrbit(&co, _ssrCorr->COTYPE_GALILEOCLOCK, mmsg, obuffer,
[6877]819 sizeof(obuffer));
[6844]820 if (len2 > 0) {
821 hlpBufferCo += QByteArray(obuffer, len2);
822 }
823 }
824 if (co.NumberOfSat[CLOCKORBIT_SATQZSS] > 0) {
[9189]825 char obuffer[CLOCKORBIT_BUFFERSIZE] = {0};
[6844]826 if (fmod(epoTime.gpssec(), _samplRtcmEphCorr) == 0.0) {
827 co.UpdateInterval = ephUpdInd;
[9025]828 int len1 = _ssrCorr->MakeClockOrbit(&co, _ssrCorr->COTYPE_QZSSORBIT, 1, obuffer,
[6877]829 sizeof(obuffer));
[6844]830 co.UpdateInterval = clkUpdInd;
831 if (len1 > 0) {
832 hlpBufferCo += QByteArray(obuffer, len1);
833 }
834 }
[8808]835 int mmsg = (co.NumberOfSat[CLOCKORBIT_SATSBAS] > 0 ||
836 co.NumberOfSat[CLOCKORBIT_SATBDS] > 0 ) ? 1 : 0;
[9025]837 int len2 = _ssrCorr->MakeClockOrbit(&co, _ssrCorr->COTYPE_QZSSCLOCK, mmsg, obuffer,
[6877]838 sizeof(obuffer));
[6844]839 if (len2 > 0) {
840 hlpBufferCo += QByteArray(obuffer, len2);
841 }
842 }
843 if (co.NumberOfSat[CLOCKORBIT_SATSBAS] > 0) {
[9189]844 char obuffer[CLOCKORBIT_BUFFERSIZE] = {0};
[6844]845 if (fmod(epoTime.gpssec(), _samplRtcmEphCorr) == 0.0) {
846 co.UpdateInterval = ephUpdInd;
[9025]847 int len1 = _ssrCorr->MakeClockOrbit(&co, _ssrCorr->COTYPE_SBASORBIT, 1, obuffer,
[6877]848 sizeof(obuffer));
[6844]849 co.UpdateInterval = clkUpdInd;
850 if (len1 > 0) {
851 hlpBufferCo += QByteArray(obuffer, len1);
852 }
853 }
854 int mmsg = (co.NumberOfSat[CLOCKORBIT_SATBDS] > 0) ? 1 : 0;
[9025]855 int len2 = _ssrCorr->MakeClockOrbit(&co, _ssrCorr->COTYPE_SBASCLOCK, mmsg, obuffer,
[6877]856 sizeof(obuffer));
[6844]857 if (len2 > 0) {
858 hlpBufferCo += QByteArray(obuffer, len2);
859 }
860 }
861 if (co.NumberOfSat[CLOCKORBIT_SATBDS] > 0) {
[9189]862 char obuffer[CLOCKORBIT_BUFFERSIZE] = {0};
[6844]863 if (fmod(epoTime.gpssec(), _samplRtcmEphCorr) == 0.0) {
864 co.UpdateInterval = ephUpdInd;
[9025]865 int len1 = _ssrCorr->MakeClockOrbit(&co, _ssrCorr->COTYPE_BDSORBIT, 1, obuffer,
[6877]866 sizeof(obuffer));
[6844]867 co.UpdateInterval = clkUpdInd;
868 if (len1 > 0) {
869 hlpBufferCo += QByteArray(obuffer, len1);
870 }
871 }
[8808]872 int mmsg = 0;
[9025]873 int len2 = _ssrCorr->MakeClockOrbit(&co, _ssrCorr->COTYPE_BDSCLOCK, mmsg, obuffer,
[6877]874 sizeof(obuffer));
[6844]875 if (len2 > 0) {
876 hlpBufferCo += QByteArray(obuffer, len2);
877 }
878 }
[3493]879 }
[5662]880
[6850]881 // Code Biases
882 // -----------
[5662]883 QByteArray hlpBufferBias;
[6877]884 if (bias.NumberOfSat[CLOCKORBIT_SATGPS] > 0
885 || bias.NumberOfSat[CLOCKORBIT_SATGLONASS] > 0
886 || bias.NumberOfSat[CLOCKORBIT_SATGALILEO] > 0
887 || bias.NumberOfSat[CLOCKORBIT_SATQZSS] > 0
888 || bias.NumberOfSat[CLOCKORBIT_SATSBAS] > 0
889 || bias.NumberOfSat[CLOCKORBIT_SATBDS] > 0) {
[9189]890 char obuffer[CLOCKORBIT_BUFFERSIZE] = {0};
[9140]891 if (fmod(epoTime.gpssec(), _samplRtcmEphCorr) == 0.0) {
892 int len = _ssrCorr->MakeCodeBias(&bias, _ssrCorr->CBTYPE_AUTO, 0, obuffer, sizeof(obuffer));
893 if (len > 0) {
894 hlpBufferBias = QByteArray(obuffer, len);
895 }
[3222]896 }
897 }
[3227]898
[6850]899 // Phase Biases
900 // ------------
901 QByteArray hlpBufferPhaseBias;
[9128]902 if ((phasebias.NumberOfSat[CLOCKORBIT_SATGPS] > 0
[6877]903 || phasebias.NumberOfSat[CLOCKORBIT_SATGLONASS] > 0
904 || phasebias.NumberOfSat[CLOCKORBIT_SATGALILEO] > 0
905 || phasebias.NumberOfSat[CLOCKORBIT_SATQZSS] > 0
906 || phasebias.NumberOfSat[CLOCKORBIT_SATSBAS] > 0
[9129]907 || phasebias.NumberOfSat[CLOCKORBIT_SATBDS] > 0)
908 && (_phaseBiasInformationDecoded)) {
[9189]909 char obuffer[CLOCKORBIT_BUFFERSIZE] = {0};
[9140]910 if (fmod(epoTime.gpssec(), _samplRtcmEphCorr) == 0.0) {
911 int len = _ssrCorr->MakePhaseBias(&phasebias, _ssrCorr->PBTYPE_AUTO, 0, obuffer, sizeof(obuffer));
912 if (len > 0) {
913 hlpBufferPhaseBias = QByteArray(obuffer, len);
914 }
[6850]915 }
916 }
917
918 // VTEC
919 // ----
920 QByteArray hlpBufferVtec;
[6860]921 if (vtec.NumLayers > 0) {
[9189]922 char obuffer[CLOCKORBIT_BUFFERSIZE] = {0};
[9025]923 int len = _ssrCorr->MakeVTEC(&vtec, 0, obuffer, sizeof(obuffer));
[6860]924 if (len > 0) {
925 hlpBufferVtec = QByteArray(obuffer, len);
926 }
927 }
[6850]928
[6877]929 _outBuffer += hlpBufferCo + hlpBufferBias + hlpBufferPhaseBias
930 + hlpBufferVtec;
[3222]931}
932
[5662]933//
[3222]934////////////////////////////////////////////////////////////////////////////
[8542]935t_irc bncRtnetUploadCaster::processSatellite(const t_eph* eph, int GPSweek,
[6877]936 double GPSweeks, const QString& prn, const ColumnVector& rtnAPC,
[8483]937 double rtnUra, const ColumnVector& rtnClk, const ColumnVector& rtnVel,
938 const ColumnVector& rtnCoM, const ColumnVector& rtnClkSig,
[9025]939 struct SsrCorr::ClockOrbit::SatData* sd, QString& outLine) {
[3222]940
[4930]941 // Broadcast Position and Velocity
942 // -------------------------------
[8542]943 ColumnVector xB(6);
[4930]944 ColumnVector vB(3);
[8542]945 t_irc irc = eph->getCrd(bncTime(GPSweek, GPSweeks), xB, vB, false);
[5662]946
[8542]947 if (irc != success) {
948 return irc;
949 }
950
[4991]951 // Precise Position
952 // ----------------
953 ColumnVector xP = _CoM ? rtnCoM : rtnAPC;
[3222]954
[8542]955 if (xP.size() == 0) {
956 return failure;
957 }
958
[5662]959 double dc = 0.0;
[8405]960 if (_crdTrafo != "IGS14") {
[8145]961 crdTrafo(GPSweek, xP, dc);
[8094]962 }
[5662]963
[4930]964 // Difference in xyz
965 // -----------------
[6877]966 ColumnVector dx = xB.Rows(1, 3) - xP;
967 ColumnVector dv = vB - rtnVel;
[5662]968
[4930]969 // Difference in RSW
970 // -----------------
[3222]971 ColumnVector rsw(3);
[6877]972 XYZ_to_RSW(xB.Rows(1, 3), vB, dx, rsw);
[3222]973
[4930]974 ColumnVector dotRsw(3);
[6877]975 XYZ_to_RSW(xB.Rows(1, 3), vB, dv, dotRsw);
[3222]976
[4930]977 // Clock Correction
978 // ----------------
[8499]979 double dClkA0 = rtnClk(1) - (xB(4) - dc) * t_CST::c;
[8679]980 double dClkA1 = 0.0;
981 if (rtnClk(2)) {
[9126]982 dClkA1 = rtnClk(2) - xB(5) * t_CST::c;
[8679]983 }
984 double dClkA2 = 0.0;
985 if (rtnClk(3)) {
[9126]986 dClkA2 = rtnClk(3) - xB(6) * t_CST::c;
[8679]987 }
[3222]988
989 if (sd) {
[6877]990 sd->ID = prn.mid(1).toInt();
991 sd->IOD = eph->IOD();
[8483]992 sd->Clock.DeltaA0 = dClkA0;
993 sd->Clock.DeltaA1 = dClkA1;
994 sd->Clock.DeltaA2 = dClkA2;
995 sd->UserRangeAccuracy = rtnUra;
996 sd->Orbit.DeltaRadial = rsw(1);
[6877]997 sd->Orbit.DeltaAlongTrack = rsw(2);
998 sd->Orbit.DeltaCrossTrack = rsw(3);
[8483]999 sd->Orbit.DotDeltaRadial = dotRsw(1);
[4930]1000 sd->Orbit.DotDeltaAlongTrack = dotRsw(2);
1001 sd->Orbit.DotDeltaCrossTrack = dotRsw(3);
[9179]1002
1003 if (corrIsOutOfRange(sd)) {
1004 return failure;
1005 }
[3222]1006 }
1007
[8483]1008 outLine.sprintf("%d %.1f %s %u %10.3f %8.3f %8.3f %8.3f %8.3f %8.3f\n", GPSweek,
1009 GPSweeks, eph->prn().toString().c_str(), eph->IOD(), dClkA0, dClkA1, dClkA2,
[9179]1010 rsw(1), rsw(2), rsw(3)); //fprintf(stderr, "%s\n", outLine.toStdString().c_str());
[3222]1011
[8499]1012 // RTNET full clock for RINEX and SP3 file
1013 // ---------------------------------------
[4991]1014 double relativity = -2.0 * DotProduct(xP, rtnVel) / t_CST::c;
[8499]1015 double clkRnx = (rtnClk[0] - relativity) / t_CST::c; // [s]
[8483]1016 double clkRnxRate = rtnClk[1] / t_CST::c; // [s/s = -]
1017 double clkRnxAcc = rtnClk[2] / t_CST::c; // [s/s² ) -/s]
[4991]1018
[3222]1019 if (_rnx) {
[8510]1020 double clkRnxSig, clkRnxRateSig, clkRnxAccSig;
1021 int s = rtnClkSig.size();
1022 switch (s) {
1023 case 1:
1024 clkRnxSig = rtnClkSig[0] / t_CST::c; // [s]
1025 clkRnxRateSig = 0.0; // [s/s = -]
1026 clkRnxAccSig = 0.0; // [s/s² ) -/s]
1027 break;
1028 case 2:
1029 clkRnxSig = rtnClkSig[0] / t_CST::c; // [s]
1030 clkRnxRateSig = rtnClkSig[1] / t_CST::c; // [s/s = -]
1031 clkRnxAccSig = 0.0; // [s/s² ) -/s]
1032 break;
1033 case 3:
1034 clkRnxSig = rtnClkSig[0] / t_CST::c; // [s]
1035 clkRnxRateSig = rtnClkSig[1] / t_CST::c; // [s/s = -]
1036 clkRnxAccSig = rtnClkSig[2] / t_CST::c; // [s/s² ) -/s]
1037 break;
1038 }
[8483]1039 _rnx->write(GPSweek, GPSweeks, prn, clkRnx, clkRnxRate, clkRnxAcc,
1040 clkRnxSig, clkRnxRateSig, clkRnxAccSig);
[3222]1041 }
1042 if (_sp3) {
[8483]1043 _sp3->write(GPSweek, GPSweeks, prn, rtnCoM, clkRnx, rtnVel, clkRnxRate);
[3222]1044 }
[8542]1045 return success;
[3222]1046}
1047
1048// Transform Coordinates
1049////////////////////////////////////////////////////////////////////////////
[5662]1050void bncRtnetUploadCaster::crdTrafo(int GPSWeek, ColumnVector& xyz,
[6877]1051 double& dc) {
[3222]1052
1053 // Current epoch minus 2000.0 in years
1054 // ------------------------------------
[6877]1055 double dt = (GPSWeek - (1042.0 + 6.0 / 7.0)) / 365.2422 * 7.0 + 2000.0 - _t0;
[3222]1056
1057 ColumnVector dx(3);
1058
1059 dx(1) = _dx + dt * _dxr;
1060 dx(2) = _dy + dt * _dyr;
1061 dx(3) = _dz + dt * _dzr;
1062
1063 static const double arcSec = 180.0 * 3600.0 / M_PI;
1064
1065 double ox = (_ox + dt * _oxr) / arcSec;
1066 double oy = (_oy + dt * _oyr) / arcSec;
1067 double oz = (_oz + dt * _ozr) / arcSec;
1068
1069 double sc = 1.0 + _sc * 1e-9 + dt * _scr * 1e-9;
1070
[4912]1071 // Specify approximate center of area
1072 // ----------------------------------
1073 ColumnVector meanSta(3);
1074
[6877]1075 if (_crdTrafo == "ETRF2000") {
1076 meanSta(1) = 3661090.0;
1077 meanSta(2) = 845230.0;
1078 meanSta(3) = 5136850.0;
[4908]1079 }
[8094]1080 else if (_crdTrafo == "GDA2020") {
[4973]1081 meanSta(1) = -4052050.0;
[6877]1082 meanSta(2) = 4212840.0;
[4973]1083 meanSta(3) = -2545110.0;
[4912]1084 }
1085 else if (_crdTrafo == "SIRGAS2000") {
[6877]1086 meanSta(1) = 3740860.0;
[4973]1087 meanSta(2) = -4964290.0;
1088 meanSta(3) = -1425420.0;
[4912]1089 }
[5343]1090 else if (_crdTrafo == "DREF91") {
[6877]1091 meanSta(1) = 3959579.0;
1092 meanSta(2) = 721719.0;
1093 meanSta(3) = 4931539.0;
[5343]1094 }
[4912]1095 else if (_crdTrafo == "Custom") {
[6877]1096 meanSta(1) = 0.0; // TODO
1097 meanSta(2) = 0.0; // TODO
1098 meanSta(3) = 0.0; // TODO
[4912]1099 }
[4908]1100
[4912]1101 // Clock correction proportional to topocentric distance to satellites
1102 // -------------------------------------------------------------------
[8904]1103 double rho = (xyz - meanSta).NormFrobenius();
[4913]1104 dc = rho * (sc - 1.0) / sc / t_CST::c;
[4908]1105
[6877]1106 Matrix rMat(3, 3);
1107 rMat(1, 1) = 1.0;
1108 rMat(1, 2) = -oz;
1109 rMat(1, 3) = oy;
1110 rMat(2, 1) = oz;
1111 rMat(2, 2) = 1.0;
1112 rMat(2, 3) = -ox;
1113 rMat(3, 1) = -oy;
1114 rMat(3, 2) = ox;
1115 rMat(3, 3) = 1.0;
[3222]1116
1117 xyz = sc * rMat * xyz + dx;
1118}
1119
[6557]1120int bncRtnetUploadCaster::determineUpdateInd(double samplingRate) {
1121
1122 if (samplingRate == 10.0) {
1123 return 3;
1124 }
1125 else if (samplingRate == 15.0) {
1126 return 4;
1127 }
1128 else if (samplingRate == 30.0) {
1129 return 5;
1130 }
1131 else if (samplingRate == 60.0) {
1132 return 6;
1133 }
1134 else if (samplingRate == 120.0) {
1135 return 7;
1136 }
1137 else if (samplingRate == 240.0) {
1138 return 8;
1139 }
1140 else if (samplingRate == 300.0) {
1141 return 9;
1142 }
1143 else if (samplingRate == 600.0) {
1144 return 10;
1145 }
1146 else if (samplingRate == 900.0) {
1147 return 11;
1148 }
1149 else if (samplingRate == 1800.0) {
1150 return 12;
1151 }
1152 else if (samplingRate == 3600.0) {
1153 return 13;
1154 }
1155 else if (samplingRate == 7200.0) {
1156 return 14;
1157 }
1158 else if (samplingRate == 10800.0) {
1159 return 15;
1160 }
[6877]1161 return 2; // default
[6557]1162}
[9179]1163
1164bool bncRtnetUploadCaster::corrIsOutOfRange(struct SsrCorr::ClockOrbit::SatData* sd) {
1165
1166 if (fabs(sd->Clock.DeltaA0) > 209.7151) {return true;}
1167 if (fabs(sd->Clock.DeltaA1) > 1.048575) {return true;}
1168 if (fabs(sd->Clock.DeltaA2) > 1.34217726) {return true;}
1169
1170 if (fabs(sd->Orbit.DeltaRadial) > 209.7151) {return true;}
1171 if (fabs(sd->Orbit.DeltaAlongTrack) > 209.7148) {return true;}
1172 if (fabs(sd->Orbit.DeltaCrossTrack) > 209.7148) {return true;}
1173
1174 if (fabs(sd->Orbit.DotDeltaRadial) > 1.048575) {return true;}
1175 if (fabs(sd->Orbit.DotDeltaAlongTrack) > 1.048572) {return true;}
1176 if (fabs(sd->Orbit.DotDeltaCrossTrack) > 1.048572) {return true;}
1177
1178 return false;
1179}
1180
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