source: ntrip/trunk/BNC/src/PPP/pppFilter.cpp@ 9704

Last change on this file since 9704 was 9704, checked in by stuerze, 2 years ago

minor changes regarding PPP

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File size: 27.7 KB
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[7237]1/* -------------------------------------------------------------------------
2 * BKG NTRIP Client
3 * -------------------------------------------------------------------------
4 *
5 * Class: t_pppFilter
6 *
7 * Purpose: Filter Adjustment
8 *
9 * Author: L. Mervart
10 *
11 * Created: 29-Jul-2014
12 *
[7267]13 * Changes:
[7237]14 *
15 * -----------------------------------------------------------------------*/
16
17#include <iostream>
18#include <iomanip>
19#include <cmath>
20#include <newmat.h>
21#include <newmatio.h>
22#include <newmatap.h>
23
24#include "pppFilter.h"
25#include "bncutils.h"
26#include "pppParlist.h"
27#include "pppObsPool.h"
28#include "pppStation.h"
29
30using namespace BNC_PPP;
31using namespace std;
32
33// Constructor
34////////////////////////////////////////////////////////////////////////////
[9642]35t_pppFilter::t_pppFilter(t_pppObsPool *obsPool) {
[8905]36 _numSat = 0;
37 _obsPool = obsPool;
[9642]38 _refPrn = t_prn();
[8915]39 _datumTrafo = new t_datumTrafo();
[7237]40}
41
42// Destructor
43////////////////////////////////////////////////////////////////////////////
44t_pppFilter::~t_pppFilter() {
[8915]45 delete _datumTrafo;
[7237]46}
47
48// Process Single Epoch
49////////////////////////////////////////////////////////////////////////////
[9386]50t_irc t_pppFilter::processEpoch() {
[9642]51 _numSat = 0;
[7302]52 const double maxSolGap = 60.0;
[7237]53
54 // Vector of all Observations
55 // --------------------------
[9642]56 t_pppObsPool::t_epoch *epoch = _obsPool->lastEpoch();
[7237]57 if (!epoch) {
58 return failure;
59 }
[9642]60 vector<t_pppSatObs*> &allObs = epoch->obsVector();
[7237]61
62 // Time of the Epoch
63 // -----------------
64 _epoTime = epoch->epoTime();
65
[9642]66 if (!_firstEpoTime.valid() || !_lastEpoTimeOK.valid()
67 || (maxSolGap > 0.0 && _epoTime - _lastEpoTimeOK > maxSolGap)) {
[7237]68 _firstEpoTime = _epoTime;
69 }
70
[7267]71 string epoTimeStr = string(_epoTime);
72
[9642]73 const QMap<char, t_pppRefSat*> &refSatMap = epoch->refSatMap();
[9532]74
[8905]75 //--
[7237]76 // Set Parameters
[9508]77 if (_parlist.set(_epoTime, allObs, refSatMap) != success) {
[9419]78 return failure;
79 }
[9526]80
[9527]81 if (OPT->_obsModelType == OPT->DCMcodeBias ||
[9642]82 OPT->_obsModelType == OPT->DCMphaseBias) {
[9386]83#ifdef BNC_DEBUG_PPP
[9534]84 _parlist.printParams(_epoTime);
[9386]85#endif
[9527]86 }
[7237]87 // Status Vector, Variance-Covariance Matrix
88 // -----------------------------------------
[9642]89 ColumnVector xFltOld = _xFlt;
[7237]90 SymmetricMatrix QFltOld = _QFlt;
[9526]91 setStateVectorAndVarCovMatrix(xFltOld, QFltOld);
[8956]92
[8905]93 // Pre-Process Satellite Systems separately
94 // ----------------------------------------
95 bool preProcessing = false;
96 if (OPT->_obsModelType == OPT->DCMcodeBias ||
[9642]97 OPT->_obsModelType == OPT->DCMphaseBias) {
[8905]98 preProcessing = true;
[9642]99 const QList<char> &usedSystems = _parlist.usedSystems();
[9431]100 for (int iSys = 0; iSys < usedSystems.size(); iSys++) {
101 char sys = usedSystems[iSys];
[9526]102 _refPrn.set(sys, 0);
103 if (OPT->_refSatRequired) {
104 _refPrn = refSatMap[sys]->prn();
105 }
[9642]106 vector<t_pppSatObs*> obsVector;
[8905]107 for (unsigned jj = 0; jj < allObs.size(); jj++) {
[9386]108 if (allObs[jj]->prn().system() == sys) {
[8905]109 obsVector.push_back(allObs[jj]);
110 }
111 }
[9431]112 if (iSys == 0) {
113 _datumTrafo->setFirstSystem(sys);
[9419]114 }
[9386]115 if (processSystem(OPT->LCs(sys), obsVector, _refPrn,
[9642]116 epoch->pseudoObsIono(), preProcessing) != success) {
[9583]117 LOG << sys << ": processSystem != success (pre-processing)" << endl;
[9386]118 _xFlt = xFltOld;
119 _QFlt = QFltOld;
[9532]120 _obsPool->deleteLastEpoch();
[9527]121 restoreState(2);
[8905]122 return failure;
123 }
124 }
[8956]125 // refSat change required?
126 // -----------------------
127 if (_obsPool->refSatChangeRequired()) {
128 _xFlt = xFltOld;
129 _QFlt = QFltOld;
130 return success;
[9642]131 } else if (!_obsPool->refSatChangeRequired()) {
[9419]132 initDatumTransformation(allObs, epoch->pseudoObsIono());
[8956]133 }
[8905]134 }
135
[7237]136 // Process Satellite Systems separately
137 // ------------------------------------
[8912]138 preProcessing = false;
[9642]139 const QList<char> &usedSystems = _parlist.usedSystems();
[9431]140 for (int iSys = 0; iSys < usedSystems.size(); iSys++) {
141 char sys = usedSystems[iSys];
[9526]142 _refPrn.set(sys, 0);
[8910]143 if (OPT->_refSatRequired) {
[9508]144 _refPrn = refSatMap[sys]->prn();
[8910]145 }
[7267]146 unsigned int num = 0;
[7237]147 vector<t_pppSatObs*> obsVector;
148 for (unsigned jj = 0; jj < allObs.size(); jj++) {
[9419]149 if (allObs[jj]->prn().system() == sys) {
[7237]150 obsVector.push_back(allObs[jj]);
[9419]151 ++num;
[7237]152 }
153 }
[9431]154 if (iSys == 0 && OPT->_obsModelType == OPT->UncombPPP) {
155 _datumTrafo->setFirstSystem(sys);
[9419]156 }
[9642]157 LOG << epoTimeStr << " SATNUM " << sys << ' ' << right << setw(2) << num
158 << endl;
159 if (processSystem(OPT->LCs(sys), obsVector, _refPrn, epoch->pseudoObsIono(),
160 preProcessing) != success) {
[9537]161 LOG << "processSystem != success (fin-processing)" << endl;
162 if (OPT->_obsModelType == OPT->DCMcodeBias ||
[9699]163 OPT->_obsModelType == OPT->DCMphaseBias) {
[9590]164 _xFlt = xFltOld;
165 _QFlt = QFltOld;
[9537]166 _obsPool->deleteLastEpoch();
167 restoreState(3);
168 }
[7237]169 return failure;
170 }
171 }
[8912]172
173 // close epoch processing
174 // ----------------------
[9508]175 cmpDOP(allObs, refSatMap);
[9504]176 _parlist.printResult(_epoTime, _QFlt, _xFlt);
[9642]177 _lastEpoTimeOK = _epoTime; // remember time of last successful epoch processing
[7237]178 return success;
179}
180
181// Process Selected LCs
182////////////////////////////////////////////////////////////////////////////
[9642]183t_irc t_pppFilter::processSystem(const vector<t_lc::type> &LCs,
184 const vector<t_pppSatObs*> &obsVector, const t_prn &refPrn,
185 bool pseudoObsIonoAvailable, bool preProcessing) {
[7237]186 LOG.setf(ios::fixed);
[9386]187 char sys = refPrn.system();
[7237]188
189 // Detect Cycle Slips
190 // ------------------
[8905]191 if (detectCycleSlips(LCs, obsVector, refPrn, preProcessing) != success) {
[7237]192 return failure;
193 }
[9398]194 if (preProcessing && _obsPool->refSatChangeRequired(sys)) {
[9386]195 return success;
196 }
[7237]197
[9642]198 ColumnVector xSav = _xFlt;
199 SymmetricMatrix QSav = _QFlt;
200 string epoTimeStr = string(_epoTime);
201 const vector<t_pppParam*> &params = _parlist.params();
[9524]202 unsigned nPar = _parlist.nPar();
[8965]203
[9642]204 unsigned usedLCs = LCs.size();
[8965]205 if (OPT->_pseudoObsIono && !pseudoObsIonoAvailable) {
[9642]206 usedLCs -= 1; // GIM not used
[8961]207 }
208 // max Obs
[9538]209 unsigned maxObs = obsVector.size() * usedLCs;
210
[8965]211 if (OPT->_pseudoObsIono && pseudoObsIonoAvailable) {
212 maxObs -= 1; // pseudo obs iono with respect to refSat
[8905]213 }
214
[7237]215 // Outlier Detection Loop
216 // ----------------------
217 for (unsigned iOutlier = 0; iOutlier < maxObs; iOutlier++) {
218
219 if (iOutlier > 0) {
220 _xFlt = xSav;
221 _QFlt = QSav;
222 }
223
224 // First-Design Matrix, Terms Observed-Computed, Weight Matrix
225 // -----------------------------------------------------------
[9642]226 Matrix AA(maxObs, nPar);
227 ColumnVector ll(maxObs);
228 DiagonalMatrix PP(maxObs);
229 PP = 0.0;
[8912]230
[7237]231 int iObs = -1;
232 vector<t_pppSatObs*> usedObs;
[9642]233 vector<t_lc::type> usedTypes;
[9386]234
235 // Real Observations
236 // =================
[9583]237 double nSat = 0;
[7237]238 for (unsigned ii = 0; ii < obsVector.size(); ii++) {
[9642]239 t_pppSatObs *obs = obsVector[ii];
[9419]240 if (iOutlier == 0 && !preProcessing) {
241 obs->resetOutlier();
242 }
[7237]243 if (!obs->outlier()) {
[9583]244 nSat++;
[8905]245 for (unsigned jj = 0; jj < usedLCs; jj++) {
[7237]246 const t_lc::type tLC = LCs[jj];
[9642]247 if (tLC == t_lc::GIM) {
248 continue;
249 }
[7237]250 ++iObs;
251 usedObs.push_back(obs);
252 usedTypes.push_back(tLC);
[9524]253 for (unsigned iPar = 0; iPar < nPar; iPar++) {
[9642]254 const t_pppParam *par = params[iPar];
[8956]255 AA[iObs][iPar] = par->partial(_epoTime, obs, tLC, refPrn);
[7237]256 }
[9642]257 ll[iObs] = obs->obsValue(tLC) - obs->cmpValue(tLC)
258 - DotProduct(_x0, AA.Row(iObs + 1));
[7237]259 PP[iObs] = 1.0 / (obs->sigma(tLC) * obs->sigma(tLC));
260 }
261 }
262 }
263
[9556]264 // Check number of observations
265 // ----------------------------
[9701]266 if (iObs == -1) {
267 LOG << " number of observations == -1\n";
268 return failure;
[9699]269 }
[9625]270
[9642]271 if ((!iOutlier) && (OPT->_obsModelType == OPT->DCMcodeBias ||
272 OPT->_obsModelType == OPT->DCMphaseBias) && (!preProcessing)) {
273 _datumTrafo->updateIndices(sys, iObs + 1);
274 _datumTrafo->prepareAA(AA.SubMatrix(1, iObs + 1, 1, _parlist.nPar()), 1);
[9386]275 }
276
277 // Pseudo Obs Iono
278 // ================
279 if (OPT->_pseudoObsIono && pseudoObsIonoAvailable) {
280 for (unsigned ii = 0; ii < obsVector.size(); ii++) {
[9642]281 t_pppSatObs *obs = obsVector[ii];
[9386]282 if (!obs->outlier()) {
283 for (unsigned jj = 0; jj < usedLCs; jj++) {
284 const t_lc::type tLC = LCs[jj];
285 if (tLC == t_lc::GIM && !obs->isReference()) {
286 ++iObs;
[9642]287 } else {
288 continue;
289 }
[9386]290 usedObs.push_back(obs);
291 usedTypes.push_back(tLC);
[9524]292 for (unsigned iPar = 0; iPar < nPar; iPar++) {
[9642]293 const t_pppParam *par = params[iPar];
[9386]294 AA[iObs][iPar] = par->partial(_epoTime, obs, tLC, refPrn);
295 }
[9642]296 ll[iObs] = obs->obsValue(tLC) - obs->cmpValue(tLC)
297 - DotProduct(_x0, AA.Row(iObs + 1));
[9386]298 PP[iObs] = 1.0 / (obs->sigma(tLC) * obs->sigma(tLC));
299 }
300 }
[8956]301 }
[8915]302 }
303
[9556]304 // Truncate matrices
305 // -----------------
[9642]306 AA = AA.Rows(1, iObs + 1);
307 ll = ll.Rows(1, iObs + 1);
308 PP = PP.SymSubMatrix(1, iObs + 1);
[7237]309
310 // Kalman update step
311 // ------------------
312 kalman(AA, ll, PP, _QFlt, _xFlt);
313
314 // Check Residuals
315 // ---------------
316 ColumnVector vv = AA * _xFlt - ll;
[9642]317 double maxOutlier = 0.0;
318 int maxOutlierIndex = -1;
319 t_lc::type maxOutlierLC = t_lc::dummy;
[7237]320 for (unsigned ii = 0; ii < usedObs.size(); ii++) {
321 const t_lc::type tLC = usedTypes[ii];
322 double res = fabs(vv[ii]);
323 if (res > usedObs[ii]->maxRes(tLC)) {
324 if (res > fabs(maxOutlier)) {
[9642]325 maxOutlier = vv[ii];
[7237]326 maxOutlierIndex = ii;
[9642]327 maxOutlierLC = tLC;
[7237]328 }
329 }
330 }
331
332 // Mark outlier or break outlier detection loop
333 // --------------------------------------------
334 if (maxOutlierIndex > -1) {
[9642]335 t_pppSatObs *obs = usedObs[maxOutlierIndex];
336 t_pppParam *par = 0;
[9524]337 for (unsigned iPar = 0; iPar < nPar; iPar++) {
[9642]338 t_pppParam *hlp = params[iPar];
339 if (hlp->type() == t_pppParam::amb && hlp->prn() == obs->prn()
340 && hlp->tLC() == usedTypes[maxOutlierIndex]) {
[7237]341 par = hlp;
342 }
343 }
[8956]344 if (preProcessing) {
[9491]345 // for refSats no ambiguity parameter exists
[9642]346 if ((obs->prn() == refPrn)
[9699]347 && (t_lc::toString(maxOutlierLC) == "l1" ||
348 t_lc::toString(maxOutlierLC) == "l2")) {
[9642]349 _obsPool->setRefSatChangeRequired(sys, true);
350 LOG << epoTimeStr << " Outlier ("
351 << ((preProcessing) ? "pre-processing) " : "fin-processing) ")
352 << t_lc::toString(maxOutlierLC) << ' ' << obs->prn().toString()
353 << ' ' << setw(8) << setprecision(4) << maxOutlier << endl;
354 break;
355 } else {
356 obs->setOutlier();
[8905]357 }
[9642]358 } else { // fin-processing
[9556]359 LOG << epoTimeStr << " Outlier " << t_lc::toString(maxOutlierLC) << ' '
[9642]360 << obs->prn().toString() << ' ' << setw(8) << setprecision(4)
361 << maxOutlier << endl;
[8956]362 if (par) {
[9704]363 if ( par->ambResetCandidate() ||
364 (OPT->_obsModelType == OPT->DCMcodeBias ||
365 OPT->_obsModelType == OPT->DCMphaseBias) ) {
[9703]366 resetAmb(par->prn(), obsVector, &QSav, &xSav);
367 }
368 else {
369 par->setAmbResetCandidate();
370 obs->setOutlier();
371 }
[9704]372 }
[9703]373 else {
[7237]374 obs->setOutlier();
375 }
376 }
377 }
378 // Print Residuals
379 // ---------------
380 else {
[8905]381 if (!preProcessing) {
382 for (unsigned jj = 0; jj < LCs.size(); jj++) {
383 for (unsigned ii = 0; ii < usedObs.size(); ii++) {
384 const t_lc::type tLC = usedTypes[ii];
[9642]385 t_pppSatObs *obs = usedObs[ii];
[8905]386 if (tLC == LCs[jj]) {
387 obs->setRes(tLC, vv[ii]);
[9642]388 LOG << epoTimeStr << " RES " << left << setw(3)
[9699]389 << t_lc::toString(tLC) << right << ' '
390 << obs->prn().toString();
[9435]391 LOG << setw(9) << setprecision(4) << vv[ii] << endl;
[8905]392 }
[7237]393 }
394 }
395 }
396 break;
397 }
398 }
399 return success;
400}
401
402// Cycle-Slip Detection
403////////////////////////////////////////////////////////////////////////////
[9642]404t_irc t_pppFilter::detectCycleSlips(const vector<t_lc::type> &LCs,
405 const vector<t_pppSatObs*> &obsVector, const t_prn &refPrn,
406 bool preProcessing) {
[9386]407 const double SLIP = 20.0;
408 char sys = refPrn.system();
409 string epoTimeStr = string(_epoTime);
[9642]410 const vector<t_pppParam*> &params = _parlist.params();
[9524]411 unsigned nPar = _parlist.nPar();
[7237]412
413 for (unsigned ii = 0; ii < LCs.size(); ii++) {
[9642]414 const t_lc::type &tLC = LCs[ii];
[7237]415 if (t_lc::includesPhase(tLC)) {
416 for (unsigned iObs = 0; iObs < obsVector.size(); iObs++) {
[9642]417 const t_pppSatObs *obs = obsVector[iObs];
[7237]418
[7267]419 // Check set Slips and Jump Counters
[7237]420 // ---------------------------------
421 bool slip = false;
[9386]422
423 // in pre-processing only the reference satellite has to be checked
424 if (preProcessing && obs->prn() != refPrn) {
425 continue;
426 }
427
[7237]428 if (obs->slip()) {
[9642]429 LOG << epoTimeStr << "cycle slip set (obs) " << obs->prn().toString()
430 << endl;
[7237]431 slip = true;
432 }
433
[9642]434 if (_slips[obs->prn()]._obsSlipCounter != -1
435 && _slips[obs->prn()]._obsSlipCounter != obs->slipCounter()) {
436 LOG << epoTimeStr << "cycle slip set (obsSlipCounter) "
437 << obs->prn().toString() << endl;
[7237]438 slip = true;
439 }
[8956]440 if (!preProcessing) {
441 _slips[obs->prn()]._obsSlipCounter = obs->slipCounter();
442 }
[9642]443 if (_slips[obs->prn()]._biasJumpCounter != -1
444 && _slips[obs->prn()]._biasJumpCounter != obs->biasJumpCounter()) {
445 LOG << epoTimeStr << "cycle slip set (biasJumpCounter) "
446 << obs->prn().toString() << endl;
[7237]447 slip = true;
448 }
[8956]449 if (!preProcessing) {
450 _slips[obs->prn()]._biasJumpCounter = obs->biasJumpCounter();
451 }
[7237]452 // Slip Set
[7267]453 // --------
[7237]454 if (slip) {
[8905]455 if (preProcessing) {
[9386]456 _obsPool->setRefSatChangeRequired(sys, true);
[9642]457 } else {
[8905]458 resetAmb(obs->prn(), obsVector);
459 }
[7237]460 }
461 // Check Pre-Fit Residuals
462 // -----------------------
463 else {
[9642]464 if (refPrn != t_prn()) {
465 return success;
466 }
[9524]467 ColumnVector AA(nPar);
468 for (unsigned iPar = 0; iPar < nPar; iPar++) {
[9642]469 const t_pppParam *par = params[iPar];
[8956]470 AA[iPar] = par->partial(_epoTime, obs, tLC, refPrn);
[7237]471 }
[9642]472 double ll = obs->obsValue(tLC) - obs->cmpValue(tLC)
473 - DotProduct(_x0, AA);
[7237]474 double vv = DotProduct(AA, _xFlt) - ll;
475 if (fabs(vv) > SLIP) {
[9642]476 LOG << epoTimeStr << " cycle slip detected " << t_lc::toString(tLC)
477 << ' ' << obs->prn().toString() << ' ' << setw(8)
478 << setprecision(4) << vv << endl;
[8905]479 if (preProcessing) {
[9386]480 _obsPool->setRefSatChangeRequired(sys, true);
[9642]481 } else {
[8905]482 resetAmb(obs->prn(), obsVector);
483 }
[7237]484 }
485 }
486 }
487 }
488 }
489 return success;
490}
491
492// Reset Ambiguity Parameter (cycle slip)
493////////////////////////////////////////////////////////////////////////////
[9642]494t_irc t_pppFilter::resetAmb(t_prn prn, const vector<t_pppSatObs*> &obsVector,
495 SymmetricMatrix *QSav, ColumnVector *xSav) {
[8965]496
[7237]497 t_irc irc = failure;
[9642]498 vector<t_pppParam*> &params = _parlist.params();
[7237]499 for (unsigned iPar = 0; iPar < params.size(); iPar++) {
[9642]500 t_pppParam *par = params[iPar];
[7237]501 if (par->type() == t_pppParam::amb && par->prn() == prn) {
502 int ind = par->indexNew();
503 t_lc::type tLC = par->tLC();
504 LOG << string(_epoTime) << " RESET " << par->toString() << endl;
[9642]505 delete par;
506 par = new t_pppParam(t_pppParam::amb, prn, tLC, &obsVector);
[7237]507 par->setIndex(ind);
508 params[iPar] = par;
509 for (unsigned ii = 1; ii <= params.size(); ii++) {
[9642]510 _QFlt(ii, ind + 1) = 0.0;
[7237]511 if (QSav) {
[9642]512 (*QSav)(ii, ind + 1) = 0.0;
[7237]513 }
514 }
[9642]515 _QFlt(ind + 1, ind + 1) = par->sigma0() * par->sigma0();
[7237]516 if (QSav) {
[9642]517 (*QSav)(ind + 1, ind + 1) = _QFlt(ind + 1, ind + 1);
[7237]518 }
519 _xFlt[ind] = 0.0;
520 if (xSav) {
521 (*xSav)[ind] = _xFlt[ind];
522 }
523 _x0[ind] = par->x0();
524 irc = success;
525 }
526 }
527
528 return irc;
529}
530
[9395]531// Add infinite noise to iono
[9386]532////////////////////////////////////////////////////////////////////////////
[9642]533t_irc t_pppFilter::addNoiseToPar(t_pppParam::e_type parType, char sys) {
[9386]534 t_irc irc = failure;
[9642]535 vector<t_pppParam*> &params = _parlist.params();
[9386]536 for (unsigned iPar = 0; iPar < params.size(); iPar++) {
[9642]537 t_pppParam *par = params[iPar];
538 if (par->type() == parType && par->prn().system() == sys) {
[9386]539 int ind = par->indexNew();
[9659]540 LOG << string(_epoTime) << " ADD NOISE TO " << par->toString() << endl;
[9386]541 par->setIndex(ind);
[9642]542 _QFlt(ind + 1, ind + 1) = par->sigma0() * par->sigma0();
[9386]543 irc = success;
544 }
545 }
546
547 return irc;
548}
549
[7237]550// Compute various DOP Values
551////////////////////////////////////////////////////////////////////////////
[9642]552void t_pppFilter::cmpDOP(const vector<t_pppSatObs*> &obsVector,
553 const QMap<char, t_pppRefSat*> &refSatMap) {
[7237]554
555 _dop.reset();
556
557 try {
558 const unsigned numPar = 4;
559 Matrix AA(obsVector.size(), numPar);
560 _numSat = 0;
561 for (unsigned ii = 0; ii < obsVector.size(); ii++) {
[9642]562 t_pppSatObs *obs = obsVector[ii];
[9508]563 char sys = obs->prn().system();
[8956]564 t_prn refPrn = t_prn();
565 if (OPT->_refSatRequired) {
[9508]566 refPrn = refSatMap[sys]->prn();
[8956]567 }
[7237]568 if (obs->isValid() && !obs->outlier()) {
569 ++_numSat;
570 for (unsigned iPar = 0; iPar < numPar; iPar++) {
[9642]571 const t_pppParam *par = _parlist.params()[iPar];
572 AA[_numSat - 1][iPar] = par->partial(_epoTime, obs, t_lc::c1, refPrn);
[7237]573 }
574 }
575 }
576 if (_numSat < 4) {
577 return;
578 }
579 AA = AA.Rows(1, _numSat);
[9642]580 SymmetricMatrix NN;
581 NN << AA.t() * AA;
[7237]582 SymmetricMatrix QQ = NN.i();
[7267]583
[9642]584 _dop.H = sqrt(QQ(1, 1) + QQ(2, 2));
585 _dop.V = sqrt(QQ(3, 3));
586 _dop.P = sqrt(QQ(1, 1) + QQ(2, 2) + QQ(3, 3));
587 _dop.T = sqrt(QQ(4, 4));
588 _dop.G = sqrt(QQ(1, 1) + QQ(2, 2) + QQ(3, 3) + QQ(4, 4));
589 } catch (...) {
[7237]590 }
591}
592
[9526]593//
[7237]594////////////////////////////////////////////////////////////////////////////
[9642]595void t_pppFilter::predictCovCrdPart(const SymmetricMatrix &QFltOld) {
[7237]596
[9642]597 const vector<t_pppParam*> &params = _parlist.params();
[7237]598 if (params.size() < 3) {
599 return;
600 }
601
602 bool first = (params[0]->indexOld() < 0);
603
[9642]604 SymmetricMatrix Qneu(3);
605 Qneu = 0.0;
[7237]606 for (unsigned ii = 0; ii < 3; ii++) {
[9642]607 const t_pppParam *par = params[ii];
[7237]608 if (first) {
609 Qneu[ii][ii] = par->sigma0() * par->sigma0();
[9642]610 } else {
[7237]611 Qneu[ii][ii] = par->noise() * par->noise();
612 }
613 }
614
[9642]615 const t_pppStation *sta = PPP_CLIENT->staRover();
[7237]616 SymmetricMatrix Qxyz(3);
617 covariNEU_XYZ(Qneu, sta->ellApr().data(), Qxyz);
618
619 if (first) {
[9642]620 _QFlt.SymSubMatrix(1, 3) = Qxyz;
621 } else {
[7237]622 double dt = _epoTime - _firstEpoTime;
623 if (dt < OPT->_seedingTime) {
[9642]624 _QFlt.SymSubMatrix(1, 3) = QFltOld.SymSubMatrix(1, 3);
625 } else {
626 _QFlt.SymSubMatrix(1, 3) = QFltOld.SymSubMatrix(1, 3) + Qxyz;
[7237]627 }
628 }
629}
[8912]630
[9526]631//
632////////////////////////////////////////////////////////////////////////////
[9642]633void t_pppFilter::setStateVectorAndVarCovMatrix(const ColumnVector &xFltOld,
634 const SymmetricMatrix &QFltOld) {
[9526]635
[9642]636 const vector<t_pppParam*> &params = _parlist.params();
[9526]637 unsigned nPar = params.size();
638
[9642]639 _QFlt.ReSize(nPar);
640 _QFlt = 0.0;
641 _xFlt.ReSize(nPar);
642 _xFlt = 0.0;
643 _x0.ReSize(nPar);
644 _x0 = 0.0;
[9526]645
646 for (unsigned ii = 0; ii < nPar; ii++) {
[9642]647 t_pppParam *par1 = params[ii];
[9526]648 if (QFltOld.size() == 0) {
649 par1->resetIndex();
650 }
651 _x0[ii] = par1->x0();
652 int iOld = par1->indexOld();
653 if (iOld < 0) {
654 _QFlt[ii][ii] = par1->sigma0() * par1->sigma0(); // new parameter
[9642]655 } else {
[9526]656 _QFlt[ii][ii] = QFltOld[iOld][iOld] + par1->noise() * par1->noise();
[9642]657 _xFlt[ii] = xFltOld[iOld];
[9526]658 for (unsigned jj = 0; jj < ii; jj++) {
[9642]659 t_pppParam *par2 = params[jj];
660 int jOld = par2->indexOld();
[9526]661 if (jOld >= 0) {
[9642]662 _QFlt[ii][jj] = QFltOld(iOld + 1, jOld + 1);
[9526]663 }
664 }
665 }
666 }
667 predictCovCrdPart(QFltOld);
668}
669
[8915]670// Compute datum transformation
[8912]671////////////////////////////////////////////////////////////////////////////
[9642]672t_irc t_pppFilter::datumTransformation(
673 const QMap<char, t_pppRefSat*> &refSatMap) {
[9508]674
[9419]675 // get last epoch
[9642]676 t_pppObsPool::t_epoch *epoch = _obsPool->lastEpoch();
[9419]677 if (!epoch) {
[9508]678 LOG << "t_pppFilter::datumTransformation: !lastEpoch" << endl;
[9386]679 return failure;
680 }
[9508]681 _epoTime = epoch->epoTime();
682 LOG.setf(ios::fixed);
683 LOG << string(_epoTime) << " DATUM TRANSFORMATION " << endl;
[9419]684
[9642]685 vector<t_pppSatObs*> &allObs = epoch->obsVector();
[9386]686
[9642]687 const QMap<char, t_pppRefSat*> &refSatMapLastEpoch = epoch->refSatMap();
[9508]688
[9548]689 bool pseudoObsIono = epoch->pseudoObsIono();
[9508]690
[9419]691 // reset old and set new refSats in last epoch (ambiguities/GIM)
692 // =============================================================
[9642]693 if (resetRefSatellitesLastEpoch(allObs, refSatMap, refSatMapLastEpoch)
694 != true) {
695 LOG << "datumTransformation: resetRefSatellitesLastEpoch != success"
696 << endl;
[9548]697 return failure;
[9386]698 }
699
[9419]700 if (OPT->_obsModelType == OPT->UncombPPP) {
[9548]701 _obsPool->putEpoch(_epoTime, allObs, pseudoObsIono, refSatMap);
[9419]702 return success;
703 }
704
[9386]705 // set AA2
706 // =======
[9508]707 if (_parlist.set(_epoTime, allObs, refSatMap) != success) {
[9419]708 return failure;
709 }
[9526]710
[9386]711#ifdef BNC_DEBUG_PPP
[9534]712 _parlist.printParams(_epoTime);
[9386]713#endif
[9526]714
[9642]715 const QList<char> &usedSystems = _parlist.usedSystems();
[9431]716 for (int iSys = 0; iSys < usedSystems.size(); iSys++) {
717 char sys = usedSystems[iSys];
[9508]718 t_prn refPrn = refSatMap[sys]->prn();
[9386]719 vector<t_pppSatObs*> obsVector;
720 for (unsigned jj = 0; jj < allObs.size(); jj++) {
721 if (allObs[jj]->prn().system() == sys) {
[9618]722 allObs[jj]->resetOutlier();
[9386]723 obsVector.push_back(allObs[jj]);
724 }
725 }
[9431]726 if (iSys == 0) {
727 _datumTrafo->setFirstSystem(sys);
[9419]728 }
[9386]729 vector<t_lc::type> LCs = OPT->LCs(sys);
730 unsigned usedLCs = LCs.size();
[9548]731 if (OPT->_pseudoObsIono && !pseudoObsIono) {
[9642]732 usedLCs -= 1; // GIM not used
[9386]733 }
734 // max Obs
[9538]735 unsigned maxObs = obsVector.size() * usedLCs;
[9419]736
[9548]737 if (OPT->_pseudoObsIono && pseudoObsIono) {
[9386]738 maxObs -= 1; // pseudo obs iono with respect to refSat
739 }
[9526]740
[9642]741 const vector<t_pppParam*> &params = _parlist.params();
[9526]742 unsigned nPar = _parlist.nPar();
743
[9642]744 Matrix AA(maxObs, nPar);
[9524]745
[9386]746 // Real Observations
747 // -----------------
748 int iObs = -1;
749 for (unsigned ii = 0; ii < obsVector.size(); ii++) {
[9642]750 t_pppSatObs *obs = obsVector[ii];
[9419]751 for (unsigned jj = 0; jj < usedLCs; jj++) {
752 const t_lc::type tLC = LCs[jj];
[9642]753 if (tLC == t_lc::GIM) {
754 continue;
755 }
[9419]756 ++iObs;
[9524]757 for (unsigned iPar = 0; iPar < nPar; iPar++) {
[9642]758 const t_pppParam *par = params[iPar];
[9419]759 AA[iObs][iPar] = par->partial(_epoTime, obs, tLC, refPrn);
[9386]760 }
761 }
762 }
[9538]763
[9419]764 if (!iObs) {
765 continue;
766 }
[9642]767 _datumTrafo->updateIndices(sys, iObs + 1); //LOG << "AA Ncols/Nrows: " << AA.Ncols() << "/" << AA.Nrows() << " nPar: " << nPar << endl; //LOG << "AA.SubMatrix(1 .. " << iObs+1 << " , 1 .. " << nPar << ")" << endl;
768 if (_datumTrafo->prepareAA(AA.SubMatrix(1, iObs + 1, 1, nPar), 2)
769 != success) {
[9508]770 return failure;
771 }
[9386]772 }
[9419]773 _datumTrafo->updateNumObs();
[9386]774
775 // Datum Transformation
776 // ====================
777#ifdef BNC_DEBUG_PPP
[9548]778 //LOG << "AA1\n"; _datumTrafo->printMatrix(_datumTrafo->AA1(), _datumTrafo->numObs(), _datumTrafo->numPar());
779 //LOG << "AA2\n"; _datumTrafo->printMatrix(_datumTrafo->AA2(), _datumTrafo->numObs(), _datumTrafo->numPar());
[9386]780#endif
[9642]781 if (_datumTrafo->computeTrafoMatrix() != success) {
[9419]782 return failure;
783 }
[9386]784#ifdef BNC_DEBUG_PPP
[9548]785 //LOG << "D21" << endl; _datumTrafo->printMatrix(_datumTrafo->D21(), _datumTrafo->numObs(), _datumTrafo->numPar());
[9386]786#endif
[9642]787 ColumnVector xFltOld = _xFlt;
[9386]788 SymmetricMatrix QFltOld = _QFlt;
789
[9419]790 _QFlt << _datumTrafo->D21() * QFltOld * _datumTrafo->D21().t();
[9642]791 _xFlt = _datumTrafo->D21() * xFltOld;
[9386]792
[9579]793#ifdef BNC_DEBUG_PPP
[9562]794 LOG << "xFltOld:\n" << xFltOld << endl;
795 LOG << "xFlt :\n" << _xFlt << endl;
[9579]796#endif
[9386]797
798 // Reset Ambiguities after Datum Transformation
799 // ============================================
[9431]800 for (int iSys = 0; iSys < usedSystems.size(); iSys++) {
801 char sys = usedSystems[iSys];
[9508]802 t_prn refPrnOld = refSatMapLastEpoch[sys]->prn();
803 t_prn refPrnNew = refSatMap[sys]->prn();
[9419]804 if (refPrnNew != refPrnOld) {
[9670]805 resetAmb(refPrnOld, allObs);/*
[9642]806 if (resetAmb(refPrnOld, allObs) == success) {
807 if (OPT->_obsModelType == OPT->DCMcodeBias) {
808 addNoiseToPar(t_pppParam::ion, sys);
809 } else if (OPT->_obsModelType == OPT->DCMphaseBias) {
[9656]810 if (sys == 'G') {
[9642]811 addNoiseToPar(t_pppParam::pBiasG1, sys);
812 addNoiseToPar(t_pppParam::pBiasG2, sys);
813 } else if (sys == 'R') {
814 addNoiseToPar(t_pppParam::pBiasR1, sys);
815 addNoiseToPar(t_pppParam::pBiasR2, sys);
816 } else if (sys == 'E') {
817 addNoiseToPar(t_pppParam::pBiasE1, sys);
818 addNoiseToPar(t_pppParam::pBiasE2, sys);
819 } else if (sys == 'C') {
820 addNoiseToPar(t_pppParam::pBiasC1, sys);
821 addNoiseToPar(t_pppParam::pBiasC2, sys);
822 }
823 }
[9670]824 }*/
[9386]825 }
826 }
827
828 // switch AA2 to AA1
829 // =================
830 _datumTrafo->switchAA();
831
[9548]832 _obsPool->putEpoch(_epoTime, allObs, pseudoObsIono, refSatMap);
[9508]833
[9386]834 return success;
[8912]835}
836
[9386]837// Init datum transformation
[8956]838////////////////////////////////////////////////////////////////////////////
[9642]839void t_pppFilter::initDatumTransformation(
840 const std::vector<t_pppSatObs*> &allObs, bool pseudoObsIono) {
[9395]841 unsigned trafoObs = 0;
[9642]842 const QList<char> &usedSystems = _parlist.usedSystems();
[9431]843 for (int iSys = 0; iSys < usedSystems.size(); iSys++) {
844 char sys = usedSystems[iSys];
[9386]845 int satNum = 0;
846 for (unsigned jj = 0; jj < allObs.size(); jj++) {
[9419]847 if (allObs[jj]->prn().system() == sys) {
[9386]848 satNum++;
[8956]849 }
850 }
[9386]851 // all LCs
[9419]852 unsigned realUsedLCs = OPT->LCs(sys).size();
[9386]853 // exclude pseudo obs GIM
[9419]854 if (OPT->_pseudoObsIono && !pseudoObsIono) {
[9386]855 realUsedLCs -= 1;
856 }
[9538]857
[9395]858 trafoObs += satNum * realUsedLCs;
859
[9419]860 if (OPT->_pseudoObsIono && pseudoObsIono) {
861 trafoObs -= 1; // pseudo obs iono with respect to refSat
862 }
[8956]863 }
[9419]864 _datumTrafo->setNumObs(trafoObs);
[9504]865 _datumTrafo->setNumPar(_parlist.nPar());
[9386]866 _datumTrafo->initAA();
[8956]867}
[9386]868
869//
870//////////////////////////////////////////////////////////////////////////////
[9642]871bool t_pppFilter::resetRefSatellitesLastEpoch(
872 std::vector<t_pppSatObs*> &obsVector,
873 const QMap<char, t_pppRefSat*> &refSatMap,
874 const QMap<char, t_pppRefSat*> &refSatMapLastEpoch) {
[9431]875 bool resetRefSat;
[9386]876 // reference satellite definition per system
[9642]877 const QList<char> &usedSystems = _parlist.usedSystems();
[9431]878 for (int iSys = 0; iSys < usedSystems.size(); iSys++) {
879 resetRefSat = false;
880 char sys = usedSystems[iSys];
[9508]881 t_prn newPrn = refSatMap[sys]->prn();
882 t_prn oldPrn = refSatMapLastEpoch[sys]->prn();
[9386]883#ifdef BNC_DEBUG_PPP
[9508]884 if (oldPrn != newPrn) {
885 LOG << "oldRef: " << oldPrn.toString() << " => newRef " << newPrn.toString() << endl;
886 }
[9386]887#endif
888 vector<t_pppSatObs*>::iterator it = obsVector.begin();
889 while (it != obsVector.end()) {
[9642]890 t_pppSatObs *satObs = *it;
891 if (satObs->prn() == newPrn) {
[9386]892 resetRefSat = true;
893 satObs->setAsReference();
[9508]894 } else if (satObs->prn() == oldPrn) {
[9386]895 satObs->resetReference();
896 }
[9642]897 it++;
[9386]898 }
[9431]899 if (!resetRefSat) {
900 _obsPool->setRefSatChangeRequired(sys, true);
901 return resetRefSat;
902 }
[9386]903 }
904 return resetRefSat;
905}
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