source: ntrip/trunk/BNC/bncpppclient.h@ 3375

Last change on this file since 3375 was 3375, checked in by mervart, 13 years ago

LM: new Outlier Detection

File size: 4.6 KB
RevLine 
[2035]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#ifndef BNCPPPCLIENT_H
26#define BNCPPPCLIENT_H
27
[2808]28#include <queue>
[2905]29#include "bncephuser.h"
[2035]30#include "RTCM/GPSDecoder.h"
31
[2058]32class bncModel;
33
[2039]34class t_satData {
[2035]35 public:
[2791]36 t_satData() {
37 indexCode = 0;
38 indexPhase = 0;
39 }
40 ~t_satData() {}
[2808]41 bncTime tt;
[2240]42 QString prn;
[2051]43 double P1;
44 double P2;
[2778]45 double P5;
[2051]46 double P3;
47 double L1;
48 double L2;
[2778]49 double L5;
[2051]50 double L3;
[2049]51 ColumnVector xx;
52 ColumnVector vv;
53 double clk;
[2065]54 double eleSat;
55 double azSat;
[2060]56 double rho;
[2505]57 bool slipFlag;
[2583]58 double lambda3;
[2791]59 unsigned indexCode;
60 unsigned indexPhase;
[2788]61 char system() const {return prn.toAscii()[0];}
[2035]62};
63
[2039]64class t_epoData {
65 public:
66 t_epoData() {}
[3375]67
68 t_epoData(const t_epoData& ed) {
69 tt = ed.tt;
70 QMapIterator<QString, t_satData*> itGPS(ed.satDataGPS);
71 while (itGPS.hasNext()) {
72 itGPS.next();
73 satDataGPS[itGPS.key()] = new t_satData(*itGPS.value());
74 }
75 QMapIterator<QString, t_satData*> itGlo(ed.satDataGlo);
76 while (itGlo.hasNext()) {
77 itGlo.next();
78 satDataGlo[itGPS.key()] = new t_satData(*itGlo.value());
79 }
80 QMapIterator<QString, t_satData*> itGal(ed.satDataGal);
81 while (itGal.hasNext()) {
82 itGal.next();
83 satDataGPS[itGal.key()] = new t_satData(*itGal.value());
84 }
85 }
86
[2039]87 ~t_epoData() {
[2231]88 QMapIterator<QString, t_satData*> itGPS(satDataGPS);
89 while (itGPS.hasNext()) {
90 itGPS.next();
91 delete itGPS.value();
[2039]92 }
[2231]93 QMapIterator<QString, t_satData*> itGlo(satDataGlo);
94 while (itGlo.hasNext()) {
95 itGlo.next();
96 delete itGlo.value();
97 }
[2778]98 QMapIterator<QString, t_satData*> itGal(satDataGal);
99 while (itGal.hasNext()) {
100 itGal.next();
101 delete itGal.value();
102 }
[2039]103 }
[2231]104 unsigned sizeGPS() const {return satDataGPS.size();}
105 unsigned sizeGlo() const {return satDataGlo.size();}
[2778]106 unsigned sizeGal() const {return satDataGal.size();}
107 unsigned sizeAll() const {return satDataGPS.size() + satDataGlo.size() +
108 satDataGal.size();}
[3375]109 bncTime tt;
[2231]110 QMap<QString, t_satData*> satDataGPS;
111 QMap<QString, t_satData*> satDataGlo;
[2778]112 QMap<QString, t_satData*> satDataGal;
[2039]113};
114
[2274]115class t_bias {
116 public:
117 t_bias() {
[2426]118 p1 = 0.0;
119 p2 = 0.0;
120 c1 = 0.0;
[2274]121 }
122 bncTime tt;
[2426]123 double p1;
124 double p2;
125 double c1;
[2274]126};
127
[2905]128class bncPPPclient : public bncEphUser {
[2035]129 Q_OBJECT
130
131 public:
132 bncPPPclient(QByteArray staID);
133 ~bncPPPclient();
[2711]134 void putNewObs(const t_obs& pp);
[3319]135 static t_irc applyCorr(const bncTime& tt, const t_corr* cc, ColumnVector& xc,
136 ColumnVector& vv);
[2035]137
138 public slots:
139 void slotNewCorrections(QList<QString> corrList);
140
[2142]141 signals:
[2548]142 void newMessage(QByteArray msg, bool showOnScreen);
[2145]143 void newPosition(bncTime time, double x, double y, double z);
[2182]144 void newNMEAstr(QByteArray str);
[2142]145
[2035]146 private:
[2505]147 class slipInfo {
148 public:
149 slipInfo() {
150 slipCntL1 = -1;
151 slipCntL2 = -1;
[2778]152 slipCntL5 = -1;
[2505]153 }
154 ~slipInfo(){}
155 int slipCntL1;
156 int slipCntL2;
[2778]157 int slipCntL5;
[2505]158 };
159
[2123]160 t_irc getSatPos(const bncTime& tt, const QString& prn,
[2357]161 ColumnVector& xc, ColumnVector& vv);
[2808]162 void processEpochs();
163 void processFrontEpoch();
[2240]164 t_irc cmpToT(t_satData* satData);
[2042]165
[2505]166 QByteArray _staID;
167 QMap<QString, t_corr*> _corr;
[2809]168 bncTime _corr_tt;
[2505]169 QMap<QString, t_bias*> _bias;
[2808]170 std::queue<t_epoData*> _epoData;
[2505]171 bncModel* _model;
172 bool _useGlonass;
[2776]173 bool _useGalileo;
[2505]174 bool _pppMode;
175 QMap<QString, slipInfo> _slips;
[2967]176 QString _pppCorrMount;
[2035]177};
178
179#endif
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