18 #ifndef GNSS_SDR_SERDES_GALILEO_EPH_H 19 #define GNSS_SDR_SERDES_GALILEO_EPH_H 22 #include "galileo_ephemeris.pb.h" 44 GOOGLE_PROTOBUF_VERIFY_VERSION;
59 std::swap(this->monitor_, temp.monitor_);
69 std::swap(this->monitor_, other.monitor_);
79 monitor_.set_prn(monitor->PRN);
80 monitor_.set_m_0(monitor->M_0);
81 monitor_.set_delta_n(monitor->delta_n);
82 monitor_.set_ecc(monitor->ecc);
83 monitor_.set_sqrta(monitor->sqrtA);
84 monitor_.set_omega_0(monitor->OMEGA_0);
85 monitor_.set_i_0(monitor->i_0);
86 monitor_.set_omega(monitor->omega);
87 monitor_.set_omegadot(monitor->OMEGAdot);
88 monitor_.set_idot(monitor->idot);
89 monitor_.set_cuc(monitor->Cuc);
90 monitor_.set_cus(monitor->Cus);
91 monitor_.set_crc(monitor->Crc);
92 monitor_.set_crs(monitor->Crs);
93 monitor_.set_cic(monitor->Cic);
94 monitor_.set_cis(monitor->Cis);
95 monitor_.set_toe(monitor->toe);
96 monitor_.set_toc(monitor->toc);
97 monitor_.set_af0(monitor->af0);
98 monitor_.set_af1(monitor->af1);
99 monitor_.set_af2(monitor->af2);
100 monitor_.set_satclkdrift(monitor->satClkDrift);
101 monitor_.set_dtr(monitor->dtr);
102 monitor_.set_wn(monitor->WN);
103 monitor_.set_tow(monitor->tow);
106 monitor_.set_iod_ephemeris(monitor->IOD_ephemeris);
107 monitor_.set_iod_nav(monitor->IOD_nav);
108 monitor_.set_sisa(monitor->SISA);
109 monitor_.set_e5a_hs(monitor->E5a_HS);
110 monitor_.set_e5b_hs(monitor->E5b_HS);
111 monitor_.set_e1b_hs(monitor->E1B_HS);
112 monitor_.set_e5a_dvs(monitor->E5a_DVS);
113 monitor_.set_e5b_dvs(monitor->E5b_DVS);
114 monitor_.set_e1b_dvs(monitor->E1B_DVS);
115 monitor_.set_bgd_e1e5a(monitor->BGD_E1E5a);
116 monitor_.set_bgd_e1e5b(monitor->BGD_E1E5b);
118 monitor_.SerializeToString(&data);
126 monitor.
PRN = mon.prn();
127 monitor.
M_0 = mon.m_0();
128 monitor.
delta_n = mon.delta_n();
129 monitor.
ecc = mon.ecc();
130 monitor.
sqrtA = mon.sqrta();
131 monitor.
OMEGA_0 = mon.omega_0();
132 monitor.
i_0 = mon.i_0();
133 monitor.
omega = mon.omega();
135 monitor.
idot = mon.idot();
136 monitor.
Cuc = mon.cuc();
137 monitor.
Cus = mon.cus();
138 monitor.
Crc = mon.crc();
139 monitor.
Crs = mon.crs();
140 monitor.
Cic = mon.cic();
141 monitor.
Cis = mon.cis();
142 monitor.
toe = mon.toe();
143 monitor.
toc = mon.toc();
144 monitor.
af0 = mon.af0();
145 monitor.
af1 = mon.af1();
146 monitor.
af2 = mon.af2();
148 monitor.
dtr = mon.dtr();
149 monitor.
WN = mon.wn();
150 monitor.
tow = mon.tow();
153 monitor.IOD_ephemeris = mon.iod_ephemeris();
154 monitor.IOD_nav = mon.iod_nav();
155 monitor.
SISA = mon.sisa();
156 monitor.
E5a_HS = mon.e5a_hs();
157 monitor.
E5b_HS = mon.e5b_hs();
158 monitor.
E1B_HS = mon.e1b_hs();
159 monitor.
E5a_DVS = mon.e5a_dvs();
160 monitor.
E5b_DVS = mon.e5b_dvs();
161 monitor.
E1B_DVS = mon.e1b_dvs();
169 gnss_sdr::GalileoEphemeris monitor_{};
175 #endif // GGNSS_SDR_SERDES_GALILEO_EPH_H Serdes_Galileo_Eph & operator=(Serdes_Galileo_Eph &&other) noexcept
< Move assignment operator
int32_t E5a_HS
E5a Signal Health Status.
double i_0
Inclination angle at reference time [rad].
Serdes_Galileo_Eph & operator=(const Serdes_Galileo_Eph &rhs) noexcept
< Copy assignment operator
std::string createProtobuffer(const std::shared_ptr< Galileo_Ephemeris > monitor)
double OMEGA_0
Longitude of ascending node of orbital plane at weekly epoch [rad].
bool E5a_DVS
E5a Data Validity Status.
int32_t toc
Clock correction data reference Time of Week [sec].
double Crc
Amplitude of the cosine harmonic correction term to the orbit radius [meters].
Galileo_Ephemeris readProtobuffer(const gnss_sdr::GalileoEphemeris &mon) const
< Deserialization
int32_t SISA
Signal in space accuracy index.
double af2
SV clock drift rate correction coefficient [s/s^2].
double BGD_E1E5a
E1-E5a Broadcast Group Delay [s].
bool E5b_DVS
E5b Data Validity Status.
double Cis
Amplitude of the sine harmonic correction term to the angle of inclination [rad]. ...
double BGD_E1E5b
E1-E5b Broadcast Group Delay [s].
double af0
SV clock bias correction coefficient [s].
This class implements serialization and deserialization of Galileo_Ephemeris using Protocol Buffers...
bool E1B_DVS
E1B Data Validity Status.
double M_0
Mean anomaly at reference time [rad].
int32_t E1B_HS
E1B Signal Health Status.
int32_t toe
Ephemeris reference time [s].
double Cus
Amplitude of the sine harmonic correction term to the argument of latitude [rad]. ...
double OMEGAdot
Rate of right ascension [rad/sec].
double delta_n
Mean motion difference from computed value [rad/sec].
double idot
Rate of inclination angle [rad/sec].
double Cic
Amplitude of the cosine harmonic correction term to the angle of inclination [rad].
This class is a storage and orbital model functions for the Galileo SV ephemeris data as described in...
double Cuc
Amplitude of the cosine harmonic correction term to the argument of latitude [rad].
double omega
Argument of perigee [rad].
int32_t E5b_HS
E5b Signal Health Status.
double af1
SV clock drift correction coefficient [s/s].
double Crs
Amplitude of the sine harmonic correction term to the orbit radius [meters].
double satClkDrift
SV clock drift.
Interface of a Galileo EPHEMERIS storage.
double dtr
Relativistic clock correction term.
double sqrtA
Square root of the semi-major axis [meters^1/2].