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https://github.com/gnss-sdr/gnss-sdr
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ADD: SNR and variance estimation in Vtl_Data
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@ -1110,14 +1110,14 @@ bool Rtklib_Solver::get_PVT(const std::map<int, Gnss_Synchro> &gnss_observables_
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new_vtl_data.sat_dts(n, 1) = dts[1 + 2 * n];
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new_vtl_data.sat_var(n) = var[n];
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new_vtl_data.sat_health_flag(n) = svh.at(n);
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new_vtl_data.sat_CN0_dB_hz(n) = d_obs_data.at(n).SNR[0];
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// TODO: first version of VTL works only with ONE frequency band (band #0 is L1)
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new_vtl_data.pr_m(n) = d_obs_data.at(n).P[0];
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new_vtl_data.doppler_hz(n) = d_obs_data.at(n).D[0];
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new_vtl_data.carrier_phase_rads(n) = d_obs_data.at(n).L[0];
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}
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//VTL input data extraction from rtklib structures
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/* Receiver position, velocitie and clock */
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/* Receiver position, velocity and clock */
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/* position/velocity (m|m/s):{x,y,z,vx,vy,vz} or {e,n,u,ve,vn,vu} */
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new_vtl_data.rx_p(0) =pvt_sol.rr[0];
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new_vtl_data.rx_p(1) =pvt_sol.rr[1];
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@ -1125,6 +1125,16 @@ bool Rtklib_Solver::get_PVT(const std::map<int, Gnss_Synchro> &gnss_observables_
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new_vtl_data.rx_v(0) =pvt_sol.rr[3] ;
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new_vtl_data.rx_v(1) =pvt_sol.rr[4] ;
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new_vtl_data.rx_v(2) =pvt_sol.rr[5] ;
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/* Receiver position, velocity and clock variances*/
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new_vtl_data.rx_pvt_var[0] = pvt_sol.qr[0];
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new_vtl_data.rx_pvt_var[1] = pvt_sol.qr[1];
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new_vtl_data.rx_pvt_var[2] = pvt_sol.qr[2];
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//TODO: get direct estimations for V T variances, instead:
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new_vtl_data.rx_pvt_var[3] = pvt_sol.qr[0]*0.1; //in general minor than position.
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new_vtl_data.rx_pvt_var[4] = pvt_sol.qr[1]*0.1;
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new_vtl_data.rx_pvt_var[5] = pvt_sol.qr[2]*0.1;
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new_vtl_data.rx_pvt_var[6] = pvt_sol.qr[0]; //time
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new_vtl_data.rx_pvt_var[7] = pvt_sol.qr[0]; //doppler
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//receiver clock offset and receiver clock drift
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new_vtl_data.rx_dts(0)=rx_position_and_time[3];
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new_vtl_data.rx_dts(1)=pvt_sol.dtr[5];
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