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https://github.com/gnss-sdr/gnss-sdr
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MOD: kf filtering
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@ -1152,13 +1152,14 @@ bool Rtklib_Solver::get_PVT(const std::map<int, Gnss_Synchro> &gnss_observables_
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new_vtl_data.rx_dts(1) = pvt_sol.dtr[5] / 1e6; // [ppm] to [s]
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//new_vtl_data.debug_print();
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vtl_engine.vtl_loop(new_vtl_data);
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pvt_sol.rr[0]=new_vtl_data.kf_state(0);//rx_p
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pvt_sol.rr[1]=new_vtl_data.kf_state(1);//rx_p
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pvt_sol.rr[2]=new_vtl_data.kf_state(2);//rx_p
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pvt_sol.rr[3]=new_vtl_data.kf_state(3);//rx_v
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pvt_sol.rr[4]=new_vtl_data.kf_state(4);//rx_v
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pvt_sol.rr[5]=new_vtl_data.kf_state(5);//rx_v
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pvt_sol.rr[0]=vtl_engine.vtl_loop(new_vtl_data);
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// pvt_sol.rr[0]=new_vtl_data.rx_p(0);
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// pvt_sol.rr[1]=new_vtl_data.rx_p(1);
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// pvt_sol.rr[2]=new_vtl_data.rx_p(2);
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// pvt_sol.rr[3]=new_vtl_data.rx_v(0);
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// pvt_sol.rr[4]=new_vtl_data.rx_v(1);
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// pvt_sol.rr[5]=new_vtl_data.rx_v(2);
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//new_vtl_data.debug_print();
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}
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// compute Ground speed and COG
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@ -44,7 +44,7 @@ void Vtl_Data::init_storage(int n_sats)
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rx_dts = arma::mat(1, 2);
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rx_var = arma::vec(1);
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rx_pvt_var = arma::vec(8);
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kf_state = arma::vec(8);
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kf_state = arma::mat(8,1);
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kf_P = arma::mat(8,8);
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epoch_tow_s = 0;
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sample_counter = 0;
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@ -54,9 +54,10 @@ public:
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arma::mat rx_pvt_var; // Receiver position, velocity and time VARIANCE [m/s]
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arma::mat rx_dts; // Receiver clock bias and drift [s,s/s]
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arma::colvec rx_var; // Receiver position and clock error variance [m^2]
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arma::colvec kf_state; // KF STATE
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arma::mat kf_P; // KF STATE
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arma::mat kf_state; // KF STATE
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arma::mat kf_P; // KF STATE covariance
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// time handling
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double PV[6]; // position and Velocity
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double epoch_tow_s; // current observation RX time [s]
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uint64_t sample_counter; // current sample counter associated with RX time [samples from start]
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void debug_print();
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@ -62,7 +62,7 @@ bool Vtl_Engine::vtl_loop(Vtl_Data new_data)
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counter=counter+1; //uint64_t
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cout << "counter" << counter;
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if(counter<500){ //
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if(counter<3000){ //
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// receiver solution from rtklib_solver
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kf_x(0)=new_data.rx_p(0);
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kf_x(1)=new_data.rx_p(1);
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@ -161,8 +161,8 @@ bool Vtl_Engine::vtl_loop(Vtl_Data new_data)
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for (int32_t i = 0; i < new_data.sat_number; i++) // Measurement error Covariance Matrix R assembling
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{
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// It is diagonal 2*NSatellite x 2*NSatellite (NSat psudorange error;NSat pseudo range rate error)
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kf_R(i, i) = 0.1; //TODO: fill with real values.
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kf_R(i+new_data.sat_number, i+new_data.sat_number) = 1.0;
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kf_R(i, i) = 20.0; //TODO: fill with real values.
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kf_R(i+new_data.sat_number, i+new_data.sat_number) = 10.0;
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}
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// Kalman filter update step
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@ -81,11 +81,11 @@ private:
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arma::mat kf_R; // measurement error covariance matrix
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arma::mat kf_Q; // system error covariance matrix
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arma::colvec kf_x; // state vector
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arma::colvec kf_x_pre; // predicted state vector
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arma::colvec kf_y; // measurement vector
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arma::colvec kf_yerr; // ERROR measurement vector
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arma::colvec kf_xerr; // ERROR state vector
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arma::mat kf_x; // state vector
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arma::mat kf_x_pre; // predicted state vector
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arma::mat kf_y; // measurement vector
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arma::mat kf_yerr; // ERROR measurement vector
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arma::mat kf_xerr; // ERROR state vector
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arma::mat kf_K; // Kalman gain matrix
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// Gaussian estimator
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