Title :
Forecasting of ionospheric time delays using ARMA model under Geomagnetic storm conditions
Author :
Ratnam, D. Venkata ; Harshali, M. ; Rao, M. Venu Gopala
Author_Institution :
Dept. of ECE, K.L. Univ., Vaddeswaram, India
Abstract :
Ionospheric time delay variations are highly variable and random in the low latitude Indian region. It is a key responsible parameter for the range error in Global Positioning System (GPS) ranging signals which is proportional to the total electron content (TEC). Dual frequency GPS receiver at KL University, Vaddeswaram (16.31° N, 80.37° E), India (falls under the transition zone of the Equatorial Ionization Anomaly in low latitude) is considered in the analysis. An Auto Regressive Moving Average (ARMA) model is implemented for short term forecasting of the VTEC (Vertical TEC) values. Three Geomagnetic storms occurred in the current solar maximum period (2013-2014) are considered to test the performance of ARMA model. The forecasted VTEC values are compared with original VTEC the values and IRI models. The forecasted results indicate that ARMA model would be useful to set up an early warning system of ionospheric disturbances.
Keywords :
Global Positioning System; autoregressive moving average processes; delays; ionospheric disturbances; magnetic storms; radio receivers; ARMA model; GPS ranging signal; Global Positioning System ranging signal; IRI model; KL University; VTEC value; Vaddeswaram; autoregressive moving average model; dual frequency GPS receiver; equatorial ionization anomaly; geomagnetic storm condition; ionospheric time delay forecasting; low latitude Indian region; total electron content; vertical TEC value; Biological system modeling; Forecasting; Global Positioning System; Indexes; Mathematical model; Predictive models; Storms; ARMA model; TEC; forecasting; geomagnetic storms; ionospheric delay;
Conference_Titel :
Signal Processing and Integrated Networks (SPIN), 2015 2nd International Conference on
Conference_Location :
Noida
Print_ISBN :
978-1-4799-5990-7
DOI :
10.1109/SPIN.2015.7095303