Title :
Research on position differential method of dual-satellites TDOA and FDOA in passive location system
Author :
Yanrong Xue ; Xiaohui Li ; Longxia Xu ; Ye Ren
Author_Institution :
Nat. Time Service Center, Xian, China
Abstract :
Combining with the principle of dual-satellite TDOA and FDOA in passive location system, a position differential method basing on dual-satellite TDOA and FDOA in passive location is put forward, which derives solution position of known and unknown radiation source by using conventional location algorithm method of TDOA and FDOA location, then position correction is achieved by subtracting the exact position and solution position of known radiation source to correct the solution position of unknown radiation source. Simulation results show that, according to similar Geometric Dilution of Precision(GDOP) principle, the known and unknown radiation source at a distance of several hundred kilometers are selected for differential, which can greatly improve location precision. This method develop positioning system of dual-satellite TDOA and FDOA, which has important value for improving its availability and the reliability of positioning result.
Keywords :
differential equations; satellite communication; satellite navigation; time-of-arrival estimation; GDOP principle; dual-satellite FDOA; dual-satellite TDOA; dual-satellite frequency difference of arrival; dual-satellite time-difference of arrival; geometric dilution of precision principle; location algorithm method; passive location system; position differential method; radiation source; Accuracy; Equations; Global Positioning System; Mathematical model; Satellites; Time frequency analysis;
Conference_Titel :
Frequency Control Symposium (FCS), 2012 IEEE International
Conference_Location :
Baltimore, MD
Print_ISBN :
978-1-4577-1821-2
DOI :
10.1109/FCS.2012.6243644