Title :
DGPS positional improvement by mitigating the ionospheric horizontal gradient and elevation angle effects
Author :
Nagarajoo, K. ; Zain, Ahmad Faizal Mohd
Author_Institution :
Fac. of Electr. & Electron. Eng., Univ. Tun Hussein Onn Malaysia, Batu Pahat, Malaysia
Abstract :
Over the equatorial region, the inhomogeneous formation of the ionosphere introduces greater ionospheric horizontal gradient which could give greater positioning error for a user station in a DGPS system. Furthermore, the difference in the elevation angle of the user station that `views´ the same GPS satellite as the reference station also introduces range measurement errors at mm to cm levels. In order to mitigate those two effects in a DGPS system, the Jones 3D ray tracing program was used to show final positioning improvement at the user station. Group delay and carrier phase advance measurements from 8 GPS satellites were used to determine and mitigate the effects of ionospheric horizontal gradient and the elevation angle. Positioning improvement of about 7 cm has been obtained by using both group delay and carrier phase advance measurements. This shows a good positioning improvement for the user station in a DGPS system that is located over the equatorial region.
Keywords :
Global Positioning System; measurement errors; ray tracing; DGPS positional improvement; GPS satellite; Jones 3D ray tracing program; carrier phase advance measurement; elevation angle effects; equatorial region; group delay; inhomogeneous formation; ionospheric horizontal gradient mitigation; measurement errors; user station; Delay; Geophysical measurements; Global Positioning System; Ionosphere; Phase measurement; Position measurement; Satellites; DGPS; elevation angle; ionospheric horizontal gradient; user positioning improvement;
Conference_Titel :
Applied Electromagnetics (APACE), 2010 IEEE Asia-Pacific Conference on
Conference_Location :
Port Dickson
Print_ISBN :
978-1-4244-8565-9
DOI :
10.1109/APACE.2010.5720087