DocumentCode
1762133
Title
High-Rate GPS Seismology Using Real-Time Precise Point Positioning With Ambiguity Resolution
Author
Xingxing Li ; Maorong Ge ; Cuixian Lu ; Yong Zhang ; Rongjiang Wang ; Wickert, J. ; Schuh, H.
Author_Institution
German Res. Centre for Geosci. (GFZ), Potsdam, Germany
Volume
52
Issue
10
fYear
2014
fDate
Oct. 2014
Firstpage
6165
Lastpage
6180
Abstract
With the availability of real-time high-rate GPS observations and precise satellite orbit and clock products, the interest in the real-time precise point positioning (PPP) technique has greatly increased to construct displacement waveforms and to invert for source parameters of earthquakes in real time. Furthermore, PPP ambiguity resolution approaches, developed in the recent years, overcome the accuracy limitation of the standard PPP float solution and achieve comparable accuracy with relative positioning. In this paper, we introduce the real-time PPP service system and the key techniques for real-time PPP ambiguity resolution. We assess the performance of the ambiguity-fixed PPP in real-time scenarios and confirm that positioning accuracy in terms of root mean square of 1.0-1.5 cm can be achieved in horizontal components. For the 2011 Tohoku-Oki (Japan) and the 2010 El Mayor-Cucapah (Mexico) earthquakes, the displacement waveforms estimated from ambiguity-fixed PPP and those provided by the accelerometer instrumentation are consistent in the dynamic component within few centimeters. The PPP fixed solution not only can improve the accuracy of coseismic displacements but also provides a reliable recovery of earthquake magnitude and of the fault slip distribution in real time.
Keywords
Global Positioning System; earthquakes; geophysical techniques; position measurement; remote sensing; seismology; AD 2010; AD 2011; El Mayor-Cucapah earthquake; Japan; Mexico; PPP ambiguity resolution approaches; Tohoku-Oki earthquake; accelerometer instrumentation; displacement waveforms; earthquake magnitude recovery; earthquake source parameters; fault slip distribution; high rate GPS seismology; precise clock products; precise satellite orbit products; real time PPP ambiguity resolution; real time PPP service system; real time PPP technique; real time high rate GPS observations; real time precise point positioning technique; standard PPP float solution; Clocks; Delays; Global Positioning System; Orbits; Real-time systems; Receivers; Satellites; Coseismic displacement; GPS seismology; fault slip inversion; high-rate GPS; precise point positioning (PPP) ambiguity resolution; real-time PPP;
fLanguage
English
Journal_Title
Geoscience and Remote Sensing, IEEE Transactions on
Publisher
ieee
ISSN
0196-2892
Type
jour
DOI
10.1109/TGRS.2013.2295373
Filename
6737215
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