DocumentCode :
3112703
Title :
A GPS sonobuoy localization system
Author :
Whitehouse, Harper J. ; Alsup, James M. ; De Escobar, Anna M Leese ; Sullivan, Shelby F.
fYear :
2004
fDate :
26-29 April 2004
Firstpage :
414
Lastpage :
417
Abstract :
A GPS localization system is described that uses the precision navigation signal but does not require a SAASM decoding unit in the sonobuoy. The system operates by retransmitting a selected 1 MHz portion of the GPS L1 or L2 signal spectrum from the sonobuoy to a Master Control Station (MCS). By offsetting the selected spectrum about 2 MHz from the center frequency of the GPS band, both the current P(Y) signal and the new M-code signal can be accommodated. By cross-correlating the retransmitted signal with the same signal received at a remote site a differential delay can be computed for each visible satellite. This delay defines a prolate spheroid with one focus at the satellite and the other at the remote site. The intersection of the measured prolate spheroid with the oblate spheroid approximation of the sea surface defines a closed curve on the surface of the ocean on which the sonobuoy lies. Two additional satellite measurements or two additional measurements of the same satellite from a moving remote site such as an airplane then locates the sonobuoy uniquely.
Keywords :
Global Positioning System; sonar tracking; GPS sonobuoy localization system; cross-correlating; precision navigation signal; prolate spheroid; retransmitted signal; Control systems; Decoding; Delay; Frequency; Global Positioning System; Navigation; Oceans; Satellites; Sea measurements; Sea surface;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Position Location and Navigation Symposium, 2004. PLANS 2004
Print_ISBN :
0-7803-8416-4
Type :
conf
DOI :
10.1109/PLANS.2004.1309024
Filename :
1309024
Link To Document :
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