DocumentCode :
1863177
Title :
Next generation GPS aided space navigation systems
Author :
Cecchini, Joe
Author_Institution :
Honeywell Space Syst., Clearwater, FL, USA
Volume :
2
fYear :
2001
fDate :
37165
Abstract :
The next generation of low cost Global Positioning Service (GPS) receivers for space navigation and attitude determination are positioned to take full advantage of the improvements made in the commercial GPS receivers used for terrestrial applications. There have been recent improvements made to the GPS receivers that include the addition of extra GPS Satellite channels that can be tracked simultaneously. The older style GPS receivers were only able to handle five channels at a time. In order, for proper determination of three-dimensional position, a minimum of four channels was required and the fifth channel of the receiver was reserved to perform search functions for finding the next satellite. This included searching for satellites that could be used to replace exiting satellites moving out of the FOV. The search function also enables the GPS receiver to search for the best constellation for maximum performance accuracy. The fifth roaming channel also provided a best next-satellite selection capability in case the field of view to one of the satellite was blocked or shaded
Keywords :
Global Positioning System; space communication links; GPS aided space navigation systems; GPS receivers; International Space Station application; channel outages; flight landing; next generation systems; next-satellite selection capability; performance accuracy; re-entry vehicles; roaming channel; search function; three-dimensional position; Antenna measurements; Costs; Extraterrestrial measurements; Global Positioning System; International Space Station; Position measurement; Satellite antennas; Satellite navigation systems; Space missions; Space vehicles;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Digital Avionics Systems, 2001. DASC. 20th Conference
Conference_Location :
Daytona Beach, FL
Print_ISBN :
0-7803-7034-1
Type :
conf
DOI :
10.1109/DASC.2001.964235
Filename :
964235
Link To Document :
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