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A novel sensor for attitude determination using Global Positioning System signals

  • NASA Goddard Space Flight Center

Research output: Contribution to conferencePaperpeer-review

3 Scopus citations

Abstract

An entirely new sensor approach for attitude determination using Global Positioning System (GPS) signals is proposed. The concept involves the use of multiple GPS antenna elements arrayed on a single sensor head to provide maximum GPS space vehicle availability. A number of sensor element configurations are discussed. In addition to the navigation function, the array is used to find which GPS space vehicles are within the field-of-view of each antenna element. Attitude determination is performed by considering the sightline vectors of the found GPS space vehicles together with the fixed boresight vectors of the individual antenna elements. This approach has clear advantages over the standard differential carrier-phase approach. First, errors induced by multipath effects can be significantly reduced or eliminated altogether. Also, integer ambiguity resolution is not required, nor do line biases need to be determined through costly and cumbersome self-surveys. Furthermore, the new sensor does not require individual antennas to be physically separated to form interferometric baselines to determine attitude. Finally, development potential of the new sensor is limited only by antenna and receiver technology development unlike the physical limitations of the current interferometric attitude determination scheme. Initial simulation results indicate that accuracies of about 1 degree (3a) are possible.

Original languageEnglish
Pages708-717
Number of pages10
StatePublished - 1998
EventGuidance, Navigation, and Control Conference and Exhibit, 1998 - Boston, United States
Duration: Aug 10 1998Aug 12 1998

Conference

ConferenceGuidance, Navigation, and Control Conference and Exhibit, 1998
Country/TerritoryUnited States
CityBoston
Period08/10/9808/12/98

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