Relativity in the Global Positioning System
University of Colorado Boulder
Indexed incrossrefdoajpubmed
Abstract
The Global Positioning System (GPS) uses accurate, stable atomic clocks in satellites and on the ground to provide world-wide position and time determination. These clocks have gravitational and motional frequency shifts which are so large that, without carefully accounting for numerous relativistic effects, the system would not work. This paper discusses the conceptual basis, founded on special and general relativity, for navigation using GPS. Relativistic principles and effects which must be considered include the constancy of the speed of light, the equivalence principle, the Sagnac effect, time dilation, gravitational frequency shifts, and relativity of synchronization. Experimental tests of relativity…
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657
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Authors
1Topics & keywords
Topics
Keywords
- Physics
- Global Positioning System
- Time dilation
- Relativistic quantum chemistry
- Tests of general relativity
- Theory of relativity
- Atomic clock
- General relativity
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