| A computer simulation for a space-time satellite positioning system |
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Annual Simulation Symposium
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Proceedings of the 23rd annual symposium on Simulation
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Nashville, Tennessee, United States
Pages: 99 - 103
Year of Publication: 1990
ISBN:0-8186-2067-6
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IEEE Press
Piscataway, NJ, USA
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Downloads (6 Weeks): 5, Downloads (12 Months): 22, Citation Count: 0
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ABSTRACT
This paper concerns the development of an autonomously distributed satellite network synchronization and positioning system. A simulation is developed to study the problem of having the member satellites obtain a system wide space-time coordinate reference system. The simulation models on board clocks for a system of satellites together with transfer via line of sight transmission using an EM signal of time and position data. It accounts for the various errors of measurement together with orbit mechanics that includes relativistic effects. Each satellite keeps a record of the defining equations for the orbits of the other members of the system. The ideal of the simulation is to find an algorithm for transferring timing and position data that will produce much agreement as possible for these records for all the members of the system.
REFERENCES
Note: OCR errors may be found in this Reference List extracted from the full text article. ACM has opted to expose the complete List rather than only correct and linked references.
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A
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Ashby, N. 1975. "An Earth-Based Coordinate Clock Network." NBS Technical Note 659, April.
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A-A
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Ashby, N. and D.W. Allen. 1984. Coordinate Time on and Near the Earth. Phy. Rev. Ltrs., Vol. 53, no, 9 Nov.
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B
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Barnes. 3.A. et al. 1971. Characterization of Frequency Stability. IEEE Trans Instr. and Meas., vol. IM-20, no, 2, May.
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C-M
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Cohen, J.M. and H.E. Moses. 1977. New Test of the Synchronization Procedure in Noninertial Systems."Phys. Rev. Ltrs., vol. 39, no.26, Dec.
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C-M-R
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Cohen, J.M., H.E. Moses and A. Rosenblum. 1983. Clock-Transport Synchronization in Noninertial Frames and Gravitational Fields. Phys. Rev. Ltrs., Vol. 51, No. 17, Oct.
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C-S
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Cutler, L.S. and C.L. Searle. 1966. Fluxtuations in Frequency Standards. Proc. IEEE, Vol. 54, no. 2, Feb.
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H-C-C
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Hansen, P. M., Chiu, Y.T., Chao, C. Prospects of using the Navstar/GPS Constallation as a Detector of Astrophysical Gravitational Radiation, Aerospace Report No. ATR-86(8421)-2, The Aerospace Corporation, El Segundo, CA, June 1986.
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He
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Hellwig, H. 1972. Frequency Standards and Clocks. NBS Technical Note 616, April.
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J
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Jazwinski,Andrew H., Stochastic Processes and Filtering Theory, Analytic Mechanics Associates, Inc. Seabrook, Maryland.
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L-L
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Landau, L.D. and E.M. Lifshitz 1987. The Classical Theory of Fields. Pergammon Press.
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M
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McCoubrey, A.O. 1966. A survey of Atomic Frequency Standards. Proc IEEE, vol. 54, no. 2, Feb. 1966.
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NBS
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National Bureau of Standards. 1974. Time and Frequency. Monograph 140, May.
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P
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Podulaha, M.F. 1984. Note on the Cohen, Moses and Rosenblum Letter about the Slow-Clock transport Synchronization in noninertial reference Systems. Let. al Nuovo Cimento, vol. 40, no. 7. January.
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P
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Post, E.J. 1967. Sagnac Effect. Rev. Mod. Physiscs, vol. 39, no.2, April.
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S
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Skalafuris, A.J. 1985. Current Theoretical Attempts Toward Synchronization of a Global Satellite Network. Radio Science, Vol. 20, no. 6, Nov. 1985.
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T
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